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Power distribution network worst-case power noise and an efficient estimation method

机译:配电网最坏情况下的电源噪声和有效估计方法

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In this study, we examine a novel insight into the worst-case power noise in power integrity analysis for the core power of an ASIC. It is found that the traditional target impedance method resorting minimizing the peak impedance cannot guarantee a minimal worst-case power noise. The reason is because the worst-case power noise may not occur when the ASIC switching current is modulated at the peak impedance frequency of the power delivery network, contrary to what has been suggested in other studies. This paper discusses the fundamental mechanism behind this phenomenon. Additionally, we propose a new guideline to assess the worst-case power noise, i.e., characterizing the relationship between the power noise and the modulation frequency of the switching current. An efficient method to quickly characterize the relationship is provided, which is capable of greatly reducing the simulation time to reveal the ‘true’ worst-case power noise.
机译:在这项研究中,我们研究了针对ASIC核心电源的电源完整性分析中最坏情况下的电源噪声的新颖见解。发现传统的目标阻抗方法求助于使峰值阻抗最小化不能保证最小的最坏情况下的电源噪声。原因是因为与其他研究建议的相反,当以功率传输网络的峰值阻抗频率调制ASIC开关电流时,最坏情况的电源噪声可能不会发生。本文讨论了这种现象背后的根本机制。另外,我们提出了一条新的准则来评估最坏情况下的电源噪声,即表征电源噪声和开关电流的调制频率之间的关系。提供了一种快速表征这种关系的有效方法,该方法能够大大减少模拟时间,以揭示“真实的”最坏情况下的电源噪声。

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