Avalanche价格

(新加坡元)
S$36.38
-S$3.485 (-8.74%)
SGD
无法搜索到该币种。请检查您的拼写或重新搜索币种名称。
市值
S$153.62亿 #12
流通总量
4.22亿 / 7.2亿
历史最高价
S$190.16
24 小时成交量
S$19.67亿
4.0 / 5
AVAXAVAX
SGDSGD

了解Avalanche

AVAX 是 Avalanche 的原生加密货币,驱动着全球最快且最具可扩展性的区块链生态系统之一。AVAX 专为去中心化应用(DApp)、去中心化金融(DeFi)以及现实世界资产的代币化而设计,能够以低费用和接近即时的最终确认实现无缝交易。它在 Avalanche 的生态系统中扮演着关键角色,支持质押、治理以及跨其互联的可定制 Layer 1 区块链网络的支付功能。无论是探索 DeFi 机会、NFTs,还是企业应用场景,AVAX 都是解锁 Avalanche 前沿技术全部潜力的核心。对于寻求高效与创新的用户来说,AVAX 是构建和参与区块链驱动未来的门户。
本内容由 AI 生成
RWA
Layer 1
CertiK
最后审计日期:2021年6月26日 (UTC+8)

免责声明

本页面的社交内容 (包括由 LunarCrush 提供支持的推文和社交统计数据) 均来自第三方,并按“原样”提供,仅供参考。本文内容不代表对任何数字货币或投资的认可或推荐,也未获得欧易授权或撰写,也不代表我们的观点。我们不保证所显示的用户生成内容的准确性或可靠性。本文不应被解释为财务或投资建议。在做出投资决策之前,评估您的投资经验、财务状况、投资目标和风险承受能力并咨询独立财务顾问至关重要。过去的表现并不代表未来的结果。您的投资价值可能会波动,您可能无法收回您投资的金额。您对自己的投资选择自行承担全部责任,我们对因使用本信息而造成的任何损失或损害不承担任何责任。提供外部网站链接是为了用户方便,并不意味着对其内容的认可或控制。

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Avalanche 的价格表现

近 1 年
-3.62%
S$37.75
3 个月
+58.36%
S$22.98
30 天
+12.61%
S$32.31
7 天
-17.11%
S$43.90

Avalanche 社交媒体动态

TOP 7 ICO | Crypto News & Analytics
TOP 7 ICO | Crypto News & Analytics
Securitize 将其 ACRED 扩展到 Sei $SEI 通过 Wormhole $W @wormhole 的安全消息协议确保 #ACRED 持有者可以在 @SeiNetwork 和其他支持的网络之间转移代币,包括 Ethereum、@avax、@0xPolygon、@solana 和 @inkonchain 由 @krakenfx 提供支持 #Sei #Wormhole #Securitize
Wormhole
Wormhole
Securitize 代币化的阿波罗多元化信贷基金 $ACRED 由 @apolloglobal 提供(8400 亿美元的资产管理规模)现已在 @SeiNetwork 上可用 由 @Securitize 进行代币化,@Wormhole 提供互操作性
Rand
Rand
Plasma 在过去 24 小时内的稳定币流入量超过 10 亿美元,打破了记录,超越了 #Ethereum。 Plasma 是一个 L1 区块链,旨在提供更便宜和更快速的稳定币支付。 关注这里 👀
World of Dypians
World of Dypians
💥 100个合作伙伴。无数的合作。三年的建设。 从区块链到生态系统,从社区到创新者,每一步都加强了对$WOD的愿景。 这一里程碑证明了我们对Web3游戏的增长、实用性和长期影响的承诺。 为下一个100个干杯 🥂

快捷导航

Avalanche购买指南
开始入门数字货币可能会让人觉得不知所措,但学习如何购买比您想象的要简单。
预测 Avalanche 的价格走势
Avalanche 未来几年值多少?看看社区热议,参与讨论一波预测。
查看 Avalanche 的价格历史
追踪 Avalanche 代币的价格历史,实时关注持仓表现。您可以通过下方列表快捷查看开盘价、收盘价、最高价、最低价及交易量。
持有 Avalanche 仅需三步

