Engineered for institutional-grade settlements with sub-millisecond deterministic finality across a sharded mesh infrastructure.
Strategic Institutional Alignment
Cyanus is a sovereign decentralized settlement layer. Our architecture bridges the gap between trustless execution and institutional-grade performance.
Leveraging TEE-based validation for private computation.
Sub-millisecond settlement across all sharded nodes.
Native bridges for EVM, Rust, and Move ecosystems.
A battle-tested tech stack designed to handle the complexities of modern decentralized finance with institutional precision.
Post-quantum cryptographic standards ensuring long-term ledger integrity against emerging computational threats.
Architecture DocsSelf-optimizing liquidity paths powered by distributed low-latency inference engines for atomic settlement.
Architecture DocsAsynchronous consensus mechanisms allowing for deterministic settlement in under 400ms across shards.
Architecture DocsNative interoperability between EVM, Solana, and Cosmos ecosystems without the need for wrapped assets.
Architecture DocsOn-chain privacy through zero-knowledge proofs, enabling compliant yet anonymous sovereign transactions.
Architecture DocsDynamic sharding architecture that adjusts network capacity based on real-time global demand spikes.
Architecture DocsSustainable algorithmic distribution ensuring platform longevity and validator incentives.
A chronological breakdown of our technical milestones and deployment phases.
Activation of the L0 consensus layer and sharded mesh topology.
Deployment of TEE-isolated validation nodes for private cross-chain swaps.
Dynamic horizontal scaling implementation for sub-millisecond settlements.
Native interoperability suite for Solana and Move-based chains.
Transition to decentralized sovereign council and DAO frameworks.
A collective of specialists dedicated to hardening the next layer of financial infrastructure.
Principal Cryptographer
Lead Eng. (Rust)
Founding Partner
Protocol Strategy
Strategic Institutional Alignment
Detailed insights into the Cyanus network infrastructure and protocol parameters.
Join our developer discord or explore the technical whitepaper for deep dives into our specific sharding architecture.
Cyanus utilizes an optimized version of the HoneyBadgerBFT protocol, which allows for atomic settlement even in periods of high network asynchrony and potential double-spend attacks.
Validators are dynamically assigned to elastic shards using a verifiable random function (VRF), ensuring that shard leadership is rotated frequently to prevent collusion or targeted DDoS.
Yes, 30% of all network transaction fees are systematically burned, while 20% are redirected to the validator reward pool, creating a sustainable long-term value capture system.
Nodes require a minimum of 32GB RAM, high-speed NVMe storage, and a CPU with TEE (Trusted Execution Environment) capabilities to maintain sub-second finality.