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    • 47. 发明授权
    • Electron beam apparatus, having a spacer with a high-resistance film
    • 电子束装置,具有高电阻膜的间隔物
    • US07053537B2
    • 2006-05-30
    • US10854367
    • 2004-05-27
    • Taro HiroikeKoji YamazakiYoichi Ando
    • Taro HiroikeKoji YamazakiYoichi Ando
    • H01J1/88
    • H01J9/185H01J9/242H01J29/028H01J29/864H01J31/127H01J2329/864H01J2329/8645H01J2329/8655H01J2329/866
    • An electron beam apparatus in which a spacer having a high-resistance film coating a surface of a base material is inserted between a rear plate having electron emitting elements and row-direction wires, and a faceplate having a metal back. The row-direction wires and the metal back are electrically connected via the high-resistance film. An electric field near an electron emitting element near the spacer is maintained to substantially constant irrespective of the positional relationship between the spacer and the electron emitting element near the spacer. When a sheet resistance value of the high-resistance film on a first facing surface of the spacer that faces a row-direction wire is represented by R1, and a sheet resistance value of the high-resistance film on a side surface adjacent to the electron emitting element is represented by R2, R2/R1 is 10 to 200.
    • 一种电子束装置,其中具有涂覆基材表面的高电阻膜的间隔物插入具有电子发射元件的后板和行方向导线之间,以及具有金属背的面板。 行方向导线和金属背部经由高电阻膜电连接。 靠近隔离物的电子发射元件附近的电场保持基本恒定,而与间隔物附近的间隔物和电子发射元件之间的位置关系无关。 当面向行方向导线的间隔件的面对第一面上的高电阻膜的薄层电阻值由R 1表示时,高电阻薄膜在与 电子发射元件由R 2表示,R 2 / R 1为10〜200。
    • 48. 发明申请
    • Anodically-bonded elements for flat panel displays
    • 用于平板显示器的阳极粘接元件
    • US20060073757A1
    • 2006-04-06
    • US11285472
    • 2005-11-21
    • James HoffmannJason Elledge
    • James HoffmannJason Elledge
    • H01J9/24H01J9/00H01J9/26
    • H01J9/185H01J9/242H01J31/127
    • A process for anodically bonding an array of spacer columns to one of the inner major faces on one of the generally planar plates of an evacuated, flat panel video display. The process includes using a generally planar plate having a plurality of spacer column attachment sites; providing electrical interconnection between all attachment sites; coating each attachment site with a patch of oxidizable material; providing an array of unattached permanent glass spacer columns, each unattached permanent spacer column being of uniform length and being positioned longitudinally perpendicular to a single plane, with the plane intersecting the midpoint of each unattached spacer column; positioning the array such that an end of one permanent spacer column is in contact with the oxidizable material patch at each attachment site; and anodically bonding the contacting end of each permanent spacer column to the oxidizable material layer.
    • 将隔离柱阵列阳极接合到抽真空的平板显示器的一个平板上的内主面之一的方法。 该方法包括使用具有多个间隔柱附着位点的大体上平面的板; 提供所有附件位置之间的电气互连; 用一块可氧化材料涂覆每个附着部位; 提供一组未连接的永久性玻璃间隔柱,每个未连接的永久间隔柱具有均匀的长度并且纵向垂直于单个平面定位,其中平面与每个未连接的间隔柱的中点相交; 定位阵列使得一个永久间隔柱的末端在每个附着位置与可氧化材料贴片接触; 并将每个永久间隔柱的接触端阳极结合到可氧化材料层上。