Power management of direct-view LED backlight for liquid crystal display
In this paper, we present a study of management of power in function of luminous efficacy of white LED as well as the efficiency enhancement of the direct-view backlight with photon recycling. A cavity efficiency as high as 90.7% is demonstrated for a direct-view backlight with photon recycling. In...
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Veröffentlicht in: | Optics and laser technology 2013-03, Vol.46, p.142-144 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this paper, we present a study of management of power in function of luminous efficacy of white LED as well as the efficiency enhancement of the direct-view backlight with photon recycling. A cavity efficiency as high as 90.7% is demonstrated for a direct-view backlight with photon recycling. In the future, with a 90% backlight cavity, luminous efficacy of 200lm/W for white LEDs, and a transmission efficiency of 10% for the liquid crystal panel, the required power of LEDs could be only 16W. Up to 85% energy saving could be achieved in comparison to the power of the current liquid crystal display.
► A design for a high-efficiency backlight with direct-view structure based on photon recycling. ► Optical efficiency of the backlight as high as 90.7% is demonstrated. ► When the luminous efficacy of white LED reaches 200lm/W, the power of LEDs is 16W for the backlight. ► 85% in energy saving can be achieved for LED backlight. |
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ISSN: | 0030-3992 1879-2545 |
DOI: | 10.1016/j.optlastec.2012.06.034 |