Addressing high frequency effects in VLSI interconnects with full wave model and CFH

R. Achar, M. Nakhla, Qi-jun Zhang
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引用次数: 9

Abstract

In order to accurately characterize dispersive system of VLSI interconnects at higher frequencies, full wave analysis which takes into account all possible field components and satisfies all boundary conditions is required. However, conventional circuit simulation of interconnects with full wave models is extremely CPU expensive. This paper presents a new method to extend the moment matching technique, complex frequency hopping, to the case of interconnects modeled with full wave analysis. Formulation of circuit equations is modified to incorporate interconnect stencil from full wave analysis. A new algorithm for the moment generation for interconnect networks with full wave models has been developed. Full wave analysis has been carried out with the efficient 'spectral domain approach'. Results have shown that the proposed method is accurate while it yields a speed up of one to three orders of magnitude over conventional simulation techniques.
利用全波模型和CFH解决VLSI互连中的高频效应
为了准确表征VLSI互连的高频色散系统,需要考虑所有可能的场分量并满足所有边界条件的全波分析。然而,传统的全波互连电路仿真是非常昂贵的CPU。本文提出了一种新的方法,将矩匹配技术——复跳频扩展到用全波分析建模的互连情况。修正了电路方程的公式,以纳入全波分析的互连模板。提出了一种新的全波模型互连网络力矩生成算法。用高效的“谱域法”进行了全波分析。结果表明,所提出的方法是准确的,同时产生的速度比传统的模拟技术提高了一到三个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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