DocumentCode
3199598
Title
Thermal Aware Clocktree Optimization in Nanometer VLSI Systems Considering Temperature Variations
Author
Liu, Chunchen ; Tan, Jichang ; Chen, Ruei-Xi ; Liu, Guanglei ; Fan, Jeffrey
Author_Institution
Univ. of California at San Diego, La Jolla
fYear
2008
fDate
16-18 March 2008
Firstpage
306
Lastpage
310
Abstract
This paper proposed an accurate yet efficient clocktree synthesis algorithm that tolerates the temperature variation in the nanometer very large scale integration (VLSI) systems. Observing that there exists the correlation between input thermal power and temperature, we propose a clustered perturbation based parameterization to compactly generate a clocktree model considering the temperature variation. Moreover, using a structured and parameterized model reduction, an accurate worst case skew can be efficiently obtained from a transient simulation, which provides both nominal temperatures at those sinks and their sensitivities with respect to the changes of merging points. With the use of the sensitivities from the macromodel, a thermal aware routing based clocktree optimization is performed level by level. The experimental results show that the proposed algorithm reduces up to 1.7X- 5X worst case skew in comparison to the existing approaches.
Keywords
VLSI; optimisation; transient analysis; clocktree synthesis algorithm; clustered perturbation based parameterization; nanometer VLSI systems; nominal temperatures; parameterized model reduction; temperature variations; thermal aware clocktree optimization; thermal aware routing; transient simulation; very large scale integration; Algorithm design and analysis; Clocks; Merging; Routing; Temperature distribution; Temperature sensors; Thermal engineering; Transient analysis; Very large scale integration; Wire;
fLanguage
English
Publisher
ieee
Conference_Titel
System Theory, 2008. SSST 2008. 40th Southeastern Symposium on
Conference_Location
New Orleans, LA
ISSN
0094-2898
Print_ISBN
978-1-4244-1806-0
Electronic_ISBN
0094-2898
Type
conf
DOI
10.1109/SSST.2008.4480243
Filename
4480243
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