The 27th China International Optoelectronic Expo (CIOE 2026) opened on September 9 in Shenzhen. Leveraging its core Micro-LED technology platform, Raysolve continues to advance two strategic directions—near-eye displays and optical interconnects—with a focus on product development, application validation, and industry collaboration.
At CIOE 2026, Raysolve showcased multiple waveguide and AR/MR glasses prototypes jointly developed with downstream partners, as well as a Micro-LED optical interconnect validation platform developed in collaboration with industry partners, highlighting the company’s latest progress across both areas.
Raysolve continues to advance its monolithic full-color Micro-LED microdisplay technology and product portfolio. Its PowerMatch® 1 series delivers strong performance in key parameters such as brightness and color gamut. Built on high-precision Quantum Dot Photolithography (QDPR), the technology enables wafer-level monolithic integration of red, green, and blue subpixels at ultra-high pixel densities, combining high color saturation, excellent optical uniformity, and strong thermal stability. With vivid color performance comparable to mature Micro-OLED solutions and the sustained high-brightness output enabled by Micro-LED, PowerMatch® 1 provides a strong foundation for AR and MR display systems.
At the show, Raysolve showcased waveguide prototypes developed with downstream partners across multiple optical architectures, including 1-to-2 diffractive waveguides, polymer diffractive waveguides, highly transparent geometric waveguides, and glass-based diffractive waveguides. These prototypes demonstrate the integration of monolithic full-color Micro-LED microdisplays with diverse optical solutions.
Raysolve is also working with leading companies in Europe and the United States to develop AR/MR prototype systems and advance Micro-LED microdisplays toward system-level applications.
The rapid growth of AI computing is driving demand for higher-bandwidth, lower-power, and more reliable data transmission across data centers and AI infrastructure. GaN-based Micro-LEDs are emerging as a potential alternative to InP laser sources for optical interconnects, particularly in short-reach applications where high-density parallel channels and power efficiency are critical.
Raysolve began exploring Micro-LED applications in optical interconnects as early as 2021, building on the team’s long-term expertise in Micro-LED technology. Its capabilities in wafer-level processes, high-density arrays, and efficient light output provide a foundation for addressing key optical interconnect challenges, including high-speed modulation, efficient collimation, and low crosstalk.
At CIOE 2026, Raysolve presented a Micro-LED optical interconnect validation platform jointly developed with its partners, demonstrating high-speed signal transmission from multiple Micro-LED channels through multi-core fiber. The related solutions are now being advanced with system integrators toward end-application validation and integration into next-generation AI computing platforms.
Through continued product development, application validation, and industry collaboration, Raysolve is accelerating the transition of its Micro-LED technology into real-world applications.
Looking ahead, Raysolve will continue to work with partners worldwide to advance next-generation smart devices and high-speed optical interconnects.
At CIOE 2026, Raysolve showcased multiple waveguide and AR/MR glasses prototypes jointly developed with downstream partners, as well as a Micro-LED optical interconnect validation platform developed in collaboration with industry partners, highlighting the company’s latest progress across both areas.
Advancing Monolithic Full-Color Micro-LED toward AR/MR Applications
As XR glasses move closer to commercialization, display systems are placing greater demands on lightweight form factors, compact designs, high brightness, and system integration.Raysolve continues to advance its monolithic full-color Micro-LED microdisplay technology and product portfolio. Its PowerMatch® 1 series delivers strong performance in key parameters such as brightness and color gamut. Built on high-precision Quantum Dot Photolithography (QDPR), the technology enables wafer-level monolithic integration of red, green, and blue subpixels at ultra-high pixel densities, combining high color saturation, excellent optical uniformity, and strong thermal stability. With vivid color performance comparable to mature Micro-OLED solutions and the sustained high-brightness output enabled by Micro-LED, PowerMatch® 1 provides a strong foundation for AR and MR display systems.
At the show, Raysolve showcased waveguide prototypes developed with downstream partners across multiple optical architectures, including 1-to-2 diffractive waveguides, polymer diffractive waveguides, highly transparent geometric waveguides, and glass-based diffractive waveguides. These prototypes demonstrate the integration of monolithic full-color Micro-LED microdisplays with diverse optical solutions.
Raysolve is also working with leading companies in Europe and the United States to develop AR/MR prototype systems and advance Micro-LED microdisplays toward system-level applications.
Advancing Optical Interconnects through Multi-Core Fiber Validation
Optical interconnects are another long-term strategic focus for Raysolve.The rapid growth of AI computing is driving demand for higher-bandwidth, lower-power, and more reliable data transmission across data centers and AI infrastructure. GaN-based Micro-LEDs are emerging as a potential alternative to InP laser sources for optical interconnects, particularly in short-reach applications where high-density parallel channels and power efficiency are critical.
Raysolve began exploring Micro-LED applications in optical interconnects as early as 2021, building on the team’s long-term expertise in Micro-LED technology. Its capabilities in wafer-level processes, high-density arrays, and efficient light output provide a foundation for addressing key optical interconnect challenges, including high-speed modulation, efficient collimation, and low crosstalk.
At CIOE 2026, Raysolve presented a Micro-LED optical interconnect validation platform jointly developed with its partners, demonstrating high-speed signal transmission from multiple Micro-LED channels through multi-core fiber. The related solutions are now being advanced with system integrators toward end-application validation and integration into next-generation AI computing platforms.
Two Strategic Directions, One Micro-LED Technology Platform
From near-eye displays to high-speed optical interconnects, Raysolve is building on a common Micro-LED technology foundation to address diverse application needs.Through continued product development, application validation, and industry collaboration, Raysolve is accelerating the transition of its Micro-LED technology into real-world applications.
Looking ahead, Raysolve will continue to work with partners worldwide to advance next-generation smart devices and high-speed optical interconnects.
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