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    • 6. 发明授权
    • Slider for an optical head with a terminal groove having an inclined bottom surface
    • 用于具有具有倾斜底表面的端子槽的光学头的滑块
    • US06781950B2
    • 2004-08-24
    • US09782274
    • 2001-02-14
    • Akio MishimaToru Katakura
    • Akio MishimaToru Katakura
    • G11B700
    • G11B11/10554G11B7/122G11B7/1384G11B7/1387G11B7/22G11B11/10534G11B11/1058Y10T29/49032Y10T29/49034Y10T29/49041Y10T29/49043Y10T29/49046Y10T29/49798
    • A slider for an optical head for signal recording and/or reproduction on or from a recording medium which, even if reduced in size, assures optimum signal recording and/or reproduction on or from a recording medium, and which may be produced readily. The slider for the optical head includes a slider member for floating and running over a recording medium during recording and/or reproduction of information signals for the recording medium, an optical lens bonded to the slider member and a magnetic field generating unit provided on a surface of the slider member carrying the optical lens facing the recording medium. The slider member is formed with a terminal groove opened in a its surface facing the recording medium and in its lateral surface, with an electrically conductive material being charged in the terminal groove. The electrically conductive material charged forms a terminal electrically connected to the magnetic field generating unit. One end of the terminal faces to outside of the slider member from a lateral surface of the slider member.
    • 用于在记录介质上或从记录介质上进行信号记录和/或再现的光学头的滑动器,即使减小了尺寸,确保了在记录介质上或从记录介质上的最佳信号记录和/或再现,并且可容易地制造。 用于光学头的滑块包括用于在用于记录介质的信息信号的记录和/或再现期间浮动并在记录介质上运行的滑块构件,结合到滑块构件的光学透镜和设置在滑动构件上的磁场产生单元 所述滑动构件承载面向所述记录介质的所述光学透镜。 滑块构件形成有在面向记录介质的表面上开口的端子槽,并且在其侧表面中,导电材料被充入端子槽中。 充电的导电材料形成电连接到磁场产生单元的端子。 端子的一端从滑动构件的侧面面向滑动构件的外侧。
    • 9. 发明申请
    • APPARATUS FOR MANUFACTURING GAS BARRIER PLASTIC CONTAINER, METHOD FOR MANUFACTURING THE CONTAINER, AND THE CONTAINER
    • 制造气体阻隔器塑料容器的装置,制造集装箱和集装箱的方法
    • US20090061111A1
    • 2009-03-05
    • US11912345
    • 2006-05-26
    • Akio MishimaMasaki NakayaAkira Shirakura
    • Akio MishimaMasaki NakayaAkira Shirakura
    • C23C16/32C23C16/34
    • C23C16/045B29C49/00B65D1/0215C23C16/44C23C16/45578
    • The object of the present invention is to provide an apparatus for manufacturing a gas barrier plastic container which simultaneously satisfies the condition that the same vacuum chamber can be used even when the container shapes are different, the condition that a high-frequency power source is unnecessary, and the condition that film formation can be carried out for a plurality of containers inside one vacuum chamber in order to make the apparatus low cost. In an apparatus for forming a film on the inner surface of a container, a thermal catalyst is supported on a source gas supply pipe, and the source gas supply pipe is inserted into the port of the container, followed by film formation. In an apparatus for forming a film on the outer surface of a container, a thermal catalyst is arranged on the periphery of the plastic, and a source gas is blown out through the source gas supply pipe while bringing the source gas into contact with the thermal catalyst for film formation. Cooling is carried out to avoid the thermal deformation of the container by heat radiated from the thermal catalyst. For example, a container on which a hydrogen-containing SiNx thin film having a film thickness of 5 to 100 nm and a hydrogen content ratio of 1 to 10 atomic % has been obtained.
    • 本发明的目的是提供一种用于制造阻气性塑料容器的装置,其同时满足即使容器形状不同也可以使用相同的真空室的条件,高频电源是不必要的 以及能够对一个真空室内的多个容器进行成膜的条件,以使该装置成本低廉。 在容器内表面上形成膜的装置中,将热催化剂负载在原料气体供给管上,将原料气供给管插入容器的端口后,进行成膜。 在容器外表面上形成薄膜的装置中,在塑料周边配置有热催化剂,通过原料气供给管吹出源气体,同时使源气与热量接触 成膜催化剂。 进行冷却以避免由热催化剂辐射的热量对容器的热变形。 例如,可以获得膜厚5〜100nm,含氢率为1〜10原子%的含氢SiNx薄膜的容器。