ECC Secure Accelerator - Compact and Secure ECC IP Core for Resource-Constrained Devices
Compact and Secure ECC IP Core for Resource-Constrained Devices Resource-constrained devices often lack the area and power budget…
- ECC
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.
ECC Secure Accelerator - Compact and Secure ECC IP Core for Resource-Constrained Devices
Compact and Secure ECC IP Core for Resource-Constrained Devices Resource-constrained devices often lack the area and power budget…
High-Security SHA-2/HMAC Core with Zero Side-Channel Leakage Guarantee FortifyIQ’s High-Security SHA-2/HMAC IP core is engineered…
High-Security SHA-2/HMAC Core with Zero Side-Channel Leakage (SHA-224/256 Only) FortifyIQ’s High-Security SHA-2/HMAC IP core deli…
High-Performance AES-GCM/XTS Core with Integrated SCA/FI Protection FortifyIQ’s AES-GCM/XTS IP core delivers high-throughput encr…
High-Performance AES-XTS Core with RAMBAM-Based SCA/FI Protection FortifyIQ’s AES-XTS IP core delivers high-throughput AES-128/25…
Ultra-High-Performance AES-GCM Core with RAMBAM-Based SCA/FI Protection FortifyIQ’s AES-GCM IP core delivers ultra-high-throughpu…
High-Performance, Ultra Low-Power AES Encryption Core with Full Mode Support and Formally Proven SCA Protection FortifyIQ’s High-…
High-Performance/Ultra Low Power AES Encryption Core with Full Mode Support and Formally Proven SCA Protection FortifyIQ’s High-T…
Ultra-Low-Power AES Encryption Core with Full Mode Support and Formally Proven SCA Protection FortifyIQ’s Low-Energy AES IP core …
Ultra-Low-Power AES Core with Proven SCA Protection for Constrained Devices FortifyIQ’s Ultra-Low-Power AES IP core is a compact …
ML-KEM Key Encapsulation & ML-DSA Digital Signature Engine
The KiviPQC™-Box is a hardware accelerator for post-quantum cryptographic operations.
ML-DSA Digital Signature Engine
The KiviPQC™-DSA is a hardware accelerator for post-quantum cryptographic operations.
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 Encryption Core with Extreme SCA Protection for Ultra-High-Security Applications FortifyIQ’s Ultra-Secure AES IP core is desi…
Compact and Secure Post-Quantum Signature SW Library for Resource-Constrained Devices As classical digital signature algorithms f…
Compact and Secure Post-Quantum Key Encapsulation SW Library for Resource-Constrained Devices As classical asymmetric encryption …
High-Performance Hybrid Classical and Post-Quantum Cryptography
Hybrid Classical and Post-Quantum Cryptography IP Core for Future-Proof Security FortifyIQ’s High-Performance Hybrid Cryptography…
Hybrid Classical and Post-Quantum Cryptography
Hybrid Classical and Post-Quantum Cryptography IP Core for Future-Proof Security FortifyIQ’s Hybrid Cryptography IP core combines…
Versatile Post-Quantum Cryptography IP Core for Balanced Performance, Area, and Power FortifyIQ’s Post-Quantum Cryptography IP co…
Compact and Secure Post-Quantum Signature IP Core for Resource-Constrained Devices As digital signature algorithms face obsolesce…