학술논문

Low-power flexible GF(p) elliptic-curve cryptography processor
Document Type
Conference
Source
2008 3rd International Design and Test Workshop Design and Test Workshop, 2008. IDT 2008. 3rd International. :182-186 Dec, 2008
Subject
Computing and Processing
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Engineered Materials, Dielectrics and Plasmas
Elliptic curve cryptography
Energy consumption
CMOS technology
Public key cryptography
CMOS process
Circuit simulation
Hardware
Frequency
RFID tags
Wireless sensor networks
Language
ISSN
2162-0601
2162-061X
Abstract
In this paper, we present a very low power standard public-key cryptography processor for use in power-limited applications. The proposed prime-field elliptic-curve cryptography processor is flexible in terms of field and curve parameters. The power consumption of the structure is minimized by simplifying the architecture and circuit implementation. To assess the power efficiency of the design, we have implemented the processor for 192-bit fields using a standard 0.13μm CMOS technology. The simulation results show that the processor consumes only 26.3 μW/MHz which is considerably lower than the power consumptions reported for similar designs. The hardware completes a 192-bit scalar multiplication in 1.15 s at a frequency of 13.56 MHz. With these specifications, the proposed processor may be used in many applications of RFID tags and wireless sensors.