
SOPH
Cours du Sophon
$0,035038
+$0,00030400
(+0,87 %)
Évolution du cours sur les dernières 24 heures

Avis de non-responsabilité
Le contenu social sur cette page (« Contenu »), y compris mais sans s’y limiter les tweets et les statistiques fournis par LunarCrush, est issu de tiers et fourni « tel quel » à des fins d’information uniquement. OKX ne garantit ni la qualité ni l’exactitude du Contenu, et le Contenu ne représente pas les opinions d’OKX. Il n’est pas destiné à dispenser (i) des conseils ou recommandations en matière d’investissement ; il ne doit pas (ii) non plus être considéré comme une invitation à acheter, à vendre ni à détenir des actifs numériques, ni (iii) comme des conseils financiers, comptables, juridiques ou fiscaux. Les actifs numériques (dont les stablecoins et les NFT) présentent un niveau de risque élevé, et leur valeur peut varier considérablement. Les cours et les performances des actifs numériques ne sont pas garantis et peuvent changer sans préavis.OKX ne fournit aucune recommandation en matière d’investissement ou d’actif. Évaluez attentivement votre situation financière pour déterminer si vous êtes en mesure de détenir ou de trader des actifs numériques. Demandez conseil auprès de votre expert juridique, fiscal ou en investissement pour toute question portant sur votre situation personnelle. Pour plus de détails, consultez nos Conditions d’utilisation et notre Avertissement sur les risques. En utilisant le site Web tiers (« SWT »), vous acceptez que toute utilisation du SWT soit soumise et régie par les conditions du SWT. Sauf mention écrite expresse, OKX et ses sociétés affiliées (« OKX ») ne sont en aucun cas associées au propriétaire ou à l’exploitant du SWT. Vous acceptez qu’OKX ne soit responsable d’aucune perte, d’aucun dommage et d’aucune autre conséquence découlant de votre utilisation du SWT. Sachez que l’utilisation d’un SWT peut déboucher sur la perte ou la baisse de vos actifs. Le produit peut être indisponible dans certaines juridictions.
Infos sur le marché du Sophon
Cap. boursière
La cap. boursière est calculée en multipliant l’offre en circulation d’un jeton par son dernier cours.
Cap. boursière = offre en circulation × dernier cours
Cap. boursière = offre en circulation × dernier cours
Approvisionnement en circulation
La quantité totale d’un jeton qui est accessible au public sur le marché.
Classement de cap. boursière
La position d’un jeton dans le classement par cap. boursière.
Sommet historique
Cours le plus élevé atteint par un jeton au cours de son historique de trading.
Minimum historique
Cours le plus bas atteint par un jeton au cours de son historique de trading.
Cap. boursière
$69,92 M
Approvisionnement en circulation
2 000 000 000 SOPH
20,00 % de
10 000 000 000 SOPH
Classement de cap. boursière
--
Audits
--
Pic sur 24 h
$0,035601
Creux sur 24 h
$0,033688
Sommet historique
$0,078000
-55,08 % (-$0,04296)
Dernière mise à jour : 3 juin 2025, (UTC+8)
Minimum historique
$0,0070000
+400,54 % (+$0,028038)
Dernière mise à jour : 28 mai 2025, (UTC+8)
Que ressentez-vous pour SOPH aujourd’hui ?
Donnez votre avis en ajoutant un pouce vers le haut si vous pensez que le cours Ethereum et la valeur Ethereum sont en hausse, ou un pouce en bas si vous estimez que le prix Ethereum et le ETH / USD vont baisser. Suivez l’évolution Ethereum en temps réel et consultez le Ethereum cours dollar et le Ethereum cours euro pour anticiper les tendances du marché.
Votez pour voir les résultats
Flux de Sophon
Le contenu suivant provient de .

zagen 扎根 | Searching & Researching
Te souviens-tu de ces 140u que @AIxVC_Axelrod a mis en test pour $AXR ? Maintenant, cela a déjà atteint 170u, +20% en trois jours, c'est incroyable.
En regardant, les principaux profits proviennent de $MAMO et $SOPH, l'un approchant le double et l'autre à +70%.
J'ai rapidement ajouté quelques fonds pour atteindre 400u et voir, pour l'instant, AXR semble déjà plus performant que moi, je vais attendre de voir si la performance est stable avant d'ajouter davantage.
De plus, un point très impressionnant est que l'argent déposé arrive presque instantanément, ils disent que le retrait prend jusqu'à 12h, mais je n'ai pas encore testé. C'est presque du dépôt et retrait instantané, sans temps d'attente.


