2012•IEEE Embedded Systems LettersRequires access

HDRL: Homogeneous Dual-Rail Logic for DPA Attack Resistive Secure Circuit Design

Kazuyuki Tanimura, Nikil D. Dutt

Open publisher page 11 citations

Abstract

Differential power analysis (DPA) attacks find the correlation between power consumption and secret data in crypto-hardware. This letter proposes homogeneous dual-rail logic (HDRL), a standard cell DPA attack countermeasure that theoretically guarantees fully balanced power consumption and significantly improves DPA attack resistivity. Our experimental results on the AES S-Box circuit show that HDRL successfully prevents DPA attacks in all cases.

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What this paper is about

Differential power analysis (DPA) attacks find the correlation between power consumption and secret data in crypto-hardware. This letter proposes homogeneous dual-rail logic (HDRL), a standard cell DPA attack countermeasure that theoretically guarantees fully balanced power consumption and significantly improves DPA attack resistivity. Our experimental results on the AES S-Box circuit show that HDRL successfully prevents DPA attacks in all cases.

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Available abstract

Differential power analysis (DPA) attacks find the correlation between power consumption and secret data in crypto-hardware. This letter proposes homogeneous dual-rail logic (HDRL), a standard cell DPA attack countermeasure that theoretically guarantees fully balanced power consumption and significantly improves DPA attack resistivity. Our experimental results on the AES S-Box circuit show that HDRL successfully prevents DPA attacks in all cases.

Key concepts: Computer science, Power analysis, Countermeasure, Homogeneous, Embedded system, Dual (grammatical number), Power consumption, Logic gate

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