Solutions

GaN power & GaN photonics

GaN on diamond & GaN laser diodes

Two technologies. One semiconductor.
Powering the key industries of the future.



Two technologies. One semiconductor.
Powering the key industries of the future.



GaN Power

GaN is an emerging breakthrough material that can transform how we design, power, and experience electronics. Solving industry challenges such as thermal limitations, power efficiency and miniaturisation for smarter, greener, and more powerful technology. GaN is powering the next generation of electronics—delivering more power, high-voltage, high-efficiency performance for a wide range of applications from space to AI data centres. The future is smaller, faster, greener—and it’s powered by GaN.

GaN Laser Diodes: Lighting the Quantum Future

Quantum technologies demand laser light sources that are high power, compact, robust, extremely high spectral purity and engineered to the exact wavelengths where cold-atom quantum systems operate. GaN laser diodes are emerging as a compelling platform, spanning the ultraviolet through to visible spectral regions, for highly integrated, deployable quantum instruments including quantum sensors, atomic clocks, quantum communications and quantum computing.

The future of photonics is brighter with GaN, enabling the quantum systems of tomorrow.

One GaN platform.
Electrons and photons, engineered together.

Monolithic GaN electronics and photonics are poised to become a cornerstone of the future, merging high-power computation, ultrafast communications, sensing, and light generation onto a single wide-bandgap platform. By integrating transistors, optical emitters, modulators, detectors, and photonic interconnects directly within GaN, tomorrow’s chips could operate at unprecedented speeds and power densities while dramatically shrinking system size and energy consumption. This convergence points toward a new generation of intelligent hardware—where electrons and photons flow side by side through the same crystal, enabling AI, autonomous systems, quantum technologies, 6G networks, and high-performance computing to become faster, cooler, and radically more compact.

© 2026. All right reserved

© 2026. All right reserved