TLS - Validates TLS protocols to ensure secure, encrypted data transmission
TLS Verification IP (VIP) ensures secure communication by validating TLS protocol implementations.
- IPsec / TLS
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.
TLS - Validates TLS protocols to ensure secure, encrypted data transmission
TLS Verification IP (VIP) ensures secure communication by validating TLS protocol implementations.
AES - Encrypts sensitive data to ensure secure communication and transactions
AES ( Encryption Standard) is a widely-used encryption algorithm designed to secure sensitive data.
SHA-256 IP is an optimized and efficient implementation of a secure hash algorithm SHA-256 specified in FIPS 180-4 standard.
AES-256SS IP specializes in ultra-high throughput and ultra-low latency.
SoC Security Platform / Hardware Root of Trust
GEON-SoC is an area-efficient, processor-agnostic, hardware root of trust for SoC designs.
1G to 50G Single-Port MACsec Engine with xMII interface and TSN support
The MACsec-IP-361 is a plug-and-play solution for adding MACsec on the xMII side of an Ethernet subsystem.
The ICE-IP-63 (EIP-63) is a scalable high-performance, multi-channel cryptographic engine that offers AES-GCM operations as well …
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…
Inline cipher engine with AXI, for memory encryption
Modern computing architectures must address increasing concerns regarding off-chip data confidentiality.
Inline memory encryption engine, for FPGA
IME-IP-340 Inline Memory Encryption (IME) Engine provides just-in-time encryption, decryption and authentication for all memory r…
Programmable Root of Trust With DPA and FIA for US Defense
The Rambus Root of Trust RT-1660 is a fully programmable, FIPS 140-3 compliant root-of-security core offering security by design …
Fast NIST ESV certified, FIPS (SP800-90A/B/C) True Random Number Generator
The TRNG-IP-77 is a FIPS-compliant and certified IP core for True Random Number Generation (TRNG) with an optional post-processor…
Hardware security module IP core with function to support crypto key storage, boot authentication, supervision, and offloading of…
ARC SEM120D Security Processor with DSP for Low Power Embedded Applications
The ARC® SEM Family includes performance-efficient, ultra-low power, compact security processors that enable designers to integra…
ARC SEM110 Security Processor for Low Power Embedded Applications
The ARC® SEM Family includes performance-efficient, ultra-low power, compact security processors that enable designers to integra…
ARC SEM130FS Safety and Security Processor
The ARC® SEM130FS Safety and Security Processor simplifies development of safety-critical automotive applications while enabling …
Device identities and cryptographic root keys are at the foundation of every security system.
FPGAs are widely used in mission-critical environments with specific processing needs.
The number of connected devices, machines, sensors, or things that are linked with each other over open communication networks on…
True Random Number Generator Core
True Random Number Generators (TRNGs) are required in many applications such as wired and wireless networking, IoT, automotive, g…