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Average Leakage Current Macromodeling for Dual-threshold Voltage Circuits

机译:双阈值电压电路的平均漏电流宏建模

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摘要

Dual threshold voltage design is the most effective technique for reducing leakage current of integrated circuits. In this paper, we put forward an average leakage current macromodeling for dual-threshold circuits and propose two methods to conquer it, table-lookup based simulation and statistical analysis. The simulation is an efficient general-purposed method for leakage current estimation. For stochastic Input circuits, a new statistical method is presented, which is much faster than the former one and can be used for very large circuits, because the method is based on input signal probability and only one pass of circuit is needed. To validate these two methods, accurate leakage currents are also calculated using popular simulator HSPICE for comparison. Experiments on ISCAS85 and ISCAS89 benchmarks demonstrate that the errors between them can be limited under 4% and thousand folds of time to results can be saved.
机译:双阈值电压设计是减少集成电路泄漏电流的最有效技术。在本文中,我们提出了双阈值电路的平均泄漏电流宏模型,并提出了两种解决方法:基于表的仿真和统计分析。该仿真是一种用于泄漏电流估计的有效通用方法。对于随机输入电路,提出了一种新的统计方法,该方法比以前的统计方法快得多,并且可以用于非常大的电路,因为该方法基于输入信号概率,并且只需要通过一次电路即可。为了验证这两种方法,还使用流行的仿真器HSPICE计算了准确的泄漏电流以进行比较。 ISCAS85和ISCAS89基准测试表明,它们之间的误差可以限制在4%以下,并且可以节省数千倍的时间。

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