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Interconnect performance corners considering crosstalk noise

机译:考虑串扰噪声的互连性能拐点

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Process induced variations in the interconnect capacitance and resistance have resulted in significant uncertainly in the interconnect delay. In this work, we propose a new method to compute the interconnect corner considering coupling-noise due to simultaneous switching of aggressors. In prior approaches, the interconnect corners were computed under the assumption that the aggressor nets are not switching and no coupling-noise is injected on the victim net. In this paper, we first show that the interconnect corners obtained under such assumptions could in reality be much different from the true interconnect corner and could therefore result in optimistic delay analysis, particularly for fast-path analysis performed to check hold time violations. We also show that in some cases, the interconnect corner may not lie at an extreme point of the process variation range. In this work, we use the Elmore delay metric to efficiently search for the correct interconnect corner of the victim stage considering delay noise. We then show experimental results to verify the effectiveness of our proposed approach and demonstrate that the traditional approaches of computing the interconnect corners could lead to errors of up to 60% on a net by net basis.
机译:在互连延迟中,互连电容和电阻的过程诱导的变化导致了不确定的不确定。在这项工作中,我们提出了一种新的方法来计算由于同时切换侵略者而考虑耦合噪声的互连角。在现有的方法中,在假设侵略者网没有切换的情况下计算互连角,并且在受害者网上没有注入耦合噪声。在本文中,我们首先表明,在这种假设下获得的互连角可以实际上与真正的互连角有很大不同,因此可以导致乐观的延迟分析,特别是对于检查保持时间违规的快速路径分析。我们还表明,在某些情况下,互连拐角可能不会位于过程变化范围的极端点。在这项工作中,我们使用Elmore延迟度量来有效地搜索考虑延迟噪声的受害阶段的正确互连角。然后,我们显示实验结果,以验证我们提出的方法的有效性,并证明了计算互连角落的传统方法可能导致净净净值高达60%的误差。

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