Method of forming a discharge lamp
    1.
    发明授权
    Method of forming a discharge lamp 失效
    形成放电灯的方法

    公开(公告)号:US06695665B2

    公开(公告)日:2004-02-24

    申请号:US10390327

    申请日:2003-03-17

    Inventor: Daniel D. Devir

    Abstract: A sealing electrode for discharge lamp having electrically conductive cup, and an emitter pellet is disclosed. The cup seals a passage into the discharge lamp, and additionally supports the electrode pellet or tip for the discharge. The design enables the emitter, electrode and seal structure to be made separately off line, while also enabling the emitter to be protected from contaminants during subsequent assembly.

    Abstract translation: 公开了一种用于具有导电杯的放电灯密封电极和发射极片。 杯子密封通向放电灯的通道,并且另外支撑用于放电的电极颗粒或尖端。 该设计使得发射极,电极和密封结构能够分开离线制造,同时还可以在随后的组装过程中使发射极免受污染物的影响。

    Visual display
    2.
    发明授权
    Visual display 失效
    视觉显示

    公开(公告)号:US06517403B1

    公开(公告)日:2003-02-11

    申请号:US09509713

    申请日:2000-03-31

    Abstract: The apparatus for sealing face plates (753) and cathodes (754) has three stations (701, 702, 703). The first (701) is a preheater, the second (702) is an alignment and irradiation station and the third (703) is a controlled cooling station. Beneath each station, a vacuum pump (710) capable of drawing ultralow pressures is provided. The preheater is equipped with upper and lower banks of radiant heaters and reflectors (712). The upper heaters are Provided above a quartz: window (713) of a chamber (714) constituting the station. The pressure in the preheater is pumped down to that in the alignment and irradiation station prior to opening of the gate valve between them and transfer of the face plate and cathode. At the alignment and irradiation station, further heaters (716) are provided. Those above the face plate and cathode, the face plate being uppermost, are mounted on frames (717) about hinges (718), whereby they can be swung up to clear this station's top quartz window, exposing the face plate to the view of an optical system (719) and a laser (720). Manipulation controls (722) are provided for manipulating the position of the face plate to be pixel alignment, as measured by the optical system (719), with the cathode. The laser is traversed around further. The cooling station (703) has meanwhile been pumped down and the sealed device is transferred to it. The temperature of the device is allowed to rise very slowly, in order to reduce the risk of thermal cracking to as great an extent as possible. As the temperature slowly falls, air is slowly introduced, so that the finished device can be removed to the ambient surroundings.

    Abstract translation: 用于密封面板(753)和阴极(754)的设备具有三个站(701,702,703)。 第一(701)是预热器,第二(702)是对准和照射台,第三(703)是受控冷却站。 在每个工位下面,提供能够超低压的真空泵(710)。 预热器配有上下两组辐射加热器和反射器(712)。 上部加热器设置在构成站的室(714)的石英:窗口(713)的上方。 在打开门阀之间并且转移面板和阴极之前,将预热器中的压力泵送到对准和照射站中的压力。 在对准和照射站处,提供另外的加热器(716)。 在面板和阴极之上的面板最上面,围绕铰链(718)安装在框架(717)上,从而可以向上摆动以清除该台的顶部石英窗,将面板暴露于 光学系统(719)和激光器(720)。 操作控制装置(722)用于通过光学系统(719)与阴极一起操纵面板的像素对准位置。 激光进一步穿过。 冷却站(703)同时被泵送,并将密封装置转移到其上。 允许装置的温度非常缓慢地升高,以便将热裂解的风险降低到尽可能大的程度。 随着温度的逐渐下降,空气被缓慢地引入,从而可将完成的装置移除到环境中。

    Frit-sealing process used in making displays
    3.
    发明授权
    Frit-sealing process used in making displays 失效
    用于制作显示器的玻璃料封口工艺

    公开(公告)号:US06354899B1

    公开(公告)日:2002-03-12

    申请号:US09299371

    申请日:1999-04-26

    Inventor: Chad Byron Moore

    Abstract: A process for frit-sealing together a panel of a fiber-based information display includes assembling the panel and sealing, after the step of assembling, the panel by forcing a glass frit to flow between the two glass plates that comprise the panel using narrow strips of glass. The glass frit-seals the top and bottom glass plates together and covers the wire electrodes at the end of the fibers to dielectrically isolate them from each other. The process of assembling and frit-sealing the panel is particularly suitable for use in an information display, such as plasma emissive displays, plasma addressed liquid crystal displays, and field emissive displays.

    Abstract translation: 将基于纤维的信息显示面板玻璃料密封在一起的方法包括:在组装步骤之后,通过迫使玻璃料在包含面板的两块玻璃板之间流动,使用窄带 的玻璃。 玻璃料将顶部和底部玻璃板密封在一起,并覆盖纤维末端的线电极,以将它们彼此隔离。 组装和玻璃料密封面板的过程特别适用于诸如等离子体发射显示器,等离子体寻址液晶显示器和场发射显示器之类的信息显示。

    Apparatus and method for manufacturing organic EL display device
    4.
    发明授权
    Apparatus and method for manufacturing organic EL display device 有权
    用于制造有机EL显示装置的装置和方法

    公开(公告)号:US06786789B2

    公开(公告)日:2004-09-07

    申请号:US09809244

    申请日:2001-03-16

    Abstract: Provided are a producing apparatus and a producing process which make it possible to obtain effectively an organic EL display device capable of suppressing the generation of dark spots for a long time even in a high temperature environment. Therefore, an apparatus for producing an organic EL display device comprises a first unit for carrying a supporting substrate in, a second unit for heating at least the supporting substrate before forming an organic luminescence medium, thereby performing a dehydration treatment, a third unit for forming the organic luminescence medium and an upper element, and a fourth unit for sealing the periphery of the apparatus with a sealing member, wherein the first unit is arranged between the second unit and the third unit, a first carrying device is set up in the first unit, and a second carrying device is arranged between the third unit and the fourth unit.

