IQM Quantum Computers designs and delivers superconducting quantum computers for real-world applications. The company offers a diverse portfolio including on-premise systems and cloud access to accelerate quantum advantage for research and industry. Their open hardware and software platform supports various qubit counts and error correction roadmaps.
Funding
$196.1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.





Founders
Product
Problem
Many industries face computational challenges in areas like simulation, optimization, and machine learning that exceed the capabilities of classical high-performance computing (HPC) systems. Access to quantum computing resources remains limited for both academic researchers and enterprise users, hindering innovation and the exploration of quantum algorithms.
Solution
IQM develops superconducting quantum computers designed for integration with HPC infrastructure, enabling users to tackle complex computational problems. The company's quantum processors are accessible through IQM Resonance™, a cloud service that provides a managed environment for quantum computing exploration, research, and innovation. IQM also offers IQM Spark™, a pre-installed quantum computer tailored for universities and research labs, facilitating hands-on learning and experimentation with quantum technology. IQM's open software architecture and focus on manufacturability aim to accelerate the development and deployment of fault-tolerant quantum systems.
Target Audience
The primary target audience includes academic researchers, enterprise users in industries such as battery chemistry, and high-performance computing centers seeking to leverage quantum computing for complex simulations and optimizations.
Features
- Superconducting quantum processors designed for HPC integration
- IQM Resonance™ cloud service providing access to advanced QPUs
- IQM Spark™ pre-installed quantum computer for research and education
- Open software architecture for customization and integration
- Focus on achieving high fidelities and scalable qubit counts
- Development roadmap towards fault-tolerant quantum computing systems with up to 1 million qubits