Internet Computer-Preis

in USD
$4,054
-$0,295 (-6,79 %)
USD
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Marktkapitalisierung
$2,18 Mrd. #40
Umlaufmenge
538,16 Mio. / 538,16 Mio.
Allzeithoch
$750
24-Std.-Volumen
$75,44 Mio.
4.4 / 5

Über Internet Computer

RWA
Layer 1
Gaming
Offizielle Website
Whitepaper
Github
Block Explorer
CertiK
Letzte Prüfung: 19. Apr. 2021, (UTC+8)

Haftungsausschluss

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Preisentwicklung von Internet Computer

Vergangenes Jahr
-56,40 %
$9,30
3 Monate
-14,91 %
$4,76
30 Tage
-18,68 %
$4,99
7 Tage
-16,98 %
$4,88

Internet Computer auf Social Media

AmSpeed⚡️
AmSpeed⚡️
In nur wenigen Eingaben konnte ich eine App mit @caffeineai erstellen, die Ihnen Informationen zu allen kürzlich hinzugefügten Parktickets in San Francisco auf einer 3D-Karte zeigt. Dies wird vollständig auf einer Blockchain ( $ICP ) gehostet 🤯 Es gibt jedoch eine Wendung.. Soll ich einen Link teilen?
Omnity Network
Omnity Network
REE macht es Entwicklern viel einfacher, auf Bitcoin aufzubauen. 🚀 Gestartet von Omnity und betrieben von ICP (@dfinity), bringt es native Bitcoin-Infrastruktur wie: ⚡ Bitcoin-Subnetz 🔑 Threshold-Signaturen ⛽ Reverse-Gas-Modell Das Ergebnis? Schnelle Bitcoin-DeFi-Apps + nahtloses Asset-Management.
jintao (🔌,🔌)
jintao (🔌,🔌)
Wenn meine Internet-Computer-Token in den nächsten 24 Stunden nicht sicher auf Coinbase sind, arbeite ich daran, die Aktie in den zweistelligen Bereich zu senden.

Anleitungen

Finde heraus, wie du Internet Computer kaufen kannst
Der Einstieg in Kryptowährungen kann sich überwältigend anfühlen, aber zu erfahren, wo und wie man Kryptowährungen kaufen kann, ist einfacher, als du vielleicht denkst.
Prognostiziere die Preise von Internet Computer
Wie viel wird Internet Computer in den nächsten Jahren wert sein? Sieh dir die Meinung der Community an und mache deine Prognosen.
Sieh dir die Preisentwicklung von Internet Computer an
Verfolgen Sie den Preisverlauf Ihrer Internet Computer, um die Entwicklung Ihrer Beteiligungen im Laufe der Zeit zu verfolgen. Sehen Sie die Eröffnungs-/Schlusswerte, Höchst- und Tiefststände sowie das Handelsvolumen ganz einfach in der unten stehenden Tabelle ein.
Erhalte Internet Computer in 3 Schritten

Erstelle ein kostenloses OKX-Konto.

Zahle Gelder auf dein Konto ein.

Wähle deine Krypto aus.

