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Dependability-Increasing Method of Processors under a Space Radiation Environment.

, and . ARC, volume 7806 of Lecture Notes in Computer Science, page 218. Springer, (2013)

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Analysis of retention time under multi-configuration on a DORGA., and . SoCC, page 131-134. IEEE, (2008)Enhanced Radiation Tolerance of an Optically Reconfigurable Gate Array by Exploiting an Inversion/Non-inversion Implementation., and . ARC, volume 8405 of Lecture Notes in Computer Science, page 156-166. Springer, (2014)Dependability-Increasing Method of Processors under a Space Radiation Environment., and . ARC, volume 7806 of Lecture Notes in Computer Science, page 218. Springer, (2013)Triple Module Redundancy of a Laser Array Driver Circuit for Optically Reconfigurable Gate Arrays., and . ARC, volume 7199 of Lecture Notes in Computer Science, page 163-173. Springer, (2012)Fast Optical Reconfiguration of a Nine-Context DORGA., and . ARC, volume 5453 of Lecture Notes in Computer Science, page 123-132. Springer, (2009)Dependability-increasing technique for a multi-context optically reconfigurable gate array., and . ISCAS, page 1568-1571. IEEE, (2013)Holographic scrubbing technique for a programmable gate array., and . AHS, page 1-5. IEEE, (2015)Direct optical communication on an optically reconfigurable gate array., , , and . FGCT, page 17-20. IEEE, (2016)500 Mrad total-ionizing-dose tolerance of a holographic memory on an optical FPGA., , and . AHS, page 167-171. IEEE, (2017)A 400 Mrad radiation-hardened optoelectronic embedded system with a silver-halide holographic memory., and . AHS, page 218-224. IEEE, (2018)