svm

Solana VM Price(SVM)

Details
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$0.0{4}2565
--
1d
USD
No data
Last updated on: 2026-06-01 00:57:14
SVM price insightsWhat is SVM?AI analysis reportSVM Price PredictionHow to buy SVMHot EventsFAQ

Solana VM (SVM) Price information (USD)

24HLower Price
$0.0{4}2565
24HUpper Price
$0.0{4}2565
All-Time High
$0.0098
Lower Price
$0.0{4}2546
Change(1H)
0.00%
Change(24H)
0.00%
Change(7D)
-68.80%

The current real-time price of SVM is $0.0{4}2565. In the past 24 hours, SVM has traded between $0.0{4}2565 and $0.0{4}2565, showing strong market activity. The all-time high of SVM is $0.0098, and the all-time low is $0.0{4}2546.

From a short-term perspective, the price change of SVM over the past 1 hour is 0.00%, over the past 24 hours is 0.00%, and over the past 7 days is -68.80%. These figures provide a quick overview of the latest price trends and market dynamics of SVM on LBank.

Solana VM (SVM) Market Information

Popularity
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MC
$0
Trading Volume(24H)
1.079
Fully Diluted Market Cap
205.2K
Circulating Supply
0
Total Supply
8B
Launch Date
--
Underlying Blockchain
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The current market cap of SVM is $0, with a 24h trading volume of 1.079, a circulating supply of 0, a total supply of 8B, and a fully diluted valuation (FDV) of 205.2K.

Solana VM (SVM) Today's Price

The live price of SVM today is $0.0{4}2565, with a current market cap of $0. The 24-hour trading volume is 1.079. The price of SVM to USD is updated in real time. SVM's 24-hour price change is 0.00%. Circulating supply: 0.

Solana VM (SVM) Price History (USD)

Date Comparison
Value Change
Change (%)
No data
Want to unlock the full price history and price trends of SVM? View now SVM Price history page

What is SOLANA VM (SVM)?

The Solana Virtual Machine (SVM) is the fundamental execution layer of the Solana blockchain. Its primary role is to process smart contracts and decentralized applications (dApps) within the Solana network. A key distinguishing feature of the SVM is its parallel processing model. Unlike many traditional blockchain virtual machines that process transactions sequentially, the SVM is designed to execute multiple transactions concurrently. This parallel execution capability, supported by its Sealevel parallelization engine, allows Solana to achieve high transaction throughput and significantly reduces network congestion. The SVM is built using the Rust programming language and is optimized for high-demand environments, aiming for speed and precision in transaction handling. It operates by managing smart contract deployment, facilitating state changes, and processing transactions efficiently. When a transaction is submitted, the SVM loads necessary account data, executes the program bytecode, and validates that all state changes adhere to the network's consensus rules. Solana employs a fork of eBPF, known as sBPF, for secure bytecode interpretation and Just-In-Time (JIT) compilation, contributing to its performance. Developers can build on the SVM using languages like Rust, C, and C++. This environment offers speed and security, though it may involve a learning curve for some developers. The SVM's architecture allows Solana to scale effectively, adapting as the hardware of its validator nodes improves over time. This emphasis on efficiency and scalability makes the SVM a core component enabling Solana's ability to support a wide range of Web3 applications. Learn more

When is the right time to buy SVM? Should I buy or sell SVM now?

Before deciding whether to buy or sell SVM, you should first consider your own trading strategy. Long-term traders and short-term traders follow different trading approaches. LBank’s SVM technical analysis can provide you with trading references.

Based on SVM 4-hour technical analysis, the trading signal is --.

Based on SVM 1-day technical analysis, the trading signal is --.

Based on SVM 1-week technical analysis, the trading signal is --.

Future price trend of SVM

What will the value be? You can use our price prediction tool to conduct short-term and long-term price forecasts for SVM.

How much will SVM be worth tomorrow, next week, or next month in ? What about your SVM assets in 2025, 2026, 2027, 2028, or even 10 or 20 years from now? Check now!SVM Price Prediction

How to buy SOLANA VM (SVM)

Looking to buy How to buy SVM? The process is simple and hassle-free! You can easily purchase SVM on LBank by following our step-by-step buying guide. We provide detailed instructions and video tutorials showing how to register on LBank and use various convenient payment options.

Convert SVM to local currency

SVM Resources

Position distribution

View Solana VM(SVM) data
Top 5 addresses
Holding amount
Holding ratio
solana
AdFaUc...6a92fn
3.757B
46.96%
binance-smart-chain
0x2c9d...0e9ced
3.592B
44.90%
binance-smart-chain
0xc920...4ca598
109.652M
1.37%
solana
9m592N...ecGw1a
97.323M
1.21%
binance-smart-chain
0x4982...6e89cb
92.952M
1.16%
Other
350.095M
4.38%

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SOLANA VM (SVM) FAQ

The Solana Virtual Machine (SVM) is the core execution environment for smart contracts and decentralized applications (dApps) on the Solana blockchain. Its primary purpose is to enable Solana to handle thousands of transactions per second by utilizing a parallel processing model. It allows developers to deploy and execute code in a decentralized, secure, and immutable manner.
The SVM operates as a multi-threaded runtime environment, processing multiple transactions simultaneously by leveraging validator machine cores. Unlike sequential virtual machines, SVM's Sealevel engine enables parallel processing for independent transactions, which explicitly state data they will read and modify. This allows concurrent execution of non-conflicting tasks. It also features a localized fee market, preventing activity surges from one contract from impacting the entire network's fees.
SVM and EVM differ significantly. SVM processes smart contracts in parallel using Rust, C, or C++, compiled to eBPF/sBPF bytecode, resulting in thousands of transactions per second and lower, more predictable fees. EVM processes sequentially, primarily using Solidity, leading to higher latency, lower throughput, and potentially higher fees under demand. SVM was designed for high-performance parallel execution, leveraging eBPF, a distinct philosophy from EVM's sequential model.
Developers primarily use Rust, C, and C++ to write smart contracts, known as 'programs', for the Solana Virtual Machine. These high-performance languages are then compiled into BPF (Berkeley Packet Filter) bytecode, which is the format the SVM executes efficiently.
Developing for SVM presents challenges despite its advantages. The complexity of maintaining system stability during parallel processing requires advanced coordination to prevent conflicts. Furthermore, Rust, while powerful, has a steeper learning curve compared to languages used in other virtual machine environments, which can be a barrier for widespread developer adoption.
It's crucial to distinguish. The core Solana Virtual Machine (SVM) is a fundamental blockchain infrastructure component, not a tradable asset. However, there's an independent crypto project also named 'Solana VM ($SVM)' which aims to be an EVM-compatible Layer-2 for Solana, enabling external dApps to deploy easily. This project has its own utility token, $SVM, designed for ecosystem payments and staking.

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Disclaimer

Cryptocurrency prices are subject to high market risk and price volatility. You should invest only in projects and products you are familiar with and understand the associated risks. Carefully consider your investment experience, financial situation, investment objectives, and risk tolerance, and consult an independent financial advisor before making any investment decisions. This material should not be considered financial advice. Past performance is not a reliable indicator of future performance. The value of your investment may go down or up, and you may not recover your invested amount. You are solely responsible for your investment decisions. LBank is not responsible for any losses you may incur. For more information, please refer to our Terms of Use and Risk Warnings. Please also note that the data related to the above-mentioned cryptocurrency (such as its current real-time price) is sourced from third parties and is provided “as is” for informational purposes only, without any representation or warranty. Links to third-party websites are not under LBank’s control, and LBank is not responsible for the reliability or accuracy of such websites or their content.

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