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Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":84,"DDEName":"Mass Per Area Yield","Definition":"Yield as mass per area, not corrected for the reference moisture percentage DDI 184.","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"This Mass per Area yield is the mass that includes the actual percentage moisture (DDI 99) if this is measured on e.g. harvesting equipment. 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This comment is added to clarify and differentiate this DDI from the Yield Total Dry Mass (DDI 183).","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":91,"DDEName":"Yield Total Count","Definition":"Accumulated Yield specified as count","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - 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Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":94,"DDEName":"Count Per Area Crop Loss","Definition":"Crop yield loss as count per area","sysUnitReadable":"Quantity per area unit - \/m²","sysUnit":"\/m²","Comment":"","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - 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Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":100,"DDEName":"Crop Contamination","Definition":"Dirt or foreign material in crop yield","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDE defines the contamination in ratio of the yield DDI units.","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":101,"DDEName":"Setpoint Bale Width","Definition":"Setpoint Bale Width for square baler or round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":102,"DDEName":"Actual Bale Width","Definition":"Actual Bale Width for square baler or round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":103,"DDEName":"Default Bale Width","Definition":"Default Bale Width for square baler or round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":104,"DDEName":"Minimum Bale Width","Definition":"Minimum Bale Width for square baler or round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":105,"DDEName":"Maximum Bale Width","Definition":"Maximum Bale Width for square baler or round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":106,"DDEName":"Setpoint Bale Height","Definition":"Setpoint Bale Height is only applicable to square baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":107,"DDEName":"ActualBaleHeight","Definition":"Actual Bale Height is only applicable to square baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":108,"DDEName":"Default Bale Height","Definition":"Default Bale Height is only applicable to square baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":109,"DDEName":"Minimum Bale Height","Definition":"Minimum Bale Height is only applicable to square baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":110,"DDEName":"Maximum Bale Height","Definition":"Maximum Bale Height is only applicable to square baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":111,"DDEName":"Setpoint Bale Size","Definition":"Setpoint Bale Size as length for a square baler or diameter for a round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":112,"DDEName":"Actual Bale Size","Definition":"Actual Bale Size as length for a square baler or diameter for a round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":113,"DDEName":"Default Bale Size","Definition":"Default Bale Size as length for a square baler or diameter for a round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":114,"DDEName":"Minimum Bale Size","Definition":"Minimum Bale Size as length for a square baler or diameter for a round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":115,"DDEName":"Maximum Bale Size","Definition":"Maximum Bale Size as length for a square baler or diameter for a round baler","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":116,"DDEName":"Total Area","Definition":"Accumulated Area","sysUnitReadable":"Area - m²","sysUnit":"m²","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":117,"DDEName":"Effective Total Distance","Definition":"Accumulated Distance in working position","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":118,"DDEName":"Ineffective Total Distance","Definition":"Accumulated Distance out of working position","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":119,"DDEName":"Effective Total Time","Definition":"Accumulated Time in working position","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2011-12-21","Attachments":[]},{"DDIdentifier":120,"DDEName":"Ineffective Total Time","Definition":"Accumulated Time out of working position","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"is a counter of a machine element","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":121,"DDEName":"Product Density Mass Per Volume","Definition":"Product Density as mass per volume","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"","SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":122,"DDEName":"Product Density Mass PerCount","Definition":"Product Density as mass per count","sysUnitReadable":"1000 seed Mass - mg\/1000","sysUnit":"mg\/1000","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":123,"DDEName":"Product Density Volume Per Count","Definition":"Product Density as volume per count","sysUnitReadable":"Volume per quantity unit - ml\/1000","sysUnit":"ml\/1000","Comment":null,"SAESPN":"not specified","SubmitDate":"2003-08-01","SubmitBy":"Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":124,"DDEName":"Auxiliary Valve Scaling Extend","Definition":"Factor to apply to AuxValveCommand PortFlowCommand. The scaling of the port flow relates to flow, not to spool position, although the position of the spool is of course indirectly affected.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":125,"DDEName":"Auxiliary Valve Scaling Retract","Definition":"Factor to apply to AuxValveCommand PortFlowCommand. The scaling of the port flow relates to flow, not to spool position, although the position of the spool is of course indirectly affected.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":126,"DDEName":"Auxiliary Valve Ramp Extend Up","Definition":"The valve will apply a ramp to the Auxiliary ValveCommand PortFlowCommand, to limit the acceleration or deceleration of flow. The valve must apply the ramp to create a liniear increase\/decrease of flow over time.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":127,"DDEName":"Auxiliary Valve Ramp Extend Down","Definition":"The valve will apply a ramp to the Auxiliary ValveCommand PortFlowCommand, to limit the acceleration or deceleration of flow. The valve must apply the ramp to create a liniear increase\/decrease of flow over time.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":128,"DDEName":"Auxiliary Valve Ramp Retract Up","Definition":"The valve will apply a ramp to theAuxiliary ValveCommand PortFlowCommand, to limit the acceleration or deceleration of flow. The valve must apply the ramp to create a liniear increase\/decrease of flow over time.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":129,"DDEName":"Auxiliary Valve Ramp Retract Down","Definition":"The valve will apply a ramp to the Auxiliary ValveCommand PortFlowCommand, to limit the acceleration or deceleration of flow. The valve must apply the ramp to create a liniear increase\/decrease of flow over time.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":130,"DDEName":"Auxiliary Valve Float Threshold","Definition":"Safety function. Current output of valve must be above threshold before float command is allowed.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":null,"SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":131,"DDEName":"Auxiliary Valve Progressivity Extend","Definition":"Define non-linear releationship between command and flow by 2nd degree polynomium. (I will get polynomium)","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"","SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":132,"DDEName":"Auxiliary Valve Progressivity Retract","Definition":"Define non-linear releationship between command and flow by 2nd degree polynomium. (I will get polynomium)","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"","SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":133,"DDEName":"Auxiliary Valve Invert Ports","Definition":"Tell valve to swap extend and retract ports, easier than redoing plumbing on valve","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"","SAESPN":"not specified","SubmitDate":"2004-09-10","SubmitBy":"Lars Althof","SubmitCompany":"57 - Sauer-Danfoss Co.","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":134,"DDEName":"Device Element Offset X","Definition":"X direction offset of a DeviceElement relative to a Device.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":135,"DDEName":"Device Element Offset Y","Definition":"Y direction offset of a DeviceElement relative to a Device.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":136,"DDEName":"Device Element Offset Z","Definition":"Z direction offset of a DeviceElement relative to a Device.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":137,"DDEName":"Device Volume Capacity","Definition":"DeviceElement Volume Capacity, dimension of a DeviceElement","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":138,"DDEName":"Device Mass Capacity","Definition":"DeviceElement Mass Capacity, dimension of a DeviceElement","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":139,"DDEName":"Device Count Capacity","Definition":"DeviceElement Count Capacity, dimension of a DeviceElement","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2005-02-02","Attachments":[]},{"DDIdentifier":140,"DDEName":"Setpoint Percentage Application Rate","Definition":"Application Rate expressed as percentage","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2015-01-26","Attachments":[]},{"DDIdentifier":141,"DDEName":"Actual Work State","Definition":"Actual Work State, 2 bits defined as 00=disabled\/off, 01=enabled\/on, 10=error, 11=undefined\/not installed","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 290 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" as reference for implementation guideline.\r\n\r\nThis DDE has been revised in 2012 to be used as the Actual Work State. A separate Setpoint Work State was added to the data dictionary at that time.\r\n\r\nOriginal comment: this DDE was a result of March 2005 TF10 meeting.","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":142,"DDEName":"Physical Setpoint Time Latency","Definition":"The Setpoint Value Latency Time is the time lapse between the moment of receival of a setpoint value command by the working set and the moment this setpoint value is physically applied on the device. That means if the setpoint value is communicated on the network (CAN bus) but the system needs 2 seconds to adjust the value physically on the desired unit (device element) then the Setpoint Latency Time is 2 seconds. \r\nThe setpoint time latency value can only be positive.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"The use of this DDE is to inform the overall system (e.g. Dektop Software, Task Controller) how the system works. The TC shall not shift this information into log files nor shall the device do that when sending actual values.","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":143,"DDEName":"Physical Actual Value Time Latency","Definition":"The Actual Value Latency Time is the time lapse between the moment this actual value is communicated to the Task Controller, and the moment that this actual value is physically applied on the device. That means if the system needs 2 seconds to calculate or measure a value before communicating it on the network, then the Actual Latency Time value is minus 2 seconds.\r\n\r\nDepending of the system characteristics the latency time could be negative or positive.\r\n\r\nIn case where the system communicates an actual value before the actual value has been physically applied the latency value should be positive.\r\n\r\nIn case where the system communicates an actual value after the actual value has been physically applied the latency value should be negative.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"The use of this DDE is to inform the overall system (e.g. Dektop Software, Task Controller) how the system works. The TC shall not shift this information into log files nor shall the device do that when sending actual values.\r\n\r\nExample for a positive value:\r\n\r\nA seed flow sensor is placed at the start of the seed tube. At the moment the sensor measures seed flow X, it takes Y seconds for this flow to reach the coulters. The measured value is ahead of the physical value of the unit (coulters). So the latency could be plus 2 seconds.\r\n\r\nExample for a negative value:\r\n\r\nA flow sensor has a delay in its response to a flow change that means it takes Y seconds to realize the change. At the moment the sensor measures flow X, the flow is already present for Y seconds on the physical unit. The actual value is ahead of measured value. So the latency could be minus 2 seconds.","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":144,"DDEName":"Yaw Angle","Definition":"Pivot \/ Yaw Angle of a DeviceElement","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"This DDE was a result of March 2005 TF10 meeting","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"0,001","MinimumValue":"-180000","MinimumDisplayValue":"-180,000","MaximumValue":"180000","MaximumDisplayValue":"180,000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[],"LastModifiedDate":"2005-05-09","Attachments":[]},{"DDIdentifier":145,"DDEName":"Roll Angle","Definition":"Roll Angle of a DeviceElement","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"This DDE was a result of March 2005 TF10 meeting","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"0,001","MinimumValue":"-180000","MinimumDisplayValue":"-180,000","MaximumValue":"180000","MaximumDisplayValue":"180,000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[],"LastModifiedDate":"2005-05-09","Attachments":[]},{"DDIdentifier":146,"DDEName":"Pitch Angle","Definition":"Pitch Angle of a DeviceElement","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"This DDE was a result of March 2005 TF10 meeting","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"0,001","MinimumValue":"-180000","MinimumDisplayValue":"-180,000","MaximumValue":"180000","MaximumDisplayValue":"180,000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[],"LastModifiedDate":"2005-05-09","Attachments":[]},{"DDIdentifier":147,"DDEName":"Log Count","Definition":"Log Counter, may be used to control data log record generation on a Task Controller","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This DDE was a result of March 2005 TF10 meeting","SAESPN":"not specified","SubmitDate":"2005-03-01","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2005-05-09","Attachments":[]},{"DDIdentifier":148,"DDEName":"Total Fuel Consumption","Definition":"Accumulated Fuel Consumption as Counter","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"","SAESPN":"not specified","SubmitDate":"2005-04-12","SubmitBy":"Stephan Zelleröhr","SubmitCompany":"103 - Agrocom GmbH & Co. Agrarsystem KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2005-05-09","Attachments":[]},{"DDIdentifier":149,"DDEName":"Instantaneous Fuel Consumption per Time","Definition":"Fuel consumption per time","sysUnitReadable":"Flow - mm³\/s","sysUnit":"mm³\/s","Comment":"","SAESPN":"not specified","SubmitDate":"2005-04-12","SubmitBy":"Stephan Zelleröhr","SubmitCompany":"103 - Agrocom GmbH & Co. Agrarsystem KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":150,"DDEName":"Instantaneous Fuel Consumption per Area","Definition":"Fuel consumption per area","sysUnitReadable":"Capacity per area unit - mm³\/m²","sysUnit":"mm³\/m²","Comment":"","SAESPN":"not specified","SubmitDate":"2005-04-12","SubmitBy":"Stephan Zelleröhr","SubmitCompany":"103 - Agrocom GmbH & Co. Agrarsystem KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":151,"DDEName":"Instantaneous Area Per Time Capacity","Definition":"Area per time capacity","sysUnitReadable":"Area per time unit - mm²\/s","sysUnit":"mm²\/s","Comment":" ","SAESPN":"not specified","SubmitDate":"2005-04-12","SubmitBy":"Stephan Zelleröhr","SubmitCompany":"103 - Agrocom GmbH & Co. Agrarsystem KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":153,"DDEName":"Actual Normalized Difference Vegetative Index (NDVI)","Definition":"The Normalized Difference Vegetative Index (NDVI) computed from crop reflectances as the difference between NIR reflectance in the 780 to 880 nm band and red reflectance in the 640 to 680 nm band divided by the sum of the NIR and red reflectance in the same bands.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Document attached.","SAESPN":"TBD","SubmitDate":"2008-04-28","SubmitBy":"Marvin Stone","SubmitCompany":"39 - Microfirm Inc.","BitResolution":"0,001","MinimumValue":"-1","MinimumDisplayValue":"-0,001","MaximumValue":"1","MaximumDisplayValue":"0,001","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"0000-00-00","Attachments":[{"Name":"Definition summary","Filename":"NDVI_definition_summary.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/173\/NDVI_definition_summary.pdf"}]},{"DDIdentifier":154,"DDEName":"Physical Object Length","Definition":"Length of device element (dimension along the X-axis)","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The reference point of the device element shall be located in the center of the device element","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Hans Jürgen Nissen","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":155,"DDEName":"Physical Object Width","Definition":"Width of device element (dimension along the Y-axis)","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The reference point of the device element shall be located in the center of the device element","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Hans Jürgen Nissen","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":156,"DDEName":"Physical Object Height","Definition":"Height of device element (dimension along the Z-axis)","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The reference point of the device element shall be located in the center of the device element","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Hans Jürgen Nissen","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":157,"DDEName":"Connector Type","Definition":"Specification of the type of coupler. The value definitions are:\r\n0 = unknown (default),\r\n1 = ISO 6489-3 Tractor drawbar,\r\n2 = ISO 730 Three-point-hitch semi-mounted,\r\n3 = ISO 730 Three-point-hitch mounted,\r\n4 = ISO 6489-1 Hitch-hook,\r\n5 = ISO 6489-2 Clevis coupling 40,\r\n6 = ISO 6489-4 Piton type coupling,\r\n7 = ISO 6489-5 CUNA hitch, or ISO 5692-2 Pivot wagon hitch\r\n8 = ISO 24347 Ball type hitch\r\nall other values are reserved for future assignments.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This DDE allows systems to automatically select the connection between devices. For instance, when 2 devices are on the network that declare device elements with the same connector type, the system can connect them accordingly.\r\nThis DDE shall be used with the Device Element of type \"Connector\" only.","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Hans Jürgen Nissen","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"8","MaximumDisplayValue":"8","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-03-09","Attachments":[]},{"DDIdentifier":158,"DDEName":"Prescription Control State","Definition":"Defines and synchronise the actual state of the prescription system. The state is represented by the lowest significant 2 bits in the lowest significant byte of the process data value: Byte 1: bit 0-1: 00 = manual\/off, 01 = auto\/on, 10 = error indicator, 11 = undefined\/not installed. bits 2-7: reserved set to 0. Byte 2-4: reserved set to 0.\r\n\r\nThe DDI shall support the On Change trigger so that the TC is able to get informed when the value gets changed by the Working Set Master. The TC shall active this trigger when using the DDI.\r\n\r\nSee attachment for more information","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The prescription control master and its clients need to be synchronized in terms of their general state or activation by the user (System activated\/deactivated in individual setups). This DDE serves 2 purposes, one is to synchronize the prescription control state and the other is to enable a TC client to announce the support and initial state of its prescription control capabilities. Synchronisation by the prescription master (TC) is done by setting the prescription state of connected TC clients with a process data set value message with this DDE. It is recommended that TC clients reply their state immediately (within 250 ms) when such a message is received. The property flag \"setable\" and the trigger method \"on change\" shall be used with this DDE. The state \"manual\/off\" indicates that the device is in manual state and will ignore all prescription commands. The \"auto\/on\" state indicates that the client accepts the prescription commands as far as its overall process state allows.","SAESPN":"","SubmitDate":"2008-11-07","SubmitBy":"Matthias Meyer","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[{"Name":"Example Prescription Control State use","Filename":"PCS Implementation Example.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/203\/PCS%20Implementation%20Example.pdf"}]},{"DDIdentifier":159,"DDEName":"Number of Sub-Units per Section","Definition":"Specifies the number of sub-units for a section (e.g. number of nozzles per sprayer section or number of planter row units per metering device).","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This DDE is used for objects which have further sub-units per section, which are of interest to the operator but not needed for the Task Controller operation itself. With this information and the overall width of the section the system can calculate for instance the row spacing without having individual objects for each row in the DCD.","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Jason Walter","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":160,"DDEName":"Section Control State","Definition":"Specifies the actual state of section control. The value definitions are: Byte 1 (bitfield) Bit 0-1: 00 = manual\/off, 01 = auto\/on, 10 = error indicator, 11 = undefined\/not installed. Bits 2-7: reserved, set to 0. Bytes 2-4: reserved, set to 0.\r\n\r\nThe DDI shall support the On Change trigger so that the TC is able to get informed when the value gets changed by the Working Set Master. The TC shall active this trigger when using the DDI.\r\n\r\nSee attachment for more information","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"In section control systems, the section control master and its clients need to be synchronized in terms of their general state or activation by the user (System activated\/deactivated in individual setups). This DDE serves 2 purposes, one is to synchronize the section control state and the other is to enable a TC client to announce the support and initial state of its section control capabilities. Synchronisation by the section control master (TC) is done by setting the section control state of connected TC clients with a process data set value message with this DDE. It is recommended that TC clients reply their state immediately (within 250 ms) when such a message is received. The property flag \"setable\" and the trigger method \"on change\" should be used with this DDE. The state \"manual\/off\" indicates that the device is in manual state and will ignore all control commands for section control. The \"auto\/on\" state indicates that the client accepts the section control commands as far as its overall process state allows.