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830nm 200mw Infrared Laser Diode
High-resolution applications including optical data storage, image recording,spectral analysis, printing, point-to-point free-space communications and frequency doubling all require diffraction-limited sources. Faster writing, wider dynamic range and better signal-to-noise ratio may be achieved with the 830nm 200mW single-mode diode lasers.
Available in power levels up to 200 mW kink-free, this advanced diode laser combines a quantum well structure and a real-refractive index-guided singlemode waveguide to provide high power, low astigmatism, narrow spectral width and a single spatial mode Gaussian far field. Our 830nm 200mW diode lasers are among the most reliable high-power diode lasers available in the industry today.
The 830nm 200mW diode lasers operate in single longitudinal mode under some conditions. Like in all Fabry-Perot index-guided diode lasers, spectral broadening,mode hopping and longitudinal mode instability may occur due to small changes in drive current, diode-junction temperature or optical feedback. The unique diode structure features high reliability with long operating life and very low early failure rate. The highest brightness (20 MW/cm2 steradian) is provided by our 830nm 200mW laser diode.
830nm 200mw Infrared Laser Diode
High-resolution applications including optical data storage, image recording,spectral analysis, printing, point-to-point free-space communications and frequency doubling all require diffraction-limited sources. Faster writing, wider dynamic range and better signal-to-noise ratio may be achieved with the 830nm 200mW single-mode diode lasers.
Available in power levels up to 200 mW kink-free, this advanced diode laser combines a quantum well structure and a real-refractive index-guided singlemode waveguide to provide high power, low astigmatism, narrow spectral width and a single spatial mode Gaussian far field. Our 830nm 200mW diode lasers are among the most reliable high-power diode lasers available in the industry today.
The 830nm 200mW diode lasers operate in single longitudinal mode under some conditions. Like in all Fabry-Perot index-guided diode lasers, spectral broadening,mode hopping and longitudinal mode instability may occur due to small changes in drive current, diode-junction temperature or optical feedback. The unique diode structure features high reliability with long operating life and very low early failure rate. The highest brightness (20 MW/cm2 steradian) is provided by our 830nm 200mW laser diode.