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Secure circuit with optical energy harvesting against unpowered physical attacks

Title
Secure circuit with optical energy harvesting against unpowered physical attacks
Authors
Kim, HyungseupKo, YoungwoonMun, YeongjinLee, ByeoncheolKim, Dong KyueChoi, Byong-DeokKim, Ji-HoonKo, Hyoungho
Ewha Authors
김지훈
SCOPUS Author ID
김지훈scopus
Issue Date
2018
Journal Title
COMPUTERS & ELECTRICAL ENGINEERING
ISSN
0045-7906JCR Link

1879-0755JCR Link
Citation
COMPUTERS & ELECTRICAL ENGINEERING vol. 70, pp. 74 - 82
Keywords
Optical energy harvestingOptical secure circuitOn-chip photodiodeHardware securityPhysical attack protection
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
This study presents an optical secure circuit for physical attack protection. On-chip photodiodes are integrated for optical energy harvesting to operate the optical secure circuit in a standard CMOS process. The aim of the proposed optical secure circuit is to protect the secure contents of the IC against external unpowered attacks. When invasive unpowered physical attacks such as decapsulation are attempted, the photodiodes accumulate charge from ambient light and activate the secure circuit path that shuts down the secure data path. The proposed secure circuit is fabricated using a standard 0.18 mu m 1P6M CMOS process with a small active area of 0.34 mm(2) with fully integrated on-chip photodiodes. When the chip is decapsulated and unpowered, the supply voltage of 600 mV with the ambient light is generated by the optical harvester, and the security data paths are shut down in 500 ns.
DOI
10.1016/j.compeleceng.2018.06.005
Appears in Collections:
공과대학 > 전자전기공학전공 > Journal papers
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