
1030nm Polarization Beam Splitter/Combiner
P/N: FIR-1030-PBS/PBC|SKU: 10338
Unit Price
MOQ: 1 pcs
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1030nm Polarization Beam Splitter/Combiner
The 1030nm Polarization Beam Splitter/Combiner (PBS/PBC) is a passive fiber optic polarization management device designed for splitting or combining orthogonal polarization states at the 1030nm wavelength. It can separate randomly polarized input light into two orthogonally polarized output signals or combine two orthogonally polarized input signals into a single output fiber with low insertion loss and high extinction ratio.
Manufactured using polarization-maintaining (PM) fiber technology, this 1030nm PBS/PBC provides stable polarization performance, high directivity, and reliable optical characteristics for demanding laser and photonic applications. Port 1 and Port 2 are configured with PM fiber, while Port 3 can be supplied with either single mode fiber (SMF) or all-PM fiber configurations according to system requirements.
Featuring compact package size, low insertion loss, and excellent polarization handling capability, the device is widely used in ultrafast fiber lasers, femtosecond laser systems, Yb-doped fiber amplifiers, optical sensing, coherent communication, and polarization-maintaining fiber applications.
Specifications
Parameter | Unit | Value |
|---|---|---|
Center Wavelength | nm | 1030 |
Operating Wavelength Range | nm | ±20 |
Insertion Loss (Max.) | dB | 0.8 |
Return Loss (Min.) | dB | 50 |
Extinction Ratio (Min.) | dB | 22 |
Directivity (Min.) | dB | 50 |
Max Optical Power (CW) | W | 0.5/1/2/5/10 |
Fiber Type | - | Port 1 and Port 2 PMF; Port 3 SMF or All PMF |
Tensile Load | N | 5 |
Package Dimensions | mm | Φ5.5 x L35 (<5W)/14 x 12 x 8 (>5W) |
Operating Temperature | °C | -5 to +70 |
Storage Temperature | °C | -40 to +85 |
Notes: Tested at 25 °C. Data exclude connectors. Adding connectors will increase insertion loss by approximately 0.3 dB, reduce return loss by 5 dB, and decrease extinction ratio by 2 dB. The fiber slow axis is aligned to the key by default.
Dimensions

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