1064 nm High Power Polarization Insensitive Isolator (HI Series) | 5W

Specifications

Type Of The Device: Isolator
Operating Wavelength: 1064 nm
Max Power: 5 W
Min Isolation: 28 dB
Center Wavelength (λc): 1064 nm
Min. Isolation, λc, 23 ℃, All Polarization States: 28 dB
Max. Average Optical Power: 5 W
Max. Peak Power For Ns Pulse: 10 kW
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Features

  • Low Insertion Loss: Minimizes power loss during transmission, ensuring efficient signal integrity.
  • High Isolation: Provides excellent isolation to prevent back reflections, which can degrade laser performance.
  • High Power Handling: Capable of managing up to 5 watts of average optical power and 10 kilowatts for nanosecond pulses.
  • High Return Loss: Ensures minimal signal leakage for enhanced performance and safety.
  • Polarization Insensitivity: Maintains consistent performance across all polarization states, crucial for applications requiring precise polarization control.
  • Environmental Stability and Reliability: Designed to operate reliably within a broad range of temperatures and conditions, resisting environmental impacts.
  • Robust Mechanical Strength: Withstands significant tensile load, reinforcing its durability in various installations.
  • Customizable Configuration: Options for wavelength, power handling, fiber type, and connectors allow tailoring to specific system requirements.

Applications

  • Fiber Laser Systems: Ideal for use in high-power fiber lasers where stable and reliable laser output is critical for both continuous and pulsed operations.
  • Telecommunications: Enhances the performance of communication systems by ensuring stable and reliable signal transmission in fiber optic networks.
  • Medical Instrumentation: Supports precision medical devices, particularly in laser-based surgery and diagnostics, where consistent and reliable laser performance is necessary.
  • Industrial Processing: Utilized in materials processing and manufacturing for tasks like cutting, welding, and marking where high-power lasers are required.
  • Research and Development: Provides a stable platform for scientific experiments in physics and engineering labs, where precise control over laser light is necessary.
  • Military and Defense: Used in applications requiring high-power lasers for ranging, targeting, and other optical systems where performance cannot be compromised by environmental factors.