SOL
SOL

Solana-pris

$125,93
+$0,22000
(+0,17 %)
Prisförändring de senaste 24 timmarna
USDUSD
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Solana marknadsinfo

Marknadsvärde
Marknadsvärde beräknas genom att multiplicera det cirkulerande utbudet av ett coin med dess senaste pris.
Börsvärde = Cirkulerande utbud × Senaste pris
Cirkulerande utbud
Totalt belopp för ett coin som är allmänt tillgängligt på marknaden.
Marknadsvärde-rankning
Ett coins rankning i termer av marknadsvärde.
Högsta någonsin
Högsta pris ett coin har nått i sin handelshistorik.
Lägsta någonsin
Lägsta pris ett coin har nått i sin handelshistorik.
Marknadsvärde
$64,44B
Cirkulerande utbud
512 291 326 SOL
85,75 % av
597 387 196 SOL
Marknadsvärde-rankning
--
Granskningar
CertiK
Senaste granskningen: 26 sep. 2022
Högsta priset under 24 tim
$127,57
Lägsta priset under 24 tim
$122,74
Högsta någonsin
$295,90
−57,45 % (-$169,97)
Senast uppdaterad: 19 jan. 2025
Lägsta någonsin
$0,31000
+40 522,58 % (+$125,62)
Senast uppdaterad: 29 okt. 2020

Solana-prisresultat i USD

Aktuellt pris på Solana är $125,93. Under de senaste 24 timmarna har Solana ökade med +0,18 %. Det har för närvarande ett cirkulerande utbud av 512 291 326 SOL och ett maximalt utbud av 597 387 196 SOL, vilket ger ett marknadsvärde efter full utspädning på $64,44B. För tillfället innehar Solana-coin position 0 i marknadsvärdesrankningar. Solana/USD-priset uppdateras i realtid.
Idag
+$0,22000
+0,17 %
7 dagar
-$12,0300
−8,72 %
30 dagar
-$17,8000
−12,39 %
3 månader
-$63,3900
−33,49 %

Om Solana (SOL)

4.3/5
Certik
4.6
2025-03-29
CyberScope
4.4
2025-03-30
TokenInsight
3.8
2025-03-14
Betyget som anges är ett sammanställt betyg som inhämtats av OKX från källorna som anges, och det anges endast för informativa syften. OKX garanterar inte betygens kvalitet eller korrekthet. Det är inte avsett att utgöra (i) investeringsrådgivning eller rekommendation, (ii) ett erbjudande eller en uppmaning att köpa, sälja eller inneha digitala tillgångar, eller (iii) finansiell, redovisningsmässig, juridisk eller skattemässig rådgivning. Digitala tillgångar, inklusive stabil kryptovaluta och NFT:er, omfattas av hög risk, kan skifta kraftigt och till och med bli värdelösa. Priset och prestanda för de digitala tillgångarna garanteras inte, och de kan förändras utan föregående meddelande. Dina digitala tillgångar täcks inte av försäkran mot potentiella förluster. Historisk avkastning är ingen garanti om framtida avkastning. OKX garanterar inte någon avkastning, återbetalning av huvudbelopp eller ränta. OKX tillhandahåller inga rekommendationer om investeringar eller tillgångar. Du bör noga överväga om handel med eller innehav av digitala tillgångar är lämpligt för dig med hänsyn till din ekonomiska situation. Rådgör med din jurist, skatteexpert eller investeringsrådgivare om du har frågor om dina specifika omständigheter.
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    Om tredjeparts webbplatser
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Solana describes itself as a third-generation network designed to solve the blockchain trilemma – the notoriously difficult feat of improving performance without compromising decentralization and security. Solana might succeed where first and second-generation blockchains have struggled by introducing innovative methodologies to optimize a blockchain network's speed while retaining a high level of decentralization.

Solana's decision to focus on finding a balance between speed, security, and decentralization stems from the need to create enabling environments for launching world-class decentralized applications (DApps). The goal is to provide a blockchain network to help DApps attain the same functionality and user experience that their centralized counterparts offer.

The Solana ecosystem has SOL as its base currency, which users can use to make payments, settle related fees, and participate in the network's staking economy. The digital asset also doubles as Solana's governance currency. In essence, SOL holders can vote on proposals that would, in turn, determine the type of changes and upgrades adopted by the Solana ecosystem.

