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    • 3. 发明授权
    • Field emission device and field emission display employing the same
    • 场致发射器件和采用其的场致发射显示器
    • US07714493B2
    • 2010-05-11
    • US11438022
    • 2006-05-19
    • Bing-chu DuJie TangCai-lin GuoLiang LiuZhao-fu HuPi-jin ChenShou-shan Fan
    • Bing-chu DuJie TangCai-lin GuoLiang LiuZhao-fu HuPi-jin ChenShou-shan Fan
    • H01J9/02H01J1/02
    • H01J3/022H01J31/127
    • A field emission device (6), in accordance with a preferred embodiment, includes a cathode electrode (61), a gate electrode (64), a separator (62), and a number of emissive units (63) composed of an emissive material. The separator includes an insulating portion (621) and a number of conductive portions (622). The insulating portion of the separator is configured between the cathode electrode and the gate electrode for insulating the cathode electrode from the gate electrode. The emissive units are configured on the separator at positions proximate to two sides of the gate electrode. The emissive units are in connection with the cathode electrode via the conductive portions respectively. The emissive units are distributed on the separator adjacent to two sides of the gate electrode, which promotes an ability of emitting electrons from the emissive material and the emitted electrons to be guided by the gate electrode toward a smaller spot they bombard.
    • 根据优选实施例的场致发射器件(6)包括阴极电极(61),栅极电极(64),隔膜(62)和由发射材料构成的多个发射单元(63) 。 分离器包括绝缘部分(621)和多个导电部分(622)。 隔板的绝缘部分配置在阴极电极和栅电极之间,用于将阴极电极与栅电极绝缘。 发射单元被配置在分离器上靠近栅电极两侧的位置处。 发射单元分别经由导电部分与阴极连接。 发射单元分布在邻近栅电极的两侧的分离器上,这促进了从发射材料发射电子的能力,并且发射的电子被栅电极引导到他们轰击的较小的位置。
    • 6. 发明申请
    • Field emission microelectronic device
    • 场发射微电子器件
    • US20080001513A1
    • 2008-01-03
    • US11640035
    • 2006-12-14
    • Pi-Jin ChenZhao-Fu HuLiang LiuShou-Shan Fan
    • Pi-Jin ChenZhao-Fu HuLiang LiuShou-Shan Fan
    • H01J1/02
    • H01J21/04H01J21/105
    • A nano-scaled field emission electronic device includes a substrate, a cathode electrode, and an anode electrode. The cathode electrode is placed on the substrate and has an emitter. The anode electrode is positioned opposite to and spaced from the cathode electrode. The nano-scaled field emission electronic device further has at least one kind of inert gas filled therein. The following condition is satisfied: h
    • 纳米级场发射电子器件包括衬底,阴极电极和阳极电极。 阴极被放置在衬底上并具有发射极。 阳极电极定位成与阴极电极相对并与其隔开。 纳米级场致发射电子器件还具有填充至少一种惰性气体。 满足以下条件:h λ,其中h表示发射极的顶端与阳极电极之间的距离, h << / MO> 10