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Chainbase
C
Chainbase driver världens största hyperdata-nätverk, som integrerar fragmenterad blockchain-data till enhetliga, AI-redo dataset för smidig användning i applikationer. Dess inhemska C-token driver ekosystemkoordination, möjliggör betalningar för dataåtkomst, staking för säkerhet och styrningsbeslut. Denna infrastruktur stödjer utvecklare som bygger AI-verktyg, DeFi-analys och cross-chain-appar med effektiv, verifierbar data.
Kurs*: ...
Förändring (24H)*: ...
Marknadsvärde*:
Lansering: 2025
Nätverk: Chainbase Network
Protokoll: CometBFT

* Ej realtidsdata.

* Denna beskrivning av kryptotillgången har inte godkänts av någon behörig myndighet inom EU. Utgivaren av kryptotillgången är ensam ansvarig för innehållet i denna beskrivning av kryptotillgången.

Bakgrundshistoria

Chainbase uppstod för att tackla blockchain-datafragmentering, skapa ett delat datalager för autonoma agenter, protokoll och människor i AGI-ekonomin. Inspirerat av behovet av AI-kompatibel blockchain-data utvecklade det Manuscript-protokollet och fyrlagers-arkitektur för standardiserad bearbetning. Projektet har vuxit genom att indexera över 200 blockchains och betjäna mer än 35 000 utvecklare.

Exempel

Utvecklare använder Manuscripts för att transformera rådata, som att filtrera token-överföringar eller upptäcka bedrägliga wallet-mönster, och tjänar belöningar varje gång andra kommer åt deras arbete. Över 10 000 projekt utnyttjar nätverket för MEV-infrastruktur, L2-utforskare, agentprotokoll och onchain-analys. AI-agenter och cross-chain-wallets hämtar strukturerad multi-chain-data i realtid för beslutsfattande och operationer.

Roliga fakta

Nätverket har bearbetat över 500 miljarder dataanrop över 200+ blockchains, vilket visar massiv skala. Dess dual-staking kombinerar C-tokens med ETH via EigenLayer för robust säkerhet och omedelbar finalitet genom CometBFT. Tokenomics allokerar 80% till operatörer, 15% till utvecklare och 5% till avgiftsbränning från ett 1B cirkulerande utbud.

Höjdpunkter från communityn

En livlig community med över 35 000 utvecklare bidrar med Manuscripts och deltar i staking eller delegering för att säkra nätverket. Token-innehavare engagerar sig i styrningsröstning om uppgraderingar och incitament, främjar en decentraliserad DAO tillsammans med en stödjande Foundation. Sociala kanaler surrar av aktivitet kring dataverktyg, AI-integrationer och ekosystemtillväxt.

Vad för C unikt?

Till skillnad från skrivskyddade indexerare som The Graph erbjuder det end-to-end-bearbetning från rådata till AI-redo format via Manuscript-protokollet. Fyrlagers-arkitekturen med dual-chain-design—Cosmos för koordination och EigenLayer för Ethereum-säkerhet—säkerställer hög genomströmning och decentralisering. Utvecklare tjänar pengar på anpassade dataskript medan användare får tillgång till verifierad on-chain och off-chain-info med ZKPs.

Framtidsvision

Chainbase strävar efter att bli väsentlig infrastruktur för den öppna AGI-ekonomin, expandera sitt hyperdata-nätverk för DataFi och onchain-intelligens. Planer inkluderar bredare multi-chain-stöd på Base och BNB Smart Chain, med 65% av C-utbudet som driver ekosystembelöningar och tillväxt. Det föreställer sig en kunskapsdriven värld där AI-drivna krypto-appar frodas på komponerbara, autonoma datalager.
ESG-information +

Energiförbrukning: 11.48768 kWh/a | Förnybar energi: 0%

ESG-reglering (miljö, socialt ansvar och bolagsstyrning) för kryptotillgångar syftar till att hantera deras miljöpåverkan (t.ex. energiintensiv mining), främja transparens och säkerställa etiska styrningsrutiner för att anpassa kryptobranschen till bredare hållbarhets- och samhällsmål. Dessa regleringar uppmuntrar efterlevnad av standarder som minskar risker och främjar förtroende för digitala tillgångar.

