DocumentCode :
1650632
Title :
An Accurate Sparse Matrix Based Framework for Statistical Static Timing Analysis
Author :
Ramalingam, Anand ; Nam, Gi-Joon ; Singh, Ashish Kumar ; Orshansky, Michael ; Nassif, Sani R. ; Pan, David Z.
Author_Institution :
Dept. of Electr. & Comput. Eng., Texas Univ., Austin, TX
fYear :
2006
Firstpage :
231
Lastpage :
236
Abstract :
Statistical static timing analysis has received wide attention recently and emerged as a viable technique for manufacturability analysis. To be useful, however, it is important that the error introduced in SSTA be significantly smaller than the manufacturing variations being modeled. Achieving such accuracy requires careful attention to the delay models and to the algorithms applied. In this paper, we propose a new sparse-matrix based framework for accurate path-based SSTA, motivated by the observation that the number of timing paths in practice is sub-quadratic based on a study of industrial circuits and the ISCAS89 benchmarks. Our sparse-matrix based formulation has the following advantages: (a) It places no restrictions on process parameter distributions; (b) It embeds accurate polynomial-based delay model which takes into account slope propagation naturally; (c) It takes advantage of the matrix sparsity and high performance linear algebra for efficient implementation. Our experimental results are very promising
Keywords :
sparse matrices; statistical analysis; timing circuits; polynomial-based delay model; sparse matrix; statistical static timing analysis; Approximation algorithms; Circuits; Computer aided manufacturing; Computer errors; Delay estimation; Laboratories; Performance analysis; Polynomials; Sparse matrices; Timing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer-Aided Design, 2006. ICCAD '06. IEEE/ACM International Conference on
Conference_Location :
San Jose, CA
ISSN :
1092-3152
Print_ISBN :
1-59593-389-1
Electronic_ISBN :
1092-3152
Type :
conf
DOI :
10.1109/ICCAD.2006.320141
Filename :
4110179
Link To Document :
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