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    • 2. 发明申请
    • OPTICAL CABLE CONNECTING CLOSURE AND OPTICAL INTERCONNECTION SYSTEM
    • 光电连接闭合和光互连系统
    • US20100074578A1
    • 2010-03-25
    • US12530739
    • 2008-03-11
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • G02B6/28G02B6/38G02B6/26
    • G02B6/4446
    • [Summary] [Problem] To provide an optical cable connecting closure and optical interconnection system which can easily respond to changes in required connection functions if any.[Solving Means] An optical cable connecting closure 118 has a case 121, while a plurality of connecting modules 123 are arranged (stored) so as to be erected with respect to the bottom face of a closure main body 119 along the width direction in a module storing section 122 of the case 121. The connecting module 123 has a rectangular parallelepiped board-like module main body 127, while a plurality of MT connectors 128, 129 are attached in a vertical row to one end face of the module main body 127. In the module main body 127, an optical connecting section 130 for connecting the MT connectors 128, 129 to each other is arranged. The module storing section 122 can store a different kind of connecting module having a connecting configuration (function) different from that of the connecting module 123.
    • [摘要] [问题]提供连接闭合和光互连系统的光缆,其可以容易地响应所需的连接功能的变化(如果有的话)。 [解决方案]光缆连接闭合件118具有壳体121,而多个连接模块123被布置(存放),以相对于闭合器主体119的宽度方向的底面竖立 模块存储部分122.连接模块123具有矩形平行六面体板状模块主体127,而多个MT连接器128,129垂直地附接到模块主体127的一个端面 在模块主体127中,配置有用于将MT连接器128,129彼此连接的光连接部130。 模块存储部分122可以存储具有与连接模块123不同的连接配置(功能)的不同种类的连接模块。
    • 3. 发明授权
    • Optical cable connecting closure and optical interconnection system
    • 光缆连接封闭和光互连系统
    • US08254741B2
    • 2012-08-28
    • US12530739
    • 2008-03-11
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • G02B6/00G02B6/28G02B6/38G02B6/26
    • G02B6/4446
    • [Problem] To provide an optical cable connecting closure and optical interconnection system which can easily respond to changes in required connection functions if any.[Solving Means] An optical cable connecting closure 118 has a case 121, while a plurality of connecting modules 123 are arranged (stored) so as to be erected with respect to the bottom face of a closure main body 119 along the width direction in a module storing section 122 of the case 121. The connecting module 123 has a rectangular parallelepiped board-like module main body 127, while a plurality of MT connectors 128, 129 are attached in a vertical row to one end face of the module main body 127. In the module main body 127, an optical connecting section 130 for connecting the MT connectors 128, 129 to each other is arranged. The module storing section 122 can store a different kind of connecting module having a connecting configuration (function) different from that of the connecting module 123.
    • [问题]提供连接闭合和光学互连系统的光缆,其可以容易地响应所需的连接功能的变化(如果有的话)。 [解决方案]光缆连接闭合件118具有壳体121,而多个连接模块123被布置(存放),以相对于闭合器主体119的宽度方向的底面竖立 模块存储部分122.连接模块123具有矩形平行六面体板状模块主体127,而多个MT连接器128,129垂直地附接到模块主体127的一个端面 在模块主体127中,配置有用于将MT连接器128,129彼此连接的光连接部130。 模块存储部分122可以存储具有与连接模块123不同的连接配置(功能)的不同种类的连接模块。
    • 6. 发明授权
    • Method of correcting shape of green tire and apparatus for carrying out the same
    • 校正轮胎形状的方法及其执行装置
    • US07740788B2
    • 2010-06-22
    • US10578712
    • 2004-11-11
    • Toshikatsu YoshinoTsuyoshi Imaizumi
    • Toshikatsu YoshinoTsuyoshi Imaizumi
    • B29C35/00B29D30/00B29D30/06
    • B29D30/0662B29D2030/0022B29D2030/0665
    • The shapes of the upper tire bead Bu and the lower tire bead Bl of a green tire G and the axial distance between the tire beads Bu and Bl are corrected in a short work time. The green tire G is placed in horizontal attitude on a green tire support table 3 provided with a lower tire bead correcting unit 10. Radially movable pressing members 13 included in the lower tire bead correcting unit 10 are engaged with the inner side of the lower tire bead Bl of the green tire G and stoppers 29 of the upper tire bead correcting unit 20 are engaged with the inner side of the upper tire bead Bu of the green tire G placed on the green tire support table 3. The pressing members 13 of the lower tire bead correcting unit 10 are moved radially outward to shape the lower tire bead Bl into a completely round shape of a predetermined diameter. The stoppers 29 of the upper tire bead correcting unit 20 are moved radially outward to shape the upper tire bead Bu into a completely round shape of a predetermined diameter and, at substantially the same time, the upper tire bead correcting unit 20 or the lower tire bead correcting unit 10 is moved vertically to adjust the axial distance B between the tire beads Bu and Bl to a predetermined axial bead spacing.