\r\n\r\nListed below are 4 example Use Cases for this DDE:\r\n\r\nUse case \"Start up operation\":\r\n1. During a start up the implement shall set the SCS to ‘manual mode’.\r\n\r\nUse case \"Auto request from TC\":\r\n1. The implement receives an ‘auto’ request from TC.\r\n2. The implement shall check whether all setup conditions are fulfilled to allow section control.\r\n3. If this check is ok: The implement may respond with ‘auto mode’ and set its internal SCS client to ‘auto mode’.\r\n4. If this check not ok: The implement shall respond with ‘manual mode’. The internal state is still in manual mode. The TC may inform the operator accordingly.  \r\n\r\nUse case \"Manual request from TC\":\r\n1. The implement receives a manual request from TC.\r\n2. If the implement is still in ‘auto mode’ the implement shall set its internal SCS client to ‘manual mode’. \r\n\r\nUse case \"Loss of requirements for auto mode\":\r\n1. The implement internal setup conditions don’t allow for automatic section control anymore.\r\n2. The implement shall set the internal SCS client to ‘manual mode’.\r\n3. The implement shall send the SCS to inform the TC accordingly. On reception of this ‘manual mode’ the TC\/Section Control Master may inform the operator accordingly. \r\n","SAESPN":"","SubmitDate":"2008-12-03","SubmitBy":"Matthias Meyer","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":161,"DDEName":"Actual Condensed Work State (1-16)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 1 to 16 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See attachment on DDI 290 \"ISO11783-11-DDI-290-SetpointCondensedWorkState\" for implementation guideline.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":162,"DDEName":"Actual Condensed Work State (17-32)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 17 to 32 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":163,"DDEName":"Actual Condensed Work State (33-48)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 33 to 48 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":164,"DDEName":"Actual Condensed Work State (49-64)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 49 to 64 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":165,"DDEName":"Actual Condensed Work State (65-80)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 65 to 80 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":166,"DDEName":"Actual Condensed Work State (81-96)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 81 to 96 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":167,"DDEName":"Actual Condensed Work State (97-112)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 97 to 112 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":168,"DDEName":"Actual Condensed Work State (113-128)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 113 to 128 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":169,"DDEName":"Actual Condensed Work State (129-144)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 129 to 144 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, tthen he device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":170,"DDEName":"Actual Condensed Work State (145-160)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 145 to 160 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":171,"DDEName":"Actual Condensed Work State (161-176)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 161 to 176 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":172,"DDEName":"Actual Condensed Work State (177-192)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 177 to 192 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":173,"DDEName":"Actual Condensed Work State (193-208)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 193 to 208 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":174,"DDEName":"Actual Condensed Work State (209-224)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 209 to 224 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":175,"DDEName":"Actual Condensed Work State (225-240)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 225 to 240 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":176,"DDEName":"Actual Condensed Work State (241-256)","Definition":"Combination of the actual work states of individual sections or units (e.g. nozzles) number 241 to 256 into a single actual work state of their parent device element. The actual condensed work state contains the child element actual work states, in the driving direction from left to right, where the leftmost child element actual work state are the 2 lowest significant bits of the Process Data Value. Each child device elements actual work state is represented by 2 bits and defined as: 00 = disabled\/off, 01 = enabled\/on, 10 = error indicator, 11 = undefined\/not installed. In total 16 child device element actual work states can be contained in one actual condensed work state of their parent device element. If less than 16 child device element actual work states are available, then the unused bits shall be set to value 11 (not installed). When the parent device element contains the Actual Condensed Work State DDE, then the device descriptor shall not contain the individual actual work state DDEs of the child device elements.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the DDI 161 attachment \"ISO11783-11-DDI-289-SetpointWorkState\" for implementation guidelines.\r\n\r\nThis DDE is used to reduce number of messages. Individual work state messages for a many-sectioned device can potentially cause performance issues due to overloading communication. With this DDE, 16 work states can be sent via a single message, resulting in less traffic to convey on\/off status for an entire device.","SAESPN":"","SubmitDate":"2008-01-14","SubmitBy":"Adam Bogenrief","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":177,"DDEName":"Actual length of cut","Definition":"Actual length of cut for harvested material, e.g. Forage Harvester or Tree Harvester.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"none.","SAESPN":"","SubmitDate":"2008-09-22","SubmitBy":"Hans Jürgen Nissen","SubmitCompany":"33 - John Deere","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483,647","MaximumDisplayValue":"2,147,484","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":178,"DDEName":"Element Type Instance","Definition":"This DDI is used to enumerate and identify multiple device elements (DET) of the same type within one Device Description object pool. The value of this DDI is independent of the DET number. The combination of device element type and value of Element Type Instance ETI represents a unique object inside the device description object pool and therefore shall exist only once per object pool. Recommendation: The definition of the device elements should be made from left to right direction or from front to back direction.  When in a matrix, count left-to-right first, then front-to-back and at last top-to-bottom. See attachment for more information.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This DDE allows the system to communicate with a device element object independent of the device element number. The same tank of a seeder for instance could have various device element numbers based upon the DDD. The DDD structure may change during setup the implement. In this case a unique implement tank might has a different element number as before. Particular if the Task Controller (TC) use a user interface to display and change data by the operator. Therefore the TC needs clear or rather unique device element information. Assign this DDE for instance to a DET of type bin. This number can be displayed to the operator while it may be printed physically at the bin. The ETI number range from 0 to 65533 inside the object pool corresponds to a displayed value from 1 to 65534 on a user interface or physical device.","SAESPN":"","SubmitDate":"2010-01-15","SubmitBy":"Matthias Meyer","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"65533","MaximumDisplayValue":"65533","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2010-03-12","Attachments":[{"Name":"Example Device Descriptions with Element Type Instance DDI","Filename":"Mixed product implement DDD recommendation 20100118.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/204\/Mixed%20product%20implement%20DDD%20recommendation%2020100118.pdf"}]},{"DDIdentifier":179,"DDEName":"Actual Cultural Practice","Definition":"This DDI is used to define the current cultural practice which is performed by an individual device operation. For instance a planter\/seeder could provide a sowing and a fertilizing operation at the same time.\r\n \r\nThe cultural practice value definitions are: 0=Unknown, 1=Fertilizing, 2=Sowing and Planting, 3=Crop Protection, 4=Tillage, 5=Baling, 6=Mowing, 7=Wrapping, 8=Harvesting, 9=Forage Harvesting, 10=Transport, 11=Swathing, 12=Slurry\/Manure Application, 13-255=Reserved for future Assignment\r\n\r\nSee attachment for more information.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Implements as Planter or Seeder which provides more than one product application need an option to sign the cultural practice that is performed by each operation. More then ever if the applied products have the same unit type. As for instance a seeder provides a sowing and fertilizing operation which have both mass per area as unit defined. In this case it is not clear to the TC that the second operation is a fertilizing operation. Particular if the TC owns a user interface to display these information to the operator. Through this DDE the TC user interface can display the appropriate information. Adding this DDI to the device element of type device the main cultural practice of the device could be defined. For instance a baler will claim on the bus as forage device class and have set the actual cultural practice as baling.","SAESPN":"","SubmitDate":"2010-01-15","SubmitBy":"Matthias Meyer","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-01-28","Attachments":[{"Name":"","Filename":"Multiple and Single Product Implement Description.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/205\/Multiple%20and%20Single%20Product%20Implement%20Description.pdf"}]},{"DDIdentifier":180,"DDEName":"Device Reference Point (DRP) to Ground distance","Definition":"This DDI is used to specify the distance from the Device Reference Point (DRP) down to the ground surface. The DRP to Ground DDI shall be attached only to the Device Element (DET) with element number zero.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Depending on the application it might be required to know the distance of a device element down to the ground. All device element offsets refer to the DRP which is the centre of the device coordinate system and usually not at the ground surface. For instance the DRP of a tractor is the centre of the rear axle. In this case the distance from a GPS receiver (DET of type navigation reference) attached on the roof of the cab is calculated through sum up the Z-offset of the DET and the distance of the DRP to ground. The value of the DRP in this case is equivalent to the radius of the rolling wheel which is attached on the tractor rear axle.","SAESPN":"","SubmitDate":"2010-01-15","SubmitBy":"Matthias Meyer","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":181,"DDEName":"Dry Mass Per Area Yield","Definition":"Actual Dry Mass Per Area Yield. The definition of dry mass is the mass with a reference moisture specified by DDI 184.","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"The earlier defined DDI 84 is the mass per area that is measured on e.g. harvesting equipment as a mass including a possibly unknown moisture percentage. This DDI 181 is the mass per area yield, corrected to a reference moisture.","SAESPN":"","SubmitDate":"2010-01-29","SubmitBy":"Lyle Jensen","SubmitCompany":"102 - AGCO GmbH & Co","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":182,"DDEName":"Dry Mass Per Time Yield","Definition":"Actual Dry Mass Per Time Yield. The definition of dry mass is the mass with a reference moisture specified by DDI 184.","sysUnitReadable":"Mass flow - mg\/s","sysUnit":"mg\/s","Comment":"The earlier defined DDI 87 is the mass per time that is measured on e.g. harvesting equipment as a mass including a possibly unknown moisture percentage. This DDI 182 is the mass per time yield, corrected to a reference moisture.","SAESPN":"","SubmitDate":"2010-01-29","SubmitBy":"Lyle Jensen","SubmitCompany":"102 - AGCO GmbH & Co","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":183,"DDEName":"Yield Total Dry Mass","Definition":"Accumulated Yield specified as dry mass. The definition of dry mass is the mass with a reference moisture specified by DDI 184.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"The earlier defined DDI 90 is considered to be the total mass that is measured on e.g. harvesting equipment as a mass including a possibly unknown moisture percentage. This DDI 183 is the yield total mass, corrected to a reference moisture.","SAESPN":"","SubmitDate":"2010-01-29","SubmitBy":"Lyle Jensen","SubmitCompany":"102 - AGCO GmbH & Co","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":184,"DDEName":"Reference Moisture For Dry Mass","Definition":"Moisture percentage used for the dry mass DDIs 181, 182 and 183.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Example: this definition is similar to the \"Standard Payable Moisture\" term used by farmers.","SAESPN":"","SubmitDate":"2010-01-29","SubmitBy":"Lyle Jensen","SubmitCompany":"102 - AGCO GmbH & Co","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":185,"DDEName":"Seed Cotton Mass Per Area Yield","Definition":"Seed cotton yield as mass per area, not corrected for a possibly included lint percantage.","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"This Seed Cotton Mass Per Area Yield is the mass of the raw harvested cotton product as it is measured on e.g. harvesting equipment.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":186,"DDEName":"Lint Cotton Mass Per Area Yield","Definition":"Lint cotton yield as mass per area.","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"This Lint Cotton Mass Per Area Yield is the mass of the lint after it has been removed from the seed cotton at a cotton gin. Calculated by use of the Lint Turnout Percentage.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":187,"DDEName":"Seed Cotton Mass Per Time Yield","Definition":"Seed cotton yield as mass per time, not corrected for a possibly included lint percantage.","sysUnitReadable":"Mass flow - mg\/s","sysUnit":"mg\/s","Comment":"This Seed Cotton Mass Per Time Yield is the mass of the raw harvested cotton product as it is measured on e.g. harvesting equipment.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":188,"DDEName":"Lint Cotton Mass Per Time Yield","Definition":"Lint cotton yield as mass per time.","sysUnitReadable":"Mass flow - mg\/s","sysUnit":"mg\/s","Comment":"This Lint Cotton Mass Per Time Yield is the mass of the lint after it has been removed from the seed cotton at a cotton gin. Calculated by use of the Lint Turnout Percentage.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":189,"DDEName":"Yield Total Seed Cotton Mass","Definition":"Accumulated yield specified as seed cotton mass, not corrected for a possibly included lint percantage.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This Yield Total Seed Cotton Mass is the total mass of the raw harvested cotton product as it is measured on e.g. harvesting equipment.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":190,"DDEName":"Yield Total Lint Cotton Mass","Definition":"Accumulated yield specified as lint cotton mass.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This Yield Total Lint Cotton Mass is the total lint cotton mass, after it has been removed from the total seed cotton at a cotton gin.","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":191,"DDEName":"Lint Turnout Percentage ","Definition":"Percent of lint in the seed cotton.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"","SAESPN":"","SubmitDate":"2010-02-26","SubmitBy":"Andy Beck","SubmitCompany":"33 - John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2010-03-12","Attachments":[]},{"DDIdentifier":192,"DDEName":"Ambient temperature","Definition":"Ambient temperature measured by a machine. Unit is milli-Kelvin (mK). ","sysUnitReadable":"Temperature - mK","sysUnit":"mK","Comment":"","SAESPN":"","SubmitDate":"2011-01-17","SubmitBy":"Timo Oksanen","SubmitCompany":"Aalto University","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":193,"DDEName":"Setpoint Product Pressure","Definition":"Setpoint Product Pressure to adjust the pressure of the product flow system at the point of dispensing.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"On pressure-based control systems, it is important to be able to monitor and control the system pressure to ensure the proper flow rate and droplet size.  Being able to display and log pressure is important. On sprayers, this would be the boom pressure.","SAESPN":"","SubmitDate":"2011-01-19","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2011-03-27","Attachments":[]},{"DDIdentifier":194,"DDEName":"Actual Product Pressure","Definition":"Actual Product Pressure is the measured pressure in the product flow system at the point of dispensing.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"On pressure-based control systems, it is important to be able to monitor and conrol the system pressure to ensure the proper flow rate and droplet size.  Being able to display and log pressure is important. On sprayers, this would be the boom pressure.","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":195,"DDEName":"Minimum Product Pressure","Definition":"Minimun Product Pressure in the product flow system at the point of dispensing. ","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"Minimum system product pressure to ensure a consistent product flow.\r\nSee also \"Setpoint Product Pressure\"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":196,"DDEName":"Maximum Product Pressure","Definition":"Maximum Product Pressure in the product flow system at the point of dispensing. ","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"Maximum system product to ensure a stable and safe product flow.\r\nSee also \"Setpoint Product Pressure\"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":197,"DDEName":"Setpoint Pump Output Pressure","Definition":"Setpoint Pump Output Pressure to adjust the  pressure at the output of the solution pump.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2011-01-19","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2011-03-27","Attachments":[]},{"DDIdentifier":198,"DDEName":"Actual Pump Output Pressure","Definition":"Actual Pump Output Pressure measured at the output of the solution pump.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":199,"DDEName":"Minimum Pump Output Pressure","Definition":"Minimum Pump Output Pressure for the output pressure of the solution pump.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":200,"DDEName":"Maximum Pump Output Pressure","Definition":"Maximum Pump Output Pressure for the output pressure of the solution pump.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":201,"DDEName":"Setpoint Tank Agitation Pressure","Definition":"Setpoint Tank Agitation Pressure to adjust the pressure for a stir system in a tank.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"In a liquid application system, this is the pressure used to stir the tank contents to prevent products in liquid suspension from settling in the tank.","SAESPN":"","SubmitDate":"2011-01-19","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2011-03-27","Attachments":[]},{"DDIdentifier":202,"DDEName":"Actual Tank Agitation Pressure","Definition":"Actual Tank Agitation Pressure measured by the tank stir system.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"In a liquid application system, this is the pressure used to stir the tank contents to prevent products in liquid suspension from settling in the tank. Typically measured at the agitation manifold.","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":203,"DDEName":"Minimum Tank Agitation Pressure","Definition":"Minimun Tank Agitation Pressure for a stir system in a tank.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"Minimum tank agitation pressure to prevent products in liquid suspension from settling in the tank.\r\nSee also \"Setpoint Tank Agitation Pressure\".","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":204,"DDEName":"Maximum Tank Agitation Pressure","Definition":"Maximun Tank Agitation Pressure for a stir system in a tank.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"Maximum tank agitation pressure to prevent products in liquid suspension from settling in the tank.\r\nSee also \"Setpoint Tank Agitation Pressure\"","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"0,1","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748364,8","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-04-05","Attachments":[]},{"DDIdentifier":205,"DDEName":"SC Turn On Time","Definition":"The Section Control Turn On Time defines the overall time lapse between the moment the TC sends a turn on section command to the working set and the moment this section is physically turned on and the product is applied.\r\nThe working set may support this DDE as an optional feature to provide the possibility to store the time settings direct on the device to make the settings available after a power cycle. Therefore this DDE needs always to be setable by the TC and shall not be used to change any working set system behavior. \r\n\r\nThe DDI shall support the On Change trigger so that the TC is able to get informed when the value gets changed by the Working Set Master. The TC shall active this trigger when using the DDI.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"The SC Turn On Time setting is used to compensate the average physical machine reaction time (Electrical & Mechanical) from the moment the Task Controller send the command and the Working Set applies the product. \r\nTo find the right time setting for the used system combination of Task Controller and Working Set it could take awhile and therefore it is a big benefit to store the setting on the working set to make them again available after a power cycle. For working sets supporting Section Control it is recommended to add SC Turn On Time to its device description and make it setable. \r\nIn case where the device description contains also Physical Setpoint Time Latency or Physical Actual Time Latency the TC Turn On Time will always supercede it.","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2011-03-28","Attachments":[]},{"DDIdentifier":206,"DDEName":"SC Turn Off Time","Definition":"The Section Control Turn Off Time defines the overall time lapse between the moment the TC sends a turn off section command to the working set and the moment this section is physically turned off.\r\nThe working set may support this DDE as an optional feature to provide the possibility to store the time settings direct on the device to make the settings available after a power cycle. Therefore this DDE needs always to be setable by the TC and shall not be used to change any working set system behavior. \r\n\r\nThe DDI shall support the On Change trigger so that the TC is able to get informed when the value gets changed by the Working Set Master. The TC shall active this trigger when using the DDI.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"The SC Turn Off Time setting is used to compensate the average physical machine reaction time (Electrical & Mechanical) from the moment the Task Controller send the command and the Working Set turns off the sections. \r\nTo find the right time setting for the used system combination of Task Controller and Working Set it could take awhile and therefore it is a big benefit to store the setting on the Working Set to make them again available after a power cycle. For Working Sets supporting Section Control it is recommended to add SC Turn Off Time to its device description and make it setable. ","SAESPN":"","SubmitDate":"2011-03-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2011-03-28","Attachments":[]},{"DDIdentifier":207,"DDEName":"Wind speed","Definition":"Wind speed measured in the treated field at the beginning of operations or on the application implement during operations. Measurements at to be made at 2m height or 1 m over the canopy in tree and bush crops.