Qual é o preço atual de Acurast?
O preço atual de Acurast é 0,1318 € com uma variação de 17,41% nas últimas 24 horas.
Acurast is a decentralized compute network that uses smartphones instead of data centers as its execution hardware. Developers submit serverless workloads, the network matches them to phones running the Acurast processor app, and the work executes inside the device's Trusted Execution Environment so that results can be verified and inputs stay confidential. The project describes itself as "the Real Decentralized Compute Network," and its documentation notes that phones ship with built-in TEEs and hardware security modules that the team argues compare favorably with commodity server hardware. ACU is the native token of the Acurast mainnet, a Substrate-based Polkadot parachain.
Official resources:
Acurast is unusually well documented on this point for a compute network. Its whitepaper, "Acurast: Decentralized Serverless Cloud," was submitted to arXiv in March 2025 and revised in January 2026, and lists six authors: Christian Killer, Alessandro De Carli, Pascal Brun, Amadeo Victor Charlé, Mike Godenzi and Simon Wehrli. Acurast's own blog publishes a post attributed to co-founder Alessandro De Carli, which confirms his role directly from the project.
The protocol is stewarded by the Acurast Association, which the documentation names as the entity committing to recurring security audits and which announced the network's airdrop program. Development moved through an incentivized testnet and a Canary network before mainnet, with the Canary token cACU convertible to mainnet ACU at a one-to-one ratio subject to a lock schedule. Acurast's FAQ states the incentivized testnet onboarded roughly 300,000 compute units.
The architecture separates three layers.
The consensus layer contains the Matcher and the reputation engine. The Matcher is the scheduler: it pairs advertised processor resources with developer requirements, supports several price discovery mechanisms including auctions and advertisements, and records the resulting agreement as a deployment. A deployment specifies the instructions to run, the scheduling parameters and the destination where output is delivered or persisted. The reputation engine updates processor scores so that reliable behavior is rewarded.
The execution layer holds the processor runtimes, namely the Acurast Secure Hardware Runtime and the Acurast Zero-Knowledge Runtime, along with a Universal Interoperability Layer whose modules let deployments interact natively with different ecosystems, including Web2 endpoints. The application layer is where the actual workloads live.
Payment works differently from most compute marketplaces. The documentation is explicit that compute costs are paid as transaction fees and that there is no direct reward flow from developers to processors. Instead, executing a deployment earns a processor a Deployment Execution Bonus, a weighting on its benchmark metrics that raises its share of rewards from the Staked Compute Pool and the Compute Pool in that epoch. Rewards therefore come from protocol inflation, weighted by measured contribution.
The documentation lists five functions: deployment fees submitted by developers, network transaction fees, rewards providing economic security through Staked Compute and Base Benchmark Rewards, collator rewards for block production, and cross-chain transfers of bridged instances.
Tokenomics are specified. Initial supply is 1,000,000,000 ACU with a fixed 5% annual inflation distributed to the Staked Compute Pool (70%), the Compute Pool (10%), the on-chain treasury (15%) and collators (5%). The docs state that only 6.5% was allocated to early backers, that close to 70% went to the community or community-supporting purposes, and that team and advisor allocations carry a six-month lock followed by 36 months of linear vesting. Governance runs on-chain through Polkadot's referenda pallets, funded by a treasury that replenishes itself from inflation.
Staking is the mechanism that ties the token to the hardware. Compute providers, called committers, stake ACU as collateral against a commitment to supply specific capacity for a period. Meeting the commitment earns rewards scaled by compute amount, stake size and chosen cooldown duration. Failing it triggers slashing. Delegators who hold ACU but no hardware can delegate to a committer, share the rewards net of a delegation fee, and share the slashing risk.
The hardware thesis is the core of it. Most decentralized compute networks aggregate servers or GPUs. Acurast aggregates consumer smartphones and leans on the secure enclaves those phones already contain, which gives it hardware-backed attestation and confidentiality on devices that were purchased for other reasons and consume comparatively little power.
