SkyWater Technology and QuamCore Partner to Develop Scalable Quantum Computing Controllers

Reuters
2025/11/06
SkyWater Technology and QuamCore Partner to Develop Scalable <a href="https://laohu8.com/S/IBGHD">Quantum Computing</a> Controllers

SkyWater Technology Inc. has announced a collaboration with QuamCore, a deep-tech startup specializing in superconducting quantum processor architecture. The partnership involves a multi-million-dollar contract focused on co-developing Single Flux Quantum (SFQ) devices to accelerate the advancement of scalable quantum computing. Leveraging SkyWater's U.S.-based semiconductor manufacturing capabilities and QuamCore's SFQ-based control technology, the collaboration aims to optimize superconducting fabrication processes for integrating digital control circuits with qubit arrays. The jointly developed SFQ technology is expected to enable ultra-low-power, high-speed control at cryogenic temperatures, significantly reducing cabling and power dissipation compared to conventional approaches. Key development milestones are anticipated over the next 12 to 18 months, including the fabrication and demonstration of cryogenic SFQ control chips.

Disclaimer: This news brief was created by Public Technologies (PUBT) using generative artificial intelligence. While PUBT strives to provide accurate and timely information, this AI-generated content is for informational purposes only and should not be interpreted as financial, investment, or legal advice. Skywater Technology Inc. published the original content used to generate this news brief via Business Wire (Ref. ID: 20251106236556) on November 06, 2025, and is solely responsible for the information contained therein.

免责声明:投资有风险,本文并非投资建议,以上内容不应被视为任何金融产品的购买或出售要约、建议或邀请,作者或其他用户的任何相关讨论、评论或帖子也不应被视为此类内容。本文仅供一般参考,不考虑您的个人投资目标、财务状况或需求。TTM对信息的准确性和完整性不承担任何责任或保证,投资者应自行研究并在投资前寻求专业建议。

热议股票

  1. 1
     
     
     
     
  2. 2
     
     
     
     
  3. 3
     
     
     
     
  4. 4
     
     
     
     
  5. 5
     
     
     
     
  6. 6
     
     
     
     
  7. 7
     
     
     
     
  8. 8
     
     
     
     
  9. 9
     
     
     
     
  10. 10