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Plate beam splitters are precision optical components designed to partially reflect and partially transmit laser light at controlled ratios, enabling accurate beam splitting, output coupling, and power control in laser systems. Manufactured using advanced ion beam sputtering (IBS) multilayer dielectric coatings, they provide high reflectivity, stable transmission, low absorption, low scattering, and high laser-induced damage threshold (LIDT) for reliable performance in high-power and ultrafast applications.This product range includes multiple wavelength-optimized options such as

  • 532nm Plate Beam splitter
  • 800nm Plate Beam splitter
  • 1030nm Plate Beam splitter
  • 1064nm Plate Beam splitter
  • 1150nm Plate Beam splitter
  • 1030nm Plate Beam splitter
  • 2940nm Plate Beam splitter
  • Ultra-Broadband Plate Beam splitter (300–2800nm)
  • Plate Beam splitters – Special Offers (Custom T/R Ratios)

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Precise Beam Splitting: Accurate control of reflection and transmission ratios for efficient beam management

High Laser Damage Threshold (LIDT): Suitable for high-power and ultrafast laser applications

Low Absorption & Scattering: Maintains beam quality and reduces optical losses

Excellent Spectral Stability: Reliable performance across the specified wavelength range

High Optical Efficiency: Maximizes energy utilization within the laser system

Superior Surface Flatness: Preserves wavefront quality and system stability

Environmental Durability: Resistant to humidity, temperature variations, and chemical exposure

Customizable T/R Ratios: Available in multiple reflection/transmission configurations (50:50, 80:20, 95:5, etc.)

Wide Wavelength Availability: From UV to Mid-IR and ultra-broadband ranges

Long Service Life: Durable IBS coatings ensure consistent long-term performance

Specifications

Optical Specifications

Wavelength Range: 300 – 2800 nm (model dependent)

Common Wavelengths: 532 nm, 800 nm, 1030 nm, 1064 nm, 1150 nm, 2000 nm, 2940 nm

Transmission / Reflection Ratios:

  • 50:50
  • 80:20
  • 90:10
  • 95:5
  • 99:1 (customizable)

Angle of Incidence (AOI): 0° or 45° (standard options)

Surface Flatness: < λ/10 @ 633 nm (typical)

Surface Quality: 20-10 Scratch/Dig (typical)

Coating Technology: Ion Beam Sputtering (IBS)

Laser-Induced Damage Threshold (LIDT): > 0.3 J/cm² @ 10 ns (model dependent)

Mechanical Specifications

Standard Dimensions (mm):

  • 12.7 x 6.0
  • 12.7 x 6.35
  • 25.4 x 2.0
  • 25.4 x 3.0
  • 25.4 x 6.35
  • 50.8 x 9.0 (varies by model)

Substrate Material: High-quality optical glass (laser-grade)

Mounting Type: Plate / Plano configuration

Performance Features

  • High Reflectivity & Controlled Transmission
  • Low Optical Loss
  • High Thermal Stability
  • Broadband or Narrowband Coating Options
  • High Environmental Stability

Applications

  • Laser cavity output coupling
  • Femtosecond & ultrafast laser systems
  • Nd:YAG and Ti:sapphire lasers
  • Yb-doped laser systems
  • Laser power monitoring and diagnostics
  • Spectroscopy and nonlinear optics
  • Industrial laser processing
  • Medical and scientific research systems

(Custom sizes, coating wavelengths, and T/R ratios are available upon request.)

Applications

  • Laser cavity output coupling and intracavity energy extraction
  • Beam splitting and beam path control in optical systems
  • Femtosecond and ultrafast laser systems (Ti:sapphire, Yb lasers)
  • Nd:YAG laser systems (532nm & 1064nm)
  • Mid-infrared and Er:YAG laser applications (2000nm & 2940nm)
  • Laser power monitoring and diagnostics
  • Spectroscopy and nonlinear optical experiments
  • Regenerative amplifiers and laser modules
  • Industrial laser processing (cutting, welding, marking, micromachining)
  • Scientific research and laboratory optical setups
  • Medical and therapeutic laser systems
  • Precision measurement and optical instrumentation
  • Beam sampling and energy distribution systems
  • Broadband optical systems and multi-wavelength experiments

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