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QM

Quantum Machines

Quantum Machines develops quantum controllers that translate quantum algorithms into pulse sequences, enabling real-time processing and feedback for complex quantum experiments. Their technology addresses the challenge of high coding complexity and lengthy setup times in quantum research, allowing users to streamline workflows and achieve results significantly faster.

Tel Aviv, IsraelFounded 201815610K+ followers
Updated 4 months ago

Funding

$193M 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.

Funding rounds are not available yet.

Founders

Product

Problem

Quantum researchers face challenges in translating complex quantum algorithms into precise pulse sequences for quantum experiments, leading to high coding complexity and long setup times. Existing quantum control systems often lack the real-time processing and feedback capabilities required for advanced quantum experiments.

Solution

Quantum Machines provides a comprehensive quantum control stack that streamlines quantum research and accelerates the development of quantum computers. Their Quantum Orchestration Platform (QOP) translates quantum algorithms into pulse sequences, enabling real-time processing and feedback for complex quantum experiments. The OPX+ control system, along with the intuitive QUA programming language, reduces coding complexity and setup times, allowing researchers to focus on quantum science.

Target Audience

The primary customers are quantum computing vendors, HPC centers, quantum research labs, and experimental quantum physicists working with various qubit technologies.

Features

  • OPX+ control system for pulse-level control and real-time processing
  • QUA programming language for simplified quantum protocol development
  • Support for various qubit technologies, including superconducting, defect centers, quantum dots, and neutral atoms
  • Integrated hardware and software solution for streamlined workflow
  • Advanced FPGA capabilities without low-level coding
  • Cryogenic control systems for high-fidelity qubit control
  • Multi-qubit multiplexed control and readout
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