zagen 扎根 | Searching & Researching
Aujourd'hui, dans le groupe de @virtuals_io, tout le monde discute de la reprise du marché et des actifs préférés. Justement, je suis en train de tester en interne @AIxVC_Axelrod $AXR, je vais partager avec vous quelques avancées du produit.
En fait, l'expérience de toute la plateforme est presque celle d'un hedge fund dans l'acp : en entrant sur la plateforme, on vous pose une série de questions pour vous profiler.
On vous demande par exemple comment vous agiriez si vos actifs chutaient de 10 % en une journée, avec cinq options allant de faible à élevé selon votre tolérance au risque. Après avoir répondu, vous recevez une évaluation.
Par exemple, mon profil est celui d'un investisseur à risque moyen, puis on me donne la répartition correspondante entre le spot, les contrats et le rendement DeFi.
Ensuite, il suffit de déposer de l'argent, axr répartira automatiquement votre dépôt selon la répartition et effectuera des transactions. Hier, j'ai déposé 140u, et maintenant je vois que j'ai acheté du $MAMO sur base et du $WOJAK sur SOL.
Sur le côté droit de l'écran, vous pouvez voir les discussions entre les agents, c'est très intéressant, vous pouvez voir comment ces agents utilisent leurs avantages pour discuter étape par étape des décisions. J'ai remarqué qu'ils ont également donné des points de tp/sl clairs lors de l'achat de $MAMO.
Il est évident que la vision décrite par ACP se rapproche vraiment, et ce n'est pas juste du vent. Avec le marché qui se réchauffe et le BTC atteignant de nouveaux sommets, quelque chose de grand arrive vraiment !




19,84 k
44

Subli 🦇🔊
@stacy_muur est l'un des chercheurs CT les plus réguliers.
À lire absolument.

Stacy Muur
Nouveaux tokens brillants de 2025 :
• $INIT : 15,97 % de l'offre en circulation
• $HUMA : 17,33 % de l'offre en circulation
• $SOON : 17,6 % de l'offre en circulation
• $H : 18,25 % de l'offre en circulation
• $SOPH : 20 % de l'offre en circulation
• $NEWT : 21,5 % de l'offre en circulation
• $BERA : 23,8 % de l'offre en circulation
• $KAITO : 24,14 % de l'offre en circulation
• $CORN : 25 % de l'offre en circulation
• $HOME : 27,2 % de l'offre en circulation
• $IP : 28,5 % de l'offre en circulation
?

33,51 k
2

Stacy Muur
Nouveaux tokens brillants de 2025 :
• $INIT : 15,97 % de l'offre en circulation
• $HUMA : 17,33 % de l'offre en circulation
• $SOON : 17,6 % de l'offre en circulation
• $H : 18,25 % de l'offre en circulation
• $SOPH : 20 % de l'offre en circulation
• $NEWT : 21,5 % de l'offre en circulation
• $BERA : 23,8 % de l'offre en circulation
• $KAITO : 24,14 % de l'offre en circulation
• $CORN : 25 % de l'offre en circulation
• $HOME : 27,2 % de l'offre en circulation
• $IP : 28,5 % de l'offre en circulation
?
Afficher l’original
44,48 k
91
Convertir des USD en SOPH


