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◆ Electronics2026-02-13· Static timing analysis

UPSET: A Comprehensive Probabilistic Single Event Transient Analysis Flow for VLSI Circuits Using Static Timing Analysis

Christos Georgakidis, Dimitris Valiantzas, Nikolaos Chatzivangelis, Marko Andjelković, Christos Sotiriou, Milos Krstic

原始摘要(英文原文)· Original abstract
The downscaling of VLSI technologies has exacerbated the susceptibility of integrated circuits (ICs) to radiation-induced Single-Event Transients (SETs). This work presents UPSET, a comprehensive and technology-independent EDA framework for probabilistic SET analysis using Static Timing Analysis (STA). Unlike traditional simulation-based methods that suffer from prohibitive runtimes, UPSET leverages graph-based propagation with advanced logical, electrical, and timing-window masking models to evaluate circuit sensitivity efficiently. Key contributions include a novel “Electrical Masking Window” (EMW) criterion that effectively filters non-full-rail pulses early in reconvergent logic and a TimeStamp-based propagation mode that accurately handles complex signal reconvergence with Boolean evaluation. The experimental results over some featured benchmarks demonstrate a speedup of more than 25,000× compared with SPICE while maintaining a tight 4.56% error bound in pulse width estimation. Moreover, experimental validation on 50 benchmarks across varying complexities showcases that EMW enhancement reduces the pessimism to circuit sensitivity by up to 25% on average, providing tighter upper bounds while maintaining scalability to million-gate designs. By integrating seamlessly with standard industrial formats (LEF, DEF, LIB, or SPEF), UPSET enables scalable, accurate soft SET sensitivity assessment for modern digital designs, establishing a robust foundation for automated radiation hardening flows.
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UPSET: A Comprehensive Probabilistic Single Event Transient Analysis Flow for VLSI Circuits Using Static Timing Analysis — 科研速览 Science Skim