Teledyne Labtech Leads Groundbreaking Welsh Space Cooling Project with Bangor University
September 25, 2025 | BUSINESS WIREEstimated reading time: 1 minute
Teledyne Labtech, a leading innovator in advanced electronic PCB solutions is spearheading a pioneering Welsh disruptive technology that could revolutionize thermal management in space electronics.
The project, titled Advanced Thermal Management for Space Electronics (ATMS), is a collaborative effort between Teledyne Labtech and Bangor University in Wales, supported by Airbus Endeavr - a joint initiative between Airbus and the Welsh Government. Its goal is to tackle one of the most critical challenges in spacecraft design: managing excess heat in the vacuum of space.
“In space, traditional cooling methods that are reliant on-air circulation, simply don’t work,” said John Priday, Chief Technical Officer of Teledyne Labtech. “Our ATMS project is developing scalable, lightweight, and efficient circuit board technology using synthetic graphite, which has the potential to transform the aerospace sector and supercharge the next stage of the space revolution.”
Unlike copper, which is currently used to conduct heat away from spacecraft components, synthetic graphite offers a lighter and potentially more effective alternative. Teledyne Labtech is focusing on enhancing conduction performance, while Bangor University, the School of Computer Science and Engineering, is advancing the material’s ability to radiate heat into space. The team at Bangor University is using ultrafast laser technology to etch microscopic textures onto the surface of synthetic graphite and other materials, significantly improving their thermal radiation capabilities.
Bangor University is very proud to be part of this incredibly exciting project; by modifying the surface of space-grade materials, we can dramatically improve their ability to emit thermal radiation, paving the way for the next generation of space technology. The implications of this work are profound. Many satellite microprocessors currently operate at only around 50% of their full capacity due to overheating risks. By solving this thermal bottleneck, the ATMS project could unlock higher processing speeds and enable more powerful, efficient spacecraft systems.
“We firmly believe that in our partnership with Bangor University, we’ve found the key to developing this transformative technology,” added Jak Bridges, Sales Manager. “We extend our sincere thanks to Airbus and the Welsh Government for their support in making this vision a reality.”
The ATMS project is scheduled to run until the end of 2026, culminating in prototype demonstrations that will showcase the technology’s potential for future space missions.
Testimonial
"In a year when every marketing dollar mattered, I chose to keep I-Connect007 in our 2025 plan. Their commitment to high-quality, insightful content aligns with Koh Young’s values and helps readers navigate a changing industry. "
Brent Fischthal - Koh YoungSuggested Items
High Density Packaging User Group Announces European Space Agency Membership
11/04/2025 | High Density Packaging User GroupHigh Density Packaging User Group (HDP) is pleased to announce that the European Space Agency (ESA) has become a member.
Nortech Systems Incorporated Earns AS9100 Certification for Monterrey, Mexico Facility
11/04/2025 | BUSINESS WIRENortech Systems, Incorporated, a leading provider of design and manufacturing solutions for complex electromedical devices and electromechanical systems, announced that its Monterrey, Mexico, facility has achieved AS9100:D certification.
PsiQuantum, Lockheed Martin Form Strategic Collaboration to Accelerate Quantum Computing for Aerospace and Defense
11/04/2025 | BUSINESS WIREPsiQuantum and Lockheed Martin have signed a memorandum of understanding (MoU) to accelerate the development of quantum computing applications in aerospace and defense.
Northrop Grumman Collaborates on AI-Designed Spacecraft Propulsion Element
11/03/2025 | Northrop GrummanNorthrop Grumman Corporation and Luminary Cloud are applying artificial intelligence (AI) to spacecraft propulsion with a new physics AI foundation model capable of rapidly designing a spacecraft thruster nozzle.
Aircraft Wire and Cable Market to surpass USD 3.2 Billion by 2034
10/30/2025 | Global Market Insights Inc.The global aircraft wire and cable market was valued at USD 1.8 billion in 2024 and is estimated to grow at a CAGR of 5.9% to reach USD 3.2 billion by 2034, according to recent report by Global Market Insights Inc.