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Powered by nine high-intensity UV LEDs, with output precisely focused through a specialized quartz lens to deliver exceptional irradiance and uniform illumination across the target area. Ideal for UV photocatalysis, polymerization, UV curing, photodegradation, mutagenesis, and photoactivation.
INTRODUCTION
The LUYOR-3109 Photocatalytic UV LED Lamp is powered by nine high-intensity UV LEDs, with output precisely focused through a specialized quartz lens to deliver exceptional irradiance and uniform illumination across the target area. Engineered with an IP67-rated waterproof housing and high-output UV performance, this compact UV LED lamp is ideally suited for photocatalysis, polymerization, UV curing, photodegradation, mutagenesis, and photoactivation.
High irradiance — 27W LED delivers output equivalent to a 400W high-pressure mercury lamp
Uniform light distribution — guarantees even exposure across the entire target area
Low-heat operation — advanced cold-light design maintains surface temperature below 50°C, protecting heat-sensitive samples
Instant on/off — no warm-up time required for immediate use
Extended service life — robust LEDs rated for 50,000 hours of reliable operation
Designed for continuous operation — suitable for 24/7 use without performance degradation

Light source: 9 high-power UV LEDs
Wavelength: pure UVA output (360-370nm, peak 365nm), no UVB or UVC
Coverage area: 250 x 250 mm at 38cm
UV intensity: 9,000 uw/cm2 at 38cm
LED Life span: 50,000 hours
Dimension: 113 x 85 x 110 mm

UV Photocatalysis
UV-induced Polymerization
UV Curing
UV Photodegradation
UV Mutagenesis
UV Photoactivation
The LUYOR-3109 Photocatalytic UV LED Lamp is widely recognized as the preferred choice for UV induced reactions, delivering consistent, high-intensity output for reliable and repeatable results.
Li, Q., Li, B., Yang, R., Chen, X., Shang, C., Feng, G., Wu, Z., Teng, Y., He, H., Bai, Y. & Zheng, B. Photosynthesis pneumatic patch promoted deep-wound healing. Cell Biomater. 2, 100047 (2025).
Zheng, B., Li, Q., Fang, L., Cai, X., Liu, Y., Duo, Y., Li, B., Wu, Z., Shen, B., Bai, Y., Cheng, S.-X. & Zhang, X. Microorganism microneedle micro-engine depth drug delivery. Nat. Commun. 15, 8998 (2024).
Lin, X., Li, H.-T., Nie, M.-X., Fu, S.-R., Li, Y., Zhang, Q., Chen, F., Han, D. & Fu, Q. Engineering the properties of transparent hybrid coating toward high hardness, excellent flexibility, and multifunction. ACS Appl. Mater. Interfaces 14, 39432–39440 (2022).
Li, J., Liu, Q., Jin, R., Yin, B., Wei, X. & Lv, D. Endowing cationic surfactant micellar solution with pH, light and temperature triple-response characteristics by introducing 4-(phenylazo)-benzoic acid. J. Ind. Eng. Chem. 109, 130–138 (2022).




