In System-on-Chip Architectures and Implementations for Private-Key DataEncryption, new generic silicon architectures for the DES and Rijndael symmetric key encryption algorithms are presented. The generic architectures can be utilised to rapidly and effortlessly generate system-on-chip cores, which support numerous application requirements, most importantly, different modes of operation and encryption and decryption capabilities. In addition, efficient silicon SHA-1, SHA-2 and HMAC hash algorithm architectures are described. A single-chip Internet...
In System-on-Chip Architectures and Implementations for Private-Key DataEncryption, new generic silicon architec...
In System-on-Chip Architectures and Implementations for Private-Key DataEncryption, new generic silicon architectures for the DES and Rijndael symmetric key encryption algorithms are presented. The generic architectures can be utilised to rapidly and effortlessly generate system-on-chip cores, which support numerous application requirements, most importantly, different modes of operation and encryption and decryption capabilities. In addition, efficient silicon SHA-1, SHA-2 and HMAC hash algorithm architectures are described. A single-chip Internet...
In System-on-Chip Architectures and Implementations for Private-Key DataEncryption, new generic silicon architec...