DocumentCode
3094478
Title
Efficient design and analysis of robust power distribution meshes
Author
Gupta, Puneet ; Kahng, Andrew B.
Author_Institution
Blaze DFM, Inc., Sunnyvale, CA, USA
fYear
2006
fDate
3-7 Jan. 2006
Abstract
With increasing design complexity, as well as continued scaling of supplies, the design and analysis of power/ground distribution networks poses a difficult problem in modern IC design. We propose several closed-form solutions for power distribution network optimization and analysis which explicitly take into consideration the mesh topology of modern power-ground networks. Our analysis and optimization methods have essentially zero runtime for global power grids, and are therefore usable for layout optimization. Experimental validation shows that our IR drop estimation method has almost perfect correlation with true IR drop. Our closed-form sizing solutions save up to 32% area while preserving the peak IR drop; alternatively, we can reduce peak IR drop by up to 33% while preserving the total area of the power distribution network. Our iterated incremental power distribution network improvement technique achieves up to 33% reduction (in one iteration) in peak IR drop over uniformly sized meshes. We also introduce a measure for robustness of power distribution networks to current and process variations.
Keywords
circuit optimisation; integrated circuit layout; network topology; IR drop estimation; closed-form sizing solutions; current variations; global power grids; integrated circuit design; layout optimization; power distribution mesh; power distribution network optimization; power-ground distribution networks; process variations; Closed-form solution; Current measurement; Network topology; Optimization methods; Power distribution; Power grids; Power measurement; Power systems; Robustness; Runtime;
fLanguage
English
Publisher
ieee
Conference_Titel
VLSI Design, 2006. Held jointly with 5th International Conference on Embedded Systems and Design., 19th International Conference on
ISSN
1063-9667
Print_ISBN
0-7695-2502-4
Type
conf
DOI
10.1109/VLSID.2006.79
Filename
1581474
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