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200W 450nm 200μm Fiber Coupled Power Diode Laser (GK-450200200S)

Diode laser

200W 450nm 200μm Fiber Coupled Power Diode Laser (GK-450200200S)

The GKER Photonics 200W 450nm Fiber Coupled Power Diode Laser (GK-450200200S) offers a powerful and precise solution for high-performance applications. Operating at a center wavelength of 450nm with a maximum output power of 200W, this diode laser provides exceptional blue light output. Its fiber coupling system, featuring a 200μm core diameter and an SMA905 connector, ensures high efficiency and ease of integration into various systems.

    description1

    Specifications

    Optical Parameters

    Unit

    Minimum

    Typical

    Maximum

    Output Power

    W

     

    200

     

    Center Wavelength

    nm

     

    450

     

    95% Power NA

     

     

    0.19

     

    Fiber Parameters

    Core Diameter

    μm

    197

    200

    203

    Numerical Aperture

     

    0.20

    0.22

    0.24

    Pigtail Length

    m

    1.5

    2.0

     

    Connector

     

    SMA905

    Fiber Parameters

    Operating Current

    A

     

     

    2.5

    Operating Voltage

    V

     

     

    100×4/400

    Conversion Efficiency

    %

     

    20

    200W 450nm 200μm Fiber Coupled Power Diode Laser (GK-450200200S)
    200W 450nm 200μm Fiber Coupled Power Diode Laser (GK-450200200S)

    product description

    This diode laser is designed with a 95% power numerical aperture (NA) of 0.20, which allows for precise light transmission and focusing. The typical conversion efficiency of 20% ensures a high power-to-output ratio, maximizing operational efficiency. With an operating current of 200A and voltage of 203V, the GK-450200200S laser is ideal for applications requiring high power and stable performance.

    The durable 1.5m pigtail and the SMA905 connector make this diode laser easily adaptable for industrial and scientific use. The GK-450200200S excels in laser marking, material processing, and scientific research, offering reliable, high-intensity performance for demanding tasks.