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Nano-electromechanical Switch Based on a Physical Unclonable Function for Highly Robust and Stable Performance in Harsh Environments

  • Kyu Man Hwang
  • , Jun Young Park
  • , Hagyoul Bae
  • , Seung Wook Lee
  • , Choong Ki Kim
  • , Myungsoo Seo
  • , Hwon Im
  • , Do Hyun Kim
  • , Seong Yeon Kim
  • , Geon Beom Lee
  • , Yang Kyu Choi*
  • *Corresponding author for this work
  • School of Electrical Engineering
  • Samsung
  • Korea Advanced Institute of Science and Technology
  • SK Corporation

Research output: Contribution to journalJournal articlepeer-review

Abstract

A physical unclonable function (PUF) device using a nano-electromechanical (NEM) switch was demonstrated. The most important feature of the NEM-switch-based PUF is its use of stiction. Stiction is one of the chronic problems associated with micro- and nano-electromechanical system (MEMS/NEMS) devices; however, here, it was utilized to intentionally implement a PUF for hardware-based security. The stiction is caused by capillary and van der Waals forces, producing strong adhesion, which can be utilized to design a highly robust and stable PUF. The probability that stiction will occur on either of two gates in the NEM switch is the same, and consequently, the occurrence of the stiction is random and unique, which is critical to its PUF performance. This uniqueness was evaluated by measuring the interchip Hamming distance (interchip HD), which characterizes how different responses are made when the same challenge is applied. Uniformity was also evaluated by the proportion of "1" or "0" in the response bit-string. The reliability of the proposed PUF device was assessed by stress tests under harsh environments such as high temperature, high dose radiation, and microwaves.

Original languageEnglish
Pages (from-to)12547-12552
Number of pages6
JournalACS Nano
Volume11
Issue number12
DOIs
StatePublished - 2017.12.26

Keywords

  • NEM switch
  • NEMS
  • physical unclonable function
  • security
  • silicon nanowire
  • stiction

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