How does Solana work

Like most blockchains, Solana relies on a consensus algorithm. Such algorithms ensure blockchains don't require intermediary entities like Visa or PayPal to execute and validate transactions. However, rather than opt for the energy-intensive and slower Proof of Work (PoW) consensus protocol like Bitcoin, Solana has adopted a more dynamic alternative that gives room for highly scalable and eco-friendly operations.

Specifically, Solana’s dynamic consensus system combines the in-house designed Proof of History (PoH) protocol and the popular Proof of Stake (PoS) model. PoH creates a historical record of events and transactions and allows the system to process transactions faster and more efficiently.

Armed with these two consensus mechanisms, Solana can reportedly process up to 50,000 transactions per second, which is why it is often called the "Visa of the crypto world." This is an exceptional feat considering that Ethereum, the most popular application-based blockchain, currently has a maximum theoretical TPS of 119. According to Solana, developments are underway to increase the current maximum transaction size possible on the network, which currently stands at 1,232 bytes. QUIC, a Google-built transaction ingestion protocol currently live on Solana's Mainnet-beta, could be the key to unlocking a larger transaction size.

Solana provides a flexible development tool kit that supports three popular programming languages: Rust, C, and C++. Solana has also highlighted community-driven efforts to allow on-chain programs to be written in other languages such as Python via Seahorse. Proponents of Solana argue that the possibility of writing smart contract codes with multiple programming languages will help developers access a more familiar and flexible development environment, unlike what we have on blockchains with native smart contract languages.

Additionally, the Solana blockchain has a block propagation protocol named Turbine that makes data distribution faster across the network. Finally, Solana uses Gulf Stream, a Mempool-less transaction forwarding protocol that enables validators to execute transactions beforehand.

Solana's high-speed and low-cost transactions make it an attractive platform for DeFi applications. It supports various DeFi projects, including decentralized exchanges (DEX), lending and borrowing platforms, and yield farming protocols. Furthermore, with its ability to handle a large number of transactions per second, Solana is a suitable platform for blockchain-based games. Developers can build interactive and scalable games on Solana that offer rewards in SOL or other tokens.

SOL price and tokenomics

Launched in March 2020, SOL initially sold for $0.22 to supporters through a public auction, successfully raising $1.76 million. The subsequent surge in Solana's value led to a significant private token sale round in June 2021, generating a substantial $314 million for Solana Labs. The funds raised in this round are earmarked for the development and promotion of a robust and expansive decentralized finance (DeFi) ecosystem on the Solana blockchain.

Over the years, the Solana team conducted five funding rounds, starting with a seed round of $3.17 million, followed by three private funding rounds that eventually culminated in a $20 million Series A. An additional $1.76 million was raised through a public auction in March 2022 with CoinList. These funding efforts have propelled Solana's growth and positioned it as a prominent player in the blockchain space.

The SOL price reached its all time high of $259.69 back in November 7, 2021. Although the Solana price fell sharply and stagnated in the years following, the latter part of 2023 saw the token gain bullish momentum. SOL prices reached above $100 for the first time in almost two years during late January 2024, and continued its uptrend to hit $195.72 on March 24, 2024. Various factors have contributed to the Solana price rise, but many commentators attribute it to the growing strength of the network. Solana surpassed rival smart contract blockchain Ethereum for decentralized exchange (DEX) volume during March 2024, reportedly due to a flurry of activity surrounding Solana-based memecoins and a superior volume to total value locked for Solana.

Key tools and technologies in the Solana ecosystem

Launched in October 2021, the Jupiter swap aggregator is considered by many to be an influential part of Solana's success. Jupiter aggregates liquidity for Solana, helping users to find the best prices with minimal volatility and slippage.

Meanwhile, Magic Eden is the largest non-fungible token (NFT) marketplace on Solana. The platform allows users to buy, sell, and mint digital collectibles, and also provides various resources to help developers build their own projects. Although Magic Eden is a major NFT marketplace on the Solana network, it also supports other chains including Polygon, Base, Ethereum, and Bitcoin Ordinals.

