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Buy compute credits and solve problems classical hardware can't
Buy compute credits and run them on a quantum processor, or use a prebuilt solver from the open marketplace. Pay only for the time you use.
Credits work like a commodity. Quip Network's spot clearinghouse matches buyers and sellers in real time, so you pay the going rate for compute, not a flat reservation fee.
No reservations, no $30K minimums. Quip Network resells idle quantum compute from partner providers like D-Wave, on demand.
Resell excess compute capacity at spot rates
Run a node on what you already have. Quantum processors, GPUs, CPUs, ASICs, and exotic platforms like neuromorphic and thermodynamic computers all earn QUIP.
Consumers buy your idle quantum capacity at spot rates. Classical nodes prep data for those machines and independently verify their outputs, so every result the network pays is checked.
Your compute solves problems people actually need: drug simulation, logistics, portfolio optimization, fraud modeling. The energy you spend earns directly from paying customers.
Earn more revenue and save on costs with state-of-the-art solvers for finance, logistics, manufacturing, and more
Quip Network is built for the workloads where quantum compute matters most: portfolio allocation, risk and fraud modeling, fleet routing, manufacturing scheduling, and energy reduction in AI training.
Your edge stays yours. Quip Network's enterprise layer keeps your data, your algorithms, and the fact that you're running quantum at all off the open network.
Quip Network's quantum-resistant wallets wrap MetaMask, Ledger, and Safe with a cosigner that protects assets from future quantum threats. Over 20,000 wallets are already deployed.
Get paid to solve impossible problems
Roughly 18,000 quantum researchers exist in the world. If you're one, your work is locked at a government lab, a manufacturer, or unpaid at a university. Quip Network pays you every time your solver runs.
We need quantum algorithm designers, but also classical developers for data pipelines, node tuning, protocol work, and front-ends.
The protocol is open source. Algorithms, node tuning, and protocol proposals all happen in the open, so the work compounds across the community instead of getting locked behind one institution.
Quantum computers can solve unsolvable problems
but at $20M per machine, the cost and complexity prices out most users
Access and Contribute to the Shared Quantum Network
Build Onchain Apps for Quantum Advantage
- Use Quip’s quantum miners for quantum computing jobs offering AI training, arbitrage, key recovery, hash mining, intent solving, and more
- Use Quip’s SDKs for simple post-quantum encryption
Mine QUIP with Classical & Quantum Processors
- Run a Quip node on CPUs, GPUs, ASICs, or QPUs to execute jobs for the network and earn QUIP
- Slice data into smaller graphs, embed graphs on limited chip architectures, or run algorithms directly
Benefit from Quantum Compute
- Quantum computers have diverse applications across finance, distributed computing, logistics, AI, science, and engineering
- Don’t reinvent the wheel to take advantage of quantum, let us help you scale quickly
We turn underutilized compute resources into a shared, verifiable network anyone can access
A single universal compute credit
Access unified compute across all processors with a single QUIP credit, simplifying complexity and reducing friction.
Monetize idle quantum hardware
Turn your excess compute capacity into revenue by joining the Quip network and executing jobs for users worldwide.
No expertise required
Our SDK abstracts quantum complexity, letting developers build quantum apps without deep domain knowledge.
Post-quantum asset protection
Wrap your existing workflow with a Quip firewall contract and get access to the network with quantum-safe encryption.
For Consumers
- Solve problems classical hardware can't on quantum processors from partners like D-Wave
- Compute marketplace coming soon. Get on the list for early access when it opens.
For Developers
- Read the protocol docs and explore the open-source codebase on GitHub
- Propose new algorithms, subnets, or protocol improvements on the research forum
For Operators
- Run a testnet node on CPUs, GPUs, ASICs, or QPUs
- Earn QUIP for participating today, resell excess capacity at spot rates when mainnet launches
For Enterprises
- Pilot quantum workloads for finance, logistics, manufacturing, fraud modeling, and more
- Keep your data, algorithms, and usage private on the enterprise tier
The moment when quantum computers will be able to steal all your keys is closer than it seems
Soon quantum computers will show unequivocal supremacy by breaking the most commonly used cryptography
Wrap your existing workflow with the firewall contract and access the network
Where we are today
Quip Network is live in testnet with real users protecting real assets.
20,000+ Quantum-resistant wallets deployed
$1M+ Quantum-protected value on chain
500+ Active testnet nodes
160 PFLOPS Peak compute solving useful work
FAQ
What is Quip Network?
Quip Network combines two independent but connected layers:
- Compute-Consensus Layer. A blockchain where proof of useful work solves real optimization problems.
- Asset Layer. Post-quantum security for the wallets and contracts you already use.
These layers can be used together or separately, but they share the same native token (QUIP) and validator/miner structure.
Is Quip Network a blockchain?
Yes. The Compute-Consensus Layer is a blockchain whose proof of useful work (PoUW) solves real optimization problems instead of arbitrary hashes. The Asset Layer sits on top of existing chains, including Ethereum (EVM), Solana (SVM), and Bitcoin, to add post-quantum protection to the wallets and contracts you already use.
What makes Quip Network different from traditional proof-of-work blockchains?
Traditional proof-of-work burns energy on arbitrary hash grinding. Quip Network's proof of useful work (PoUW) does the same job of proving availability and securing the chain, but the work itself is a structured compute job (optimization, simulation, ML workloads) whose output is also sold to paying customers.
Same energy spend, two simultaneous payoffs: chain security and real economic output. Roughly 300x less energy than traditional PoW for results that would otherwise require dedicated supercomputing.
What is the Compute-Consensus Layer?
It is the blockchain layer of Quip Network where miners compete by solving real optimization, simulation, and search problems. The work secures the chain and produces useful answers. Buyers purchase compute credits to have problems solved, miners earn QUIP for solving them.
How do quantum-resistant wallets work?
Quip Network's quantum-resistant wallets wrap your existing wallet (MetaMask, Ledger, Safe) with a cosigner that adds a quantum-resistant signature to every transaction. The network requires both your classical signature and the quantum-resistant cosignature to be valid, so even if a quantum attack breaks your classical key, any unauthorized transaction gets rejected. Already deployed on Ethereum, Solana, and Bitcoin.
What is the QUIP token?
QUIP is the network's compute credit and incentive token. Users pay transaction and network fees in QUIP. Operators earn QUIP for running nodes and solving proof of useful work. The more demand for quantum compute on the network, the more value flows into the token.
When will quantum computers break current cryptography?
Nobody knows for certain, but the trajectory is measurable. Quip Network estimates a roughly 10% probability of a cryptographically-relevant quantum computer by March 2028, based on a line-of-best-fit through publicly-available specs across the major quantum platforms. For institutions holding meaningful balances on chain, that probability is already large enough to act on. Track the live estimate at quantumdoomclock.com.
What problem does Quip Network solve?
Traditional proof-of-work burns energy on arbitrary hashes with no external value, and today's cryptography will break once quantum computers reach supremacy.
Quip Network redirects proof of work toward real optimization, simulation, and search problems so the network produces useful answers as it secures itself, and its Asset Layer wraps existing wallets and contracts in post-quantum encryption so keys stay safe even after quantum supremacy.