info@luyorgroup.com
A high-intensity, versatile UV LED Desk Lamp designed for university, research, and industrial laboratories. Excellent for stationary benchtop use, enabling hands-free operation and uninterrupted continuous running.
INTRODUCTION
The LUYOR-3405A is a high-intensity, versatile UV LED Desk Lamp designed for university, research, and industrial laboratories. Excellent for stationary benchtop use, enabling hands-free operation and uninterrupted continuous running.
Powered by high-energy ultraviolet LEDs, it features an IP65-rated waterproof and dustproof lamp head and a rugged aluminum alloy housing that ensures efficient heat dissipation for sustained performance and extended service life.
Benchtop hands-free design — stationary operation frees up both hands for sample handling and experiment monitoring
Pure 365nm wavelength — no UVB or UVC emissions, ensuring safe and targeted irradiation
High-intensity UV output — delivers exceptional irradiance for efficient and reproducible reactions
Adjustable light intensity — dimming knob on the base allows for precise light output control
Flexible gooseneck — flexible positioning for precise aiming at the target area
Instant startup — no warm-up time required
Low heat output — surface temperature remains below 60°C after hours of continuous operation
IP65-rated waterproof & dustproof head — durable and reliable in demanding lab environments
50,000-hour LED lifespan — long-lasting performance with minimal maintenance
Robust aluminum alloy housing — ensures efficient heat dissipation and lasting durability

Light Source: UV-A LED
Power: 20 watts
UV Intensity: 19,750 uw/cm2 at 38cm
Wavelength: 360-370nm, peak 365nm
Dimension: 200 x 130 x 90 mm (base), flexible gooseneck 500 mm long, light head diameter 78 mm
Weight: 1.7 kg
Wang, C., Zhu, H., Zhao, Y., Shi, W., Fu, H., Zhao, Y. & Han, Z. A multi-verse optimizer-based CNN-BiLSTM pixel-level detection model for peanut aflatoxins. Food Chem. 463, 141393 (2025).
Liu, Y., Li, X., Wang, L., Guo, W., Wang, M. & Jiao, T. Facile fabrication and enhanced SERS performance of self-assembled multifunctional films by layer-by-layer technology. Colloids Surf. A 695, 133420 (2025).
Peng, X., Zhang, J. & Xiao, P. Photopolymerization Approach to Advanced Polymer Composites: Integration of Surface-Modified Nanofillers for Enhanced Properties. Adv. Mater. 36, 2400178 (2024).