Another key tool in the Solana ecosystem is Pyth Network. This blockchain oracle allows smart contracts to interact with real-world price data in real-time. Data is collected from a large quantity of sources including exchanges, market makers, and financial services providers. Significantly, Pyth Network can find and publish off-chain data on-chain, powering DApps (and their users) with access to high-fidelity real-time market data.

SOL distribution

The initial supply of SOL, totaling 500,000 tokens, was distributed among various entities involved in Solana's early funding rounds. Notably, a portion was allocated to investors in the Seed round, while another share was reserved for participants in the Series A rounds. Additionally, some tokens were sold in a public sale, and a portion was distributed among the founding team members who contributed to the project's development. Furthermore, the Solana Foundation, a not-for-profit entity supporting Solana initiatives, received its share of tokens. Lastly, a community reserve fund, managed by the Solana Foundation, also received a portion of the initial supply to support the broader Solana community.

About the founders

Anatoly Yakovenko, a software engineer, first introduced Solana in 2017 when he published a whitepaper where he proposed the concept of Proof of History and how it can optimize the throughput of blockchains. Before venturing into the blockchain ecosystem, Yakovenko worked at Qualcomm and Dropbox as a software engineer.

After introducing the Solana project, Yakovenko teamed up with one of his former Qualcomm colleagues, Greg Fitzgerald, to co-found Solana Labs, the software development company responsible for building and maintaining the Proof of History-based blockchain network. Along the line, Yakovenko and Fitzgerald recruited more former Qualcomm colleagues.

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Sociala medier

Inlägg
Antal inlägg som nämner en token under de senaste 24 timmarna. Detta kan hjälpa till att mäta nivån av intresse kring denna token.
Bidragsgivare
Antal individer som skrivit om en token under de senaste 24 timmarna. Ett högre antal bidragsgivare kan föreslå förbättrad tokenprestanda.
Interaktioner
Summan av socialt drivet online engagemang under de senaste 24 timmarna, såsom gilla-markeringar, kommentarer och reposter. Höga engagemangsnivåer kan indikera stort intresse för en token.
Sentiment
Procentpoäng som återspeglar inläggssentiment under de senaste 24 timmarna. En hög procentuell poäng korrelerar med positivt sentiment och kan indikera förbättrad marknadsprestation.
Volymranking
Volym avser inläggsvolym under de senaste 24 timmarna. En högre volymrankning återspeglar en tokens favoritposition i förhållande till andra tokens.
Under de senaste 24 timmarna har 67 tn nya inlägg publicerats om Solana från 25 tn bidragsgivare och det totala engagemanget online nådde 18 mn sociala interaktioner. Sentimentpoängen för Solana ligger för närvarande på 83%. Jämfört med alla kryptovalutor rankas inläggsvolymen för Solana för närvarande på 167. Håll ett öga på hur de sociala mätetalen förändras eftersom de kan vara nyckelindikatorer på vilket inflytande och vilken räckvidd Solana har.
Drivs av LunarCrush
Inlägg
67 146
Bidragsgivare
24 829
Interaktioner
18 165 219
Sentiment
83 %
Volymranking
#167

X

Inlägg
54 825
Interaktioner
13 630 188
Sentiment
85 %

Vanliga frågor för Solana

Hur mycket är 1 Solana värd idag?
För närvarande är en Solana värd $125,93. För svar och insikt om prisåtgärder för Solana är du på rätt plats. Utforska de senaste diagrammen för Solana och handla ansvarsfullt med OKX.
Vad är kryptovalutor?
Kryptovalutor, till exempel Solana, är digitala tillgångar som fungerar på en offentlig reskontra som kallas blockkedjor. Läs mer om coins och tokens som erbjuds på OKX och deras olika attribut, som inkluderar live-priser och realtidsdiagram.
När uppfanns kryptovalutor?
Tack vare finanskrisen 2008 ökade intresset för decentraliserad finansiering. Bitcoin erbjöd en ny lösning genom att vara en säker digital tillgång på ett decentraliserat nätverk. Sedan dess har många andra tokens som t.ex. Solana skapats också.
Kommer priset på Solana gå upp idag?
Se vår Solana prisprognossida för att förutse framtida priser och fastställa dina prismål.

