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    • 1. 发明授权
    • Connector panel mount system
    • 连接器面板安装系统
    • US06715928B1
    • 2004-04-06
    • US10376171
    • 2003-02-27
    • Jeffrey A. MatasekIgor GroisThomas R. Marrapode
    • Jeffrey A. MatasekIgor GroisThomas R. Marrapode
    • G02B640
    • G02B6/4277G02B6/3849G02B6/3897G02B2006/4297
    • An adapter assembly is provided for mounting in an opening in a panel. The assembly includes a housing mountable in the opening and including a pair of housing halves. A first housing half projects from one side of the panel and has a first receptacle for receiving a connector. The first housing half is fabricated of plastic material to withstand repeated insertions of the connector into the receptacle. A second housing half projects from an opposite side of the panel and has a second receptacle for receiving a complementary connecting device for mating with the connector within the adapter assembly. The second housing half is fabricated of metal material to provide EMI protection at the opening in the panel.
    • 提供适配器组件用于安装在面板中的开口中。 组件包括可安装在开口中并包括一对壳体半部的壳体。 第一壳体半部从面板的一侧突出并具有用于接收连接器的第一插座。 第一壳体半部由塑料材料制成,以承受连接器重复插入插座中。 第二壳体半部从面板的相对侧突出并且具有用于接收用于与适配器组件内的连接器配合的互补连接装置的第二插座。 第二壳体半部由金属材料制成,以在面板的开口处提供EMI保护。
    • 3. 发明授权
    • Optical fiber rearrangement method and device
    • 光纤重排方法及装置
    • US06464404B1
    • 2002-10-15
    • US09597324
    • 2000-06-19
    • Matthew Scott RobinsonRichard Strack
    • Matthew Scott RobinsonRichard Strack
    • G02B640
    • G02B6/4472G02B6/04G02B6/06
    • The present invention provides an optical interconnection device whereby arrays of fibers or waveguides arranged in a given orientation at an input side are rearranged within the device and exit at an output side arranged in a different orientation from the input side. The method of accomplishing the rearrangement is to first arrange a plurality of ribbon fibers each containing a plurality of individual fibers. This arrangement is then fixed or secured at the output side to form a bundle. The output side bundle is then sliced in a different orientation, for example, in a direction orthogonal to each ribbon fiber at the input. As a result of the slicing, distinct arrays are created at the output side. Alternatively, distinct arrays are created at the output side via manual or automated placement based on a roadmap.
    • 本发明提供了一种光学互连装置,其中在输入侧以给定方向布置的光纤或波导阵列在装置内重新排列并且在以与输入侧不同的方向布置的输出侧离开。 完成重排的方法是首先布置多个带有多个单根纤维的带状纤维。 然后将该布置固定或固定在输出侧以形成束。 然后将输出侧束以不同的方向切片,例如在与输入处的每条带状光纤正交的方向上切片。 作为切片的结果,在输出侧创建不同的阵列。 或者,通过基于路线图的手动或自动放置在输出端创建不同的数组。
    • 8. 发明授权
    • Methods and apparatus for forming a fiber optic connection
    • 用于形成光纤连接的方法和装置
    • US06520686B1
    • 2003-02-18
    • US09711333
    • 2000-11-09
    • Sepehr Kiani
    • Sepehr Kiani
    • G02B640
    • G02B6/3885G02B6/3882G02B6/3883G02B6/389G02B6/3897
    • The invention is directed to techniques for forming a fiber optic connection between a first connection assembly that provides alignment members and a second connection assembly that provides grooves such that a central axis of each groove of the second connection assembly is substantially perpendicular with a central axis of a corresponding alignment member of the first connection assembly. Each alignment member/groove pair can be positioned and oriented to control positioning of the first and second connection assemblies relative to each other in a single direction but allow movement in other directions to prevent physical stressing of the connection assemblies. That is, the alignment members of the first connection assembly can be arranged around a periphery of a first array of fiber ends of a first fiber optic cable, and the grooves of the second connection assembly can be arranged around a periphery of a second array of fiber ends of a second fiber optic cable such that the aggregate contribution of each alignment member/groove pair forms a self-aligning mechanism that properly aligns the first and second arrays of fiber ends to provide effective light transfer between fiber optic cables.