Performance du cours de Sophon en USD
Le cours actuel de la crypto Sophon est de $0,035038. Au cours des 24 dernières heures, la crypto Sophon a a augmenté de +0,88 %. Son offre en circulation s’élève actuellement à 2 000 000 000 SOPH, et son offre maximale est de 10 000 000 000 SOPH, ce qui lui confère une capitalisation boursière totalement diluée de $69,92 M. Actuellement, le jeton Sophon occupe la 0e position dans le classement de la cap. boursière. Le cours de la paire Sophon/USD est mis à jour en temps réel.
Aujourd'hui
+$0,00030400
+0,87 %
7 jours
+$0,0034780
+11,02 %
30 jours
-$0,00884
-20,16 %
3 mois
+$0,028038
+400,54 %
Conversions de Sophon populaires
Dernière mise à jour : 16/07/2025 05:08
1 SOPH en USD | 0,034960 $ |
1 SOPH en EUR | 0,030135 € |
1 SOPH en PHP | 1,9878 ₱ |
1 SOPH en IDR | 568,92 Rp |
1 SOPH en GBP | 0,026116 £ |
1 SOPH en CAD | 0,047972 $ |
1 SOPH en AED | 0,12841 AED |
1 SOPH en VND | 913,75 ₫ |
À propos du Sophon (SOPH)
- Site web officiel
- Explorateur de blocs
À propos des sites Web tiers
À propos des sites Web tiers
En utilisant le site web tiers (« SWT »), vous acceptez que toute utilisation du SWT soit sujette aux conditions du SWT et gouvernée par celles-ci. Sauf mention écrite expresse, OKX et ses affiliés (« OKX ») ne sont en aucun cas associés au propriétaire ni à l’opérateur du SWT. Vous acceptez le fait qu’OKX ne soit pas responsable des pertes, dommages ni de toutes autres conséquences découlant de votre utilisation du SWT. Veuillez noter que l’utilisation d’un SWT peut entraîner une perte ou une diminution de vos actifs.
FAQ Sophon
Combien vaut 1 Sophon aujourd’hui ?
Actuellement, 1 Sophon vaut $0,035038. Vous recherchez des informations sur les mouvements de prix du token Sophon ? Vous êtes au bon endroit ! Découvrez les graphiques les plus récents sur le token Sophon et tradez de manière responsable avec OKX.
Qu'est-ce que la cryptomonnaie ?
Les cryptomonnaies, telles que les Sophon, sont des actifs numériques fonctionnant sur un registre public appelé blockchain. En savoir plus sur les jetons proposés sur OKX et leurs différents attributs, notamment le cours en direct et les graphiques en temps réel.
Quand la cryptomonnaie a-t-elle été inventée ?
En raison de la crise financière de 2008, l’intérêt porté à la finance décentralisée a explosé. Le Bitcoin offrait une solution novatrice en tant qu’actif numérique sécurisé sur un réseau décentralisé. De nombreux jetons tels que les Sophon ont également été créés depuis lors.
Le cours du Sophon va-t-il augmenter aujourd'hui ?
Consultez notre Page de prédiction des cours de Sophon pour prévoir les cours à venir et déterminer vos objectifs de cours.
Déclaration ESG
Les réglementations ESG (approche environnementale, sociale et de gouvernance) relatives aux actifs crypto visent à réduire leur impact environnemental (par exemple : l'extraction minière à forte intensité énergétique), à promouvoir la transparence et à garantir des pratiques de gouvernance éthiques afin d'aligner le secteur des cryptos sur des objectifs plus larges en matière de durabilité et de société. Ces réglementations encouragent le respect de normes qui atténuent les risques et favorisent la confiance dans les actifs numériques.
Détails de l’actif
Nom
OKCoin Europe Ltd
Identifiant de l’entité juridique concernée
54930069NLWEIGLHXU42
Nom de l’actif crypto
sophon
Mécanisme de consensus
sophon is present on the following networks: Arbitrum, Base, Binance Smart Chain, Ethereum, Polygon, Sophon.
Arbitrum is a Layer 2 solution on top of Ethereum that uses Optimistic Rollups to enhance scalability and reduce transaction costs. It assumes that transactions are valid by default and only verifies them if there's a challenge (optimistic): Core Components: • Sequencer: Orders transactions and creates batches for processing. • Bridge: Facilitates asset transfers between Arbitrum and Ethereum. • Fraud Proofs: Protect against invalid transactions through an interactive verification process. Verification Process: 1. Transaction Submission: Users submit transactions to the Arbitrum Sequencer, which orders and batches them. 2. State Commitment: These batches are submitted to Ethereum with a state commitment. 3. Challenge Period: Validators have a specific period to challenge the state if they suspect fraud. 4. Dispute Resolution: If a challenge occurs, the dispute is resolved through an iterative process to identify the fraudulent transaction. The final operation is executed on Ethereum to determine the correct state. 5. Rollback and Penalties: If fraud is proven, the state is rolled back, and the dishonest party is penalized. Security and Efficiency: The combination of the Sequencer, bridge, and interactive fraud proofs ensures that the system remains secure and efficient. By minimizing on-chain data and leveraging off-chain computations, Arbitrum can provide high throughput and low fees.
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.
The crypto-asset's Proof-of-Stake (PoS) consensus mechanism, introduced with The Merge in 2022, replaces mining with validator staking. Validators must stake at least 32 ETH every block a validator is randomly chosen to propose the next block. Once proposed the other validators verify the blocks integrity. The network operates on a slot and epoch system, where a new block is proposed every 12 seconds, and finalization occurs after two epochs (~12.8 minutes) using Casper-FFG. The Beacon Chain coordinates validators, while the fork-choice rule (LMD-GHOST) ensures the chain follows the heaviest accumulated validator votes. Validators earn rewards for proposing and verifying blocks, but face slashing for malicious behavior or inactivity. PoS aims to improve energy efficiency, security, and scalability, with future upgrades like Proto-Danksharding enhancing transaction efficiency.
