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PL-X300D-FH Series Xenon Light Source for Photocatalytic applications

Product ID:GSYgy036

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Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberPL-X300D-FH
    Brand NamePULINSAISI
    Payment TermsTT,PAYPAL
    PL-X300D-FH Series Xenon Light Source
       
    Introduction:
        The PL-X300D series of xenon lamp light sources for photodegradation/photolysis of water to produce hydrogen is a research-level xenon lamp light source for photocatalytic applications. A 300W high-voltage short-arc xenon lamp is installed inside the light source, which forms an 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, the radiated light wave is strong and stable, with a strong 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. Widely used in research fields such as photocatalysis, industrial catalysis, photodegradation of aquatic hydrogen, photochemical catalysis, photochemical synthesis, photodegradation of pollutants, water pollution treatment, biological illumination, optical detection, various simulated sunlight acceleration experiments, ultraviolet band acceleration experiments, etc. .
    Features:
    1. Use large-aperture high-quality UV quartz lens to improve light collection efficiency.
    2. The back light reflector structure is adopted to further improve the light collection efficiency.
    3. Built-in trigger to avoid potential safety hazards caused by high voltage transmission between the light source room and the power supply.
    4. The color temperature is as high as 6000K, simulating sunlight.
    5. The steering head and filter device adopt infrared transmission and reflection filter (visible high reflection).
    6. The refrigeration method adopts imported metal fan to circulate refrigeration.
    7. This light source has a remote trigger device to avoid potential safety hazards caused by high voltage.
    8. The light head can be rotated 360 degrees arbitrarily and can freely expand and contract to explore the depth.
    9. The digital ammeter displays the current, and the current and light intensity are adjustable.
    10. There is a filter installation position, and multi-stage filters can be connected in series.
    11. Optional lifting platform, anti-ultraviolet goggles, point light source optical fiber and other accessories.
    Technical parameter:
    Device model: PL-X300D
    Total luminous output power: 50W
    Luminous spectrum: 320nm2500nm
    Input power: 150320W adjustable
    Maximum working current: 22A
    UV output power: 2.6W
    Visible light output: 19.6W
    Lamp window: 25.4mm
    Diameter of working spot: 3-65mm (adjustable)
    Filtering method: multi-stage filtering and turning
    Light output form: round spot
    Light collection method: ellipsoid total reflection
    Light box heat dissipation form: high-efficiency axial heat dissipation module
    Light beam output angle: horizontal, vertical or 360° arbitrarily rotating irradiation along the optical axis
    Infrared transmission: 800nm-1100nm, the transmittance is not less than 80%
    Visible reflection: 350nm-790nm reflectivity is not less than 96%
    Lamp life: 1000H
    Parallel light divergence angle: average 5°
  • Introduction:
        The PL-X300D series of xenon lamp light sources for photodegradation/photolysis of water to produce hydrogen is a research-level xenon lamp light source for photocatalytic applications. A 300W high-voltage short-arc xenon lamp is installed inside the light source, which forms an 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, the radiated light wave is strong and stable, with a strong 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. Widely used in research fields such as photocatalysis, industrial catalysis, photodegradation of aquatic hydrogen, photochemical catalysis, photochemical synthesis, photodegradation of pollutants, water pollution treatment, biological illumination, optical detection, various simulated sunlight acceleration experiments, ultraviolet band acceleration experiments, etc. .
     
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