GMW GMW14241-2012 GMLAN Device Test Specification for GMLAN High-Speed Mid-Speed Low-Speed CAN Bus Nodes Issue 3 English.pdf
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1、 WORLDWIDE ENGINEERING STANDARDS General Specification GMW14241 GMLAN Device Test Specification for GMLAN High-Speed, Mid-Speed, Low-Speed CAN Bus Nodes Copyright 2012 General Motors Company All Rights Reserved June 2012 Originating Department: GME Specification Center Page 1 of 171 Index Index . 1
2、1 Introduction 5 1.1 Scope. . 5 1.2 Mission/Theme 8 1.3 Classification. . 8 2 References . 8 2.1 External Standards/Specifications. . 8 2.2 GM Standards/Specifications. 8 2.3 Additional References. . 8 3 Test Preparation and Evaluation . 9 3.1 Resources. 9 3.1.1 Calibration . 9 3.1.2 Alternatives 9
3、3.1.3 Facilities 9 3.1.4 Equipment . 9 3.1.5 Test Vehicle/Test Piece . 9 3.1.6 Test Time 9 3.1.7 Test Required Information 9 3.1.8 Personnel/Skills . 9 3.2 Preparation 9 3.3 Conditions 9 3.3.1 Environmental Conditions 9 3.3.2 Test Conditions 9 3.4 Instructions 9 3.5 Data . 9 3.6 Safety 9 3.7 Documen
4、tation . 9 3.7.1 Test Results 10 3.7.2 Deviations from Test Procedure . 10 3.8 Recommended CAN Test Tools. 10 4 Requirements and Procedure . 11 Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without lice
5、nse from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14241 Copyright 2012 General Motors Company All Rights Reserved June 2012 Page 2 of 171 4.1 Physical Layer (Dual-Wire High-Speed CAN, GMW3122). 11 4.1.1 CAN Bus Output Voltage Levels. . 11 4.1.2 Recessive Input Threshold. 13 4.1.3 Dominant Input
6、 Threshold. . 13 4.1.4 Device Resistance. 15 4.1.5 Device Input Capacitance. . 18 4.1.6 Minimum and Maximum Supply Voltage Level for Bus Communication. . 20 4.1.7 Behavior during Crank . 21 4.1.8 Signal Rise/Fall Times . 21 4.1.9 Signal Characteristics 24 4.1.10 Bit Timing 27 4.1.11 Fault Tolerant M
7、odes . 29 4.1.12 Internal Delay 34 4.1.13 Communication Enable Line 35 4.1.14 ESD Protection 46 4.2 Physical Layer (Dual-Wire Mid-Speed CAN, GMW3122) 47 4.2.1 CAN Bus Output Voltage Levels 47 4.2.2 Recessive Input Threshold . 49 4.2.3 Dominant Input Threshold 50 4.2.4 Device Resistance . 51 4.2.5 De
8、vice Input Capacitance 54 4.2.6 Minimum and Maximum Supply Voltage Level for Bus Communication 56 4.2.7 Behavior during Crank . 57 4.2.8 Signal Rise/Fall Times . 58 4.2.9 Signal Characteristics 60 4.2.10 Bit Timing 63 4.2.11 Fault Tolerant Modes . 65 4.2.12 Internal Delay 70 4.2.13 ESD Protection 71
9、 4.3 Physical Layer (Single-Wire CAN, GMW3089) . 72 4.3.1 Device Unit Load . 72 4.3.2 Bus Dominant Output Voltage Level 73 4.3.3 Bus Recessive or Passive State Low Voltage 77 4.3.4 Input Threshold 78 4.3.5 Minimum and Maximum Supply Voltage Level for Bus Communication 79 4.3.6 Behavior during Crank
10、. 80 4.3.7 Signal Rise/Fall Time . 81 4.3.8 Internal Delay 83 4.3.9 Signal Characteristics 84 4.3.10 Bit Timing 86 Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE
11、 ENGINEERING STANDARDS GMW14241 Copyright 2012 General Motors Company All Rights Reserved June 2012 Page 3 of 171 4.3.11 Fault Tolerant Modes . 87 4.3.12 ESD Protection 94 4.4 Data Link Layer 94 4.4.1 CAN Protocol Conformance . 94 4.4.2 Extended Format Frame (CAN 2.0B Passive) Compatibility . 94 4.4
12、.3 Mixed Mode Operation. 94 4.4.4 Bus Load . 95 4.5 Application Interface. 96 4.5.1 Application Message Transmission 96 4.5.2 Application Message Transmission Models 97 4.5.3 Implementation of Correct Data Length Code (DLC) 100 4.6 Node Management 101 4.6.1 Node Management on LSCAN . 101 4.6.1.3 Beh
13、avior after a Reset 102 4.6.2 Node Management on High-Speed CAN (HSCAN) 103 4.6.3 Node Management on MSCAN 109 4.6.3.4 Behavior after a Reset 111 4.7 Network Management on Low-Speed CAN 112 4.7.1 VNMF Content and Timing . 112 4.7.2 VN Activation . 113 4.7.3 VN Deactivation . 127 4.7.4 Node Communica
14、tion Active Message . 128 4.8 Network Management on Mid-Speed CAN . 130 4.8.1 VNMF Content and Timing . 130 4.8.2 VN Activation . 132 4.8.3 VN Deactivation . 143 4.8.4 Node Communication Active Message . 144 4.9 Diagnostic Tests (GMW3110) 146 4.9.1 Diagnostic Tests for Low-Speed CAN Bus Nodes 146 4.
