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100W Laser Diode, 808nm

  • 808nm 100W Laser
  • 808nm 100W Package

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sku / item#: RLS/K808DA9RN-100
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Key Features
  • 808nm Wavelength
  • 100W Output power
  • High Reliability Multi-Single Emitter Technology
  • 200µm Fiber Core Diameter, 0.22 N.A.

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MODEL RLS/K808DA9RN-100
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General Parameters
  • CW Output Power (min): 100W
  • Threshold current (typical): 1.4 Amps
  • Operating current (max): 9.5 Amps
  • Operating voltage (max): 30 Volts
  • Reverse Voltage (typical): 37.5 Volts
  • Slope Efficiency (typical): 10 W/A
  • Electrical-to-Optical Efficiency (min): 38%
  • Center wavelength: 805nm(min) - 811nm(max)
  • Spectral width (FWHM) (typical): 5nm
  • Wavelength Shift with Temperature (typical): 0.3nm/C
  • Life Time (MTTF) (typical): 10,000 hours
fiber Data (typical)
  • Buffer diameter: 400μm
  • Cladding diameter: 220μm
  • Core diameter: 200μm
  • Numeric aperture: 0.22
  • Fiber length: 1.5 meter
Other Information
  • ESD (max): 500 Volts
  • Storage temperature: -20C to 70C
  • Lead Soldering Temp (max): 260C
  • Lead Soldering Time (max): 10 sec
  • Operating case temperature: 15C to 35C
  • Relative Humidity: 15% to 75%
Key Applications
  • Solid-state laser pumping
  • Medical use
  • Material processing

Product Overview:

100W Laser Diode, 808nm Overview:

Key features of these devices include 100 watts of high power output, an 808nm wavelength, as well as a 200μm fiber core diameter. They are manufactured by adopting specialized fiber-coupling techniques, resulting in volume products with a high efficiency, stability and superior beam quality. The 808nm products are achieved by transforming the asymmetric radiation from the 100W laser diode chip into an output fiber with small core diameter by using special micro optics. Inspecting and burn-in procedures in every aspect come to a result to guarantee each product with the reliability, stability and long lifetime. These lasers are commonly used for solid-state laser pumping, material processing, and a series of applications in the medical industry.

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