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    • 1. 发明授权
    • Method of making an electron emission device by anode oxidation
    • 通过阳极氧化制造电子发射器件的方法
    • US06319082B1
    • 2001-11-20
    • US09246579
    • 1999-02-08
    • Takashi HiranoMasami Okita
    • Takashi HiranoMasami Okita
    • H01J900
    • H01J9/025
    • The present invention provides an electron emission device production method for producing an electron emission device exhibiting a preferable electron emission characteristic with a low voltage and an emitter electrode of a highly accurate configuration at a highly accurate position. A conductive layer is formed via an insulation layer on a cathode electrode. A first opening is formed in this conductive layer and a second opening is formed to communicate with the first opening so as to expose the cathode electrode. An emitter electrode is formed on the cathode electrode exposed from the second opening. On the conductive layer, a porous layer having a plurality of holes in the film thickness direction is formed so as to be used as a mask when forming the first opening in the conductive layer.
    • 本发明提供了一种电子发射器件的制造方法,用于制造在高精度位置处具有高精度结构的低电压和发射电极具有优选的电子发射特性的电子发射器件。通过绝缘层形成导电层 在阴极上。 在该导电层中形成第一开口,形成第二开口以与第一开口连通以露出阴极电极。 在从第二开口露出的阴极上形成发射电极。 在导电层上,形成在膜厚度方向上具有多个孔的多孔层,以便在形成导电层中的第一开口时用作掩模。
    • 6. 发明授权
    • Field-emission display with black insulating layer between transparent
electrode and conductive layer
    • 在透明电极和导电层之间具有黑色绝缘层的场发射显示
    • US5534749A
    • 1996-07-09
    • US277576
    • 1994-07-20
    • Toshio OhoshiTadashi KiyomiyaMasami Okita
    • Toshio OhoshiTadashi KiyomiyaMasami Okita
    • H01J29/32H01J1/30H01J29/08H01J29/18H01J29/58H01J31/12H01J1/62
    • H01J31/123H01J29/085H01J29/58
    • A field-emission display has a phosphor panel assembly comprising a transparent electrode, a plurality of coated phosphor layers disposed on the transparent electrode for emitting light in response to bombardment of electron beams emitted from field-emission cathodes, a plurality of black insulating layers disposed between the coated phosphor layers, and a plurality of conductive layers disposed on the black insulating layers, respectively, between the coated phosphor layers and electrically insulated from the transparent electrode by the black insulating layer. The black insulating layers provide a black mask between the phosphor layers to improve the contrast ratio, and the conductive layers are effective to increase the percentage of electron beam utilization, thus improving the quality and resolution of displayed images. These advantages can be achieved without making image display unstable due to charging-up of the black mask and straying of secondary electrons.
    • 场发射显示器具有荧光体面板组件,该荧光体面板组件包括透明电极,多个涂覆的荧光体层,设置在透明电极上,用于响应于从场致发射阴极发射的电子束的轰击而发光;多个黑色绝缘层, 涂覆的荧光体层之间,以及分别设置在涂覆的荧光体层之间的黑色绝缘层上的多个导电层,并通过黑色绝缘层与透明电极电绝缘。 黑色绝缘层在荧光体层之间提供黑色掩模以提高对比度,并且导电层有效地增加电子束利用的百分比,从而提高显示图像的质量和分辨率。 可以实现这些优点,而不会由于黑色掩模的充电和二次电子的偏移而使图像显示不稳定。
    • 9. 发明申请
    • Backlight apparatus and liquid crystal display apparatus
    • 背光装置和液晶显示装置
    • US20060214174A1
    • 2006-09-28
    • US11358463
    • 2006-02-21
    • Toshiaki ShirakumaMasami Okita
    • Toshiaki ShirakumaMasami Okita
    • H01L29/00
    • G09G3/3413G09G2360/145
    • The present invention has been made to reduce manufacturing cost of a liquid crystal display apparatus. The present invention provides a backlight apparatus including an LED chip substrate on which a plurality of red-LED (Light Emitting Diode) chips that emit red light, green-LED chips that emit green light, and blue-LED chips that emit blue light are arranged in a given manner, a diffusion section that is provided above the LED chip substrate and diffuses respective color lights emitted from the LED chips, a light amount detection section that detects the amount of the light emitted from the LED chip substrate, and an adjustment section that adjusts the amount of the current to be supplied to the LED chip substrate based on the light amount detected by the light amount detection section.
    • 本发明是为了降低液晶显示装置的制造成本。 本发明提供一种背光装置,其包括:LED芯片基板,发射红光的多个红色LED(发光二极管)芯片,发出绿色光的绿色LED芯片和发出蓝色光的蓝色LED芯片, 以给定的方式布置扩散部分,其设置在LED芯片基板上方并漫射从LED芯片发射的各个颜色光;光量检测部分,其检测从LED芯片基板发射的光量;以及调节 基于由光量检测部检测出的光量,调整向LED芯片基板供给的电流量。
    • 10. 发明授权
    • Method for manufacturing a fluorescent screen display
    • 荧光屏显示器的制造方法
    • US5989404A
    • 1999-11-23
    • US958299
    • 1997-10-27
    • Tadashi KiyomiyaToshio OhoshiMasami OkitaEisuke NegishiSatoshi Nakada
    • Tadashi KiyomiyaToshio OhoshiMasami OkitaEisuke NegishiSatoshi Nakada
    • H01J9/22H01J29/02H01J29/08H01J29/18H01J29/32H01J29/86H01J31/12
    • H01J9/225H01J29/028H01J29/085H01J29/182H01J29/32H01J29/864H01J31/127H01J2329/8625
    • This invention relates to a fluorescent screen structure wherein a plurality of first electrodes (for example stripelike selected electrodes) having a plurality of fluorescent substances (especially fluorescent substances of different colors for a color screen) severally deposited thereon and second electrodes (for example stripelike reverse bias electrodes not for electrodeposition) not having the fluorescent substances deposited thereon between these first electrodes are provided on a common base (especially a glass substrate for a fluorescent screen panel) and a field emission display (FED) using this and methods for manufacturing these. According to the invention, even in such cases as when pillars for supporting a high vacuum are formed in an FED, a uniform fluorescent screen can be obtained without the pillars constituting an obstruction and a fluorescent substance can be deposited in such a way that it will not subsequently impair the level of a vacuum in a display in which the fluorescent screen is used and also a fluorescent substance can be deposited in a pattern such as a narrow stripe pattern having fine widths and fine pitches highly precisely and without mixed colors and with good manufacturability.
    • 荧光屏结构技术领域本发明涉及荧光屏结构,其中分别具有多个荧光物质(特别是用于彩色屏幕的不同颜色的荧光物质)分别沉积在其上的多个第一电极(例如片状选择的电极)和第二电极(例如带状反转 在这些第一电极之间不具有沉积在其上的荧光物质的偏置电极设置在公共基底(特别是用于荧光屏面板的玻璃基板)和场致发射显示器(FED)上,以及用于制造它们的方法。 根据本发明,即使在FED中形成用于支撑高真空的支柱的情况下,也可以获得均匀的荧光屏,而不会形成阻挡物的柱状物,并且可以以这样的方式沉积荧光物质 不会随后损害使用荧光屏的显示器中的真空度,并且荧光物质可以以高精度且没有混合颜色的良好宽度和细间距的细条纹图案沉积,并且具有良好的颜色 可制造性