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    • 1. 发明申请
    • SCALABLE AND MODULAR AUTOMATED FIBER OPTIC CROSS-CONNECT SYSTEMS
    • 可调和模块化自动光纤交叉连接系统
    • US20170023740A1
    • 2017-01-26
    • US15222649
    • 2016-07-28
    • Telescent Inc.
    • Anthony Stephen Kewitsch
    • G02B6/35G02B6/44G02B6/38
    • G02B6/356G02B6/3502G02B6/3556G02B6/3564G02B6/3897G02B6/4452H04Q1/145H04Q11/0005H04Q2011/0058
    • This invention discloses patch-panel systems for organized configuration management of large numbers of fiber optic interconnection strands, wherein each strand transmits high bandwidth signals between devices. In particular, a system for the programmable interconnection of large numbers of optical fiber strands is provided, whereby strands connecting a two-dimensional array of connectors are mapped in an ordered and rule based fashion into a one-dimensional array with substantially straight lines strands there between. The braid of fiber optic strands is partitioned into multiple independent, non-interfering zones or subbraids. The separation into subbraids provides spatial clearance for one or more robotic grippers to enter the free volume substantially adjacent to the two-dimensional array of connectors and to mechanically reconfigure one or more optical fiber strands without interrupting or entangling other fiber optic strands.
    • 本发明公开了用于对大量光纤互连绞线进行有组织配置管理的接线板系统,其中每条线在器件之间传输高带宽信号。 特别地,提供了一种用于大量光纤线的可编程互连的系统,由此连接二维连接器阵列的线将以有序和规则为基础的方式映射为一维阵列,其中基本上具有直线线 之间。 纤维束的编织被划分成多个独立的,非干扰的区域或亚类。 分离成亚标准物为一个或多个机器人夹持器提供空间间隙,以进入与二维连接器阵列基本相邻的自由体积,并且机械地重新配置一个或多个光纤线束而不中断或缠结其它光纤线束。
    • 2. 发明申请
    • Scalable and Modular Automated Fiber Optic Cross-Connect Systems
    • 可扩展和模块化自动光纤交叉连接系统
    • US20150331199A1
    • 2015-11-19
    • US14324120
    • 2014-07-04
    • Anthony Stephen Kewitsch
    • Anthony Stephen Kewitsch
    • G02B6/35G02B6/44H04Q11/00G02B6/38
    • G02B6/356G02B6/3502G02B6/3556G02B6/3564G02B6/3897G02B6/4452H04Q1/145H04Q11/0005H04Q2011/0058
    • This invention discloses patch-panel systems for organized configuration management of large numbers of fiber optic interconnection strands, wherein each strand transmits high bandwidth signals between devices. In particular, a system for the programmable interconnection of large numbers of optical fiber strands is provided, whereby strands connecting a two-dimensional array of connectors are mapped in an ordered and rule based fashion into a one-dimensional array with substantially straight lines strands there between. The braid of fiber optic strands is partitioned into multiple independent, non-interfering zones or subbraids. The separation into subbraids provides spatial clearance for one or more robotic grippers to enter the free volume substantially adjacent to the two-dimensional array of connectors and to mechanically reconfigure one or more optical fiber strands without interrupting or entangling other fiber optic strands.
    • 本发明公开了用于对大量光纤互连绞线进行有组织配置管理的接线板系统,其中每条线在器件之间传输高带宽信号。 特别地,提供了一种用于大量光纤线的可编程互连的系统,由此连接二维连接器阵列的线将以有序和规则为基础的方式映射为一维阵列,其中基本上具有直线线 之间。 纤维束的编织被划分成多个独立的,非干扰的区域或亚类。 分离成亚标准物为一个或多个机器人夹持器提供空间间隙,以进入与二维连接器阵列基本相邻的自由体积,并且机械地重新配置一个或多个光纤线束而不中断或缠结其它光纤线束。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING LARGE SCALE, AUTOMATED, FIBER-OPTIC, CROSS-CONNECTION
    • 提供大规模,自动,光纤,交叉连接的系统和方法
    • US20090324179A1
    • 2009-12-31
    • US12165122
    • 2008-06-30
    • Tiejun J. XiaGlenn A. Wellbrock
    • Tiejun J. XiaGlenn A. Wellbrock
    • G02B6/255
    • G02B6/3502G02B6/3556G02B6/356G02B6/3564G02B6/3801
    • A system and method for automatically inserting optical-fiber (fiber-optics) cable jumpers into a patch panel to connect optical signal source equipment to optical signal destination equipment, and for automatically removing those jumpers from that patch panel to disconnect that equipment. This is accomplished robotically under computer control. Large scale fiber-optical splicings can be made, on the order of ten thousand (10,000) separate optical splices or more. Previous embodiments required hand insertion of these jumpers. Embodiments of the present invention permit any un-occupied port to be connected to any other un-occupied port, regardless of their input or output port status, where previous embodiments required only unoccupied input ports to be connected to unoccupied output ports.
    • 一种用于将光纤(光纤)电缆跳线自动插入接线板以将光信号源设备连接到光信号目的设备的系统和方法,并用于自动从该接线板去除那些跳线以断开该设备。 这是在计算机控制下机器人实现的。 大规模的光纤接头可以制造大约一万(10,000)个单独的光纤接头或更多。 以前的实施例需要这些跳线的手插入。 本发明的实施例允许任何未占用的端口连接到任何其他未占用的端口,而不管其输入或输出端口状态如何,其中先前的实施例仅需要将未占用的输入端口连接到未占用的输出端口。
    • 8. 发明授权
    • Optical switch alignment mechanism
    • 光开关对准机构
    • US07406246B2
    • 2008-07-29
    • US11120332
    • 2005-05-03
    • John Carberry
    • John Carberry
    • G02B6/35G02B5/08
    • G02B6/3514G02B6/351G02B6/3564
    • An apparatus for aligning an optical element of an optical actuator. The optical actuator moves a guide between a retracted and an extended position relative to an actuator body. The actuator body has a channel, or through-opening, in which the mirror guide moves. In one embodiment, the channel has a two flat surfaces that form a portion of a v-groove in the channel. In the extended position, the guide contacts a stop pin, or stopper, and the two flat surfaces in the through-opening, thereby holding the guide in a position defined by the line of contact between the stop pin and an angled surface of the guide and a pair of parallel contact lines where the guide contacts the two flat surfaces in the through-opening.
    • 一种用于对准光致动器的光学元件的装置。 光学执行器相对于致动器主体在缩回位置和延伸位置之间移动引导件。 致动器主体具有通道或通孔,反射镜引导件移动到该通道中。 在一个实施例中,通道具有形成通道中的V形槽的一部分的两个平坦表面。 在延伸位置,引导件接触止动销或止动器以及通孔中的两个平坦表面,从而将引导件保持在止动销和导向件的倾斜表面之间的接触线限定的位置 以及一对平行的接触线,其中引导件与通孔中的两个平坦表面接触。