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View ChartCellframe (CELL) is a quantum-resistant layer-1 blockchain protocol built to support scalable cross-chain transfers, fog computing services, and a new class of low-level decentralised applications known as t-dApps. Described officially as a "post-quantum low-level distributed framework for intra-blockchain chains", Cellframe positions itself as infrastructure for the future Internet of blockchains. The network is written from scratch in plain C, which allows applications built on its SDK to run on hardware ranging from enterprise mainframes to low-power consumer devices. CELL is the native token of the ecosystem and exists across three standards: ERC-20 on Ethereum, BEP-20 on BNB Chain, and CF-20 on the Cellframe native chain. According to the official site, circulating supply is approximately 37,170,000 CELL against a total supply of 37,735,000 CELL, while maximum supply is listed as unlimited. The project has an all-time high of $13.19 recorded on 16 November 2021, and reached an all-time low of $0.02986 on 18 June 2026. Cellframe is listed with a CertiK rating of 4.1 and carries category tags for DeFi, Privacy, and Zero Knowledge Proofs.
Cellframe was founded by Dmitry Gerasimov, who is described as having a background in software development and cryptography. He is also referred to as CEO of Cellframe in AMA sessions and as Chief Technology Officer in the IQ.wiki entry. Co-founders include Mira Brezhinskaya and Evgeny Grishakov, while Sergey Sevantsyan is listed as Chief Executive Officer per IQ.wiki. The project lead regularly answers community questions through AMA sessions, including a classic session on 27 November and another on 7 May 2026. Additional associated names appearing in the RootData listing include the Founder & CEO at IBC Group, Vinny Lingham, Co-founder and Executive Chairman at Civic, and Minion M, Investment Manager at GBV.
Cellframe operates as a dual-layer sharded network in which the main blockchain, called Backbone, anchors a broader ecosystem of individual blockchain networks known as CellChains. Scaling is achieved by adding another CellChain whenever additional capacity is required, an approach the project describes as enterprise-level scalability. The protocol implements conditional transactions that enable secure service agreements between clients and providers, alongside multiparty computations and atomic swaps for instant cross-chain transactions. Security rests on variable post-quantum encryption, which supports the simultaneous implementation of multiple quantum-resistant signatures and permits the network to upgrade algorithms on the fly. Because the codebase is written in plain C, t-dApps built with the Cellframe SDK can execute on almost any hardware class. The network involves no mining, making it environment-neutral, and its conditional transaction mechanism is designed to keep transaction costs marginal even under load.
The central differentiator is quantum resistance. Cellframe frames quantum computers capable of breaking current blockchain cryptography as an imminent threat to every byte of data, and it addresses that threat with flexible post-quantum encryption that can be upgraded as quantum computing evolves, keeping the platform future-proof. A second differentiator is the t-dApp model, which pushes decentralised applications down to a low level so they can run on hardware from mainframes to smart refrigerators. Third, the dual-layer sharding and CellChain architecture offers a straightforward scaling path without sacrificing decentralisation. Fourth, the absence of mining makes the network sustainable and low-cost. Finally, interoperability through atomic swaps and the Cellframe Bridge allows CELL and services to move across chains, while the Cellframe Vote tool gives holders a governance channel.
CELL serves several functions within the ecosystem. It can be bridged from ERC-20 or BEP-20 form into native CF-20 CELL, which is the representation used on the Cellframe network. Holders can stake CELL to support network operations and can use it to start and operate a Master Node. The token also underpins participation in the broader Cellframe economy, including access to t-dApps, CellChains, fog computing services, and cross-chain transfers. Conditional transactions allow CELL and related assets to be used in secure service agreements between clients and providers. In addition, the Cellframe Vote tool gives the community a governance function tied to the ecosystem. Trading pairs include CELL/ETH, CELL/USDC, and CELL/DAI, alongside fiat conversion pairs for AUD, BRL, CAD, EUR, GBP, HKD, RUB, SGD, TWD, and KRW on Crypto.com.
