DocumentCode
2035870
Title
Altering a pseudo-random bit sequence for scan-based BIST
Author
Touba, Nur A. ; McCluskey, Edward J.
Author_Institution
Dept. of Electr. Eng. & Comput. Sci., Stanford Univ., CA, USA
fYear
1996
fDate
20-25 Oct 1996
Firstpage
167
Lastpage
175
Abstract
This paper presents a low-overhead scheme for the built-in self-test (BIST) of circuits with scan. Complete (100%) fault coverage is obtained without modifying the function logic and without degrading system performance (beyond using scan). Deterministic test cubes that detect the random-pattern-resistant faults are embedded in a pseudo-random sequence of bits generated by a linear feedback shift register (LFSR). This is accomplished by altering the pseudo-random sequence by adding logic at the LFSR´s serial output to “fix” certain bits. A procedure for synthesizing the bit-fixing logic for embedding the test cubes is described. Experimental results indicate that complete fault coverage can be obtained with low hardware overhead. Also, the proposed approach permits the use of small LFSRs for generating the pseudo-random bit sequence. The faults that are not detected because of linear dependencies in the LFSR can be detected by embedding deterministic cubes at the expense of additional bit-fixing logic. Data is presented showing how much additional logic is required for different size LFSRs
Keywords
binary sequences; boundary scan testing; built-in self test; integrated circuit testing; logic testing; shift registers; LFSR; bit-fixing logic; built-in self-test; deterministic test cubes; fault coverage; linear feedback shift register; low-overhead scheme; pseudo-random bit sequence; random-pattern-resistant fault detection; scan-based BIST; Built-in self-test; Circuit faults; Circuit testing; Degradation; Electrical fault detection; Fault detection; Hardware; Linear feedback shift registers; Logic testing; System performance;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Conference, 1996. Proceedings., International
Conference_Location
Washington, DC
ISSN
1089-3539
Print_ISBN
0-7803-3541-4
Type
conf
DOI
10.1109/TEST.1996.556959
Filename
556959
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