DocumentCode
2637708
Title
Multiple fault injection platform for SRAM-based FPGA based on ground-level radiation experiments
Author
Tarrillo, Jimmy ; Tonfat, Jorge ; Tambara, Lucas ; Lima Kastensmidt, Fernanda ; Reis, Ricardo
Author_Institution
Univ. de Ing. y Tecnol. - UTEC, Lima, Peru
fYear
2015
fDate
25-27 March 2015
Firstpage
1
Lastpage
6
Abstract
SRAM-based FPGAs are attractive to many high reliable applications at ground level due to its high density and configurability. However, due to its high sensitivity to neutron-induced soft errors, the FPGA configuration memory bits may suffer unexpected bit-flips and consequently critical errors may occur. To cope with this problem, authors have proposed several mitigation techniques, which must be verified under the presence of faults. Since ground-level radiation experiments are very costly, fault injection is a suitable method to verify mitigation techniques in early stages of development. In this work, we present a fault injector platform implemented in a FPGA commercial board able to inject multiple bit-flips in the configuration memory bits of SRAM-based FPGAs based on a fault database collected on radiation experiments. We show the accuracy of our proposed fault injection campaign compared to radiation test results. We compare the soft error rate of three designs under the accumulation of multiple faults.
Keywords
SRAM chips; fault simulation; field programmable gate arrays; radiation hardening (electronics); FPGA configuration memory bits; SRAM-based FPGA; bit-flips; critical errors; fault database; fault injection; fault injector platform; ground-level radiation experiments; mitigation techniques; neutron-induced soft errors; soft error rate; Adders; Circuit faults; Databases; Field programmable gate arrays; Neutrons; Redundancy; Tunneling magnetoresistance; SRAMbased FPGA; fault injection; single event upsets effects;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Symposium (LATS), 2015 16th Latin-American
Conference_Location
Puerto Vallarta
Type
conf
DOI
10.1109/LATW.2015.7102494
Filename
7102494
Link To Document