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    • 3. 发明授权
    • Light emitting screen and method of fabricating the light emitting screen
    • 发光屏和制造发光屏的方法
    • US08242682B2
    • 2012-08-14
    • US13158535
    • 2011-06-13
    • Ginjiro Toyoguchi
    • Ginjiro Toyoguchi
    • H01J9/00
    • H01J29/28H01J9/148H01J29/322
    • A method of fabricating a light emitting screen 1 comprises steps of providing a resistance layer 6 having a plurality of apertures arranged in a lattice pattern and having light emitting members each arranged in each of the apertures, on a substrate 2 having an image display region 10 and a peripheral region 11 at an outer periphery of the image display region, such that the resistance layer extends from the image display region to the peripheral region, and such that the plurality of apertures are arranged in the image display region, providing a resistance adjusting layer having a resistance value larger than that of the resistance layer, on the resistance layer, to divide the image display region and the peripheral region into a plurality of segments, and forming a film of an electroconductive layer to cover the resistance layer and the light emitting member positioned in the segments.
    • 一种制造发光屏1的方法包括以下步骤:在具有图像显示区域10的基板2上提供电阻层6,该电阻层6具有布置成格子图案的多个孔,并且具有各自布置在每个孔中的发光部件 以及在图像显示区域的外周的外围区域11,使得电阻层从图像显示区域延伸到周边区域,并且使得多个孔口被布置在图像显示区域中,从而提供电阻调节 在电阻层上具有比电阻层大的电阻值的层,将图像显示区域和周边区域分割为多个区段,并且形成导电层的膜以覆盖电阻层和光 位于片段中的发射构件。
    • 6. 发明授权
    • Amorphous diamond materials and associated methods for the use and manufacture thereof
    • 无定形金刚石材料及其使用和制造的相关方法
    • US07358658B2
    • 2008-04-15
    • US11045016
    • 2005-01-26
    • Chien-Min Sung
    • Chien-Min Sung
    • H01J1/62
    • H01J29/28H05B33/22Y10T428/1314
    • An electroluminescence device having improved luminescence per volt input is provided. The device can include a first electrode, a second electrode, a diamond-like carbon layer electrically coupled to at least one of the first electrode or the second electrode, and a luminescent material electrically coupled to the diamond-like carbon layer, to the first electrode, and to the second electrode, such that upon receiving electrons from the diamond-like carbon layer, the luminescent material luminesces. The diamond-like carbon layer and the luminescent material can be separated by a dielectric material. As the frequency of an introduced alternating current is increased, the level of luminosity of the luminescent material increases, and the voltage required to generate similar levels of luminosity decreases.
    • 提供了具有改进的每伏输入发光的电致发光器件。 该装置可以包括电耦合到第一电极或第二电极中的至少一个的第一电极,第二电极,类金刚石碳层和电耦合到类金刚石碳层的发光材料到第一电极 电极和第二电极,使得在从金刚石状碳层接收电子时,发光材料发光。 类金刚石碳层和发光材料可以通过介电材料分离。 随着引入的交流电流的频率增加,发光材料的亮度水平增加,并且产生类似的发光度所需的电压降低。