Synergistic physical synthesis for manufacturability and variability in 45nm designs and beyond

D. Pan, Minsik Cho
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引用次数: 6

Abstract

Nanometer IC designs are increasingly challenged by manufacturing closure, i.e., being fabricated with high product yield, mainly due to aggressive technology scaling and increasing process/environmental variations. Realizing the criticality of addressing manufacturability for higher yield and tolerance to variations during design, there has been a surge of research activities recently from both academia and industry. In this paper, we will survey the key activities in synergistic physical synthesis and shed lights on some of the future research directions.
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协同物理合成可制造性和可变性在45纳米及以上的设计
纳米IC设计越来越多地受到制造封闭的挑战,即高产品产量的制造,主要是由于积极的技术缩放和不断增加的工艺/环境变化。意识到在设计过程中解决可制造性问题以获得更高的良率和对变化的容忍度的重要性,学术界和工业界最近都开展了大量的研究活动。本文将对协同物理合成中的关键活动进行综述,并对未来的研究方向进行展望。
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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