Namn Coinmotion Ltd
Relevant identifierare för juridisk person 2135881-0
Namn på kryptotillgången chainbase
Konsensusmekanism chainbase is present on the following networks: Base, Binance Smart Chain. Base is a Layer-2 (L2) solution on Ethereum that was introduced by Coinbase and developed using Optimism's OP Stack. L2 transactions do not have their own consensus mechanism and are only validated by the execution clients. The so-called sequencer regularly bundles stacks of L2 transactions and publishes them on the L1 network, i.e. Ethereum. Ethereum's consensus mechanism (Proof-of-stake) thus indirectly secures all L2 transactions as soon as they are written to L1. Binance Smart Chain (BSC) uses a hybrid consensus mechanism called Proof of Staked Authority (PoSA), which combines elements of Delegated Proof of Stake (DPoS) and Proof of Authority (PoA). This method ensures fast block times and low fees while maintaining a level of decentralization and security. Core Components 1. Validators (so-called “Cabinet Members”): Validators on BSC are responsible for producing new blocks, validating transactions, and maintaining the network’s security. To become a validator, an entity must stake a significant amount of BNB (Binance Coin). Validators are selected through staking and voting by token holders. There are 21 active validators at any given time, rotating to ensure decentralization and security. 2. Delegators: Token holders who do not wish to run validator nodes can delegate their BNB tokens to validators. This delegation helps validators increase their stake and improves their chances of being selected to produce blocks. Delegators earn a share of the rewards that validators receive, incentivizing broad participation in network security. 3. Candidates: Candidates are nodes that have staked the required amount of BNB and are in the pool waiting to become validators. They are essentially potential validators who are not currently active but can be elected to the validator set through community voting. Candidates play a crucial role in ensuring there is always a sufficient pool of nodes ready to take on validation tasks, thus maintaining network resilience and decentralization. Consensus Process 4. Validator Selection: Validators are chosen based on the amount of BNB staked and votes received from delegators. The more BNB staked and votes received, the higher the chance of being selected to validate transactions and produce new blocks. The selection process involves both the current validators and the pool of candidates, ensuring a dynamic and secure rotation of nodes. 5. Block Production: The selected validators take turns producing blocks in a PoA-like manner, ensuring that blocks are generated quickly and efficiently. Validators validate transactions, add them to new blocks, and broadcast these blocks to the network. 6. Transaction Finality: BSC achieves fast block times of around 3 seconds and quick transaction finality. This is achieved through the efficient PoSA mechanism that allows validators to rapidly reach consensus. Security and Economic Incentives 7. Staking: Validators are required to stake a substantial amount of BNB, which acts as collateral to ensure their honest behavior. This staked amount can be slashed if validators act maliciously. Staking incentivizes validators to act in the network's best interest to avoid losing their staked BNB. 8. Delegation and Rewards: Delegators earn rewards proportional to their stake in validators. This incentivizes them to choose reliable validators and participate in the network’s security. Validators and delegators share transaction fees as rewards, which provides continuous economic incentives to maintain network security and performance. 9. Transaction Fees: BSC employs low transaction fees, paid in BNB, making it cost-effective for users. These fees are collected by validators as part of their rewards, further incentivizing them to validate transactions accurately and efficiently.
Incitamentsmekanismer och tillämpliga avgifter chainbase is present on the following networks: Base, Binance Smart Chain. Base is a Layer-2 (L2) solution on Ethereum that uses optimistic rollups provided by the OP Stack on which it was developed. Transaction on base are bundled by a, so called, sequencer and the result is regularly submitted as an Layer-1 (L1) transactions. This way many L2 transactions get combined into a single L1 transaction. This lowers the average transaction cost per transaction, because many L2 transactions together fund the transaction cost for the single L1 transaction. This creates incentives to use base rather than the L1, i.e. Ethereum, itself. To get crypto-assets in and out of base, a special smart contract on Ethereum is used. Since there is no consensus mechanism on L2 an additional mechanism ensures that only existing funds can be withdrawn from L2. When a user