Ultra-Compact 3GPP Cipher Core
The ZUC1 core implements ZUC stream cipher in compliance with the 3GPP Confidentiality and Integrity Algorithms 128-EEA3 & 128-EI…
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IP Cores, Inc specializes on IP cores for semiconductors, primarily in the security and cryptography area with a sprinkle of DSP. Whether your needs are in 802.16e, P1619, 802.1AE, content protection, or FFT, our cryptographic and DSP cores usually are the smallest, fastest, and lowest-cost choices on the market.
Ultra-Compact 3GPP Cipher Core
The ZUC1 core implements ZUC stream cipher in compliance with the 3GPP Confidentiality and Integrity Algorithms 128-EEA3 & 128-EI…
LDPC-G9660 core provides an efficient implementation of the low-density parity-check (LDPC) forward error correcting (FEC) encodi…
66/2112 Codec for Cyclic Code (2112,2080)
The CEC1-66/2112 core implements the codec for the Forward Error Correction (FEC) cyclic code (2112,2080) used in the IEEE 802.3a…
Cryptographically Secure Pseudo Random number Generator IP Core
The PRNG1 core implements a cryptographically secure pseudo-random number generator per NIST publication SP800-90.
RSA Public Key Exponentiation Accelerator
Rivest-Shamir-Adelman (RSA) is a public-key cryptographic technology that uses the mathematics of so called “finite field exponen…
Elliptic Curve Point Multiply and Verify Core
Elliptic Curve Cryptography (ECC) is a public-key cryptographic technology that uses the mathematics of so called “elliptic curve…
IEEE 802.15.4 (ZigBee) CCM* AES Cores
IEEE 802.15.4 is the low-power wireless standard that is used by ZigBee Alliance as a base of its ZigBee™ specification.
Implementation of the new encrypted shared storage media standard IEEE P1619 with AES cipher in the LRW mode.
Combo P1619 / 802.1ae (MACSec) GCM-AES/LRW-AES Cores
LAN security standard IEEE 802.1ae (MACSec) uses AES cipher in the GCM mode, while the disk/tape encryption standard IEEE P1619 u…
P1619/802.1ae (MACSec) GCM/XEX/XTS-AES Core
General Description LAN security standard IEEE 802.1ae (MACSec) uses AES cipher in the GCM mode, while the disk/tape encryption s…
Implementation of the older drafts standard IEEE P1619 required the NIST standard AES cipher in the LRW mode for encryption (AES-…
Implementation of the new WPAN security standard for MBOA MAC requires the NIST standard AES cipher in CTR and CBC modes (a.k.a.
Implementation of the new WPAN security standard (802.15.3) requires the NIST standard AES cipher in CTR and CBC modes (a.k.a.
These cores implement a Bose-Chaudhuri-Hocquenghem (BCH) error correction code configured to process a k-bit codeword, providing …
MSP7-32 MACsec IP core for FPGA or ASIC
Implementation of the LAN security standard IEEE 802.1ae (MACsec) requires the NIST standard AES cipher in the GCM mode for encry…
The GCE1-MP core implements Rijndael encoding and decoding in compliance with the NIST Encryption Standard and encryption/authent…
The CMAC1 core provides implementation of cryptographic hashes AES-CMAC per NIST SP 800-38B and AES-XCBC.
Generic CCM AES Core with CMAC Option
The CCM2 cores are tuned for mid-performance generic AES-CCM applications per NIST SP 800-38C.
Implementation of the new ITU G.9961 standard for home networking requires the NIST standard AES cipher in CTR and CBC modes (a.k…
Implementation of the WLAN security standard (802.11i) requires the NIST standard AES cipher in CTR and CBC modes (a.k.a.