Design and verification of differential transmission lines

H. Wu, W. Beyene, N. Cheng, Ching-Chao Huang, C. Yuan
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引用次数: 24

Abstract

Differential signaling is a popular choice for multi-gigabit digital applications such as FiberChannel, Infiniband, OIF, RapidIO, and XAUI. This is due to the fact that differential signaling has the ability to reject common mode noise such as cross talk, simultaneous switching noise, power supply and ground bounce noise. To support differential signaling, differential transmission lines are required. There are several ways of designing differential transmission lines on a conventional printed circuit board (PCB). These include microstrip line, edge coupled stripline, and broadside-coupled stripline. This paper describes a methodology for designing and verifying differential transmission lines on PCBs. The electrical performance of these three differential transmission lines is evaluated in both the frequency and time domain. The practical consideration of manufacturing variation is also examined. Finally, accurate HSPICE w-element models are generated for time domain transient simulations.
差动传输线的设计与验证
差分信号是千兆数字应用(如FiberChannel、Infiniband、OIF、RapidIO和XAUI)的流行选择。这是由于差分信号具有抑制共模噪声的能力,如串扰、同时开关噪声、电源和地面反弹噪声。为了支持差分信号,需要差分传输线。在传统的印刷电路板(PCB)上设计差动传输线有几种方法。这些包括微带线、边缘耦合带状线和宽侧耦合带状线。本文介绍了一种设计和验证pcb差分传输线的方法。在频域和时域对这三条差分传输线的电气性能进行了评价。对制造变化的实际考虑也进行了探讨。最后,为时域瞬态仿真生成了精确的HSPICE w元模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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