Hardware Security Module (HSM) for Xilinx Zynq UltraScale+ MPSoC platform
The HSM IP module is a Hardware Security Module for a wide range of applications.
- Root Of Trust
Security IP cores provide the hardware foundation required to protect modern SoC and ASIC designs against an increasingly sophisticated threat landscape. They enable secure data processing, trusted device operation, intellectual property protection, and compliance with industry security standards.
This category includes a comprehensive range of security technologies, from cryptography engines for encryption, decryption, hashing, and authentication, to interface security solutions that protect data in transit. It also covers key management IP for secure key generation and storage, root of trust implementations that establish a trusted security foundation, secure processing architectures for isolated execution of sensitive workloads, and side-channel protection technologies designed to mitigate power, timing, electromagnetic, and fault-injection attacks.
This catalog allows you to explore and compare Security IP cores from leading vendors based on security capabilities, performance, certification readiness, attack resistance, silicon maturity, and process node compatibility.
Whether you are developing connected IoT devices, automotive platforms, industrial equipment, consumer electronics, networking infrastructure, or cloud and edge computing systems, you can identify the security IP solutions needed to build resilient and trustworthy semiconductor products.
Hardware Security Module (HSM) for Xilinx Zynq UltraScale+ MPSoC platform
The HSM IP module is a Hardware Security Module for a wide range of applications.
The CryptoManager RT-6xx v3 Root of Trust family from Rambus is the latest generation of fully programmable FIPS 140-3 compliant …
Poly-IP-53 (EIP-53) is IP for accelerating the Poly1305 hash-based message authentication algorithm (RFC7539), supporting the NIS…
AHB DES and Triple DES with DMA
The AHB DES/TDES Encryption/Decryption Engine is a configurable core that interfaces to an AHB microprocessor bus.
The Arm® SecurCore® SC000 processor is designed specifically for the highest-volume smartcard and embedded security applications.
The MVD DVB-CSA Scrambler core allows to encrypt MPEG-TS stream using ETSI specified DVB Common Scrambling Algorithm (CSA2).
NIST FIPS-197 Compliant High Throughput Rate AES IP Core
ntAES128 core implements the NIST FIPS-197 Encryption Standard and can be programmed to either encrypt or decrypt 128-bit blocks …
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.
SHA1, SHA2 Cryptographic Hash Cores
The SHA cores provide implementation of cryptographic hashes SHA-1 (core SHA1), SHA-2 (cores SHA2-256 and SHA2-512).
HDCP Suite consists of hardware and software components implementing the HDCP 2.0 protocol.
SSL/TLS Processor IP Core with an AXI Bus Interface
The SSL1 core implements SSL and/or TLS frameworks with a configurable variety of cipher suites.
True Random and Pseudorandom Number Generator
The true random generator core implements true random number generation.
The ZUC-IP-48 (EIP-48) cipher accelerators implement the specification of the 3GPP Confidentiality and Integrity Algorithms as sp…
AES Encryption & Decryption IP Core − Programmable Block Cipher Modes
The AES-P IP core implements the FIPS-197 Encryption Standard.
SHA-3, SHA-2, SHA-1, SM3, MD5, Hash Accelerators
The HASH-IP-57 (EIP-57) is IP for accelerating the various secure hash integrity algorithms like MD5 (RFC1231), SHA-1 (FIPS-180-2…
The Kasumi-IP-06 (EIP-06) cipher accelerators implement the specification of the 3GPP Confidentiality and Integrity Algorithms as…