ESG-upplysning

ESG-regleringar (Environmental, Social och Governance) för kryptotillgångar syftar till att ta itu med eventuell miljöpåverkan (t.ex. energiintensiv mining), främja transparens och säkerställa etiska förvaltningsmetoder för att anpassa kryptoindustrin till bredare hållbarhets- och samhälleliga mål. Dessa regleringar uppmuntrar efterlevnad av standarder som minskar risker och främjar förtroende för digitala tillgångar.
Tillgångsdetaljer
Namn
OKcoin Europe LTD
Relevant juridisk enhetsidentifierare
54930069NLWEIGLHXU42
Namn på kryptotillgången
Solana SOL
Konsensusmekanism
Solana uses a unique combination of Proof of History (PoH) and Proof of Stake (PoS) to achieve high throughput, low latency, and robust security. Here’s a detailed explanation of how these mechanisms work: Core Concepts 1. Proof of History (PoH): Time-Stamped Transactions: PoH is a cryptographic technique that timestamps transactions, creating a historical record that proves that an event has occurred at a specific moment in time. Verifiable Delay Function: PoH uses a Verifiable Delay Function (VDF) to generate a unique hash that includes the transaction and the time it was processed. This sequence of hashes provides a verifiable order of events, enabling the network to efficiently agree on the sequence of transactions. 2. Proof of Stake (PoS): Validator Selection: Validators are chosen to produce new blocks based on the number of SOL 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 can delegate their SOL tokens to validators, earning rewards proportional to their stake while enhancing the network's security. Consensus Process 1. Transaction Validation: Transactions are broadcast to the network and collected by validators. Each transaction is validated to ensure it meets the network’s criteria, such as having correct signatures and sufficient funds. 2. PoH Sequence Generation: A validator generates a sequence of hashes using PoH, each containing a timestamp and the previous hash. This process creates a historical record of transactions, establishing a cryptographic clock for the network. 3. Block Production: The network uses PoS to select a leader validator based on their stake. The leader is responsible for bundling the validated transactions into a block. The leader validator uses the PoH sequence to order transactions within the block, ensuring that all transactions are processed in the correct order. 4. Consensus and Finalization: Other validators verify the block produced by the leader validator. They check the correctness of the PoH sequence and validate the transactions within the block. Once the block is verified, it is added to the blockchain. Validators sign off on the block, and it is considered finalized. Security and Economic Incentives 1. Incentives for Validators: Block Rewards: Validators earn rewards for producing and validating blocks. These rewards are distributed in SOL tokens and are proportional to the validator’s stake and performance. Transaction Fees: Validators also earn transaction fees from the transactions included in the blocks they produce. These fees provide an additional incentive for validators to process transactions efficiently. 2. Security: Staking: Validators must stake SOL tokens to participate in the consensus process. This staking acts as collateral, incentivizing validators to act honestly. If a validator behaves maliciously or fails to perform, they risk losing their staked tokens. Delegated Staking: Token holders can delegate their SOL tokens to validators, enhancing network security and decentralization. Delegators share in the rewards and are incentivized to choose reliable validators. 3. Economic Penalties: Slashing: Validators can be penalized for malicious behavior, such as double-signing or producing invalid blocks. This penalty, known as slashing, results in the loss of a portion of the staked tokens, discouraging dishonest actions.
Incitamentmekanismer och tillämpliga avgifter
Solana uses a combination of Proof of History (PoH) and Proof of Stake (PoS) to secure its network and validate transactions. Here’s a detailed explanation of the incentive mechanisms and applicable fees: Incentive Mechanisms 4. Validators: Staking Rewards: Validators are chosen based on the number of SOL tokens they have staked. They earn rewards for producing and validating blocks, which are distributed in SOL. The more tokens staked, the higher the chances of being selected to validate transactions and produce new blocks. Transaction Fees: Validators earn a portion of the transaction fees paid by users for the transactions they include in the blocks. This provides an additional financial incentive for validators to process transactions efficiently and maintain the network's integrity. 