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选择要购买的代币

欧易新手学院:Avalanche 专题

Avalanche 财库支持者:AVAX One 如何革新加密财库
引言:Avalanche 财库支持者与 AVAX One 纳斯达克上市公司 AgriFORCE Growing Systems 通过重新品牌化为 AVAX One ,在其业务战略上实现了突破性的转型。这一变革使 AVAX One 成为首个专注于积累 Avalanche (AVAX) 代币 的上市公司,标志着加密财库领域的一个重要里程碑。通过利用 Avalanche 的尖端区块链技术,AVAX On
Avalanche、ETF、Bitwise:关于加密货币下一次重大变革你需要知道的事
Avalanche、ETF 和 Bitwise 简介 加密货币ETF(交易所交易基金)已成为一种变革性的投资工具,为零售和机构投资者简化了数字资产的获取方式。在这一领域的领先创新者之一是 Bitwise Asset Management ,该公司已提交了一项基于其 Bitwise 10 Crypto Index Fund 的ETF申请。该基金包括主要的加密货币,如 Avalanche (AVAX)
Avalanche TVL 区块链:推动其 20 亿美元 DeFi 增长的关键洞察
Avalanche TVL 区块链及其 DeFi 增长简介 Avalanche 已迅速成为去中心化金融(DeFi)领域的领先区块链网络,达成了超过 20 亿美元的总锁仓价值(TVL)里程碑。这一成就突显了该网络的创新生态系统、可扩展性以及开发者和用户的日益采用。在本文中,我们将探讨推动 Avalanche TVL 增长的因素、其在 DeFi 生态系统中的角色,以及在进一步扩展过程中面临的挑战。 什
欧易提供 60 余种欧元交易对,助您优化资产的多元配置

Avalanche 常见问题

AVAX 是 Avalanche 区块链网络的原生代币。Avalanche 网络是一个全新的区块链第 1 层网络 (layer 1),支持去中心化应用程序和智能合约的创建。
AVAX 代币的最大供应量为 7.2 亿枚。截止目前,大约有 2.95 亿枚 AVAX 代币在流通中。
购买 AVAX 代币并从持币中获得被动收入的最简单方法是通过 欧易赚币,欧易赚币提供各种低风险储蓄和股权认购计划,有定期和活期可供选择。
目前,一个 Avalanche 价值是 S$36.38。如果您想要了解 Avalanche 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 Avalanche 图表,进行专业交易。
数字货币,例如 Avalanche 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。
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 Avalanche) 也诞生了。
查看 Avalanche 价格预测页面,预测未来价格,帮助您设定价格目标。

深度了解Avalanche

Avalanche 是一个第 1 层去中心化的区块链网络,为支持复杂的应用程序和自定义区块链功能而建立。Avalanche 致力于成为一个领先的以太坊替代品,与其他流行的链如 Solana 和 Cardano 竞争“以太坊杀手”的称号。


Avalanche 每秒可以处理多达 6,500 笔交易,由于其可扩展的架构,GAS 费用相对较低。Avalanche 托管了各种各样的去中心化应用程序(DApp),这导致了 2021 年底创纪录的总价值锁定(TVL) 120 亿美元。与此同时,Avalanche 区块链上丰富的 DApp 增加了对 AVAX 代币的需求,并对数字货币的价格产生了有利的影响。


Avalanche 还采用了以太坊虚拟机(EVM),这使开发人员更容易、更快地将基于以太坊的智能合约和应用程序移植和部署到 Avalanche 网络。有了大众化的用户体验,新用户可以轻松快速地登上 Avalanche 区块链。


