IEEE Transactions on Reliability · 2002 · 49 citations · 15 references
EngineeringMem TestingComputer ArchitectureHardware SecurityReliability EngineeringSelf-repair CapabilitiesSystems EngineeringMemory ManagementElectrical EngineeringComputer EngineeringBuilt-in Self-testComputer ScienceMicroelectronicsRandom Access MemoriesMemory ArchitectureSoftware TestingRam CoresFault DetectionFault InjectionIn-memory Database
The emerging field of self-repair computing is expected to have a major impact on deployable systems for space missions and defense applications, where high reliability, availability, and serviceability are needed. In this context, RAM (random access memories) are among the most critical components. This paper proposes a built-in self-repair (BISR) approach for RAM cores. The proposed design, introducing minimal and technology-dependent overheads, can detect and repair a wide range of memory faults including: stuck-at, coupling, and address faults. The test and repair capabilities are used on-line, and are completely transparent to the external user, who can use the memory without any change in the memory-access protocol. Using a fault-injection environment that can emulate the occurrence of faults inside the module, the effectiveness of the proposed architecture in terms of both fault detection and repairing capability was verified. Memories of various sizes have been considered to evaluate the area-overhead introduced by this proposed architecture.
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A dynamic instruction set computer
Michael Wirthlin, Brad Hutchings · 2002 · 303 citations
Engineering, Computer Architecture, Processor Architecture +16
Built in self repair for embedded high density SRAM
Ilyoung Kim, Y. Zorian, G. Komoriya et al. · 2002 · 195 citations