DocumentCode
1116812
Title
Static and transient latchup simulation of VLSI-CMOS with an improved physical design model
Author
Strzempa-Depré, Michael ; Harter, Johann ; Werner, Christoph ; Skapa, Helmut ; Kassing, Rainer
Author_Institution
University of Kassel, Kassel, Federal Republic of Germany
Volume
34
Issue
6
fYear
1987
fDate
6/1/1987 12:00:00 AM
Firstpage
1290
Lastpage
1296
Abstract
We are presenting an improved latchup design model for static and transient latchup simulation of VLSI CMOS devices. The model is based on a decomposition of the CMOS structure into a network of analytically described current elements for both majority and minority carriers. Average doping densities and geometrical parameters are the physically based input data. For the modeling of the 2-D majority-carrier flow, transmission-line elements are introduced, especially in the inhomogeneously doped transition region between the substrate and an epitaxial layer. For modeling the transient current behavior, diffusion and space-charge capacitances are used. The model yields very good agreement with measurements both for static and transient triggering modes. Due to the physically reasonable assumptions used in the model equations, the influence of design variations on latchup characteristics can be predicted adequately without new parameter fitting.
Keywords
Capacitance; Doping; Epitaxial layers; Equations; Predictive models; Semiconductor device modeling; Semiconductor process modeling; Substrates; Transmission lines; Very large scale integration;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/T-ED.1987.23083
Filename
1486794
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