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- Polygon vs Robonomics
Polygon vs Robonomics Scalability
Real-time TPS
Polygon TPS is 37.68 tx/s, while Robonomics has no data
Max TPS (100 blocks)
Polygon max TPS is 429.1 tx/s, while Robonomics has no data
Max Theoretical TPS
Polygon max theoretical TPS is 714.3 tx/s, while Robonomics has no data
Transaction Volume
Polygon transaction volume is 135,640 txns, while Robonomics has no data
Block Time
Polygon block time is 2.13s, while Robonomics has no data
Finality
Polygon finality is 5s, while Robonomics has no data
Type
Polygon is a sidechain, while Robonomics has no data
Launch Date
Polygon was launched on May 30, 2020, while the Robonomics has no data
Polygon vs Robonomics Decentralization New
Nakamoto Coefficient
Polygon Nakamoto Coefficient is 4, while Robonomics has no data
Validators/Miners
Polygon has 105 validators, while Robonomics has no data
Stake/Hashrate
Polygon stake is $809.8M, while Robonomics has no data
Consensus Mechanism
Polygon is PoS, while Robonomics has no data
Governance
Polygon governance is off-chain, while Robonomics has no data
Other Comparisons
Polygon Comparisons
About Blockchains
About Polygon
Polygon, formerly Matic Network, is a blockchain platform designed to establish a multi-chain system compatible with Ethereum. It employs a proof-of-stake consensus mechanism similar to Ethereum for on-chain transactions, with its native token being POL. Functioning as a "layer two" or "sidechain" scaling solution alongside Ethereum, Polygon facilitates quicker transactions and lower fees. Its inception aimed to tackle Ethereum's major challenges, including high fees, subpar user experience, and limited transaction throughput, aspiring to create an "Ethereum's internet of blockchains" or a multi-chain ecosystem of Ethereum-compatible blockchains.
About Robonomics
The creation and development of a platform that provides tools for working with the robot economy network (briefly - the Robonomics platform) will allow designers of new cities and industrial zones to build trust among the autonomous robots services, provide direct user access for ordering products from autonomous factories and services of urban sensor networks. This in turn will allow us to put in place a decentralized system that globally monitors the activities of cyber physical systems.