LED North America plans to cool LED light with graphite foam

LED North America has acquired a new technology that extends the life of light-emitting diode lamps from DOE's Oak Ridge National Laboratory.

The firm plans to use the graphite foam to passively cool components in LED lamps.

Cooling LED lamps is critical to increasing their efficiency, considering that each 10-degree decrease in temperature can double the life of the lighting components.

As a result, with graphite foam, which has excellent thermal conductivity properties, to more efficiently manage the heat of LEDs could help extend the lamp's lifespan and lower its price, making the lamps more attractive to a broader consumer base.

Disclaimers of Warranties
1. The website does not warrant the following:
1.1 The services from the website meets your requirement;
1.2 The accuracy, completeness, or timeliness of the service;
1.3 The accuracy, reliability of conclusions drawn from using the service;
1.4 The accuracy, completeness, or timeliness, or security of any information that you download from the website
2. The services provided by the website is intended for your reference only. The website shall be not be responsible for investment decisions, damages, or other losses resulting from use of the website or the information contained therein<
Proprietary Rights
You may not reproduce, modify, create derivative works from, display, perform, publish, distribute, disseminate, broadcast or circulate to any third party, any materials contained on the services without the express prior written consent of the website or its legal owner.

LEDVANCE is proud to announce that three of its most innovative lighting solutions have won recognition in the 2025 Illuminating Engineering Society (IES) Progress Report, a prestigious annual showcase of advancements in lighting technology. T... READ MORE

XLamp® CTW LEDs bring lighting flexibility to life New XLamp® CTW Series – Two-Channel CCT-Tunable White COB LEDs Cree LED’s XLamp CTW Series redefines CCT-tunable COB LEDs with unmatched lumen density, efficiency and de... READ MORE