Laser Fault Injection Attacks against Radiation Tolerant TMR Registers

Fuente: arXiv
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Hauptverfasser: Petryk, Dmytro, Dyka, Zoya, Kabin, Ievgen, Breitenreiter, Anselm, Schaeffner, Jan, Krstic, Milos
Format: Preprint
Veröffentlicht: 2024
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author Petryk, Dmytro
Dyka, Zoya
Kabin, Ievgen
Breitenreiter, Anselm
Schaeffner, Jan
Krstic, Milos
author_facet Petryk, Dmytro
Dyka, Zoya
Kabin, Ievgen
Breitenreiter, Anselm
Schaeffner, Jan
Krstic, Milos
contents Security requirements for the Internet of things (IoT), wireless sensor nodes, and other wireless devices connected in a network for data exchange are high. These devices are often subject to lab analysis with the objective to reveal secret hidden information. One kind of attacks to reveal the cryptographic key is to perform optical Fault Injection attacks. In this work, we investigated the IHP radiation tolerant shift registers built of Triple Modular Redundant flip-flops. In our experiments, we were able to inject different transient faults into TMR registers.
format Preprint
id arxiv_https___arxiv_org_abs_2407_06751
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Laser Fault Injection Attacks against Radiation Tolerant TMR Registers
Petryk, Dmytro
Dyka, Zoya
Kabin, Ievgen
Breitenreiter, Anselm
Schaeffner, Jan
Krstic, Milos
Hardware Architecture
Cryptography and Security
Security requirements for the Internet of things (IoT), wireless sensor nodes, and other wireless devices connected in a network for data exchange are high. These devices are often subject to lab analysis with the objective to reveal secret hidden information. One kind of attacks to reveal the cryptographic key is to perform optical Fault Injection attacks. In this work, we investigated the IHP radiation tolerant shift registers built of Triple Modular Redundant flip-flops. In our experiments, we were able to inject different transient faults into TMR registers.
title Laser Fault Injection Attacks against Radiation Tolerant TMR Registers
topic Hardware Architecture
Cryptography and Security
url https://arxiv.org/abs/2407.06751