DocumentCode
2853612
Title
ERTG: A test generator for error-rate testing
Author
Shahidi, Shideh ; Gupta, Sandeep K.
Author_Institution
Dept. of EE -Syst., Southern California Univ., Los Angeles, CA
fYear
2007
fDate
21-26 Oct. 2007
Firstpage
1
Lastpage
10
Abstract
A new concept called intelligible testing has been recently proposed to improve yields for a class of error tolerant systems, including audio, speech, graphics, video, and digital communications. Error rate, defined as the percentage of clock cycles for which the value at a circuit´s outputs deviates from the corresponding error-free value, has been identified as a key measure of error severity. In error-rate testing, every fault that causes error rate greater than a threshold specified by the application is called an unacceptable fault; all other faults are called acceptable. The objective of error-rate testing is to detect every unacceptable fault while detecting none, or a minimum number, of the acceptable faults. In this paper we present a test generator for combinational circuits with the objective of detecting every unacceptable fault while minimizing the number of acceptable faults detected. Our test generator embodies new algorithms and cost functions that capture the properties of acceptable and unacceptable faults. Via experiments on several benchmarks we show that our approach can provide coverage of all unacceptable faults (high test quality) while significantly reducing the number of acceptable faults detected (high acceptance rate). In this manner, our approach helps improve yield via error-rate testing.
Keywords
combinational circuits; integrated circuit testing; circuit testing; clock cycles; combinational circuit; error tolerant system; error-rate testing; intelligible testing; test generator; unacceptable fault; Circuit faults; Circuit testing; Clocks; Digital communication; Electrical fault detection; Error analysis; Fault detection; Graphics; Speech; System testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Conference, 2007. ITC 2007. IEEE International
Conference_Location
Santa Clara, CA
ISSN
1089-3539
Print_ISBN
978-1-4244-1127-6
Electronic_ISBN
1089-3539
Type
conf
DOI
10.1109/TEST.2007.4437638
Filename
4437638
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