Plasma display panel utilizing carbon nanotubes and method of manufacturing the front panel of the plasma display panel
    21.
    发明申请
    Plasma display panel utilizing carbon nanotubes and method of manufacturing the front panel of the plasma display panel 失效
    使用碳纳米管的等离子体显示面板和制造等离子体显示面板前面板的方法

    公开(公告)号:US20030193291A1

    公开(公告)日:2003-10-16

    申请号:US10412420

    申请日:2003-04-14

    CPC classification number: B82Y10/00 H01J11/12 H01J11/40 Y10S977/952

    Abstract: A plasma display panel using carbon nanotubes is provided. In the front panel of the plasma display panel, transparent electrodes are formed as strips on the glass substrate. Bus electrodes are each formed as strips along the outer edge on the upper surface of each of the transparent electrodes and in parallel to the transparent electrodes. A dielectric layer is formed on part of the glass substrate, parts of the transparent electrodes, and the bus electrodes. Carbon nanotube strips are aligned on the dielectric layer such that the carbon nanotube strips face the transparent electrodes. A protective layer is formed on part of the dielectric layer and the carbon nanotube strips. Accordingly, the secondary electron emission characteristic is improved, resulting in a high-quality display screen having a high luminous efficiency and a high contrast ratio.

    Abstract translation: 提供了使用碳纳米管的等离子体显示面板。 在等离子体显示面板的前面板中,透明电极在玻璃基板上形成为条状。 总线电极分别沿着每个透明电极的上表面上的外缘形成为平行于透明电极的条带。 在玻璃基板的一部分,透明电极的一部分和总线电极上形成介电层。 碳纳米管条在电介质层上排列,使得碳纳米管条面对透明电极。 在介电层和碳纳米管条的一部分上形成保护层。 因此,二次电子发射特性得到改善,导致具有高发光效率和高对比度的高质量显示屏。

    Use of glass capable of recrystallization as mineral binder of an electrode paste for a plasma panel
    22.
    发明申请
    Use of glass capable of recrystallization as mineral binder of an electrode paste for a plasma panel 审中-公开
    使用能够重结晶的玻璃作为用于等离子体面板的电极浆料的矿物粘合剂

    公开(公告)号:US20030108820A1

    公开(公告)日:2003-06-12

    申请号:US10181340

    申请日:2002-10-15

    Abstract: The present invention relates to a process for manufacturing a plasma panel tile, comprising the deposition of electrodes, using a paste comprising a metal powder and a mineral binder, and the baking of the deposited electrodes. According to the invention, the composition of the mineral binder and the baking conditions are tailored so that, after the deposited electrodes have been baked, the binder is in the recrystallized state. Owing to the recrystallized state of the binder, the yellowing problems which occur during subsequent heat treatments are eliminated.

    Abstract translation: 本发明涉及一种用于制造等离子体面板瓦的方法,其包括使用包含金属粉末和矿物粘合剂的糊料沉积电极以及沉积电极的烘烤。 根据本发明,定制矿物粘合剂的组成和烘烤条件,使得在沉积的电极已经被烘烤之后,粘合剂处于重结晶状态。 由于粘合剂的再结晶状态,消除了后续热处理期间发生的泛黄问题。

    Method of and apparatus for manufacturing field emission-type electron source
    23.
    发明申请
    Method of and apparatus for manufacturing field emission-type electron source 失效
    场致发射型电子源的制造方法和装置

    公开(公告)号:US20030013215A1

    公开(公告)日:2003-01-16

    申请号:US10178409

    申请日:2002-06-25

    CPC classification number: B82Y10/00 H01J9/025

    Abstract: An electron source 10 has an n-type silicon substrate 1, a drift layer 6 formed on one surface of the substrate 1, and a surface electrode 7 formed on the drift layer 6. A voltage is applied so that the surface electrode 7 becomes positive in polarity relevant to the substrate 1, whereby electrons injected from the substrate 1 into the drift layer 6 drift within the drift layer 6, and are emitted through the surface electrode 7. In a process for manufacturing this electron source 10, when the drift layer 6 is formed, a porous semiconductor layer containing a semiconductor nanocrystal is formed in accordance with anodic oxidation. Then, an insulating film is formed on the surface of each semiconductor nanocrystal. Anodic oxidation is carried out while emitting light that essentially contains a wavelength in a visible light region relevant to the semiconductor layer.

