Your Encryption Has an Expiration Date
Adversaries are already collecting encrypted data today, waiting for quantum computers to crack it tomorrow. CybeRaccoon helps organizations transition to post-quantum cryptography.
Post-quantum cryptography is the set of algorithms designed to stay secure against an attacker holding a large-scale quantum computer. The risk is not only future traffic: harvest-now-decrypt-later means data captured today can be stored until the hardware catches up.
CybeRaccoon helps organizations audit what they encrypt today, plan the migration, and move to NIST-approved algorithms without taking systems down to do it.
Why this matters now
- Quantum Computing is Accelerating: major breakthroughs in quantum computing are happening faster than predicted. NIST has already finalized post-quantum standards. The clock is ticking.
- Regulatory Pressure is Rising: governments and regulatory bodies worldwide are mandating PQC migration timelines. Organizations that delay will face compliance gaps.
NIST post-quantum standards
- ML-KEM (FIPS 203), formerly CRYSTALS-Kyber: key encapsulation mechanism replacing RSA/ECDH for key exchange
- ML-DSA (FIPS 204), formerly CRYSTALS-Dilithium: digital signature algorithm replacing RSA/ECDSA signatures
- SLH-DSA (FIPS 205), formerly SPHINCS+: stateless hash-based signature scheme as a conservative backup
- FN-DSA (FIPS 206), formerly FALCON: compact signature scheme ideal for constrained environments
How CybeRaccoon helps
- PQC readiness assessment: audit your current cryptographic posture
- Crypto-agility architecture design: build systems that can swap algorithms without downtime
- NIST-approved algorithm integration (ML-KEM, ML-DSA, SLH-DSA)
- TLS 1.3 hybrid migration: run classical and PQC encryption in parallel
- Certificate and PKI infrastructure migration planning
- Developer training on PQC implementation best practices
- Compliance alignment with CNSA 2.0, NIST SP 800-227, and EU recommendations