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Shaping Light, Defining Vision

Shaping Light, Defining Vision

Core Technologies

LCoS (Liquid Crystal on Silicon) spatial light modulators offer key advantages including full-phase continuous modulation, high diffraction efficiency, low insertion loss, and high optical power tolerance. They provide essential chip-level support for next-generation optical communications (WSS/ROADM), optical computing, and high-precision optical field reconstruction.

High-precision optical wave phase control

High-precision optical wave phase control

Achieve subwavelength continuous phase modulation and ultra-high phase uniformity to provide precise underlying control for optical phased arrays and complex field reconstruction.

WSS & Optical Communication-Specific Architecture

WSS & Optical Communication-Specific Architecture

Optimized for wavelength-selective switches (WSS), featuring low insertion loss, ultra-low crosstalk, and high optical power tolerance to support ultra-large-capacity optical networks.

Silicon Photonics and CMOS Integration

Silicon Photonics and CMOS Integration

Features high-density silicon-based driving and large-array pixel design, fully compatible with standard CMOS wafer processes. Delivers exceptional pixel fill factor and scalable mass production capabilities.

Product Line

Covers the full industry chain, from chip-level wafers and LCoS bare chips to SLM optical modulator modules.

LCoS-driven wafers

LCoS driver wafer

Wafer Series

Key Highlights

Standard CMOS processHigh-density pixel array with high fill factorOptimized for light control and display

Delivery Model

  • Wafer Supply
  • Custom Baseplate Development
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Liquid Crystal on Silicon (LCoS) chip

Liquid Crystal on Silicon (LCoS) Chip

LCoS Chip Series

Key Highlights

Continuous Phase Modulation (modulation depth ≥3π)High utilization rateFully Autonomous Circuit Architecture

Typical Use Cases

  • Wavelength Selective Switch (WSS)
  • Vehicle AR-HUD
  • Advanced Laser Display and Industrial Processing
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Spatial Light Modulator

Spatial Light Modulator

SLM Series

Key Highlights

High-precision light field reconstructionHigh dynamic responseExcellent optical and thermal stability

Typical Use Cases

  • Beam shaping and micromachining
  • Adaptive Optics and Microscopy
  • Quantum Computing and Frontier Science
View Specifications

About Us

ReflexWave was founded by a senior team with deep expertise in semiconductors and optoelectronics, focusing on the R&D and commercialization of silicon-based liquid crystal on silicon (LCoS) chips, spatial light modulators (SLMs), and micro-display driver ICs.

We are dedicated to becoming a global leader in light control and micro-display chips, driving the advancement of next-generation display technologies and photonic computing. Leveraging our deep technical expertise and innovation capabilities, we provide core device solutions for AR/VR, holographic displays, lithography, quantum computing, and other fields.

Senior Semiconductor Team
Self-developed innovation
Global Market Presence
ReflexWave R&D Team

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Partner with us to shape the future of light control technology.