In our design of the backlight module—without any brightness enhancement film (BEF, Diffuser)—a new type of light guide plate, integrating the functions of light guide plate, diffuser plate, and p...
Industry By incorporating a light guide with microstructure designs on both the light-incident and light-emitting surfaces, the prototype module achieved a
Industry 1 Introduction This paper explores the application of mini-LED technol-ogy , which has primarily been developed for LCD back-light unit , to general lighting for the first time. Mini-LED technology offers
Industry The module frame with 85% gauss scattering and 15% absorptivity surrounds the sides and bottom of LGP to prevent the escape of light and plays a fixed role. A receiving screen is located
Industry Abstract: Liquid crystal displays have many good qualities, such as ultrathinness, light weight, high brightness, and so forth. It is very important to improve the display properties of backlight module
Industry VL53L1CX ultra-low power (ULP) Package size : 4.9 x 2.5 x 1.56 mm FoV : 27° Single zone
Industry SunLED''s highly reliable and consistent ultra-low current LEDs support engineering demands with over 90% power reduction compared to traditional LEDs.
Industry By incorporating a light guide with microstructure designs on both the light-incident and light-emitting surfaces, the prototype module achieved a uniformity of 90.79% and a luminance of
Industry We proposed a design combining edge-light mini-LEDs and light-guiding microstructure lenses to reduce the number of light sources required in displays considerably.
Industry By transmitting light with minimal loss, LGPs support lower power consumption and reduce operational costs over time. Their long lifespan and reliability contribute to long-term savings in both commercial
Industry This paper presents a zero-optical-distance mini-LED backlight with cone-shaped light coupling microstructures to achieve an ultra-thin backlight architecture (~0.1 mm thickness) by
Industry In this manuscript we combine electromagnetic simulations and fluorescence spectroscopy to characterize light guiding, localization, and energy transfer in optoplasmonic chains.
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