DocumentCode :
3607130
Title :
Low-power secure S-box circuit using charge-sharing symmetric adiabatic logic for advanced encryption standard hardware design
Author :
Monteiro, Ca?Œâ€?ncio ; Takahashi, Yasuhiro ; Sekine, Toshikazu
Author_Institution :
Grad. Sch. of Eng., Gifu Univ., Gifu, Japan
Volume :
9
Issue :
5
fYear :
2015
Firstpage :
362
Lastpage :
369
Abstract :
The previously proposed charge-sharing symmetric adiabatic logic (CSSAL) in an 8-bit S-box circuit is implemented in this paper using a multi-stage positive polarity Reed-Muller representation with a composite field technique. The CSSAL and other conventional dual-rail adiabatic logics are evaluated from the view point of the transitional power fluctuation and the peak current traces in the 8-bit S-box in order to compare their resistance against side-channel attacks. A method to eliminate unwanted glitch current, the triple power clock supplies are applied to each inversion block; thus, the CSSAL S-box circuit performs uniform peak current traces and it has significant power reduction, which is applicable for high security demand and low power devices, such as smart cards, radio frequency identity tags or wireless sensors. The results are obtained from the SPICE simulation with a 0.18-μm 1.8-V standard complementary metal-oxide semiconductor technology at an operating frequency band of 1.25 KHz-70 MHz.
Keywords :
CMOS logic circuits; Reed-Muller codes; cryptography; low-power electronics; SPICE simulation; advanced encryption standard hardware design; charge-sharing symmetric adiabatic logic; composite field technique; inversion block; low-power secure S-box circuit; multistage positive polarity Reed-Muller representation; peak current; side-channel attacks; size 0.18 mum; standard complementary metal-oxide semiconductor technology; transitional power fluctuation; triple power clock supplies; voltage 1.8 V; word length 8 bit;
fLanguage :
English
Journal_Title :
Circuits, Devices Systems, IET
Publisher :
iet
ISSN :
1751-858X
Type :
jour
DOI :
10.1049/iet-cds.2014.0150
Filename :
7279043
Link To Document :
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