Uv led 280nm UVC led for sterilization
New product deep uv smd led: smd uvc led 270-280nm, this led is quartz glass lens, lens material: Au plating on Cu Substrate/Al reflector. View angle is 120 degree. It have some different power, usage current can be 20ma,30ma, 50ma, 100ma, 150ma. Our factory has large capacity and guarantees high quality for uv led 280nm.
uv led 280nm Parameter:
uv led 280nm Features:
1. Source Color: UV 270-280nm
3. 120 view angle
4.Long operating life
Application for uv led 280nm
1. Anesthesia mask
4. Infusion tube
5. Vascular implant accessories
7. Arterial localization
8. Tubular drainage device
9. Tracheal tube
10. Blood oxygenator
11. Hearing aid
12. Detection, monitoring, and imaging equipment
14. Bonding PVC, Thermoplastic (Polycarbonate and ABS)
Production for uv led 280nm
uv led 280nm Information
As the curing light source, UV Violet LED lamp beads are gradually applied in communications, electronics, optics, printing, and other industries due to their advantages of low heat, small size, and energy saving and environmental protection. It completely replaces UV lamp LED lamps that are solidified by mercury lamps. The wavelengths cover 280nm-310nm-365nm-4 05nm, which can meet various application requirements of UVA.
The current product has been very comprehensive in terms of band and power distribution. In addition to the complete product line, this UV violet LED package also has forward-looking technical advantages, and it is also one of the production-produced deep UV violet LED lamp beads.
Curing principle: Generally the cured material is composed of oligomers, monomers, photoinitiators, additives and other ingredients. Oligomers are high-molecular polymers with an unsaturated double-stranded structure, which can be converted to a cross-linked cured body after reaction. The monomer is the basic unit of the organic synthetic material and is mainly used as a diluent to reduce the viscosity of the chemical system. The photoinitiator generates two kinds of high-energy reactive radicals and cations under the irradiation of UV light, and promotes cross-link curing of oligomers and monomeric unsaturated double bonds. The auxiliary agent is not directly involved in the curing process, and its main role is to prevent the cured material from appearing gelled or slowly curing in dark light.
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