Diversifiziere dein Portfolio mit mehr als 60 Euro-Handelspaaren auf OKX

Häufig gestellte Fragen zum Internet Computer-Preis

ICP ist das native Token des Ökosystems des Internet-Computer-Protokolls. Es dient der Plattform-Governance und kann in Cycles Token umgewandelt werden, um dem Netzwerk weitere Rechenleistung zu bescheren.
Das Internet-Computer-Protokoll ist eine der weltweit schnellsten öffentlichen Blockchains, die 11.500 Transaktionen pro Sekunde verarbeitet, wobei die Transaktionen dank der innovativen Chain Key Cryptography-Technologie innerhalb von 1 Sekunde abgeschlossen werden.
Das Internet-Computer-Protokoll wird von 48 Rechenzentren in Nordamerika, Europa und Asien unterstützt und betreibt 1.300 Knoten. Bis Ende des Jahres wird das Netzwerk 123 Rechenzentren mit jeweils 4.300 Knoten besitzen. Jeder kann ein Knotenbetreiber sein.
Am 10. Mai 2021 erreichte ICP den bislang höchsten Handelspreis mit 750 USD.
Aktuell liegt der Internet Computer-Kurs bei $4,054. Was kostet ein Internet Computer? – die Antwort auf diese Frage hängt stark von Angebot, Nachfrage und Marktstimmung ab. Wenn du aktuelle Kursdaten und Einblicke in die Preisentwicklung suchst, bist du hier genau richtig. Entdecke die neuesten Internet Computer-Charts und handel verantwortungsbewusst mit OKX.
Kryptowährungen, wie etwa Internet Computer, sind digitale Vermögenswerte, die auf einem öffentlichen Hauptbuch namens Blockchains betrieben werden. Erfahre mehr über die auf OKX angebotenen Coins und Tokens sowie deren unterschiedlichen Eigenschaften, einschließlich Live-Preisen und Charts in Echtzeit.
Dank der Finanzkrise von 2008 ist das Interesse an einem dezentralen Finanzwesen rasant gestiegen. Bitcoin bot als sicherer digitaler Vermögenswert auf einem dezentralen Netzwerk eine neuartige Lösung. Seitdem wurden auch viele andere Token, wie etwa Internet Computer, erstellt.
Auf unserer Internet Computer-Seite für Preisprognosen findest du Prognosen zukünftiger Preise und kannst deine Preisziele bestimmen.

Tauch tiefer ein in Internet Computer

Internet Computer Protocol is an innovative, decentralized blockchain network that aims to make blockchain technology accessible to the general public. It seeks to expand the capabilities of smart contracts and turn the public internet into a global cloud computing platform.

One of the most common criticisms leveled at blockchain technology is that it needs to be faster and more convenient to gain widespread adoption. Internet Computer Protocol aims to address this by making blockchain functionality available at web speed. Simultaneously, it ensures transaction finality in less than one second and micro gas fees. It also provides a seamless developer environment for deploying smart contract code directly onto the public internet. This simplifies the experience for both application developers and users.

Internet Computer Protocol network's architecture is intended to give independent data centers the flexibility to communicate and to provide a fully decentralized cloud computing platform. One of Internet Computer Protocol team's primary goals is to reduce society's reliance on centralized alternatives such as Amazon Web Service and Google Cloud Servers.

ICP is the native token of the Internet Computer Protocol ecosystem, and it is required to vote on governance issues that shape the project's direction. ICP can also be staked to earn ongoing crypto rewards. Staking ICP reduces sell pressure and helps to support the price of the token.

How does Internet Computer Protocol work

The central idea behind the Internet Computer network is to create a unique, decentralized internet and a worldwide cloud computing system powered by interlinked, independent data centers to rival centralized cloud providers such as Amazon Web Services, Google Cloud, and Microsoft Azure.

Many consider the current internet a problem because it is centralized, and popular applications are close-sourced and keep their technology private. With much of the internet's storage needs being met by a few large, centralized providers, if a major data center fails, many businesses and users might be unable to use the services. Another major disadvantage of centralized cloud storage is that centralized providers have the power to censor or shut down applications they host at will.

Internet Computer Protocol wants to change all of that. The Internet Computer is an attempt to create an alternative version of the internet that allows developers to use decentralized services to host their applications without fear of censorship, de-platforming, or loss of user data. This is aimed at further incentivizing open-source and transparent software development across the globe.

Any interested individual or data center with the requisite storage capacity and wishes to join the network as a storage node operator is free to do so. They are paid for the storage they provide and further rewarded with token rewards.

Chain key technology

One of the fundamental new implementations in the Internet Computer Protocol chain is its reimagined chain key technology. The Internet Computer Protocol network utilizes a single public key, allowing the chain to rapidly deploy millions of nodes. With its unique chain key technology, any device, such as a mobile phone or tablet, can confirm the authenticity of on-chain events.

