The CRYLINK laser linearly polarized beam splitter cube is composed of two ultraviolet fused quartz right angle prisms. The dielectric splitter film reflects the S-polarized light and passes through the P-polarized light.For the best polarization performance, it is recommended that the incoming light be incident from the right edge of a prism with a polarized film (a prism with a black dot on the top indicates that it has a media polarized film on its bevel).The extinction ratio of the laser linearly polarized beam splitter cube is Tp:Ts > 3000:1, and all four transparent surfaces are coated with V-type antireflective film designed for single wavelength, with reflectivity less than 0.25%@design wavelength.CRYLINK offers 10 design wavelengths of 405, 532, 633, 780, 808, 830, 850, 1030, 1064 and 1550 nm.Special customization services are available for other design wavelengths and sizes. If you need help, please contact technical support.

CRYLINK mounts a 25.4 mm laser linearly polarized beam splitter cube in a 30 mm coaxial system-compatible cube housing, with the top notched direction indicating the direction of the light path. The side of the housing provides M3 threaded holes, which are compatible with a 30 mm coaxial system.In addition, there are four SM1 internal threaded ports on the side of the housing, which are compatible with 25.4 mm lens sleeves at the same time.There are also M4 threaded holes at the bottom of the coaxial cube for mounting the connectors.


Parameter

Basic Parameters

Substrate materialUVFS
Product IDPA04010
Surface quality
(@633 nm)
λ/4
CoatingV-AR Coating
exit angleTransmission:0°± 5 arcmin;
Reflection:90°± 5 arcmin
Extinction Ratio(Tp:Ts)>3000:1

Application

  • Separation of p-polarization and s-polarization

Feature

  • Multiple design wavelengths are available
  • High extinction ratio (Tp:Ts): >3000:1
  • Side M3 threaded hole, compatible with 30 mm coaxial system
  • Four SM1 internal threads on the side, compatible with SM1 lens sleeve installation
  • Four transparent V-type antireffective membranes Rabs < 0.25%@ design wavelength

Spectrogram

Laser Linearly Polarized Beam Splitting Cube Spectrogram1
Laser Linearly Polarized Beam Splitting Cube Spectrogram2
Laser Linearly Polarized Beam Splitting Cube Spectrogram3
Laser Linearly Polarized Beam Splitting Cube Spectrogram4
Laser Linearly Polarized Beam Splitting Cube Spectrogram5
Laser Linearly Polarized Beam Splitting Cube Spectrogram6
Laser Linearly Polarized Beam Splitting Cube Spectrogram7
Laser Linearly Polarized Beam Splitting Cube Spectrogram8
Laser Linearly Polarized Beam Splitting Cube Spectrogram9
Laser Linearly Polarized Beam Splitting Cube Spectrogram10