Bringing Full-Color Displays Into a
More Realistic Visual Experience
Bringing Full-Color Displays Into a
More Realistic Visual Experience
More Realistic Visual Experience
From beam combining to three-color vertical stacking, our diverse full-color technology
roadmap spans the evolution of display architectures. With precise wavelength control
and high-brightness MicroLEDs, we transform complex colors into stable, clear, and
true-to-life visual experiences.
roadmap spans the evolution of display architectures. With precise wavelength control
and high-brightness MicroLEDs, we transform complex colors into stable, clear, and
true-to-life visual experiences.
From beam combining to three-color vertical stacking, our diverse full-color technology
roadmap spans the evolution of display architectures. With precise wavelength control
and high-brightness MicroLEDs, we transform complex colors into stable, clear, and
true-to-life visual experiences.
roadmap spans the evolution of display architectures. With precise wavelength control
and high-brightness MicroLEDs, we transform complex colors into stable, clear, and
true-to-life visual experiences.
Dual-Red Technology Roadmap
Dual-Red Technology Roadmap
The only MicroLED company developing both red-light technologies, with production lines completed in 2026.
The only MicroLED company developing both red-light technologies, with production lines completed in 2026.
Ternary Red
Built on a silicon-based platform, with strong CMOS compatibility and promising vertical-stacking yield - paving the way for consumer AR.
CMOS-Friendly Integration
Large-Size Scalability
Lower Cost
Quaternary Red
Heteroepitaxial growth still faces challenges in further scaling, while high color purity and wide color gamut set a benchmark for premium displays.
Mature Process
High Color Purity
Mature Beam Combining × Advanced Stacking
Mature Beam Combining × Advanced Stacking
Native Full Color. Extreme Miniaturization. Defining the Next-Generation Immersive Experience.
Native Full Color. Extreme Miniaturization. Defining the Next-Generation Immersive Experience.
X-Cube Beam Combining
Based on high-brightness monochrome microdisplays, X-Cube beam combining uses prisms or optical waveguides to combine RGB light into a full-color image. With mature manufacturing processes and good optical efficiency, it is a leading approach to full-color AR glasses.
Simple Monochrome Panel Process.
Compatible with Small-Pitch Quaternary Red.
Monolithic Full-Color Stacking
Leveraging hybrid bonding, RGB emissive layers are vertically integrated within each pixel to create a full-color MicroLED device, enabling micron-scale pixel pitches and ultra-high PPI in a compact architecture - an ideal solution for consumer AR.
Large-Size, Low-Cost
Smaller Form Factor