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    • 83. 发明申请
    • VISUAL DISPLAY
    • 视觉显示
    • WO01054158A1
    • 2001-07-26
    • PCT/US2001/002956
    • 2001-01-18
    • H01J1/62H01J5/24H01J9/00H01J9/26
    • H01J5/24H01J9/261H01J2329/00
    • A visual has a multilayer ceramic substrate (1) with an emission layer (2) on its front face. The substrate is mounted on carrier (4) with a L-shaped cross-section via the foot (41) of the L. A glass face plate (5) is on the top of the main limb (42) on the L. The face plate has a phosphor layer (6) on its inside surface. A succession (7) of vias and interconnects in the L provides connection from the substrate (1) to the phosphor layer. A band (8) of frit is screen printed onto the inside of the face plate, peripherally of phosphor layer. In a corresponding position on the top of the main limb, a groove (9) is formed. The groove extends around the full extent of the carrier. On assembly of the face plate to the carrier, the frit (8) fits into the groove (9). The face plate abuts the top of the limb (42), thereby defining the separation of the face plate and emission substrate. For sealing of the face plate to the emission device, comprised of the substrate and the carrier, the frit is irradiated in vacuum by a laser. This fuses the frit onto both the carrier and the face plate.
    • 视觉具有在其正面上具有发射层(2)的多层陶瓷衬底(1)。 基板通过L的脚部(41)安装在具有L形横截面的载体(4)上。玻璃面板(5)位于L上的主臂(42)的顶部。 面板在其内表面上具有荧光体层(6)。 L中的连续(7)通孔和互连提供了从基板(1)到荧光体层的连接。 将玻璃料的带(8)丝网印刷在面板的内侧,荧光层周围。 在主肢顶部的对应位置形成有凹槽(9)。 槽围绕载体的全部范围延伸。 在将面板组装到载体上时,玻璃料(8)装配到凹槽(9)中。 面板邻接肢体(42)的顶部,从而限定面板和排出衬底的分离。 为了将面板密封到由基板和载体构成的发射装置,玻璃料通过激光在真空中照射。 这将玻璃料熔合在载体和面板上。
    • 84. 发明申请
    • METHOD FOR PRODUCING A LAMP
    • 方法生产灯管
    • WO01037307A2
    • 2001-05-25
    • PCT/DE2000/003638
    • 2000-10-16
    • H01J9/32H01J9/24H01J9/385H01J9/40H01J61/36H01K3/26H01J9/00
    • H01J9/247H01J9/40
    • The invention relates to a method for producing a lamp according to which the lamp tube (1), with the open end (5) thereof, is inserted in a gas-tight manner into a pump head (2) with a support (6), which supports a closing plate (7) that is provided with an electrode system and with connection pins (10). Said closing plate (7) has an outer contour which is slightly smaller than the inner contour of the open end (5) of the lamp tube (1) so that the lamp tube (1) can be pumped via the pump head (2) and can be filled with gases. The edge of the closing plate (7) and the lamp tube (1) are subsequently heated so that the lamp tube (1) matches the height of the closing plate (7) and connects to the edge of the closing plate (7) in a gas-tight manner. The protruding end (5) of the lamp tube (1) is then removed.
    • 在用于制造灯的方法中,灯容器(1)与所述开口端(5)转换成的泵压头(2)与支架(6)包括一封闭板(7)与电极系统和连接销(10)带有一个气密 使用。 在这种情况下,闭锁板(7)具有一个外轮廓比所述开口端的内轮廓稍小(5)的灯容器(1),可使得经由泵头部(2)的灯容器(1)泵送并填充有气体 , 接着,将封闭板(7)的边缘与灯容器(1)被加热,以使灯容器(1)入射在所述封闭板(7)的水平,并与封闭板(7)连接以气密方式的边缘。 此后,将灯容器(1)的突出端(5)分离。
    • 85. 发明申请
    • METHOD FOR SEPARATING LEAD FROM COATED GLASS
    • 从涂层玻璃分离引线的方法
    • WO00020121A1
    • 2000-04-13
    • PCT/SE1999/001789
    • 1999-10-06
    • B03B9/06B03D1/22C22B7/00H01J9/00
    • B03B9/062B03D1/1406B03D1/22C22B13/045Y02P10/212Y02W30/521Y02W30/60
    • The invention relates to a method for separating lead from coated glass, especially glass from discarded picture tubes or similar lead-containing glass-like material. To achieve an improved method that makes it possible to separate lead from coated glass with a very high level of purity and thus allow a complete recycling of said glass, it is suggested according to the invention that the discarded picture tubes are crushed and ground to achieve a finely grained powdered material, that the finely grained material formed is brought into contact with a solution of leaching medium whose task is to solubilise the lead component from the glass material, whereby the components thus separated are sorted from one another via processing by floatation.