AVAX 是 Avalanche 的原生代币,在完成 Avalanche 网络上的交易时需要支付必要的 gas 费。此外,AVAX 代币持有者可以就协议治理问题进行投票,并在该区块链的未来发展中拥有发言权。


AVAX 价格和经济模型

Avalanche 的最大代币供应量为 7.2 亿枚,目前流通中的 AVAX 代币约为 2.95 亿枚。


2021 年 11 月 21 日,AVAX 创下了 146 美元的历史新高。这代表了一个新的和创新的 DeFi 平台选择 Avalanche 区块链来承载他们的应用程序的时期。除此之外,Avalanche 在 2021 年的牛市中表现出色。


在一系列的私募(ICO)和公募过程中,Avalanche 区块链一共铸造了 3.6 亿枚 AVAX 代币并出售给早期投资者,筹集了 5,500 万美元。它们的分配方式如下:Avalanche 创始人和项目获得 19.3%,投资者获得 16%,预挖掘奖励和社区空投获得 64.7%。未来几十年,AVAX 代币将通过股权奖励持续分发给持有者。此外,Avalanche 的供应时间表概述了数年内一致的代币解锁。


创始人团队

Avalanche 区块链网络是由 Ava 实验室创建的。Emin Gün Sirer,一位著名的计算机科学家,领导着 Ava 实验室。Gün Sirer 是康奈尔大学副教授,以其对点对点系统和计算机网络的贡献而闻名。他还是比特币规模化解决方案的先驱。拥有计算机科学博士学位的 Kevin Sekniqi 和 Maofan Yin 是 Ava 实验室团队的另一名高级成员。


Avalanche 的独特之处在哪里?