    Abstract translation: 电子源10具有n型硅衬底1,形成在衬底1的一个表面上的漂移层6和形成在漂移层6上的表面电极7.施加电压使得表面电极7变为正 与衬底1相关的极性,由此从衬底1注入漂移层6的电子在漂移层6内漂移,并通过表面电极7发射。在制造该电子源10的过程中,当漂移层 如图6所示,根据阳极氧化形成含有半导体纳米晶体的多孔半导体层。 然后,在每个半导体纳米晶体的表面上形成绝缘膜。 在发射基本上包含与半导体层相关的可见光区域中的波长的光的同时进行阳极氧化。

    Method for producing a field emission display
    24.
    发明申请
    Method for producing a field emission display 失效
    场致发射显示器的制造方法

    公开(公告)号:US20020119724A1

    公开(公告)日:2002-08-29

    申请号:US10120592

    申请日:2002-04-11

    Inventor: Ernst Hammel

    CPC classification number: H01J9/185 H01J9/261

    Abstract: The invention relates to a method for producing a field emission display (FED) that includes a first substrate with electrodes of an anode structure and a luminescent material that at least partly covers these electrodes. The electrodes of a cathode structure are affixed on a second substrate and include field emitters. The anode structure and the cathode structure are aligned with one another and interconnected in spaced-apart disposition in a gas-tight manner along their lateral edges, except for a gas inlet opening and a gas outlet opening. The field emitters are deposited by heating only the electrodes of the cathode structure while flowing a carrier gas through the gas inlet opening and the gas outlet opening.

    Abstract translation: 本发明涉及一种用于制造场发射显示器(FED)的方法,该场发射显示器包括具有至少部分地覆盖这些电极的阳极结构的电极和发光材料的第一衬底。 阴极结构的电极固定在第二衬底上并且包括场致发射体。 阳极结构和阴极结构彼此对准并且以气密方式沿着它们的侧边缘以间隔布置的方式相互连接,除了气体入口和气体出口。 场致发射体仅通过加热阴极结构的电极而沉积,同时使载气流过气体入口和气体出口。

    Apparatus for manufacturing electron source, method for manufacturing electron source, and method for manufacturing image-forming apparatus
    25.
    发明申请
    Apparatus for manufacturing electron source, method for manufacturing electron source, and method for manufacturing image-forming apparatus 失效
    用于制造电子源的装置,用于制造电子源的方法,以及用于制造图像形成装置的方法

    公开(公告)号:US20020042238A1

    公开(公告)日:2002-04-11

    申请号:US09954072

    申请日:2001-09-18

    Inventor: Tamayo Hiroki

    CPC classification number: H01J9/027

    Abstract: A method for manufacturing an electron source includes the steps of covering a substrate provided with a first electrode and a second electrode by a container, introducing a gas composed of a carbon compound into the container, and forming a carbon film by applying a voltage between the first electrode and the second electrode. The relationship 1/(4/Cxnull1/Cz)nullSoutnull4SactnullCin is satisfied, where Cin is the conductance from the gas inlet to the position of the substrate nearest to the gas inlet, Cx is the conductance from the position of the substrate nearest to the gas inlet to the position of the substrate nearest to the gas outlet, Sout is the effective exhaust rate, Sact is the consumption rate of the gas, and Cz is the conductance from the substrate to the gas outlet. An apparatus for manufacturing an electron source and a method for manufacturing an image-forming apparatus are also disclosed.

    Abstract translation: 制造电子源的方法包括以下步骤:通过容器覆盖设置有第一电极和第二电极的基板,将由碳化合物构成的气体引入容器中,并且通过在第一电极和第二电极之间施加电压来形成碳膜 第一电极和第二电极。 满足1 /(4 / Cx-1 / Cz)> = Sout> = 4Sact-Cin的关系,其中Cin是从气体入口到最接近气体入口的衬底的位置的电导,C x是 最接近气体入口的衬底的位置最接近气体出口的衬底的位置,Sout是有效排气速率,Sact是气体的消耗速率,Cz是从衬底到气体出口的电导 。 还公开了一种用于制造电子源的装置和用于制造图像形成装置的方法。

    Methods of forming field emission display backplates

    公开(公告)号:US20020021069A1

    公开(公告)日:2002-02-21

    申请号:US09838845

    申请日:2001-04-20

    Inventor: Ji Ung Lee

    CPC classification number: H01J9/025 H01J3/022 H01J2201/30407

    Abstract: The present invention includes field emission display backplates and methods of forming field emission display backplates. According to one aspect, the present invention provides a field emission display backplate including a substrate having a surface; an emitter which extends from the surface of the substrate; and an anode having an upper surface, a lower surface, and an opening surface which defines an opening aligned with the emitter, the opening surface includes a first portion which curves outward relative to the anode and a second portion which curves inward relative to the anode.

    Fiber-based field emission display
    27.
    发明申请
    Fiber-based field emission display 失效
    基于光纤的场发射显示

    公开(公告)号:US20010034174A1

    公开(公告)日:2001-10-25

    申请号:US09797383

    申请日:2001-03-01

    Inventor: Chad Byron Moore

    Abstract: The invention relates to a field emission display constructed using an array of fibers and an orthogonal array of emitter electrodes. Each fiber in the fiber array contains an extraction electrode, spacer, a high voltage electrode and a phosphor layer. The array of emitter electrodes consists of carbon nanotube emitters attached to conductive electrodes. The emitter electrodes are separated using non-conductive fibers. A getter material in the form of a wire is placed within the array of emitter electrodes to maintain a high vacuum within the display.

