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Statistical Timing Analysis with Extended Pseudo-Canonical Timing Model

LZ Zhang, WJ Chen,YH Hu, CCP Chen

Design, Automation and Test in Europe(2005)

引用 37|浏览1
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摘要
State of the art statistical timing analysis (STA) tools often yield less accurate results when timing variables become correlated due to global source of variations and path reconvergence. To the best of our knowledge, no good solution is available for dealing both types of correlations simultaneously. In this paper, we present a novel extended pseudo-canonical timing model to retain and evaluate both types of correlation during statistical timing analysis with minimum computation cost. Also, an intelligent pruning method is introduced to enable trade-off runtime with accuracy. Tested with ISCAS benchmark suites, our method shows both high accuracy and high performance. For example, on the circuit c6288, our distribution estimation error shows 15/spl times/ accuracy improvement compared with previous approaches.
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关键词
art statistical timing analysis,pseudo-canonical timing model,statistical timing analysis,timing variable,accuracy improvement,high accuracy,distribution estimation error shows,high performance,intelligent pruning method,ISCAS benchmark suite,Extended Pseudo-Canonical Timing,Statistical Timing Analysis
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