    • 在较短的工作时间内校正了生胎轮胎G的上胎圈胎圈B1和下轮胎胎圈B1的形状以及轮胎胎圈Bu和B1之间的轴向距离。 生轮胎G在设置有下胎圈修正单元10的生胎轮3上呈水平姿态。下轮胎胎圈校正单元10中包括的径向移动按压构件13与下轮胎胎圈校正单元10的内侧接合 生轮胎G的胎圈B1和上轮胎胎圈校正单元20的止动件29与放置在生胎轮3上的生胎轮胎G的上轮胎胎圈的内侧接合。 下轮胎胎圈校正单元10径向向外移动,以使下轮胎胎圈B1成为预定直径的完全圆形。 上胎圈校正单元20的止动件29径向向外移动,以使上轮胎胎圈Bu形成为预定直径的完全圆形,并且与此同时,上轮胎胎圈校正单元20或下轮胎 珠校正单元10垂直移动以将轮胎胎圈Bu和B1之间的轴向距离B调整到预定的轴向间隔。
    • 7. 发明申请
    • Method of correcting shape of green tire and apparatus for carrying out the same
    • 校正轮胎形状的方法及其执行装置
    • US20070170620A1
    • 2007-07-26
    • US10578712
    • 2004-11-11
    • Toshikatsu YoshinoTsuyoshi Imaizumi
    • Toshikatsu YoshinoTsuyoshi Imaizumi
    • B29D30/00
    • B29D30/0662B29D2030/0022B29D2030/0665
    • The shapes of the upper tire bead Bu and the lower tire bead Bl of a green tire G and the axial distance between the tire beads Bu and Bl are corrected in a short work time. The green tire G is placed in horizontal attitude on a green tire support table 3 provided with a lower tire bead correcting unit 10. Radially movable pressing members 13 included in the lower tire bead correcting unit 10 are engaged with the inner side of the lower tire bead Bl of the green tire G and stoppers 29 of the upper tire bead correcting unit 20 are engaged with the inner side of the upper tire bead Bu of the green tire G placed on the green tire support table 3. The pressing members 13 of the lower tire bead correcting unit 10 are moved radially outward to shape the lower tire bead Bl into a completely round shape of a predetermined diameter. The stoppers 29 of the upper tire bead correcting unit 20 are moved radially outward to shape the upper tire bead Bu into a completely round shape of a predetermined diameter and, at substantially the same time, the upper tire bead correcting unit 20 or the lower tire bead correcting unit 10 is moved vertically to adjust the axial distance B between the tire beads Bu and Bl to a predetermined axial bead spacing.
    • 在较短的工作时间内校正了生胎轮胎G的上胎圈胎圈B1和下轮胎胎圈B1的形状以及轮胎胎圈Bu和B1之间的轴向距离。 生轮胎G以具有下轮胎胎圈校正单元10的生胎轮3支撑台3上的水平姿态放置。 包括在下胎圈修正单元10中的可径向移动的按压构件13与生胎G的下轮胎胎圈B1的内侧接合,并且上轮胎胎圈校正单元20的止动件29与 生轮胎G的上轮胎胎圈Bu放置在生轮胎支撑台3上。 下轮胎胎圈校正单元10的按压构件13径向向外移动,以将下胎圈B1形成为预定直径的完全圆形。 上胎圈校正单元20的止动件29径向向外移动,以使上轮胎胎圈Bu形成为预定直径的完全圆形,并且与此同时,上轮胎胎圈校正单元20或下轮胎 珠校正单元10垂直移动以将轮胎胎圈Bu和B1之间的轴向距离B调整到预定的轴向间隔。
    • 9. 发明授权
    • Attaching arrangement of an optical cable case to a container box of a communication apparatus
    • 将光缆壳体安装到通信设备的容器盒中
    • US06178282B1
    • 2001-01-23
    • US08977425
    • 1997-11-24
    • Makoto MoribeHironobu GotoKazuki YoshidaTsuyoshi ImaizumiHitoshi TakedaKiyotaka Tanaka
    • Makoto MoribeHironobu GotoKazuki YoshidaTsuyoshi ImaizumiHitoshi TakedaKiyotaka Tanaka
    • G02B636
    • G02B6/445
    • An attaching arrangement for attaching, to a communications apparatus container box, an optical cable case which includes a case body for accommodating an optical cable and a case end portion attached to the case body. The attaching arrangement includes: a first rotary hinge having a first rotary hinge axis for rotatably attaching the case end portion to the container box around the first rotary hinge axis; and a second rotary hinge having a second rotary hinge axis perpendicular to the first rotary hinge axis for rotatably attaching the case end portion to the container box around the second rotary hinge axis. In a preferred implementation, the attaching arrangement further includes: a slide rail slidably attached to an inner surface of the container box along a direction parallel to the second rotary hinge axis so that the slide rail is slidable from an inside of the container box to an outside of the container box and from the outside of the container box to the inside of the container box. The first and second rotary hinges rotatably attach the case end portion to a forward end of the slide rail in an advancing direction in which the slide rail moves from the inside of the container box to the outside of the container box.
    • 一种用于将通信设备容器盒附接到光缆壳体的连接装置,该光缆壳体包括用于容纳光缆的壳体和附接到壳体的壳体端部。 附接装置包括:第一旋转铰链,具有第一旋转铰链轴线,用于将壳体端部可旋转地附接到围绕第一旋转铰链轴线的容器箱; 以及具有垂直于第一旋转铰链轴线的第二旋转铰链轴线的第二旋转铰链,用于将壳体端部可旋转地附接到围绕第二旋转铰链轴线的容器箱。 在优选的实施方式中,附接装置还包括:滑轨,其沿着平行于第二旋转铰链轴线的方向可滑动地附接到容器箱的内表面,使得滑轨能够从容器箱的内部滑动到 在集装箱外面,从集装箱外部到集装箱内部。 第一旋转铰链和第二旋转铰链沿滑动轨道从容器箱体的内部移动到容器箱的外部的前进方向将壳体端部可旋转地附接到滑轨的前端。