\r\nOn implements the wind speed needs to be compansated by implement true ground speed and heading.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"Requested by TC23 SC6 WG15","SAESPN":"","SubmitDate":"2011-03-16","SubmitBy":"Bob Benneweis","SubmitCompany":"Benneweis Consulting Ltd","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100 000 000","MaximumDisplayValue":"100 000 000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","5 - Fertilizer","6 - Sprayers","10 - Irrigation","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":208,"DDEName":"Wind direction","Definition":"Wind direction measured in the treated field at the beginning of operations or on the application implement during operations. Measurements at to be made at 2m height or 1 m over the canopy in tree and bush crops.\r\nOn implements the wind direction needs to be compansated by implement true ground speed and heading.\r\n","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"","SAESPN":"","SubmitDate":"2011-03-16","SubmitBy":"Bob Benneweis","SubmitCompany":"Benneweis Consulting Ltd","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"359","MaximumDisplayValue":"359","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","5 - Fertilizer","6 - Sprayers","10 - Irrigation","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":209,"DDEName":"Air Humidity","Definition":"Ambient humidty measured by a weather station in a treated field or on the application implement.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"","SubmitDate":"2011-03-16","SubmitBy":"Bob Benneweis","SubmitCompany":"Benneweis Consulting Ltd","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100","MaximumDisplayValue":"100","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","5 - Fertilizer","6 - Sprayers","7 - Harvesters","9 - Forage harvester","10 - Irrigation","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2011-04-04","Attachments":[]},{"DDIdentifier":210,"DDEName":"Sky conditions","Definition":"This DDE is used to define the current sky conditions during operation. The METAR format and its abbrivations is used as follows to define the sky conditions:\r\n\r\nCLR=Clear, NSC=Mostly Sunny, FEW=Partly Sunny, SCT=Partly cloud, BKN=Mostly cloudy, OVC=overcast\/cloudy\r\n\r\n1. Byte = first character\r\n2. Byte = second character\r\n3. Byte = third character\r\n4. Byte = fourt character\r\n\r\nUnused bytes shall be set to 0x20\r\nByte 1 to 4 set to 0x00 = error\r\nByte 1 to 4  set to 0xFF = not available","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"To setup the METAR abbrivations the IS0 8859-1 standard is used.\r\nFrom the Latin-1 printable characters set the capitals from \"A\" (0x41) to \"Z\" (0x5A ) shall be used. The space \"SP\" (0x20) is used for unused bytes.\r\n\r\nExample for Clear (CLR):\r\n1. Byte = 0x43(C)\r\n2. Byte = 0x4C(L)\r\n3. Byte = 0x52 (R)\r\n4. Byte = 0x20 (unused) ","SAESPN":"","SubmitDate":"2011-03-16","SubmitBy":"Bob Benneweis","SubmitCompany":"Benneweis Consulting Ltd","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","5 - Fertilizer","6 - Sprayers","7 - Harvesters","9 - Forage harvester","10 - Irrigation","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2011-04-29","Attachments":[]},{"DDIdentifier":211,"DDEName":"Last Bale Flakes per Bale","Definition":"The number of flakes in the most recently produced bale.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler can add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":212,"DDEName":"Last Bale Average Moisture","Definition":"The average moisture in the most recently produced bale.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100000000","MaximumDisplayValue":"100000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":213,"DDEName":"Last Bale Average Strokes per Flake","Definition":"The number of baler plunger compression strokes per flake that has entered the bale compression chamber. This value is the average valid for the most recently produced bale.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":214,"DDEName":"Lifetime Bale Count","Definition":"The number of bales produced by a machine over its entire lifetime. This DDE value can not be set through the process data interface but can be requested and added to a datalog. This DDE value is not affected by a task based total bales but will increment at the same rate as the task based total.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":215,"DDEName":"Lifetime Working Hours","Definition":"The number of working hours of a device element over its entire lifetime. This DDE value can not be set through the process data interface but can be requested and added to a datalog.","sysUnitReadable":"Hour - h","sysUnit":"h","Comment":"The recommended use of this DDE is to be transmitted on a request basis only.\r\n\r\nThe Lifetime Working Hours is the overall time when the device was turned on.\r\n\r\nThis total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.\r\n\r\nNote: unit is h and the bit resolution is 0.05 h\/bit, this aligns the resolution and range with similar SPNs as defined in SAE J1939-71.\r\n","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"0,05","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"210554060,75","MaximumDisplayValue":"10527703,038","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":216,"DDEName":"Actual Bale Hydraulic Pressure","Definition":"The actual value of the hydraulic pressure applied to the sides of the bale in the bale compression chamber.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"The actual pressure is the resultant of the baler controller targeting a certain setpoint plunger load.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":217,"DDEName":"Last Bale Average Hydraulic Pressure","Definition":"The average actual value of the hydraulic pressure applied to the sides of the bale in the bale compression chamber. This average is calculated over the most recently produced bale.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":218,"DDEName":"Setpoint Bale Compression Plunger Load","Definition":"The setpoint bale compression plunger load as a unitless number.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This value is measured \/ controlled for each new flake that entered the baler chamber and obtained at the rear dead end of the plunger.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2000","MaximumDisplayValue":"2000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":219,"DDEName":"Actual Bale Compression Plunger Load","Definition":"The actual bale compression plunger load as a unitless number.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"This is the plunger load measured at the rear dead end of the plunger cycle and only updated for each new flake that has entered the baler chamber.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2000","MaximumDisplayValue":"2000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-08-23","Attachments":[]},{"DDIdentifier":220,"DDEName":"Last Bale Average Bale Compression Plunger Load","Definition":"The average bale compression plunger load for the most recently produced bale.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2000","MaximumDisplayValue":"2000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":221,"DDEName":"Last Bale Applied Preservative","Definition":"The total preservative applied to the most recently produced bale.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":222,"DDEName":"Last Bale Tag Number","Definition":"The Last Bale Tag Number as a decimal number in the range of 0 to 4294967295. Note that the value of this DDI has the limitation of being an unsigned 32 bit number.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"For balers: the recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":223,"DDEName":"Last Bale Mass","Definition":"The mass of the bale that has most recently been produced.","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2011-04-30","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2011-04-30","Attachments":[]},{"DDIdentifier":224,"DDEName":"Delta T","Definition":"The difference between dry bulb temperature and wet bulb temperature measured by a weather station in a treated field or on the application equipment.","sysUnitReadable":"Temperature - mK","sysUnit":"mK","Comment":"This parameter is used to determine spray effectiveness in hot and dry environments. If the Delta T value is too high the effectiveness of the overall spray application does not match the requirement for this operation. This value can be used by the application to notify the operator about the effectiveness and whether he should continue with the application or not. It can also be used to document the application environment within the log files for the task. ","SAESPN":"","SubmitDate":"2011-05-25","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer","6 - Sprayers","7 - Harvesters","9 - Forage harvester","17 - Sensor System"],"LastModifiedDate":"2011-06-20","Attachments":[]},{"DDIdentifier":225,"DDEName":"Setpoint Working Length","Definition":"Setpoint Working Length of Device Element.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This is the desired working length of the device element during operation. For the geometry definition and example use, see the attachment of the Actual Working Length, DDI 226.","SAESPN":"","SubmitDate":"2011-07-12","SubmitBy":"Moritz Roeingh","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2011-08-31","Attachments":[]},{"DDIdentifier":226,"DDEName":"Actual Working Length","Definition":"Actual Working Length of a Device Element.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Used for Section Control. By using the Actual Working Length of a device element a rectangular area is defined. This area represents the current working area and defines offsets for turning sections on and off by Section Control. The Actual Working Length parameter is useful for fertilizer spreaders and similar implements.","SAESPN":"","SubmitDate":"2011-07-07","SubmitBy":"Moritz Roeingh","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2011-08-31","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-226-ActualWorkingLength-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/257\/ISO11783-11-DDI-226-ActualWorkingLength-v1.pdf"}]},{"DDIdentifier":227,"DDEName":"Minimum Working Length","Definition":"Minimum Working Length of Device Element.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This is the minimum working length of the device element during operation. For the geometry definition and example use, see the attachment of the Actual Working Length, DDI 226.","SAESPN":"","SubmitDate":"2011-07-12","SubmitBy":"Moritz Roeingh","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2011-08-31","Attachments":[]},{"DDIdentifier":228,"DDEName":"Maximum Working Length","Definition":"Maximum Working Length of Device Element.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"This is the maximum working length of the device element during operation. For the geometry definition and example use, see the attachment of the Actual Working Length, DDI 226.","SAESPN":"","SubmitDate":"2011-07-12","SubmitBy":"Moritz Roeingh","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2011-08-31","Attachments":[]},{"DDIdentifier":229,"DDEName":"Actual Net Weight","Definition":"Actual Net Weight value specified as mass","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The Actual Net Weight is the current measured mass by a weighing system.\r\nFor more information see attachment located at Actual Net Weight DDE","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-229-Weighing System Implementation.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/279\/ISO11783-11-DDI-229-Weighing%20System%20Implementation.pdf"}]},{"DDIdentifier":230,"DDEName":"Net Weight State","Definition":"Net Weight State, 2 bits defined as:\r\n00 = unstable measurement\r\n01 = stable measurement\r\n10 = error (measuring error)","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The Net Weight State indicates whether the current Actual Net Weight value is a reliable value or not. \r\nExample: After a mass of grain is filled into a grain cart it takes a while until the weighing system is able to provide the valid value of the load.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":231,"DDEName":"Setpoint Net Weight","Definition":"Setpoint Net Weight value.","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The Setpoint Net Weight value is used to prompt the weighing system to perform a tare procedure. For more information see attachment located at Actual Net Weight DDE.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":232,"DDEName":"Actual Gross Weight","Definition":"Actual Gross Weight value specified as mass","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The Actual Gross Weight is the overall measured mass by a weighing system. For more information see attachment located at Actual Net Weight DDE.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":233,"DDEName":"Gross Weight State","Definition":"Gross Weight State, 2 bits defined as:\r\n00 = unstable measurement\r\n01 = stable measurement\r\n10 = error (measuring error)","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The Gross Weight State indicates whether the current Actual Gross Weight value is a reliable value or not. For more information see attachment located at Actual Net Weight DDE.\r\n\r\nExample: After a mass of grain is filled into a grain cart it takes a while until the weighing system is able to provide the valid value of the load.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":234,"DDEName":"Minimum Gross Weight","Definition":"Minimum Gross Weight specified as mass.","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The Minimum Gross Weight may represent the minimum value of the effective range of the weighing system. For more information see attachment located at Actual Net Weight DDE.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":235,"DDEName":"Maximum Gross Weight","Definition":"Maximum Gross Weight specified as mass.","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"Maximum Gross Weight may represent the maximum value of the effective range of the weighing system. For more information see attachment located at Actual Net Weight DDE.","SAESPN":"","SubmitDate":"2011-09-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2011-09-28","Attachments":[]},{"DDIdentifier":236,"DDEName":"Thresher Engagement Total Time","Definition":"Accumulated time while the threshing mechanism is engaged","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This DDE represents the total engagement time of the threshing mechanism of the machine and is recommended to be used at maximum once within the device description in the device element that represents the machine.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":237,"DDEName":"Actual Header Working Height Status","Definition":"Actual status of the header being above or below the threshold height for the in-work state.\r\n2 bit status indicator:\r\n00=disabled\/off\/above threshold height\r\n01=enabled\/on\/below threshold height\r\n10=error\r\n11=undefined\/not installed","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The DDE has been defined to be able to communicate a more detailed work state of a machine.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-11-17","Attachments":[]},{"DDIdentifier":238,"DDEName":"Actual Header Rotational Speed Status","Definition":"Actual status of the header rotational speed being above or below the threshold for in-work state.\r\n2 bit status indicator:\r\n00=disabled\/off\/below threshold speed\r\n01=enabled\/on\/above threshold speed\r\n10=error\r\n11=undefined\/not installed","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The DDE has been defined to be able to communicate a more detailed work state of a machine.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":239,"DDEName":"Yield Hold Status","Definition":"Status indicator for the yield measurement system. When enabled\/on, the measurements from the yield measurement system are ignored and the yield is held constant.\r\n2 bit status indicator:\r\n00=disabled\/off\r\n01=enabled\/on\r\n10=error\r\n11=undefined\/not installed","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This status indicator can e.g. be set by the operator when entering an area of the field where the yield measurement system yield measurements should not be used.\r\nThis DDE shall not be setable by the TC.\r\nThe values of the following list of DDE's is are held constant when this DDE is enabled\/on: DDI's 83 to 91, 181 to 183 and 185 to 190.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":240,"DDEName":"Actual (Un)Loading System Status","Definition":"Actual status of the Unloading and\/or Loading system.  This DDE covers both Unloading and Loading of the device element wherein it is listed.\r\nByte 1:\r\n2 bit unloading status indicator:\r\n00=disabled\/off\r\n01=enabled\/on\/unloading\r\n10=error\r\n11=undefined\/not installed\r\nByte 2:\r\n2 bit loading status indicator:\r\n00=disabled\/off\r\n01=enabled\/on\/loading\r\n10=error\r\n11=undefined\/not installed","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":241,"DDEName":"Crop Temperature","Definition":"Temperature of harvested crop","sysUnitReadable":"Temperature - mK","sysUnit":"mK","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":242,"DDEName":"Setpoint Sieve Clearance","Definition":"Setpoint separation distance between Sieve elements","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":243,"DDEName":"Actual Sieve Clearance","Definition":"Actual separation distance between Sieve elements","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":244,"DDEName":"Minimum Sieve Clearance","Definition":"Minimal separation distance between Sieve elements","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":245,"DDEName":"Maximum Sieve Clearance","Definition":"Maximum separation distance between Sieve elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":246,"DDEName":"Setpoint Chaffer Clearance","Definition":"Setpoint separation distance between Chaffer elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":247,"DDEName":"Actual Chaffer Clearance","Definition":"Actual separation distance between Chaffer elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":248,"DDEName":"Minimum Chaffer Clearance","Definition":"Minimum separation distance between Chaffer elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":249,"DDEName":"Maximum Chaffer Clearance","Definition":"Maximum separation distance between Chaffer elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":250,"DDEName":"Setpoint Concave Clearance","Definition":"Setpoint separation distance between Concave elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":251,"DDEName":"Actual Concave Clearance","Definition":"Actual separation distance between Concave elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":252,"DDEName":"Minimum Concave Clearance","Definition":"Minimum separation distance between Concave elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":253,"DDEName":"Maximum Concave Clearance","Definition":"Maximum separation distance between Concave elements.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":254,"DDEName":"Setpoint Separation Fan Rotational Speed","Definition":"Setpoint rotational speed of the fan used for separating product material from non product material.","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":255,"DDEName":"Actual Separation Fan Rotational Speed","Definition":"Actual rotational speed of the fan used for separating product material from non product material.","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":256,"DDEName":"Minimum Separation Fan Rotational Speed","Definition":"Minimum rotational speed of the fan used for separating product material from non product material.","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":257,"DDEName":"Maximum Separation Fan Rotational Speed","Definition":"Maximum rotational speed of the fan used for separating product material from non product material.","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2011-10-17","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":258,"DDEName":"Hydraulic Oil Temperature","Definition":"Temperature of fluid in the hydraulic system.","sysUnitReadable":"Temperature - mK","sysUnit":"mK","Comment":"","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2000000","MaximumDisplayValue":"2000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":259,"DDEName":"Yield Lag Ignore Time","Definition":"Amount of time to ignore yield data, starting at the transition from the in-work to the out-of-work state. During this time, the yield sensor provides inconsistent or unreliable crop flow data.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"This DDE can be used to filter the yield data when creating yield maps. The values of the following list of DDE's may be inconsistent or unreliable during this yield lag ignore time: DDI's 83 to 91, 181 to 183 and 185 to 190.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":260,"DDEName":"Yield Lead Ignore Time","Definition":"Amount of time to ignore yield data, starting at the transition from the out-of-work to the in-work state. During this time, the yield sensor provides inconsistent or unreliable crop flow data.","sysUnitReadable":"Time - ms","sysUnit":"ms","Comment":"This DDE can be used to filter the yield data when creating yield maps. The values of the following list of DDE's may be inconsistent or unreliable during this yield lead ignore time: DDI's 83 to 91, 181 to 183 and 185 to 190.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":261,"DDEName":"Average Yield Mass Per Time","Definition":"Average Yield expressed as mass per unit time, not corrected for the reference moisture percentage DDI 184. This value is the average for a Task and may be reported as a total.","sysUnitReadable":"Mass flow - mg\/s","sysUnit":"mg\/s","Comment":"This Average Yield Mass Per Time is the mass that includes the average crop moisture (DDI 262) if this is measured on e.g. harvesting equipment.  This average yield mass per time is calculated as the yield total mass (DDI 90) divided by the effective total time (DDI 119) of the active task.\r\nWhen a task is resumed and its previously recorded totals are sent by the task controller to the connected working set, a situation can occur where there is a discrepancy between the yield total mass, the effective total time and the average yield mass per time values. In case all three of these DDI's are present in the device description and all three values are set by the task controller upon resuming a task, the working set shall compute its average yield mass per time from the yield total mass divided by the effective total time and shall discard the average yield mass per time value that it received from the task controller.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":262,"DDEName":"Average Crop Moisture","Definition":"Average Moisture of the harvested crop. This value is the average for a Task and may be reported as a total.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This is the average of the actual crop moisture (DDI 99) for the active task and is calculated as an average based upon the yield total mass (DDI 90).  