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    • 2. 发明授权
    • Field emission cathode and method for manufacturing same
    • 场发射阴极及其制造方法
    • US5834885A
    • 1998-11-10
    • US761134
    • 1996-12-06
    • Shigeo ItohTeruo WatanabeKazuyoshi OhtsuMasateru Taniguchi
    • Shigeo ItohTeruo WatanabeKazuyoshi OhtsuMasateru Taniguchi
    • H01J1/304H01J9/02H01J1/62
    • H01J1/3042H01J9/025H01J2201/319
    • A field emission cathode which is capable of increasing bond strength between emitters and a resitive layer and a method for manufacturing the same which is capable of facilitating manufacturing of the cathode. The field emission cathode includes a laminated board, which includes a substrate, and at least a cathode electrode layer, a resitive layer, an insulating layer and a gate electrode layer which are deposited in the form of a film on the substrate in order. The gate electrode layer and insulating layer are formed with through-holes so as to commonly extend through the gate electrode layer and insulating layer. The cathode also includes buffer layers made of an insulating material and formed on portions of the resistive layer exposed via the through-holes, as well as emitters arranged on the buffer layers, respectively, resulting in bond strength between the resistive layer and the emitters being increased.
    • 能够提高发光体和光亮层之间的结合强度的场致发射阴极及其制造方法,其能够促进阴极的制造。 场发射阴极包括层叠板,其包括基板,以及依次在基板上以膜的形式沉积的至少阴极电极层,重新层,绝缘层和栅极电极层。 栅电极层和绝缘层形成有通孔,以通常延伸通过栅电极层和绝缘层。 阴极还包括由绝缘材料制成并形成在通过通孔暴露的电阻层的部分上的缓冲层,以及分别布置在缓冲层上的发射体,导致电阻层和发射体之间的结合强度为 增加。
    • 3. 发明授权
    • Image display device and drive device therefor
    • 图像显示装置及其驱动装置
    • US5949394A
    • 1999-09-07
    • US934022
    • 1997-09-19
    • Takao KishinoTatsuo YamauraKoji OnodakaShigeo Itoh
    • Takao KishinoTatsuo YamauraKoji OnodakaShigeo Itoh
    • G09G3/22H01J29/08H01J31/12H01J31/15
    • B82Y10/00G09G3/22H01J29/085H01J31/127H01J31/15G09G2310/0235
    • An image display device including a field emission element capable of preventing diffusion of electrons to be impinged on a display section. An anode substrate is provided thereon with a phosphor-deposited display section and a cathode substrate is provided thereon with field emission elements including cathode conductors, emitter electrodes and gate electrodes. The cathode conductors and gate electrodes are formed into a stripe-like shape and arranged so as to intersect each other to form a matrix. A stripe-like diffusion prevention electrode is arranged between each adjacent two of the gate electrodes. The emitter electrodes selected by the gate electrodes and cathode conductors emit electrons. The diffusion prevention electrodes on both sides of each of the gate electrodes selected are applied thereto a voltage lower than a voltage of the gate electrodes, so that the electrons may be impinged on the display section required without diffusion, to thereby permit picture cells required to emit light.
    • 一种图像显示装置,包括能够防止电子侵入显示部的扩散的场致发射元件。 阳极基板上设置有荧光体沉积显示部分,阴极基板上设有包括阴极导体,发射极和栅电极的场致发射元件。 阴极导体和栅电极形成为条状,并配置成彼此交叉以形成矩阵。 每个相邻的两个栅电极之间布置条状扩散防止电极。 由栅电极和阴极导体选择的发射极发射电子。 将选择的每个栅电极的两侧的扩散防止电极施加到低于栅电极的电压的电压,使得电子可能被照射在所需的显示部分而不扩散,从而允许 发光。
    • 4. 发明授权
    • Image display device and drive device therefor
    • 图像显示装置及其驱动装置
    • US5703611A
    • 1997-12-30
    • US777193
    • 1996-12-27
    • Takao KishinoTatsuo YamauraKoji OnodakaShigeo Itoh
    • Takao KishinoTatsuo YamauraKoji OnodakaShigeo Itoh
    • G09G3/22H01J29/08H01J31/12H01J31/15
    • B82Y10/00G09G3/22H01J29/085H01J31/127H01J31/15G09G2310/0235
    • An image display device including a field emission element capable of preventing diffusion of electrons to be impinged on a display section. An anode substrate is provided thereon with a phosphor-deposited display section and a cathode substrate is provided thereon with field emission elements including cathode conductors, emitter electrodes and gate electrodes. The cathode conductors and gate electrodes are formed into a stripe-like shape and arranged so as to intersect each other to form a matrix. A stripe-like diffusion prevention electrode is arranged between each adjacent two of the gate electrodes. The emitter electrodes selected by the gate electrodes and cathode conductors emit electrons. The diffusion prevention electrodes on both sides of each of the gate electrodes selected are applied thereto a voltage lower than a voltage of the gate electrodes, so that the electrons may be impinged on the display section required without diffusion, to thereby permit picture cells required to emit light.
    • 一种图像显示装置,包括能够防止电子侵入显示部的扩散的场致发射元件。 阳极基板上设置有荧光体沉积显示部分,阴极基板上设有包括阴极导体,发射极和栅电极的场致发射元件。 阴极导体和栅电极形成为条状,并配置成彼此交叉以形成矩阵。 每个相邻的两个栅电极之间布置条状扩散防止电极。 由栅电极和阴极导体选择的发射极发射电子。 将选择的每个栅电极的两侧的扩散防止电极施加到低于栅电极的电压的电压,使得电子可能被照射在所需的显示部分而不扩散,从而允许 发光。
    • 5. 发明授权
    • Fluorescent luminous type display device
    • 荧光发光型显示装置
    • US06356030B2
    • 2002-03-12
    • US09742539
    • 2000-12-22
    • Shigeo ItohKazuo IwasawaTatsuo YamauraTakao Kishino
    • Shigeo ItohKazuo IwasawaTatsuo YamauraTakao Kishino
    • G09G310
    • G09G3/22G09G3/2014G09G2310/06G09G2310/061G09G2310/063H01J31/127
    • A flourescent luminous type display device capable of providing display at increased luminance while being simplified in structure. An insulating substrate constituting a vacuum airtight envelope is laminatedly formed on an inner surface thereof with cathode electrodes and emitters in order. Another insulating substrate is laminatedly formed on an inner surface thereof with an anode electrode and phosphor layers. The phosphor layers contain a secondary electron emission material. When a switch is closed, electron emitted from the emitters are permitted to be impinged on the phosphor layers, leading to luminescence thereof. The anode electrode merely has a pulse-like drive signal applied thereto through a capacitor, however, secondary electrons emitted from the phosphor layers permit the luminescence to be maintained even after stop of the drive signal.
    • 荧光发光型显示装置能够在结构简化的同时以增加的亮度提供显示。 构成真空密封圈的绝缘基板在其内表面上依次层叠形成阴极电极和发射体。 在其内表面上层叠有另一绝缘基板和阳极电极和荧光体层。 荧光体层包含二次电子发射材料。 当开关闭合时,允许从发射体发射的电子撞击在荧光体层上,导致其发光。 阳极仅通过电容器施加脉冲状的驱动信号,但是从荧光体层发射的二次电子即使在停止驱动信号之后也能保持发光。