Pattern forming method and ink compostion
    1.
    发明授权
    Pattern forming method and ink compostion 失效
    图案形成方法和油墨组合

    公开(公告)号:US5635006A

    公开(公告)日:1997-06-03

    申请号:US540622

    申请日:1990-06-19

    摘要: The fine-line pattern forming method is to form a pattern by transferring the pattern formed on the blanket of which surface is covered with an elastic material mainly composed of silicone resin, on a substrate on which a tack layer is formed. As an example thereof, the forming method of cathode-ray tube anode comprises a step of filling the groove of an intaglio with a graphite ink, a step of transferring the graphite ink in the groove of the intaglio on a blanket of which surface is covered with an elastic material mainly composed of silicone resin, a step of forming a tack layer on a substrate, a step of transferring and printing the pattern transferred on the blanket onto the substrate, a step of filling the groove of the intaglio with a phosphor ink, a step of transferring the ink in the groove of the intaglio on the blanket of which surface is covered with an elastic material mainly composed of silicone resin, a step of forming a tack layer on the substrate, a step of transferring and printing the pattern transferred on the blanket on the substrate on which the graphite pattern has been formed, a step of transferring an aluminum thin film possessing multiple pores as a metal-backed layer so as to cover a black matrix and a phosphor layer, and a step of firing the substrate covered with the aluminum thin film. The graphite ink comprises graphite powder, vehicle containing depolymerization type organic binder, and organic acid metal salt. The phosphor ink comprises phosphor powder and vehicle containing polymerization type organic binder.

    摘要翻译: 细线图案形成方法是在形成有粘性层的基板上,通过将主要由硅树脂构成的弹性材料覆盖在其表面的毯子上的图案转印而形成图案。 作为其示例,阴极射线管阳极的形成方法包括用石墨墨水填充凹版的凹槽的步骤,将石墨墨在凹版的凹槽中的表面覆盖的毯子上的步骤 主要由硅树脂构成的弹性材料,在基材上形成粘性层的步骤,将在橡皮布上转印的图案转印印刷到基材上的步骤,用荧光体墨水填充凹版的凹槽的步骤 将主要由硅树脂构成的弹性材料覆盖在表面的毯子上的凹版凹槽中的墨水转印到基板上形成粘着层的工序,转印印刷图案的步骤 转印在已经形成有石墨图案的基板上的橡皮布上,转印具有多个孔的铝薄膜作为金属背衬层以覆盖黑矩阵a 和荧光体层,以及烧制被铝薄膜覆盖的基板的步骤。 石墨油墨包括石墨粉,含有解聚型有机粘合剂的载体和有机酸金属盐。 荧光体油墨包含荧光体粉末和含有聚合型有机粘合剂的载体。

    Method of joining flat electrodes
    3.
    发明授权
    Method of joining flat electrodes 失效
    连接扁平电极的方法

    公开(公告)号:US5412867A

    公开(公告)日:1995-05-09

    申请号:US66224

    申请日:1993-05-25

    IPC分类号: H01J9/18 H01R43/00

    摘要: The present invention intends to provide a gap-forming sheet for laminating a plurality of flat plate electrodes, for example, for controlling electron beam at high accuracy in a short period of time. Gap-forming sheets each including a support member formed by depolymerizing resin, gap members for providing gaps between the flat plate electrodes, and a bonding paste for bonding the flat plate electrodes, are held between the flat plate electrodes, which are baked to decompose the support members, and thus, by melting the bonding paste, the flat plate electrodes are joined together for lamination, with gaps being provided by the gap members.

    摘要翻译: 本发明提供一种用于层叠多个平板电极的间隙形成片,例如用于在短时间内以高精度控制电子束。 每个间隙形成片包括由树脂解聚形成的支撑构件,用于在平板电极之间提供间隙的间隙构件和用于粘合平板电极的接合膏,保持在平板电极之间,烘烤以分解 支撑构件,因此通过熔融粘合膏,将平板电极接合在一起以进行层压,间隙由间隙构件提供。

    Method of forming an ink image and printing the formed image
    6.
    发明授权
    Method of forming an ink image and printing the formed image 失效
    形成油墨图像并打印所形成图像的方法

    公开(公告)号:US4909151A

    公开(公告)日:1990-03-20

    申请号:US178647

    申请日:1988-04-07

    CPC分类号: B41M1/00 B41M1/08

    摘要: A method of forming an ink image with a thermo-sensitive ink by using a printing plate that is used in dry lithographic printing, and printing the ink image onto an object. An ink remover is placed via a thermo-sensitive ink layer that is in a heated state on a printing surface of a printing plate having a part receptive to ink and a part capable of repelling ink. The printing plate and the ink remover are separated after they are cooled so that the ink layer on the part capable of repelling ink is transferred to the ink remover. The ink image obtained on the printing plate or the ink remover is transferred to an object. Printing that does not require maintenance that has been essential to conventional dry lithographic printing becomes possible.

    Image pickup element and image pickup device
    9.
    发明授权
    Image pickup element and image pickup device 有权
    图像拾取元件和图像拾取装置

    公开(公告)号:US08582019B2

    公开(公告)日:2013-11-12

    申请号:US13119610

    申请日:2009-09-02

    IPC分类号: H04N5/232

    摘要: A technology of a phase-difference detecting image pickup element that can precisely detect a focus by a phase difference detection method and that can be properly produced even if pixels are becoming finer is provided. An image pickup element of an image pickup device includes an AF pixel pair 11f performing a pupil division function by receiving an object light beam transmitted through a pair of portions Qa, Qb in an exit pupil; and ordinary pixels that are not provided with the pupil division function. The AF pixel pair 11f includes a pair of photoelectric converters PD having the same size as photoelectric converters of the ordinary pixels and being disposed adjacent to each other in a horizontal direction. A light-intercepting section LS and one microlens ML are provided above the pair of photoelectric converters PD. The light-intercepting section LS has two light-intercepting areas Ea, Eb that intercept the light beam transmitted through the exit pupil. The one microlens ML is interposed between the two light-intercepting areas Ea, Eb. This makes it possible to realize an image pickup element that can precisely detect a focus by the phase difference detection method and that can be properly produced even if pixels are becoming finer.

    摘要翻译: 提供了一种相位差检测图像拾取元件的技术,其可以通过相位差检测方法精确地检测焦点,并且即使像素变得更细,也可以适当地产生。 图像拾取装置的图像拾取元件包括通过接收通过出射光瞳中的一对部分Qa,Qb传输的物体光束来执行光瞳分割功能的AF像素对11f; 以及不具备光瞳分割功能的普通像素。 AF像素对11f包括与普通像素的光电转换器相同尺寸的一对光电转换器PD,并且在水平方向上彼此相邻地布置。 在一对光电转换器PD的上方设置有遮光部LS和一个微透镜ML。 遮光部LS具有遮断通过出射光瞳传播的光束的两个遮光区域Ea,Eb。 一个微透镜ML置于两个遮光区域Ea,Eb之间。 这使得可以实现能够通过相位差检测方法精确地检测焦点的图像拾取元件,并且即使像素变得更细,也可以适当地产生。