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A 55-nm SRAM Chip Scanning Errors Every 125 ns for Event-Wise Soft Error Measurement

Instrumentation and Detectors 2025-07-25 v2 Hardware Architecture

Abstract

We developed a 55 nm CMOS SRAM chip that scans all data every 125 ns and outputs timestamped soft error data via an SPI interface through a FIFO. The proposed system, consisting of the developed chip and particle detectors, enables event-wise soft error measurement and precise identification of SBUs and MCUs, thus resolving misclassifications such as Pseudo- and Distant MCUs that conventional methods cannot distinguish. An 80-MeV proton irradiation experiment at RARiS, Tohoku University verified the system operation. Timestamps between the SRAM chip and the particle detectors were successfully synchronized, accounting for PLL disturbances caused by radiation. Event building was achieved by determining a reset offset with sub-ns resolution, and spatial synchronization was maintained within several tens of micrometers.

Keywords

Cite

@article{arxiv.2504.08305,
  title  = {A 55-nm SRAM Chip Scanning Errors Every 125 ns for Event-Wise Soft Error Measurement},
  author = {Yuibi Gomi and Akira Sato and Waleed Madany and Kenichi Okada and Satoshi Adachi and Masatoshi Itoh and Masanori Hashimoto},
  journal= {arXiv preprint arXiv:2504.08305},
  year   = {2025}
}

Comments

4 pages, 9 figures, accepted for publication in IEEE Solid-State Circuits Letters (SSCL)