DocumentCode :
2497557
Title :
Evaluating BIST architectures for low power
Author :
Ravikumar, C.P. ; Prasad, N. Satya
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol., New Delhi, India
fYear :
1998
fDate :
2-4 Dec 1998
Firstpage :
430
Lastpage :
434
Abstract :
The “system-on-chip” revolution has posed a number of new challenges to the test engineers. We address the issue of high power dissipation during testing, which can reach levels that are beyond the safe upper limit associated with the chosen packaging technology. A study undertaken by Zorian (1993) reveals that test power can be as large as 200% or more in comparison to the normal power. In the test mode, input vectors are normally applied in an uncorrelated manner, leading to an increase in the average Hamming distance between two successive vectors. This implies a larger switching activity, and, for CMOS circuits, implies a larger power dissipation. In this paper, our attempt is to look at Built-in Self-Test (BIST) architectures from the view point of power dissipation, fault-coverage, area, and test length. We report experimental results for a CORDIC chip. Our results indicate that BIST architectures differ significantly from one another in terms of power dissipation, giving the test designer an opportunity to address the problem of excessive heating during testing
Keywords :
CMOS digital integrated circuits; built-in self test; digital arithmetic; digital signal processing chips; integrated circuit testing; logic testing; low-power electronics; BIST architectures; CMOS circuits; CORDIC chip; built-in self-test; chip area; excessive heating; fault-coverage; low power operation; power dissipation; test length; test mode; Automatic testing; Built-in self-test; Circuit faults; Circuit testing; Hamming distance; Heating; Packaging; Power dissipation; Power engineering and energy; Switching circuits;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Test Symposium, 1998. ATS '98. Proceedings. Seventh Asian
ISSN :
1081-7735
Print_ISBN :
0-8186-8277-9
Type :
conf
DOI :
10.1109/ATS.1998.741652
Filename :
741652
Link To Document :
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