D-Wave Quantum Announces Strategic Development Initiative for Advanced Cryogenic Packaging

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  • D-Wave Quantum Inc. embarks on a strategic initiative to scale quantum processor development through advanced cryogenic packaging.
  • The project taps into NASA JPL’s superconducting interconnect processes and aims to accelerate the evolution of both annealing and gate-model quantum systems.
  • Upgrades to D-Wave’s packaging and PCB fabrication capabilities are expected to support multichip scaling and next-generation quantum computing architectures.

PRESS RELEASE – D-Wave Quantum Inc. (NYSE: QBTS) (“D-Wave”), a leader in quantum computing systems, software, and services, announced a new strategic development initiative focused on advanced cryogenic packaging. Designed to advance and scale both gate model and annealing quantum processor development, the initiative builds on D-Wave’s technology leadership in superconducting cryogenic packaging and will expand the company’s multichip packaging capabilities, equipment, and processes. By bolstering its manufacturing efforts with state-of-the-art technology, D-Wave aims to accelerate its cross-platform technology development efforts while maintaining and expanding fundamental components of its supply chain.

As part of this initiative, D-Wave is leveraging deep expertise and processes at the NASA Jet Propulsion Laboratory (“JPL”), a research and development lab federally funded by NASA and managed by Caltech. Harnessing JPL’s superconducting bump-bond process, D-Wave has demonstrated end-to-end superconducting interconnect between chips, work that D-Wave expects will serve as an important foundation for scaling both D-Wave’s annealing architectures and its fluxonium-based gate-model architectures. D-Wave believes that superconducting bump bonds will be key to the scalable control of fluxonium and to interconnectivity in multichip quantum processor architectures. D-Wave is also acquiring equipment and developing processes with a goal to increase circuit densities in its pioneering superconducting printed-circuit-board (“PCB”) manufacturing, required for both scaling to larger processors and supporting analog-digital quantum computing technology.

“Scaling both annealing and gate-model quantum computers requires high performance packaging,” said Dr. Trevor Lanting, chief development officer at D-Wave. “We believe this strategic initiative will allow us to further extend our leadership position in quantum systems technology development and support our exciting and aggressive product roadmap on the path to 100,000 qubits.”

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Packaging quantum processors involves unique and demanding requirements, including: compatibility with ultra-low temperature operation, extremely low magnetic fields, and fully superconducting interconnects with no interruptions in superconductivity all the way from on-chip circuitry through to external control wiring. D-Wave’s differentiated solution encompasses cryogenic compatible mechanical and electromagnetic design, regularly achieves lower qubit temperatures than most in the industry, and supports coherence times that meet the requirements for error-corrected gate-model quantum computing technology.

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MENTIONED IN THE ARTICLE

D-Wave Quantum
CompanyUnited States · 101-500 FTEs

D-Wave Quantum is a pioneering dual-platform quantum computing company that partners with aerospace organizations to solve complex logistical, defense, and satellite challenges. Founded in 1999, the company’s quantum annealing technology is utilized by industry leaders like Lockheed Martin to optimize aircraft networks, improve manufacturing efficiencies, and support critical national security initiatives.

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NASA
InvestorUnited States · 10001+ FTEs

The National Aeronautics and Space Administration (NASA) is the U.S. government agency driving pioneering research and technological development in both atmospheric flight (aeronautics) and space exploration (astronautics). NASA acts as a research organization, utilizing advanced wind tunnels, supercomputing, and flight test laboratories to advance aircraft aerodynamics, propulsion, and materials, while simultaneously involved in the design, construction, and operation of launch vehicles and spacecraft for deep space exploration. Through its aeronautics research directorate, the agency works to improve the safety, efficiency, and environmental impact of aviation, whereas its space programs focus on developing cutting-edge flight systems, robotic explorers, and human transportation capabilities.

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California Institute of Technology
UniversityUnited States · 1001-5000 FTEs

The California Institute of Technology, situated in Pasadena, California, is a private research university. It has played a crucial role in numerous contemporary scientific breakthroughs and stands alongside a select few technology institutes in the United States that prioritize teaching in pure and applied sciences.

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