Design of power delivery networks using power transmission lines and pseudo-balanced signaling for multiple I/Os

S. Huh, M. Swaminathan, D. Keezer
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引用次数: 5

Abstract

Return path discontinuities (RPDs) cause the coupling between signal lines and the power delivery network, resulting in power supply noise and reduced timing and voltage margins at high speed. Prior work focused at reducing the RPD effect, usually through the use of power planes and decoupling capacitors. A new approach to address this issue replaces the plane structure with power transmission lines (PTLs), which removes the RPD effect. By eliminating the RPDs, the power supply noise is minimized. Therefore, voltage and timing margins can be improved to support higher data rates. In this paper, the application of the PTL is extended to the transmission of multiple parallel bits, and the resulting waveforms are compared to those using conventional power planes. Also, a new pseudo-balanced signaling scheme is used to further enhance signal integrity when using the PTL approach.
采用输电线路和多I/ o伪平衡信令的电力输送网络设计
返回路径不连续(rpd)会导致信号线和输电网之间的耦合,从而导致供电噪声,并降低高速时的时序和电压裕度。先前的工作主要是通过使用功率平面和去耦电容器来降低RPD效应。解决这一问题的一种新方法是用输电线路(ptl)取代平面结构,从而消除了RPD效应。通过消除rpd,电源噪声被最小化。因此,电压和时间裕度可以改进以支持更高的数据速率。本文将PTL的应用扩展到多个并行位的传输,并与传统功率平面的波形进行了比较。此外,在使用PTL方法时,采用了一种新的伪平衡信令方案,进一步提高了信号的完整性。
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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