In order to correctly calculate this value when a task is resumed, the yield total mass shall also be reported by the device as a total. When a task is resumed, the task controller sets both the yield total mass and the average crop moisture values. The device uses these values to derive the total moisture and calculate and report the new average crop moisture values for the resumed task.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":263,"DDEName":"Average Yield Mass Per Area","Definition":"Average Yield expressed as mass per unit area, not corrected for the reference moisture percentage DDI 184. This value is the average for a Task and may be reported as a total.","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"This Average Yield Mass Per Area is the mass that includes the average crop moisture (DDI 262) if this is measured on e.g. harvesting equipment.  This average yield mass per area is calculated as the yield total mass (DDI 90) divided by the total area (DDI 116) of the active task.\r\nWhen a task is resumed and its previously recorded totals are sent by the task controller to the connected working set, a situation can occur where there is a discrepancy between the yield total mass, the total area and the average yield mass per area values. In case all three of these DDI's are present in the device description and all three values are set by the task controller upon resuming a task, the working set shall compute its average yield mass per area from the yield total mass divided by the total area and shall discard the average yield mass per area value that it received from the task controller.","SAESPN":"","SubmitDate":"2011-07-08","SubmitBy":"Robert Waggoner","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2011-10-17","Attachments":[]},{"DDIdentifier":264,"DDEName":"Connector Pivot X-Offset","Definition":"X direction offset of a connector pivot point  relative to DRP.\r\nThis DDE shall be only attached to a DET element of type connector.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Some connector types are equipped with a pivot point which will influence the accuracy of applications as section control, prescription or sequence control. The Pivot X-Offset is used to define the distance from the device DRP to the connector pivot point in X direction.","SAESPN":"","SubmitDate":"2012-03-07","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-04-02","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-264-Connector Pivot X-Offset-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/367\/ISO11783-11-DDI-264-Connector%20Pivot%20X-Offset-v1.pdf"}]},{"DDIdentifier":265,"DDEName":"Remaining Area","Definition":"Remaining Area of a field, which is calculated from the total area and the processed area.","sysUnitReadable":"Area - m²","sysUnit":"m²","Comment":"See DDI attachment for further details.","SAESPN":"","SubmitDate":"2011-12-15","SubmitBy":"Markus Eikler","SubmitCompany":"Mueller Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2012-04-02","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-265-Remaining Area-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/319\/ISO11783-11-DDI-265-Remaining%20Area-v1.pdf"}]},{"DDIdentifier":266,"DDEName":"Lifetime Application Total Mass","Definition":"Entire Application Total Mass of the device lifetime.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer ","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":267,"DDEName":"Lifetime Application Total Count","Definition":"Entire Application Total Count of the device lifetime.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":268,"DDEName":"Lifetime Yield Total Volume","Definition":"Entire Yield Total Volume of the device lifetime.","sysUnitReadable":"Quantity per volume - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":269,"DDEName":"Lifetime Yield Total Mass","Definition":"Entire Yield Total Mass of the device lifetime.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":270,"DDEName":"Lifetime Yield Total Count","Definition":"Entire Yield Total Count of the device lifetime.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":271,"DDEName":"Lifetime Total Area","Definition":"Entire Total Area of the device lifetime.","sysUnitReadable":"Area - m²","sysUnit":"m²","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":272,"DDEName":"Lifetime Effective Total Distance","Definition":"Entire Total Distance of the device lifetime.","sysUnitReadable":"Distance - m","sysUnit":"m","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-03-09","Attachments":[]},{"DDIdentifier":273,"DDEName":"Lifetime Ineffective Total Distance","Definition":"Entire Ineffective Total Distance of the device lifetime.","sysUnitReadable":"Distance - m","sysUnit":"m","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-03-09","Attachments":[]},{"DDIdentifier":274,"DDEName":"Lifetime Effective Total Time","Definition":"Entire Effective Total Time of the device lifetime.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":275,"DDEName":"Lifetime Ineffective Total Time","Definition":"Entire Ineffective Total Time of the device lifetime.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":276,"DDEName":"Lifetime Fuel Consumption","Definition":"Entire Fuel Consumption of the device lifetime.","sysUnitReadable":"Capacity count - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"0,5","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"1073741823,5","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":277,"DDEName":"Lifetime Average Fuel Consumption per Time","Definition":"Entire Average Fuel Consumption per Time of the device lifetime.","sysUnitReadable":"Flow - mm³\/s","sysUnit":"mm³\/s","Comment":"This is the overall average of the device. This average does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"","SubmitCompany":"","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":278,"DDEName":"Lifetime Average Fuel Consumption per Area","Definition":"Entire Average Fuel Consumption per Area of the device lifetime.","sysUnitReadable":"Capacity per area unit - mm³\/m²","sysUnit":"mm³\/m²","Comment":"This is the overall average of the device. This average does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":279,"DDEName":"Lifetime Yield Total Dry Mass","Definition":"Entire Yield Total Dry Mass of the device lifetime.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":280,"DDEName":"Lifetime Yield Total Seed Cotton Mass","Definition":"Entire Yield Total Seed Cotton Mass of the device lifetime.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":281,"DDEName":"Lifetime Yield Total Lint Cotton Mass","Definition":"Entire Yield Total Lint Cotton Mass of the device lifetime.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":282,"DDEName":"Lifetime Threshing Engagement Total Time","Definition":"Entire Threshing Engagement Total Time of the device lifetime.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-09","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":283,"DDEName":"Precut Total Count","Definition":"The total number of pre-cutted product units produced by a device during an operation.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Precut Total Count is a total of a device element. It is intended to be used as a task based total value and therefore it is recommended to support the on-time and on-change trigger methods. The total trigger method and the setable property are required for this DDE.","SAESPN":"","SubmitDate":"2012-01-12","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":284,"DDEName":"Uncut Total Count","Definition":"The total number of un-cutted product units produced by a device during an operation.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Uncut Total Count is a total of a device element. It is intended to be used as a task based total value and therefore it is recommended to support the on-time and on-change trigger methods. The total trigger method and the setable property are required for this DDE.","SAESPN":"","SubmitDate":"2012-01-12","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":285,"DDEName":"Lifetime Precut Total Count","Definition":"Entire Precut Total Count of the device lifetime.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-12","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":286,"DDEName":"Lifetime Uncut Total Count","Definition":"Entire Uncut Total Count of the device lifetime.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2012-01-12","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2012-02-15","Attachments":[]},{"DDIdentifier":287,"DDEName":"Setpoint Prescription Mode","Definition":"This DDE defines the source of the Task Controller set point value sent to the Control Function. This DDI shall be defined as DPD in the DDOP and needs to be setable. The TC shall then set this DDI before starting a prescription operation. The WS (Working Set) shall set this value to zero (0) after system start.  ","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The Task Controller Prescription Mode shall have the following values:\r\n  0 = Unknown \/ not defined\r\n  1 = Prescription Rate\r\n  2 = Prescription Default\r\n  3 = Prescription GPS loss\r\n  4 = Prescription Out Of Field\r\n  5 = Manual Entry\r\n  6 = Peer Control\r\n  7 and higher are reserved for future assignments","SAESPN":"","SubmitDate":"2013-09-23","SubmitBy":"Joe Tevis","SubmitCompany":"Topcon ","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"6","MaximumDisplayValue":"6","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-07-30","Attachments":[{"Name":"Prescription Mode and Control Function Mode Use Cases","Filename":"Prescription Mode Supporting Doc-v1.ppt","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/401\/Prescription%20Mode%20Supporting%20Doc-v1.ppt"}]},{"DDIdentifier":288,"DDEName":"Actual Prescription Mode","Definition":"This DDE defines the actual source of the set point value used by the Control Function. This DDI shall be defined as DPD in the DDOP and shall not be setable and need to support the on change trigger. The TC should request this DDI in case of an active prescription operation for documentation purpose. ","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The Control Function Prescription Mode sahll have one of the following values:\r\n  0 = Unknown \/ not defined\r\n  1 = TC rate\r\n  2 = Manual Entry\r\n  3 = Peer Control\r\n  4 = Max override\r\n  5 = Min override\r\n  6 and higher are reserved for future assignments","SAESPN":"","SubmitDate":"2013-09-23","SubmitBy":"Joe Tevis","SubmitCompany":"Topcon","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"5","MaximumDisplayValue":"5","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":289,"DDEName":"Setpoint Work State","Definition":"The Setpoint Work State DDI is the control command counterparts to the Work State DDI (141). The separation of the control commands through one DDI from the actual state communicated through another DDI enables verification of the transmission of the control commands independent from the effectuation of the requested control action.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See DDI 290 attachment for implementation guideline.","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"3","MaximumDisplayValue":"3","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":290,"DDEName":"Setpoint Condensed Work State (1-16)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 1 to 16 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2017-11-22","Attachments":[]},{"DDIdentifier":291,"DDEName":"Setpoint Condensed Work State (17-32)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 17 to 32 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":292,"DDEName":"Setpoint Condensed Work State (33-48)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 33 to 48 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":293,"DDEName":"Setpoint Condensed Work State (49-64)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 49 to 64 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":294,"DDEName":"Setpoint Condensed Work State (65-80)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 65 to 80 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":295,"DDEName":"Setpoint Condensed Work State (81-96)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 81 to 96 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":296,"DDEName":"Setpoint Condensed Work State (97-112)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 97 to 112 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":297,"DDEName":"Setpoint Condensed Work State (113-128)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 113 to 128 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":298,"DDEName":"Setpoint Condensed Work State (129-144)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 129 to 144 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":299,"DDEName":"Setpoint Condensed Work State (145-160)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 145 to 160 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":300,"DDEName":"Setpoint Condensed Work State (161-176)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 161 to 176 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":301,"DDEName":"Setpoint Condensed Work State (177-192)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 177 to 192 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":302,"DDEName":"Setpoint Condensed Work State (193-208)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 193 to 208 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":303,"DDEName":"Setpoint Condensed Work State (209-224)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 209 to 224 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":304,"DDEName":"Setpoint Condensed Work State (225-240)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 225 to 240 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":305,"DDEName":"Setpoint Condensed Work State (241-256)","Definition":"The Setpoint Condensed Work State DDIs are the control command counterparts to the Condensed Work States DDIs (161 – 176).\r\n\r\nThe value is a combination of the setpoint work states of individual sections or units (e.g. nozzles) number 241 to 256 into a single setpoint work state of their parent device element. The setpoint condensed work state contains the child element setpoint work states, in the driving direction from left to right, where the leftmost child element setpoint work state are the 2 lowest significant bits of the Process Data Value. Each child device elements setpoint work state is represented by 2 bits and defined as: 00 = disable\/off, 01 = enable\/on, 10 = error indicator, 11 = no change. In total 16 child device element setpoint work states can be contained in one setpoint condensed work state of their parent device element. If less than 16 child device element setpoint work states are available, then the unused bits shall be set to value 11 (no change). When the parent device element contains the Setpoint Condensed Work State DDE, then the device descriptor shall not contain the individual setpoint work state DDEs in the child device elements.\r\n\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See the Setpoint Work State DDI (289) attachment for backwards compatibility and implementation guidelines.\r\n","SAESPN":"","SubmitDate":"2012-01-19","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","14 - Special Crops"],"LastModifiedDate":"2012-04-02","Attachments":[]},{"DDIdentifier":306,"DDEName":"True Rotation Point  X-Offset ","Definition":"X direction offset of the device rotation point relative to the DRP.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For devices with more than one axle the rotation point can be located at another position within the device than the DRP. In this case, the True Rotation Point X and Y Offset DDIs shall be used to define the location of the rotation point on the device. Both DDI's shall be attached to the device element of type Device.","SAESPN":"","SubmitDate":"2012-06-05","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-07-03","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-306-True Rotation Point-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/370\/ISO11783-11-DDI-306-True%20Rotation%20Point-v1.pdf"}]},{"DDIdentifier":307,"DDEName":"True Rotation Point Y-Offset","Definition":"Y direction offset of the device rotation point relative to the DRP.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For devices with more than one axle the rotation point can be located at another position within the device than the DRP. In this case, the True Rotation Point X and Y Offset DDIs shall be used to define the location of the rotation point on the device. Both DDI's shall be attached to the device element of type Device. See also attachment of True Rotation Point X-Offset, DDI 306.","SAESPN":"","SubmitDate":"2012-06-05","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2012-07-03","Attachments":[]},{"DDIdentifier":308,"DDEName":"Actual Percentage Application Rate","Definition":"Actual Application Rate expressed as percentage","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Counterpart to DDI 140 (Percentage Application Rate Setpoint)","SAESPN":"","SubmitDate":"2012-06-05","SubmitBy":"Jan Steenbock","SubmitCompany":"98 - Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2012-07-03","Attachments":[]},{"DDIdentifier":309,"DDEName":"Minimum Percentage Application Rate","Definition":"Minimum Application Rate expressed as percentage","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Supplied by device as physical minimum, see also DDI 140.","SAESPN":"","SubmitDate":"2012-07-03","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2012-07-03","Attachments":[]},{"DDIdentifier":310,"DDEName":"Maximum Percentage Application Rate","Definition":"Maximum Application Rate expressed as percentage","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Supplied by device as physical maximum, see also DDI 140.","SAESPN":"","SubmitDate":"2012-07-03","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2012-07-03","Attachments":[]},{"DDIdentifier":311,"DDEName":"Relative Yield Potential","Definition":"Relative yield potential provided by a FMIS or a sensor or entered by the operator for a certain task expressed as percentage.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Relative yield potential could be used as input for an intelligent unit to calculate the appropriate amount of fertilizer \/ seed \/ etc. more accurate. Typical range is 80 to 120%. Expressed in ppm this is 800,000 to 1,200,000.","SAESPN":"","SubmitDate":"2012-07-26","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System"],"LastModifiedDate":"2012-08-27","Attachments":[]},{"DDIdentifier":312,"DDEName":"Minimum Relative Yield Potential","Definition":"Minimum potential yield expressed as percentage.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDIs is used by the system to provide information about its value range support for relative yield potential.","SAESPN":"","SubmitDate":"2012-07-29","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System"],"LastModifiedDate":"2012-08-27","Attachments":[]},{"DDIdentifier":313,"DDEName":"Maximum Relative Yield Potential","Definition":"Maximum potential yield expressed as percentage.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDIs is used by the system to provide information about its value range support for relative yield potential.","SAESPN":"","SubmitDate":"2012-08-27","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System"],"LastModifiedDate":"2012-08-27","Attachments":[]},{"DDIdentifier":314,"DDEName":"Actual Percentage Crop Dry Matter","Definition":"Actual Percentage Crop Dry Matter expressed as parts per million. ","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDE defines the actual percentage of dry matter in the harvested crop.","SAESPN":"","SubmitDate":"2012-09-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","17 - Sensor System"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":315,"DDEName":"Average Percentage Crop Dry Matter ","Definition":"Average Percentage Crop Dry Matter expressed as parts per million.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"This DDE defines the average percentage of dry matter in the harvested crop.","SAESPN":"","SubmitDate":"2012-09-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","17 - Sensor System"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":316,"DDEName":"Effective Total Fuel Consumption","Definition":"Accumulated total fuel consumption in working position.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"","SAESPN":"","SubmitDate":"2012-09-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":317,"DDEName":"Ineffective Total Fuel Consumption","Definition":"Accumulated total fuel consumption in non working position.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"","SAESPN":"","SubmitDate":"2012-09-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":318,"DDEName":"Effective Total Diesel Exhaust Fluid Consumption","Definition":"Accumulated total Diesel Exhaust Fluid consumption in working position.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"Example: Diesel Exhaust Fluid as specified per ISO22241.","SAESPN":"","SubmitDate":"2012-09-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":319,"DDEName":"Ineffective Total Diesel Exhaust Fluid Consumption","Definition":"Accumulated total Diesel Exhaust Fluid consumption in non working position.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"Example: Diesel Exhaust Fluid as specified per ISO22241.","SAESPN":"","SubmitDate":"2012-09-24","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers"],"LastModifiedDate":"2012-09-24","Attachments":[]},{"DDIdentifier":320,"DDEName":"Last loaded Weight","Definition":"Last loaded Weight value specified as mass","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"After a loading Procedure, this DDI sends the loaded Mass. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE","SAESPN":"","SubmitDate":"2013-01-14","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2013-02-04","Attachments":[{"Name":"Fix of typo and DDI number correction in DDI table","Filename":"ISO_11783-11-DDI_320-Weighing_Load_Unload-v3.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/388\/ISO_11783-11-DDI_320-Weighing_Load_Unload-v3.pdf"}]},{"DDIdentifier":321,"DDEName":"Last unloaded Weight","Definition":"Last unloaded Weight value specified as mass","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"After a unloading Procedure, this DDI sends the unloaded Mass. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE","SAESPN":"","SubmitDate":"2013-01-14","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2013-02-04","Attachments":[]},{"DDIdentifier":322,"DDEName":"Load Identification Number","Definition":"The Load Identification Number as a decimal number in the range of 0 to 4294967295. Note that the value of this DDI has the limitation of being an unsigned 32 bit number.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"The DDI Load Identification Number can be used together with the DDI “320 - Last loaded Weight” to document the loading of material on a weighing system. See also the attached document for more details. ","SAESPN":"","SubmitDate":"2013-05-21","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2013-07-15","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-322-Load_Identification_Number_v1-v2.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/393\/ISO11783-11-DDI-322-Load_Identification_Number_v1-v2.pdf"}]},{"DDIdentifier":323,"DDEName":"Unload Identification Number","Definition":"The Unload Identification Number as a decimal number in the range of 0 to 2147483647. Note that the value of this DDI has the limitation of being an unsigned 32 bit number.