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KQ

Kelvin Quantum

Kelvin Quantum designs and manufactures cryogenic-capable integrated circuits (Cryo-ICs) and electronic systems for quantum computing hardware. Our solutions enable reliable operation of control and readout electronics within extreme cryogenic environments, improving signal integrity and measurement precision.

Glasgow, United KingdomFounded 20252200+ followers
Updated 4 months ago

Funding

Funding not disclosed

C
Funding rounds are not available yet.

Founders

Product

Problem

Quantum computing systems require specialized electronic components that can operate reliably within extreme cryogenic environments. Traditional electronics face performance degradation and failure at these low temperatures, hindering the scalability and efficiency of quantum hardware development.

Solution

Kelvin Quantum designs and manufactures cryogenic-capable integrated circuits (Cryo-ICs) and electronic systems engineered for operation from room temperature down to deep cryogenic levels. Our solutions integrate essential control and readout electronics directly within the cryogenic infrastructure, significantly improving signal integrity, reducing power consumption, and minimizing noise. This approach streamlines system architecture and enhances measurement precision, enabling quantum hardware developers to overcome critical performance bottlenecks. By providing robust, high-performance cryogenic electronics, Kelvin Quantum accelerates the path to commercially viable, large-scale quantum computing platforms.

Target Audience

Our primary customers are quantum hardware manufacturers and research institutions developing quantum computing systems that require specialized electronic components for operation in cryogenic conditions.

Features

  • Cryogenic Integrated Circuits (Cryo-ICs) designed for operation across a wide temperature range, including deep cryogenic environments.
  • Portfolio includes DACs, ADCs, RF mixers, and amplifiers tailored for quantum applications.
  • In-cryogenic electronic systems for direct readout and control of on-chip quantum devices.
  • Enhanced connectivity, reduced energy consumption, and rapid data processing capabilities within cryogenic systems.
  • Cryogenic structural components and electronic tools, such as sample mounts, RF switches, and specialized cabling, for refrigeration system integration.
  • Expertise in low-power integrated circuit design for demanding quantum environments.
  • Solutions designed to improve signal-to-noise ratio and overall system performance in quantum computing hardware.
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