Real-time TPS
Chainspect
Hedera TPS is 4.25 tx/s, while Litentry TPS is coming soon
4.25 tx/s
Soon
Max TPS (100 blocks)
Chainspect
Hedera max TPS is 3,302 tx/s, while Litentry max TPS is coming soon
3,302 tx/s
Soon
Max Theoretical TPS
Chainspect
Hedera max theoretical TPS is 10,000 tx/s, while Litentry max theoretical TPS is coming soon
10,000 tx/s
Soon
Block Time
Chainspect
Hedera block time is 2s, while Litentry block time is coming soon
2s
Soon
Finality
Chainspect
Hedera finality is 7s, while Litentry finality is coming soon
7s
Soon
Type
Chainspect
Hedera is a layer 1 blockchain, while Litentry type is unknown
Layer 1 blockchain
Soon
Governance
Chainspect
Hedera governance is council, while Litentry governance is coming soon
Council
Soon
Launch Date
Chainspect
Hedera was launched on Sep 16, 2019, while the Litentry launch date is unknown
Sep 16, 2019
Soon
Other Comparisons
Hedera Comparisons
Litentry Comparisons
- Litentry vs Acala
- Litentry vs Ajuna Network
- Litentry vs Astar
- Litentry vs Bifrost
- Litentry vs Crust
- Litentry vs Frequency
- Litentry vs Hydration
- Litentry vs Integritee
- Litentry vs Litentry
- Litentry vs Mythos
- Litentry vs Moonbeam
- Litentry vs NeuroWeb
- Litentry vs peaq
- Litentry vs Pendulum
- Litentry vs Phala Network
- Litentry vs Robonomics
- Litentry vs Polkadot
- Litentry vs Zeitgeist
About Blockchains
About Hedera
Hedera operates as a public network employing the hashgraph consensus algorithm for rapid and secure transaction validation. Governed by a council of esteemed organizations, Hedera ensures consistent progress and decentralization. Distinguished by its high throughput, security, and fair transaction ordering, Hedera strives to establish a trust layer for the internet.
About Litentry
Litentry is a Decentralized Identity Aggregation protocol across multiple networks. It features a DID indexing mechanism and a Substrate-based credit computation network. The protocol provides a decentralized, interoperable identity aggregation service that mitigates the difficulty of resolving agnostic DID mechanisms.