Reverse gas model

While most chains require users to pay gas fees in order to complete transactions, Internet Computer Protocol employs a novel reverse gas model. Developers pay to run decentralized applications (dApps) on the Internet Computer using this mechanism. As a result, non-technologists can interact with blockchain technology without the need for specific tokens. This makes the technology much more accessible and lowers entry barriers for users.

The Motoko smart contract language

DFINITY developed Motoko, a new programming language for smart contracts. It makes it simpler to use the unique features of blockchain and can easily accommodate Internet Computer Protocol's ideology for a fully decentralized blockchain protocol. Automatic memory management, generics, type inference, pattern matching, and arbitrary- and fixed-precision arithmetic are examples of Motoko's productivity and safety features.

ICP price and tokenomics

ICP has a total supply of about 488 million, giving it a fully-diluted market cap of almost $4 billion. ICP tokens are created and given out as a reward to participants who vote on proposals and manage storage nodes. The Internet Computer Protocol also utilizes another token known as "Cycles," which are converted from ICP tokens and used to support computation.

Internet Computer Protocol conducted several funding rounds over several years to build initial early support for the project. According to Messari, the first funding round was completed in Febuary 2017, and successfully raised over $4 million for the development of the network. Subsequent token sales in February and August 2018 raised over $117 million.

Early investors were able to buy ICP tokens for as little as $0.035 per token in the funding rounds. Speculators believe that this is the reason for the strong selling pressure visible in ICP charts and Internet Computer Protocol's price decline when the token launched public trading at $365 per ICP.

The initial distribution of ICP tokens were allocated almost entirely to the Internet Computer Protocol team and early investors. ICP tokens were allocated in the following manner:

  • Seed: 24.72 percent
  • DFINITY Foundation: 23.86 percent
  • Internet Computer Protocol Team Members: 18.00 percent
  • Early Contributors: 9.50 percent
  • Strategic Sale Buyers: 7.00 percent
  • Presale Buyers: 4.96 percent
  • Internet Computer Protocol Association: 4.26 percent
  • Partnerships: 3.79 percent
  • Advisors and Investors in relevant third-party tokens: 2.40 percent
  • Airdrop for ICP Community: 0.80 percent
  • Developer and Community Grants: 0.48 percent
  • Operators of Network Nodes: 0.22 percent

About the founders

Internet Computer Protocol network was founded and developed by the DFINITY Foundation, a not-for-profit research foundation focused on scientific pursuits. The DFINITY Foundation was originally founded by Dominic Williams, who fills the founder and Chief Scientist role. Williams is a recognized and celebrated crypto theoretician credited with inventing innovative crypto concepts such as threshold relay and probabilistic slot consensus.

Before founding the DFINITY Foundation and launching Internet Computer Protocol, Williams was the President and Chief Technology Officer at String Labs, a launchpad for new crypto startups. He also had great success developing online games for children that supported millions of users.

The DFINITY Foundation is based in Zurich, Switzerland. It is made up of world leaders in cryptography, programming, and distributed systems. Alongside Williams, the DFINITY Foundation benefits from the expertise of some of the industry's most celebrated technologists, including:

  • Jan Camenisch: Cryptographer and privacy researcher who previously led IBM's cryptography and research department during a 19-year tenure
  • Andreas Rossberg: Co-creator of WebAssembly
  • Ben Lynn: Cryptographer and Google engineer
  • Jens Groth: Cryptographer, most notably famous for developing some of the first non-interactive zero-knowledge proofs
  • Timo Hanke: An algorithmic Bitcoin mining optimizer
  • Paul Liu: A PhD holder and engineer who designed the Haskell compiler used by Intel
  • Johan Georg Granström: Previously employed as a senior software engineer at Google, Granström also designed YouTube's scaling infrastructure

Internet Computer Protocol has secured close to $167 million in funding from 15 investors, including Andreessen Horowitz, 9Yards Capital, Polychain, Aspect Ventures, and Village Global.

DFINITY has had three funding rounds. Their most recent investment came from a venture round on August 28, 2018, in which they raised $102 million. Also, DFINITY invested $25k in SPEEQO on January 20, 2022, a voice-based machine learning software company.

