Al glasses are emerging as the next essential computing platform. By placing intelligence directly within the user’s field of view, wearable displays transform Al from a tool into an ambient assistant integrated with everyday life.
Scalable MicroLED Technology
for the Masses
MicroLED device performance has advanced rapidly. What defines the next phase of AR smartglasses and Al infrastructure is manufacturability— yield, integration, and predictable global ramp.
We engineered our platform around that reality.
High Volume Manufacturing
Scalable Architecture
Supply Chain Resilience
OUR MANUFACTURING
8-12" GaN-on-Si Fusion
Technology
Our manufacturing framework is standardized around an 8″ wafer platform- enabling high-volume throughput, compatibility with established semiconductor infrastructure, and transferability across geographies. Inlighten uses GaN-on-Si 8-12 inch wafers compatible with existing IC ecosystem, thus making our displays easy to scale up to the masses. Mature volume production technologies lead to high yield and low cost manufacturing costs.
Fully Integrated Manufacturing Technologies
We retain in-house control over the yield-critical technologies that define MicroLED performance and scalability-while enabling strategic flexibility where customization and geographic transfer matter.
3.75μm
Pixel Pitch
640x480
Resolution
0.12"
Display
OUR PRODUCT
High Performance MicroLEDs
Ultra-bright, power-efficient, and compact displays for low costs.
Enabling AR Systems and beyond
Our MicroLED platforms are designed for high-yield production and predictable volume ramp, unlocking a scalable pathway to mass-market smartglasses. As Al systems evolve toward agent-driven, real-time interaction, AR becomes the interface layer — and scalable display architecture becomes foundational to that ecosystem.
10x
longer reach
than copper
68%
lower power consumption
100x
higher reliability
Enabling Al Data Centers
Al data centers are constrained by power, thermal Imits, and interconnect scalability. Our MicroLED platforms enable energy-efficient optical fabrics that support higher density compute at global scale.