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"The DDI Unload Identification Number can be used together with the DDI “321 - Last Unloaded Weight” to document the unloading of material on a weighing system. See also the attached document for more details.","SAESPN":"","SubmitDate":"2013-07-15","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agratechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2013-07-15","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-323-Unload_Identification_Number_v1-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/399\/ISO11783-11-DDI-323-Unload_Identification_Number_v1-v1.pdf"}]},{"DDIdentifier":324,"DDEName":"Chopper Engagement Total Time","Definition":"Accumulated time while the chopping mechanism is engaged\r\n","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This DDE represents the total engagement time of the chopping mechanism of the machine and is recommended to be used at maximum once within the device description in the device element that represents the machine.\r\nThis DDE is designated for the chopping unit of a forage harvester. It could be also used for the straw chopper of a harvester. For combine harvesters please also see DDE 236 Threshing Engagement Total Time.\r\n","SAESPN":"","SubmitDate":"2013-06-17","SubmitBy":"Martin Sperlich","SubmitCompany":"CLAAS Agrosystems KGaA mbH & Co KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2013-07-15","Attachments":[]},{"DDIdentifier":325,"DDEName":"Lifetime Application Total Volume","Definition":"Entire Application Total Volume of the device lifetime.","sysUnitReadable":"Capacity count - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an\r\napplication controlled by a Task Controller. Therefore this DDE shall\r\nnot be setable within the device description and neither shall the\r\ndevice reset the value when the task status changes. It is up to the\r\ndevice control system when to reset this value.\r\nThe Working Set Master shall support the total trigger method for this\r\nDDE but shall not support the setable property.\r\nThe Task Controller can request and store this DDE at the end of a\r\ntask. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2013-09-02","SubmitBy":"Michael Köcher","SubmitCompany":"AMAZONE","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","9 - Forage harvester","10 - Irrigation"],"LastModifiedDate":"2013-09-27","Attachments":[]},{"DDIdentifier":326,"DDEName":"Setpoint Header Speed","Definition":"The setpoint rotational speed of the header attachment of a chopper, mower or combine","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2015-11-27","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2013-12-04","Attachments":[]},{"DDIdentifier":327,"DDEName":"Actual Header Speed","Definition":"The actual rotational speed of the header attachment of a chopper, mower or combine","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2013-12-04","Attachments":[]},{"DDIdentifier":328,"DDEName":"Minimum Header Speed","Definition":"The minimum rotational speed of the header attachment of a chopper, mower or combine","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"This is a value recommented by the manufacturer of the machine as the minimum\r\nspeed (unlike 0) for a propper working","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":329,"DDEName":"Maximum Header Speed","Definition":"The maximum rotational speed of the header attachment of a chopper, mower or combine","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"This is a value recommented by the manufacturer of the machine as the maximum speed the machine is able to offer","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":330,"DDEName":"Setpoint Cutting drum speed","Definition":"The setpoint speed of the cutting drum of a chopper ","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":331,"DDEName":"Actual Cutting drum speed","Definition":"The actual speed of the cutting drum of a chopper","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":332,"DDEName":"Minimum Cutting drum speed","Definition":"The minimum speed of the cutting drum of a chopper","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"This is a value recommented by the manufacturer of the machine as the minimum\r\nspeed (unlike 0) for a propper working","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":333,"DDEName":"Maximum Cutting drum speed","Definition":"The maximum speed of the cutting drum of a chopper","sysUnitReadable":"Quantity per time unit - \/s","sysUnit":"\/s","Comment":"This is a value recommented by the manufacturer of the machine as the maximum speed the machine is able to offer","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":334,"DDEName":"Operating Hours Since Last Sharpening","Definition":"This value describes the working hours since the last sharpening of the cutting device.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"As the sharpness of the cutting drums cutters on a harvester is an important indicator for cutting quality and an important factor for the fuel usage, this value provides information about quality and effectivity of the harvesting process","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","12 - Farmyard Work","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":335,"DDEName":"Front PTO hours","Definition":"The hours the Front PTO of the machine was running for the current Task","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This value provides information of the active working time for example of the header attachment of a selfpropelled machine","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":336,"DDEName":"Rear PTO hours","Definition":"The hours the Rear PTO of the machine was running for the current Task","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"This value provides information of the active working time for example of the header attachment of a selfpropelled machine","SAESPN":"","SubmitDate":"2014-01-17","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":337,"DDEName":"Lifetime Front PTO hours","Definition":"The hours the Front PTO of the machine was running for the lifetime of the machine","sysUnitReadable":"Hour - h","sysUnit":"h","Comment":"This value provides information of the active working time for example of the header attachment of a selfpropelled machine","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,1","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","12 - Farmyard Work","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":338,"DDEName":"Lifetime Rear PTO Hours","Definition":"The hours the Rear PTO of the machine was running for the lifetime of the machine","sysUnitReadable":"Hour - h","sysUnit":"h","Comment":"This value provides information of the active working time for example of the header attachment of a selfpropelled machine","SAESPN":"","SubmitDate":"2014-01-17","SubmitBy":"Meyer Matthias","SubmitCompany":"John Deere","BitResolution":"0,1","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":339,"DDEName":"Effective Total Loading Time","Definition":"The total time needed in the current task to load a product such as crop.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester","11 - Transport \/ Trailers","12 - Farmyard Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":340,"DDEName":"Effective Total Unloading Time","Definition":"The total time needed in the current task to unload a product crop.","sysUnitReadable":"Time count - s","sysUnit":"s","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","12 - Farmyard Work"],"LastModifiedDate":"2014-01-17","Attachments":[]},{"DDIdentifier":341,"DDEName":"Setpoint Grain Kernel Cracker Gap","Definition":"The setpoint gap (distance) of the grain kernel cracker drums in a chopper.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The gap (distance) of the grain kernel cracker is an indicator to the quality of chopped corn.","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-02-24","Attachments":[]},{"DDIdentifier":342,"DDEName":"Actual Grain Kernel Cracker Gap","Definition":"The actual gap (distance) of the grain kernel cracker drums in a chopper","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The actual gap (distance) of the grain kernel cracker is an indicator to the quality of chopped corn.","SAESPN":"","SubmitDate":"2014-02-25","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-02-25","Attachments":[]},{"DDIdentifier":343,"DDEName":"Minimum Grain Kernel Cracker Gap","Definition":"The minimum gap (distance) of the grain kernel cracker drums in a chopper","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The minimum gap (distance) of the grain kernel cracker that can be adjusted","SAESPN":"","SubmitDate":"2014-02-25","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-02-25","Attachments":[]},{"DDIdentifier":344,"DDEName":"Maximum Grain Kernel Cracker Gap","Definition":"The maximum gap (distance) of the grain kernel cracker drums in a chopper","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The maximum gap (distance) of the grain kernel cracker that can be adjusted.","SAESPN":"","SubmitDate":"2014-02-25","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-02-25","Attachments":[]},{"DDIdentifier":345,"DDEName":"Setpoint Swathing Width","Definition":"This is the setpoint swathing width of the swath created by a raker.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For mowers the working width DDIs will represent the with of the mower whereas swathing with will represent the swath with created by the mover.","SAESPN":"","SubmitDate":"2014-03-17","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2014-03-25","Attachments":[]},{"DDIdentifier":346,"DDEName":"Actual Swathing Width","Definition":"This is the width of the swath currently created by a raker.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For mowers the working width DDIs will represent the width of the mower whereas swathing width will represent the swath width created by the mover.","SAESPN":"","SubmitDate":"2014-03-17","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2014-03-25","Attachments":[]},{"DDIdentifier":347,"DDEName":"Minimum Swathing Width","Definition":"This is the minimum swath width the raker can create.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For mowers the working width DDIs will represent the width of the mower whereas swathing with will represent the swath with created by the mover.","SAESPN":"","SubmitDate":"2014-03-17","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2014-03-25","Attachments":[]},{"DDIdentifier":348,"DDEName":"Maximum Swathing Width","Definition":"This is the maximum with of the swath the raker can create.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For mowers the working width DDIs will represent the width of the mower whereas swathing width will represent the swath width created by the mover.","SAESPN":"","SubmitDate":"2014-03-17","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2014-03-25","Attachments":[]},{"DDIdentifier":349,"DDEName":"Nozzle Drift Reduction","Definition":"The Nozzle Drift Reduction classification value of the spraying equipment as percentage \r\n\r\n","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"The use of this DDE is to document the current used drift reducing classification of the  nozzles or combination of drift reducing technique as percentage value.\r\nTo record documentation obligation product during applying in adjacency of sensitive areas.\r\nFor more information about nozzle drift classification see also Standard ISO 22369-1 \"Crop protection equipment - Drift classification of spraying equipment\" \r\n","SAESPN":"","SubmitDate":"2014-06-18","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100","MaximumDisplayValue":"100","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["6 - Sprayers"],"LastModifiedDate":"2014-06-18","Attachments":[]},{"DDIdentifier":350,"DDEName":"Function Type","Definition":"The Function Type DDE can be used to define the operation or functionality performed by the device element of type Function defined within the DDOP. The values to be used are defined in the attached document.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"In a DDOP (Device Description Object Pool) of an ISOBUS device there are different functionalities covered. The device element types in the Task Controller standard which are Device, Function, Bin, Section, Unit, Connector Type, and Navigation Reference do not last out for certain or more complex devices to describe all information in a unique way to the Task Controller Server. For more information see the attached document.","SAESPN":"","SubmitDate":"2014-07-01","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2014-07-01","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-350-Function Type-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/447\/ISO11783-11-DDI-350-Function%20Type-v1.pdf"}]},{"DDIdentifier":351,"DDEName":"Application Total Volume in [ml]","Definition":"Accumulated Application specified as volume in milliliter [ml]","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"is a counter of a device element","SAESPN":"","SubmitDate":"2014-07-02","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2014-07-02","Attachments":[]},{"DDIdentifier":352,"DDEName":"Application Total Mass in gram [g]","Definition":"Accumulated Application specified as mass in gram [g]","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"is a counter of a device element","SAESPN":"","SubmitDate":"2014-07-02","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation"],"LastModifiedDate":"2014-07-02","Attachments":[]},{"DDIdentifier":353,"DDEName":"Total Application of Nitrogen","Definition":"Accumulated application of nitrogen [N2] specified as gram [g]","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"This total is a counter of a device element","SAESPN":"","SubmitDate":"2014-06-04","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":354,"DDEName":"Total Application of Ammonium","Definition":"Accumulated  application of ammonium [NH4] specified as gram [g]","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"This total is a counter of a device element","SAESPN":"","SubmitDate":"2014-06-04","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":355,"DDEName":"Total Application of Phosphor","Definition":"Accumulated application of phosphor (P2O5) specified as gram [g]","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"This total is a counter of a device element","SAESPN":"","SubmitDate":"2014-06-04","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":356,"DDEName":"Total Application of Potassium","Definition":"Accumulated application of potassium (K2) specified as gram [g]","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"This total is a counter of a device element","SAESPN":"","SubmitDate":"2014-06-04","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":357,"DDEName":"Total Application of Dry Matter","Definition":"Accumulated application of dry matter  in kilogram [kg]. Dry matter measured at zero percent of moisture","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This total is a counter of a device element","SAESPN":"","SubmitDate":"2014-06-04","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":358,"DDEName":"Average Dry Yield Mass Per Time","Definition":"Average Yield expressed as mass per unit time, corrected for the reference moisture percentage DDI 184. This value is the average for a Task and may be reported as a total.","sysUnitReadable":"Mass flow - mg\/s","sysUnit":"mg\/s","Comment":"This Average Dry Yield Mass Per Time is the mass flow that has been corrected for the average crop moisture (DDI 262) based on the reference moisture for dry mass (DDI 184). This is the \"dry\" equivalent to DDI 261. This average yield mass per time is calculated as the yield total dry mass (DDI 183) divided by the effective total time (DDI 119) of the active task. When resuming a task, the working set shall compute its average dry yield mass per time from the yield total mass (DDI 90), average crop moisture (DDI 262), reference moisture percentage (DDI 184), and effective total time (119) assuming these DDI's are sent by the task controller.","SAESPN":"","SubmitDate":"2014-08-08","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":359,"DDEName":"Average Dry Yield Mass Per Area","Definition":"Average Yield expressed as mass per unit area, corrected for the reference moisture percentage DDI 184. This value is the average for a Task and may be reported as a total.\r\n","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"This Average Dry Yield Mass Per Area is the mass flow that has been corrected for the average crop moisture (DDI 262) based on the reference moisture for dry mass (DDI 184). This is the \"dry\" equivalent to DDI 263. This average yield mass per area is calculated as the yield total dry mass (DDI 183) divided by the total area (DDI 116) of the active task. When resuming a task, the working set shall compute its average dry yield mass per area from the yield total mass (DDI 90), average crop moisture (DDI 262), reference moisture percentage (DDI 184), and total area (DDI 116) assuming these DDI's are sent by the task controller.","SAESPN":"","SubmitDate":"2014-08-08","SubmitBy":"Tony Woodcock","SubmitCompany":"Ag Leader Technology","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2014-08-26","Attachments":[]},{"DDIdentifier":360,"DDEName":"Last Bale Size","Definition":"The bale size of the most recently produced bale. Bale Size as length for a square baler or diameter for a round baler.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler can add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2014-11-07","SubmitBy":"Lynn Derynck","SubmitCompany":"CNH Industrial N.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2014-12-03","Attachments":[]},{"DDIdentifier":361,"DDEName":"Last Bale Density","Definition":"The bale density of the most recently produced bale. \r\n\r\n\r\nUnit: mg\/l (mass per unit volume)","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler can add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2014-11-07","SubmitBy":"Lynn Derynck","SubmitCompany":"CNH Industrial N.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2014-12-03","Attachments":[]},{"DDIdentifier":362,"DDEName":"Total Bale Length","Definition":"Gives the total baled meters during a task. This is calculated as the sum of the lengths of all knotted bales (square baler). ","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2014-11-07","SubmitBy":"Lynn Derynck","SubmitCompany":"CNH Industrial N.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["9 - Forage harvester"],"LastModifiedDate":"2014-12-03","Attachments":[{"Name":"","Filename":"ISO_11783-11_DDIdentifier_Total Bale Length-v1.doc","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/459\/ISO_11783-11_DDIdentifier_Total%20Bale%20Length-v1.doc"}]},{"DDIdentifier":363,"DDEName":"Last Bale Dry Mass","Definition":"The dry mass of the bale that has most recently been produced. This is the bale mass corrected for the average moisture of this bale (DDI 212).","sysUnitReadable":"Mass large - g","sysUnit":"g","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":"","SubmitDate":"2014-11-07","SubmitBy":"Lynn Derynck","SubmitCompany":"CNH Industrial N.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2014-12-03","Attachments":[{"Name":"","Filename":"ISO_11783-11_DDIdentifier Last Bale Mass Dry-v1.doc","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/460\/ISO_11783-11_DDIdentifier%20Last%20Bale%20Mass%20Dry-v1.doc"}]},{"DDIdentifier":364,"DDEName":"Actual Flake Size","Definition":"Actual size of the flake that is currently produced by the chamber.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The recommended use of this DDE is for a baler to report this once for each new flake that entered\r\nthe baler chamber and obtained at the maximum compression of the plunger. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE at each new flake.","SAESPN":"","SubmitDate":"2014-11-07","SubmitBy":"Lynn Derynck","SubmitCompany":"CNH Industrial N.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2015-01-13","Attachments":[{"Name":"","Filename":"ISO_11783-11_DDIdentifier_ Flake Size-v1.doc","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/461\/ISO_11783-11_DDIdentifier_%20Flake%20Size-v1.doc"}]},{"DDIdentifier":365,"DDEName":"Setpoint Downforce Pressure","Definition":"Setpoint downforce pressure for an operation","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"This value represents the system pressure to produce the downforce (or upforce) for an operation messured in Pa (Pascal); In case of an negative value the system pressure would  produce Upforce.","SAESPN":"","SubmitDate":"2014-12-04","SubmitBy":"Brandon McDonald","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer"],"LastModifiedDate":"2015-01-13","Attachments":[]},{"DDIdentifier":366,"DDEName":"Actual Downforce Pressure","Definition":"Actual downforce pressure for an operation","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"This value represents the actual system pressure to produce the downforce (or upforce) for an operation messured in Pa (Pascal); In case of an negative value the system pressure would  produce Upforce.","SAESPN":"","SubmitDate":"2014-12-04","SubmitBy":"Brandon McDonald","SubmitCompany":"John Deere","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer"],"LastModifiedDate":"2015-01-13","Attachments":[]},{"DDIdentifier":367,"DDEName":"Condensed Section Override State (1-16)","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 1 to 16 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2014-11-18","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":368,"DDEName":"Condensed Section Override State (17-32) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 17 to 32 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-20","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":369,"DDEName":"Condensed Section Override State (33-48) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 33 to 48 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-20","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":370,"DDEName":"Condensed Section Override State (49-64) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 49 to 64 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-20","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":371,"DDEName":"Condensed Section Override State (65-80) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 65 to 80 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":372,"DDEName":"Condensed Section Override State (81-96) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 81 to 96 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":373,"DDEName":"Condensed Section Override State (97-112) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 97 to 112 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":"AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":374,"DDEName":"Condensed Section Override State (113-128) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 113 to 128 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":"AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":375,"DDEName":"Condensed Section Override State (129-144) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 129 to 144 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":376,"DDEName":"Condensed Section Override State (145-160) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 145 to 160 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":377,"DDEName":"Condensed Section Override State (161-176) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 161 to 176 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":378,"DDEName":"Condensed Section Override State (177-192) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 177 to 192 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":379,"DDEName":"Condensed Section Override State (193-208) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 193 to 208 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":380,"DDEName":"Condensed Section Override State (209-224) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 209 to 224 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":381,"DDEName":"Condensed Section Override State (225-240) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 225 to 240 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":382,"DDEName":"Condensed Section Override State (241-256) ","Definition":"This DDE is used by the implement to communicate that a certain section is overridden and will not follow the section control commands. The value is a combination of the override states of individual sections number 241 to 256 into a single override state. The condensed section override state contains the child element override states, in the driving direction from left to right, where the leftmost child element override state are the 2 lowest significant bits of the Process Data Value. Each child device elements override state is represented by 2 bits and defined as: 00 = section is not overridden, 01 = section is overridden, 10 = reserved, 11 = undefined \/ not installed. In total 16 child device element override states can be contained in one condensed section override state. If less than 16 child device element override states are available, then the unused bits shall be set to value 11 (undefined \/ not installed). This DDE shall be placed in the same device element as the corresponding actual condensed work state.