Intrinsic-ID
CRYPTO CORES:   iRNG    |   AES   |   SHA |   HMAC-SHA
Crypto Cores News

04/19/2011
Electronic Engineering Journal, 'You Got It, They Want It' by Jim Turley
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04/07/2011
Intrinsic-ID, today announced iRNG, a true Random Number Generator delivered as hardware IP (RTL) or embedded software.
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Crypto Cores

 


iRNG
Intrinsic-ID’s iRNG is a random number generator developed on Intrinsic-IDs Hardware Intrinsic Security (HIS) technology. The generation of random data by iRNG is based on the use of memory:  6T-SRAM is used as the source of entropy. This uninitialized SRAM is used for the generation of a true random seed, which serves as input for a FIPS 140-3 compliant Deterministic Random Bit Generator (DRBG). It is designed to generate large amounts of random data at high speed, with a very short start-up time. It is available both in hardware and software and can be integrated seamlessly into any chip design. 
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AES
Intrinsic-ID’s AES core, a highly compact IP core implementing the Advanced Encryption Standard (AES) in compliance with Federal Information Processing Standards FIPS PUB 197. It uses a 128-bit key and encrypts or decrypts data in blocks of 128 bits in ECB or CBC mode. It is available both in hardware as well as embedded software and can be integrated seamlessly with Intrinsic-ID’s Quiddikey key storage solution and iRNG random number generation product.
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SHA
Intrinsic-ID’s SHA-256 core is a highly efficient hardware IP core implementing the Secure Hash Algorithm Standard (SHA) in compliance with Federal Information Processing Standards FIPS PUB 180-2. It hashes messages of up to 264 bits in consecutive blocks of 512 bits using an efficient 64-round compression function. 
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HMAC-SHA
Intrinsic-ID’s HMAC-SHA-256 core is a highly efficient hardware IP core implementing the keyed version of the Secure Hash Algorithm Standard (SHA) in compliance with Federal Information Processing Standards FIPS PUB 198. It hashes messages in combination with a secret key in order to authenticate messages between parties sharing the same key.
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