kinds of bulb lights

Xenon Light Source

ATG1035
The ATG1035 xenon light source has a spectrum similar to sunlight, with an output wavelength range of 220~2200nm.
Delivery
FOB
minimum order
1 unit
Country of Origin
Made In China
Quantity
Contact Now
Description
Most photochemical experiments require simulating sunlight. The ATG1035 xenon light source has a spectrum similar to sunlight, with an output wavelength range of 220~2200nm. ATG1035 xenon lamp system is a high optical power full-band light source with continuous wavelength distribution. Imported xenon bulbs and module heat dissipation technology are used to ensure concentrated and stable transmission of light energy. The high-efficiency coupling SMA905 interface output facilitates the effective use of light in experiments; a variety of optional accessories improve the convenience of experiments. Can load multiple specifications of filters, etc.
Model
Features
ATG1035-50
50W power xenon lamp
ATG1035-100
100W power xenon lamp
ATG1035-150
150W power xenon lamp
Features
  • High Power Output: High power light source dedicated for fluorescence.
  • UV-visible range: Covers the spectrum from 220-2200nm.
  • Modular heat dissipation method extends the service life of the lamp, at least 1000H.
  • Efficient electro-optical conversion efficiency can continuously output high-energy parallel light.
  • Simple optical structure, adjustable light intensity output, and different wavelengths and bands can be selected to meet diverse use needs.
  • The modular design greatly improves the safety and stability of the product.
  • High energy density and long-term continuous irradiation can be achieved.
  • Rich optional accessories and multi-purpose expansion.
Application
  • Spectral application analysis
  • Photocatalytic
  • Photolysis of water to produce hydrogen
  • Photochemical catalysis andsynthesis
  • Photodegradable pollutants
  • Water pollution treatment
  • Bolighting
  • Optical detection
  • Research fields such as various simulated sunlight, visible light and ultraviolet band accelerated experiments