Customization: | Available |
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Center Wavelength: | 1064 Nm |
Typ. Peak Isolation: | 35 dB |
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The 1064 nm High Power Polarization Insensitive Isolator is an optical device designed to meet the rigorous demands of high-power fiber laser systems and precision instrumentation. Here's a summary of its key characteristics that make it ideal for these applications:
Low Insertion Loss: This feature ensures that the light signal experiences minimal attenuation as it passes through the isolator, maintaining signal integrity and maximizing efficiency.
High Isolation: The isolator provides high isolation, typically 30 dB or more, which prevents back-reflected light from reaching the light source. This is crucial for protecting the laser diode and other sensitive components from damage caused by back reflections.
High Power Handling: Capable of handling high optical powers, these isolators can manage powers up to 200W or more, depending on the specific model and design, making them suitable for high-power laser systems.
High Return Loss: With a high return loss, typically above 45 dB, the isolator ensures that any reflected light is significantly reduced, which helps in minimizing interference and maintaining signal quality.
Excellent Environmental Stability: The isolator is designed to perform consistently across a wide range of temperatures and environmental conditions, ensuring reliable operation in various settings.
Reliability: Due to their robust design and construction, these isolators offer long-term reliability, reducing the need for frequent replacements and maintenance.
Polarization Insensitivity: Unlike some optical components that require specific polarization states, polarization insensitive isolators function effectively regardless of the input light's polarization, making them more versatile and suitable for a broader range of applications.
These properties make the 1064 nm High Power Polarization Insensitive Isolator an excellent choice for applications in fiber lasers, where high power and reliable operation are essential, as well as in instrumentation applications that demand precise control and minimal signal distortion.
Specifications