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- IoTeX vs Integritee
IoTeX vs Integritee
IoTeX vs Integritee Scalability
Real-time TPS
IoTeX TPS is 15X higher than Integritee TPS
Max TPS (100 blocks)
IoTeX max TPS is 58X higher than Integritee max TPS
Max Theoretical TPS
IoTeX max theoretical TPS is 1.33X higher than Integritee max theoretical TPS
Transaction Volume
IoTeX transaction volume is 15X higher than Integritee transaction volume
Block Time
IoTeX block time is 80.73% shorter than Integritee block time
Finality
IoTeX finality is 100% shorter than Integritee finality
Type
IoTeX is a layer 1 blockchain, while Integritee is a parachain
Launch Date
IoTeX was launched 3 years before Integritee
IoTeX vs Integritee Decentralization New
Nakamoto Coefficient
IoTeX Nakamoto Coefficient is 96.8% lower than Integritee Nakamoto Coefficient
Validators
IoTeX has 92.8% fewer validators than Integritee
Stake
IoTeX stake is 1.07X higher than Integritee stake
Consensus Mechanism
IoTeX is PoS, while Integritee is Nominated Proof of Stake
Governance
IoTeX and Integritee governance are both on-chain
IoTeX vs Integritee Real-Time TPS Chart
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Other Comparisons
IoTeX Comparisons
About Blockchains
About IoTeX
IoTeX is a blockchain platform designed specifically for the Internet of Things (IoT) industry. It aims to address the scalability, privacy, and security challenges associated with connecting billions of devices to the internet. IoTeX utilizes a unique architecture that combines blockchain, decentralized identity, and secure hardware to create a trusted and privacy-centric infrastructure for IoT applications. It offers lightweight and efficient consensus mechanisms, support for trusted computing environments, and privacy-preserving techniques such as zero-knowledge proofs.
About Integritee
Integritee is a blockchain project focused on providing privacy-preserving solutions for dApps and smart contracts. It aims to enable confidential computing on public blockchains, allowing sensitive data to be processed securely without compromising privacy. Integritee utilizes trusted execution environments (TEEs), such as Intel SGX, to create secure enclaves where data can be processed confidentially. This ensures that data remains encrypted and inaccessible to anyone, including the network validators or operators, while it is being processed. This idea opens up new possibilities for privacy-focused applications in finance, healthcare, and so on.