Wise Integration and Navitas Partner to Advance GaN and SiC Power Solutions for AI Datacentres

29 September 2026 | NEWS

The collaboration combines Wise Integration’s digital power-control capabilities with Navitas’ GaN and SiC technologies to develop compact, high-efficiency power systems for AI infrastructure and high-performance computing.

Wise Integration has announced a collaboration with Navitas Semiconductor to develop next-generation power-conversion solutions aimed at supporting the rapidly growing power requirements of artificial intelligence and high-performance computing systems. Under the collaboration, the two companies will combine Wise Integration’s digital power-control capabilities with Navitas Semiconductor’s expertise in gallium nitride (GaN) and silicon carbide (SiC) power technologies. The initial focus will be on developing advanced power supply solutions for AI data centres, where increasing computing workloads are driving demand for more efficient and compact power infrastructure.

Beyond data-centre applications, the companies also plan to examine new power-conversion architectures for a wider range of high-performance computing platforms. These include AI-enabled PCs, professional workstations, gaming desktops and industrial computing systems. The collaboration is expected to address key power-management requirements across these applications, including higher efficiency, increased power density and improved overall system performance.

The partnership comes as the expansion of AI workloads places greater demands on power infrastructure throughout the computing ecosystem. From electricity grids and data-centre power systems to the individual computing platforms, manufacturers are looking for technologies that can handle higher power levels while reducing energy losses and limiting system size. By combining digital control with advanced wide-bandgap semiconductor technologies, Wise Integration and Navitas aim to develop power solutions that can support these changing requirements and contribute to more efficient power delivery for next-generation computing applications.