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View ChartNesa (NES) is a Layer-1 blockchain network purpose-built for privacy-preserving artificial intelligence inference. It positions itself as the largest decentralized AI platform and ecosystem, backed by a privacy-first AI Layer 1. Its core mission is to make AI inference private, verifiable, and trustless, allowing users to run powerful AI models — spanning language, vision, and beyond — across a decentralized network.
At the heart of Nesa's technology is Equivariant Encryption, which enables AI systems to compute directly on encrypted data. This means sensitive information can be used in AI workloads without ever being exposed. Nesa combines AI inference with on-chain privacy through zero-knowledge technology, and it settles verifiable inference results on-chain via its queryStream mechanism, which can also stream results to external networks such as Ethereum.
The NES token is the native asset of the network. A total of 1,000,000,000 NES was created at genesis when the mainnet launched on May 9, 2026. Nesa operates on the Ethereum platform and also has contracts on BNB Smart Chain, while functioning as its own Layer-1 blockchain with both Cosmos and EVM explorer flavours. The project is in an active growth phase, having completed a contract swap on ETH and BSC and continuing to expand its exchange presence and decentralized AI application ecosystem.
Nesa was founded by a team of entrepreneurs and researchers. The co-founders include Patrick Colangelo, who serves as Co-Founder and CEO. He is a Harvard graduate with experience in software and hardware development and previously founded Black Diamond Capital Investors. Additional co-founders include Megan Knab and Daniel Marin.
The founding team developed Nesa to build a privacy-focused project. The origin story traces back to a group of friends working on a project that relied on the industry's top centralized large language model to run queries, which produced best-in-class results each day — an experience that ultimately inspired the creation of a decentralized, privacy-first alternative.
Nesa is built by a team of award-winning researchers now powering some of the largest companies on earth. The Nesa Research team has received more than 70 awards, underscoring the project's strong research foundation.
Nesa operates as a Layer-1 blockchain that executes AI inference in a private, verifiable, and trustless manner. Developers publish data and inference requests on the network by submitting PayForQuery transactions. Each PayForQuery transaction consists of the evolving request, the evolving size, the identity of the sender of the data to be made available for, the namespace, and a signature. Every transaction is split into two parts: the evolution (data plus namespace) and the executable payment transaction, which acts as a commitment to the data. Both parts are placed into a block within the appropriate namespace. Block data is extended using erasure coding and then Merkelized into a data root commitment included in the block header.
The network uses queryStream, Nesa's method to stream verified transaction data from a query inference request to Nesa's Settlement Layer for registry on the blockchain. With Nesa's interoperable structure, users can elect to stream to another blockchain network such as Ethereum. The module flows through attestation and orchestrators to the queryStream P2P Network, then into a dedicated Relayer that streams the query result to Nesa's Settlement Layer or to Ethereum for settlement. The queryStream contract is then formalized on Nesa, executing the model inference end-to-end.
Nesa employs a standard gas-price prioritized mempool in which transactions with higher fees are prioritized by validators. Fees comprise a flat fee per transaction plus a variable fee based on the size of each evolve in the transaction. Computations for AI model inference are transparent and subject to scrutiny by the network of validators and their delegators through an efficient attestation mechanism. If dishonest activity such as data withholding is suspected and two-thirds of Nesa validators are implicated, the system is designed to recognize malfeasance and trigger actions such as slashing to maintain network integrity. Any AI model data included in Nesa can be independently verified on Ethereum using queryStream, with validation results backed by cryptographic proofs.
Nesa's primary differentiator is its Equivariant Encryption technology, which allows AI systems to compute on encrypted data. This enables users to leverage sensitive information in AI workloads without exposing it, addressing one of the biggest barriers to enterprise AI adoption. By combining AI inference with on-chain privacy through zero-knowledge technology, Nesa delivers a level of confidentiality and verifiability that traditional centralized AI providers cannot match.