wants to withdraw funds, that user needs to submit a withdrawal request on L1. If this request remains unchallenged for a period of time the funds can be withdrawn. During this time period any other user can submit a fault proof, which will start a dispute resolution process. This process is designed with economic incentives for correct behaviour. Binance Smart Chain (BSC) uses the Proof of Staked Authority (PoSA) consensus mechanism to ensure network security and incentivize participation from validators and delegators. Incentive Mechanisms 1. Validators: Staking Rewards: Validators must stake a significant amount of BNB to participate in the consensus process. They earn rewards in the form of transaction fees and block rewards. Selection Process: Validators are selected based on the amount of BNB staked and the votes received from delegators. The more BNB staked and votes received, the higher the chances of being selected to validate transactions and produce new blocks. 2. Delegators: Delegated Staking: Token holders can delegate their BNB to validators. This delegation increases the validator's total stake and improves their chances of being selected to produce blocks. Shared Rewards: Delegators earn a portion of the rewards that validators receive. This incentivizes token holders to participate in the network’s security and decentralization by choosing reliable validators. 3. Candidates: Pool of Potential Validators: Candidates are nodes that have staked the required amount of BNB and are waiting to become active validators. They ensure that there is always a sufficient pool of nodes ready to take on validation tasks, maintaining network resilience. 4. Economic Security: Slashing: Validators can be penalized for malicious behavior or failure to perform their duties. Penalties include slashing a portion of their staked tokens, ensuring that validators act in the best interest of the network. Opportunity Cost: Staking requires validators and delegators to lock up their BNB tokens, providing an economic incentive to act honestly to avoid losing their staked assets. Fees on the Binance Smart Chain 5. Transaction Fees: Low Fees: BSC is known for its low transaction fees compared to other blockchain networks. These fees are paid in BNB and are essential for maintaining network operations and compensating validators. Dynamic Fee Structure: Transaction fees can vary based on network congestion and the complexity of the transactions. However, BSC ensures that fees remain significantly lower than those on the Ethereum mainnet. 6. Block Rewards: Incentivizing Validators: Validators earn block rewards in addition to transaction fees. These rewards are distributed to validators for their role in maintaining the network and processing transactions. 7. Cross-Chain Fees: Interoperability Costs: BSC supports cross-chain compatibility, allowing assets to be transferred between Binance Chain and Binance Smart Chain. These cross-chain operations incur minimal fees, facilitating seamless asset transfers and improving user experience. 8. Smart Contract Fees: Deployment and Execution Costs: Deploying and interacting with smart contracts on BSC involves paying fees based on the computational resources required. These fees are also paid in BNB and are designed to be cost-effective, encouraging developers to build on the BSC platform.
Periodens början 2025-02-09
Periodens slut 2026-02-09
Energiförbrukning 11.48768 (kWh/a)
Energiförbrukningsresurser och metoder The energy consumption of this asset is aggregated across multiple components: To determine the energy consumption of a token, the energy consumption of the network(s) base, binance_smart_chain is calculated first. For the energy consumption of the token, a fraction of the energy consumption of the network is attributed to the token, which is determined based on the activity of the crypto-asset within the network. When calculating the energy consumption, the Functionally Fungible Group Digital Token Identifier (FFG DTI) is used - if available - to determine all implementations of the asset in scope. The mappings are updated regularly, based on data of the Digital Token Identifier Foundation. The information regarding the hardware used and the number of participants in the network is based on assumptions that are verified with best effort using empirical data. In general, participants are assumed to be largely economically rational. As a precautionary principle, we make assumptions on the conservative side when in doubt, i.e. making higher estimates for the adverse impacts.
Förnybar energiförbrukning 0%
Energiintensitet 0 (kWh)
Scope 1 DLT växthusgasutsläpp - Kontrollerade 0 (tCO2e/a)
Scope 2 DLT växthusgasutsläpp - Inköpta 0 (tCO2e/a)
Växthusgasintensitet 0 (kgCO2e)
Viktiga energikällor och metoder
Viktiga växthusgaskällor och metoder

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