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    • 1. 发明授权
    • Simplified and shortened parallel cable
    • 简化和缩短的并行电缆
    • US09081156B2
    • 2015-07-14
    • US12717352
    • 2010-03-04
    • Chris K. TogamiGary D. SasserFrank Flens
    • Chris K. TogamiGary D. SasserFrank Flens
    • G02B6/36G02B6/42G02B6/38
    • G02B6/4201G02B6/3885G02B6/424G02B6/4246G02B6/4253G02B6/428G02B6/4281G02B6/4284
    • One embodiment includes a connector comprising a connector housing, a ferrule, and a crimp ring. The connector housing has inner and outer surfaces extending between forward and rear ends of the connector housing. The inner surfaces defined a passageway extending lengthwise between the forward and rear ends. The connector housing includes at least one protrusion formed on one of the outer surfaces that is configured to engage a corresponding connector engaging structure of an alignment guide to secure the connector housing within the alignment guide. The ferrule is configured to mount upon end portions of a plurality of optical fibers of a multi-fiber communication cable. The ferrule is disposed partially within the passageway. The crimp ring encompasses the rear end of the connector housing and is configured to secure the connector to the multi-fiber communication cable.
    • 一个实施例包括连接器,其包括连接器壳体,套圈和压接环。 连接器壳体具有在连接器壳体的前端和后端之间延伸的内表面和外表面。 内表面限定了在前端和后端之间纵向延伸的通道。 连接器壳体包括形成在一个外表面上的至少一个突出部,其被构造成与对准引导件的对应的连接器接合结构接合,以将连接器壳体固定在对准引导件内。 套圈构造成安装在多纤维通信电缆的多个光纤的端部上。 套圈部分地设置在通道内。 压接环包围连接器壳体的后端,并且被配置为将连接器固定到多光纤通信电缆。
    • 3. 发明申请
    • COMMUNICATION MODULE GROUND CONTACT
    • 通讯模块接地
    • US20100112861A1
    • 2010-05-06
    • US12611843
    • 2009-11-03
    • Gary D. SasserChris Togami
    • Gary D. SasserChris Togami
    • H01R13/648
    • H01R13/6275H01R13/6583Y10S439/939
    • A transceiver module that utilizes a side contact spring portion to ground a shielded cable that is plugged into the transceiver module. In one example embodiment, a transceiver module includes a housing, a jack, and a side contact spring portion. The housing is operative to be electrically connected to chassis ground when the transceiver module is received within a host port. The jack is defined in the housing and operative to receive a shielded plug. The side contact spring portion is substantially implemented within the jack and is configured to be in electrical contact with both the housing and a conductive element of the shielded plug received by the jack such that a chassis ground is established between the housing and the shielded plug and such that a moveable bail pivot lever is able to move without disrupting the electrical contact between the side contact spring portion and the housing and/or the conductive element of the shielded plug.
    • 收发器模块,其利用侧接触弹簧部分将插入到收发器模块中的屏蔽电缆接地。 在一个示例实施例中,收发器模块包括壳体,千斤顶和侧接触弹簧部分。 当收发器模块被接收在主机端口内时,壳体可操作地电连接到机壳接地。 插座被限定在壳体中并且可操作地接收屏蔽插头。 侧接触弹簧部分基本上在千斤顶内实现,并被构造成与壳体和由插座接收的屏蔽插头的导电元件电接触,使得在外壳和屏蔽插头之间建立底盘接地, 使得可移动的吊环枢转杆能够移动而不破坏侧接触弹簧部分与壳体和/或屏蔽塞的导电元件之间的电接触。
    • 9. 发明授权
    • Electromagnetic radiation containment in an optoelectronic module
    • 光电子模块中的电磁辐射抑制
    • US08459881B2
    • 2013-06-11
    • US12629650
    • 2009-12-02
    • Chris K. TogamiGary D. SasserFrank Flens
    • Chris K. TogamiGary D. SasserFrank Flens
    • G02B6/36H05K1/14
    • G02B6/43G02B6/4246G02B6/4292H05K9/0058
    • Electromagnetic radiation (EMR) containment assemblies for use in optoelectronic modules. In one example embodiment, an EMR containment assembly includes an EMR shield and a mounting spring plate attached to the EMR shield. The EMR shield includes a first substantially flat body defining at least one edge, a plurality of optical ports defined in the first body; and a plurality of fingers defined along at least one edge of the first body. The fingers are configured to bias against a housing of an optoelectronic module. The mounting spring plate includes a second substantially flat body defining at least one edge, an optical window defined in the second body, and a plurality of leaf springs defined along at least one edge of the second body. The leaf springs are configured to bias against an alignment guide positioned within the optoelectronic module.
    • 用于光电子模块的电磁辐射(EMR)容纳组件。 在一个示例性实施例中,EMR容纳组件包括附接到EMR屏蔽的EMR屏蔽和安装弹簧板。 EMR屏蔽包括限定至少一个边缘的第一基本上平坦的主体,限定在第一主体中的多个光学端口; 以及沿着所述第一主体的至少一个边缘限定的多个手指。 指状物构造成偏压光电子模块的壳体。 安装弹簧板包括限定至少一个边缘的第二基本上平坦的主体,限定在第二主体中的光学窗口,以及沿着第二主体的至少一个边缘限定的多个板簧。 板簧构造成偏压位于光电子模块内的对准引导件。
    • 10. 发明授权
    • Communication module ground contact
    • 通讯模块接地
    • US07959467B2
    • 2011-06-14
    • US12611843
    • 2009-11-03
    • Gary D. SasserChris Togami
    • Gary D. SasserChris Togami
    • H01R13/648
    • H01R13/6275H01R13/6583Y10S439/939
    • A transceiver module that utilizes a side contact spring portion to ground a shielded cable that is plugged into the transceiver module. In one example embodiment, a transceiver module includes a housing, a jack, and a side contact spring portion. The housing is operative to be electrically connected to chassis ground when the transceiver module is received within a host port. The jack is defined in the housing and operative to receive a shielded plug. The side contact spring portion is substantially implemented within the jack and is configured to be in electrical contact with both the housing and a conductive element of the shielded plug received by the jack such that a chassis ground is established between the housing and the shielded plug and such that a moveable bail pivot lever is able to move without disrupting the electrical contact between the side contact spring portion and the housing and/or the conductive element of the shielded plug.
    • 收发器模块,其利用侧接触弹簧部分将插入到收发器模块中的屏蔽电缆接地。 在一个示例实施例中,收发器模块包括壳体,千斤顶和侧接触弹簧部分。 当收发器模块被接收在主机端口内时,壳体可操作地电连接到机壳接地。 插座被限定在壳体中并且可操作地接收屏蔽插头。 侧接触弹簧部分基本上在千斤顶内实现,并被构造成与壳体和由插座接收的屏蔽插头的导电元件电接触,使得在壳体和屏蔽插头之间建立底盘接地, 使得可移动的吊环枢转杆能够移动而不破坏侧接触弹簧部分与壳体和/或屏蔽塞的导电元件之间的电接触。