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Research-Grade Spatial Light Modulator
The MP-SLM-RG-1.35 utilizes reflective LCoS (Liquid Crystal on Silicon) technology, specifically designed for pure phase modulation. It supports analog phase control, offering high phase stability, high fill factor, and high diffraction efficiency, enabling pixel-by-pixel dynamic modulation of laser wavefronts in scientific research experiments. This 1920×1200 SLM series employs a 60 Hz HDMI controller; the S-Series supports 10-bit operation and offers optional dielectric mirror coatings and liquid cooling solutions.
Product features:1920 × 1200, 8 μ m pixels; 15.36 × 9.60mm, filling rate 95.6%; Phase stability 0.025%; 60Hz HDMI with trigger; 10 digit control; Optional high reflective film (92-98%); Optional liquid cooling
Part Number:MP-SLM-RG-1.35
Application area:Holographic display | Beam shaping | Adaptive optics | Microscope | Optical tweezers/quantum optics | Multifocal/phase mask | Optical communication/vortex beam
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Resolution Fill Factor

Technical Specifications – 1920 × 1200 Analog Spatial Light Modulator
Parameter | Value |
Resolution | 1920 × 1200 |
Fill Factor | 95.6% |
Array Size | 15.36 × 9.60 mm |
Pixel Pitch | 8.0 × 8.0 µm |
Zero‑Order Diffraction Efficiency | 76% – 91% |
Reflectance with Dielectric Mirror Coating | 92% – 98% |
Backplane Refresh Rate | 1.35 kHz |
Controller | HDMI |
High-Speed Liquid Crystal Response Time and Wavefront Distortion
Standard Calibration Wavelength | High-Speed Liquid Crystal Response Time | Calibrated Wavefront Distortion | ||
Coating Range 400–800 nm | Coating Range 500–1200 nm | Coating Range 850–1650 nm | ||
405 nm | ≤ 14.0 ms | – | – | λ/5 |
532 nm | ≤ 15.0 ms | ≤ 19.0 ms | – | λ/7 |
635 nm | ≤ 15.0 ms | ≤ 20.0 ms | – | λ/8 |
785 nm | ≤ 16.0 ms | ≤ 23.0 ms | – | λ/10 |
1064 nm | – | ≤ 33.0 ms | ≤ 40.0 ms | λ/10 |
1550 nm | – | – | ≤ 55.0 ms | λ/12 |
Technical Specifications and Performance Characterization of the SLM


Software and Development Kits

·User-friendly software provided
·Intuitive image generation and sequencing
·Software development kits available for LabVIEW, MATLAB, Python and C++
·Image generation capabilities include:
·Bessel beams (spiral phase, fork, concentric rings, axicons)
·Lens functions (cylindrical, spherical)
·Gratings (blazed, sinusoidal)
·Various diffraction patterns (stripes, checkerboard, solid, random phase)
·Holograms
·Zernike polynomials
·Image superposition
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