2002European Solid-State Circuits ConferenceRequires access

A dynamic and differential CMOS logic with signal independent power consumption to withstand differential power analysis on smart cards

Kris Tiri, Muhammad Akmal, Ingrid M.R. Verbauwhede

Open publisher page 517 citations

Abstract

To protect security devices such as smart cards against power attacks, we propose a dynamic and differential CMOS logic style. The logic operates with a power consumption independent of both the logic values and the sequence of the data. Consequently, it will not reveal the sensitive data in a device. We have built a set of logic gates and flip-flops needed for cryptographic functions and compared those to Static Complementary CMOS implementations.

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What this paper is about

To protect security devices such as smart cards against power attacks, we propose a dynamic and differential CMOS logic style. The logic operates with a power consumption independent of both the logic values and the sequence of the data. Consequently, it will not reveal the sensitive data in a device. We have built a set of logic gates and flip-flops needed for cryptographic functions and compared those to Static Complementary CMOS implementations.

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OpenAlex reports 517 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

To protect security devices such as smart cards against power attacks, we propose a dynamic and differential CMOS logic style. The logic operates with a power consumption independent of both the logic values and the sequence of the data. Consequently, it will not reveal the sensitive data in a device. We have built a set of logic gates and flip-flops needed for cryptographic functions and compared those to Static Complementary CMOS implementations.

Key concepts: CMOS, Logic gate, Power analysis, Pass transistor logic, Computer science, Pull-up resistor, Logic level, Logic family

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