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- ZKsync vs Avalanche
ZKsync vs Avalanche
ZKsync vs Avalanche Scalability
Real-time TPS (1H)
ZKsync has no data, while Avalanche TPS is 23.15 tx/s
Max TPS (100 blocks)
ZKsync has no data, while Avalanche max TPS is 122.7 tx/s
Max Theoretical TPS
ZKsync has no data, while Avalanche max theoretical TPS is 1,191 tx/s
Transaction Volume (1H)
ZKsync has no data, while Avalanche transaction volume is 83.3K txns
Block Time (1H)
ZKsync has no data, while Avalanche block time is 1.79s
Finality
ZKsync has no data, while Avalanche finality is 2s
Type
ZKsync has no data, while Avalanche is a layer 1 blockchain
Total Transactions
Neither ZKsync nor Avalanche have data for total transactions
Launch Date
ZKsync has no data, while Avalanche was launched on Sep 21, 2020
ZKsync vs Avalanche Decentralization
Nakamoto Coefficient
ZKsync has no data, while Avalanche Nakamoto Coefficient is 27
Validators/Miners
ZKsync has no data, while Avalanche has 909 validators
Stake/Hashrate
ZKsync has no data, while Avalanche stake is $6.632B
Consensus Mechanism
ZKsync has no data, while Avalanche is PoS
Governance
ZKsync has no data, while Avalanche governance is on-chain
ZKsync vs Avalanche Developer Activity New
Developers
ZKsync has no data, while Avalanche has 750 developers
Repos
ZKsync has no data, while Avalanche has 109 repos
Commits
ZKsync has no data, while Avalanche has 60,660 commits
Stars
ZKsync has no data, while Avalanche has 6,596 stars
Watchers
ZKsync has no data, while Avalanche has 1,286 watchers
Other Comparisons
ZKsync Comparisons
About Blockchains
About ZKsync
ZKsync is a Layer-2 scaling solution that makes transactions on Ethereum cheaper and faster by utilizing zero-knowledge rollups (zk-rollups) and zero-knowledge proofs (ZKPs).
About Avalanche
Avalanche emerges as a rapid, scalable blockchain platform facilitating the seamless creation and deployment of dApps. Distinguished by its unique consensus mechanism, it's particularly good for DeFi applications, allowing high throughput and nearly instant finality. Its architecture allows for a network of interconnected blockchains, each safeguarded by dynamic subsets of validators, ensuring scalability while maintaining speed, reliability, and security.