5. Delegators: Delegated Staking: Token holders who do not wish to run a validator node can delegate their SOL tokens to a validator. In return, delegators share in the rewards earned by the validators. This encourages widespread participation in securing the network and ensures decentralization. 6. Economic Security: Slashing: Validators can be penalized for malicious behavior, such as producing invalid blocks or being frequently offline. This penalty, known as slashing, involves the loss of a portion of their staked tokens. Slashing deters dishonest actions and ensures that validators act in the best interest of the network. Opportunity Cost: By staking SOL tokens, validators and delegators lock up their tokens, which could otherwise be used or sold. This opportunity cost incentivizes participants to act honestly to earn rewards and avoid penalties. Fees Applicable on the Solana Blockchain 7. Transaction Fees: Low and Predictable Fees: Solana is designed to handle a high throughput of transactions, which helps keep fees low and predictable. The average transaction fee on Solana is significantly lower compared to other blockchains like Ethereum. Fee Structure: Fees are paid in SOL and are used to compensate validators for the resources they expend to process transactions. This includes computational power and network bandwidth. 8. Rent Fees: State Storage: Solana charges rent fees for storing data on the blockchain. These fees are designed to discourage inefficient use of state storage and encourage developers to clean up unused state. Rent fees help maintain the efficiency and performance of the network. 9. Smart Contract Fees: Execution Costs: Similar to transaction fees, fees for deploying and interacting with smart contracts on Solana are based on the computational resources required. This ensures that users are charged proportionally for the resources they consume.
Början av den period som upplysningen avser
2024-03-28
Slutet av den period som upplysningen avser
2025-03-28
Energirapport
Energiförbrukning
5365500.00000 (kWh/a)
Förnybar energiförbrukning
14.770208242 (%)
Energiintensitet
0.00000 (kWh)
Viktiga energikällor och metoder
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 the European Environment Agency (EEA) and thus determined. The intensity is calculated as the marginal energy cost wrt. one more transaction.
Energiförbrukningskällor och -metoder
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.
Utsläppsrapport
Omfattning 1 DLT växthusgasintensitet-utsläpp – Kontrollerade
0.00000 (tCO2e/a)
Omfattning 2 DLT växthusgasintensitet-utsläpp – Köpt
1873.14310 (tCO2e/a)
Växthusgasintensitet
0.00000 (kgCO2e)
Viktiga växthusgasintensitets-källor och -metoder
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 the European Environment Agency (EEA) and thus determined. The intensity is calculated as the marginal emission wrt. one more transaction.
Friskrivningsklausul
Det sociala innehållet på den här sidan (”Innehåll”), inklusive men inte begränsat till tweets och statistik som tillhandahålls av LunarCrush, kommer från tredje part och tillhandahålls ”i befintligt skick” endast i informationssyfte. OKX garanterar inte kvaliteten eller riktigheten i innehållet, och innehållet representerar inte OKX:s åsikter. Det är inte avsett att ge (i) investeringsrådgivning eller rekommendation; (ii) ett erbjudande eller en uppmaning att köpa, sälja eller inneha digitala tillgångar; eller (iii) finansiell, redovisningsmässig, juridisk eller skatterådgivning. Digitala tillgångar, inklusive stabila kryptovalutor och NFT, innebär en hög grad av risk och kan fluktuera kraftigt. Priset och utvecklingen för de digitala tillgångarna garanteras inte och kan förändras utan förvarning. OKX tillhandahåller inte investerings- eller tillgångsrekommendationer. Du bör noga överväga om handel med eller innehav av digitala tillgångar är lämpligt för dig mot bakgrund av din ekonomiska situation. Kontakta din juridiska/skatte-/investeringsexpert om du har frågor om dina specifika omständigheter. För ytterligare information, se våra Användarvillkor och Riskvarning. Genom att använda tredje parts webbplats (”TPW”) accepterar du att all användning av TPW kommer att vara föremål för och styras av villkoren i TPW. Om inte annat uttryckligen anges skriftligen är OKX och dess dotterbolag (”OKX”) inte på något sätt associerade med ägaren eller operatören av TPW. Du samtycker till att OKX inte är ansvarigt eller skadeståndsskyldigt för förlust, skada eller andra konsekvenser som uppstår till följd av din användning av TPW. Var medveten om att användning av en TPW kan leda till förlust eller minskning av dina tillgångar. Produkten kanske inte är tillgänglig i alla jurisdiktioner.
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