DocumentCode :
2986291
Title :
Design for circuit quality: yield maximization, minimax, and Taguchi approach
Author :
Styblinski, M.A.
Author_Institution :
Dept. of Electr. Eng., Texas A&M Univ., College Station, TX, USA
fYear :
1990
fDate :
11-15 Nov. 1990
Firstpage :
112
Lastpage :
115
Abstract :
A relationship between yield optimization, deterministic minimax design, and the Taguchi ´on-target´ design with variability reduction is established. It is shown that all these and other design approaches can be combined into one coherent methodology, using the same statistical optimization algorithms and the same generic gradient evaluation formulas. A specific choice is controlled by the selection of the generalized membership function w(.) of the acceptability region, and a sequence of the values of the smoothing parameter beta . Moreover, any ´intermediate´ approach between the basic types introduced can be defined in a sense similar to the one used in Zadeh´s (1968) fuzzy set theory. As a result, circuit quality can be optimized within the same basic methodology, using different design strategies and investigating different trade-offs, e.g., between the performance and yield. Test examples, as well as a practical CMOS circuit are investigated. Convolution smoothing techniques, and the stochastic approximation approach to statistical optimization are utilized.<>
Keywords :
CMOS integrated circuits; circuit analysis computing; CMOS circuit; Taguchi approach; circuit quality; convolution smoothing; fuzzy set theory; generic gradient evaluation formulas; minimax; statistical optimization algorithms; stochastic approximation; yield maximization; Algorithm design and analysis; Circuit synthesis; Circuit testing; Concrete; Convolution; Design optimization; Fuzzy set theory; Minimax techniques; Minimization; Smoothing methods;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer-Aided Design, 1990. ICCAD-90. Digest of Technical Papers., 1990 IEEE International Conference on
Conference_Location :
Santa Clara, CA, USA
Print_ISBN :
0-8186-2055-2
Type :
conf
DOI :
10.1109/ICCAD.1990.129855
Filename :
129855
Link To Document :
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