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  • AES256-CTR, High-speed (XIP1103H)

    IP Core

    AES256-CTR, High-speed (XIP1103H)

    The high-speed AES256-CTR effectively turns a block cipher into a stream cipher, providing a number of advantages from an implementation point of view.
    AES256-CTR, High-speed (XIP1103H)
  • Crypto Module (XIP7500)

    IP Core

    Crypto Module (XIP7500)

    Xiphera’s Crypto Module is an integrated security platform enabling customised set of highly-optimised cryptographic services for microcontrollers or SoC implementations.
    Crypto Module (XIP7500)
  • MACsec AES256-GCM, High-speed (XIP1213H)

    IP Core

    MACsec AES256-GCM, High-speed (XIP1213H)

    The high-speed MACsec IP core implements the MACsec protocol as standardized in IEEE 802.1AE-2018, defining a security infrastructure for OSI model Layer 2 traffic.
    MACsec AES256-GCM, High-speed (XIP1213H)
  • AES256-GCM, Balanced (XIP1113B)

    IP Core

    AES256-GCM, Balanced (XIP1113B)

    The balanced AES256-GCM implements the AES in Galois Counter Mode: a widely used cryptographic algorithm for Authenticated Encryption with Associated Data purposes.
    AES256-GCM, Balanced (XIP1113B)
  • AES256-GCM, High-speed (XIP1113H)

    IP Core

    AES256-GCM, High-speed (XIP1113H)

    The high-speed AES256-GCM implements the AES in Galois Counter Mode: a widely used cryptographic algorithm for Authenticated Encryption with Associated Data purposes.
    AES256-GCM, High-speed (XIP1113H)
  • AES256-XTS, Balanced (XIP1183B)

    IP Core

    AES256-XTS, Balanced (XIP1183B)

    The balanced AES-XTS IP core implements the Advanced Encryption Standard (AES) with 256 bits long key in XTS mode.
    AES256-XTS, Balanced (XIP1183B)
  • Ascon, Balanced (XIP2201B)

    IP Core

    Ascon, Balanced (XIP2201B)

    The balanced Ascon is an IP core for Ascon AEAD and hashing. The IP core provides three different cryptographic primitives all in one IP core.
    Ascon, Balanced (XIP2201B)
  • HKDF/HMAC/SHA-256, Balanced (XIP3322B)

    IP Core

    HKDF/HMAC/SHA-256, Balanced (XIP3322B)

    This IP core is designed for SHA-256 hash function with extended support for HMAC and HKDF, offering good balance between performance and resource requirements.
    HKDF/HMAC/SHA-256, Balanced (XIP3322B)
  • HKDF/HMAC/SHA-256/SHA-512, Compact (XIP3327C)

    IP Core

    HKDF/HMAC/SHA-256/SHA-512, Compact (XIP3327C)

    This IP core, designed for SHA-256/512 hash function with extended support for HMAC and HKDF, offers good balance between performance and resource requirements.
    HKDF/HMAC/SHA-256/SHA-512, Compact (XIP3327C)
  • HKDF/HMAC/SHA-384, Balanced (XIP3323B)

    IP Core

    HKDF/HMAC/SHA-384, Balanced (XIP3323B)

    This IP core is designed for SHA-384 hash function with extended support for HMAC and HKDF, offering good balance between performance and resource requirements.
    HKDF/HMAC/SHA-384, Balanced (XIP3323B)
  • HKDF/HMAC/SHA-512, Balanced (XIP3324B)

    IP Core

    HKDF/HMAC/SHA-512, Balanced (XIP3324B)

    This IP core is designed for SHA-512 hash function with extended support for HMAC and HKDF, offering good balance between performance and resource requirements.
    HKDF/HMAC/SHA-512, Balanced (XIP3324B)
  • MACsec AES256-GCM, Balanced (XIP1213B)

    IP Core

    MACsec AES256-GCM, Balanced (XIP1213B)

    The balanced MACsec IP core implements the MACsec protocol as standardized in IEEE 802.1AE-2018, defining a security infrastructure for OSI model Layer 2 traffic.
    MACsec AES256-GCM, Balanced (XIP1213B)
  • ML-KEM-512/768/1024 (CRYSTALS-Kyber), Balanced (XIP6110B)

    IP Core

    ML-KEM-512/768/1024 (CRYSTALS-Kyber), Balanced (XIP6110B)

    ML-KEM-512/768/1024 is an IP core for post-quantum Key Encapsulation Mechanism (KEM), optimized for a good balance between speed and resource requirements.
    ML-KEM-512/768/1024 (CRYSTALS-Kyber), Balanced (XIP6110B)
  • NIST P-256/P-384 ECDH+ECDSA, Compact (XIP41x3C)

    IP Core

    NIST P-256/P-384 ECDH+ECDSA, Compact (XIP41x3C)

    Family of compact IP cores implementing Elliptic Curve Diffie-Hellman (ECDH) and Elliptic Curve Digital Signature Algorithm (ECDSA) on NIST prime curves.
    NIST P-256/P-384 ECDH+ECDSA, Compact (XIP41x3C)
  • PRNG, Balanced (XIP8103B)

    IP Core

    PRNG, Balanced (XIP8103B)

    The balanced Pseudorandom Number Generator is based on Counter operation mode of a 256-bit AES and uses an AES-CTR implementation as an integral building block.
    PRNG, Balanced (XIP8103B)
  • PRNG, High-speed (XIP8103H)

    IP Core

    PRNG, High-speed (XIP8103H)

    The high-speed Pseudorandom Number Generator is based on Counter operation mode of a 256-bit AES, using an AES-CTR implementation as an integral building block.
    PRNG, High-speed (XIP8103H)
  • RSA Signature Verification, Compact (XIP5012C)

    IP Core

    RSA Signature Verification, Compact (XIP5012C)

    This compact IP core is designed for RSA signature verification, which is used in numerous contemporary security protocols and applications, including TLS 1.3.
    RSA Signature Verification, Compact (XIP5012C)
  • SHA-3, Compact (XIP3030C)

    IP Core

    SHA-3, Compact (XIP3030C)

    The compact SHA-3 IP core with its versatile support can be used in various applications requiring SHA-3 hashing or other supported SHA-3 based functionalities.
    SHA-3, Compact (XIP3030C)
  • SHA-3, High-speed (XIP3030H)

    IP Core

    SHA-3, High-speed (XIP3030H)

    The high-speed SHA-3 IP core with its versatile support can be used in various applications requiring SHA-3 hashing or other supported SHA-3 based functionalities.
    SHA-3, High-speed (XIP3030H)
  • TRNG, Balanced (XIP8001B)

    IP Core

    TRNG, Balanced (XIP8001B)

    The balanced TRNG IP core is designed in generic and portable VHDL, and the output of its entropy source has been successfully tested with multiple test suites.
    TRNG, Balanced (XIP8001B)
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