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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >ILLIADS: a fast timing and reliability simulator for digital MOS circuits
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ILLIADS: a fast timing and reliability simulator for digital MOS circuits

机译:ILLIADS:用于数字MOS电路的快速时序和可靠性模拟器

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The authors introduce ILLIADS as a fast MOS timing and reliability simulator for very large digital MOS circuits. The use of the proposed general circuit primitive not only provides better accuracy but also significantly reduces the simulation time. The use of an analytic solution embedded in the simulation engine improves both the simulation speed and the accuracy. Postponing the waveform approximation process provides better waveform approximation even for non-fully-switching waveforms and glitches. The channel length modulation effect is captured accurately in fast timing simulation with only 10% of speedup tradeoff. It is also shown that ILLIADS manifests the charge sharing problem. The modified PWCTC algorithm, PWCTC-W, which handles circuits with feedback, is introduced and shown to be superior to the dynamic-windowing scheme. It also does not manifest the window-growing problem and is insensitive to the level of strongly concerned component (SCC) hierarchy. The use of this algorithm keeps the speedup of ILLIADS over SPICE for circuits with feedbacks at the same level as that for combinational circuits.
机译:作者介绍了ILLIADS作为用于大型数字MOS电路的快速MOS时序和可靠性模拟器。所提出的通用电路图元的使用不仅提供了更好的精度,而且还大大减少了仿真时间。使用嵌入在仿真引擎中的分析解决方案可以提高仿真速度和准确性。延迟波形逼近过程可提供更好的波形逼近,即使对于非完全切换的波形和毛刺也是如此。在快速时序仿真中,只需10%的加速权衡即可准确捕获通道长度调制效果。还表明,ILLIADS出现了电荷共享问题。引入了改进的PWCTC算法PWCTC-W,该算法可处理带有反馈的电路,并且显示出优于动态窗口方案。它也不会显示窗口增长问题,并且对高度关注的组件(SCC)层次结构级别不敏感。对于反馈与组合电路相同级别的电路,该算法的使用可以使ILLIADS的速度超过SPICE。

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