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    • 51. 发明申请
    • SOLAR CELL MODULE AND SOLAR PHOTOVOLTAIC DEVICE
    • 太阳能电池模块和太阳能光伏器件
    • US20130000697A1
    • 2013-01-03
    • US13634791
    • 2011-03-02
    • Tsuyoshi MaedaHideki Uchida
    • Tsuyoshi MaedaHideki Uchida
    • H01L31/052
    • H01L31/055G02B5/0226G02B5/0242G02B5/0278G02B6/0043G02B6/0076H01L31/0547Y02E10/52
    • A solar cell module (10) of the present invention includes a light guide plate (1), a solar cell element (2) and a light diffusion section (3). The light diffusion section (3) is provided on a light-incident surface of the light guide plate (1), which light-incident surface receives sunlight. Further, the solar cell element (2) is provided on an intersecting surface (end surface) which intersects the light-incident surface of the light guide plate (1). The light diffusion section (3) is provided so that the farther away from the solar cell element (2) a position is, the larger an amount of light diffused by the light diffusion section (3) is. The light diffusion section (3) diffuses light entering the light guide plate (1), so as to enhance efficiency of gathering light to the solar cell element (2).
    • 本发明的太阳能电池模块(10)包括导光板(1),太阳能电池元件(2)和光扩散部(3)。 光扩散部(3)设置在导光板(1)的光入射面上,该光入射面受光。 此外,太阳能电池元件(2)设置在与导光板(1)的光入射面相交的交叉面(端面)上。 光扩散部(3)被设置成使得离太阳能电池元件(2)越远的位置是由光扩散部(3)扩散的光量越大。 光扩散部(3)使进入导光板(1)的光扩散,以提高向太阳能电池元件(2)聚光的效率。
    • 57. 发明申请
    • ORGANIC ELECTROLUMINESCENT ELEMENT
    • 有机电致发光元件
    • US20100283045A1
    • 2010-11-11
    • US12811058
    • 2008-08-28
    • Hideki Uchida
    • Hideki Uchida
    • H01L51/50H01L51/54
    • H01L51/5048B82Y20/00B82Y30/00H01L2251/5369
    • The present invention provides an organic electroluminescent element having extended life. The present invention is an organic electroluminescent element having a pair of electrodes, and an organic light-emitting layer that contains a polymer light-emitting material and is sandwiched by the pair of electrodes, the organic electroluminescent element comprising: a first nanoparticle layer containing electron-transport metal oxide nanoparticles and hole-transport metal oxide nanoparticles, between the organic light-emitting layer and one of the pair of electrodes; and a second nanoparticle layer containing electron-transport metal oxide nanoparticles and hole-transport metal oxide nanoparticles, between the organic light-emitting layer and the other of the pair of electrodes.
    • 本发明提供了具有延长寿命的有机电致发光元件。 本发明是一种具有一对电极的有机电致发光元件和含有聚合物发光材料并被该对电极夹持的有机发光层,该有机电致发光元件包括:含有电子的第一纳米粒子层 - 传输金属氧化物纳米颗粒和空穴传输金属氧化物纳米颗粒,在有机发光层和一对电极中的一个之间; 和含有电子传输金属氧化物纳米颗粒和空穴传输金属氧化物纳米颗粒的第二纳米颗粒层,在有机发光层和该对电极中的另一个之间。
    • 58. 发明授权
    • Organic electroluminescent element exhibiting temperature-dependent photoluminescence intensity
    • 具有温度依赖性光致发光强度的有机电致发光元件
    • US07595587B2
    • 2009-09-29
    • US11570714
    • 2005-05-16
    • Hideki Uchida
    • Hideki Uchida
    • H01L51/50H01L51/52
    • H01L51/0039G09G3/006G09G3/3208G09G2320/043H01L51/0043H01L51/5012
    • To provide an organic electroluminescent element excellent in lifetime characteristics, an organic electroluminescent element-testing device and an organic electroluminescent element-testing method each capable of easily testing quality of lifetime characteristics of an organic electroluminescent element in a short time without deterioration of the element, and an organic electroluminescent display device. An organic electroluminescent element having a structure in which one or more organic layers including at least a luminescent layer are interposed between electrodes, wherein the organic electroluminescent element has a photoluminescence intensity at 300 K stronger than a photoluminescence intensity at a temperature of less than 300 K, and preferably stronger than a photoluminescence intensity at 5 K.
    • 为了提供寿命特性优异的有机电致发光元件,有机电致发光元件测试装置和有机电致发光元件测试方法,其能够在短时间内容易地测试有机电致发光元件的寿命特性的质量而不会使元件劣化, 和有机电致发光显示装置。 一种有机电致发光元件,其具有将至少包含发光层的一个或多个有机层插入电极之间的结构,其中所述有机电致发光元件的光致发光强度比在低于300K的温度下的光致发光强度高300K ,优选在5K下强于光致发光强度。
    • 59. 发明授权
    • Display
    • 显示
    • US07385654B2
    • 2008-06-10
    • US11400490
    • 2006-04-07
    • Seiichi MitsuiMasaaki KabeTeiyu SakoHideki Uchida
    • Seiichi MitsuiMasaaki KabeTeiyu SakoHideki Uchida
    • G02F1/1335
    • G02F1/133603G02F1/133621G02F1/1397G02F2001/133616G02F2203/02H01L51/5281
    • A display includes a polarizing member and a reflective display element behind an EL element. The EL element self-emits light to display information and doubles as a display-use light source for the reflective display element. In a sufficiently bright environment, ambient light enters a liquid crystal layer after passing through a frontal substrate of the reflective display element, and is reflected from a metal electrode to produce displays. In addition to the direct light from the EL element, light that enters the liquid crystal layer is simultaneously used. In a dark environment, the EL element emits light, and displayed contents are visible owing to the reflection from the metal electrode as well as directly exiting light. The structure makes it possible to provide a novel type of display that allows a user to select one of various display modes at his/her own discretion according to surrounding conditions and that also shows information in a clearly visible fashion, be it outdoors under clear skies or in a dark place, without giving up their thin, lightweight features.
    • 显示器包括偏振构件和EL元件后面的反射显示元件。 EL元件自发光以显示信息并兼作反射显示元件的显示用光源。 在足够亮的环境中,环境光通过反射显示元件的正面基板后进入液晶层,并从金属电极反射以产生显示器。 除了来自EL元件的直射光之外,同时使用进入液晶层的光。 在黑暗的环境中,EL元件发光,并且由于来自金属电极的反射以及直接退出光,显示的内容是可见的。 该结构使得可以提供一种新型的显示器,其允许用户根据周围条件自己选择各种显示模式之一,并且还以清晰可见的方式显示信息,无论是在晴朗的天空下的户外 或在黑暗的地方,而不放弃他们薄而轻便的功能。