SSV
SSV

SSV Network 价格

$7.2240
-$0.69700
(-8.80%)
过去 24 小时的价格变化
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SSV Network 市场信息

市值
市值是通过流通总应量与最新价格相乘进行计算。市值 = 当前流通量 × 最新价
流通总量
目前该代币在市场流通的数量
市值排行
该资产的市值排名
历史最高价
该代币在交易历史中的最高价格
历史最低价
该代币在交易历史中的最低价格
市值
$5,113.73万
流通总量
7,085,673 SSV
12,221,804 SSV
的 57.97%
市值排行
--
审计方
CertiK
最后审计日期:2021年6月3日
24 小时最高
$7.9520
24 小时最低
$7.1160
历史最高价
$66.0300
-89.06% (-$58.8060)
最后更新日期:2024年3月25日
历史最低价
$6.3600
+13.58% (+$0.86400)
最后更新日期:2025年3月11日

SSV 计算器

USDUSD
SSVSSV

SSV Network 价格表现 (美元)

SSV Network 当前价格为 $7.2240。SSV Network 的价格在过去 24 小时内下跌了 -8.80%。目前,SSV Network 市值排名为第 0 名,实时市值为 $5,113.73万,流通供应量为 7,085,673 SSV,最大供应量为 12,221,804 SSV。我们会实时更新 SSV Network/USD 的价格。
今日
-$0.69700
-8.80%
7 天
-$0.47600
-6.19%
30 天
-$3.5660
-33.05%
3 个月
-$19.1360
-72.60%

关于 SSV Network (SSV)

3.3/5
Certik
3.5
2025/03/27
CyberScope
3.9
2025/03/28
TokenInsight
2.6
2023/07/12
此评级是欧易从不同来源收集的汇总评级,仅供一般参考。欧易不保证评级的质量或准确性。欧易无意提供 (i) 投资建议或推荐;(ii) 购买、出售或持有数字资产的要约或招揽;(iii) 财务、会计、法律或税务建议。包括稳定币和 NFT 的数字资产容易受到市场波动的影响,风险较高,波动较大,可能会贬值甚至变得一文不值。数字资产的价格和性能不受保证,且可能会发生变化,恕不另行通知。您的数字资产不受潜在损失保险的保障。 历史回报并不代表未来回报。欧易不保证任何回报、本金或利息的偿还。欧易不提供投资或资产建议。您应该根据自身的财务状况仔细考虑交易或持有数字资产是否适合您。具体情况请咨询您的专业法务、税务或投资人士。
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  • 关于第三方网站
    关于第三方网站
    通过使用第三方网站(“第三方网站”),您同意对第三方网站的任何使用均受第三方网站条款的约束和管辖。除非书面明确说明,否则 OKX 及其关联方(“OKX”)与第三方网站的所有者或运营商没有任何关联。您同意 OKX 对您使用第三方网站而产生的任何损失、损害和任何其他后果不承担任何责任。请注意,使用第三方网站可能会导致您的资产损失或贬值。

ssv.network (SSV) is a pioneering project that has emerged in the cryptocurrency space, aiming to cater to the evolving needs of users in the Ethereum ecosystem. Offering decentralized and secure ETH staking through Secret Shared Validator (SSV) technology, the network is poised to contribute to the advancement and maturation of the Ethereum ecosystem.

What is ssv.network

ssv.network is an open-source, decentralized ETH staking platform built on Secret Shared Validator (SSV) technology. It offers a unique infrastructure for splitting and distributing validator keys, known as Distributed Validator Technology (DVT). By splitting and distributing validator keys into multiple KeyShares, ssv.network enables Ethereum validators to operate across multiple non-trusting nodes.

Running an Ethereum validator on ssv.network brings numerous advantages to the network and stakeholders. It introduces active-active redundancy, ensuring the continuous operation of validators. Additionally, it enhances the security of validator keys, offering new levels of protection against potential threats. This technology benefits various participants, including the Ethereum network itself, staking pools, staking services, and individual solo stakers. 

