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Statistical estimation of delay-dependent switching activities in embedded CMOS combinational circuits

机译:嵌入式CMOS组合电路中与延迟有关的开关活动的统计估计

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摘要

This paper describes a new procedure to estimate the delay-dependent switching activities in CMOS combinational circuits. The procedure is based on analytic and statistical approaches to take advantage of their time-efficiency over conventional event-driven simulation tools. For this study, combinational circuits driven by discrete-time logic signals are considered. By focusing on a specific class of combinational circuits, the transitional effects can be analyzed more accurately by considering some of the delay effects neglected in previous studies, Also, to model the delay-dependent effects, statistical properties such as the pattern probability, the propagation probability, and the distribution of the propagation delay of switching activities are defined and evaluated. The simulation results on benchmark circuits indicate that the proposed procedure significantly speeds up the estimation process in comparison to the conventional event-driven simulators. The reliability issues in the aspect of switching activities are briefly discussed.
机译:本文介绍了一种估计CMOS组合电路中与延迟有关的开关活动的新程序。该过程基于分析和统计方法,以利用其时间效率超过常规事件驱动的仿真工具。在本研究中,考虑了由离散时间逻辑信号驱动的组合电路。通过关注特定类别的组合电路,可以通过考虑先前研究中忽略的一些延迟效应来更准确地分析过渡效应。此外,为了对依赖于延迟的效应进行建模,还可以统计诸如模式概率,传播等统计特性。定义和评估交换活动的概率以及传播延迟的分布。在基准电路上的仿真结果表明,与传统的事件驱动模拟器相比,该程序大大加快了估计过程。简要讨论了交换活动方面的可靠性问题。

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