Elliptic curves form the foundation of cutting-edge public-key cryptography, serving as a crucial component for secure digital si…
- ECDSA
Public-Key Cryptography IP cores implement hardware-based cryptographic functions for trusted SoC and ASIC architectures in modern SoC and ASIC designs.
These IP cores support asymmetric algorithms for authentication, key exchange, and digital signatures, helping designers improve security throughput, reduce CPU overhead, and strengthen system trust anchors
This catalog allows you to compare Public-Key Cryptography IP cores from leading vendors based on security level, throughput, power efficiency, and process node compatibility.
Whether you are designing secure boot, device authentication, PKI-enabled systems, or trusted platforms, you can find the right Public-Key Cryptography IP for your application.
Elliptic curves form the foundation of cutting-edge public-key cryptography, serving as a crucial component for secure digital si…
Ironwood KAP (TM) Fast, Future-Proof Key Agreement Protocol Designed for Low-Resource Devices
Key agreement protocols are at the foundation of many of today's security applications.
Elliptic Curve Digital Signature generation and verification
eSi-ECDSA is a hardware acceleration core for Elliptic Curve (EC) Digital Signature Algorithm modular arithmetic operations defin…
Attack resistant ECC hardware acceleration core
eSi-ECC is a hardware acceleration core for Elliptic Curve (EC) modular arithmetic operations, which are commonly performed withi…
RSA public key cryptography with APB interface
The standard RSA module is available as an APB peripheral, where it seamlessly integrates with EnSilica's cryptography library.
Asymmetric cryptographic accelerator
The ACrypto Engine is an asymmetric cryptographic accelerator suitable for embedded application.
RSA Public Key Cryptography Exponentiation Accelerator
The modular exponentiation accelerator IPX-RSA is an efficient arithmetic coprocessor for the RSA public-key cryptosystem.