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    • 3. 发明授权
    • Quad small form factor pluggable (QSFP) adapter module
    • 四芯小型可插拔(QSFP)适配器模块
    • US08406587B2
    • 2013-03-26
    • US12774919
    • 2010-05-06
    • Ronald L. MuddBradley S. BillmanRichard L. CasePaul F. Kolesar
    • Ronald L. MuddBradley S. BillmanRichard L. CasePaul F. Kolesar
    • G02B6/26G02B6/00
    • H05K7/1459G02B6/3608G02B6/4246
    • Fiber adapter modules for use as interfaces at both ends of multi-fiber trunk cables position the channels of plural fiber optic transceivers onto fibers of the trunk cables in an efficient manner, such that normally dark fibers of a trunk cables are utilized. The fiber adapter modules include trunk-side ports for receiving adapters of multi-fiber trunk cables and transceiver-side ports for receiving adapters carrying both transmit channels and receive channels of fiber optic transceivers. Optical interconnections are provided within the fiber adapter modules to place at least one transmit channel or at least one receive channel of a first fiber optic transceiver at a first trunk-side port and to place at least one transmit channel or at least one receive channel of a second fiber optic transceiver at the first trunk-side port.
    • 用作多纤维中继电缆两端的接口的光纤适配器模块将多个光纤收发器的通道以有效的方式定位在中继电缆的光纤上,使得通常使用中继电缆的暗光纤。 光纤适配器模块包括用于接收多光纤中继电缆的适配器和收发器端口的中继侧端口,用于接收携带发送信道和接收光纤收发信道的适配器。 在光纤适配器模块内提供光学互连,以将第一光纤收发器的至少一个发射信道或至少一个接收信道放置在第一中继端口处,并且将至少一个发射信道或至少一个接收信道 第一个中继端口的第二个光纤收发器。
    • 4. 发明申请
    • QUAD SMALL FORM FACTOR PLUGGABLE (QSFP) ADAPTER MODULE
    • QUAD SMALL FORM FACTOR PLUGGABLE(QSFP)ADAPTER MODULE
    • US20110274400A1
    • 2011-11-10
    • US12774919
    • 2010-05-06
    • Ronald L. MuddBradley S. BillmanRichard L. CasePaul F. Kolesar
    • Ronald L. MuddBradley S. BillmanRichard L. CasePaul F. Kolesar
    • G02B6/00
    • H05K7/1459G02B6/3608G02B6/4246
    • Fiber adapter modules for use as interfaces at both ends of multi-fiber trunk cables position the channels of plural fiber optic transceivers onto fibers of the trunk cables in an efficient manner, such that normally dark fibers of a trunk cables are utilized. The fiber adapter modules include trunk-side ports for receiving adapters of multi-fiber trunk cables and transceiver-side ports for receiving adapters carrying both transmit channels and receive channels of fiber optic transceivers. Optical interconnections are provided within the fiber adapter modules to place at least one transmit channel or at least one receive channel of a first fiber optic transceiver at a first trunk-side port and to place at least one transmit channel or at least one receive channel of a second fiber optic transceiver at the first trunk-side port.
    • 用作多纤维中继电缆两端的接口的光纤适配器模块将多个光纤收发器的通道以有效的方式定位在中继电缆的光纤上,使得通常使用中继电缆的暗光纤。 光纤适配器模块包括用于接收多光纤中继电缆的适配器和收发器端口的中继侧端口,用于接收携带发送信道和接收光纤收发信道的适配器。 在光纤适配器模块内提供光学互连,以将第一光纤收发器的至少一个发射信道或至少一个接收信道放置在第一中继端口处,并且将至少一个发射信道或至少一个接收信道 第一个中继端口的第二个光纤收发器。
    • 6. 发明授权
    • Mechanical splice connector with sequential splice and strain relief
    • 机械接头连接器,具有顺序接头和应力消除
    • US07658553B2
    • 2010-02-09
    • US11374682
    • 2006-03-14
    • Scott E. SemmlerBrandon A. BarnesKevin C. BeachBradley S. BillmanDonald G. DossDavid W. Meek
    • Scott E. SemmlerBrandon A. BarnesKevin C. BeachBradley S. BillmanDonald G. DossDavid W. Meek
    • G02B6/255G02B6/36G02B6/00
    • G02B6/3846G02B6/3801G02B6/3887
    • A mechanical splice connector is shown and described for sequentially performing a splice actuation followed by a strain relief actuation by rotating a single, multiple-position cam member or multiple cam members from an unactuated position to a first actuated position and a second actuated position. The mechanical splice connector aligns and retains at least one stub optical fiber and the bare glass portion of at least one adjoining field optical fiber, as well as strain relieving a coated portion of the field optical fiber, or alternatively, a buffered portion of the field optical fiber. A method is also described for sequentially performing a splice actuation followed by a strain relief actuation, wherein the splice actuation is reversible prior to performing the strain relief actuation in the event that the optical continuity of the splice coupling is unacceptable, thereby avoiding potential damage to the field optical fiber or the connector.
