DocumentCode
2176883
Title
On hierarchical statistical static timing analysis
Author
Li, Bing ; Chen, Ning ; Schmidt, Manuel ; Schneider, Walter ; Schlichtmann, Ulf
Author_Institution
Tech. Univ. Muenchen, Munich, Germany
fYear
2009
fDate
20-24 April 2009
Firstpage
1320
Lastpage
1325
Abstract
Statistical static timing analysis deals with the increasing variations in manufacturing processes to reduce the pessimism in the worst case timing analysis. Because of the correlation between delays of circuit components, timing model generation and hierarchical timing analysis face more challenges than in static timing analysis. In this paper, a novel method to generate timing models for combinational circuits considering variations is proposed. The resulting timing models have accurate input-output delays and are about 80% smaller than the original circuits. Additionally, an accurate hierarchical timing analysis method at design level using pre-characterized timing models is proposed. This method incorporates the correlation between modules by replacing independent random variables to improve timing accuracy. Experimental results show that the correlation between modules strongly affects the delay distribution of the hierarchical design and the proposed method has good accuracy compared with Monte Carlo simulation, but is faster by three orders of magnitude.
Keywords
Monte Carlo methods; combinational circuits; delay circuits; hierarchical systems; timing circuits; Monte Carlo simulation; circuit components; combinational circuits; delay distribution; hierarchical statistical static timing analysis; input-output delays; worst case timing analysis; Accuracy; Algorithm design and analysis; Circuit optimization; Combinational circuits; Delay; Design methodology; Manufacturing processes; Performance analysis; Random variables; Timing;
fLanguage
English
Publisher
ieee
Conference_Titel
Design, Automation & Test in Europe Conference & Exhibition, 2009. DATE '09.
Conference_Location
Nice
ISSN
1530-1591
Print_ISBN
978-1-4244-3781-8
Type
conf
DOI
10.1109/DATE.2009.5090869
Filename
5090869
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