    Abstract translation: 本发明涉及使用光纤阵列和发射极的正交阵列构成的场致发射显示器。 纤维阵列中的每个纤维包含提取电极,间隔物,高压电极和磷光体层。 发射极阵列由连接到导电电极的碳纳米管发射体组成。 使用非导电纤维分离发射电极。 以导线形式的吸气材料放置在发射极阵列内,以保持显示器内的高真空度。

    Electrode structures, display devices containing the same, and methods for making the same
    28.
    发明申请
    Electrode structures, display devices containing the same, and methods for making the same 有权
    电极结构,含有其的显示装置及其制造方法

    公开(公告)号:US20010010991A1

    公开(公告)日:2001-08-02

    申请号:US09782811

    申请日:2001-02-14

    CPC classification number: H01J3/022 H01J2329/00

    Abstract: An electrode structure for a display device comprising a gate electrode proximate to an emitter and a focusing electrode separated from the gate electrode by an insulating layer containing a ridge. When the focusing electrode is an aperture-type electrode, the upper surface of the ridge protrudes closer to the emitter than the sidewall of the gate electrode or the sidewall of the focusing electrode. When the focusing electrode is a concentric-type electrode, the ridge protrudes above the upper surface of the gate electrode or the upper surface of the focusing electrode. A method for making the aperture-type and concentric-type electrode structures is described. A display device containing such electrode structures is also described. By forming an insulating ridge between the gate and focusing electrodes, shorting between the two electrodes is reduced and yield enhancement increased.

    Abstract translation: 一种用于显示装置的电极结构,包括靠近发射极的栅电极和通过包含脊的绝缘层与栅电极分离的聚焦电极。 当聚焦电极是孔型电极时,脊的上表面比栅电极的侧壁或聚焦电极的侧壁更靠近发射极。 当聚焦电极是同心型电极时,脊突出在栅电极的上表面或聚焦电极的上表面之上。 描述了制造孔径型和同心型电极结构的方法。 还描述了包含这种电极结构的显示装置。 通过在栅极和聚焦电极之间形成绝缘脊,减少了两个电极之间的短路,增加了产率。

    Electron-emitting device, electron-emitting apparatus, image display apparatus, and light-emitting apparatus
    29.
    发明申请
    Electron-emitting device, electron-emitting apparatus, image display apparatus, and light-emitting apparatus 失效
    电子发射器件,电子发射设备,图像显示设备和发光设备

    公开(公告)号:US20040176010A1

    公开(公告)日:2004-09-09

    申请号:US10799859

    申请日:2004-03-15

    Inventor: Takeo Tsukamoto

    CPC classification number: B82Y10/00 H01J1/304 H01J2201/30469 H01J2329/00

    Abstract: An electron-emitting device in which the specific capacitance and the drive voltage are reduced, and which is capable of obtaining a finer electron beam by controlling the trajectory of emitted electrons. An electron-emitting portion of an electron-emitting member is positioned between the height of a gate and the height of an anode. When the distance between the gate and a cathode is d; the potential difference at driving the device is V1; the distance between the anode and the substrate is H; and the potential difference between the anode and the cathode is V2, then the electric field E1nullV1/d during driving is configured to be within the range from 1 to 50 times E2nullV2/H.

    Abstract translation: 一种电子发射器件,其中比电容和驱动电压降低,并且能够通过控制发射电子的轨迹获得更细的电子束。 电子发射部件的电子发射部分位于栅极的高度和阳极的高度之间。 当栅极和阴极之间的距离为d时; 驱动器件的电位差为V1; 阳极和衬底之间的距离为H; 并且阳极和阴极之间的电位差为V2,则驱动期间的电场E1 = V1 / d被配置为E2 = V2 / H的1-50倍的范围。

    Electrode producing method
    30.
    发明申请
    Electrode producing method 失效
    电极制作方法

    公开(公告)号:US20030087578A1

    公开(公告)日:2003-05-08

    申请号:US10188361

    申请日:2002-07-03

    Abstract: A flash discharge tube includes a pin-shaped cathode. The pin-shaped cathode has an electrode core of tungsten having a first end portion. A lead of nickel has a second end portion connected with the first end portion. In the electrode producing method, the electrode core and the lead are retained by use of respectively first and second chuck mechanisms with the first and second end portions opposed to one another. The first and second end portions are pushed on one another by moving at least one of the first and second chuck mechanisms. While the first and second end portions are pushed on one another, the first and second chuck mechanisms are supplied with electric current, so as to weld the electrode core and the lead together therewith by resistance welding.

    Abstract translation: 闪光放电管包括pin形阴极。 针状阴极具有钨的电极芯,其具有第一端部。 镍的引线具有与第一端部连接的第二端部。 在电极制造方法中,电极芯和引线通过分别与第一和第二端部彼此相对的第一和第二卡盘机构保持。 第一和第二端部通过移动第一和第二卡盘机构中的至少一个而相互推压。 当第一和第二端部被彼此推动时,第一和第二卡盘机构被供应电流,以便通过电阻焊接将电极芯和引线焊接在一起。

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