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45W 915nm 105μm Fiber Coupled Power Diode Laser (GK-915V45105)

Diode laser

45W 915nm 105μm Fiber Coupled Power Diode Laser (GK-915V45105)

The GKER Photonics 45W 915nm 105μm Fiber Coupled Power Diode Laser (GK-915V45105) is a high-performance laser module designed for precision optical applications. With a maximum output power of 45 watts and a center wavelength of 915nm, this laser offers superior power and reliability for a wide range of industrial, medical, and research uses. The laser’s compact design, coupled with a robust 105μm fiber core, ensures efficient power delivery while maintaining optimal beam quality.

    description1

    Specifications

    Optical Parameters

    Unit

    Minimum

    Typical

    Maximum

    Output Power

    W

    45

     

     

    Center Wavelength

    nm

    900

    915

    930

    95% Power NA

     

     

    0.16

     

    Fiber Parameters

    Core Diameter

    μm

    102

    105

    108

    Numerical Aperture

     

    0.20

    0.22

    0.24

    Pigtail Length

    m

    1.0

    1.2

     

    Fiber Parameters

    Operating Current

    A

     

     

    18.5

    Operating Voltage

    V

     

     

    5.5

    Conversion Efficiency

    %

     

    48

    45W 915nm 105μm Fiber Coupled Power Diode Laser (GK-915V45105)
    45W 915nm 105μm Fiber Coupled Power Diode Laser (GK-915V45105)

    product description

    Engineered for efficiency, this laser module boasts a 95% power Numerical Aperture (NA) of 0.20, ensuring minimal signal loss and maximum output precision. The fiber-coupled design provides stable performance, even in demanding operational environments. The pigtail fiber is designed with a core diameter of 105μm and a numerical aperture of 0.22, making it ideal for applications requiring focused, high-powered light.

    Whether you are involved in material processing, medical applications, or precision measurement systems, the GK-915V45105 offers high reliability, low maintenance, and seamless integration with various optical systems. Its high efficiency and stable wavelength performance make it a dependable choice for demanding environments.