The ecosystem is organised around Backbone, the main network whose live counters track blocks, transactions, and validators on the official site. Around it sit CellChains that can be added for scale, t-dApps built with the Cellframe SDK, and supporting products including the Cellframe Wallet for Windows, MacOS, Linux, and Android, the Cellframe Bridge, Cellframe Migrate, Cellframe Vote, Cellframe Explorer, staking, and Master Node tooling. Development activity is published through the project blog and code repositories on GitLab and GitHub. Recent publications include the Quantum-Resistant Blockchain Manifesto, a Cellframe Wallet update covering DEX, shared funds, and stability, and a blockchain guide with TPS comparisons. The team also published an official statement on 14 October 2025, reporting the identification and suppression of a large-scale scheme involving the issuance and circulation of illegal tokens.
Cellframe does not use mining. The network is explicitly described as environment-neutral because there is no mining involved, and t-dApps are designed to run on low-level hardware rather than energy-intensive rigs. Instead of proof-of-work, participation is organised around validators and Master Nodes. Users can stake CELL and start a Master Node to take part in securing and operating the network. Backbone displays live validator statistics, and the official site provides a Start Master Node tool alongside staking functionality. Prospective participants should review the official documentation and wallet setup guide before committing funds, since node operation and staking carry technical and market risks.
Because CELL exists on Ethereum, BNB Chain, and the native CF-20 network, holders should be deliberate about which standard they hold and use the official Cellframe Bridge or Cellframe Migrate tool when moving between them. The Cellframe Wallet, available for Windows, MacOS, Linux, and Android, is the project's own client and can be used to store CF-20 CELL and interact with staking and Master Node features. For ERC-20 and BEP-20 balances, a reputable self-custody wallet with support for those standards is appropriate. Always verify contract addresses before transacting: the ERC-20 contract is 0x26c8afbbfe1ebaca03c2bb082e69d0476bffe099 and the BEP-20 contract is 0xd98438889Ae7364c7E2A3540547Fad042FB24642. Keep seed phrases offline, avoid sharing private keys, and remember that cryptocurrencies are volatile, so independent research is essential before any exchange or investment decision.
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Thank you for your interest in BTCC. Currently, spot and futures trading services for CELL are not supported. As a leading digital asset platform, BTCC is committed to providing a secure and stable trading environment. We recommend completing your account registration and identity verification (KYC) to explore other premium assets and exclusive benefits available on BTCC.
As of right now, the live price of Cellframe (CELL) is A$0.051565. Its market price fluctuates in real time based on overall supply and demand, and you can check the updated CELL to USD rate at the top of BTCC’s price page. In terms of market scope, Cellframe records a 24h trading volume of A$232.909667K (reflecting total buying and selling activity over the last 24 hours), with a total market cap of A$1.485911M. Its current circulating supply stands at 28.6M out of a maximum supply cap of ∞.
The price volatility of Cellframe (CELL) is essentially driven by market supply and demand dynamics. Key factors behind its price movements include: 1) Global macroeconomic conditions and sentiment, such as Reserve Bank of Australia (RBA) or US Fed interest rate decisions; 2) Tokenomics, including the ratio of circulating supply (28.6M) 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, Cellframe (CELL) hit an all-time high (ATH) of A$18.775868 on 2021-11-16 07:40, representing the peak of market sentiment. Conversely, its all-time low (ATL) was recorded at A$0.04251 on 2026-06-18 14:50. 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 CELL 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 (A$232.909667K), as price breakouts accompanied by strong volume offer higher reliability.
Unlike spot trading where you can only profit from rising prices, BTCC’s CELLUSDT perpetual contracts support two-way trading. If you anticipate a price decline for Cellframe, simply log into your BTCC account with USDT margin available, navigate to the CELLUSDT 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 CELLUSDT 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: A$0.051565), you can practise opening/closing positions, adjusting leverage, and setting TP/SL for CELLUSDT with zero financial risk.
Trading Cellframe (CELL) 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 CELLUSDT, and review its live price (A$0.051565) 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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