Field emission display and method of manufacturing the same
    1.
    发明申请
    Field emission display and method of manufacturing the same 失效
    场发射显示及其制造方法

    公开(公告)号:US20040135493A1

    公开(公告)日:2004-07-15

    申请号:US10743791

    申请日:2003-12-24

    Abstract: A field emission display and a method of manufacturing the same are provided. The field emission display includes an anode plate where an anode electrode and a fluorescent layer are formed, a cathode plate where an electron emission source emitting electrons toward the fluorescent material layer and a gate electrode having a gate hole through which the electrons travel are formed, a mesh grid having an electron control hole corresponding to the gate hole and adhered to the cathode plate, and an insulation layer formed on a surface of the mesh grid facing the cathode plate, and spacers provided between the anode plate and the mesh grid so that the mesh grid can be adhered to the cathode plate due to a negative pressure existing between the anode plate and the cathode plate.

    Abstract translation: 提供场发射显示器及其制造方法。 场发射显示器包括阳极板,其中形成阳极电极和荧光层,阴极板,其中向荧光材料层发射电子的电子发射源和形成有电子行进的栅极孔的栅电极, 具有与栅极孔对应并附着于阴极板的电子控制孔的网格栅格,以及形成在面向阴极板的网状网格的表面上的绝缘层,以及设置在阳极板与网格之间的间隔物, 由于存在于阳极板和阴极板之间的负压,网格可以粘附到阴极板。

    Triode structure field emission display device using carbon nanotubes and method of fabricating the same
    2.
    发明申请
    Triode structure field emission display device using carbon nanotubes and method of fabricating the same 失效
    使用碳纳米管的三极结构场致发射显示装置及其制造方法

    公开(公告)号:US20030141495A1

    公开(公告)日:2003-07-31

    申请号:US10347622

    申请日:2003-01-22

    Abstract: A field emission display device and a method of fabricating the same are provided. The field emission display device includes a substrate, a transparent cathode layer, an insulation layer, a gate electrode, a resistance layer, and carbon nanotubes. The transparent cathode layer is deposited on the substrate. The insulation layer is formed on the cathode layer and has a well exposing the cathode layer. The gate electrode is formed on the insulation layer and has an opening corresponding to the well. The resistance layer is formed to surround the surface of the gate electrode and the inner walls of the opening and the well so as to block ultraviolet rays. The carbon nanotube field emitting source is positioned on the exposed cathode layer. An alignment error between the gate electrode and the cathode is removed, and carbon nanotube paste is prevented from remaining during development, thereby preventing current leakage and short circuit between the electrodes and diode emission. Accordingly, the performance of the field emission display device can be improved.

    Abstract translation: 提供场发射显示装置及其制造方法。 场发射显示装置包括基板,透明阴极层,绝缘层,栅电极,电阻层和碳纳米管。 透明阴极层沉积在衬底上。 绝缘层形成在阴极层上并具有使阴极层暴露的良好状态。 栅电极形成在绝缘层上并且具有对应于阱的开口。 电阻层形成为围绕栅电极的表面和开口和阱的内壁,以阻挡紫外线。 碳纳米管场发射源位于暴露的阴极层上。 除去栅电极和阴极之间的对准误差,并且防止在显影期间保留碳纳米管糊,从而防止电极之间的电流泄漏和短路以及二极管发射。 因此,可以提高场发射显示装置的性能。

    Field emission device and method of manufacturing the same
    3.
    发明申请
    Field emission device and method of manufacturing the same 失效
    场发射装置及其制造方法

    公开(公告)号:US20040124756A1

    公开(公告)日:2004-07-01

    申请号:US10735741

    申请日:2003-12-16

    Abstract: A field emission device is provided. The field emission device includes a substrate, a cathode electrode formed on the substrate, a gate insulating layer which is formed on the cathode electrode and has a through hole corresponding to part of the cathode electrode, a gate electrode which has a gate hole corresponding to the through hole and is formed on the gate insulating layer, and an emitter formed on the gate electrode exposed to the bottom of the through hole. The emitter has a stack structure formed of a resistive material layer and an electron emission material layer containing a fine electron emission source formed on the resistive material layer.

    Abstract translation: 提供场致发射装置。 场致发射器件包括衬底,形成在衬底上的阴极电极,形成在阴极电极上并具有与阴极电极的一部分相对应的通孔的栅极绝缘层,栅电极具有对应于 通孔形成在栅极绝缘层上,并且形成在暴露于通孔底部的栅电极上的发射极。 发射极具有由电阻材料层和形成在电阻材料层上的包含精细电子发射源的电子发射材料层形成的堆叠结构。

    Method of fabricating field emission display employing carbon nanotubes
    4.
    发明申请
    Method of fabricating field emission display employing carbon nanotubes 失效
    使用碳纳米管制造场发射显示的方法

    公开(公告)号:US20030027478A1

    公开(公告)日:2003-02-06

    申请号:US10209937

    申请日:2002-08-02

    CPC classification number: B82Y10/00 H01J9/025 H01J2201/30469

    Abstract: A method of fabricating a field emission display employing carbon nanotubes (CNTs) as electron emitters is provided. The method includes forming a cathode on a substrate; forming a gate insulation layer having a plurality of gate holes on the cathode; forming a gate electrode having a plurality of via-holes corresponding to the gate holes, respectively, on the gate insulation layer; forming a plurality of conductive columns higher than the gate electrode on the cathode within the respective gate holes; adhering the CNTs to the bottom of a plate template which is separately provided; bringing the bottom of the template having the CNTs to contact the tops of the conductive columns to adhere the CNTs to the tops of the conductive columns; and firing the conductive columns to lower the levels thereof. Accordingly, the problems of conventional methods, such as sinking of CNTs caused by screen printing, residual CNTs remaining within a gate when a lift-off method is used and short circuiting between gate and cathode due to the residual CNTs, can be solved. In addition, CNTs are applied to only a part for field emission, that is, only the top of a conductive column, thereby requiring fewer CNTs and decreasing fabrication cost.Moreover, the method uses stamping in order to form CNTs, so it is very advantageous in mass production.

    Abstract translation: 提供了使用碳纳米管(CNT)作为电子发射体制造场致发射显示器的方法。 该方法包括在基板上形成阴极; 在所述阴极上形成具有多个栅极孔的栅极绝缘层; 在所述栅极绝缘层上分别形成具有与所述栅极孔对应的多个通孔的栅电极; 在各个门孔内形成比阴极上的栅电极高的多个导电柱; 将CNT粘附到单独提供的板模板的底部; 使具有CNT的模板的底部接触导电柱的顶部以将CNT粘附到导电柱的顶部; 并且烧制导电柱以降低其水平。 因此,可以解决常规方法的问题,例如由丝网印刷引起的CNT的沉没,使用剥离方法时残留在栅极内的残留CNT以及由于残留CNT而引起的栅极和阴极之间的短路。 此外,CNT仅用于场发射的一部分,即只有导电柱的顶部,从而需要更少的CNT并降低制造成本。此外,该方法使用冲压以形成CNT,因此它是非常 有利于批量生产。

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