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(6+1)×1 PM Pump & Signal Combiner (GK-PMMPC Series)

Optical Combiner

(6+1)×1 PM Pump & Signal Combiner (GK-PMMPC Series)

Pump Combiner with PM Signal Feedthrough

Features

● High Coupling Efficiency

● High Signal Transfer Efficiency

● Wide Wavelength Range

● Proprietary Pull and Package Technique

● Custom Configurations Available

    description1

    Applications

    ● PM Fiber Laser

    ● PM Fiber Laser

    Specifications

    Parameter

    Unit

    Value

    Product Type

    -

    PM (6+1)×1

    Pump Wavelength Range

    nm

    900 - 1000

    Signal Wavelength Range

    nm

    1060, 1550

    Fiber Type for Input (Pump Channel)

    -

    Nufern 105/125 (0.15 NA, or 0.22 NA)

    Fiber Type for Input (Signal Channel)

    -

    PM 980, PM 1550, PM-6/125 DC, or PM-8/125 DC

    Fiber Type for Output

    -

    PM-10/125 DC, or PM-20/125 DC

    Signal Channel Insertion Loss

    dB

    < 0.80

    Min. Pump Efficiency

    %

    94 (Typ.95)

    Max. Input Pump Power

    W

    6 × 50    6 × 100

    Package Dimensions

    mm

    P2: 70 (L) × 12 (W) × 8 (H)

    P5: 100 (L) × 15 (W) × 10 (H)

    Operating Temperature

    0 to + 65

    Storage Temperature

    - 40 to + 85

    ¹Mode number summation of all input fibers should be less than that of output fiber.

    Package Dimensions

    (6+1)×1 PM Pump & Signal Combiner (GK-Series)1bs

    product description

    The (6+1)×1 PM Pump & Signal Combiner by Fiber Resources is indeed an advanced solution designed for integrating high-power pump and signal channels within optical fiber systems. This combiner is engineered with precision to ensure exceptional performance across a wide range of wavelengths, making it ideal for applications demanding high coupling and signal transfer efficiency.

    Key features of this combiner include:

    High Coupling Efficiency: This ensures that the light from multiple pump sources and the signal can be effectively combined with minimal loss.

    High Signal Transfer Efficiency: This feature is crucial for maintaining the integrity of the signal as it passes through the combiner.

    Wide Wavelength Range: The combiner is designed to work effectively across a broad spectrum of wavelengths, which is essential for systems that use multiple wavelengths for different channels or signals.

    Proprietary Pull and Package Technique: This suggests that Fiber Resources has developed a unique method for manufacturing and packaging the combiner, which may contribute to its performance and reliability.

    Custom Configurations Available: This indicates that the combiner can be tailored to specific application needs, providing flexibility for system designers.

    Technical specifications of the (6+1)×1 PM Pump & Signal Combiner include:

    Pump Wavelength Range: 900 - 1000 nm, which is typical for high-power pump sources used in fiber lasers and amplifiers.

    Signal Wavelength Range: 1060, 1550 nm, covering both common telecommunications wavelengths.

    Fiber Type for Input (Pump Channel): Nufern 105/125 (0.15 NA, or 0.22 NA), which are single-mode fibers suitable for high-power applications.

    Fiber Type for Input (Signal Channel): PM 980, PM 1550, PM-6/125 DC, or PM-8/125 DC, indicating that the combiner can handle polarization-maintaining fibers for the signal channel.

    Fiber Type for Output: PM-10/125 DC, or PM-20/125 DC, suggesting that the output can be tailored to match the system's requirements.

    Signal Channel Insertion Loss: < 0.80 dB, which is a low loss ensuring efficient signal transfer.

    Operating Temperature: 0 to + 65 ℃, and Storage Temperature: - 40 to + 85 ℃, indicating the robustness of the combiner in various environmental conditions.

    These specifications make the (6+1)×1 PM Pump & Signal Combiner an ideal choice for high-power applications such as PM Fiber Lasers and PM Fiber Amplifiers, where maintaining signal integrity and efficiency is critical. The combiner's ability to handle high power while providing low loss and high efficiency makes it a valuable component in the field of fiber optic systems. 

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