Nesa also stands out through its verifiable settlement architecture. The queryStream mechanism allows AI model inference proofs and PayForQuery transaction data to be published to Nesa, while any AI model data can be independently verified on Ethereum with cryptographic proofs. This creates a trustless environment where AI outputs can be audited and validated.
The platform's interoperability is another key strength. Users can elect to stream query results to another blockchain network such as Ethereum, and the documentation references ZK rollups employing queryStream. Nesa's scalable namespace-specific storage supports the potential for tens of thousands of model parameters to be processed per second due to efficient use of erasure coding and Merkle tree data structures. Combined with its service to Fortune 500 enterprise customers in retail, healthcare, and IT, Nesa bridges the gap between enterprise-grade AI needs and decentralized, privacy-preserving infrastructure.
The NES token serves multiple essential functions within the Nesa ecosystem. It is used to pay fees for processing transactions, storing data, and submitting inference requests on the network. For all AI inference transactions on Nesa, NES is the default gas token, making it integral to every operation on the chain.
NES is also used for staking. Users can run validator and miner nodes on the network by staking NES tokens. Miners are required to stake a portion of NES tokens to maintain a vested interest in the honest and efficient processing of AI queries on behalf of dApp users. This staking mechanism aligns incentives across the network and supports the security and reliability of AI inference.
Governance is another core utility. NES holders — not just stakers — can propose and vote on governance proposals to change a subset of network parameters. Nesa will publicly list both the changeable and non-changeable parameters and their values of the system to vote on. Additionally, starting at Genesis, Nesa's community pool receives 2% of all NES Layer block rewards, and NES stakers may vote to fund ecosystem initiatives. This gives the community direct influence over the protocol's evolution and resource allocation.
Nesa is fostering a rapidly growing set of exclusive, on-chain Decentralized AI applications (DAIs) and enables end-users to participate in their support. These applications leverage Nesa's privacy-preserving inference layer to deliver AI capabilities in a decentralized manner. The platform serves Fortune 500 enterprise customers across industries such as retail, healthcare, and IT, demonstrating real-world adoption beyond the crypto-native audience.
To support developers, Nesa provides a suite of tools including the Nesa AI SDK, which simplifies submission of inference requests via the protocol; Nesa Explorers in both Cosmos and EVM flavours, bringing visibility into network runtime and performance; and Nesa Miner Software and Command Line Tools, which allow community developers to participate in running the ecosystem.
The ecosystem also benefits from interoperability features that let users stream query results to other blockchain networks such as Ethereum, and documentation references ZK rollups employing queryStream. Nesa has completed a contract swap from the old contracts on ETH and BSC to new contracts on ETH and BSC, and trading across exchanges resumed on Thursday, September 10. With 94 active trading markets reported, the project continues to expand its reach and liquidity footprint.
Nesa does not use traditional proof-of-work mining. Instead, the network relies on a Proof-of-Stake (PoS) consensus protocol, and participants can contribute to the ecosystem by running validator and miner nodes through staking NES tokens. Miners are required to stake a portion of NES tokens, which gives them a vested interest in the honest and efficient processing of AI queries on behalf of dApp users.
To get started, community developers can use Nesa Miner Software and Command Line Tools, which are designed to allow participation in running the ecosystem. Validators on the network help validate PayForQuery transactions using a Byzantine Fault Tolerant (BFT) signature mechanism and are subject to attestation and potential slashing if dishonest activity is detected.
Staking NES also plays a role in governance, as stakers may vote to fund ecosystem initiatives through the community pool. Node operators should review the official documentation at docs.nesa.ai for detailed technical requirements and setup instructions before participating.
Securing NES tokens begins with choosing a reputable self-custody wallet that supports the networks on which NES operates, including Ethereum, BNB Smart Chain, and the Nesa Layer-1. Hardware wallets are strongly recommended for holding significant amounts, as they keep private keys offline and protected from online threats. Always verify contract addresses through official Nesa channels before interacting with any token contract, especially following the contract swap from old to new contracts on ETH and BSC.
