Diraq and Dell Have Partnered for Quantum Computing

The companies have launched a collaboration to integrate quantum processors with high-performance classical hardware.

Updated on Sept. 21, 2026 in Quantum Computing

Isometric editorial illustration of a modular quantum processor unit with gold lattice core and copper cooling components.
Diraq and Dell Technologies have launched a partnership to integrate quantum processors with high-performance classical hardware for logistics and research applications. AI Illustration. Upload story photo >

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Diraq and Dell Technologies have formed a partnership to blend quantum processors with classical high-performance computing. The collaboration seeks to create orchestration layers that manage complex tasks across both system types.

Why it matters

This integration enables low-latency communication between classical servers and quantum hardware, a crucial step for developing practical applications in logistics and drug discovery.

Diraq uses modified silicon transistors to store quantum information in qubits, with plans to integrate millions of qubits onto a single chip. The setup relies on co-locating classical servers and quantum hardware via high-speed networking.

The players

Diraq

A global quantum computing firm that operates facilities in Sydney, Melbourne, Palo Alto, Los Angeles, and Chicago.

Dell Technologies

A multinational technology company specializing in high-performance computing hardware and enterprise solutions.

The details

The companies have deployed a high-performance computing cluster in a Sydney laboratory to test task orchestration between classical and quantum operations. This framework is designed to allow future support for quantum error correction by translating workloads into optimized sequences.

Timeline

  1. Diraq and Dell announced their collaborative efforts on September 21, 2026.

The Tech Race

This collaboration reflects a broader industry shift toward hybrid computing, mirroring the architectural goals of the IBM Quantum System Two. It signals a move away from isolated quantum experiments toward deeply integrated systems that leverage existing classical infrastructure.

While currently focused on research and hardware orchestration, this collaboration could eventually lead to faster breakthroughs in complex fields like drug discovery and logistics. Users may see these advances reflected in improved software performance and optimization tools.

The takeaway

Hybrid computing represents a critical milestone in making quantum power accessible for complex, real-world industrial tasks. By optimizing the link between classical and quantum systems, developers can move closer to solving problems that currently exceed the limits of traditional hardware.

Further reading

Learn more about the latest innovations in Quantum Computing.

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Do you believe the development of quantum computing will lead to faster or better everyday technologies?