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    • 34. 发明授权
    • Electron emission device
    • 电子发射装置
    • US07777420B2
    • 2010-08-17
    • US11347329
    • 2006-02-03
    • Sang-Ho JeonByong-Gon LeeSang-Jo Lee
    • Sang-Ho JeonByong-Gon LeeSang-Jo Lee
    • G09G3/10H01J1/62
    • H01J29/467H01J31/127H01J2329/4613
    • An electron emission device includes a first substrate, a second substrate facing the first substrate, a scan electrode formed on the first substrate and having a width Sv, and a data electrode formed on the first substrate perpendicular to and crossing the scan electrode at a crossed region. A unit pixel is disposed in an area of the crossed region and has a pitch Pv. An insulating layer is disposed between the scan electrodes and the data electrodes. An electron emission region is electrically coupled the scan electrode or the data electrode, and the scan electrode and the unit pixel satisfy the following condition: 0.5≦Sv/Pv≦0.95.
    • 电子发射器件包括第一衬底,面对第一衬底的第二衬底,形成在第一衬底上并具有宽度Sv的扫描电极,以及形成在第一衬底上的数据电极,其垂直于并交叉扫描电极 地区。 单位像素设置在交叉区域的区域中并具有间距Pv。 绝缘层设置在扫描电极和数据电极之间。 电子发射区电连接扫描电极或数据电极,扫描电极和单位像素满足以下条件:0.5≦̸ Sv / Pv≦̸ 0.95。
    • 35. 发明授权
    • Fluorescent display device
    • 荧光显示装置
    • US07629737B2
    • 2009-12-08
    • US11805582
    • 2007-05-23
    • Junko YotaniSashiro Uemura
    • Junko YotaniSashiro Uemura
    • H01J19/28
    • H01J29/04H01J29/467H01J29/864H01J31/127H01J2329/04H01J2329/0494H01J2329/4604H01J2329/4613H01J2329/8625
    • A fluorescent display device includes a front glass at least part of which is translucent, a substrate, a cathode, an electron-emitting layer, an electron extracting electrode, a phosphor film and an anode, and a conductive layer. The substrate is formed of an insulating member arranged to oppose the front glass. The front glass and the substrate constitute part of a vacuum envelope. The cathode is disposed on the substrate. The electron-emitting layer includes a carbon nanotube and is formed on a surface of the cathode. The electron extracting electrode is arranged between the substrate and the front glass to be spaced apart from the cathode. The phosphor layer and the anode stack on a surface of the front glass which opposes the substrate. The conductive layer is formed between the cathode and the substrate.
    • 荧光显示装置包括其至少一部分是半透明的前玻璃,基板,阴极,电子发射层,电子提取电极,荧光膜和阳极以及导电层。 衬底由布置成与前玻璃相对的绝缘构件形成。 前玻璃和基板构成真空外壳的一部分。 阴极设置在基板上。 电子发射层包括碳纳米管,并形成在阴极的表面上。 电子提取电极布置在基板和前玻璃之间以与阴极间隔开。 在前玻璃的与基板相对的表面上的荧光体层和阳极堆叠。 导电层形成在阴极和衬底之间。
    • 36. 发明授权
    • Field emission display device with flexible gate electrode and method for manufacturing the same
    • 具有柔性栅电极的场发射显示装置及其制造方法
    • US07439666B1
    • 2008-10-21
    • US11760893
    • 2007-06-11
    • Tien-Sung LiuChih-Che Kuo
    • Tien-Sung LiuChih-Che Kuo
    • H01J1/62
    • H01J29/467H01J31/127H01J2329/4608H01J2329/4613H01J2329/8675
    • A field emission display device with flexible gate electrode and method for manufacturing the same. The field emission display device includes a cathode plate, a gate electrode and an anode plate. The cathode plate includes a cathode substrate and supports on both sides of the cathode. A recess is defined on outer bottom face of the support. The gate electrode includes a flexible mesh and a plurality of fixing tabs on both sides of the flexible mesh. The fixing tab is locked into the recess. The flexible mesh is arranged on the supports in stretching manner. The anode plate includes an anode substrate. A sealing spacer is arranged on the peripheral of the anode substrate and connected to the peripheral of the cathode substrate. The sealing spacer presses the fixing tabs evenly against the cathode substrate to induce a tension force to the flexible mesh.
    • 具有柔性栅电极的场发射显示装置及其制造方法。 场发射显示装置包括阴极板,栅电极和阳极板。 阴极板包括阴极基板并且在阴极的两侧支撑。 在支撑体的外底面上限定凹部。 栅电极包括柔性网和柔性网的两侧上的多个固定突片。 固定片锁定在凹槽中。 弹性网以拉伸方式布置在支撑件上。 阳极板包括阳极基板。 密封间隔件设置在阳极基板的外围并连接到阴极基板的周边。 密封间隔件将固定片均匀地压在阴极基底上以引起柔性网的张力。
    • 37. 发明申请
    • Electron emission device, electron emission display, and manufacturing method of the electron emission device
    • 电子发射器件,电子发射显示器和电子发射器件的制造方法
    • US20060261725A1
    • 2006-11-23
    • US11436654
    • 2006-05-19
    • Sang-Jin Lee
    • Sang-Jin Lee
    • H01J1/62H01J63/04H01J9/24H01J9/00
    • H01J3/021H01J29/467H01J31/127H01J63/02H01J2329/4613
    • An electron emission device may be constructed with a substrate, cathode electrodes formed on the substrate along one direction of the substrate, gate electrodes crossing perpendicularly over the cathode electrodes with an insulating layer interposed between the gate and cathode electrodes, openings formed through the gate electrodes and the insulating layer, and electron emission regions placed on the cathode electrodes within the corresponding openings. Each gate electrode includes a main body, isolated portions surrounding the respective electron emission regions and isolated from the main body with a distance, and a connector interconnecting at least one of the isolated portions and the main body. The connectors may be selectively removed so that at least one of the isolated portions is electrically insulated from the main body, in order to thereby enhance the light emission uniformity per pixel.
    • 电子发射装置可以由衬底构成,沿着衬底的一个方向形成在衬底上的阴极电极,垂直于阴极电极交叉的绝缘层与栅电极和阴极电极之间形成的开口 和绝缘层,以及放置在相应开口内的阴极电极上的电子发射区域。 每个栅极电极包括主体,围绕各个电子发射区域并与主体隔开一定距离的隔离部分,以及连接至少一个隔离部分和主体的连接器。 可以选择性地去除连接器,使得至少一个隔离部分与主体电绝缘,从而增强每个像素的发光均匀性。