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"It is common for SC servers to show the current state of the sections in a proprietary screen. As the implement is allowed to override the commanded state from the task controller it is impossible for the operator to predict what happens when driving into an unworked area. With this DDE it is possible for the SC server to show overridden sections in the proprietary screen.\r\n\r\nThis DDE shall be defined as DPD in the DDOP of the implement. The DPD shall at least support the datalog triggers “on change” and “time based”. The value shall only be sent by the implement if it was requested (single request or datalog trigger) by the TC-SC server.","SAESPN":"","SubmitDate":"2015-01-21","SubmitBy":"Michael Köcher","SubmitCompany":" AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System"],"LastModifiedDate":"2016-06-27","Attachments":[]},{"DDIdentifier":383,"DDEName":"Apparent Wind Direction","Definition":"The apparent wind is the wind which is measured on a moving vehicle. It is the result of two motions: the actual true wind and the motion of the vehicle. The wind angle is referenced to the present heading of the vehicle (Zero degree refers to the vehicle driving direction).","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"DDI 207 defines the true wind.\r\nDDI 208 defines the true wind angle.","SAESPN":"","SubmitDate":"2015-01-12","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"359","MaximumDisplayValue":"359","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system"],"LastModifiedDate":"2015-02-10","Attachments":[]},{"DDIdentifier":384,"DDEName":"Apparent Wind Speed","Definition":"The apparent wind is the wind which is measured on a moving vehicle. It is the result of two motions: the actual true wind and the motion of the vehicle.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"DDI 207 defines the true wind.\r\nDDI 208 defines the true wind angle.","SAESPN":"","SubmitDate":"2015-01-12","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100000000","MaximumDisplayValue":"100000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["0 - Non-specific system","17 - Sensor System"],"LastModifiedDate":"2015-02-10","Attachments":[]},{"DDIdentifier":385,"DDEName":"MSL Atmospheric Pressure ","Definition":"The atmospheric pressure MSL (Mean Sea Level) is the air pressure related to mean sea level.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"In weather charts only the converted pressure to mean sea level is indicated. Only the pressure changes due to the weather has to be considered.","SAESPN":"","SubmitDate":"2015-03-30","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"0,1","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"2000000","MaximumDisplayValue":"200000,0","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","17 - Sensor System"],"LastModifiedDate":"2015-03-30","Attachments":[]},{"DDIdentifier":386,"DDEName":"Actual Atmospheric Pressure","Definition":"The Actual Atmospheric Pressure is the air pressure currently measured by the weather station.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"This value does take the current altitude (field position) into count.","SAESPN":"","SubmitDate":"2015-03-30","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"0,1","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"2000000","MaximumDisplayValue":"200000,0","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","17 - Sensor System"],"LastModifiedDate":"2015-03-30","Attachments":[]},{"DDIdentifier":387,"DDEName":"Total Revolutions in Fractional Revolutions","Definition":"Accumulated Revolutions specified with fractional revolutions","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers.To prevent rounding errors the basic unit r\/min where chosen.","SAESPN":"","SubmitDate":"2015-04-24","SubmitBy":"Mike Schmidt","SubmitCompany":"AGCO Corporation","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-04-24","Attachments":[]},{"DDIdentifier":388,"DDEName":"Total Revolutions in Complete Revolutions","Definition":"Accumulated Revolutions specified as completed integer revolutions","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers.","SAESPN":"","SubmitDate":"2015-04-24","SubmitBy":"Mike Schmidt","SubmitCompany":"AGCO Corporation","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-04-24","Attachments":[]},{"DDIdentifier":389,"DDEName":"Setpoint Revolutions specified as count per time","Definition":"Setpoint Revolutions specified as count per time","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers. To prevent rounding errors the basic unit r\/min where chosen. ","SAESPN":"","SubmitDate":"2015-04-24","SubmitBy":"David Kuhnel","SubmitCompany":"DICKEY-john Corp","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-04-24","Attachments":[]},{"DDIdentifier":390,"DDEName":"Actual Revolutions Per Time","Definition":"Actual Revolutions specified as count per time","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers. To prevent rounding errors the basic unit r\/min where chosen. ","SAESPN":"","SubmitDate":"2015-03-23","SubmitBy":"David Kuhnel","SubmitCompany":"DICKEY-john Corp","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-03-23","Attachments":[]},{"DDIdentifier":391,"DDEName":"Default Revolutions Per Time","Definition":"Default Revolutions specified as count per time","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers. To prevent rounding errors the basic unit r\/min where chosen.","SAESPN":"","SubmitDate":"2015-03-23","SubmitBy":"David Kuhnel","SubmitCompany":"DICKEY-john Corp","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-03-23","Attachments":[]},{"DDIdentifier":392,"DDEName":"Minimum Revolutions Per Time","Definition":"Minimum Revolutions specified as count per time","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers. To prevent rounding errors the basic unit r\/min where chosen.","SAESPN":"","SubmitDate":"2015-03-23","SubmitBy":"David Kuhnel","SubmitCompany":"DICKEY-john Corp","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-03-23","Attachments":[]},{"DDIdentifier":393,"DDEName":"Maximum Revolutions Per Time","Definition":"Maximum Revolutions specified as count per time","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"Forward or Clockwise rotation represented as positive numbers and reverse or Counter-Clockwise rotation represented by negative numbers. To prevent rounding errors the basic unit r\/min where chosen.","SAESPN":"","SubmitDate":"2015-07-02","SubmitBy":"David Kuhnel","SubmitCompany":"DICKEY-john Corp","BitResolution":"0,0001","MinimumValue":"-2147483648","MinimumDisplayValue":"-214748,3648","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers"],"LastModifiedDate":"2015-07-02","Attachments":[]},{"DDIdentifier":394,"DDEName":"Actual Fuel Tank Content","Definition":"The actual content of the fuel tank ","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"This value can be used to see the refilling of the fuel tank or the theft of fuel.","SAESPN":"","SubmitDate":"2015-07-02","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["1 - Tractor","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2021-09-13","Attachments":[]},{"DDIdentifier":395,"DDEName":"Actual Diesel Exhaust Fluid Tank Content","Definition":"The actualcontent of the diesel exhaust fluid tank ","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"This value can be used to see the refilling of the diesel exhaust fluid tank or the theft of diesel exhaust fluid.","SAESPN":"","SubmitDate":"2015-07-02","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester"],"LastModifiedDate":"2015-07-02","Attachments":[]},{"DDIdentifier":396,"DDEName":"Setpoint Speed","Definition":"The setpoint speed that can be specified in a process data variable for communication between farm management information systems and mobile implement control systems. The setpoint speed DDI may also be used in a device description object pool to specify support for speed control by a device. A positive value will represent forward direction and a negative value will represent reverse direction.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"The implementation of speed control on the mobile implement control system may use other ISO11783 network parameter groups (e.g. ISO11783-7 Commanded Vehicle Speed and Machine Selected Speed Setpoint) and may be subject to control request authentication requirements. The definition of this DDI has been added to the ISO 11783-11 data dictionary to facilitate the specification of a setpoint speed in a task data transfer file and to enable specification of the support of speed control in a device description object pool. ","SAESPN":"","SubmitDate":"2015-02-12","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-04-24","Attachments":[]},{"DDIdentifier":397,"DDEName":"Actual Speed","Definition":"The actual speed as measured on or used by a device for the execution of task based data, e.g. to convert a setpoint rate expressed per area to device specific control data that is expressed as a rate per time. The actual speed can be measured by the device itself or it can be a speed value that is obtained from one of the speed parameter groups that are broadcasted on the ISO11783 network and defined in ISO11783-7. Examples of broadcasted speed parameter groups are wheel based speed, ground based speed and machine selected speed. The source of the actual speed can be specified by a Speed Source DDI that is present in the same device element as the speed DDI.  A positive value will represent forward direction and a negative value will represent reverse direction.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"This DDI has been added to the data dictionary to support logging of the speed that the device uses for processing and for generation of task data. The addition of a DDI for actual speed allows speed values to be added to the default data set that devices present to a task controller or a data logger.","SAESPN":"","SubmitDate":"2015-04-24","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-04-24","Attachments":[]},{"DDIdentifier":398,"DDEName":"Minimum Speed","Definition":"The minimum speed that can be specified in a process data variable for communication between farm management information systems and mobile implement control systems. A positive value will represent forward direction and a negative value will represent reverse direction.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"This DDI has been added to the data dictionary to support the setting and logging of a minimum speed for a part of a device. See also the definitions of the Setpoint, Actual and Maximum Speed DDIs for additional definition and implementation information of Speed DDIs.","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-09-02","Attachments":[]},{"DDIdentifier":399,"DDEName":"Maximum Speed","Definition":"The maximum speed that can be specified in a process data variable for communication between farm management information systems and mobile implement control systems.  A positive value will represent forward direction and a negative value will represent reverse direction.","sysUnitReadable":"Speed - mm\/s","sysUnit":"mm\/s","Comment":"This DDI has been added to the data dictionary to support the setting and logging of a maximum speed for a part of a device. See also the definitions of the Setpoint, Actual and Minimum Speed DDIs for additional definition and implementation information of Speed DDIs.","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Hans van Zadelhoff","SubmitCompany":"Grimme Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-09-02","Attachments":[]},{"DDIdentifier":400,"DDEName":"Speed Source","Definition":"The Speed Source that the device uses to report actual speed and to process the setpoint, minimum and maximum speeds. The Speed Source value is an enumeration with the following definitions:\r\n    0 = Unknown\r\n    1 = Wheel-based speed\r\n    2 = Ground-based speed\r\n    3 = Navigation-based speed\r\n    4 = Blended speed\r\n    5 = Simulated speed\r\n    6 = Machine Selected speed\r\n    7 = Machine measured speed (This option indicates the machine uses an own sensor to measures the actual speed, instead of the speed provided on the bus).\r\n    8 to 100 = Reserved","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"The Speed Source DDI can be used in conjunction with the Actual Speed DDI to specify which speed measurement method is used to determine the value reported via the Actual, Setpoint, Minimum and Maximum Speed DDIs. When a device receives commands for Setpoint, Minimum or Maximum Speed then the Speed Source can be used to select a ISO 11783-7 command for speed control.","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Jaap van Bergeijk","SubmitCompany":"AGCO corporation","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"100","MaximumDisplayValue":"100","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops"],"LastModifiedDate":"2015-09-02","Attachments":[]},{"DDIdentifier":401,"DDEName":"Actual Application of Nitrogen","Definition":"Actual application of Nitrogen [N2] specified as milligram per liter [mg\/l]","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"Is the actual amount of Nitrogen [N2] in liquid manure ( see also DD Entity 353 )","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2015-03-11","Attachments":[]},{"DDIdentifier":402,"DDEName":"Actual application of Ammonium","Definition":"Actual application of Ammonium [NH4] specified as milligram per liter [mg\/l]","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"Is the actual amount of Ammonium [NH4] in liquig manure ( see also DD Entity 354 )","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2015-03-11","Attachments":[]},{"DDIdentifier":403,"DDEName":"Actual application of Phosphor","Definition":"Actual application of Phosphor [P2O5] specified as milligram per liter [mg\/l]","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"Is the actual amount of Phosphor [P2O5] in liquid manure ( see also DD Entity 355 )","SAESPN":"","SubmitDate":"2015-03-11","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":404,"DDEName":"Actual application of Potassium","Definition":"Actual application of Potassium [K2] specified as gram [g]","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"is the actual amount of Potassium [K2] in liquid manure ( see also DD Entity 356 )","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2015-09-04","Attachments":[]},{"DDIdentifier":405,"DDEName":"Actual application of Dry Matter","Definition":"Actual application of Dry Matter in kilogram [kg]. Dry matter measured at Zero percent of moisture.","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"is the actual amount of Dry matter in liquid manure ( see also DD Entity 357 )","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Christoph Staub","SubmitCompany":"Zunhammer GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["5 - Fertilizer"],"LastModifiedDate":"2015-09-04","Attachments":[]},{"DDIdentifier":406,"DDEName":"Actual Protein Content ","Definition":"Actual Protein content of a harvested crops","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Protein content of harvested crop expressed as a percent mass of the total crop.","SAESPN":"","SubmitDate":"2015-09-04","SubmitBy":"Joe Tevis","SubmitCompany":"Topcon","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester"],"LastModifiedDate":"2015-09-04","Attachments":[]},{"DDIdentifier":407,"DDEName":"Average Protein Content","Definition":"Average protein content in a harvested crop","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Average protein content of harvested crop.","SAESPN":"","SubmitDate":"2015-09-04","SubmitBy":"Joe Tevis","SubmitCompany":"Topcon","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester"],"LastModifiedDate":"2015-09-04","Attachments":[]},{"DDIdentifier":408,"DDEName":"Average Crop Contamination","Definition":"Average amount of dirt or foreign  in a harvested crop","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Average amount of dirt or foreign in a harvested crop","SAESPN":"","SubmitDate":"2015-09-02","SubmitBy":"Ben Craker","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters"],"LastModifiedDate":"2015-06-15","Attachments":[]},{"DDIdentifier":409,"DDEName":"Total Diesel Exhaust Fluid Consumption","Definition":"Accumulated Diesel Exhaust Fluid Consumption as a Task Total.","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"This data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 148 - Total Fuel Consumption. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[{"Name":"","Filename":"DEF_DDI_Requests-v1.pptx","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/539\/DEF_DDI_Requests-v1.pptx"}]},{"DDIdentifier":410,"DDEName":"Instantaneous Diesel Exhaust Fluid Consumption per Time","Definition":"Diesel Exhaust Fluid consumption per time","sysUnitReadable":"Flow - mm³\/s","sysUnit":"mm³\/s","Comment":"This data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 149 - Instantaneous Fuel Consumption per Time. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[]},{"DDIdentifier":411,"DDEName":"Instantaneous Diesel Exhaust Fluid Consumption per Area","Definition":"Diesel Exhaust Fluid consumption per area","sysUnitReadable":"Capacity per area unit - mm³\/m²","sysUnit":"mm³\/m²","Comment":"This data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 150 - Instantaneous Fuel Consumption per Area. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[]},{"DDIdentifier":412,"DDEName":"Lifetime Diesel Exhaust Fluid Consumption","Definition":"Accumulated Diesel Exhaust Fluid Consumption over the entire lifetime of the device.","sysUnitReadable":"Capacity count - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changed. It is up to the device control system when to reset this value.\r\n\r\nThe Device shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.\r\n\r\nThis data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 276 - Lifetime Fuel Consumption. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"5963","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"0,5","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"1073741823,5","Type":"Entity","SAEOption":"Existing SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[]},{"DDIdentifier":413,"DDEName":"Lifetime Average Diesel Exhaust Fluid Consumption per Time","Definition":"Average Diesel Exhaust Fluid Consumption per Time over the entire lifetime of the device.","sysUnitReadable":"Flow - mm³\/s","sysUnit":"mm³\/s","Comment":"This is the overall average of the device. This average does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Device shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.\r\n\r\nThis data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 277 - Lifetime Average Fuel Consumption per Time. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[]},{"DDIdentifier":414,"DDEName":"Lifetime Average Diesel Exhaust Fluid Consumption per Area","Definition":"Average Diesel Exhaust Fluid Consumption per Area over the entire lifetime of the device.","sysUnitReadable":"Capacity per area unit - mm³\/m²","sysUnit":"mm³\/m²","Comment":"This is the overall average of the device. This average does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Device shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.\r\n\r\nThis data definition is the Diesel Exhaust Fluid (DEF) consumption counterpart of the previously defined data dictionary entity 278 - Lifetime Average Fuel Consumption per Area. These data dictionary entities can be used by devices that support data logging of Fuel and Diesel Exhaust Fluid consumption.","SAESPN":"","SubmitDate":"2015-06-01","SubmitBy":"Eric Bongaerts","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2015-06-16","Attachments":[]},{"DDIdentifier":415,"DDEName":"Actual Seed Singulation Percentage","Definition":"Actual Seed Singulation Percentage calculated from measured seed spacing using ISO 7256-1 \"Quality of Feed Index\" algorithm","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Quality of Feed Index\" for details on the standardized method for calculating the seed singulation parameter.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":416,"DDEName":"Average Seed Singulation Percentage","Definition":"Average Seed Singulation Percentage calculated from measured seed spacing using ISO 7256-1 \"Quality of Feed Index\" algorithm. The value is the average for a Task.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Quality of Feed Index\" for details on the standardized method for calculating the seed singulation parameter.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":417,"DDEName":"Actual Seed Skip Percentage","Definition":"Actual Seed Skip Percentage calculated from measured seed spacing using ISO 7256-1 \"Miss Index\" algorithm","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Miss Index\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":418,"DDEName":"Average Seed Skip Percentage","Definition":"Average Seed Skip Percentage calculated from measured seed spacing using ISO 7256-1 \"Miss Index\" algorithm. The value is the average for a Task.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Miss Index\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":419,"DDEName":"Actual Seed Multiple Percentage","Definition":"Actual Seed Multiple Percentage calculated from measured seed spacing using ISO 7256-1 \"Multiples Index\" algorithm.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Multiples Index\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":420,"DDEName":"Average Seed Multiple Percentage","Definition":"Average Seed Multiple Percentage calculated from measured seed spacing using ISO 7256-1 \"Multiples Index\" algorithm. The value is the average for a Task.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Multiples Index\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":421,"DDEName":"Actual Seed Spacing Deviation","Definition":"Actual Seed Spacing Deviation from setpoint seed spacing","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Deviation is a positive value independently of if distance between seeds is smaller or larger than the setpoint value","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":422,"DDEName":"Average Seed Spacing Deviation","Definition":"Average Seed Spacing Deviation from setpoint seed spacing. The value is the average for a Task.