What makes Internet Computer Protocol unique

Internet Computer Protocol boasts a wide variety of unique features that separate it from other popular blockchains. For example, Internet Computer Protocol is the only network, apart from Bitcoin, that is operated by zero centralized cloud computation nodes. In contrast, roughly 70 percent of Ethereum nodes and 50 percent of Solana nodes are actually hosted by cloud servers provided by centralized bodies like Amazon Web Services and Google Cloud Service.

The Internet Computer Protocol aims to provide the general public with a more user-friendly experience. As a result, it is the only public blockchain in which smart contracts are run and HTTP calls are directly served to browsers. In other words, inexperienced users will unknowingly interact with Web3 technology and blockchain functionality.

Internet Computer Protocol highlights

ICP/BTC integration beta API

On August 4, 2022, DFINITY announced the beta release of ICP's Bitcoin testnet Application Programming Interface (API), which enables direct interaction with the Bitcoin network and eliminates the need for a middleman or bridge. With the integration's APIs, developers can start developing and testing immediately.

ORIGYN NFT marketplace

The ORIGYN Foundation, a Swiss company that identifies, authenticates, and unlocks the potential of NFT for luxury objects, fine art, media, and collectibles, was one of the first to begin building on the Internet Computer Protocol. ORIGYN issued a native utility token, OGY, prior to the impending launch of Impossible Things, an ORIGYN-powered marketplace for trading NFTs backed by verified assets, marking a significant development for the ICP ecosystem.