The ssv.network team

The inception of ssv.network can be traced back to a research piece by the Ethereum Foundation, which laid the groundwork for its development. Subsequently, the BloxStaking team joined the initiative and successfully implemented the first Proof of Concept for SSV. This technology then evolved into the very first public implementation of SSV. 

How does ssv.network work

ssv.network operates by enabling the distributed operation of Ethereum validators through the splitting of the validator key. This key is divided among four or more non-trusting node instances, known as a multi-operator node. Each of these nodes is responsible for executing the validator's duties using the consensus mechanism. In essence, the validator key undergoes a transformation into a multisig construct governed by the consensus layer, ensuring a secure and decentralized validation process.

ssv.network’s native token: SSV

SSV is the native token of the ssv.network, playing a vital role in incentivizing and engaging the network's community and stakeholders. The token was launched in October 2021, coinciding with the peak of the bull market.

SSV tokenomics

SSV has a total supply of 11.01 million tokens, with a circulating supply of 10 million tokens. SSV does not have a maximum supply. Within the ssv.network ecosystem, SSV is used as payment for operators. Additionally, a portion of fees collected is allocated to the decentralized autonomous organization’s (DAO) treasury.

SSV use cases

The SSV token has two primary use cases: payments and governance. As a payment tool, SSV tokens are used by stakers to compensate operators who manage validators, ensuring the smooth operation of the network. In terms of governance, SSV token holders have the right to participate in decision-making processes by voting on proposals and even proposing changes themselves.

In addition to these main use cases, SSV tokens can also be utilized for trading, price speculation, or staking purposes. The versatility of the token allows users to explore different avenues within the SSV ecosystem and engage in activities that align with their preferences and trading strategies.

The future of ssv.network

The future of ssv.network looks promising, as it offers a groundbreaking and secure method of splitting Ethereum validator keys among non-trusting nodes. The ability for nodes to independently carry out their validator duties without the need for trust among them is a significant advancement. Even if some nodes are offline, it will not impact the performance of the validator. This innovative approach provides a reliable, secure, and fully decentralized solution for the network, setting the stage for further growth and adoption in the future.

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SSV Network 常见问题

SSV Network 今天值多少钱?
目前,一个 SSV Network 价值是 $7.2240。如果您想要了解 SSV Network 价格走势与行情洞察,那么这里就是您的最佳选择。在欧易探索最新的 SSV Network 图表,进行专业交易。
数字货币是什么?
数字货币,例如 SSV Network 是在称为区块链的公共分类账上运行的数字资产。了解有关欧易上提供的数字货币和代币及其不同属性的更多信息,其中包括实时价格和实时图表。
数字货币是什么时候开始的?
由于 2008 年金融危机,人们对去中心化金融的兴趣激增。比特币作为去中心化网络上的安全数字资产提供了一种新颖的解决方案。从那时起,许多其他代币 (例如 SSV Network) 也诞生了。
SSV Network 的价格今天会涨吗?
查看 SSV Network 价格预测页面,预测未来价格,帮助您设定价格目标。