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Deviation is a positive value independently of if distance between seeds is smaller or larger than the setpoint value","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":423,"DDEName":"Actual Coefficient of Variation of Seed Spacing Percentage ","Definition":"Actual Coefficient of Variation of Seed Spacing Percentage calculated from measured seed spacing using ISO 7256-1 algorithm","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Coefficient of Variation\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":424,"DDEName":"Average Coefficient of Variation of Seed Spacing Percentage","Definition":"Average Coefficient of Variation of Seed Spacing Percentage calculated from measured seed spacing using ISO 7256-1 algorithm. The value is the average for a Task.","sysUnitReadable":"Parts per million - ppm","sysUnit":"ppm","Comment":"Reference ISO 7256-1 \"Coefficient of Variation\" for details on the standardized method for calculating a percentage.  The number of seed drops for calculating this real-time percentage is not specified due to the possible differences in measurement and performance of the equipment and seeding rates.","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000000","MaximumDisplayValue":"1000000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":5,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":425,"DDEName":"Setpoint Maximum Allowed Seed Spacing Deviation","Definition":"Setpoint Maximum Allowed Seed Spacing Deviation","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Value is for TIM purposes. An acceptable seeding quality range can be defined in a task or prescription. Deviation is a positive value independently of if distance between seeds is smaller or larger than the setpoint value","SAESPN":"","SubmitDate":"2015-03-25","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":5,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-07-30","Attachments":[]},{"DDIdentifier":426,"DDEName":"Setpoint Downforce as Force","Definition":"Setpoint Downforce as Force","sysUnitReadable":"Newton - N","sysUnit":"N","Comment":"This value represents the system pressure to produce the downforce (or upforce) for an operation messured in newton; In case of an negative value the system pressure would produce Upforce.","SAESPN":"","SubmitDate":"2015-09-03","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-09-03","Attachments":[]},{"DDIdentifier":427,"DDEName":"Actual Downforce as Force","Definition":"Actual Downforce as Force","sysUnitReadable":"Newton - N","sysUnit":"N","Comment":"This value represents the actual downforce to produce the downforce (or upforce) for an operation messured in newton; In case of an negative value the system pressure would produce Upforce.","SAESPN":"","SubmitDate":"2015-09-03","SubmitBy":"Matthias Rothmund","SubmitCompany":"HORSCH","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2015-09-03","Attachments":[]},{"DDIdentifier":428,"DDEName":"Loaded Total Mass","Definition":"Accumulated Loads specified as mass, not corrected for the reference moisture percentage DDI 184.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"Is a counter of a machine element.\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-02","Attachments":[]},{"DDIdentifier":429,"DDEName":"Unloaded Total Mass","Definition":"Accumulated Unloads specified as mass, not corrected for the reference moisture percentage DDI 184.","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"Is a counter of a machine element.\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-02","Attachments":[]},{"DDIdentifier":430,"DDEName":"Lifetime Loaded Total Mass","Definition":"Entire Yield Total Mass of the device lifetime.\r\n","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-02","Attachments":[]},{"DDIdentifier":431,"DDEName":"Lifetime Unloaded Total Mass","Definition":"Entire Unloaded Total Mass of the device lifetime.\r\n","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-02","Attachments":[]},{"DDIdentifier":432,"DDEName":"Setpoint Application Rate of Nitrogen","Definition":"Setpoint application rate of nitrogen specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of nitrogen will be documented with DDE353","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":433,"DDEName":"Actual  Application Rate of Nitrogen","Definition":"Actual application rate of nitrogen specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of nitrogen will be documented with DDE353","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":434,"DDEName":"Minimum Application Rate of Nitrogen","Definition":"Minimum application rate of nitrogen specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of nitrogen will be documented with DDE353","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":435,"DDEName":"Maximum  Application Rate of Nitrogen","Definition":"Maximum application rate of nitrogen specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of nitrogen will be documented with DDE353","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":436,"DDEName":"Setpoint  Application Rate of Ammonium","Definition":"Setpoint application rate of Ammonium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of ammonium will be documented with DDE354","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":437,"DDEName":"Actual  Application Rate of Ammonium","Definition":"Actual application rate of Ammonium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of Ammonium will be documented with DDE354","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":438,"DDEName":"Minimum  Application Rate of Ammonium","Definition":"Minimum application rate of Ammonium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of ammonium will be documented with DDE354","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":439,"DDEName":"Maximum  Application Rate of Ammonium","Definition":"Maximum application rate of Ammonium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of ammonium will be documented with DDE354","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":440,"DDEName":"Setpoint  Application Rate of Phosphor","Definition":"Setpoint application rate of phosphor specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of phosphor will be documented with DDE355","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":441,"DDEName":"Actual  Application Rate of Phosphor","Definition":"Actual application rate of phosphor specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of phosphor will be documented with DDE355","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":442,"DDEName":"Minimum  Application Rate of Phosphor","Definition":"Minimum application rate of phosphor specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of phosphor will be documented with DDE355","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":443,"DDEName":"Maximum  Application Rate of Phosphor","Definition":"Maximum application rate of phosphor specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the total amount of phosphor will be documented with DDE355","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":444,"DDEName":"Setpoint  Application Rate of Potassium","Definition":"Setpoint application rate of potassium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of potassium will be documented with DDE356","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-02","Attachments":[]},{"DDIdentifier":445,"DDEName":"Actual  Application Rate of Potassium","Definition":"Actual application rate of potassium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"As a reference the toal amount of potassium will be documented with DDE356","SAESPN":"","SubmitDate":"2015-11-02","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"4294967295","MaximumDisplayValue":"4294967295","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":446,"DDEName":"Minimum Application Rate of Potassium","Definition":"Minimum application rate of potassium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"","SAESPN":"","SubmitDate":"2016-03-29","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":447,"DDEName":"Maximum Application Rate of Potassium","Definition":"Maximum application rate of potassium specified as a mass per area","sysUnitReadable":"Mass per area unit - mg\/m²","sysUnit":"mg\/m²","Comment":"","SAESPN":"","SubmitDate":"2015-11-03","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":448,"DDEName":"Setpoint Application Rate of Dry Matter","Definition":"Setpoint application rate of dry matter expressed as percentage","sysUnitReadable":"Quantity per quantity unit - ppm (parts per million)","sysUnit":"ppm (parts per million)","Comment":"As a reference the toal amount of dry matter will be documented with DDE 357","SAESPN":"","SubmitDate":"2015-11-03","SubmitBy":"Jan Steebock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":449,"DDEName":"Actual  Application Rate of Dry Matter","Definition":"Actual application rate of dry matter expressed as percentage","sysUnitReadable":"Quantity per quantity unit - ppm (parts per million)","sysUnit":"ppm (parts per million)","Comment":"As a reference the toal amount of dry matter will be documented with DDE 357","SAESPN":"","SubmitDate":"2015-09-03","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":450,"DDEName":"Minimum Application Rate of Dry Matter","Definition":"Minimum application rate of dry matter expressed as percentage","sysUnitReadable":"Quantity per quantity unit - ppm (parts per million)","sysUnit":"ppm (parts per million)","Comment":"","SAESPN":"","SubmitDate":"2015-11-03","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":451,"DDEName":"Maximum Application Rate of Dry Matter","Definition":"Maximum application rate of dry matter expressed as percentage","sysUnitReadable":"Quantity per quantity unit - ppm (parts per million)","sysUnit":"ppm (parts per million)","Comment":"","SAESPN":"","SubmitDate":"2015-11-03","SubmitBy":"Jan Steenbock","SubmitCompany":"Müller-Elektronik GmbH  Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System","25 - Slurry Applicators"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":452,"DDEName":"Loaded Total Volume","Definition":"Accumulated Loaded Volume specified as volume","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"Is a counter of a machine element\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":453,"DDEName":"Unloaded Total Volume","Definition":"Accumulated Unloaded Volume specified as volume","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"Is a counter of a machine element","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":454,"DDEName":"Lifetime loaded Total Volume","Definition":"Entire loaded Volume of the device lifetime.","sysUnitReadable":"Capacity count - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":455,"DDEName":"Lifetime Unloaded Total Volume","Definition":"Entire unloaded Volume of the device lifetime.","sysUnitReadable":"Capacity count - L","sysUnit":"L","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":456,"DDEName":"Last loaded Volume","Definition":"Last loaded Volume value specified as volume\r\n","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"After a loading Procedure, this DDI sends the loaded Volume. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE320","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":457,"DDEName":"Last unloaded Volume","Definition":"Last unloaded Volume value specified as volume\r\n","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"After a unloading Procedure, this DDI sends the uloaded Volume. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE320\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":458,"DDEName":"Loaded Total Count","Definition":"Accumulated Loads specified as count","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Is a counter of a device element\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":459,"DDEName":"Unloaded Total Count","Definition":"Accumulated Unloaded specified as count","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Is a counter of a device element","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":460,"DDEName":"Lifetime Loaded Total Count","Definition":"Entire Loaded Total Count of the device lifetime.","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":461,"DDEName":"Lifetime Unloaded Total Count","Definition":"Entire Unloaded Total Count of the device lifetime.\r\n","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":462,"DDEName":"Last loaded Count","Definition":"Last loaded Count value specified as count\r\n","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"After a loading Procedure, this DDI sends the loaded Count. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE320\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":463,"DDEName":"Last unloaded Count","Definition":"Last unloaded Count value specified as count","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"After a unloading Procedure, this DDI sends the loaded Count. \r\n\r\nFor more information see attachment located at Last loaded Weight DDE 320\r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2015-11-03","Attachments":[]},{"DDIdentifier":464,"DDEName":"Haul Counter","Definition":"Each Time a Device Element is filled and emptied this is called a haul cycle. This counter counts the cycles","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"Is a counter of a device element. Can be used to count loads, fillings, tippings and such. \r\n","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-12-14","Attachments":[]},{"DDIdentifier":465,"DDEName":"Lifetime Haul Counter","Definition":"The number of haul cycles done by a machine over its entire lifetime. This DDE value can not be set through the process data interface but can be requested and added to a datalog. This DDE value is not affected by a task based total haul cycles but will increment at the same rate as the task based total.\r\n","sysUnitReadable":"Quantity\/Count - #","sysUnit":"#","Comment":"This is the overall total of the device. This total does not refer to an application controlled by a Task Controller. Therefore this DDE shall not be setable within the device description and neither shall the device reset the value when the task status changes. It is up to the device control system when to reset this value.\r\n\r\nThe Working Set Master shall support the total trigger method for this DDE but shall not support the setable property.\r\n\r\nThe Task Controller can request and store this DDE at the end of a task. But it shall not set this DDE when the task is resumed.","SAESPN":"","SubmitDate":"2015-07-24","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-12-14","Attachments":[]},{"DDIdentifier":466,"DDEName":"Actual relative connector angle","Definition":"The DDI Actual relative connector angle shall be placed in the device element of type connector in the DDOP of the TC-SC Client. The value describes the actual angle of the longitudinal axis of the implement relative to the longitudinal axis of the tractor. This angle should be used by the TC-SC server to calculate the real position of implement. The TC-SC server may smooth the rendering in any proprietary screen. \r\nThe reference system is the coordinate system of the tractor. This results in the angles from table 1 of the attachment. \r\nIn case of for example a malfunction sensor the error value is set to 0xFExxxxxx.","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"When working with Section Control it is necessary that the TC-Server calculates the exact position of the implement and its boom and sections to mark the covered area on its section control screen properly. To calculate the positions the TC-SC server uses the x and y offsets of the DRP and CRP. This works well for mounted and for non-steered trailed implements but comes up against limits when implements do have a steering axle or even a steering drawbar because the TC-SC server can’t know the current steering angle and moving the DRP doesn’t fit in all means. But this could be solved when the TC-SC server would knew the exact angle of the implement related to the tractor. This information could be provided by the implement because when they have a steering mechanism they even have a sensor to measure the angle between tractor and implement.","SAESPN":"","SubmitDate":"2015-07-27","SubmitBy":"Thomas Konermann","SubmitCompany":"AMAZONEN-Werke H. Dreyer GmbH & Co. KG","BitResolution":"0,001","MinimumValue":"-180000","MinimumDisplayValue":"-180,000","MaximumValue":"180000","MaximumDisplayValue":"180,000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":["2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","25 - Slurry Applicators"],"LastModifiedDate":"2016-01-25","Attachments":[{"Name":"","Filename":"Actual relative connector angle-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/577\/Actual%20relative%20connector%20angle-v1.pdf"}]},{"DDIdentifier":467,"DDEName":"Actual Percentage Content","Definition":"Actual Device Element Content specified as percent.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"","SubmitDate":"2016-06-13","SubmitBy":"Matthias Meyer","SubmitCompany":"John Deere","BitResolution":"0,01","MinimumValue":"0","MinimumDisplayValue":"0,00","MaximumValue":"10000","MaximumDisplayValue":"100,00","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":472,"DDEName":"Setpoint Length of Cut","Definition":"Setpoint length of cut for harvested material, e.g. Forage Harvester or Tree Harvester.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483,647","MaximumDisplayValue":"2,147,484","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":473,"DDEName":"Minimum length of cut","Definition":"Minimum length of cut for harvested material, e.g. Forage Harvester or Tree Harvester.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483,647","MaximumDisplayValue":"2,147,484","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":474,"DDEName":"Maximum Length of Cut","Definition":"Maximum length of cut for harvested material, e.g. Forage Harvester or Tree Harvester.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483,647","MaximumDisplayValue":"2,147,484","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","14 - Special Crops"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":475,"DDEName":"Setpoint Bale Hydraulic Pressure","Definition":"The setpoint value of the hydraulic pressure applied to the sides of the bale in the bale compression chamber.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":476,"DDEName":"Minimum Bale Hydraulic Pressure","Definition":"The minimum value of the hydraulic pressure applied to the sides of the bale in the bale compression chamber.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":477,"DDEName":"Maximum Bale Hydraulic Pressure","Definition":"The maximum value of the hydraulic pressure applied to the sides of the bale in the bale compression chamber.","sysUnitReadable":"Pressure - Pa","sysUnit":"Pa","Comment":"","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":478,"DDEName":"Setpoint Flake Size","Definition":"Setpoint size of the flake to be produced by the chamber.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"See also DDI 364.","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":479,"DDEName":"Minimum Flake Size","Definition":"Minimum size of the flake that can be produced by the chamber.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"See also DDI 364.","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":480,"DDEName":"Maximum Flake Size","Definition":"Maximum size of the flake that can be produced by the chamber.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"See also DDI 364","SAESPN":"","SubmitDate":"2016-03-21","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"1000","MaximumDisplayValue":"1000","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2016-03-21","Attachments":[]},{"DDIdentifier":481,"DDEName":"Setpoint Number of Subbales","Definition":"Number of smaller bales that shall be included in one bigger bale.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"Defines the number of sub-bales included of a  big square bale.\r\n","SAESPN":"","SubmitDate":"2016-03-09","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":482,"DDEName":"Last Bale Number of Subbales","Definition":"Number of smaller bales included in the latest produced bale.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"This DDI is needed as there might be another bale in the chamber. When sending this DDI on dropping the bale on the field, the system can define how many subbales are in that specific bale.","SAESPN":"","SubmitDate":"2016-03-09","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester","11 - Transport \/ Trailers"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":483,"DDEName":"Setpoint Engine Speed","Definition":"The setpoint of the rotational speed of the engine.","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,0001","MinimumValue":"0","MinimumDisplayValue":"0,0000","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":484,"DDEName":"Actual Engine Speed","Definition":"Actual rotational speed of the engine.","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger.","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,0001","MinimumValue":"0","MinimumDisplayValue":"0,0000","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":485,"DDEName":"Minimum Engine Speed","Definition":"The minimum of the rotational speed of the engine.","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,0001","MinimumValue":"0","MinimumDisplayValue":"0,0000","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":486,"DDEName":"Maximum Engine Speed","Definition":"The maximum of the rotational speed of the engine.","sysUnitReadable":"Revolutions per minute - r\/min","sysUnit":"r\/min","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger.","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,0001","MinimumValue":"0","MinimumDisplayValue":"0,0000","MaximumValue":"2147483647","MaximumDisplayValue":"214748,3647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":488,"DDEName":"Diesel Exhaust Fluid Tank Percentage Level","Definition":"The actual level of the Diesel Exhaust Fluid Tank in percent.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"The addition of a percentage DDI allows such values to be added to the default data set that devices present to a task controller or a data logger","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,01","MinimumValue":"0","MinimumDisplayValue":"0,00","MaximumValue":"10000","MaximumDisplayValue":"100,00","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":489,"DDEName":"Maximum Diesel Exhaust Fluid Tank Content","Definition":"This value describes the maximum ammount of Diesel Exhaust fluid, that can be filled into the tank of the machine","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-13","Attachments":[]},{"DDIdentifier":490,"DDEName":"Maximum Fuel Tank Content","Definition":"This value describes the maximum ammount of fuel that can be filled into the machines Fuel tank. ","sysUnitReadable":"Capacity large - ml","sysUnit":"ml","Comment":"","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-14","Attachments":[]},{"DDIdentifier":491,"DDEName":"Fuel Percentage Level","Definition":"The actual level of the machine fuel tank in percent.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,01","MinimumValue":"0","MinimumDisplayValue":"0,00","MaximumValue":"2147483647","MaximumDisplayValue":"21474836,47","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-14","Attachments":[]},{"DDIdentifier":492,"DDEName":"Total Engine Hours","Definition":"The total time the engine was running when the task was active.","sysUnitReadable":"Hour - h","sysUnit":"h","Comment":"","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,05","MinimumValue":"0","MinimumDisplayValue":"0,0","MaximumValue":"210554060,75","MaximumDisplayValue":"10527703,038","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-14","Attachments":[]},{"DDIdentifier":493,"DDEName":"Lifetime Total Engine Hours","Definition":"The total time, when the engine was running over the whole lifetime of the machine.","sysUnitReadable":"Hour - h","sysUnit":"h","Comment":"","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"214748364,7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2026-09-03","Attachments":[]},{"DDIdentifier":494,"DDEName":"Last Event Partner ID (Byte 1-4)","Definition":"Last Event Partner ID as a decimal number of 128bit length.