QNU-CPN: A Low-Power Single-Event Quadruple-Node-Upset Recovery Latch

Zhengfeng Huang, Linya Qiu, Shicheng Yang, Xiaolei Wang, Yingchun Lu, Jun Pan, Fan Cheng, Xiaoqing Wen, Aibin Yan · IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems · 2025

Integrated circuits are increasingly sensitive to radiation-induced multi-node upset in advanced CMOS technology. This paper proposes a novel low-power quadruple-node-upset recovery latch (QNU-CPN), which is based on the feedback interconnection of twenty-two input-split C-elements with P-input and N-input (CPNs) to achieve high reliability. Post-layout simulation results for 45nm CMOS by HSPICE technology show that the proposed QNU-CPN latch exhibits a reduction in power consumption by an average of 56.45%, a reduction in power-delay product (PDP) by an average of 56.92%, a reduction in area-power-delay product (APDP) by an average of 58.59%, and a reduction in setup time by an average of 11.11%, in comparison to four other existing quadruple-node upset recovery latch (LDAVPM, QRHIL, QRHIL-LC, MURLAV). Furthermore, this paper proposes the recovery rate calculation algorithm method that can calculate the recovery rate based on the configuration of multiple fault-tolerant components.

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