Comprehensive guides and technical documentation for quantum-safe Bitcoin protection
Create your first quantum-safe key pair using CRYSTALS-Dilithium post-quantum cryptography.
Generate NowUnderstand the technical implementation and security model behind QKey's quantum protection.
Download PDFComplete technical specification including cryptographic protocols, Bitcoin integration, and security analysis.
PDF • 38 pages • TechnicalDeep dive into lattice-based cryptography, NIST standards, and quantum resistance principles.
Web Page • EducationalOpen source implementation of cryptographic functions and Bitcoin integration code.
GitHub • DevelopmentStep-by-step guide to generating, managing, and using quantum-safe cryptographic keys.
Web Page • Beginner FriendlyHow to protect existing Bitcoin wallets with quantum-safe signatures and backup strategies.
Web Page • IntermediateRecovery procedures for lost quantum keys and backup restoration methods.
Web Page • AdvancedClient-side cryptographic functions for web applications:
generateDilithiumKeys()
- Generate quantum-safe key pairssignMessage(privateKey, message)
- Create quantum signaturesverifySignature(publicKey, message, signature)
- Verify signaturescompressSignature(signature)
- Compress for OP_RETURNMethods for embedding quantum signatures in Bitcoin transactions:
embedQuantumSignature()
- Add to OP_RETURN outputcreateHybridTransaction()
- ECDSA + Dilithium signingverifyQuantumTransaction()
- Validate quantum signaturesextractQuantumData()
- Parse OP_RETURN signaturesBegin your quantum-safe journey with QKey today.