    Abstract translation: 提供一种能够有效地获得即使在高温环境下能够长时间抑制黑斑产生的有机EL显示装置的制造装置和制造方法。因此,有机EL显示器的制造装置 装置包括用于承载支撑衬底的第一单元,用于在形成有机发光介质之前至少加热支撑衬底的第二单元,从而进行脱水处理,用于形成有机发光介质的第三单元和上部元件,以及 第四单元,用于用密封构件密封设备的周边,其中第一单元布置在第二单元和第三单元之间,第一承载装置设置在第一单元中,第二承载装置设置在第二单元之间, 第三单位和第四单位。

    Flat discharge lamp and method for the production thereof
    5.
    发明授权
    Flat discharge lamp and method for the production thereof 有权
    扁平放电灯及其制造方法

    公开(公告)号:US06659828B1

    公开(公告)日:2003-12-09

    申请号:US09673082

    申请日:2000-10-11

    CPC classification number: H01J9/40 H01J9/395 H01J61/305 H01J65/042 H01J2211/36

    Abstract: The invention relates to a flat discharge lamp (1), comprising two substantially parallel plates (5, 6) and two support areas serving to support both plates against each other. Each support area consists of a component having a high-viscosity (8) and a low viscosity (7) at assembling temperature. Before assembling the discharge vessel, the support areas are larger than final distance envisaged between both plates. The low viscosity component (7) compensates for possible local deviations in the distance between both plates when the discharge vessel are assembled.

    Abstract translation: 本发明涉及一种扁平放电灯(1),其包括两个基本上平行的板(5,6)和两个用于将两个板彼此支撑的支撑区域。 每个支撑区域在组装温度下由具有高粘度(8)和低粘度(7)的组分组成。 在组装放电容器之前,支撑区域大于两个板之间设想的最终距离。 当组装放电容器时,低粘度组件(7)补偿两个板之间距离的可能局部偏差。

    Manufacturing method for a plasma display panel with superior luminescence
    8.
    发明授权
    Manufacturing method for a plasma display panel with superior luminescence 失效
    具有优异发光性的等离子体显示面板的制造方法

    公开(公告)号:US06817917B1

    公开(公告)日:2004-11-16

    申请号:US09744382

    申请日:2001-01-23

    CPC classification number: H01J9/38 H01J9/261 H01J2217/492

    Abstract: A PDP operates with high luminous efficiency and reproduces colors faithfully. When sealing the PDP, a sealant layer (15) is formed around the facing main surfaces of the front panel (10) and the back panel (20). Protrusions (16) and depressions (17) are formed in parts of the sealant layer (15) to produce gaps (18) at the periphery of the PDP. The heating performed to soften the sealant layer (15) is conducted in a dry gas atmosphere. As a result, moisture passes from the inner space of the PDP through the gaps (18) and out of the PDP, thereby reducing the heat deterioration in the blue phosphor layer (25).

    Abstract translation: PDP以高发光效率运行,忠实地再现色彩。 当密封PDP时,在前面板(10)和后面板(20)的相对的主表面周围形成密封剂层(15)。 突起(16)和凹陷(17)形成在密封剂层(15)的部分中,以在PDP的周边产生间隙(18)。 进行软化密封层(15)的加热在干燥气体气氛中进行。 结果,水分从PDP的内部空间通过间隙(18)流出PDP,从而减少蓝色荧光体层(25)的热劣化。

    Sealing of flat-panel device
    9.
    发明授权
    Sealing of flat-panel device 失效
    密封平板设备

    公开(公告)号:US06722937B1

    公开(公告)日:2004-04-20

    申请号:US09628584

    申请日:2000-07-31

    CPC classification number: H01J9/261 H01J2211/48 H01J2329/867 H01J2329/8675

    Abstract: A flat-panel display is hermetically sealed by a process in which a first plate structure (30) is positioned generally opposite a second plate structure (32) such that sealing material (34) provided over the second plate structure lies between the plate structures. In a gravitational sealing technique, the first plate structure is positioned vertically below the second plate structure. The sealing material is heated so that it moves vertically downward under gravitational influence to meet the first plate structure and seal the plate structures together. In a global-heating gap-jumping technique, the plate structures and sealing material are globally heated to cause the sealing material to jump a gap between the sealing material and the first plate structure. When the first plate structure is positioned vertically above the second plate structure, the sealing material moves vertically upward to meet the first plate structure and close the gap.

    Abstract translation: 平板显示器通过其中第一板结构(30)大致相对于第二板结构(32)定位的过程而气密地密封,使得设置在第二板结构上方的密封材料(34)位于板结构之间。 在重力密封技术中,第一板结构位于第二板结构的垂直下方。 密封材料被加热,使得其在重力作用下垂直向下移动以满足第一板结构并将板结构密封在一起。 在全局加热间隙跳跃技术中,板结构和密封材料被全局加热,使得密封材料在密封材料和第一板结构之间跳跃间隙。 当第一板结构垂直地位于第二板结构上方时,密封材料垂直向上移动以满足第一板结构并闭合间隙。

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