    • 本发明涉及一种从涂覆玻璃,特别是废弃显像管或类似含铅玻璃状材料的玻璃中分离铅的方法。 为了实现一种改进的方法,使得可以以非常高的纯度将铅与涂层玻璃分离,从而允许所述玻璃的完全再循环,根据本发明,建议将废弃的显像管粉碎并研磨以达到 形成细粒状的粉末材料使得形成的细粒材料与任务是将玻璃材料中的铅成分溶解的浸出介质溶液接触,由此分离出的组分通过漂浮处理而彼此分离。
    • 87. 发明申请
    • LIGHT BULB INSTALLATION AND REMOVAL TOOL
    • 灯泡安装和拆卸工具
    • WO2016057393A1
    • 2016-04-14
    • PCT/US2015/054000
    • 2015-10-05
    • SNATCHER, LLC
    • SHAPS, RobertNEAL, Murray
    • H01J9/00H01K3/32
    • H01J9/003H01K3/32
    • An installation and removal tool for light bulbs and similar items comprising modular and interchangeable attachment heads 100, a pole 20, an articulating joint 30, and an extraction head 40. Attachment heads 100 comprise a gripping unit and a handle 104 and are each configured to cooperate with one or more light bulb shapes and/or sizes 50-56 and further comprises an adhesive system 120. The gripping unit comprises a bulb cavity 112 with an engagement surface 112a and a release lip 114 and an adhesive system 120 mounted on the engagement surface 112a such that an air channel 116 is created surrounding the adhesive system. The adhesive system comprises pressure sensitive adhesive and preferably defines an opening 124b in fluid communication with a bore 106 defined by the handle to accommodate extended and oddly shaped bulbs. A protective liner cooperates with the adhesive component 120 to preserve the functionality of the adhesive when it is not in use.
    • 用于灯泡和类似物品的安装和拆卸工具,包括模块化和可互换的附接头100,杆20,铰接接头30和提取头40.附接头100包括夹持单元和手柄104, 与一个或多个灯泡形状和/或尺寸50-56配合,并且还包括粘合剂系统120.夹持单元包括灯泡腔112,其具有接合表面112a和释放唇缘114以及安装在接合部上的粘合剂系统120 表面112a,使得围绕粘合剂系统产生空气通道116。 粘合剂系统包括压敏粘合剂并且优选地限定与由手柄限定的孔106流体连通以容纳延伸和奇怪形状的灯泡的开口124b。 保护衬垫与粘合剂组件120配合以在粘合剂不使用时保持粘合剂的功能。
    • 90. 发明申请
    • FLEXIBLE OLED DISPLAY WITH CHIPLETS
    • 灵活的OLED显示屏与CHIPLETS
    • WO2010118108A2
    • 2010-10-14
    • PCT/US2010030204
    • 2010-04-07
    • GLOBAL OLED TECHNOLOGY LLCCOK RONALD SHAMER JOHN W
    • COK RONALD SHAMER JOHN W
    • H01J1/62H01J9/00
    • H01L27/3276H01L27/3255H01L2224/95092H01L2251/5338H01L2924/12044H01L2924/00
    • A flexible emissive device, includes a flexible rough substrate having a rough substrate surface and defining a display area; an organic low- temperature adhesion layer formed on the rough substrate surface, at least a portion of the organic low-temperature adhesion layer having a thickness greater than or equal to five microns; a plurality of chiplets distributed in the display area and adhering to the organic low-temperature adhesion layer, each duplet having one or more connection pads; a plurality of patterned bottom electrodes formed over the organic low-temperature adhesion layer in the display area, each bottom electrode being electrically connected to only one connection pad of a corresponding chiplet; one or more layers of light-emitting material formed over the bottom electrode; and a top electrode formed over the one or more layers of light-emitting material; and a flexible encapsulating layer located over the top electrode and adhered to the rough substrate surface.
    • 弹性发射装置包括具有粗糙基板表面并限定显示区域的柔性粗糙基板; 形成在所述粗糙基材表面上的有机低温粘合层,所述有机低温粘合层的至少一部分具有大于或等于5微米的厚度; 分布在显示区域并附着在有机低温粘合层上的多个小芯片,每个小配件具有一个或多个连接垫片; 多个图案化的底部电极,形成在显示区域中的有机低温粘附层上,每个底部电极仅电连接到相应的小芯片的一个连接焊盘; 在底部电极上形成一层或多层发光材料; 以及形成在所述一个或多个发光材料层上的顶部电极; 以及位于顶部电极上并粘附到粗糙基底表面上的柔性封装层。