Single-Mode Fiber Collimator Hi1060/SMF-28e

Specifications

Wavelength: 405 - 1650nm
Max. Power: 1W, 2W (model dependent)
EFL: 1.69 - 7.42mm
Working Distance: 100 - 1000mm
Document icon Download Data Sheet Download icon

Features


  • Fixed Working Distance Collimator: Designed for precise optical alignment with a fixed working distance to ensure consistent performance.

  • Multiple Wavelength Options: Available in various wavelengths including 405nm, 450nm, 532nm, 635nm, 780nm, 850nm, and 980nm to suit different applications.

  • Low Insertion and Output Loss: Ensures optimal performance with insertion loss ≤2.0dB and output loss ≤0.5dB, enhancing signal integrity.

  • High Return Loss: Achieves ≥55dB return loss, minimizing reflections and enhancing fiber optic communication efficiency.

  • Compact Design: Features a compact package diameter of Φ3.4mm*L14mm or Φ4.0mm*L20mm, allowing for easy integration into various optical systems.

  • Beam Quality: Offers beam waist distance and divergence angle options, ensuring high-quality beam delivery for precise applications.

  • Durable Fiber Type: Utilizes high-performance fibers such as Nufern 405HP, 460HP, 630HP, 780HP, and Corning Hi1060, supporting max power up to 1W.

  • Versatile Application: Suitable for a wide range of applications in telecommunications, medical devices, and scientific research.

  • Customizable Specifications: Available in different beam waist sizes, working distances, and fiber types to meet specific customer requirements.

Applications


  • Fiber Optic Collimation Systems: Ideal for converting divergent light from fiber optics into collimated beams with minimal aberration

  • Laser Diode Beam Shaping: Useful in shaping and directing beams from laser diodes, particularly where Gaussian profiles are desired

  • Optical Sensing and Detection: Enhances precision in sensing applications that require tightly controlled beam direction and low divergence

  • Spectroscopy and Analytical Instruments: Supports accurate light delivery and collection in instruments used for material analysis and spectral diagnostics

  • Optical Communication Systems: Suitable for coupling and transmitting optical signals in high-performance communication networks

  • Biomedical and Life Sciences Equipment: Utilized in systems that require stable and well-aligned optical output, such as in microscopy or diagnostic devices