单端接口全系统功率输出分析

H. Shu, B. E. Cheah, J. Kong, S. G. Pang, Li Chuang Quek
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引用次数: 1

摘要

采用Icc(t)方法的传统输电分析容易产生悲观的结果,从而导致输电网络(PDN)过度设计。此外,使用Icc(t)方法捕获的噪声剖面与实验室测量数据有很高的不相关可能性。与传统的Icc(t)方法相比,最近采用信号完整性和功率传输(SIPD)联合仿真方法的工作取得了丰硕的成果。然而,SIPD联合仿真方法仍然无法解决基于时域分析的仿真结果与验证结果不相关的问题。本文讨论了基于Icc(t)的方法的局限性以及对进一步提高模拟精度至关重要的几个重要模拟假设。对电力输送噪声行为产生重大影响的关键参数通过该评估进行了表征。本文还讨论了功率传输噪声对整体信号性能的影响,以供将来的设计参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full system power delivery analysis for single ended interface
The conventional power delivery analysis applying Icc(t) approach has the propensity to yield pessimistic outcome that leads to power delivery network (PDN) over-design. In addition, the noise profile captured using Icc(t) approach has high prospect of miscorrelation with the lab measurement data. Recent works adopting the signal integrity and power delivery (SIPD) co-simulation approach was found fruitful to produce better results compare to the conventional Icc(t) approach. However, the SIPD co-simulation approach is still unable to address the miscorrelation between the simulation and validation results based on time domain analysis. In this paper, the limitations of the Icc(t) based methodology and several important simulation assumptions that are critical to further improve the simulation accuracy are discussed. Key parameters that pose significant impacts to power delivery noise behavior are characterized through this evaluation. The impact of the power delivery noise to overall signaling perfomance is also discussed in this paper for future design references.
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