12.07.2016
The submersible UV Lamp are the perfect way to control free-floating micro-organism as well as disease causing pathogens. The elecromagnetic spectrum shows light in all its possible wavelengths, measured in nanometers (nm.).
Gels need photoinitiators in them to activate the other molecules and turn the gel into a hard plastic. The thing with photoinitiators is that the most easily activated ones on the market are bright orange, which when placed inside already pigmented gels will be overpowered and not noticed, but in clear gels they stand out.
The new crop of LED gel lamps on the market have caused a bit of confusion as to the benefits and differences between LED and the standard UV lamps techs have been using for years.


All light is categorized by its different wavelengths, which you can see charted here as the Electromagnetic Spectrum. The majority of clear or lightly pigmented photoinitiators on the market today become activated in wavelengths that are outside of the typical wavelengths that LED lamps emit.
The photoinitiators in the gel are designed to work at precisely the same wavelengths as the lights emit. To help clear up the subject, NAILS has highlighted the biggest differences between the two so you can be better informed on lamp purchases and maintenance. A key note to understand is that LED lights are actually UV lights also, because they emit light that is within the UV spectrum (specifically UV-A).


So because CFLs have a broader wavelength output, they are typically more effective at curing most clear gels.
The traditional UV lights we’ll call compact fluorescent lights (UV CFL), after the bulbs they use. Clear photoinitiators with good absorbance rates into this range (the purple line) are used in clear gels.



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