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High-Speed and Reconfigurable Physical Unclonable Functions Based on SOT-MTJ Array

  • Beihang University
  • Beijing Microelectronics Technology Institute

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Physical unclonable functions (PUFs) have been investigated as hardware security primitives for various applications such as anticounterfeiting, authentication, and secret key generation, owing to their high unpredictability. Compared with silicon PUFs, spin-orbit torque PUFs (SOT-PUFs) have drawn more attention, attributed to the advantages including low power consumption and non-volatility. However, SOT-PUFs suffer from the limited challenge-response pairs space, the external magnetic field and high setting current. In this paper, we propose a reconfigurable PUF (rPUF) based on the Type-Y SOT-array, which features high speed, pure-electrical control and reconfigurability. The proposed rPUF presents great randomness as the mean-value of the 0/1 distribution and entropy are calculated to be 0.4953 and 0.96095, respectively. Meanwhile, the normalized hamming distance in the case of 100 refreshes achieves 49.66%, which demonstrates great reconfigurability. Our work verifies the feasibility and randomness of rPUF based on the Type-Y SOT-array by the simulation and experiment, which provides robustness against the manufacturing variation and broadens the reliability of SOT-PUF applications.

源语言英语
主期刊名2023 IEEE Nanotechnology Materials and Devices Conference, NMDC 2023
出版商Institute of Electrical and Electronics Engineers Inc.
141-144
页数4
ISBN(电子版)9798350335460
DOI
出版状态已出版 - 2023
活动18th IEEE Nanotechnology Materials and Devices Conference, NMDC 2023 - Paestum, 意大利
期限: 22 10月 202325 10月 2023

出版系列

姓名2023 IEEE Nanotechnology Materials and Devices Conference, NMDC 2023

会议

会议18th IEEE Nanotechnology Materials and Devices Conference, NMDC 2023
国家/地区意大利
Paestum
时期22/10/2325/10/23

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