DocumentCode
3556811
Title
New n-well fabrication techniques based on 2D process simulation
Author
Law, M.E. ; Rafferty, C.S. ; Dutton, R.W.
Author_Institution
Stanford University, Stanford Ca.
Volume
32
fYear
1986
fDate
1986
Firstpage
518
Lastpage
521
Abstract
For submicron device technology, 2D process modeling is essential. The need for shallow junctions and control of lateral dimensions of well and oxide isolation regions require well-characterized processes. This paper presents results obtained with SUPREM-IV which show fully numerical 2D coupled diffusion for both point defects and dopant atoms. Based on comparison of experimental results and parameter extraction for surface kinetic coefficients of point defects, SUPREM-IV is used to design a new n-well process with 37% reduction of the lateral well dimension. For dopant diffusion, the role of coupled point defects (interstitials and vacancies) and dopants are shown to give a unique result based on extracted surface recombination rates (1) and experimental data.
Keywords
Circuit simulation; Equations; Fabrication; Impurities; Integrated circuit modeling; Kinetic theory; Laboratories; Modems; Oxidation; Semiconductor process modeling;
fLanguage
English
Publisher
ieee
Conference_Titel
Electron Devices Meeting, 1986 International
Type
conf
DOI
10.1109/IEDM.1986.191237
Filename
1486495
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