Gas discharge electrode configurations
    91.
    发明授权
    Gas discharge electrode configurations 有权
    气体放电电极配置

    公开(公告)号:US08278824B1

    公开(公告)日:2012-10-02

    申请号:US12852934

    申请日:2010-08-09

    CPC classification number: H01J11/18

    Abstract: Electrode and electrode pad configurations for a gas discharge device having one or more substrates and a multiplicity of pixels or sub-pixels that are defined by a hollow plasma-shell filled with an ionizable gas. The invention is described with reference to a plasma-dome, but other plasma-shell geometric shapes may be used including plasma-discs and plasma-spheres.

    Abstract translation: 用于具有一个或多个基板的气体放电装置的电极和电极焊盘构造以及由填充有可电离气体的空心等离子体壳体限定的多个像素或子像素。 参考等离子体圆顶来描述本发明,但是可以使用其它等离子体 - 壳几何形状,包括等离子体盘和等离子体球。

    Plasma-shell PDP with artifact reduction
    92.
    发明授权
    Plasma-shell PDP with artifact reduction 失效
    等离子体等离子体PDP,具有减少伪像

    公开(公告)号:US08248328B1

    公开(公告)日:2012-08-21

    申请号:US12115636

    申请日:2008-05-06

    CPC classification number: H01J11/18

    Abstract: Visual artifact reduction methods for a display including gamma corrections, error diffusion and/or dithering. The invention is described with reference to an AC gas discharge display (PDP) comprising a multiplicity of plasma-shells, but may be practiced with other display technologies. The methods of this invention are disclosed for use with a number of PDP structures and PDP electronic addressing architectures including ADS, AWD, SAS, and ALIS.

    Abstract translation: 用于包括伽马校正,误差扩散和/或抖动的显示器的视觉伪影减少方法。 参考包括多个等离子体壳的AC气体放电显示器(PDP)描述本发明,但是可以用其他显示技术来实施本发明。 本发明的方法被公开用于许多PDP结构和PDP电子寻址架构,包括ADS,AWD,SAS和ALIS。

    Gas filled detector shell with dipole antenna
    93.
    发明授权
    Gas filled detector shell with dipole antenna 有权
    带偶极天线的气体检测器壳体

    公开(公告)号:US08198812B1

    公开(公告)日:2012-06-12

    申请号:US12348987

    申请日:2009-01-06

    CPC classification number: H01J11/18 H01J47/02

    Abstract: A gas filled detector shell with attached antenna for the detection of high energy transmissions, including microwaves, lasers, electromagnetic signals, RF waves, radiation, and/or other transmissions emitted by a source including a weapon system. The shell may also be used as a safety device to warn and alert personnel working around high energy devices of electromagnetic leaks.

    Abstract translation: 一种装有气体的检测器外壳,具有连接的天线,用于检测包括由包括武器系统的源发射的高能量传输,包括微波,激光,电磁信号,RF波,辐射和/或其他传输。 外壳也可用作安全装置,用于警告和警告在高能量设备上工作的电磁泄漏的人员。

    Lumino-shells
    94.
    发明授权
    Lumino-shells 有权
    鲁米诺贝壳

    公开(公告)号:US08129906B1

    公开(公告)日:2012-03-06

    申请号:US12393692

    申请日:2009-02-26

    Abstract: A display device constructed out of one or more lumino-shells with an organic luminescent substance(s) located in and/or on each shell, the organic luminescent substance emitting light when excited by electric current. Inorganic luminescent substance(s) may be combined with the organic luminescent substance(s). The lumino-shell includes lumino-sphere, lumino-dome, and lumino-disk.

    Abstract translation: 由一个或多个发光体构成的显示装置,其中有机发光物质位于每个壳体中和/或每个壳体上,有机发光物质在被电流激发时发光。 无机发光物质可以与有机发光物质组合。 lumino-shell包括lumino-sphere,lumino-dome和lumino-disk。

    Gas discharge device with electrical conductive bonding material
    95.
    发明授权
    Gas discharge device with electrical conductive bonding material 有权
    带导电接合材料的气体放电装置

    公开(公告)号:US08113898B1

    公开(公告)日:2012-02-14

    申请号:US12575510

    申请日:2009-10-08

    CPC classification number: H01J9/241 H01J11/18

    Abstract: Plasma-shells filled with ionizable gas are positioned on or within a rigid, flexible, or semi-flexible substrate. Each plasma-shell is electrically connected to one or more electrical conductors such as electrodes with an electrically conductive bonding substance to form an electrical connection to each electrode. The electrically conductive bonding substance may comprise a pad connected to the plasma-shell and/or an electrode. The bonding substance is made of a light reflective material that reflects photons to enhance light output from a plasma-shell.

