AES 128/256 Encryption - Symmetric Security Range
The family of IPX-AES IP-Cores provides an efficient FPGA implementation of the Encryption Standard (AES).
- AES
Cryptography IP cores provide hardware-based security functions for protecting data, communications, and digital assets in modern SoC and ASIC designs. By offloading cryptographic operations from software, these IP cores deliver higher performance, lower latency, improved energy efficiency, and stronger resistance to security attacks.
This category includes Symmetric Cryptography, Public Key Cryptography, Post-Quantum Cryptography (PQC), Hash / MAC, and Random Number Generator (RNG) IP solutions. Available implementations may support algorithms such as AES, ChaCha20, RSA, ECC, ML-KEM, ML-DSA, SHA-2, SHA-3, HMAC, CMAC, and true or deterministic random number generation technologies required for secure key management and authentication.
This catalog enables semiconductor engineers to evaluate and compare Cryptography IP from leading vendors based on supported algorithms, security certifications, throughput, latency, power consumption, silicon area, side-channel resistance, quantum-safe capabilities, and semiconductor process node compatibility.
AES 128/256 Encryption - Symmetric Security Range
The family of IPX-AES IP-Cores provides an efficient FPGA implementation of the Encryption Standard (AES).
This configurable implementation of the AES-GCM algorithm implements the full NIST draft SP800-38D specification.
AES Encryption & Decryption IP Core − Single Configurable Block Cipher Mode
The AES-C IP core implements the FIPS-197 Encryption Standard.
The G2 AES encryption core represents the second generation of Algotronix' AES technology: it is a stable, NIST validated impleme…
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 WLAN security standard (802.16e) 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.
The Enhanced AES (Rijndael) IP Core provides numerous building blocks that are used to put together an encryption core for a vari…
AES Multi-purpose crypto engine
The AES Multi-Purpose crypto engine includes a generic and scalable implementation of the AES algorithm and a configurable wrappe…
This core family implements various aspects of the AES ( Encryption Standard) algorithm.
High-Speed AES Encryption Cores
D’Crypt’s AES core is a high-performance pipelined implementation of the AES (Rijndael) encryption algorithm.
High Performance AES-XTS/ECB Core
With the tremendous data and bandwidth growth in our connected world, security is essential to protect private and sensitive data…
Helion offer a suite of AES-GCM solutions which allow the user to choose a level of hardware acceleration which closely fits the …
IPSEC AES-256-GCM (Standalone IPsec)
XIP7213E implements the Internet Protocol Security (IPsec) as standardised in RFC4303 and RFC4305.
P1619 / 802.1ae (MACSec) GCM/XTS/CBC-AES Core
LAN security standard IEEE 802.1ae (MACSec) uses AES cipher in the GCM mode, while the disk/tape encryption standard IEEE P1619 u…
AES-256SS IP specializes in ultra-high throughput and ultra-low latency.
High-speed Inline Cipher Engine
The ICE-IP-338 (EIP-338) Inline Cipher Engine is a scalable, high-performance, multi-stream inline cryptographic engine that offe…
The 3DES-IP-16 (EIP-16) is IP for accelerating the AES symmetric cipher algorithm (FIPS-46/81 – SP800-IP-20), supporting single D…
Fast Inline Cipher Engine, AES-XTS/GCM, SM4-XTS/GCM, DPA
The ICE-IP-338 (EIP-338) Inline Cipher Engine is a scalable, high-performance, multi-stream inline cryptographic engine that offe…
ChaCha20 DPA Resistant Crypto Accelerator
Rambus DPA Resistant Hardware Cores prevent against the leakage of secret cryptographic key material through attacks when integra…