\r\n\r\nThis DDI should include the Byte 1-4 of the Last Event Partner ID. It should always be sent as Group of 4 DDI's to send all 128 bit together. After this a DDI 147 “Log Count” shall be sent. \r\n\r\n","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"Using Methods do determine the Location of a Vehicle or Storage which is not equipped with ISOBUS and GPS.  ","SAESPN":"","SubmitDate":"2016-07-20","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2015-10-11","Attachments":[{"Name":"","Filename":"ISO11783-11-DDI-494 Partner ID-v1.pdf","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/727\/ISO11783-11-DDI-494%20Partner%20ID-v1.pdf"}]},{"DDIdentifier":495,"DDEName":"Last Event Partner ID (Byte 5-8)","Definition":"Last Event Partner ID as a decimal number of 128bit length.\r\n\r\nThis DDI should include the Byte 5-8 of the Last Event Partner ID. It should always be sent as Group of 4 DDI's to send all 128 bit together.  After this a DDI 147 “Log Count” shall be sent. \r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Using Methods do determine the Location of a Vehicle or Storage which is not equipped with ISOBUS and GPS. See also DDI 494 attachment. \r\n","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-15","Attachments":[]},{"DDIdentifier":496,"DDEName":"Last Event Partner ID (Byte 9-12)","Definition":"Last Event Partner ID as a decimal number of 128bit length.\r\n\r\nThis DDI should include the Byte 9-12 of the Last Event Partner ID. It should always be sent as Group of 4 DDI's to send all 128 bit together. After this a DDI 147 “Log Count” shall be sent. ","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Using Methods do determine the Location of a Vehicle or Storage which is not equipped with ISOBUS and GPS.\r\nSee also DDI 494 attachment.","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-15","Attachments":[]},{"DDIdentifier":497,"DDEName":"Last Event Partner ID (Byte 13-16)","Definition":"Last Event Partner ID as a decimal number of 128bit length.\r\n\r\nThis DDI should include the Byte 13-16 of the Last Event Partner ID. It should always be sent as Group of 4 DDI's to send all 128 bit together. After this a DDI 147 “Log Count” shall be sent. \r\n","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"Using Methods do determine the Location of a Vehicle or Storage which is not equipped with ISOBUS and GPS.\r\nSee also DDI 494 attachment.\r\n","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":3,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-15","Attachments":[]},{"DDIdentifier":498,"DDEName":"Last Event Partner ID Type","Definition":"Defines The Type of the Partner ID Device. See Attatchment for Definition.\r\n\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"See also DDI 494 attachment.","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":4,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-20","Attachments":[]},{"DDIdentifier":499,"DDEName":"Last Event Partner ID Manufacturer ID Code","Definition":"The Partner ID has to tell its Manufacturer, and the Manufacturer Numbers from SAE J1939 \/ ISO 11783 shall be used. \r\n","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"Remark: This is not the Manufacturer of the ISOBUS ECU sending this DDI to the Task-Controller, but the Manufacturer of the “Partner” Device. \r\nSee also DDI 494 attachment.","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":4,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-20","Attachments":[]},{"DDIdentifier":500,"DDEName":"Last Event Partner ID Device Class","Definition":"This DDI should tell the Device Class of the “Partner” Device.\r\n\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Look at DDI 494 attachment to get the device class details.\r\n \r\n\r\n\r\n","SAESPN":"","SubmitDate":"2015-10-11","SubmitBy":"Franz Hoepfinger","SubmitCompany":"367 - Fliegl Agrartechnik GmbH","BitResolution":"1","MinimumValue":"0x00000000","MinimumDisplayValue":"0x00000000","MaximumValue":"0xFFFFFFFF","MaximumDisplayValue":"0xFFFFFFFF","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":4,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","11 - Transport \/ Trailers","17 - Sensor System"],"LastModifiedDate":"2016-06-20","Attachments":[]},{"DDIdentifier":501,"DDEName":"Setpoint Engine Torque","Definition":"The setpoint of the engine torque.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger.","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":5,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-28","Attachments":[]},{"DDIdentifier":502,"DDEName":"Actual Engine Torque","Definition":"The current torque of the engine.","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"The addition of a DDI for such values allows such values to be added to the default data set that devices present to a task controller or a data logger","SAESPN":"","SubmitDate":"2016-04-01","SubmitBy":"","SubmitCompany":"","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":2,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-28","Attachments":[]},{"DDIdentifier":503,"DDEName":"Minimum Engine Torque","Definition":"The minimum value of the engine torque","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"","SubmitDate":"2016-06-28","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-28","Attachments":[]},{"DDIdentifier":504,"DDEName":"Maximum Engine Torque","Definition":"The maximum value of the engine torque","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"","SAESPN":"","SubmitDate":"2016-06-28","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2016-06-28","Attachments":[]},{"DDIdentifier":555,"DDEName":"Tramline Control Level","Definition":"This DDI defines the Tramline Control capability of the Implement.","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"The Implement shall provide in its root DeviceElement which Tramline Control Levels are supported. The Tramline Control Levels are independent of each other. It is allowed to support for example only Level 3 Tramlining.\r\n\r\nByte 1 Bit 0 = 1\tSupport Tramline Control Level 1\r\nByte 1 Bit 1 = 1\tSupport Tramline Control Level 2\r\nByte 1 Bit 2 = 1\tSupport Tramline Control Level 3\r\nByte 1 Bit 3-7 = 0\tReserved\r\n","SAESPN":"","SubmitDate":"2015-12-10","SubmitBy":"Karsten Helweg","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"7","MaximumDisplayValue":"7","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2016-08-31","Attachments":[{"Name":"","Filename":"TramlineControl_BasicRequirements_v1.10-v1.docx","URL":"https:\/\/beta.isobus.net\/isobus\/attachments\/623\/TramlineControl_BasicRequirements_v1.10-v1.docx"}]},{"DDIdentifier":556,"DDEName":"test","Definition":"test","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"test","SAESPN":"","SubmitDate":"2017-11-22","SubmitBy":"","SubmitCompany":"","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"","MaximumValue":"0","MaximumDisplayValue":"","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["22 - Timber Processing Machines"],"LastModifiedDate":null,"Attachments":[]},{"DDIdentifier":557,"DDEName":"test","Definition":"test","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"test","SAESPN":"","SubmitDate":"2017-11-22","SubmitBy":"","SubmitCompany":"","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"","MaximumValue":"0","MaximumDisplayValue":"","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters"],"LastModifiedDate":"2017-11-22","Attachments":[]},{"DDIdentifier":700,"DDEName":"Import DDI 0","Definition":"Default Application Rate specified as volume per distance","sysUnitReadable":"Volume per distance - ml\/m","sysUnit":"ml\/m","Comment":"Defines a default volume to be sprayed per distance travelled. e.g. in vineyards, orchards ","SAESPN":null,"SubmitDate":"2020-07-14","SubmitBy":"Stefan Welsch","SubmitCompany":"John Deere","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation","25 - Slurry Applicators"],"LastModifiedDate":"2020-07-14","Attachments":[]},{"DDIdentifier":701,"DDEName":"Import DDI 1","Definition":"Wrapping film overlap percentage in the most recently produced bale","sysUnitReadable":"Percent - %","sysUnit":"%","Comment":"The recommended use of this DDE is for a baler to report this once for every bale that is produced. A baler may add this to its default set of data, based on an internal on-change data trigger that causes the baler to report the value of this DDE after the bale is produced. The recommendation for data logging is that all \"Last Bale\" DDEs that are supported by a device are reported together at the moment that the bale is produced and leaves the machine.","SAESPN":null,"SubmitDate":"2021-04-20","SubmitBy":"Mike Schmidt on behalf of Steffen Hoffmann","SubmitCompany":"AGCO","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2021-09-13","Attachments":[]},{"DDIdentifier":702,"DDEName":"Import DDI 2","Definition":"Actual CO2 equivalent specified as mass per volume\n","sysUnitReadable":"Mass per capacity unit - mg\/l","sysUnit":"mg\/l","Comment":"For more details see also ISO-14040 and ISO-14044 documents.","SAESPN":null,"SubmitDate":"2022-10-20","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation","25 - Slurry Applicators"],"LastModifiedDate":"2022-11-15","Attachments":[]},{"DDIdentifier":703,"DDEName":"Import DDI 3","Definition":"Entire Lifetime CO2 equivalent specified as mass in kilogram [kg]\n","sysUnitReadable":"Mass - kg","sysUnit":"kg","Comment":"For more details see also ISO-14040 and ISO-14044 documents.","SAESPN":null,"SubmitDate":"2022-10-20","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinenfabrik GmbH & Co. KG","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2022-11-15","Attachments":[]},{"DDIdentifier":704,"DDEName":"Import DDI 4","Definition":"The Working Width of the Irrigation system is the Distance between the single Tramline Tracks for the Irrigation system.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Besides a Tramlining rhythm for a Sprayer, a second Tramlining rhythm with a different pattern for an irrigation system may exist.\nThe Working Width of the Irrigation system is also the Distance between the single Tramline Tracks for the Irrigation system. This value is a manual user input and is provided by the Implement to the Tramline Controller.\nThe following picture shows an example with a 6m Seed drill Width, 24m Sprayer Width and a 66m Irrigation Width.\n","SAESPN":null,"SubmitDate":"2015-12-10","SubmitBy":"Karsten Helweg","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2022-12-02","Attachments":[]},{"DDIdentifier":705,"DDEName":"Import DDI 5","Definition":"Distance between the centre of the Wheels of the Irrigation system.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For more details see attachment DDI 505.","SAESPN":null,"SubmitDate":"2015-12-10","SubmitBy":"Karsten Helweg","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2022-12-02","Attachments":[]},{"DDIdentifier":744,"DDEName":"Import DDI 4","Definition":"The Working Width of the Irrigation system is the Distance between the single Tramline Tracks for the Irrigation system.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"Besides a Tramlining rhythm for a Sprayer, a second Tramlining rhythm with a different pattern for an irrigation system may exist.\nThe Working Width of the Irrigation system is also the Distance between the single Tramline Tracks for the Irrigation system. This value is a manual user input and is provided by the Implement to the Tramline Controller.\nThe following picture shows an example with a 6m Seed drill Width, 24m Sprayer Width and a 66m Irrigation Width.\n","SAESPN":null,"SubmitDate":"2015-12-10","SubmitBy":"Karsten Helweg","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2022-12-02","Attachments":[]},{"DDIdentifier":755,"DDEName":"Import DDI 5","Definition":"Distance between the centre of the Wheels of the Irrigation system.","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"For more details see attachment DDI 505.","SAESPN":null,"SubmitDate":"2015-12-10","SubmitBy":"Karsten Helweg","SubmitCompany":"Competence Center ISOBUS e.V.","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders"],"LastModifiedDate":"2022-12-02","Attachments":[]},{"DDIdentifier":3233,"DDEName":"Steering Type","Definition":"This DDI is used to steering type of a device which can be utilized by an Automatic Steering System for identification purposes. The valid definitions are:\r\n\r\n1 = Front-wheel Steer (FWS) Machine\r\n2 = Rear-wheel Steer (RWS) Machine\r\n3 = Zero-Turn Machine\r\n4 = Articulated Machine\r\n5 = Four-wheel Steer (4WS) Machine\r\n6 = Dog-walk Machine\r\n\r\n","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Examples of specific types of machines are listed below;\r\n\r\n1 = Tractor or Sprayer\r\n2 = Harvester\r\n3 = Windrower or Track Machine\r\n4 = Articulated Tractor\r\n5 = Certain Applicators\r\n6 = Certain Applicators\r\n","SAESPN":"","SubmitDate":"2013-04-10","SubmitBy":"Paul Matthews","SubmitCompany":"AGCO","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"6","MaximumDisplayValue":"6","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["1 - Tractor","6 - Sprayers","7 - Harvesters"],"LastModifiedDate":"2019-05-30","Attachments":[]},{"DDIdentifier":3423,"DDEName":"Cutting Angle","Definition":"The angle of the mower bar of a mower relative to the ground","sysUnitReadable":"Angle - °","sysUnit":"°","Comment":"","SAESPN":"","SubmitDate":"2013-12-04","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone GmbH","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0,000","MaximumValue":"2147483647","MaximumDisplayValue":"2,147,483,647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["7 - Harvesters","9 - Forage harvester"],"LastModifiedDate":"2019-05-30","Attachments":[]},{"DDIdentifier":5044,"DDEName":"Product Placement Marker","Definition":"This DDI shall mark a position, where a countable product was placed on the field. It shall be sent once, when the product is placed on the field.\r\n\r\nThe value depends on the type of product:\r\n0 - None \r\n1 - Unknown\r\n2 - Square Bale\r\n3 - Wrapped Square Bale\r\n4-102: Reserved for Square Bale specific Products\r\n\r\n103 - Round Bale \r\n104 - Wrapped Square Bale \r\n105 - 202 Reserved for Round Bale specific Products\r\n42 - Pile e.g. for potatoes\r\n42 - etc. Reserved\r\n\r\n\r\n\r\n","sysUnitReadable":"not defined - not defined","sysUnit":"not defined","Comment":"If this DDI is supported, it shall be part of the Default Set of a machine using an on change trigger. It shall be sent whenever a product or a groupable package of products is placed on the field.\r\nFor systems having trouble sending the same value multiple times, a 0 can be sent after the actual value was successfully transmitted.","SAESPN":"","SubmitDate":"2016-06-06","SubmitBy":"Frank Wiebeler","SubmitCompany":"Maschinenfabrik Bernard Krone","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned","0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work","17 - Sensor System","18 - Reserved for Future Assignment","19 - Timber Harvesters","20 - Forwarders","21 - Timber loaders","22 - Timber Processing Machines","23 - Mulchers","24 - Utility Vehicles","25 - Slurry Applicators","26 - Feeder \/ Mixer"],"LastModifiedDate":"2019-05-30","Attachments":[]},{"DDIdentifier":32769,"DDEName":"Maximum Crop Grape Diameter","Definition":"Maximum crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the diameter of the crop.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":32770,"DDEName":"Maximum Crop Grape Length","Definition":"Maximum crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the length of the crop.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":36865,"DDEName":"Range DDI 2","Definition":"The minimum droplet size the system can produce. Defined as:\n0 = Unknown,\n1 = Extremely Fine - XF,\n2 = Very Fine - VF,\n3 = Fine - F,\n4 = Medium - M,\n5 = Coarse - C,\n6 = Very Coarse - VC,\n7 = Extremely Coarse - XC,\n8 = Ultra Coarse - UC,\n9-254 = Reserved,\n255 = No Droplet Size Available.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Droplet sizes are currently defined in ISO 25358 and are broken into 8 classification categories and also assigned a corresponding colour code as follows:\nExtremely Fine = Purple,\nVery Fine = Red,\nFine = Orange,\nMedium = Yellow,\nCoarse = Green,\nVery Coarse = Blue,\nExtremely Coarse = White,\nUltra Coarse = Black","SAESPN":null,"SubmitDate":"2021-03-08","SubmitBy":"John Summers","SubmitCompany":"TeeJet Technologies","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"255","MaximumDisplayValue":"255","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation","17 - Sensor System"],"LastModifiedDate":"2021-05-12","Attachments":[]},{"DDIdentifier":36866,"DDEName":"Minimum Crop Grade Length","Definition":"Minimum crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the length of the crop.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":40961,"DDEName":"Range DDI 3","Definition":"The default droplet size the system is producing. Defined as:\n0 = Unknown,\n1 = Extremely Fine - XF,\n2 = Very Fine - VF,\n3 = Fine - F,\n4 = Medium - M,\n5 = Coarse - C,\n6 = Very Coarse - VC,\n7 = Extremely Coarse - XC,\n8 = Ultra Coarse - UC,\n9-254 = Reserved,\n255 = No Droplet Size Available.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Droplet sizes are currently defined in ISO 25358 and are broken into 8 classification categories and also assigned a corresponding colour code as follows:\nExtremely Fine = Purple,\nVery Fine = Red,\nFine = Orange,\nMedium = Yellow,\nCoarse = Green,\nVery Coarse = Blue,\nExtremely Coarse = White,\nUltra Coarse = Black","SAESPN":null,"SubmitDate":"2021-05-12","SubmitBy":"John Summers","SubmitCompany":"TeeJet Technologies","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"255","MaximumDisplayValue":"255","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","17 - Sensor System"],"LastModifiedDate":"2021-05-12","Attachments":[]},{"DDIdentifier":40962,"DDEName":"Default Crop Grade Length","Definition":"Default crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the length of the crop.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":45057,"DDEName":"Range DDI 4","Definition":"The actual droplet size the system is producing. Defined as:\n0 = Unknown,\n1 = Extremely Fine - XF,\n2 = Very Fine - VF,\n3 = Fine - F,\n4 = Medium - M,\n5 = Coarse - C,\n6 = Very Coarse - VC,\n7 = Extremely Coarse - XC,\n8 = Ultra Coarse - UC,\n9-254 = Reserved,\n255 = No Droplet Size Available.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Droplet sizes are currently defined in ISO 25358 and are broken into 8 classification categories and also assigned a corresponding colour code as follows:\nExtremely Fine = Purple,\nVery Fine = Red,\nFine = Orange,\nMedium = Yellow,\nCoarse = Green,\nVery Coarse = Blue,\nExtremely Coarse = White,\nUltra Coarse = Black","SAESPN":null,"SubmitDate":"2021-03-08","SubmitBy":"John Summers","SubmitCompany":"TeeJet Technologies","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"255","MaximumDisplayValue":"255","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation","17 - Sensor System"],"LastModifiedDate":"2021-05-12","Attachments":[]},{"DDIdentifier":45058,"DDEName":"Actual Crop Grade Length","Definition":"Actual crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the length of the crop.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":49153,"DDEName":"Range DDI 5","Definition":"The setpoint for droplet size. Defined as:\n0 = Unknown,\n1 = Extremely Fine - XF,\n2 = Very Fine - VF,\n3 = Fine - F,\n4 = Medium - M,\n5 = Coarse - C,\n6 = Very Coarse - VC,\n7 = Extremely Coarse - XC,\n8 = Ultra Coarse - UC,\n9-254 = Reserved,\n255 = No Droplet Size Available.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"Droplet sizes are currently defined in ISO 25358 and are broken into 8 classification categories and also assigned a corresponding colour code as follows:\nExtremely Fine = Purple,\nVery Fine = Red,\nFine = Orange,\nMedium = Yellow,\nCoarse = Green,\nVery Coarse = Blue,\nExtremely Coarse = White,\nUltra Coarse = Black","SAESPN":null,"SubmitDate":"2021-03-08","SubmitBy":"John Summers","SubmitCompany":"TeeJet Technologies","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"255","MaximumDisplayValue":"255","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","10 - Irrigation","17 - Sensor System"],"LastModifiedDate":"2021-05-12","Attachments":[]},{"DDIdentifier":49154,"DDEName":"Setpoint Crop Grade Length","Definition":"Setpoint crop size in mm, measured with crop specific methods\n","sysUnitReadable":"Length - mm","sysUnit":"mm","Comment":"The most common method of measurement is to determine the length of the crop, but other methods are also possible, like e.g. length.\n","SAESPN":null,"SubmitDate":"2023-03-24","SubmitBy":"Hendrik Hageböke","SubmitCompany":"GRIMME Landmaschinen GmbH & Co.KG","BitResolution":"0,001","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["4 - Planters \/Seeders","7 - Harvesters","8 - Root Harvester","14 - Special Crops","17 - Sensor System"],"LastModifiedDate":"2023-03-24","Attachments":[]},{"DDIdentifier":57342,"DDEName":"PGN Based Data","Definition":"This DDI is used in the XML files to identify PGN based data.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This DDI is specified in ISO 11783-10 IS paragraph 6.3 Logging parameters from parameter groups.","SAESPN":"","SubmitDate":"2005-01-25","SubmitBy":"Part 10 Task Force","SubmitCompany":"0 - Reserved","BitResolution":"1","MinimumValue":"-2147483648","MinimumDisplayValue":"-2147483648","MaximumValue":"2147483647","MaximumDisplayValue":"2147483647","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":["0 - Non-specific system","1 - Tractor","2 - Primary Soil Tillage","3 - Secondary Soil Tillage","4 - Planters \/Seeders","5 - Fertilizer","6 - Sprayers","7 - Harvesters","8 - Root Harvester","9 - Forage harvester","10 - Irrigation","11 - Transport \/ Trailers","12 - Farmyard Work","13 - Powered Auxilary Units","14 - Special Crops","15 - Municipal Work"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":57343,"DDEName":"Request Default Process Data","Definition":"Request Default Process Data. This DDE is the highest ISO assigned entity.  The range above this number is reserved for manufacture specific DDE's.","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"This DDE was a result of Jan 2005 Task Controller meeting.","SAESPN":"not specified","SubmitDate":"2005-01-20","SubmitBy":"11783-Part 10 Task Force","SubmitCompany":"89 - Kverneland Group, Electronics Division","BitResolution":"1","MinimumValue":"0","MinimumDisplayValue":"0","MaximumValue":"0","MaximumDisplayValue":"0","Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":"2009-02-05","Attachments":[]},{"DDIdentifier":57344,"DDEName":"65534 Proprietary DDI Range","Definition":"Manufacturer proprietary definitions","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"It is not recommended to process proprietary DDEs from other manufacturers","SAESPN":"","SubmitDate":"0000-00-00","SubmitBy":"Part 10 Task Force","SubmitCompany":"0 - Reserved","BitResolution":"0","MinimumValue":"","MinimumDisplayValue":null,"MaximumValue":"","MaximumDisplayValue":null,"Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":null,"Attachments":[]},{"DDIdentifier":65535,"DDEName":"Reserved","Definition":"Reserved","sysUnitReadable":" - n.a.","sysUnit":"n.a.","Comment":"","SAESPN":"","SubmitDate":"0000-00-00","SubmitBy":"Part 10 Task Force","SubmitCompany":"0 - Reserved","BitResolution":"0","MinimumValue":"","MinimumDisplayValue":null,"MaximumValue":"","MaximumDisplayValue":null,"Type":"Entity","SAEOption":"No SAE SPN","SubIdentifier":null,"isDraft":0,"isForRevision":0,"RevisionNumber":1,"DeviceClasses":[" - Not Assigned"],"LastModifiedDate":null,"Attachments":[]}]