    • 示出并描述了机械接头连接器,用于通过将单个多位置凸轮构件或多个凸轮构件从未致动位置旋转到第一致动位置和第二致动位置来依次执行接头致动,随后进行应变消除致动。 机械接头连接器将至少一个短截线光纤和至少一个相邻场光纤的裸露玻璃部分对准并保持,并且使应变消除现场光纤的涂覆部分,或者替代地,场的缓冲部分 光纤。 还描述了一种方法,用于顺序地执行接头致动随后进行应变消除致动,其中在接头连接的光学连续性不可接受的情况下,在执行应变释放致动之前,接头致动是可逆的,从而避免对 现场光纤或连接器。
    • 7. 发明授权
    • Field installable optical fiber connector
    • 现场安装光纤连接器
    • US07270487B2
    • 2007-09-18
    • US10836761
    • 2004-04-30
    • Bradley S. BillmanScott E. Semmler
    • Bradley S. BillmanScott E. Semmler
    • G02B6/36
    • G02B6/3846G02B6/3821
    • A field installable optical fiber connector is provided, the connector including an inner housing defining an interior passageway extending longitudinally between a forward end and a rearward end, a first connector subassembly inserted through the rearward end of the inner housing into the interior passageway thereof. In one embodiment, the first connector subassembly includes a ferrule holder having a ferrule disposed within the ferrule holder, and an optical fiber stub disposed within the ferrule. In another embodiment, the first connector subassembly also includes a flange disposed at a first end of the ferrule holder, a spring element and a spring element retainer slidably mounted on the ferrule holder, and a collar mounted on a second end of the ferrule holder so as to capture the spring and the spring element retainer between the flange and the collar.
    • 提供现场可安装的光纤连接器,该连接器包括限定在前端和后端之间纵向延伸的内部通道的内壳体,通过内壳体的后端插入其内部通道中的第一连接器子组件。 在一个实施例中,第一连接器子组件包括套圈保持器,其具有设置在套圈保持器内的套圈和设置在套圈内的光纤短截线。 在另一个实施例中,第一连接器子组件还包括设置在套圈保持器的第一端处的凸缘,可弹性地安装在套圈保持器上的弹簧元件和弹簧元件保持器以及安装在套圈保持器的第二端上的套环 以捕获弹簧和弹簧元件保持器在法兰和轴环之间。
    • 9. 发明授权
    • Apparatus and methods for verifying an acceptable splice termination
    • 用于验证可接受的接头终端的装置和方法
    • US08094988B2
    • 2012-01-10
    • US11304313
    • 2005-12-15
    • Bradley S. BillmanDavid W. MeekJoshua D. RakerScott E. Semmler
    • Bradley S. BillmanDavid W. MeekJoshua D. RakerScott E. Semmler
    • G02B6/00G02B6/255
    • G02B6/3802G02B6/3806G02B6/3846
    • Apparatus and methods for verifying an acceptable splice termination include propagating light energy into the stub optical fiber of a fiber optic connector, detecting and collecting the amount of optical power emanating from the stub optical fiber at a termination area of the connector, converting the optical power to an electrical signal proportional to the amount of collected optical power, and displaying the electrical signal on a feedback monitor, such as an optical power meter, an LCD bar graph, or an LED. An initial (i.e., reference) value is obtained with the field optical fiber not in physical contact with the stub optical fiber. A final (i.e., terminated) value is obtained with the field optical fiber in physical contact with the stub optical fiber and terminated to the connector. The final value is compared to the initial value to determine whether the change (i.e., difference) is sufficient. Alternatively, the final value is compared to a predetermined limit or threshold.
    • 用于验证可接受的接头终端的装置和方法包括将光能传播到光纤连接器的短截线光纤中,检测和收集在连接器的终端区域处从短截线光纤发出的光功率的量,将光功率 到与所收集的光功率成比例的电信号,以及在诸如光功率计,LCD条形图或LED的反馈监视器上显示电信号。 使用场光纤不与短截线光纤物理接触来获得初始(即参考)值。 当场光纤与短截线光纤物理接触并终止于连接器时,获得最终(即终止)值。 将最终值与初始值进行比较,以确定变化(即差异)是否足够。 或者,将最终值与预定的极限或阈值进行比较。