DocumentCode
3191977
Title
Characterization of Standard Cells for Intra-Cell Mismatch Variations
Author
Sundareswaran, Savithri ; Abraham, Jacob A. ; Ardelea, Alexandre ; Panda, Rajendran
Author_Institution
Freescale Semicond., Austin
fYear
2008
fDate
17-19 March 2008
Firstpage
213
Lastpage
219
Abstract
With the adoption of statistical timing across industry, there is a need to characterize all gates/cells in a digital library for delay variations (referred to as, statistical characterization). Statistical characterization need to be performed efficiently with acceptable accuracy as a function of several process and environment parameter variations. In this paper, we propose an approach to consider intra-cell process mismatch variations to characterize a cell´s delay and output transition time (output slew) variations. A straightforward approach to address this problem is to model these mismatch variations by characterizing for each device fluctuation separately. However, the runtime complexity for such characterization becomes of the order of number of devices in the cell and the number of simulations required can easily become infeasible. We analyze the fluctuations in switching and non-switching devices and their impact on delay variations. Using these properties of the devices, we propose a clustering approach to characterize for cell´s delay variations due to intra-cell mismatch variations. The proposed approach results in as much as 12X runtime improvements with acceptable accuracy, compared with Monte Carlo simulations. We show that this approach ensures an upper-bound on the results while keeping the number of simulations for each cell independent of the number of devices.
Keywords
analogue integrated circuits; statistical analysis; intra-cell mismatch variations; standard cells; statistical static timing analysis; Computational modeling; Delay effects; Electronics industry; Fluctuations; Industrial electronics; Jacobian matrices; Runtime; Software libraries; Sun; Timing; Intra-Cell Variations; Mismatch Variations; Random Variations; Statistical Characterization;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Electronic Design, 2008. ISQED 2008. 9th International Symposium on
Conference_Location
San Jose, CA
Print_ISBN
978-0-7695-3117-5
Type
conf
DOI
10.1109/ISQED.2008.4479728
Filename
4479728
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