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    • 53. 发明授权
    • Method and apparatus for manufacturing image displaying apparatus
    • 用于制造图像显示装置的方法和装置
    • US06905384B2
    • 2005-06-14
    • US09781305
    • 2001-02-13
    • Toshihiko MiyazakiKohei NakataTetsuya Kaneko
    • Toshihiko MiyazakiKohei NakataTetsuya Kaneko
    • H01J9/39H01J9/18H01J9/26H01J9/38H01J9/40H01J9/46H01J9/48H01J9/00
    • H01J9/46H01J9/18H01J9/38H01J9/48H01J2329/00
    • A method and an apparatus for manufacturing an image displaying apparatus having a display panel. A first substrate of the display panel on which a phosphor exciter is disposed and a second substrate of the display panel on which phosphors emitting light by the phosphor exciter is provided, are prepared under a vacuum atmosphere. Then, the first and the second substrates are carried in a getter processing chamber or bake processing chamber, and getter processing or bake processing is applied thereto under the vacuum atmosphere. After the processing, the first and the second substrates are carried in a seal processing chamber, where the substrates are heat sealed under the vacuum atmosphere. Thus, reduction of vacuum exhaust time and a high vacuum degree in manufacturing an image displaying apparatus is attained and efficiency of manufacturing is improved.
    • 一种用于制造具有显示面板的图像显示装置的方法和装置。 在真空气氛下制备其上设置有荧光体激发器的显示面板的第一基板和设置有由荧光体激发器发光的荧光体的显示面板的第二基板。 然后,将第一和第二基板载带在吸气处理室或烘烤处理室中,并在真空环境下对其进行吸气处理或烘烤处理。 在处理之后,第一和第二基板被携带在密封处理室中,其中基板在真空气氛下被热密封。 因此,在制造图像显示装置中实现真空排气时间的减少和真空度的提高,并且提高了制造效率。
    • 57. 发明授权
    • Lower surface contact type contact
    • 下表面接触式接触
    • US06200151B1
    • 2001-03-13
    • US09400859
    • 1999-09-21
    • Tetsuya Kaneko
    • Tetsuya Kaneko
    • H01R1328
    • H01R13/2442H01R13/2464
    • A lower surface contact type contact which is to be arranged in array on a connector body made of an insulative material, comprising an upwardly projecting contact portion on which a lower surface of an external contact of an electronic part is placed to press the upward projecting contact portion downward; a leftwardly expanding curved spring portion including a downward displacement component for allowing a downward displacement of the contact portion when the contact portion is pressed downward by the external contact and a rightward displacement component for causing a tendency for rightward displacement of said contact portion; and a support post implanted in the connector body and adapted to support the curved spring portion, the support post being displaced leftward when the contact portion is displaced downward, so as to offset the tendenct for rightward displacement.
    • 将由绝缘材料制成的连接体上的阵列阵列的下表面接触型触点,包括向上突出的接触部分,电子部件的外部触点的下表面在该向上突出的接触部分上按压向上突出的触点 部分向下 向右扩张的弯曲弹簧部分,包括向下移位部件,用于当接触部分被外部触点向下压时允许接触部分向下移位;以及向右位移部件,用于引起所述接触部分向右移位的倾向; 以及植入在连接器主体中并且适于支撑弯曲弹簧部分的支撑柱,当接触部分向下移位时,支撑柱向左移位,以抵消向右移位的腱。
    • 59. 发明授权
    • Preparation of an electron source by offset printing electrodes having
thickness less than 200 nm
    • 通过厚度小于200nm的胶版印刷电极制备电子源
    • US05996488A
    • 1999-12-07
    • US561868
    • 1995-11-22
    • Yoshihiro YanagisawaTetsuya Kaneko
    • Yoshihiro YanagisawaTetsuya Kaneko
    • H01J9/02B41M1/10H01J1/30
    • H01J9/027
    • A method of producing a substrate for an electron source, the substrate including a plurality of electron emission devices each including a pair of opposing electrodes, the plurality of electron emission devices being arranged on the substrate. The method comprises the steps of preparing an intaglio plate having recessed portions corresponding to a pattern of the electrodes, the depth of the recessed portions being in the range from 4 .mu.m to 15 .mu.m, filling the recessed portions with ink, pressing a blanket against the intaglio plate so that the ink is transferred from the inside of the recessed portions onto the blanket, and bringing the blanket into contact with the substrate so that the ink is transferred from the blanket onto the substrate thereby forming the electrode pattern thereon.
    • 一种制造电子源用基板的方法,所述基板包括多个电子发射装置,每个电子发射装置包括一对相对的电极,所述多个电子发射装置设置在所述基板上。 该方法包括以下步骤:制备具有对应于电极图案的凹部的凹版,凹部的深度在4μm至15μm的范围内,用墨填充凹陷部分,将毯子 抵靠凹版,使得墨从凹部的内部转移到橡皮布上,并使橡皮布与基底接触,使得墨从橡皮布转移到基底上,从而在其上形成电极图案。