Polygon, formerly known as Matic Network, is a Layer 2 scaling solution for Ethereum that employs a hybrid consensus mechanism. Here’s a detailed explanation of how Polygon achieves consensus: Core Concepts 1. Proof of Stake (PoS): Validator Selection: Validators on the Polygon network are selected based on the number of MATIC tokens they have staked. The more tokens staked, the higher the chance of being selected to validate transactions and produce new blocks. Delegation: Token holders who do not wish to run a validator node can delegate their MATIC tokens to validators. Delegators share in the rewards earned by validators. 2. Plasma Chains: Off-Chain Scaling: Plasma is a framework for creating child chains that operate alongside the main Ethereum chain. These child chains can process transactions off-chain and submit only the final state to the Ethereum main chain, significantly increasing throughput and reducing congestion. Fraud Proofs: Plasma uses a fraud-proof mechanism to ensure the security of off-chain transactions. If a fraudulent transaction is detected, it can be challenged and reverted. Consensus Process 3. Transaction Validation: Transactions are first validated by validators who have staked MATIC tokens. These validators confirm the validity of transactions and include them in blocks. 4. Block Production: Proposing and Voting: Validators propose new blocks based on their staked tokens and participate in a voting process to reach consensus on the next block. The block with the majority of votes is added to the blockchain. Checkpointing: Polygon uses periodic checkpointing, where snapshots of the Polygon sidechain are submitted to the Ethereum main chain. This process ensures the security and finality of transactions on the Polygon network. 5. Plasma Framework: Child Chains: Transactions can be processed on child chains created using the Plasma framework. These transactions are validated off-chain and only the final state is submitted to the Ethereum main chain. Fraud Proofs: If a fraudulent transaction occurs, it can be challenged within a certain period using fraud proofs. This mechanism ensures the integrity of off-chain transactions. Security and Economic Incentives 6. Incentives for Validators: Staking Rewards: Validators earn rewards for staking MATIC tokens and participating in the consensus process. These rewards are distributed in MATIC tokens and are proportional to the amount staked and the performance of the validator. Transaction Fees: Validators also earn a portion of the transaction fees paid by users. This provides an additional financial incentive to maintain the network’s integrity and efficiency. 7. Delegation: Shared Rewards: Delegators earn a share of the rewards earned by the validators they delegate to. This encourages more token holders to participate in securing the network by choosing reliable validators. 8. Economic Security: Slashing: Validators can be penalized for malicious behavior or failure to perform their duties. This penalty, known as slashing, involves the loss of a portion of their staked tokens, ensuring that validators act in the best interest of the network.
Mécanismes d’incitation et frais applicables
sophon is present on the following networks: Arbitrum, Base, Binance Smart Chain, Ethereum, Polygon, Sophon.
Arbitrum One, a Layer 2 scaling solution for Ethereum, employs several incentive mechanisms to ensure the security and integrity of transactions on its network. The key mechanisms include: 1. Validators and Sequencers: o Sequencers are responsible for ordering transactions and creating batches that are processed off-chain. They play a critical role in maintaining the efficiency and throughput of the network. o Validators monitor the sequencers' actions and ensure that transactions are processed correctly. Validators verify the state transitions and ensure that no invalid transactions are included in the batches. 2. Fraud Proofs: o Assumption of Validity: Transactions processed off-chain are assumed to be valid. This allows for quick transaction finality and high throughput. o Challenge Period: There is a predefined period during which anyone can challenge the validity of a transaction by submitting a fraud proof. This mechanism acts as a deterrent against malicious behavior. o Dispute Resolution: If a challenge is raised, an interactive verification process is initiated to pinpoint the exact step where fraud occurred. If the challenge is valid, the fraudulent transaction is reverted, and the dishonest actor is penalized. 3. Economic Incentives: o Rewards for Honest Behavior: Participants in the network, such as validators and sequencers, are incentivized through rewards for performing their duties honestly and efficiently. These rewards come from transaction fees and potentially other protocol incentives. o Penalties for Malicious Behavior: Participants who engage in dishonest behavior or submit invalid transactions are penalized. This can include slashing of staked tokens or other forms of economic penalties, which serve to discourage malicious actions. Fees on the Arbitrum One Blockchain 1. Transaction Fees: o Layer 2 Fees: Users pay fees for transactions processed on the Layer 2 network. These fees are typically lower than Ethereum mainnet fees due to the reduced computational load on the main chain. o Arbitrum Transaction Fee: A fee is charged for each transaction processed by the sequencer. This fee covers the cost of processing the transaction and ensuring its inclusion in a batch. 2. L1 Data Fees: o Posting Batches to Ethereum: Periodically, the state updates from the Layer 2 transactions are posted to the Ethereum mainnet as calldata. This involves a fee, known as the L1 data fee, which accounts for the gas required to publish these state updates on Ethereum. o Cost Sharing: Because transactions are batched, the fixed costs of posting state updates to Ethereum are spread across multiple transactions, making it more cost-effective for users.
