The Collimated Light: Optical Fiber Collimator

Optical fiber collimators are compact pigtail collimator output components specifically designed for laser application systems, capable of collimating and expanding laser beams or providing long-focus, low-reflection spatial emission. They can handle medium-power laser transmissions, with average power reaching hundreds of watts, and are often used in scenarios requiring high-quality (diffraction-limited) beam transmission.


Working Principle of Optical Fiber Collimators


  • High-quality collimated output beams;


  • Can withstand medium-power laser transmissions;


  • Compact pigtail output, occupying minimal space, suitable for specific laser designs.


Application Fields of Optical Fiber Collimators


  • Metal cutting with fiber lasers: Achieves high-precision, high-quality metal cutting with smooth and flat cutting edges.


  • Drilling: Precisely drills various materials with accurate control over hole size and shape.


  • Cleaning: Effectively removes surface dirt, rust, etc., without damaging the material.


  • 3D printing: Provides a stable and precise laser source to ensure print quality.


  • Precision machining: Suitable for various scenarios requiring high-precision machining.


Advantages of MEISU High-Temperature Optical Fiber Collimators


  • Ultra-high temperature resistance: Can withstand extreme high temperatures of 500℃, 750℃, and up to 1000℃, suitable for harsh environments.


  • High-quality heat-resistant materials: Uses sapphire fiber or gold-coated fiber to ensure stable optical performance even at high temperatures.


  • High reliability: Employs high-temperature epoxy resin and precision optical lenses to ensure long-term heat resistance and corrosion resistance.


  • Suitable for high-temperature sensing systems: Especially suitable for high-temperature fiber optic sensing systems, capable of precise measurement and data transmission in extreme environments.


MEISU high-temperature optical fiber collimator offers efficient and reliable solutions for high-temperature sensing, industrial monitoring, and high-temperature optical applications due to their excellent temperature resistance and stability.

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