The second distinctive choice is the reward architecture. Because processors are paid from inflation weighted by benchmarks and execution bonuses rather than by direct developer payments, developers get deterministic cost planning while providers get a smoother income stream that does not collapse when demand is thin. That is a deliberate trade: it decouples provider revenue from actual utilization, which is a strength during bootstrapping and a question mark at maturity.
Akash Network rents containerized workloads on conventional data-center hardware through a reverse auction, and providers are paid directly by tenants. io.net and Aethir aggregate GPUs for AI training and inference at data-center scale. Render is specialized around GPU rendering and inference. Nosana focuses on CI and AI jobs on Solana. All of them target machines that exist to be rented.
Acurast's differences are the device class, the trust model and the payment flow. Phone CPUs and NPUs are not competitive with server GPUs for large-scale training, so Acurast targets a different workload profile: APIs, automation, oracles, indexing, proof generation and smaller confidential inference. In exchange it gets hardware attestation as a native property rather than an add-on, and a supply base measured in consumer devices rather than racks.
Security rests on three legs. Hardware attestation is the first: workloads execute inside the phone's Trusted Execution Environment, so the network can verify that the expected code ran on genuine hardware, and the device owner cannot inspect the confidential inputs. Economic security is the second: Staked Compute puts collateral behind capacity commitments, and slashing penalizes committers, and proportionally their delegators, when commitments are broken. The reputation engine adds a longer-memory signal on top.
Third, Acurast publishes a dated audit table rather than a vague assurance. It lists a Monethic audit of the Acurast Substrate chain and pallets (October 2025), a Monethic audit of the Compute Pallet (March 2026), an audit of the ACU ERC20 token contract for EVM deployments by inference (October 2025), and a Compass Security penetration test of the Android processor app (March 2024). The Acurast Association states it will continue commissioning audits across components.
Decentralized physical infrastructure networks usually ask people to buy specialized hardware. Acurast asks them to use a device they already own, which changes the shape of the supply curve and lowers the barrier to becoming a provider. Combined with hardware attestation and a peer-reviewed style whitepaper, it is one of the more technically legible attempts to make verifiable and confidential compute a commodity. If enclave-backed mobile compute proves reliable enough for production workloads, the addressable supply is very large. That is the bet worth watching.
ACU is listed on centralized exchanges and is tradable on decentralized exchanges across the chains where it is deployed. The documentation is emphatic that where you buy determines which instance you receive, since ACU exists natively on the Acurast mainnet and as bridged versions on Ethereum, BNB Chain, Base and Peaq. If you intend to stake or vote, you need the native mainnet asset and may have to bridge.
Bridging between the native chain and Ethereum uses the Acurast HyperDrive bridge in the Hub. Movement between EVM chains uses LayerZero routes. Always check the contract address against the table in Acurast's documentation before approving a swap.
For native mainnet ACU, Acurast documents support for AirGap Wallet, SubWallet, Talisman and a Base wallet integration, with Ledger hardware support listed as not yet available at the time of writing. Native ACU uses 12 decimals, which is worth noting when entering amounts manually.
Bridged ACU on Ethereum, BNB Chain, Base or Peaq is a standard EVM token and works with any EVM wallet, ideally paired with a hardware device for larger balances. Staking and governance happen on the Acurast mainnet, so tokens held on an EVM chain or on an exchange are not earning staking rewards and cannot vote. Keep recovery phrases offline and confirm token contracts against the official documentation rather than search results.
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Leia o guia completo de paper tradingO preço atual de Acurast é 0,1318 € com uma variação de 17,41% nas últimas 24 horas.
O volume diário de negociação é 917 210 € representando uma variação de 191,23% nas últimas 24 horas.
A capitalização de mercado de Acurast é 48 884 489 €, ocupando a posição #286 globalmente.
A avaliação totalmente diluída (FDV) de Acurast é 135 438 187 €, calculada assumindo o fornecimento total de 1 027 849 478 ACU.
Em circulação: 370 987 661. Total: 1 027 849 478. Máximo: N/A.
Nas últimas 24 horas, Acurast foi negociado entre um mínimo de 0,1115 € e um máximo de 0,1307 €.