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    • 1. 发明授权
    • Fluorescent lamp and image display apparatus
    • 荧光灯和图像显示装置
    • US08803423B2
    • 2014-08-12
    • US13500312
    • 2010-02-23
    • Masakazu SagawaShin ImamuraToshiaki Kusunoki
    • Masakazu SagawaShin ImamuraToshiaki Kusunoki
    • H01J17/00
    • H01J17/00H01J11/22H01J11/34H01J11/50H01J17/04H01J17/066H01J17/20H01J17/49H01J61/16H01J65/04
    • To obtain effective luminance and light efficiency while avoiding discharge, it is necessary to sufficiently increase a current luminous efficiency of gas and an electron emission efficiency of an electron source. In a fluorescent lamp, an anode electric field is increased by setting a pressure of a noble gas or a molecular gas enclosed to 10 kPa or higher, setting an anode voltage to 240 V or lower, and setting a substrate distance to 0.4 mm or smaller. Furthermore, the resulting effect that the current luminous efficiency is increased in proportion to the electric field is used. Also, by applying a MIM electron source having an electron emission efficiency exceeding 10% as an electron source, a non-discharge fluorescent lamp having a light emission luminance equal to or larger than 104 [cd/m2] and a light emission efficiency equal to or larger than 120 [lm/W] is achieved.
    • 为了在避免放电的同时获得有效的亮度和光效率,必须充分提高气体的电流发光效率和电子源的电子发射效率。 在荧光灯中,通过将惰性气体或分子气体的压力设定为10kPa以上,将阳极电压设定为240V以下,将基板的距离设定为0.4mm以下,来增大阳极电场 。 此外,使用与电场成比例地增加当前发光效率的结果。 此外,通过应用电子发射效率超过10%的MIM电子源作为电子源,具有等于或大于104 [cd / m 2]的发光亮度和等于或等于的发光效率的非放电荧光灯 或大于120 [lm / W]。
    • 8. 发明申请
    • Light emitting display device
    • 发光显示装置
    • US20070035229A1
    • 2007-02-15
    • US11500991
    • 2006-08-09
    • Yoshiro MikamiMasakazu SagawaTomoki NakamuraShoji Shirai
    • Yoshiro MikamiMasakazu SagawaTomoki NakamuraShoji Shirai
    • H01J63/04H01J1/62
    • H01J29/467H01J29/04H01J29/481H01J31/127
    • In a light emitting display device using electron emitter elements, it is possible to prevent lowering of image quality caused by spread of electron beams. MIM (Metal Insulator Metal) is used as the electron emitter elements and each of the electron emitter elements is surrounded by a conductive barrier (scanning wire). The electron emitter elements and the barriers are covered by upper electrodes so that the barriers and the surfaces of the electron emitter elements have the same electrical potential. The electron emitter elements and the barriers are formed on a cathode substrate. Color phosphors of R (red), G (green), and B (blue) are formed on an anode substrate at the side opposing to the cathode substrate. The color phosphors are excited by electron beams emitted from the electron emitter elements.
    • 在使用电子发射体元件的发光显示装置中,可以防止由电子束扩散引起的图像质量的降低。 使用MIM(金属绝缘体金属)作为电子发射体元件,并且每个电子发射体元件被导电屏障(扫描线)包围。 电子发射体元件和屏障被上部电极覆盖,使得电子发射体元件的势垒和表面具有相同的电位。 电子发射体元件和阻挡层形成在阴极基板上。 在与阴极基板相对的一侧的阳极基板上形成R(红色),G(绿色)和B(蓝色)的彩色荧光体。 彩色荧光体被从电子发射体元件发射的电子束激发。