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.
The crypto-asset's PoS system secures transactions through validator incentives and economic penalties. Validators stake at least 32 ETH and earn rewards for proposing blocks, attesting to valid ones, and participating in sync committees. Rewards are paid in newly issued ETH and transaction fees. Under EIP-1559, transaction fees consist of a base fee, which is burned to reduce supply, and an optional priority fee (tip) paid to validators. Validators face slashing if they act maliciously and incur penalties for inactivity. This system aims to increase security by aligning incentives while making the crypto-asset's fee structure more predictable and deflationary during high network activity.
Polygon uses a combination of Proof of Stake (PoS) and the Plasma framework to ensure network security, incentivize participation, and maintain transaction integrity. Incentive Mechanisms 1. Validators: Staking Rewards: Validators on Polygon secure the network by staking MATIC tokens. They are selected to validate transactions and produce new blocks based on the number of tokens they have staked. Validators earn rewards in the form of newly minted MATIC tokens and transaction fees for their services. Block Production: Validators are responsible for proposing and voting on new blocks. The selected validator proposes a block, and other validators verify and validate it. Validators are incentivized to act honestly and efficiently to earn rewards and avoid penalties. Checkpointing: Validators periodically submit checkpoints to the Ethereum main chain, ensuring the security and finality of transactions processed on Polygon. This provides an additional layer of security by leveraging Ethereum's robustness. 2. Delegators: Delegation: Token holders who do not wish to run a validator node can delegate their MATIC tokens to trusted validators. Delegators earn a portion of the rewards earned by the validators, incentivizing them to choose reliable and performant validators. Shared Rewards: Rewards earned by validators are shared with delegators, based on the proportion of tokens delegated. This system encourages widespread participation and enhances the network's decentralization. 3. Economic Security: Slashing: Validators can be penalized through a process called slashing if they engage in malicious behavior or fail to perform their duties correctly. This includes double-signing or going offline for extended periods. Slashing results in the loss of a portion of the staked tokens, acting as a strong deterrent against dishonest actions. Bond Requirements: Validators are required to bond a significant amount of MATIC tokens to participate in the consensus process, ensuring they have a vested interest in maintaining network security and integrity. Fees on the Polygon Blockchain 4. Transaction Fees: Low Fees: One of Polygon's main advantages is its low transaction fees compared to the Ethereum main chain. The fees are paid in MATIC tokens and are designed to be affordable to encourage high transaction throughput and user adoption. Dynamic Fees: Fees on Polygon can vary depending on network congestion and transaction complexity. However, they remain significantly lower than those on Ethereum, making Polygon an attractive option for users and developers. 5. Smart Contract Fees: Deployment and Execution Costs: Deploying and interacting with smart contracts on Polygon incurs fees based on the computational resources required. These fees are also paid in MATIC tokens and are much lower than on Ethereum, making it cost-effective for developers to build and maintain decentralized applications (dApps) on Polygon. 6. Plasma Framework: State Transfers and Withdrawals: The Plasma framework allows for off-chain processing of transactions, which are periodically batched and committed to the Ethereum main chain. Fees associated with these processes are also paid in MATIC tokens, and they help reduce the overall cost of using the network.
Début de la période à laquelle se rapporte la déclaration
2024-07-14
Fin de la période à laquelle se rapporte la déclaration
2025-07-14
Rapport sur l'énergie
Consommation énergétique
18778.39750 (kWh/a)
Sources de consommation d’énergie et méthodologies
The energy consumption of this asset is aggregated across multiple components:
For the calculation of energy consumptions, the so called 'bottom-up' approach is being used. The nodes are considered to be the central factor for the energy consumption of the network. These assumptions are made on the basis of empirical findings through the use of public information sites, open-source crawlers and crawlers developed in-house. The main determinants for estimating the hardware used within the network are the requirements for operating the client software. The energy consumption of the hardware devices was measured in certified test laboratories. When calculating the energy consumption, we used - if available - the Functionally Fungible Group Digital Token Identifier (FFG DTI) to determine all implementations of the asset of question in scope and we update the mappings regulary, 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.
To determine the energy consumption of a token, the energy consumption of the network(s) arbitrum, base, binance_smart_chain, ethereum, polygon 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.
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