DocumentCode :
893355
Title :
Computer-aided transistor design, characterization, and optimization
Author :
Ghosh, Hitendra Nath ; De La Moneda, Francisco H. ; Dono, Nicholas R.
Author_Institution :
IBM Corporation, Hopewell Junction, NY
Volume :
55
Issue :
11
fYear :
1967
Firstpage :
1897
Lastpage :
1912
Abstract :
A systematic and general method of computing ac and dc characteristics of double-diffused junction transistors using major process parameters such as dimensions of the device, surface concentration, junction depth, diffusion time, temperature, and diffusion coefficient as a function of temperature and impurity concentration is described. These parameters can be checked during the process and, therefore, can aid the process control problem by predicting the expected values of junction depth and sheet resistivity. If the specified control parameters are met during the fabrication, the ac and dc characteristics of the device will be realized. The time and/or frequency response of a circuit can be computed using the ac and dc characteristics of the diffused devices of the circuit on the basis of a distributed or an equivalent lumped model. The measurement of important ac parameters on the basis of these models has also been simulated on the computer, thus aiding the characterization problem of the device in the integrated circuit environment. Also, the switching speed of a loaded logic net can be computed and optimized by trading off interacting parameters and relating them back to the original diffusion process parameters and dimensions of the components. Finally, experimental verification of the computed results has been accomplished and found to be satisfactory.
Keywords :
Conductivity; Design optimization; Distributed computing; Fabrication; Frequency response; Impurities; Integrated circuit measurements; Integrated circuit modeling; Process control; Temperature;
fLanguage :
English
Journal_Title :
Proceedings of the IEEE
Publisher :
ieee
ISSN :
0018-9219
Type :
jour
DOI :
10.1109/PROC.1967.6019
Filename :
1447949
Link To Document :
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