- Compare
- Mazze vs Crust
Mazze vs Crust
Mazze vs Crust Scalability
Real-time TPS
Mazze has no data, while Crust TPS is 0 tx/s
Max TPS (100 blocks)
Mazze has no data, while Crust max TPS is 0.06 tx/s
Max Theoretical TPS
Mazze has no data, while Crust max theoretical TPS is 1,500 tx/s
Transaction Volume
Mazze has no data, while Crust transaction volume is 0 txns
Block Time
Mazze has no data, while Crust block time is 12.61s
Finality
Mazze has no data, while Crust finality is 30s
Type
Mazze has no data, while Crust is a parachain
Launch Date
Mazze has no data, while Crust was launched on Nov 21, 2022
Mazze vs Crust Decentralization
Nakamoto Coefficient
Mazze has no data, while Crust Nakamoto Coefficient is 185
Validators/Miners
Mazze has no data, while Crust has 600 validators
Stake/Hashrate
Mazze has no data, while Crust stake is $3.356B
Consensus Mechanism
Mazze has no data, while Crust is Nominated Proof of Stake
Governance
Mazze has no data, while Crust governance is on-chain
Mazze vs Crust Developer Activity New
Developers
Mazze has no data, while Crust has 177 developers
Repos
Mazze has no data, while Crust has 73 repos
Commits
Mazze has no data, while Crust has 11,658 commits
Stars
Mazze has no data, while Crust has 1,052 stars
Watchers
Mazze has no data, while Crust has 355 watchers
Other Comparisons
Mazze Comparisons
About Blockchains
About Mazze
Mazze is a Layer 1 blockchain that redefines performance through its PoW-based DAG architecture. Experience EVM compatible smart contracts and unparalleled privacy with ZK proofs.
About Crust
Crust is a decentralized storage network built on Polkadot, a multi-chain blockchain platform. It aims to provide a decentralized storage solution that is secure, reliable, and cost-effective. Crust allows users to store and retrieve data in a web3 manner, leveraging the power of blockchain technology to ensure data integrity and availability. Crust uses a combination of blockchain and decentralized storage technologies to achieve its goals. It offers incentives for users to contribute their storage space to the network, creating a distributed storage infrastructure that is resistant to censorship and single points of failure.