ESG 披露

ESG (环境、社会和治理) 法规针对数字资产,旨在应对其环境影响 (如高能耗挖矿)、提升透明度,并确保合规的治理实践。使数字代币行业与更广泛的可持续发展和社会目标保持一致。这些法规鼓励遵循相关标准,以降低风险并提高数字资产的可信度。
资产详情
名称
OKcoin Europe LTD
相关法人机构识别编码
54930069NLWEIGLHXU42
代币名称
ssv.network
共识机制
The Ethereum network uses a Proof-of-Stake Consensus Mechanism to validate new transactions on the blockchain. Core Components 1. Validators: Validators are responsible for proposing and validating new blocks. To become a validator, a user must deposit (stake) 32 ETH into a smart contract. This stake acts as collateral and can be slashed if the validator behaves dishonestly. 2. Beacon Chain: The Beacon Chain is the backbone of Ethereum 2.0. It coordinates the network of validators and manages the consensus protocol. It is responsible for creating new blocks, organizing validators into committees, and implementing the finality of blocks. Consensus Process 1. Block Proposal: Validators are chosen randomly to propose new blocks. This selection is based on a weighted random function (WRF), where the weight is determined by the amount of ETH staked. 2. Attestation: Validators not proposing a block participate in attestation. They attest to the validity of the proposed block by voting for it. Attestations are then aggregated to form a single proof of the block’s validity. 3. Committees: Validators are organized into committees to streamline the validation process. Each committee is responsible for validating blocks within a specific shard or the Beacon Chain itself. This ensures decentralization and security, as a smaller group of validators can quickly reach consensus. 4. Finality: Ethereum 2.0 uses a mechanism called Casper FFG (Friendly Finality Gadget) to achieve finality. Finality means that a block and its transactions are considered irreversible and confirmed. Validators vote on the finality of blocks, and once a supermajority is reached, the block is finalized. 5. Incentives and Penalties: Validators earn rewards for participating in the network, including proposing blocks and attesting to their validity. Conversely, validators can be penalized (slashed) for malicious behavior, such as double-signing or being offline for extended periods. This ensures honest participation and network security.
奖励机制与相应费用
Ethereum, particularly after transitioning to Ethereum 2.0 (Eth2), employs a Proof-of-Stake (PoS) consensus mechanism to secure its network. The incentives for validators and the fee structures play crucial roles in maintaining the security and efficiency of the blockchain. Incentive Mechanisms 1. Staking Rewards: Validator Rewards: Validators are essential to the PoS mechanism. They are responsible for proposing and validating new blocks. To participate, they must stake a minimum of 32 ETH. In return, they earn rewards for their contributions, which are paid out in ETH. These rewards are a combination of newly minted ETH and transaction fees from the blocks they validate. Reward Rate: The reward rate for validators is dynamic and depends on the total amount of ETH staked in the network. The more ETH staked, the lower the individual reward rate, and vice versa. This is designed to balance the network's security and the incentive to participate. 2. Transaction Fees: Base Fee: After the implementation of Ethereum Improvement Proposal (EIP) 1559, the transaction fee model changed to include a base fee that is burned (i.e., removed from circulation). This base fee adjusts dynamically based on network demand, aiming to stabilize transaction fees and reduce volatility. Priority Fee (Tip): Users can also include a priority fee (tip) to incentivize validators to include their transactions more quickly. This fee goes directly to the validators, providing them with an additional incentive to process transactions efficiently. 3. Penalties for Malicious Behavior: Slashing: Validators face penalties (slashing) if they engage in malicious behavior, such as double-signing or validating incorrect information. Slashing results in the loss of a portion of their staked ETH, discouraging bad actors and ensuring that validators act in the network's best interest. Inactivity Penalties: Validators also face penalties for prolonged inactivity. This ensures that validators remain active and engaged in maintaining the network's security and operation. Fees Applicable on the Ethereum Blockchain 1. Gas Fees: Calculation: Gas fees are calculated based on the computational complexity of transactions and smart contract executions. Each operation on the Ethereum Virtual Machine (EVM) has an associated gas cost. Dynamic Adjustment: The base fee introduced by EIP-1559 dynamically adjusts according to network congestion. When demand for block space is high, the base fee increases, and when demand is low, it decreases. 2. Smart Contract Fees: Deployment and Interaction: Deploying a smart contract on Ethereum involves paying gas fees proportional to the contract's complexity and size. Interacting with deployed smart contracts (e.g., executing functions, transferring tokens) also incurs gas fees. Optimizations: Developers are incentivized to optimize their smart contracts to minimize gas usage, making transactions more cost-effective for users. 3. Asset Transfer Fees: Token Transfers: Transferring ERC-20 or other token standards involves gas fees. These fees vary based on the token's contract implementation and the current network demand.
信息披露时间段的开始日期
2024-03-26
信息披露时间段的结束日期
2025-03-26
能源报告
能源消耗
448.36327 (kWh/a)
能源消耗来源与评估体系
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) ethereum is calculated first. Based on the crypto asset's gas consumption per network, the share of the total consumption of the respective network that is assigned to this asset is defined. 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.
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SSV 计算器

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