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    • 1. 发明申请
    • OPTICAL CONNECTOR
    • 光学连接器
    • US20130266279A1
    • 2013-10-10
    • US13805208
    • 2011-06-17
    • Daizo NishiokaShinji OgawaYukihiro Yokomachi
    • Daizo NishiokaShinji OgawaYukihiro Yokomachi
    • G02B6/38
    • G02B6/3801G02B6/3851G02B6/3863G02B6/3871
    • In an optical connector of the invention, the rotation in a conventional angle polish connector can be prevented, while external force acting on the connector can be prevented from affecting a ferrule. The optical connector includes a ferrule 15, which has an angle-polished front portion and is accommodated in a housing 19 in a state where pressing force is applied in a coupling-forward direction by an elastic means so as to enable the ferrule 15 to move in the axial direction. A key groove 21 and a key 23 which are provided between the housing 19 and the ferrule 15 are engaged so as to make their relative movement possible in the movement direction. The clearance C between the groove width W of the key groove 21 and the key 23 increases along the direction in which the ferrule 15 retreats.
    • 在本发明的光连接器中,可以防止常规角度抛光连接器中的旋转,同时可以防止作用在连接器上的外力影响套圈。 该光学连接器包括一个套圈15,该套圈15具有角度抛光的前部,并且在通过弹性装置以联接向前方向施加按压力的状态下容纳在壳体19中,以使套圈15能够移动 在轴向上。 设置在壳体19和套圈15之间的键槽21和键23接合,使得它们在移动方向上的相对移动成为可能。 键槽21的槽宽W与键23之间的间隙C沿着套圈15的退避方向增大。
    • 4. 发明授权
    • Method for connecting optical fibers
    • 光纤连接方法
    • US08763246B2
    • 2014-07-01
    • US13497215
    • 2010-09-17
    • Daizo NishiokaYukihiro Yokomachi
    • Daizo NishiokaYukihiro Yokomachi
    • H01R43/00
    • G02B6/3846G02B6/3898
    • Provided is an optical fiber connection method for using an optical fiber connector which includes a mechanical splice designed to connect a first optical fiber having a coating diameter D to mechanically connect two optical fibers that include a second optical fiber having a coating diameter d smaller than the coating diameter D. This method includes a first step of inserting the second optical fiber into a tube (30) to obtain a tubed optical fiber (31); a second step of fixing the tubed optical fiber (31) in a fiber holder (15); a third step of inserting the tubed optical fiber (31) into the mechanical splice (2) and placing distal ends of the two optical fibers including the tubed optical fiber (31) end to end; and a fourth step of fixing the tubed optical fiber (31) in the mechanical splice (2) in a state in which the distal ends of the two optical fibers are placed end to end.
    • 提供了一种使用光纤连接器的光纤连接方法,该光纤连接器包括设计成连接具有涂层直径D的第一光纤的机械接头,以机械连接两根光纤,该光纤包括具有小于 涂布直径D.该方法包括将第二光纤插入管(30)以获得管状光纤(31)的第一步骤。 将管状光纤(31)固定在光纤保持器(15)中的第二步骤; 将所述管状光纤(31)插入所述机械接头(2)并将包括所述管状光纤(31)的所述两根光纤的前端端对端配置的第三工序; 以及在两个光纤的末端端对端配置的状态下将管状光纤(31)固定在机械接头(2)中的第四步骤。
    • 5. 发明申请
    • METHOD FOR CONNECTING OPTICAL FIBERS
    • 连接光纤的方法
    • US20120174395A1
    • 2012-07-12
    • US13497215
    • 2010-09-17
    • Daizo NishiokaYukihiro Yokomachi
    • Daizo NishiokaYukihiro Yokomachi
    • G02B6/38
    • G02B6/3846G02B6/3898
    • Provided is an optical fiber connection method for using an optical fiber connector which includes a mechanical splice designed to connect a first optical fiber having a coating diameter D to mechanically connect two optical fibers that include a second optical fiber having a coating diameter d smaller than the coating diameter D. This method includes a first step of inserting the second optical fiber into a tube (30) to obtain a tubed optical fiber (31); a second step of fixing the tubed optical fiber (31) in a fiber holder (15); a third step of inserting the tubed optical fiber (31) into the mechanical splice (2) and placing distal ends of the two optical fibers including the tubed optical fiber (31) end to end; and a fourth step of fixing the tubed optical fiber (31) in the mechanical splice (2) in a state in which the distal ends of the two optical fibers are placed end to end.
    • 提供了一种使用光纤连接器的光纤连接方法,该光纤连接器包括设计成连接具有涂层直径D的第一光纤的机械接头,以机械连接两根光纤,该光纤包括具有小于 涂布直径D.该方法包括将第二光纤插入管(30)以获得管状光纤(31)的第一步骤。 将管状光纤(31)固定在光纤保持器(15)中的第二步骤; 将所述管状光纤(31)插入所述机械接头(2)并将包括所述管状光纤(31)的所述两根光纤的前端端对端配置的第三工序; 以及在两个光纤的末端端对端配置的状态下将管状光纤(31)固定在机械接头(2)中的第四步骤。
    • 8. 发明申请
    • OPTICAL CONNECTOR ASSEMBLING JIG AND OPTICAL CONNECTOR ASSEMBLING METHOD
    • 光连接器组装接头和光连接器组装方法
    • US20110056246A1
    • 2011-03-10
    • US12991660
    • 2009-04-30
    • Daizo NishiokaTakayasu YamauchiYukihiro YokomachiYoshinobu TodaYoshio Ukita
    • Daizo NishiokaTakayasu YamauchiYukihiro YokomachiYoshinobu TodaYoshio Ukita
    • G02B6/36G02B6/24
    • G02B6/3846G02B6/3898
    • An optical connector assembling jig and an optical connector assembling method includes an optical connection. The optical connector assembling jig includes a base and a guide. The base is provided in a longitudinal direction with an accommodation groove for accommodating an optical fiber, and a rear pressing member for restraining a rear part of the optical fiber accommodated in the accommodation groove. The rear part is set apart from an embedded fiber. The guide has a front holding portion for holding a front part of the optical fiber accommodated in the accommodation groove. The front part is near the embedded fiber, and the guide is capable of moving in the longitudinal direction. Moving the base toward the optical connector causes the intermediate section of the optical fiber to separate from the accommodation groove and bend. By moving the base further toward the optical connector, a buffered fiber in the optical fiber can be connected to the embedded fiber.
    • 光学连接器组装夹具和光学连接器组装方法包括光学连接。 光连接器组装夹具包括基座和引导件。 基部沿纵向设置有用于容纳光纤的容纳槽,以及用于限制容纳在容纳槽中的光纤的后部的后部按压构件。 后部与嵌入式光纤分开。 引导件具有用于保持容纳在容纳槽中的光纤的前部的前保持部。 前部靠近嵌入式光纤,引导件能够沿纵向移动。 将基座朝向光学连接器移动使得光纤的中间部分与容纳槽分离并弯曲。 通过将基座进一步朝向光学连接器移动,光纤中的缓冲光纤可以连接到嵌入式光纤。