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An LOCV-based static timing analysis considering spatial correlations of power supply variations

机译:考虑电源变化空间相关性的基于LOCV的静态时序分析

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As the operating frequency of LSI becomes higher and the power supply voltage becomes lower, the on-chip power supply variation has become a dominant factor which influences the signal delay of the circuits. The static timing analysis (STA) considering on-chip power supply variations (IR-drop) is therefore one of the most crucial issues in the LSI designs nowadays. We propose an efficient STA method to consider on-chip power supply variations in the static timing analysis by utilizing the spatial correlations of IR-drop. The proposed method is based on the widely-used technique in STA considering OCV (on-chip variations), which is called LOCV (Location-based OCV) technique, and therefore our method is easy to be incorporated into the existing timing analysis flow. The proposed method is evaluated by using test data including H-tree clock structure with various on-chip IR-drop distributions. The experimental results show that the proposed method can reduce the design margin with respect to power supply variations by 6–85% (47% on the average) compared with the conventional practical approach with a constant OCV derating factor, while requiring no additional computation cost in the static timing analysis. Thus the proposed method can contribute to a fast timing closure considering on-chip power supply variations.
机译:随着LSI的工作频率变高,电源电压变低,片上电源变化已成为影响电路的信号延迟的主要因素。因此,考虑片上电源变化(IR-DROP)的静态定时分析(STA)因此,LSI设计中最重要的问题之一。我们提出了一种通过利用IR-DROP的空间相关性来考虑静态时间分析的片上电源变化的高效STA方法。所提出的方法基于考虑到OCV(片上变化)的STA中的广泛使用的技术,称为LOCV(基于位置的OCV)技术,因此我们的方法易于结合到现有的定时分析流中。通过使用具有各种片上IR下降分布的H树树时钟结构的测试数据来评估所提出的方法。实验结果表明,该方法可以减少对电源变化的设计边缘6-85%(平均47%),与恒定的OCV降额因子,不需要额外的计算成本在静态时序分析中。因此,考虑片上电源变化,所提出的方法可以有助于快速定时闭合。

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