UK Space Agency in partnership with ADS Group, Awards IceMOS Technology Part of £300,000 in Prestigious Funding for Advancements in Radiation Tolerant Power Electronics
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IceMOS Technology Uniquely Positioned to Continue
Developments in Radiation-Tolerant High-Voltage Superjunction MOSFET
Transistors to Advance UK Space Exploration and Supply Chain Advantages
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Company Drives Next-Generation of Commercialized Products for
Efficient Data Centers, EV Fast Charging and AI-enabled Cloud Services
Paradise Valley, Arizona, June 14, 2023 - IceMOS Technology Corporation today announced the UK Space Agency in partnership with ADS, awarded it a project to further develop a new breed of power transistors for space applications through the Space Technology Exploitation Programme (STEP). The IceMOS Technology manufacturing center of excellence located in Belfast, Northern Ireland, is one of only three companies selected to accelerate development in the UK space exploration and supply chain.
“With this award IceMOS Technology
is uniquely positioned to accelerate advances in the UK-space program by making
dramatic improvements in high-voltage power radiation-tolerant transistors,” said
Samuel J. Anderson, IceMOS Technology founder and chairman. “It is an honor to
be one of only three companies selected to participate in this prestigious program
to enhance UK space capability by developing this leading-edge technology that
can lower costs and significantly improve overall systems performance.”
"Creative
talent and technical space expertise can be found across the length and breadth
of the UK. These projects, delivered in partnership with ADS, are brilliant
examples of that from Northern Ireland's growing space sector. They will help
catalyse investment, create jobs, and develop new capabilities within the space
supply chain,” said Dr. Paul Bate, Chief Executive at the UK Space Agency.
The IceMOS rad-tolerant power
transistor will incorporate the silicon carbide engineered drain substrate to
take advantage of the low on-resistance performance from WBG materials which
have the potential to revolutionize semiconductor manufacturing for a broad set
of applications from power electronics to quantum technology.