首页> 外国专利> OPTICAL DEVICE AUGMENTING THE EMISSION OF ELECTRO-LUMINESCENT LIGHT SOURCES WITH HELP OF A DICHROIC ZNO NANOROD COMPRISING FILTER

OPTICAL DEVICE AUGMENTING THE EMISSION OF ELECTRO-LUMINESCENT LIGHT SOURCES WITH HELP OF A DICHROIC ZNO NANOROD COMPRISING FILTER

机译:光学器件可增强含二元Zno纳米滤光片的电致发光光源的发射

摘要

This Optical Device is conformed by an optical reflector and a filter, the reflector is a diffuse or specular metallic surface with a reflectance of not less than 98%, of shape and dimensions according to the lamp to be affected. The optical filter is a rigid structure and transparent to visible light, with geometric shape and dimensions also according to the lamp to be affected, it is made of organic or inorganic material, and serves as a substrate on which a layer of zinc oxide is applied, specifically a nano structure of zinc oxide nano wires, to form a partially reflective and anti-reflective layer simultaneously as a function of the wavelength of the light that passes through it. Properly placed on the luminescent layer of a fluorescent lamp or White Light LED, this Optical Device retro reflects to said luminescent layer, most of the light of short wavelength and high energy to be converted into longer wavelength light and lower energy by the same source luminescent layer, which results in an increase of the total light emission of at least 20%, without modifying the Chromatic Reproduction Index (CRI) of the source
机译:该光学装置由光学反射镜和滤光片组成,该反射镜是漫射或镜面金属表面,其反射率不小于98%(取决于要影响的灯的形状和尺寸)。光学滤光片是一种刚性结构,对可见光透明,其几何形状和尺寸也取决于要受影响的灯,它是由有机或无机材料制成,并用作在其上涂覆氧化锌层的基板尤其是氧化锌纳米线的纳米结构,以同时形成部分反射层和减反射层,这是通过它的光的波长的函数。该光学设备正确放置在荧光灯或白光LED的发光层上,可将大部分短波长和高能量的光向后反射到所述发光层,并通过相同的光源发光将其转换为较长波长的光和较低能量的光层,导致总发光量增加至少20%,而不会改变光源的色再现指数(CRI)

著录项

  • 公开/公告号NO20190786A1

    专利类型

  • 公开/公告日2019-06-23

    原文格式PDF

  • 申请/专利权人 OPTICAL SAVER TECHNOLOGIES S.A.P.I. DE C.V.;

    申请/专利号NO20190000786

  • 发明设计人 BERMUDEZ ENRIQUE CAPILLA;

    申请日2019-06-23

  • 分类号F21K9/64;F21K9/60;G02B1/118;G02B5/26;G02B27/10;H01L33/46;

  • 国家 NO

  • 入库时间 2022-08-21 12:01:30

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