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    • 27. 发明授权
    • Metallized high voltage spacers
    • 金属化高压隔板
    • US5742117A
    • 1998-04-21
    • US317299
    • 1994-10-03
    • Christopher J. SpindtDavid L. Morris
    • Christopher J. SpindtDavid L. Morris
    • H01J9/18H01J9/24H01J17/49H01J29/02H01J29/08H01J29/46H01J29/86H01J31/12H01J61/30H01J19/44
    • H01J9/185H01J29/028H01J29/085H01J29/467H01J29/864H01J31/127H01J61/30H01J9/242H01J2329/863H01J2329/864H01J2329/8645H01J2329/8655
    • A flat panel apparatus includes a faceplate with a backplate interior side, a backplate with a backplate interior side, and sidewalls positioned between the faceplate and backplate, all in combination forming an enclosed sealed envelope. At least one spacer is positioned in the envelope. The spacer includes a spacer backplate face, with a periphery, and it is positioned adjacent to the backplate interior side. The spacer also includes a spacer faceplate face, with a periphery, and it is positioned adjacent to the faceplate interior side. A first conductive layer, metallization, is applied to substantially cover the entire spacer backplate face to its periphery. A second conductive layer, metallization, is applied to substantially cover the entire spacer faceplate face to its periphery. A plurality of spacers can be positioned in the sealed envelope, and the spacers can be in the form of walls, posts, or wall segments. In place of the conductive layers at the faces, each spacer can include a plurality of electrodes that extend along spacer sidewalls. In this embodiment, the spacer has a sidewall electrode that is positioned sufficiently close to each face surface as to create good ohmic contact between the face surface and the respective faceplate or backplate interior side.
    • 平板装置包括具有背板内侧的面板,具有背板内侧的背板和位于面板和背板之间的侧壁,所有组合形成封闭密封的外壳。 至少一个间隔物定位在信封中。 间隔件包括具有周边的隔离物背板面,并且其邻近背板内侧定位。 间隔件还包括具有周边的间隔件面板面,并且其定位成与面板内侧相邻。 施加第一导电层,金属化,以基本上将整个间隔物背板面覆盖到其周边。 施加第二导电层,金属化,以基本上将整个间隔件面板面覆盖到其周边。 多个间隔件可以定位在密封的外壳中,并且间隔件可以是壁,柱或壁段的形式。 代替表面处的导电层,每个间隔物可以包括沿间隔壁侧壁延伸的多个电极。 在该实施例中,间隔件具有侧壁电极,该侧壁电极定位成与每个面表面充分接近,以在面部表面和相应的面板或背板内侧之间产生良好的欧姆接触。
    • 28. 发明授权
    • Procedures and apparatus for turning-on and turning-off elements within a field emission display device
    • 场致发射显示装置内的接通和关断元件的程序和装置
    • US06307325B1
    • 2001-10-23
    • US09493698
    • 2000-01-28
    • Donald J. EllowayDavid L. MorrisWilliam J. ScannellChristopher J. Spindt
    • Donald J. EllowayDavid L. MorrisWilliam J. ScannellChristopher J. Spindt
    • G09G310
    • G09G3/22G09G2310/06G09G2310/066G09G2330/02H01J9/39H01J9/44H01J31/127H01J2209/0223
    • A method of removing contaminant particles in newly fabricated field emission displays. According to one embodiment of the present invention, contaminant particles are removed by a conditioning process which includes the steps of: a) driving a anode of a field emission display (FED) to a predetermined voltage; b) slowly increasing an emission current of the FED after the anode has reached the predetermined voltage; and c) providing an ion-trapping device for catching the ions and particles knocked off, or otherwise released, by emitted electrons. In this embodiment, by driving the anode to the predetermined voltage and by slowly increasing the emission current of the FED, contaminant particles are effectively removed without damaging the FED. The present invention also provides a method of operating FEDs to prevent gate-to-emitter current during turn-on and turn-off. In this embodiment, the method comprises the steps of: a) enabling the anode display screen; and, b) enabling the electron-emitters after the anode display screen is enabled. In this embodiment, by allowing sufficient time for the anode display screen to reach a predetermined voltage before the emitter is enabled, the emitted electrons will be attracted to the anode.
    • 一种在新制造的场致发射显示器中去除污染物颗粒的方法。 根据本发明的一个实施例,污染物颗粒通过调节过程去除,包括以下步骤:a)将场致发射显示器(FED)的阳极驱动到预定电压; b)在阳极达到预定电压后,缓慢增加FED的发射电流; 以及c)提供离子捕获装置,用于捕获被发射的电子撞击或以其它方式释放的离子和颗粒。 在本实施例中,通过将阳极驱动到预定电压并且通过缓慢增加FED的发射电流,有效地去除污染物颗粒而不损坏FED。 本发明还提供了一种在开启和关断期间操作FED以防止栅极 - 发射极电流的方法。 在该实施例中,该方法包括以下步骤:a)启用阳极显示屏; 并且b)在使能阳极显示屏幕之后启用电子发射器。 在本实施例中,通过在发射极使能之前允许阳极显示屏足够的时间达到预定电压,发射的电子将被吸引到阳极。