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A comparison on timing analysis using probabilistic approaches

机译:概率方法对时序分析的比较

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This paper presents a comparison on various timing analysis methods. Timing analysis is a critical step in any digital integrated circuits. Static timing analysis is a method to validate the timing performance of a digital circuit without requiring simulation. Technology and the process scaling to nanometer regime have lead to significant increase in process variations. These variations are needed to incorporate in static timing analysis. In the proposed method the delays of the gates and the arrival time are modeled by probabilistic distributions. The gate delays and the arrival time are modeled by using the operations statistical convolution integration and the statistical maximum. The delay values used is extracted from the standard delay format file for each gate. The method is tested by using various ISCAS benchmark circuits. Further statistical static timing analysis with arrival time at 3σ points away from the mean is calculated. The statistical static timing analysis results are found to be more accurate as it considers process variations.
机译:本文呈现了各种时序分析方法的比较。定时分析是任何数字集成电路的关键步骤。静态定时分析是一种验证数字电路的定时性能而不需要模拟的方法。技术和过程缩放到纳米型制度导致过程变化的显着增加。需要这些变化来包含静态定时分析。在所提出的方法中,门和到达时间的延迟由概率分布建模。通过使用操作统计卷积集成和统计最大值来建模门延迟和到达时间。使用的延迟值是从每个门的标准延迟格式文件中提取的。通过使用各种ISCAS基准电路测试该方法。计算出到达3σ远离平均值的3σ点的到达时间的进一步统计静态定时分析。发现统计静态定时分析结果在考虑过程变化时更准确。

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