2 µm Polarization Maintaining Isolator (PMI Series)

Specifications

Type Of The Device: Isolator
Operating Wavelength: 2000 nm
Max Power: 1 W
Min Isolation: 16 dB
Center Wavelength (λc): 2 µm
Min. Extinction Ratio: 18 dB
Min. Isolation, λc ± 50 Nm, 23 ℃, All Polarization States: Single stage:16, Dual stage: 35 dB
Max. Average Optical Power: 1, 2 W
Max. Peak Power For Ns Pulse: 10 kW
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Features

  • Telcordia Standard Compliance: Designed and manufactured to meet stringent Telcordia standards, guaranteeing high reliability and industry-leading performance
  • High Power Handling: Epoxy-free optical path design enhances the isolator's capacity to handle high optical power levels, ensuring stability and durability even under intense operational conditions
  • Superior Isolation: Available in both single-stage and dual-stage configurations to provide optimal isolation, minimizing back reflections and ensuring signal integrity
  • Low Insertion Loss: Engineered to deliver minimal insertion loss, maintaining high transmission efficiency across the specified wavelength range
  • Multiple Connector Options: Compatible with various connector types including FC/UPC, FC/APC, SC/UPC, SC/APC, and custom specifications, offering flexibility for different system requirements
  • Versatile Fiber Jacket Options: Available with different fiber jackets such as 250 µm Panda Fiber and 900 µm Loose Tube, catering to diverse application needs
  • Customizable Parameters: Offers customizable handling power, fiber length, working axis, and power type to meet specific application demands
  • Robust Construction: High-quality construction ensures long-term reliability and performance, withstanding harsh environmental conditions

Applications

  • 2 µm Laser Systems: Ideal for integration into advanced 2 µm laser systems, providing reliable isolation and maintaining polarization integrity
  • Spectroscopy: Enhances the accuracy and efficiency of spectroscopic measurements by preventing unwanted reflections and maintaining signal purity
  • Medical Equipment: Utilized in medical laser systems where precise control of light is critical for procedures and diagnostics
  • Materials Processing: Supports high-power laser applications in materials processing, ensuring stable and consistent performance
  • Telecommunications: Ensures optimal signal transmission and minimal loss in fiber optic communication systems operating at 2 µm
  • Scientific Research: Facilitates advanced research in optics and photonics by providing reliable performance in experimental setups