Toward PDN resource estimation: A law of general power density

Kwangok Jeong, A. Kahng
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引用次数: 3

Abstract

The power distribution network (PDN) is an increasingly significant consumer of on-chip interconnect resources. Thus, PDN estimation is increasingly central to system-level interconnect prediction for modern ICs. PDN design and verification require accurate power estimation and realistic current source distribution across a die. However, at early design stages, detailed placement or switching information is rarely available, so that designers either rely on pessimistic overdesign, which can lead to severe routing congestion, or encounter unexpected voltage noise problems at late design stages, which can lead to costly design iterations. In this work, we seek to identify a general trend for power density. From both empirical and analytical studies on random activity distributions, we propose a power law of activity density, which can potentially enable estimates of power density and voltage noise, as well as of required power distribution network (PDN) resources, in early design stages.
迈向PDN资源估算:一般功率密度定律
配电网络(PDN)对片上互连资源的消耗越来越大。因此,PDN估计对现代集成电路的系统级互连预测越来越重要。PDN设计和验证需要精确的功率估计和真实的电流源分布。然而,在早期设计阶段,详细的布局或开关信息很少可用,因此设计人员要么依赖于悲观的过度设计,这可能导致严重的路由拥塞,要么在后期设计阶段遇到意外的电压噪声问题,这可能导致昂贵的设计迭代。在这项工作中,我们试图确定功率密度的总体趋势。从随机活度分布的实证和分析研究中,我们提出了活度密度的幂律,可以在早期设计阶段估计功率密度和电压噪声,以及所需的配电网络(PDN)资源。
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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