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Collimator Systems

Collimated laser spot on the fast axis Non-cylindrical lens or non-spherical cylindrical lens surface The first and most important optical element of a high-power semiconductor laser system Customizable high-end glass material, performance close to the diffraction limit Anti-reflection, low absorption film system is suitable for ...

Specifications

Collimator Type: Spherical, Cylindrical, Aspherical
Design Wavelength: 750 nm
Numerical Aperture: 90
Effective Focal Length (EFL): 0.3 mm
Back Focal Length (BFL): 0.07 mm
Mount Size:M9*P0.5*8mm Lens Material:L-BAL42 Design Wavelength:786.5nm Focal Length:10mm NA:0.17 Working Distance:4.71mm CA:5.2mm Transmission>95% Coating:AR 786.50nm,R<1%  

Specifications

Collimator Type: Spherical, Cylindrical, Aspherical
Design Wavelength: 405 nm
Numerical Aperture: 0.25
Effective Focal Length (EFL): 9.322 mm
Back Focal Length (BFL): Not Specified
C-lens are specifically designed for fiber optics applications such as collimator, isolator, switch, collimator array and laser assembly. Compare to other gradient index lens, C-lens have several advantages including low cost, low insertion loss in long working distance, and wide working distance range. 

Specifications

Collimator Type: Spherical
Design Wavelength: 400 nm
Numerical Aperture: 0.3
Effective Focal Length (EFL): 2.27 mm
Back Focal Length (BFL): 0.74 mm
Micro Rod Lenses In terms of micro rod lens, Photonchina capacity has now reached as small as 0.5mm in outer diameter and 25mm in length, with any radius of curvature that can be made. Micro rod lenses are available with flat, plano-convex, plano-concave, double convex in shape. This rod lens has excellent eccentricity and clear ...

Specifications

Collimator Type: Cylindrical
Design Wavelength: 200 nm
Numerical Aperture: Not Specified
Effective Focal Length (EFL): Not Specified
Back Focal Length (BFL): Not Specified
This Mounted Aspheric lens is useful to collimate or focus laser light in the visible wavelength regime. The aspheric design nearly eliminates spherical aberration without needing multiple optical elements. It has a broadband AR coating of 400-700 nm, allowing it to be used for various applications. 

Specifications

Collimator Type: Aspherical
Design Wavelength: 400 nm
Numerical Aperture: 0.6
Effective Focal Length (EFL): 4 mm
Back Focal Length (BFL): Not Specified
Electronic Infraed-Autocollimator was specially designed for the spectral range 1550 nm with electronic image evaluation and 1 arcsec accuracy.

Specifications

Collimator Type: Spherical, Cylindrical, Aspherical
Design Wavelength: 1550 nm
Numerical Aperture: 0.1
Effective Focal Length (EFL): 500 mm
Back Focal Length (BFL): Not Specified
Visual autocollimator of Moeller-Wedel, equipped with megapixel camera and highly accurate evaluation software, numerous measuring functions, high accuracy, versatile use. The graphic user surface possesses many advantages in relation to visual autocollimators. It makes fatigue-free working possible and offers different ...

Specifications

Collimator Type: Spherical, Cylindrical, Aspherical
Design Wavelength: Not Specified
Numerical Aperture: 0.045
Effective Focal Length (EFL): 1100 mm
Back Focal Length (BFL): Not Specified
There are 7 different Collimator Systems from suppliers and manufacturers listed in this category. In just a few clicks you can compare different Collimator Systems with each other and get an accurate quote based on your needs and specifications. Please note that the prices of Collimator Systems vary significantly for different products based on various factors including technical parameters, features, brand name, etc. Please contact suppliers directly to inquire about the details and accurate pricing information for any product model. Simply navigate to the product page of interest and use the orange button to directly reach out to the respective supplier with one click.

Did You know?

A collimator is a device that narrows a beam of particles or waves and is used in many applications involving lasers, LEDs, and other light sources. In optics, a collimator may consist of a curved mirror or lens with a type of light source and/or image at its focus. This is used to replicate a target focused at infinity with little or no displacement. Collimator systems can be used to calibrate other optical devices, check if all elements are aligned on an optical axis, set elements at a proper focus, or align two or more devices such as in binoculars or gun sights.