DocumentCode
3111551
Title
On behavior fault modeling for combinational digital designs
Author
Chakraborty, Tapan ; Ghosh, Sumit
Author_Institution
AT&T Eng. Res. Center, Princeton, NJ, USA
fYear
1988
fDate
12-14 Sep 1988
Firstpage
593
Lastpage
600
Abstract
A mechanism is presented to represent failures in complex combinational digital and VLSI designs at a high level, referred to as behavior fault models. The advantages of behavior fault modeling include early estimates of reliability of the design in the design process, reduced CPU time for fault simulation, and results that may be more comprehensive to the high-level architects. Digital and VLSI components are expressed in a high-level hardware description language and the fault models proposed are based on the failure modes of the language constructs of a generic hardware-description language. Evaluation of such fault models is also reported through a correlation of the behavior fault simulation results of representative example designs with fault simulation of equivalent gate-level representations in the presence of stuck-at faults
Keywords
VLSI; combinatorial circuits; fault location; integrated circuit testing; integrated logic circuits; logic testing; CPU time; VLSI designs; behavior fault modeling; combinational digital designs; correlation; equivalent gate-level; failures; high-level hardware description language; reliability; stuck-at faults; Algorithm design and analysis; Circuit faults; Circuit testing; DC generators; Delay; Design engineering; Hardware design languages; Process design; Production; Very large scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Conference, 1988. Proceedings. New Frontiers in Testing, International
Conference_Location
Washington, DC
ISSN
1089-3539
Print_ISBN
0-8186-0870-6
Type
conf
DOI
10.1109/TEST.1988.207841
Filename
207841
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