reflective fiber collimator
Reflective fiber collimators are based on 90° off-axis parabolic mirrors. Unlike lenses, the focal length of a metal mirror remains constant over a wide wavelength range. Thanks to this inherent property, parabolic mirror collimators can collimate light of different wavelengths without adjustment, making them an ideal choice for collimating polychromatic light. Common applications include systems requiring collimation of multiple wavelengths, infrared collimation/coupling, and coupling polychromatic light into large-core multimode fibers.
Specification Snapshot
Beam Diameter
12mm
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Overview
Reflective fiber collimators are based on 90° off-axis parabolic mirrors. Unlike lenses, the focal length of a metal mirror remains constant over a wide wavelength range. Thanks to this inherent property, parabolic mirror collimators can collimate light of different wavelengths without adjustment, making them an ideal choice for collimating polychromatic light. Common applications include systems requiring collimation of multiple wavelengths, infrared collimation/coupling, and coupling polychromatic light into large-core multimode fibers.
Specifications
| Parameter | Value |
|---|---|
| Beam Diameter | 12mm |
| Coating | Protected silver |
| Coating | Silver, UV-enhanced aluminum |
| Application Scope | Ideal for coupling polychromatic light into multimode fibers |
| Product Customization | Customized services and solutions available |
Applications
Systems requiring collimation of multiple wavelengths, infrared collimation/coupling, and coupling of polychromatic light into large-core multimode fibers.
Datasheet
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Supplier Information
Huirui Optoelectronics Technology (Beijing) Co., Ltd. was established in 2014, founded by researchers from scientific research institutions with backgrounds from Beijing Institute of Technology, Capital Normal University, Tsinghua University, etc. Team members have more than ten years of research foundation in high-precision optical component design and optical system development, and fully master cutting-edge advanced technologies in the fields of optical detection and life sciences and medical health. In theoretical research, crystal materials, processing technology, etc., they are all industry leaders. The company initially focused on terahertz optics research, and has continuously expanded research fields. Now it has become an industry-leading enterprise dedicated to developing high-end precision optical components.
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