inquiry
Leave Your Message
150W 888nm 200μm Fiber Coupled Power Diode Laser (GK-WS888150200S)

Diode laser

150W 888nm 200μm Fiber Coupled Power Diode Laser (GK-WS888150200S)

The GKER Photonics 150W 888nm 200μm Fiber Coupled Power Diode Laser (GK-WS888150200S) is engineered to meet the demands of high-performance applications in industrial, medical, and scientific fields. This laser offers a robust optical output power of 150W, with a center wavelength of 888nm, making it suitable for precise and high-power operations.

    description1

    Specifications

    Optical Parameters

    Unit

    Minimum

    Typical

    Maximum

    Output Power

    W

    150

     

     

    Center Wavelength

    nm

    887.5

    888

    888.5

    Spectral Width(FWHM)

    nm

     

    0.5

    1.0

    95% Power NA

     

     

    0.17

     

    Fiber Parameters

    Core Diameter

    μm

    196

    200

    204

    Numerical Aperture

     

    0.20

    0.22

    0.24

    Pigtail Length

    m

     

    2.0

     

    Connector

     

    SC/SMA905

    Fiber Parameters

    Operating Current

    A

     

     

    12.0

    Operating Voltage

    V

     

     

    28.5

    Conversion Efficiency

    %

     

    48

     

    Wavelength Stabilized Current Range

    A

    6.0

     

    12.0

    150W 888nm 200μm Fiber Coupled Power Diode Laser (GK-WS888150200S)
    150W 888nm 200μm Fiber Coupled Power Diode Laser (GK-WS888150200S)

    product description

    The laser features a fiber core diameter of 200μm and a numerical aperture (NA) of 0.22, ensuring efficient coupling and optimal beam quality. It operates with a spectral width of 1.0nm (FWHM), providing stable and focused performance for various demanding applications. The power conversion efficiency is 48%, which translates to energy-efficient operation, while the operating current ranges from 6A to 12A, offering flexibility in power control.

    With a 2.0-meter pigtail length and an SC/SMA905 connector, the laser is designed for easy integration into existing systems and versatile configurations. The wavelength stability and high power make it ideal for high-precision tasks such as laser pumping, materials processing, medical treatments, and advanced optical research.