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March 29, 2026Advanced Science0 citationsOpen Access

Temperature‐Resilient Reconfigurable Physical Unclonable Function Driven by Pulse Modulation Using CMOS‐Integrated Spintronic Chips

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MWM. WangCJChuanpeng JiangZWZhaohao Wang

Key Points

  • To develop a reconfigurable physical unclonable function (PUF) that maintains performance across varying temperatures.
  • Proposed a dual-pulse reconfiguration strategy for PUF design
  • Utilized CMOS-integrated spin-orbit torque magnetic random access memory (SOT-MRAM) chips
  • Evaluated the effects of the reconfiguration strategy on temperature resilience
  • Achieved effective reconfiguration without dynamic feedback
  • Widened the operating temperature range for PUFs
  • Enhanced security for IoT applications by utilizing the PUF's inherent variations

Abstract

ABSTRACT Hardware‐based security primitives have become critical to enhancing information security in the Internet of Things (IoT) era. Physical unclonable functions (PUFs) utilize the inherent variations in the manufacturing process to generate cryptographic keys unique to a device. Reconfigurable PUFs can update cryptographic keys for enhanced security in dynamic operational scenarios involving huge amounts of data, which makes them suitable for implementation in CMOS‐integrated spin‐orbit torque magnetic random access memory (SOT‐MRAM) chips. However, a key challenge is achieving real‐time reconfiguration independent of the environmental conditions, particularly the operating temperature. We propose a dual‐pulse reconfiguration strategy for PUF design in CMOS‐integrated SOT‐MRAM chips that effectively widens the operating window and achieves resilience across a wide range of operating temperatures without the need for dynamic feedback that overly complicates circuit design. The proposed strategy lays a solid foundation for the next generation of hardware‐based security primitives to protect IoT architectures.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2d1de0f0f753b39d443https://doi.org/10.1002/advs.74926
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