    • 本发明涉及在提供对准构件的第一连接组件和第二连接组件之间形成光纤连接的技术,所述第二连接组件提供凹槽,使得第二连接组件的每个凹槽的中心轴线基本上垂直于 第一连接组件的对应对准构件。 每个对准构件/凹槽对可以被定位和定向以控制第一和第二连接组件相对于彼此在单个方向上的定位,但允许在其它方向上移动以防止连接组件的物理应力。 也就是说,第一连接组件的对准构件可以布置在第一光纤电缆的第一光纤端部阵列的周边周围,并且第二连接组件的凹槽可以围绕第二阵列的第二阵列的周边布置 第二光纤电缆的光纤端部,使得每个对准构件/凹槽对的总体贡献形成自对准机构,其适当地对准第一和第二光纤端部阵列以在光纤电缆之间提供有效的光传输。
    • 9. 发明授权
    • System and method for assembling a bundle of conductors into a connector
    • 将导线束组装成连接器的系统和方法
    • US06793401B2
    • 2004-09-21
    • US10225698
    • 2002-08-22
    • Jose Daniel
    • Jose Daniel
    • G02B640
    • G02B6/3885G02B6/3833H01R43/28Y10T29/53091
    • A system and method are provided for assembling of a bundle of conductors into a connector that defines a plurality of cavities for receiving the conductors. The system includes an apparatus that has a plurality of mating connectors that each include a plurality of cavities. The connector is capable of being removably coupled to one of the mating connectors such that the cavities of the mating connector are optically coupled with the cavities of the connector. The apparatus also includes a plurality of light emitting elements optically coupled to the cavities of the mating connectors. The light emitting elements can therefore selectively illuminate the cavities of the mating connectors. The system also includes a processing element capable of controlling operation of the light emitting elements. Also, the processing element includes a display capable of indicating the at least one cavity being illuminated.
    • 提供一种用于将一束导体组装成限定用于接收导体的多个空腔的连接器的系统和方法。 该系统包括具有多个配合连接器的装置,每个配合连接器各自包括多个空腔。 连接器能够可拆卸地联接到一个配合连接器中,使得配合连接器的空腔与连接器的空腔光学耦合。 该装置还包括与配合连接器的空腔光学耦合的多个发光元件。 因此,发光元件可以选择性地照亮配合连接器的空腔。 该系统还包括能够控制发光元件的操作的处理元件。 此外,处理元件包括能够指示被照亮的至少一个空腔的显示器。
    • 10. 发明授权
    • Methods and apparatus for forming a fiber optic connection
    • US06616342B2
    • 2003-09-09
    • US10261713
    • 2002-10-01
    • Sepehr Kiani
    • Sepehr Kiani
    • G02B640
    • G02B6/3885G02B6/3882G02B6/3883G02B6/389G02B6/3897
    • The invention is directed to techniques for forming a fiber optic connection between a first connection assembly that provides alignment members and a second connection assembly that provides grooves such that a central axis of each groove of the second connection assembly is substantially perpendicular with a central axis of a corresponding alignment member of the first connection assembly. Each alignment member/groove pair can be positioned and oriented to control positioning of the first and second connection assemblies relative to each other in a single direction but allow movement in other directions to prevent physical stressing of the connection assemblies. That is, the alignment members of the first connection assembly can be arranged around a periphery of a first array of fiber ends of a first fiber optic cable, and the grooves of the second connection assembly can be arranged around a periphery of a second array of fiber ends of a second fiber optic cable such that the aggregate contribution of each alignment member/groove pair forms a self-aligning mechanism that properly aligns the first and second arrays of fiber ends to provide effective light transfer between fiber optic cables.