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Reconfigurable Physical Unclonable Functions – Enabling Technology for Tamper-Resistant Storage ˇ Klaus Kursawe∗ , Ahmad-Reza Sadeghi† , Dries Schellekens‡ , Boris Skori´ c§ and Pim Tuyls‡¶ ∗
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Anaheim / Roseau / New York / Technische Universiteit Eindhoven / Yokohama / Madison / Washington / DC / Eindhoven / Vienna / Reading / New-York / /

Company

AES / Cryptographic Hardware / Embedded Systems / CBC / AEGIS / Computer Science A. S. / Philips Research Laboratories / Read-Proof Hardware / Intel / /

Country

Germany / Netherlands / Dominica / Belgium / Japan / Austria / United States / /

Currency

pence / USD / /

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Facility

Horst G¨ ortz Institute / Massachusetts Institute of Technology / /

Holiday

Commonwealth Day of Dominica / /

IndustryTerm

silicon devices / helper data algorithm / reconfigurable hardware / chip / manufacturing / authentication algorithm / encryption algorithm / physical systems / /

Organization

Horst G¨ ortz Institute for IT Security / Massachusetts Institute of Technology / European Commission / Katholieke Universiteit Leuven / IEEE Computer Society / /

Person

Ahmad-Reza Sadeghi / S. Nixon / Klaus Kursawe / Auth / Boris Skori / /

Position

rT / fuzzy extractor / Arbiter / /

ProgrammingLanguage

DC / /

ProvinceOrState

Wisconsin / New York / Massachusetts / /

PublishedMedium

IEEE Transactions on Computers / Lecture Notes in Computer Science / /

Technology

FPGA / external NVM chip / authentication algorithm / separate chip / smart card / secret key / SRAM / html / nonvolatile memory / 1.6 pJ/bit Chip / Integrated Circuits / same chip / encryption / memory encryption / cellular telephone / laser / Cryptography / CMOS technology / helper data algorithm / Flash memory / application processor / System-on-Chip / dielectric / NVM chip / simulation / Flash / As encryption algorithm / NVM technologies / Integrated Circuit / /

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