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340W 976nm 135μm Fiber Coupled Power Diode Laser (GK-976340135)

Diode laser

340W 976nm 135μm Fiber Coupled Power Diode Laser (GK-976340135)

The GKER Photonics 340W 976nm 135μm Fiber Coupled Power Diode Laser (GK-976340135) is designed for high-performance applications requiring reliable and efficient optical power delivery.

    description1

    Specifications

    Optical Parameters

    Unit

    Minimum

    Typical

    Maximum

    Output Power

    W

     

    340

     

    Center Wavelength

    nm

    973

    976

    979

    95% Power NA

     

     

    0.18

     

    Fiber Parameters

    Core Diameter

    μm

    133.5

    135.0

    136.5

    Numerical Aperture

     

    0.215

    0.220

    0.225

    Pigtail Length

    m

    1.5

    2.0

     

    Fiber Parameters

    Operating Current

    A

     

     

    25.0

    Operating Voltage

    V

     

     

    32.0

    Conversion Efficiency

    %

     

    48

    340W 976nm 135μm Fiber Coupled Power Diode Laser (GK-976340135)
    340W 976nm 135μm Fiber Coupled Power Diode Laser (GK-976340135)

    product description

    With an output power of up to 340W, this diode laser operates at a center wavelength of 976nm, making it ideal for demanding industrial, medical, and scientific tasks. The laser features a fiber core diameter of 135μm and a numerical aperture of 0.22, ensuring precise beam delivery and optimal coupling efficiency.

    The diode laser is equipped with a pigtail length of 1.5 meters, offering flexibility in installation and integration into various systems. Its robust design supports stable performance in diverse environments, making it suitable for applications such as laser pumping, material processing, medical treatments, and advanced scientific research. The laser operates with high efficiency, achieving up to 48% conversion efficiency and a typical operating current of 32A.

    This laser is engineered for precision and durability, ensuring minimal signal loss and high-power handling capabilities, making it a key tool for high-power optical applications.