Youxin Gao, D. F. Wong
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引用次数: 24

摘要

研究了非均匀线材的连续线材尺寸优化问题。我们的目标是找到使延迟最小化的线材的形状函数。这个问题最近在Elmore延迟模型下得到了研究(W.C. Elmore, 1948)。然而,众所周知,Elmore延迟只是对实际延迟的粗略估计,因此应该使用更准确的模型来确定线形函数。我们的研究使用传输线模型,可以非常准确地估计实际延迟。由于前人在Elmore延迟模型下的研究表明指数线形对于延迟最小化是有效的,因此我们将线形函数限制为f(x)=ae/sup -bx/。通过求解扩散方程,我们导出了阶跃输入和斜坡输入的时域瞬态响应作为a和b的函数。然后确定系数a和b,使实际延迟(50%延迟)最小化。我们的算法非常高效;在我们进行的所有实验中,可以在不到1秒的时间内确定线材的形状函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shaping a VLSI wire to minimize delay using transmission line model
We consider continuous wire sizing optimization for non uniform wires. Our objective is to find the shape function of a wire which minimizes delay. This problem has been studied recently under the Elmore delay model (W.C. Elmore, 1948). However, it is well known that Elmore delay is only a rough estimate of the actual delay and thus more accurate models should be used to determine the wire shape function. Our study uses the transmission line model which gives a very accurate estimation of the actual delay. Since previous studies under Elmore delay model suggest that exponential wire shape is effective for delay minimization, we restrict the wire shape function to be of the form f(x)=ae/sup -bx/. By solving the diffusion equation, we derive the transient response in the time domain as a function of a and b for both step and ramp input. The coefficients a and b are then determined so that the actual delay (50% delay) is minimized. Our algorithm is very efficient; in all the experiments we performed, the wire shape functions can be determined in less than 1 second.
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