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Minimum area, low cost fpga implementation of aes

Liberatori, Mónica Cristina et al · SEDICI UNLP · 2004

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The Rijndael cipher, designed by Joan Daemen and Vincent Rijmen and recently selected as the official Advanced Encryption Standard (AES) is well suited for hardware use. This implementation can be carried out through several trade-offs between area and speed. This paper presents an 8-bit FPGA implementation of the 128-bit block and 128 bit-key AES cipher. Selected FPGA Family is Altera Flex 10K. The cipher operates at 25 MHz and consumes 470 clock cycles for algorithm encryption, resulting in a throughput of 6.8 Mbps. The design target was optimisation of area and cost. Eje: IV - Workshop de procesamiento distribuido y paralelo Red de Universidades con Carreras en Informática (RedUNCI)

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APA 7

Liberatori, M. C. E. A. (2004). Minimum area, low cost fpga implementation of aes. SEDICI UNLP. http://sedici.unlp.edu.ar/handle/10915/22492

MLA

Liberatori, Mónica Cristina et al. Minimum area, low cost fpga implementation of aes. SEDICI UNLP, 2004. http://sedici.unlp.edu.ar/handle/10915/22492.

Chicago

Liberatori, Mónica Cristina et al. 2004. Minimum area, low cost fpga implementation of aes. SEDICI UNLP. http://sedici.unlp.edu.ar/handle/10915/22492.

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Liberatori, M. C. E. A. 2004, Minimum area, low cost fpga implementation of aes, SEDICI UNLP, available at: http://sedici.unlp.edu.ar/handle/10915/22492 [Accessed 6 Aug. 2026].

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Title
Minimum area, low cost fpga implementation of aes
Author / contributors
Liberatori, Mónica Cristina et al
Publisher
SEDICI UNLP
Publication year
2004
Language
English

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