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MC-XS500 simulated daylight xenon light source for Bio-optics

Product ID:GSYgy033

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Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberMC-XS500
    Brand NameMEIRUICHEN
    Payment TermsT/T, paypal
    MC-XS500 simulated daylight xenon light source
     
    Introduction:
       MC-XS500 series products have been widely used in scientific research, production, military, medical, teaching, etc. Such as spectroscopy, photochemistry, bio-optical research, polymer photopolymerization, photocuring, nanomaterials, photosensitive materials, photoelectric conversion materials; detection and analysis of weak traces in public security criminal cases, analysis of various mineral deposit samples such as petroleum, surface acoustic wave devices , Semiconductor devices and other surface scratch detection; simulation of solar light source, endoscope light source, infrared light source, ultraviolet light source application, photo-engraving, lithography, etc. applications. The MC-XS500 series is a research-level xenon lamp light source specifically for solar cells; a 500W high-voltage short-arc spherical xenon lamp is installed inside the light source to form arc discharge under high-frequency and high-voltage excitation. The high-pressure short-arc spherical xenon lamp is a point light source with a small luminous point. When ignited, it radiates a strong and stable continuous spectrum from ultraviolet to near-infrared. The light color in the visible region is very similar to daylight, with high energy density and stable output. It can be used in solar cell research, and can also be used in photoelectric response device testing, surface photovoltage spectroscopy, biological illumination, photocatalysis, surface defect analysis and other fields.
    Features:
    1.Good output parallel light performance
    2.Small spot size
    3.High energy density
    4.Good uniformity of parallel light
    5.Small divergence angle
    6.High energy density
    Technical Parameters:
    Light source structure: split light source
    Control method: manual electric control
    Power adjustment: knob-type navigation adjustment
    Bulb power: 500W
    Current adjustment range: 13-25A
    Optical power density calibration: 50mw/cm2500 mw/cm2
    Parallel light divergence angle: less than 1°
    Precise point light source system, ideal spot 1-3mm
    Spectral range: 300nm2500nm
    Simulated sunlight spectrum: AM1.5G standard
    Diameter of parallel light spot: 50mm
    Lamp life: 800 hours
    Light stability: ±0.5%


     
     
  • Introduction:
       MC-XS500 series products have been widely used in scientific research, production, military, medical, teaching, etc. Such as spectroscopy, photochemistry, bio-optical research, polymer photopolymerization, photocuring, nanomaterials, photosensitive materials, photoelectric conversion materials; detection and analysis of weak traces in public security criminal cases, analysis of various mineral deposit samples such as petroleum, surface acoustic wave devices , Semiconductor devices and other surface scratch detection; simulation of solar light source, endoscope light source, infrared light source, ultraviolet light source application, photo-engraving, lithography, etc. applications. The MC-XS500 series is a research-level xenon lamp light source specifically for solar cells; a 500W high-voltage short-arc spherical xenon lamp is installed inside the light source to form arc discharge under high-frequency and high-voltage excitation. The high-pressure short-arc spherical xenon lamp is a point light source with a small luminous point. When ignited, it radiates a strong and stable continuous spectrum from ultraviolet to near-infrared. The light color in the visible region is very similar to daylight, with high energy density and stable output. It can be used in solar cell research, and can also be used in photoelectric response device testing, surface photovoltage spectroscopy, biological illumination, photocatalysis, surface defect analysis and other fields.
     
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