Agile PQC Public Key Accelerator
Quantum computers will solve some of the most complex problems in minutes versus the potentially thousands of years that classica…
- Post Quantum
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.
Agile PQC Public Key Accelerator
Quantum computers will solve some of the most complex problems in minutes versus the potentially thousands of years that classica…
TRNG (True Random Number Generator) NIST SP800-90C
TRNG Core meets NIST SP 800-90A/B standard It is the basis of the Root of Trust System, mainly it comes with other Security Eleme…
ZUC (128-EEA3 and 128-EIA3) Core
This IP core implements the ZUC stream cipher and the 128-EEA3 encryption and 128-EIA3 authentication algorithms based on it whic…
This IP core implements the SHA-1, SHA-256, SHA-384 and SHA-512 algorithms specified in FIPS180-4 which are widely used for authe…
GSMC18_RCG_03 is to generate random code with the sampling clock up to 250MHz.
Advanced Encryption Standard (AES-128) core with AMBA AHB interface
The GRAES core implements the AES-128 symmetric encryption algorithm for high-throughput applications.
AES-GCM - Authenticated Encryption and Decryption
Optimized for high processing throughput, suitable for designs that require increased performance while maintaining efficient use…
AES-GCM Authenticated Encryption and Decryption
Optimized for minimal logic and power usage, making it suitable for designs with stringent FPGA resource or energy constraints.
IP
Cipher coprocess for encryption/decryption of DES/Triple-DES/AES algorithm.
Cipher coprocess for encryption/decryption of DES/Triple-DES/AES algorithm.