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    • 53. 发明授权
    • Display panel, display and image display apparatus
    • 显示面板,显示和图像显示装置
    • US08089204B2
    • 2012-01-03
    • US12833212
    • 2010-07-09
    • Nobuhiro Ito
    • Nobuhiro Ito
    • H01J19/42
    • H01J29/006H01J29/864H01J31/127H01J2329/8645H04N5/64
    • An electric resistor element is provided outside of the image region. The electric resistor element and a potential regulating element are connected outside of the image region. A part of a surface of a front substrate other than a surface thereof opposite to the rear substrate and a part of a surface of a rear substrate other than a surface thereof opposite to the front substrate are connected by a high thermal conducting member. The electric resistor element is disposed between the part of the surface of the front substrate, which is connected to the part of the surface of the rear substrate by the high thermal conducting member, and the part of the surface of the rear substrate, which is connected to the part of the surface of the front substrate by the high thermal conducting member.
    • 在图像区域的外部设置电阻元件。 电阻元件和电位调节元件连接在图像区域的外部。 除了与背面基板相反的表面之外的前面基板的表面的一部分以及与前面基板相反的表面以外的背面基板的表面的一部分被高导热部件连接。 电阻元件设置在前基板表面部分之间,该部分表面通过高导热部件连接到后基板表面的一部分,后部基板的表面部分是 通过高导热构件连接到前基板的表面的一部分。
    • 55. 发明申请
    • MANUFACTURING METHOD OF HERMETIC CONTAINER AND IMAGE DISPLAY APPARATUS
    • 流体容器和图像显示装置的制造方法
    • US20110265518A1
    • 2011-11-03
    • US13079104
    • 2011-04-04
    • Mamo MatsumotoNobuhiro Ito
    • Mamo MatsumotoNobuhiro Ito
    • C03C27/00C03B29/00
    • H01J9/261H01J11/34H01J29/86H01L51/5246
    • A manufacturing method of a hermetic container includes the steps of sandwiching a frame-like sealing material between a first glass substrate and a second glass substrate, irradiating first local heating light to a first region of the sealing material, and sealing the first glass substrate and the second glass substrate to each. The sealing is performed by irradiating, on a boundary between the first region of the sealing material and a second region of the sealing material which is adjacent to the first region and on which the first local heating light is not irradiated, second local heating light to heat and melt a portion of the second region adjacent to the boundary, during a period that viscosity of the sealing material at a portion of the first region adjacent to the boundary is equal to or lower than 1018 Pa·sec.
    • 密封容器的制造方法包括以下步骤:将第一玻璃基板和第二玻璃基板之间的框状密封材料夹持,将第一局部加热光照射到密封材料的第一区域,并密封第一玻璃基板, 第二玻璃基板。 密封是通过在密封材料的第一区域和密封材料的与第一区域相邻的第二区域和第一局部加热光未被照射的边界上照射第二局部加热光, 在邻近边界的第一区域的部分处的密封材料的粘度等于或低于1018Pa·sec的期间,加热并熔化邻近边界的第二区域的一部分。
    • 59. 发明申请
    • METHOD FOR PRODUCING AIRTIGHT CONTAINER
    • 生产空气容器的方法
    • US20100112890A1
    • 2010-05-06
    • US12609943
    • 2009-10-30
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • H01J9/26
    • H01J29/86H01J9/241H01J9/261H01J31/127H01J2211/446Y10T29/49703
    • A method for producing an airtight container includes preparing an assembly having a first substrate and a frame member, the first substrate having an electron-emitting element formed on a first surface thereof, the frame member mounted on the first surface outside an area where the electron-emitting element is formed; forming a temporary assembly having the assembly and a second substrate by bringing the second substrate into contact with the frame member via a joining member such that an inner space is formed; melting the joining member by irradiating the joining member with a laser beam transmitted through the second substrate; and solidifying the melted joining member. The laser beam is applied such that an incident direction at an irradiation position on the joining member does not include components toward the interior of the frame member while the laser beam moves relative to the temporary assembly.
    • 一种密封容器的制造方法,其特征在于,准备具有第一基板和框架部件的组装体,所述第一基板在其第一面上形成有电子发射元件,所述框架部件安装在所述第一面上, 形成元件; 通过使所述第二基板经由接合构件与所述框架构件接触而形成具有所述组件的临时组件和第二基板,使得形成内部空间; 通过用透射通过第二基板的激光束照射接合部件来熔化接合部件; 并使熔融的接合部件固化。 激光束被施加使得当激光束相对于临时组件移动时,接合构件上的照射位置处的入射方向不包括朝向框架构件的内部的部件。