Optimization of PCB PDN design using enhanced VRM model

Guang Chen, A. Abou-Alfotouh, Zhiwei Liu, M. Shabban, D. Oh
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引用次数: 3

Abstract

Decoupling for power rails that demand large current, such as FPGA core, is difficult. The capacitors required for derived solution requires excessive board area for placement and raise system cost significantly. Switcher with high loop Band Width helps reducing the decoupling needs with all the design improvements. In this paper, we proposed a 3-stage behavioral model for switcher to help PCB designer optimize PCB decoupling design. The paper also covers some issues related to switcher application, such as layout optimization for best noise performance.
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基于增强VRM模型的PCB PDN优化设计
对于需要大电流的电源轨,如FPGA核心,去耦是困难的。衍生解决方案所需的电容器需要过多的电路板面积来放置,并显着提高系统成本。具有高环路带宽的切换器有助于减少所有设计改进的解耦需求。本文提出了切换器的三阶段行为模型,以帮助PCB设计者优化PCB解耦设计。本文还讨论了与开关应用有关的一些问题,如优化布局以获得最佳的噪声性能。
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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