15、9.2 Diagnostic Tests for Mid-Speed CAN Bus Nodes . 150 4.9.3 Diagnostic Tests for High-Speed CAN Bus Nodes . 153 4.9.4 Signal Supervision by Device . 155 4.9.4.1 Signal Supervision by Device Payload Supervision 155 4.9.4.2 Signal Supervision by Device Validity bits supervision 156 4.9.4.3 Signal Sup
16、ervision by Device Gated signals supervision . 156 4.10 Signal Converter Functionality 156 4.10.1 Signal Converter Delay Times 156 4.10.2 Signal Supervision through Signal Converters 158 5 Provisions for Shipping . 162 6 Notes . 162 Copyright General Motors Company Provided by IHS under license with
17、 General Motors CompanyNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14241 Copyright 2012 General Motors Company All Rights Reserved June 2012 Page 4 of 171 6.1 Glossary 162 6.1.1 Conventions 162 6.1.2 Ratings 163 6.1.3 Other
18、 . 163 6.2 Acronyms, Abbreviations, and Symbols 163 7 Additional Paragraphs 163 8 Coding System . 163 9 Release and Revisions . 163 Appendix A 164 A1 Recommended CAN Bit Timing Settings for Test Tools 164 A2 Tips on Testing 164 A2.1 Alternative Method for Device Capacitance Measurement 164 A2.1.1 Te
19、st Setup . 164 A2.1.2 Test Pulse . 165 A2.2 Testing SWCAN High-Speed Mode With CANoe 165 A2.2.1 How to Set the DUT to High-Speed Mode 165 A2.2.2 How to Display the High-Speed Mode Answer With a Standard Oscilloscope 166 A2.3 Forcing a CAN Node into Bus Off With CANstress . 167 A2.4 Alternative Curre
20、nt Source Schematic. Figure A8 shows schematic of current source 169 A2.5 Application Schematic for Input Threshold in HVWU Mode. 170 Appendix B 171 B1 Document Structure Overview 171 Copyright General Motors Company Provided by IHS under license with General Motors CompanyNot for ResaleNo reproduct
21、ion or networking permitted without license from IHS-,-,-GM WORLDWIDE ENGINEERING STANDARDS GMW14241 Copyright 2012 General Motors Company All Rights Reserved June 2012 Page 5 of 171 1 Introduction Note: Nothing in this standard supersedes applicable laws and regulations. Note: In the event of confl
22、ict between the English and domestic language, the English language shall take precedence. Following acronyms and abbreviations are used herein: 1.1 Scope. This general document is a lead for testing High-Speed, Mid-Speed, and Low-Speed GM (In-Vehicle) Local Area Network (GMLAN) Controller Area Netw
23、ork (CAN) bus devices. 1.1.1 Electromagnetic Compatibility (EMC) and Electro Magnetic Interference (EMI) testing is not described in this document, except crank pulse and Electrostatic Discharge (ESD). 1.1.2 For In Vehicle Local Area Network (IVLAN) Mid- and High-Speed CAN bus device tests, refer to
24、 the IVLAN Device Test Specification. 1.1.3 The measurement results shall be documented in the separately available GMW14241 Test Result Template (CG2615), all plots included. 1.1.4 Parameters are given as nominal values unless otherwise noted. 1.1.5 All tests and test methods shall be executed if n
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