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Threshold Voltage based Dual Memristor Crossbar PUF

journal contribution
submitted on 2024-07-31, 11:25 and posted on 2024-07-31, 12:53 authored by Aref Al-Tamimi, Shawkat Ali, Yuan Cao, Amine Bermak

IoT security plays a crucial role where smart devices are interconnected and one of these can give an intrusion access to the network if they are not secured. Physical unclonable function (PUF) comes in handy as an emerging lightweight hardware security primitive for key management and device authentication. In this research work, we propose a new architecture of PUF hardware based on memristor threshold voltage variation. Memristor manufacturing variations are exploited for the threshold voltage variation which makes the device unique. The selection from the proposed crossbars forms two connected memristors. The selections connect the formed voltage divider network to the input and ground. The output is probed at the middle node, which is the selected rows of the two crossbars. Voltage (challenge) is applied at selected pair of memristors through the corresponding columns and rows, and output (response) is taken from the selected rows. We believe this work will set a new direction for the researchers to explore manufacturing errors for PUF applications.

Other Information

Published in: AEU - International Journal of Electronics and Communications
License: http://creativecommons.org/licenses/by-nc-nd/4.0/
See article on publisher's website: https://dx.doi.org/10.1016/j.aeue.2023.155012

Funding

Qatar National Research Fund (NPRP13S-0212-200345), Artificial Intelligence Assisted and Computationally Efficient Smart Vision Sensor.

History

Language

  • English

Publisher

Elsevier

Publication Year

  • 2024

License statement

This Item is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Institution affiliated with

  • Hamad Bin Khalifa University
  • College of Science and Engineering - HBKU

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    College of Science and Engineering - HBKU

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