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    • 3. 发明授权
    • Gas-filled dot matrix display panel
    • 充气点阵显示面板
    • US4490647A
    • 1984-12-25
    • US445209
    • 1982-11-29
    • Nicholas C. Andreadakis
    • Nicholas C. Andreadakis
    • G01V8/12G08B13/00G08B13/18G08B13/187G09G3/28H01J11/00H01J17/49
    • H01J11/00G08B13/187
    • A gas-filled display panel comprising a glass base plate and a glass face plate hermetically sealed together along a perimeter seal area to form an envelope which is filled with an ionizable gas, the base plate having an array of longitudinal slots in which anode wires are seated and having an array of cathode electrodes on the top surface thereof. The base plate has cross grooves transverse to the slots and positioned one near each end of the base plate, and a glass rod is secured in each cross groove with the ends of each rod lying within the seal area between the base plate and the face plate, the top surface of each insulating member being generally coplanar with the top surface of the base plate in the seal area, to insure the formation of a hermetic seal between the base plate and face plate at the cross grooves.
    • 一种充气显示面板,包括玻璃底板和玻璃面板,所述玻璃底板和周边密封区域密封在一起,以形成填充有可电离气体的外壳,所述基板具有纵向槽阵列,阳极线为 并且在其顶表面上具有阴极电极阵列。 基板具有横向于槽的横槽,并且位于基板的每个端部附近,并且玻璃杆固定在每个横沟中,每个杆的端部位于基板和面板之间的密封区域内 每个绝缘构件的顶表面通常与密封区域中的基板的顶表面共面,以确保在十字槽处在基板和面板之间形成气密密封。
    • 4. 发明授权
    • Method of making a display panel
    • 制作显示面板的方法
    • US4464135A
    • 1984-08-07
    • US443583
    • 1982-11-22
    • Nicholas C. Andreadakis
    • Nicholas C. Andreadakis
    • H01J9/02H01J9/24H01J11/00H01J17/49
    • H01J9/241H01J11/00H01J17/492
    • A method of making a display panel comprising the steps of providing a glass base plate with an array of slots and securing an anode electrode in each slot; forming parallel depressions in one surface of a thin sheet of metal, and then securing it to the top surface of the base plate, with the unetched surface up and the depressions down, and then removing the material of the unetched surface of the metal sheet down to the depressions to form separate strips of metal as cathodes, on the top surface of the base plate; and finally assembling the other electrodes and parts of the panel with the base plate carrying the anode and cathode electrodes.
    • 一种制造显示面板的方法,包括以下步骤:为玻璃基板提供一组槽,并将阳极固定在每个槽中; 在金属薄片的一个表面上形成平行的凹陷,然后将其固定到基板的顶表面,使未蚀刻的表面向上和向下凹陷,然后将金属板的未蚀刻表面的材料向下 在基板的顶表面上形成凹陷以形成单独的金属条作为阴极; 最后组装面板的其他电极和部件,并携带负极和阴极电极的底板。
    • 8. 发明授权
    • Non-phosphor full-color plasma display device
    • 非荧光全彩等离子体显示装置
    • US5150007A
    • 1992-09-22
    • US702443
    • 1991-05-16
    • Nicholas C. Andreadakis
    • Nicholas C. Andreadakis
    • H01J11/10
    • H01J11/10
    • Four parallel spaced-apart substrates are arranged in a stack to provide three gas-containing spaces therebetween. Orthogonally disposed electrodes and dielectric barrier ribs formed on each facing surface of the substrates define individually addressable cells within each gas-containing space. Each picture element comprises three vertically aligned cells each of which contains a gas that, when activated, emits red, green or blue light, respectively. The non-phosphor full-color plasma display device thus formed is characterized by high-resolution and useful memory margins at high frequencies.
    • 四个平行的间隔开的衬底被布置成堆叠以在它们之间提供三个含气体的空间。 形成在基板的每个相对表面上的正交设置的电极和介电阻挡肋在每个含气体空间内限定单独的可寻址单元。 每个图像元素包括三个垂直对准的单元,每个单元包含气体,当被激活时,它们分别发出红色,绿色或蓝色光。 如此形成的非磷光体全色等离子体显示装置的特征在于在高频下具有高分辨率和有用的存储余量。