ESG-Offenlegung

ESG-Regulierungen (Umwelt, Soziales und Governance) für Krypto-Vermögenswerte zielen darauf ab, ihre Umweltauswirkungen (z. B. energieintensives Mining) zu adressieren, Transparenz zu fördern und ethische Governance-Praktiken zu gewährleisten, um die Krypto-Industrie mit breiteren Nachhaltigkeits- und gesellschaftlichen Zielen in Einklang zu bringen. Diese Vorschriften fördern die Compliance mit Standards, die Risiken mindern und das Vertrauen in digitale Vermögenswerte stärken.
Details zum Vermögenswert
Name
OKCoin Europe Ltd
Kennung der relevanten juristischen Person
54930069NLWEIGLHXU42
Name des Krypto-Vermögenswerts
Internet Computer Token
Konsensmechanismus
The Internet Computer Protocol (ICP) uses a unique consensus mechanism called Threshold Relay combined with Chain Key Technology to ensure decentralized, scalable, and secure operations for its network. Core Components of ICP’s Consensus Mechanism: 1. Threshold Relay: Threshold Relay is a consensus protocol that enables the network to achieve finality without a traditional Proof-of-Work or Proof-of-Stake mechanism. It leverages a group of nodes called "the committee" to generate a random beacon that is used for the selection of the next block producer. The protocol is designed to provide scalability and speed while maintaining decentralization by allowing any node to join the consensus process. The key feature of Threshold Relay is that it utilizes a threshold signature scheme, where a group of nodes must collaborate to create a valid signature, ensuring that consensus is achieved even in the presence of faulty or malicious nodes. 2. Chain Key Technology: Chain Key Technology is used to manage the state of the Internet Computer, allowing it to scale effectively across a vast number of nodes while still providing fast and secure transaction finality. This technology enables the creation and management of many independent blockchains (also known as subnet blockchains), each with its own set of validators. Chain Key Technology allows the Internet Computer to support billions of smart contracts without compromising speed, as it facilitates quick communication between the subnets and enables cross-chain interoperability. 3. Canister Smart Contracts: The Internet Computer utilizes a decentralized model where the computation of canister smart contracts (which hold the application logic) occurs across different nodes in the network. These canisters can run autonomously and scale with the network’s growth. Finality and Security: • The consensus mechanism ensures finality once a transaction is validated, meaning that once a block is added, it cannot be reverted, providing the security required for high-stakes applications. • The use of Threshold Relay provides robust Byzantine Fault Tolerance (BFT), enabling the network to tolerate faulty or malicious behavior without compromising network integrity.
Anreizmechanismen und anfallende Gebühren
The Internet Computer Protocol (ICP) incentivizes network participants (validators, node operators, and canister developers) through various reward mechanisms and transaction fees. Here's a breakdown of the incentive mechanisms and applicable fees related to ICP: Incentive Mechanism: 1. Network Participation and Rewards: Validators: Validators are crucial for maintaining the integrity and security of the network. They stake ICP tokens to participate in consensus and are rewarded for validating blocks, maintaining the integrity of the decentralized network, and ensuring its performance. Rewards for validators are based on their participation in the consensus mechanism and their stake in the network. Node Operators: Node operators who maintain the physical infrastructure of the network (such as hardware and server resources) are also rewarded. These operators run the nodes that participate in the Threshold Relay and provide computational power to the network. 2. Canister Developers and Network Participants: Canister Smart Contracts: Developers of canisters (smart contracts) on the Internet Computer are incentivized through the creation of decentralized applications (dApps). Developers may also benefit from transaction fees generated by the usage of their dApps and the deployment of smart contracts on the network. Usage Fees: Users of decentralized applications (dApps) or canisters are incentivized to pay for their usage through fees. These fees are often paid in ICP tokens, and developers can receive a share of these fees based on the usage of their deployed applications. 3. Governance: The ICP Token is used for governance via the Network Nervous System (NNS), where holders of ICP tokens participate in decisions regarding the protocol, such as network upgrades, incentive adjustments, and the allocation of funds. Token holders are rewarded with the ability to influence the future of the network. 4. Staking Rewards: Staking: ICP token holders can participate in staking their tokens in the NNS, which influences network consensus and governance. By participating in staking, they help secure the network and are rewarded with staking rewards (a form of passive income). The staking rewards are given to token holders who participate in securing the network via the NNS. Applicable Fees: 1. Transaction Fees: Canister Calls: Every interaction with a canister (smart contract) on the Internet Computer incurs a transaction fee. These fees are typically paid in ICP tokens and are used to cover the computational resources required to process requests, store data, and manage execution. Fee Structure: Transaction fees depend on the complexity and resources consumed by the canister call or network operation. For example, operations that require more computational power or data storage may incur higher fees. 2. Storage Fees: Canister Data Storage: Developers and users who deploy applications on the Internet Computer are required to pay fees for storing data. These fees ensure that network resources are used efficiently and that canisters do not waste storage space. The cost of storage is typically paid in ICP tokens. 3. Governance Participation Fees: Voting and Proposal Fees: Participation in the governance process via the NNS (Network Nervous System) may require a small fee, depending on the type of governance action (such as submitting a proposal or voting). These fees ensure that governance is distributed and prevent spam attacks on the governance system. 4. Node and Validator Fees: Fees for Node Operations: Node operators who provide computational power to the network may incur costs related to maintaining hardware and operating nodes. These fees are partially offset by rewards for providing network resources.
Beginn des Zeitraums, auf die sich die Angaben beziehen
2024-09-24
Ende des Zeitraums, auf die sich die Angaben beziehen
2025-09-24
Energiebericht
Energieverbrauch
5834160.00000 (kWh/a)
Verbrauch erneuerbarer Energien
30.515000000 (%)
Energieintensität
0.00720 (kWh)
Wichtige Energiequellen und Methoden
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.
Quellen und Verfahren im Bezug auf den Energieverbrauch
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) internet_computer 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.
Emissionsbericht
Scope 1 DLT THG-Emissionen – Kontrolliert
0.00000 (tCO2e/a)
Scope 2 DLT THG-Emissionen – Gekauft
2047.79016 (tCO2e/a)
Treibhausgasintensität
0.00253 (kgCO2e)
Wichtige Quellen und Verfahren in Bezug auf Treibhausgase
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.
Marktkapitalisierung
$2,18 Mrd. #40
Umlaufmenge
538,16 Mio. / 538,16 Mio.
Allzeithoch
$750
24-Std.-Volumen
$75,44 Mio.
4.4 / 5
Einfach Internet Computer kaufen mit kostenlosen Einzahlungen über SEPA