Avalanche 区块链有一个独特的框架,使其与竞争的链区别开来。它由几个区块链组成,每个区块链都有不同的目的和职责。


1)Avalanche 交换链

Avalanche 的 X-链使用有向无环图构建,专门用于发送和接收货币。通过隔离这些交易,Avalanche 网络减少了拥塞,实现了更快、更低成本的支付。


2)Avalanche 平台链

Avalanche 公司的 P-链被用于质押和验证。在 P-链上,Avalanche 用户可以成为验证者以获得赌注奖励。


3)Avalanche 合同链

Avalanche 的 C-链是完全兼容智能合约的执行层,可以支持 DApp。C-链是所有 Avalanche DeFi 协议和 NFT 功能的大本营。

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
Avalanche AVAX
共识机制
Avalanche AVAX is present on the following networks: Avalanche, Avalanche X Chain. The Avalanche blockchain network employs a unique Proof-of-Stake consensus mechanism called Avalanche Consensus, which involves three interconnected protocols: Snowball, Snowflake, and Avalanche. Avalanche Consensus Process 1. Snowball Protocol: o Random Sampling: Each validator randomly samples a small, constant-sized subset of other validators. Repeated Polling: Validators repeatedly poll the sampled validators to determine the preferred transaction. Confidence Counters: Validators maintain confidence counters for each transaction, incrementing them each time a sampled validator supports their preferred transaction. Decision Threshold: Once the confidence counter exceeds a pre-defined threshold, the transaction is considered accepted. 2. Snowflake Protocol: Binary Decision: Enhances the Snowball protocol by incorporating a binary decision process. Validators decide between two conflicting transactions. Binary Confidence: Confidence counters are used to track the preferred binary decision. Finality: When a binary decision reaches a certain confidence level, it becomes final. 3. Avalanche Protocol: DAG Structure: Uses a Directed Acyclic Graph (DAG) structure to organize transactions, allowing for parallel processing and higher throughput. Transaction Ordering: Transactions are added to the DAG based on their dependencies, ensuring a consistent order. Consensus on DAG: While most Proof-of-Stake Protocols use a Byzantine Fault Tolerant (BFT) consensus, Avalanche uses the Avalanche Consensus, Validators reach consensus on the structure and contents of the DAG through repeated Snowball and Snowflake. The Cronos POS Chain operates as a Layer-0 blockchain within the Cosmos ecosystem, utilizing the Tendermint Byzantine Fault Tolerant (BFT) consensus engine. It employs a Delegated Proof-of-Stake (DPoS) model, where the top 100 validators by total staked CRO tokens form the active set responsible for block production and network security.
奖励机制与相应费用
Avalanche AVAX is present on the following networks: Avalanche, Avalanche X Chain. Avalanche uses a consensus mechanism known as Avalanche Consensus, which relies on a combination of validators, staking, and a novel approach to consensus to ensure the network's security and integrity. Validators: Staking: Validators on the Avalanche network are required to stake AVAX tokens. The amount staked influences their probability of being selected to propose or validate new blocks. Rewards: Validators earn rewards for their participation in the consensus process. These rewards are proportional to the amount of AVAX staked and their uptime and performance in validating transactions. Delegation: Validators can also accept delegations from other token holders. Delegators share in the rewards based on the amount they delegate, which incentivizes smaller holders to participate indirectly in securing the network. 2. Economic Incentives: Block Rewards: Validators receive block rewards for proposing and validating blocks. These rewards are distributed from the network’s inflationary issuance of AVAX tokens. Transaction Fees: Validators also earn a portion of the transaction fees paid by users. This includes fees for simple transactions, smart contract interactions, and the creation of new assets on the network. 3. Penalties: Slashing: Unlike some other PoS systems, Avalanche does not employ slashing (i.e., the confiscation of staked tokens) as a penalty for misbehavior. Instead, the network relies on the financial disincentive of lost future rewards for validators who are not consistently online or act maliciously. o Uptime Requirements: Validators must maintain a high level of uptime and correctly validate transactions to continue earning rewards. Poor performance or malicious actions result in missed rewards, providing a strong economic incentive to act honestly. Fees on the Avalanche Blockchain 1. Transaction Fees: Dynamic Fees: Transaction fees on Avalanche are dynamic, varying based on network demand and the complexity of the transactions. This ensures that fees remain fair and proportional to the network's usage. Fee Burning: A portion of the transaction fees is burned, permanently removing them from circulation. This deflationary mechanism helps to balance the inflation from block rewards and incentivizes token holders by potentially increasing the value of AVAX over time. 2. Smart Contract Fees: Execution Costs: Fees for deploying and interacting with smart contracts are determined by the computational resources required. These fees ensure that the network remains efficient and that resources are used responsibly. 3. Asset Creation Fees: New Asset Creation: There are fees associated with creating new assets (tokens) on the Avalanche network. These fees help to prevent spam and ensure that only serious projects use the network's resources. Validator incentives on the X-Chain are indirect and come from network-wide AVAX issuance. Transaction fees are fixed and burned to prevent spam and reduce the total supply of AVAX over time
信息披露时间段的开始日期
2024-09-25
信息披露时间段的结束日期
2025-09-25
能源报告
能源消耗
849800.31344 (kWh/a)
可再生能源消耗
30.867997396 (%)
能源强度
0.00010 (kWh)
主要能源来源与评估体系
To determine the proportion of renewable energy usage, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal energy cost wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Share of electricity generated by renewables - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/share-electricity-renewables.
能源消耗来源与评估体系
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) avalanche, avalanche_x_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.
排放报告
DLT 温室气体排放范围一:可控排放
0.00000 (tCO2e/a)
DLT 温室气体排放范围二:外购排放
319.07096 (tCO2e/a)
温室气体排放强度
0.00004 (kgCO2e)
主要温室气体来源与评估体系
To determine the GHG Emissions, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal emission wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Carbon intensity of electricity generation - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/carbon-intensity-electricity Licenced under CC BY 4.0.
市值
S$153.62亿 #12
流通总量
4.22亿 / 7.2亿
历史最高价
S$190.16
24 小时成交量
S$19.67亿
4.0 / 5
AVAXAVAX
SGDSGD
SEPA 免费充值,轻松买入Avalanche