VS-1050 Curing offset printing light source Offset printing

Product Model VS-1050 Curing offset printing light source
Product Category Offset printing
Application field Offset printing
length 1065 mm
irradiance 15W/cm2
Product documentation

Product Features

excellent "Focusing parallel light" optical design, Applicable to 0-100MM High illumination single sheet printing machine within the range 700+, Rotary printing machine 100+UVLED, UV, IR, UVC Full range of products, Serve the printing industry.

Application scenarios

Offset printing UVLEDTEK's offset printing specialty UVLED curing light source, Can effectively improve printing efficiency and quality. We rely on professional industrial UV technology, Provide reliable curing solutions for the printing industry.

Scene Title: commercial press: Efficient curing, Enhance advertising, Production efficiency and quality of commercial printed materials such as picture books. package printing: High fidelity and durability, Ensuring food security, High standard requirements for packaging printing in daily chemical and other industries. rotary printing: Adapt to high-speed rotary equipment, Assist in smooth and efficient mass printing processes.

Basic Parameters

parameter name parameter value
wavelength 385 nm
irradiance 15W/cm2
Effective irradiation area 1065*60 mm
Irradiation distance 30~100 mm
cooling method air cooling
Overall dimensions L119. 1*W115. 4*H120mm
Total weight about 7KG
Control method PLC
drive power supply DC power supply
Total machine power about 14KW

structural dimensions

Frequently Asked Questions

What is the color visible to the naked eye UV-C LED Visible part of the emission spectrum, It comes from oxygen substitution sites in semiconductor materials, Electronic transitions between various deep energy levels such as lattice mismatch dislocations and conduction band energy levels. Because the defect energy level is located higher relative to the quantum well valence band, So the photons emitted by electronic transitions have longer wavelengths, usually 450nm left and right, For visible light. Restricted by the accuracy of semiconductor equipment, Chips from different regions and batches on the wafer, The concentration of material defects, There are slight differences in defect categories. This difference results in a difference in the position of deep energy levels that emit visible light, Further emit visible light of different wavelengths, Presenting different colors. Although the wavelength difference is very small, But it is noticeable to the naked eye.
UVC-LED Will not produce ozone, Because the covalent bond between oxygen and oxygen can reach up to 5. 1eV, The corresponding wavelength needs to be at least shorter than 243nm Only ultraviolet rays can interrupt it, Ultimately generate ozone.

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