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- Stellar vs Crust
Stellar vs Crust Scalability
Real-time TPS
Stellar TPS is 186,172X higher than Crust TPS
Max TPS (100 blocks)
Stellar max TPS is 3,199X higher than Crust max TPS
Max Theoretical TPS
Stellar max theoretical TPS is 1.35X higher than Crust max theoretical TPS
Transaction Volume
Stellar transaction volume is 201,066X higher than Crust transaction volume
Block Time
Stellar block time is 58.45% shorter than Crust block time
Finality
Stellar finality is 100% shorter than Crust finality
Type
Stellar is a layer 1 blockchain, while Crust is a parachain
Launch Date
Stellar was launched 8 years before Crust
Stellar vs Crust Decentralization New
Nakamoto Coefficient
Stellar Nakamoto Coefficient is 98.27% lower than Crust Nakamoto Coefficient
Validators
Stellar has 85.16% fewer validators than Crust
Stake
Stellar has no data, while Crust stake is $2.947B
Consensus Mechanism
Stellar is Stellar Consensus Protocol, while Crust is Nominated Proof of Stake
Governance
Stellar and Crust governance are both on-chain
Stellar vs Crust Real-Time TPS Chart
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Other Comparisons
Stellar Comparisons
About Blockchains
About Stellar
Stellar empowers builders to unlock human and economic potential. It combines a powerful, decentralized blockchain network with a global ecosystem of innovators to create opportunities as borderless as ideas. It offers the tools to make a difference in the real world through new digital asset products and services that enhance access to the global financial system.
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.