
Qubic launches Oracle Machines on mainnet, enabling on-chain access to real-world data feeds without code.
Author: Akshat Thakur
February 22, 2026 — Qubic launches Oracle Machines on mainnet, enabling users to access real-world data such as crypto price feeds directly on-chain without writing code. The feature integrates external data queries into Qubic’s native consensus layer.
High Signal Summary For A Quick Glance
Qubic TickChain ױ
@anhnt979
@_Qubic_ 🔥 OM is officially live! Now it’s time for $Qubic to show the world something truly unprecedented. 🚀 A new era has begun… 💫
Oracle Machines are live on Qubic mainnet. For the first time, anyone can query real-world data directly on-chain. Price feeds from Binance, MEXC, Gate io, pulled through decentralized oracles and verified by quorum consensus. No code required. The Qubic Net Toolkit handles https://t.co/dihVUy9ben
12:47 AM·Feb 22, 2026
Digital Merchant | qupay 📱
@Damsa_Jr
@_Qubic_ One of the reasons why we continue to build on @_Qubic_ – Decentralized intelligence at scale.
Oracle Machines are live on Qubic mainnet. For the first time, anyone can query real-world data directly on-chain. Price feeds from Binance, MEXC, Gate io, pulled through decentralized oracles and verified by quorum consensus. No code required. The Qubic Net Toolkit handles https://t.co/dihVUy9ben
08:50 PM·Feb 21, 2026
ATLAM ױ
@NatyAtlam
@_Qubic_ Amazing! Now anyone can send real-world queries and get verified data straight onto Qubic. 🚀
Oracle Machines are live on Qubic mainnet. For the first time, anyone can query real-world data directly on-chain. Price feeds from Binance, MEXC, Gate io, pulled through decentralized oracles and verified by quorum consensus. No code required. The Qubic Net Toolkit handles https://t.co/dihVUy9ben
04:05 PM·Feb 21, 2026
Qubic is a Layer 1 blockchain designed to combine scalable infrastructure with artificial intelligence capabilities. The network uses a Useful Proof-of-Work model alongside a quorum-based consensus system involving 676 validators known as Computors.
The protocol has focused on enabling decentralized compute and feeless transactions while supporting AI-oriented applications. Its native token, QUBIC, is used for governance, network incentives, and operational costs.
Oracle Machines extend Qubic’s architecture by embedding data oracles directly into the protocol, removing the need for external oracle providers and allowing data verification through the network’s own consensus.
Qubic launches Oracle Machines with a no-code interface that allows users to query real-world data through a desktop toolkit. Users can select data sources, choose market pairs, define parameters, and submit requests directly to the network.
Initial integrations include price feeds from exchanges such as Binance, MEXC, and Gate.io. Queries are processed and validated by the network’s Computors, with results returned on-chain after consensus verification.
The feature is designed to reduce development complexity and expand access to on-chain data for non-technical users.
Key milestones in Qubic’s AI blockchain launch and Oracle Machines rollout
Qubic officially launches its ternary-based AI blockchain, introducing feeless transactions and a new architecture optimized for AI execution.
Initial Oracle Machines go live on mainnet in testing mode, enabling early real-world data queries and integration experiments.
Qubic publishes its formal announcement highlighting Oracle Machines’ role in bringing verifiable real-world data onto the blockchain.
An internal all-hands recap confirms strong early adoption, with Oracle Machines processing more than 11,000 successful data queries.
Qubic releases a public toolkit guide and confirms Oracle Machines are fully live, enabling developers to begin building integrations.
Community engagement and usage metrics continue rising as Oracle Machines gain traction across early adopters and developers.
Qubic launches Oracle Machines using its quorum consensus system to verify external data before it is recorded on-chain. Each query is validated by the majority of the network’s Computors to ensure data integrity.
The system processes queries in short intervals, with responses finalized in seconds after validation. A small amount of QUBIC is burned per query, creating a deflationary mechanism tied to network usage.
This design aims to provide trustless data feeds without relying on centralized oracle networks.
The rollout includes an open-source toolkit that allows users to interact with Oracle Machines through a desktop application. The toolkit supports wallet connectivity, query configuration, and network access.
Developers can also integrate Oracle Machines into applications using provided documentation and repositories. The initial release includes a price oracle and a mock oracle for testing environments.
The team will add more data sources and integrations over time as adoption increases.
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