DocumentCode :
3827564
Title :
Quadratic Backward Propagation of Variance for Nonlinear Statistical Circuit Modeling
Author :
Ivica Stevanovic;Colin C. McAndrew
Author_Institution :
Freescale Semicond., Geneva, Switzerland
Volume :
28
Issue :
9
fYear :
2009
Firstpage :
1428
Lastpage :
1432
Abstract :
Accurate statistical modeling and simulation are keys to ensure that integrated circuits (ICs) meet the specifications over the stochastic variations that are inherent in IC manufacturing technologies. Backward propagation of variance (BPV) is a general technique for statistical modeling of semiconductor devices. However, the BPV approach assumes that statistical fluctuations are not large so that variations in device electrical performances can be modeled as linear functions of process parameters. With technology scaling, device performance variability over manufacturing variations becomes nonlinear. In this paper, we extend the BPV technique to take into account these nonlinearities. We present the theory behind the technique and apply it to specific examples. We also investigate the effectiveness of several possible solution algorithms.
Keywords :
"Integrated circuit modeling","Circuit simulation","Virtual manufacturing","SPICE","Solid modeling","Semiconductor device manufacture","Analytical models","Semiconductor devices","Manufacturing processes","Electric variables measurement"
Journal_Title :
IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
Publisher :
ieee
ISSN :
0278-0070
Type :
jour
DOI :
10.1109/TCAD.2009.2023194
Filename :
5208460
Link To Document :
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