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- W4386087903 abstract "As the feature size of CMOS technology continues to decrease, the critical charge of circuits also decreases, making them more sensitive to single-event effects (SEEs). Traditional triple module redundancy (TMR) latches are resilient to single-node upset (SNU) and double-node upset (DNU), but they do not consider CLK signal flip (multi-point flip) which brings multiple concerns regarding reliability. In this paper, we propose a novel anti-irradiation TMR latch structure. The master latch is reinforced to enhance its tolerance to input signal upset, internal node upset, and CLK signal upset. The voting circuit is reinforced with double redundancy to improve the tolerance of the system to SNU and DNU. We conduct single-particle injection simulations using the HSPICE model with a double-exponential current source based on a 55-nm CMOS technology. The simulation results indicate that the proposed latch structure enhances the anti-irradiation performance and can tolerate SNU, DNU, and CLK signal flip." @default.
- W4386087903 created "2023-08-24" @default.
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- W4386087903 date "2023-05-12" @default.
- W4386087903 modified "2023-09-26" @default.
- W4386087903 title "Design of Anti-irradiation Latch Based on Triple Module Redundancy Technology" @default.
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- W4386087903 doi "https://doi.org/10.1109/isne56211.2023.10221608" @default.
- W4386087903 hasPublicationYear "2023" @default.
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