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Home> Industry Information> Deep UV LED technology to break the difficulties

Deep UV LED technology to break the difficulties

September 08, 2022

 Using a unique deep UV LED epitaxial technology achieves a DC power of 45 milliwatts deep in the UV band (260 to 280 nanometers) over a 0.15mm2 single-chip area, creating a record of 30W / cm2 CW optical power density and achieving optical power performance recording of deep UV LEDs..

Professor Theodore Moustakas, a pioneer in the development of blue LED chips and the solid-state lighting revolution, and was independently licensed by Boston University. LED CHIP manufacturing companies use a new approach to epitaxy that offers more optical power and lower cost than existing led products in the market, compared to the traditional techniques that the UV LED industry has tried repeatedly over the past 15 years without success.

"Our new deep UV LED technology continues to validate its superiority, enabling us to extend Haitz'sLaw, a revolution in lighting and display that enables both blue led chips and white LED chips, to deep UV LEDs."  Deep UV LED technology will bring consumers world-class led products. Applications include UV curing, dermatology, biomedical instrumentation, and surface, air and water disinfection.

"We are extremely excited by the tremendous interest and enthusiasm of our customers from led industries," "In the past few months, the world's leading OEM and consumer The electronics manufacturers have been evaluating our current offerings and we are continuing to refine our capabilities and facilities at our headquarters in Silicon Valley to accelerate our expansion to meet our customers' needs with our global supply chain partners. "

Headquartered in Hayward, Silicon Valley, California, RayVio's unique manufacturing process enables rapid capacity expansion and cost reduction through global manufacturing integration. RayVio's cost-effective deep UV LED can effectively reduce system cost, complexity and shorten product market cycles for customers. This is accelerating the application of deep UV LEDs, making it possible for a variety of applications that are relevant to life.

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