1064 nm Polarization Beam Combiner/Splitter
Description
The GKER Photonics 1064 nm Polarization Beam Combiner/Splitter (GK-PBC/PBS Series) is a versatile and high-performance optical component designed for advanced fiber optic applications. This compact device efficiently combines two orthogonal polarization signals into a single output fiber, making it an ideal solution for doubling the pump power in fiber laser systems by combining the output of two pump lasers.
The device features two polarization-maintaining (PM) fiber inputs and a single-mode (SM) fiber output, ensuring minimal insertion loss and high extinction ratio for precise and reliable performance. Additionally, the combiner can be used in reverse as a beam splitter, separating a single input into two polarized outputs.
Engineered with premium-grade materials and advanced manufacturing techniques, this beam combiner/splitter delivers outstanding optical performance, including low insertion loss, high return loss, and high directivity. It is well-suited for applications in optical communication systems, laser technology, and scientific research that demand precise polarization control and high-power handling. The device's robust construction and wide operating temperature range ensure consistent performance in varying environmental conditions, making it a dependable choice for critical applications.
1064 nm Polarization Beam Combiner/Splitter
Specifications |
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Splitting Ratio: | Other |
Central Wavelength: | 1064 nm |
Power Handling: | Not Specified |
Return Loss: | 50 dB |
Center Wavelength (λc): | 1064 nm |
Operating Wavelength Range: | λc ± 20 nm |
Typ. Insertion Loss: | 0.6 0.7 dB |
Max. Insertion Loss: | 0.8 0.9 dB |
Min. Extinction Ratio (for Splitter Only): | 22 20 dB |
Min. Return Loss: | 50 dB |
Min. Directivity: | 50 dB |
Max. Optical Power (Continuous Wave): | 500 mW |
Fiber Type: | PM 980 Panda Fiber for Ports 1 & 2 HI 1060 or PM Panda Fiber for Port 3 - |
Max. Tensile Load: | 5 N |
Operating Temperature: | - 5 to + 70 ℃ |
Storage Temperature: | - 40 to + 85 ℃ |
Features
- High-Performance Polarization Management: Combines or splits orthogonal polarization signals with minimal insertion loss and high extinction ratio
- Low Insertion Loss: Typical insertion loss as low as 0.6 dB ensures efficient signal transmission
- High Return Loss: Provides a minimum return loss of 50 dB, reducing signal reflection
- High Directivity: Ensures minimal signal leakage with a minimum directivity of 50 dB
- Versatile Fiber Compatibility: Compatible with PM 980 Panda Fiber for input ports and HI 1060 or PM Panda Fiber for output ports
- High Optical Power Handling: Supports up to 500 mW of continuous wave optical power
- Wide Operating Temperature Range: Operates reliably in temperatures from -5°C to +70°C
Applications
- Fiber Laser Systems: Ideal for combining the output of two pump lasers to double pump power
- Optical Communication Systems: Enhances signal transmission efficiency by managing polarization in communication networks
- Scientific Research: Suitable for experiments requiring precise polarization control and high-power laser handling
For pricing, technical or any other questions please contact the supplier
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Ships from:
China
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Sold by:
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On FindLight:
since 2024
Frequently Asked Questions
It combines two orthogonal polarization signals into one output fiber or splits a single input into two polarized outputs.
It is compatible with PM 980 Panda Fiber for input ports and HI 1060 or PM Panda Fiber for the output port.
The typical insertion loss is 0.6 dB for Grade P and 0.7 dB for Grade A.
It can handle up to 500 mW of continuous wave optical power.
Yes, it operates reliably within a temperature range of -5°C to +70°C and can be stored between -40°C and +85°C.
The device provides a minimum return loss of 50 dB.
It is ideal for fiber laser systems, optical communication systems, and scientific research requiring polarization control and high-power handling.
Yes, it is available in Grade P and Grade A, with Grade P offering slightly better performance specifications.
It features high directivity with a minimum value of 50 dB, ensuring minimal signal leakage.
The operating wavelength range is λc ± 20 nm, centered at 1064 nm.