PLASMA DISPLAY PANEL
    43.
    发明申请
    PLASMA DISPLAY PANEL 审中-公开
    等离子显示面板

    公开(公告)号:US20080106497A1

    公开(公告)日:2008-05-08

    申请号:US11957890

    申请日:2007-12-17

    IPC分类号: G09G3/28

    摘要: The present invention relates to a plasma display panel, and more particularly, to an electrode structure of a plasma display panel capable of improving brightness and efficiency. According to the present invention, in the plasma display, assuming that a distance from the center of a discharge region between a pair of transparent electrodes to the center of metal electrodes is “d” and a distance between both ends of the pair of the transparent electrodes is “h”, a location on the transparent electrodes of metal electrodes satisfies d

    摘要翻译: 等离子体显示面板技术领域本发明涉及等离子体显示面板,更具体地,涉及能够提高亮度和效率的等离子体显示面板的电极结构。 根据本发明,在等离子体显示器中,假设从一对透明电极之间的放电区域的中心到金属电极的中心的距离为“d”,并且该对透明电极的两端之间的距离 电极为“h”,金属电极的透明电极上的位置满足d

    LIQUID CRYSTAL DISPLAY DEVICE
    44.
    发明申请
    LIQUID CRYSTAL DISPLAY DEVICE 审中-公开
    液晶显示装置

    公开(公告)号:US20070046856A1

    公开(公告)日:2007-03-01

    申请号:US11552289

    申请日:2006-10-24

    IPC分类号: G02F1/1335

    摘要: An LCD device has scratch-resistant property without using a protection sheet and can provide enhanced brightness. The LCD device includes a light path regulating member. The member includes a first prism sheet having first prisms of which apex has a round shape. The first prism sheet concentrates light supplied from a lamp to output the concentrated light. An anti-glare polarizing plate uniformly polarizes polarized planes of the concentrated light and provides the polarized light to the lower substrate. The anti-glare polarizing plate is arranged below the lower substrate of an LCD panel, and an uppermost prism sheet of optical sheets is non-matte-treated and has round-treated apexes. In spite of the absence of the protection sheet, the scratch-resistant property of the uppermost prism sheet and the brightness of the LCD panel may be enhanced.

    摘要翻译: 液晶显示装置具有耐刮擦性能,不使用保护片,可提供更高的亮度。 LCD装置包括光路调节部件。 该构件包括具有顶点具有圆形形状的第一棱镜的第一棱镜片。 第一棱镜片集中从灯提供的光以输出集中的光。 抗眩光偏光板使聚光的偏振面均匀地偏振,并向下基板提供偏振光。 防眩光偏振板配置在LCD面板的下基板的下方,最上方的光学片棱镜片未经磨光处理,具有圆形处理的顶点。 尽管不存在保护片,但是可以提高最上面的棱镜片的耐擦伤性和LCD面板的亮度。

    Monitoring pattern for optimization of chemical mechanical polishing process of trench isolation layer and related methods
    45.
    发明申请
    Monitoring pattern for optimization of chemical mechanical polishing process of trench isolation layer and related methods 审中-公开
    沟槽隔离层化学机械抛光工艺优化监测模式及相关方法

    公开(公告)号:US20060148204A1

    公开(公告)日:2006-07-06

    申请号:US11324170

    申请日:2005-12-29

    申请人: Jung Kang

    发明人: Jung Kang

    IPC分类号: H01L21/76

    摘要: A monitoring pattern includes unique active area arrays, each having at least two active areas separated and defined by a trench isolation area filled with a trench isolation layer. Each active area array differs from the others in shape, size, spaced distance, extending direction, and/or density. In a monitoring method, after the monitoring pattern is formed, preferably in scribe lanes, optical images of the active area arrays are obtained. Digital optical data is produced from the optical images and then checked to monitor a CMP process. The digital optical data contain information on the active area arrays and variable information according to height of each active area array. The CMP process may be performed until a polishing target established from the digital optical data is reached.

    摘要翻译: 监测图案包括唯一的有源区阵列,每个阵列具有由填充有沟槽隔离层的沟槽隔离区域分离和限定的至少两个有效区域。 每个有源面积阵列在形状,尺寸,间隔距离,延伸方向和/或密度方面与其他有源面积阵列不同。 在监视方法中,在形成监视图案之后,优选地在划线中获得有源区域阵列的光学图像。 从光学图像产生数字光学数据,然后检查以监测CMP过程。 数字光学数据包含有关活动区域阵列的信息和根据每个有源区域阵列的高度的可变信息。 可以执行CMP处理,直到达到从数字光学数据建立的抛光目标。

    Electron emission display
    46.
    发明申请
    Electron emission display 失效
    电子发射显示

    公开(公告)号:US20060138933A1

    公开(公告)日:2006-06-29

    申请号:US11291101

    申请日:2005-11-29

    IPC分类号: H01J1/62 H01J63/04

    CPC分类号: H01J29/085 H01J31/127

    摘要: An electron emission display comprising an electron collector or metal member is provided. The electron emission display comprises an electron emission substrate comprising at least one electron emission device and an image forming substrate comprising at least one emission region and at least one non-emission region. Images are formed in the emission regions by the collision of electrons emitted from the electron emission devices with the emission regions. The image forming substrate further comprises a metal layer positioned on at least the emission regions, and at least one electron collector positioned in the non-emission region. The electron collector may comprise first and second ends, wherein the first end is attached to the image forming substrate and the second end faces the electron emission substrate. The electron collector stabilizes the metal layer and fluorescent layers, thereby reducing arc and maintaining uniform brightness by re-directing scattered electrons toward the fluorescent layers.

    摘要翻译: 提供了包括电子收集器或金属构件的电子发射显示器。 电子发射显示器包括包括至少一个电子发射器件和包括至少一个发射区域和至少一个非发射区域的成像衬底的电子发射衬底。 通过与电子发射装置发射的电子与发射区域的碰撞,在发射区域中形成图像。 图像形成基板还包括位于至少发射区域上的金属层和位于非发射区域中的至少一个电子收集器。 电子收集器可以包括第一端和第二端,其中第一端附着到成像衬底上,第二端面向电子发射衬底。 电子收集器稳定金属层和荧光层,从而通过将散射电子重新引向荧光层来减少电弧并保持均匀的亮度。

    Electron emission display
    47.
    发明申请

    公开(公告)号:US20060113890A1

    公开(公告)日:2006-06-01

    申请号:US11264739

    申请日:2005-10-31

    IPC分类号: H01J63/04 H01J1/62

    CPC分类号: H01J31/123

    摘要: An electron emission display including a first substrate having at least one electron emission device and a second substrate opposite the first substrate. The second substrate is formed with an effective region and a non-effective region. The effective region includes a fluorescent layer for emitting light by collision with electrons emitted from the electron emission device. The non-effective region includes a region in which a light-shielding layer has a transparent conductive layer and a metal layer. The transparent conductive layer is formed in the effective region where the fluorescent layer is absent. The second substrate improves the brightness of light emitted from the fluorescent layer and prevents a power supply layer, to which a high voltage is applied, from being damaged, because the transparent conductive layer is not formed under the effective region.