Tolerance analysis is a very important tool for chip design in the microelectronics industry. The usual method for tolerance analysis is Monte Carlo simulation, which, however, is extremely CPU intensive, because in order to yield statistically significant results, it needs to generate a large sample of function values. Here we report on another method, recently introduced in several fields, called stochastic response surface method, which might be a viable alternative to Monte Carlo simulation for some classes of problems. The application considered here is on the tolerance analysis of the current of a submicrometer n+‐n‐n+ diode as a function of the channel length and the channel doping. The numerical simulator for calculating the current is based on the energy transport hydrodynamical model introduced by Stratton, which is one of the most widely used in this field.
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1 June 2003
Research Article|
June 01 2003
Stochastic response surface method and tolerance analysis in microelectronics Available to Purchase
Angelo Marcello Anile;
Angelo Marcello Anile
Dipartimento di Matematica e Informatica, Università di Catania, Catania, Italy
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Salvatore Spinella;
Salvatore Spinella
Dipartimento di Matematica e Informatica, Università di Catania, Catania, Italy
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Salvatore Rinaudo
Salvatore Rinaudo
ST Microeletronics, Catania, Italy
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Publisher: Emerald Publishing
Online ISSN: 2054-5606
Print ISSN: 0332-1649
© MCB UP Limited
2003
COMPEL (2003) 22 (2): 314–327.
Citation
Marcello Anile A, Spinella S, Rinaudo S (2003), "Stochastic response surface method and tolerance analysis in microelectronics". COMPEL, Vol. 22 No. 2 pp. 314–327, doi: https://doi.org/10.1108/03321640310459234
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