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  4. Demonstration of high-reconfigurability and low-power strong physical unclonable function empowered by FeFET cycle-to-cycle variation and charge-domain computing
 
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2025
Journal Article
Title

Demonstration of high-reconfigurability and low-power strong physical unclonable function empowered by FeFET cycle-to-cycle variation and charge-domain computing

Abstract
Physical unclonable functions (PUFs) are of immense potential in authentication scenarios for Internet of Things (IoT) devices. For creditable and lightweight PUF applications, key attributes, including low power, high reconfigurability and large challenge-response pair (CRP) space, are desirable. Here, we report a ferroelectric field-effect transistor (FeFET)-based strong PUF with high reconfigurability and low power, which leverages the FeFET cycle-to-cycle variation throughout the workflow and introduces charge-domain in-memory computing. The proposed PUF cells are fabricated at 28 nm node, and the experimental measurements reveal high uniformity, uniqueness and repeatability. Remarkably, our PUF achieves near-ideal reconfigurability and ultra-low 1.89fJ per bit readout energy, significantly outperforming the state-of-the-art PUFs. Furthermore, we show that the PUF is robust against parameter variations and resilient to machine learning (ML) attacks. These performances highlight the great promise of the FeFET-based strong PUF as a feasible IoT security solution.
Author(s)
Li, Taixin
Beijing National Research Center for Information Science and Technology
Guo, Xinrui
Beijing National Research Center for Information Science and Technology
Müller, Franz  
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Abdulazhanov, Sukhrob
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Ma, Xiaoyang
School of Engineering and Applied Science
Zhong, Hongtao
Beijing National Research Center for Information Science and Technology
Liu, Yongpan
Beijing National Research Center for Information Science and Technology
Narayanan, Vijaykrishnan
Penn State College of Engineering
Yang, Huazhong
Beijing National Research Center for Information Science and Technology
Ni, Kai
College of Engineering
Kämpfe, Thomas  orcid-logo
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Li, Xueqing
Beijing National Research Center for Information Science and Technology
Journal
Nature Communications  
Funder
National Natural Science Foundation of China  
Open Access
DOI
10.1038/s41467-024-55380-x
Additional link
Full text
Language
English
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
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