2013年11月7日星期四

the semiconductor alloys that make these devices work continue to puzzle scientists

Toshiba says that the LED-lamps provide superior light quality with a variety of color temperatures and distributions and use up to 85% less energy than incandescent and halogen lamps. The company says that they also emit up to 70% less UV rays than traditional sources and are backed by Toshiba's five-year limited warranty.The Hilton team chose to use led high bay light retrofit lamps after learning of the significant energy savings and reduced maintenance costs that would result from the change.
Regarding photocoupler products, YAHAM offers one of the widest product portfolios in the industry with products including 1Mbit, 10Mbit high speed couplers, simple transistors, IGBT Gate Driver based couplers and more to fulfill various applications in the field. Certified by major international safety agencies, all YAHAM photocouplers covers a full range of operating temperatures and high isolation voltages.From the high-resolution glow of flat screen televisions to light bulbs that last for years, light-emitting diodes continue to transform technology. The celebrated efficiency and versatility of LEDs -- and other solid-state technologies including laser diodes and solar photovoltaics -- make them increasingly popular. Their full potential, however, remains untapped, in part because the semiconductor alloys that make these devices work continue to puzzle scientists.

A contentious controversy surrounds the high intensity of one leading LED semiconductor -- indium gallium nitride -- with experts split on whether or not indium-rich clusters within the material provide the LED's remarkable efficiency. Now, researchers from the Massachusetts Institute of Technology and the U.S. Department of Energy's wholesale nichia 160w led high bay light Laboratory have demonstrated definitively that clustering is not the source. The results -- published online May 16 in Applied Physics Letters -- advance fundamental understanding of LED technology and open new research pathways.This discovery helps solve a significant mystery in the field of LED research and demonstrates breakthrough experimental techniques that can advance other sensitive and cutting-edge electronics," said Silvija Gradečak, the Thomas Lord Associate Professor of Materials Science and Engineering at MIT and a coauthor on the study. "The work brings us closer to truly mastering solid-state technologies that could supply light and energy with unprecedented efficiency.

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