    Abstract translation: 填充有可电离气体的等离子体壳体位于刚性,柔性或半柔性基板上或内部。 每个等离子体壳体电连接到一个或多个电导体,例如具有导电结合物质的电极,以形成与每个电极的电连接。 导电接合物质可以包括连接到等离子体壳和/或电极的焊盘。 结合物质由反射光子的光反射材料制成,以增强等离子体壳的光输出。

    Gas discharge display
    97.
    发明授权
    Gas discharge display 有权
    气体放电显示

    公开(公告)号:US07969092B1

    公开(公告)日:2011-06-28

    申请号:US11693766

    申请日:2007-03-30

    CPC classification number: H01J11/18

    Abstract: A single substrate AC and/or DC gas discharge (plasma) display device comprised of hollow microspheres containing ionizable gas at a predetermined pressure, each microsphere being positioned on the surface of the substrate or within a substrate cavity, well, or hollow. Each microsphere is in electrical contact with 2, 3, or more electrodes. The AC or DC gas discharge within each microsphere emits photons in the visible and/or invisible range. In one embodiment, photons from the gas discharge within a microsphere excite a luminescent substance or material such as a phosphor that emits photons in the visible and/or invisible spectrum. The microsphere may contain the luminescent substance or the substance may be located separately from, but in close proximity to, the microsphere.

    Abstract translation: 单个衬底AC和/或DC气体放电(等离子体)显示装置由包含可预定压力的可电离气体的中空微球组成,每个微球位于衬底的表面上或衬底空腔中,或者是空心的。 每个微球与2,3或更多个电极电接触。 每个微球内的AC或DC气体放电在可见和/或不可见的范围内发射光子。 在一个实施例中,来自微球内的气体放电的光子激发发光物质或材料,例如在可见光和/或不可见光谱中发射光子的荧光体。 微球可以含有发光物质,或者该物质可以与微球体分开但非常接近地定位。

    Plasma-dome article of manufacture
    98.
    发明授权
    Plasma-dome article of manufacture 有权
    等离子穹顶制品

    公开(公告)号:US07932674B1

    公开(公告)日:2011-04-26

    申请号:US11347246

    申请日:2006-02-06

    CPC classification number: H01J11/18

    Abstract: A Plasma Display Panel (PDP) comprising a substrate and a multiplicity of hollow Plasma-domes filled with an ionizable gas having a flat side and an opposing domed side. One or more other sides or edges may also be flat. Two or more electrodes are in electrical contact with each Plasma-dome. A flat or domed side of the Plasma-dome is in contact with the PDP substrate and each electrode is in electrical contact with a flat or domed side of the Plasma-dome. The organic and/or inorganic luminescent material is located on an exterior and/or interior surface of the Plasma-dome and/or incorporated into the shell of the Plasma-dome. Up-conversion and down-conversion materials may be used. The substrate is rigid or flexible with a flat, curved, or irregular surface.

    Abstract translation: 一种等离子体显示面板(PDP),其包括衬底和填充有具有平坦侧和相对圆顶侧的可电离气体的多个中空等离子体穹顶。 一个或多个其它侧面或边缘也可以是平坦的。 两个或多个电极与每个等离子体圆顶电接触。 等离子体圆顶的平坦或圆顶侧与PDP衬底接触,并且每个电极与等离子体圆顶的平坦或圆顶侧电接触。 有机和/或无机发光材料位于等离子体圆顶的外部和/或内部表面和/或并入等离子体圆顶的外壳中。 可以使用上转换和下转换材料。 衬底是刚性或柔性的,具有平坦,弯曲或不规则的表面。

    Organic electroluminescent display device method and apparatus
    99.
    发明授权
    Organic electroluminescent display device method and apparatus 有权
    有机电致发光显示装置的方法和装置

    公开(公告)号:US07808451B1

    公开(公告)日:2010-10-05

    申请号:US11065157

    申请日:2005-02-25

    Abstract: An organic electroluminescent display device connected by a blocking diode in series to an organic light-emitting diode (OLED). Each pixel or subpixel of the electroluminescent display device comprises an OLED, a blocking diode to prevent the OLED from being reversed biased, a rectification diode to isolate the column electrode from unselected rows and a capacitor as a memory device. The charge stored in each memory capacitor may be increased by the blocking diode in series with each OLED. A frame period of the display device is divided into sub-frames that have address and light emission periods. Current mode data programming is used to address the device in each sub-frame. A ramp waveform is applied to the row electrode during the light emission period, to cause the capacitor to discharge through the OLED and control the forward current level.

    Abstract translation: 一种有机电致发光显示装置,其通过阻挡二极管与有机发光二极管(OLED)串联连接。 电致发光显示装置的每个像素或子像素包括OLED,用于防止OLED反向偏置的阻挡二极管,用于将列电极与未选择的行隔离的整流二极管和作为存储器件的电容器。 存储在每个存储电容器中的电荷可以通过与每个OLED串联的阻塞二极管来增加。 显示装置的帧周期被划分为具有地址和发光周期的子帧。 电流模式数据编程用于寻址每个子帧中的设备。 在发光周期期间,对行电极施加斜坡波形,使电容器通过OLED放电并控制正向电流电平。

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