Practice strong operational security: never share your seed phrase or private keys with anyone, enable two-factor authentication on any associated accounts, and be cautious of phishing attempts that impersonate official Nesa communications. Bookmark the official website at nesa.ai and the official X account at twitter.com/nesaorg to avoid fraudulent links.
For users participating in staking or running nodes, ensure that validator and miner software is downloaded only from official sources. Keep all software and firmware up to date, and consider using separate wallets for staking versus long-term holding. As with any crypto asset, only invest what you can afford to lose, and stay informed about network developments through official documentation and announcements.
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TradeAs of right now, the live price of Nesa (NES) is ₹15.747576. Its market price fluctuates in real time based on overall supply and demand, and you can check the updated NES to USD rate at the top of BTCC’s price page. In terms of market scope, Nesa records a 24h trading volume of ₹20.03865Cr (reflecting total buying and selling activity over the last 24 hours), with a total market cap of ₹459.905593Cr. Its current circulating supply stands at 28.86Cr out of a maximum supply cap of ∞.
The price volatility of Nesa (NES) is essentially driven by market supply and demand dynamics. Key factors behind its price movements include: 1) Global macroeconomic conditions and sentiment, such as RBI or US Fed interest rate decisions; 2) Tokenomics, including the ratio of circulating supply (28.86Cr) to max supply (∞), as well as token unlocks and burn mechanisms; 3) Fundamental developments, such as ecosystem expansion, on-chain activity, and core protocol upgrades; and 4) Derivatives market dynamics, including leverage battles and liquidation cascades in perpetual contracts.
Looking at its historical price performance, Nesa (NES) hit an all-time high (ATH) of ₹34.497384 on 2026-06-24 12:00, representing the peak of market sentiment. Conversely, its all-time low (ATL) was recorded at ₹0.271727 on 2026-08-24 15:50. Note that historical highs and lows reflect past performance only and do not guarantee future price trends; investment decisions should always align with live market conditions and your personal risk tolerance.
When trading NES futures on BTCC, technical chart analysis begins with identifying key support and resistance levels on 1D and 4H charts using historical price pivots. Next, apply MA/EMA indicators to gauge trend directions, alongside RSI (values above 70 indicate overbought conditions, while below 30 suggest oversold levels). Always validate breakout signals with the 24h trading volume (₹20.03865Cr), as price breakouts accompanied by strong volume offer higher reliability.
Unlike spot trading where you can only profit from rising prices, BTCC’s NESUSDT perpetual contracts support two-way trading. If you anticipate a price decline for Nesa, simply log into your BTCC account with USDT margin available, navigate to the NESUSDT pair, set your desired leverage and Take-Profit/Stop-Loss levels, and click "Sell/Short". Once the price drops to your target, close your position to lock in profit from the price difference.
Yes. BTCC offers flexible, high-tier leverage options for NESUSDT perpetual futures, providing up to 500x leverage (maximum leverage limits may vary depending on liquidity). While leverage boosts capital efficiency by allowing you to control larger position sizes with less margin, it also amplifies liquidation risks proportionately. BTCC strongly advises using Stop-Loss orders to strictly manage risk when trading with high leverage.
Beginners and traders testing new strategies can switch to BTCC's "Demo Trading" mode with a single click on the App or Web interface. The demo account comes pre-loaded with risk-free virtual funds (such as 100,000 USDT). Powered by live market prices (current price: ₹15.747576), you can practice opening/closing positions, adjusting leverage, and setting TP/SL for NESUSDT with zero financial risk.
Trading Nesa (NES) on BTCC requires just 4 simple steps: 1) Register a BTCC account and complete basic Identity Verification (KYC); 2) Buy USDT using fiat via credit card/express payment, or deposit USDT/BTC directly from an external wallet; 3) Navigate to the Futures section, search for NESUSDT, and review its live price (₹15.747576) and chart; 4) Select your margin mode and leverage, choose "Buy/Long" or "Sell/Short" based on your market outlook, set TP/SL orders, and confirm your trade.
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