在第三部分,提出了三维模拟,以评估模式转换损失和回波损失的结果。接下来,提出并评估了用于改善结果的印刷电路板的布局修改。在最后一节中得出结论。
关于题为 "OABR_PMA_06: 检查MDI模式转换 "的章节,它被用来作为一个参考,以确保DUT涉及模式转换的限制。使用网络分析仪的测试设置与之前描述的回波损耗类似,但这次要测量参数Sdc11。
III.仿真主题
图6 CST PCB Studio的原理图编辑
B.模式转换损耗和回波损耗的结果
图10 布局修改后的回波损耗计算
IV.总结
参考文献:
[1]Open Alliance Automotive Ethernet ECU Test Specification, August 2017.
[2]Automotive Ethernet: An overview, Ixia, White paper, May 2014.
[3]T. Sun, M. Vierheller, A. Stieler, V. Speckmann, D. Bollati, M. Hampe, “Designing and Manufacturing of a Worst Case Communication Channel for Automotive Ethernet 1000BASE-T1”, 2019 International Symposium on Electromagnetic Compatibility - EMC EUROPE, 2-6 Sept. 2019, Barcelona (Spain), 2019.
[4]M. Hampe, “Accurate Measurement of Transmission Line Parameters for Automotive Ethernet”, 2015 IEEE International Symposium on Electromagnetic Compatibility (EMC), 16-22 August 2015, Dresden (Germany), 2015
[5]S. Mortazavi, D. Schleicher, A. Stieler, A. Sinai, F. Gerfers, M. Hampe, “EMC Analysis of Shielded Twisted Pair and Shielded Parallel Pair Transmission Lines for Automotive Multi-Gig Ethernet”, 2019 IEEE International Symposium on Electromagnetic Compatibility, Signal & Power Integrity (EMC+SIPI), 22-26 July 2019, New Orleans (USA), 2019.
[6]IEEE 100BASE-T1 Definitions for Communication Channel, Version 1.0.
[7]IEEE Std 802.3bwTM – 2015 Amendment 1: Physical Layer Specifications and Management Parameters for 100 Mb/s Operation over a Single Balanced Twisted Pair Cable (100BASE-T1).
[8]CST Microwave Studio, v.2020, www.cst.com.
[9]A. Silaghi, A. De Sabata, L. Matekovits, “Application of a Near Field Method to Reducing Conducted Emissions”, 2019 International Conference on Electromagnetic in Advanced Applications (ICEAA), 9-13 September 2019, Granada (Spain), 2019.
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