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  • 405nm-2.5W Fiber Receptacle Diode Laser Module

    LP405-2500 operates at 405nm and produces output power of 2.5W from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appli

  • 440nm-2.5W Fiber Receptacle Diode Laser Module

    LP440-2500S operates at 440nm and produces output power of 2.5W from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appl

  • 405nm-480mW Fiber Receptacle Diode Laser Module

    LP405-480S operates at 405nm and produces output power of 480mW from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appl

  • 405nm-640mW Fiber Receptacle Diode Laser Module

    LP405-640S operates at 405nm and produces output power of 640mW from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appl

  • 395nm-280mW Fiber Receptacle Diode Laser Module

    LP395-280S operates at 395nm and produces output power of 280mW from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appl

  • 405nm-800mW Fiber Receptacle Diode Laser Module

    LP405-800 operates at 405nm and produces output power of 800mW from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appli

  • 425nm-1.5W Fiber Receptacle Diode Laser Module

    LP425-1500 operates at 425nm and produces output power of 1.5W from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appli

  • 435nm-4W Fiber Receptacle Diode Laser Module

    LP435-4000 operates at 435nm and produces output power of 4.0W from 105µm core fiber- ideals for Laser Direct Imaging (LDI) in the PCB photolithography process, fluorescence excitation and other appli

  • Crystal Fiber Waveguide Yb:YAG-Er:YAG

    Compare with glass optical waveguides, the crystal fiber waveguide adopted rare earth ion doped YAG crystals as core and cladding, which has higher thermal conductivity and can greatly increase the up

  • Aspheric Fiber Collimator-405nm

    The CMA series of receptacle-style fiber collimators adopt AR-coated aspheric lenses with focal lengths ranging from 4mm to 18mm, mounted inside non-magnetic stainless steel housings with receptacles