DocumentCode
1098517
Title
A Unified Environment for Fault Injection at Any Design Level Based on Emulation
Author
López-Ongil, C. ; Entrena, L. ; García-Valderas, M. ; Portela, M. ; Aguirre, M.A. ; Tombs, J. ; Baena, V. ; Munoz, F.
Author_Institution
Univ. Carlos III de Madrid, Madrid
Volume
54
Issue
4
fYear
2007
Firstpage
946
Lastpage
950
Abstract
Sensitivity of electronic circuits to radiation effects is an increasing concern in modern designs. As technology scales down, Single Event Upsets (SEUs) are made more frequent and probable, affecting not only space applications, but also applications at earth´s surface, like automotive applications. Fault injection is a method widely used to evaluate the SEU sensitivity of digital circuits. Among the existing fault injection techniques, those based on FPGA emulation have proven to be the fastest ones. In this paper a unified emulation environment which combines two fault injection techniques based on FPGA emulation is proposed. The new emulation environment provides both, a high speed tool for quick fault detection, and a medium speed tool for in-depth analysis of SEUs propagation. The experiments presented here show that the two techniques can be successfully applied in a complementary manner.
Keywords
SRAM chips; integrated circuit design; electronic circuit sensitivity; fault injection; radiation effects; single event upsets; Automotive applications; Circuit faults; Earth; Electronic circuits; Emulation; Field programmable gate arrays; Radiation effects; Single event transient; Single event upset; Space technology; FPGA-based emulation; Fault injection; SEU; reconfiguration;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2007.904078
Filename
4291750
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