Beyond 10Gbps Electrical Automotive Ethernet Channel Insertion Loss Characterization

Jamila Josip Borda, K. Matheus, F. Gerfers
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Abstract

This research work focuses on electrical investigations and characterization of the Automotive Ethernet channel for 25Gbps (25GBASE-T1). This characterization is performed with the aid of insertion loss ($\mathrm{S}_{\mathrm{DD}12}/\mathrm{S}_{\mathrm{DD}21}$) mixed-mode scattering parameters (S-parameters) which describe the transmitted signal electrical behavior within the Ethernet channel considering it’s coupled transmission line characteristics. This paper commences with an introductory background of this research topic. This is then followed with an overview of the Automotive Ethernet channel and components. A succeeding section addresses the various channel electrical characteristic parameters. With the aid of implemented multi-gigabit Ethernet test boards, to emulate an ECU-ECU communication system setup, the fourth section investigates and discusses insertion loss test bench measurements and simulations on channel segments (PCB, link segment) and complete single 25Gbps (25GBASE-T1) Ethernet channel. The investigations in this study deploy Shielded Twisted Pair (STP) cables of varying length and cable topologies as a physical transmission medium. Last section addresses the key takeaways of this paper and recommendations on subsequent analysis.
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超过10Gbps的汽车电子以太网通道插入损耗特性
这项研究工作的重点是25Gbps (25GBASE-T1)汽车以太网通道的电气调查和表征。该表征是借助插入损耗($\mathrm{S}_{\mathrm{DD}12}/\mathrm{S}_{\mathrm{DD}21}$)混合模式散射参数(S参数)进行的,该参数描述了考虑到耦合传输线特性的以太网信道内传输信号的电气行为。本文首先介绍了本研究课题的背景。接下来是对汽车以太网通道和组件的概述。下一节讨论各种通道电气特性参数。在实现的多千兆以太网测试板的帮助下,为了模拟ECU-ECU通信系统的设置,第四部分研究和讨论了在信道段(PCB,链路段)和完整的单个25Gbps (25GBASE-T1)以太网信道上的插入损耗试验台测量和仿真。本研究的调查部署了不同长度和电缆拓扑的屏蔽双绞线(STP)电缆作为物理传输介质。最后一节阐述了本文的主要结论和对后续分析的建议。
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