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    • 4. 发明授权
    • Device having multiple optical fibers
    • 具有多根光纤的装置
    • US06767136B1
    • 2004-07-27
    • US10666365
    • 2003-09-19
    • Richard C. E. DurrantMark Krowiak
    • Richard C. E. DurrantMark Krowiak
    • G02B638
    • G02B6/3885G02B6/3869
    • A device includes two optical fibers bonded to a body. The body has a mating end and a splicing end. Each of two optical fibers has a respective polished end and splicing end. The polished end of two optical fibers is situated adjacent to and flush with the mating end of the body. The length of the two optical fibers is the same, where the length is defined by the distance from the splicing end to the polished end. The length of the two optical fibers is greater than the length of the body as defined by the distance from the mating end to the splicing end of the body. The length of the two optical fibers is less than fifty millimeters. The two optical fibers are parallel to one another.
    • 一种装置包括结合到身体的两根光纤。 身体有一个匹配的末端和一个拼接的一端。 两根光纤中的每一根具有相应的抛光端和拼接端。 两根光纤的抛光端位于与本体的配合端相邻且齐平的位置。 两根光纤的长度相同,其中长度由拼接端到抛光端的距离限定。 两个光纤的长度大于从配合端到接合端的距离所限定的主体长度。 两根光纤的长度小于五十毫米。 两根光纤彼此平行。
    • 6. 发明授权
    • Optical connector ferrule designed to minimize manufacturing imperfections and mating misalignments by incorporating exact constraint principles
    • 光学连接器套圈设计用于通过引入精确的约束原理来最小化制造缺陷和交配不对准
    • US06736546B2
    • 2004-05-18
    • US10195951
    • 2002-07-16
    • Sepehr KianiRyan R. Vallance
    • Sepehr KianiRyan R. Vallance
    • G02B638
    • G02B6/3883G02B6/3885
    • A ferrule assembly, in a preferred embodiment, having a first ferrule, a second ferrule, and at least two alignment members to align the first and second ferrules during mating is provided. The first ferrule, the second ferrule and the alignment members interact at the mating interface of the first and second ferrules to provide three constraint lines. In one embodiment, the first ferrule has a body with at least one channel for receiving at least one optical fiber. The first ferrule body includes a first surface portion for retaining a first alignment member and a second surface portion for retaining a second alignment member, the first and second surface portions being V-shaped. The second ferrule has a body with at least one channel for receiving at least one optical fiber. The second ferrule body includes a first surface portion for retaining the first alignment member and a second surface portion for retaining the second alignment member, the first surface portion being V-shaped and the second surface portion being flat.
    • 提供了一种套管组件,在优选实施例中,具有第一套圈,第二套圈和至少两个对准构件,以在配合期间对准第一和第二套圈。 第一套圈,第二套圈和对准构件在第一和第二套圈的配合界面处相互作用以提供三个约束线。 在一个实施例中,第一套圈具有至少一个通道的主体,用于接收至少一个光纤。 第一套圈主体包括用于保持第一对准构件的第一表面部分和用于保持第二对准构件的第二表面部分,第一和第二表面部分是V形的。 第二套圈具有至少一个通道的主体,用于接收至少一个光纤。 第二套圈主体包括用于保持第一对准构件的第一表面部分和用于保持第二对准构件的第二表面部分,第一表面部分是V形,第二表面部分是平坦的。
    • 7. 发明授权
    • Optical fiber shutter adapter with protective door
    • 带保护门的光纤快门适配器
    • US06715930B2
    • 2004-04-06
    • US10103419
    • 2002-03-21
    • Christopher J. McBride
    • Christopher J. McBride
    • G02B638
    • G02B6/3825G02B6/3849G02B6/3893G02B6/4246G02B2006/4297
    • An optical fiber shutter adapter including a housing having a bay and a bay opening for receiving a second connector. The optical fiber shutter adapter further includes a door disposed near the bay opening and having a blocking portion for blocking laser radiation from being emitted from the bay opening when the door is in a closed position. The door is connected to the housing for movement from the closed position to an open position for allowing the second connector to be received into the bay for connection to the shutter adapter. The blocking portion of the door moves into the adapter housing when the door is moved from the closed position towards the open position.
    • 一种光纤快门适配器,其包括具有隔间的壳体和用于接收第二连接器的托架开口。 光纤快门适配器还包括门,其设置在隔间开口附近并且具有阻挡部分,用于当门处于关闭位置时阻止激光辐射从隔间开口发射。 门连接到壳体,用于从关闭位置移动到打开位置,以允许第二连接器被接收到托架中以连接到快门适配器。 当门从关闭位置向打开位置移动时,门的阻挡部分移动到适配器壳体中。
    • 8. 发明授权
    • Optical multiplexing module and method of correcting optical axis thereof
    • 光复用模块及其光轴校正方法
    • US06715929B2
    • 2004-04-06
    • US09924493
    • 2001-08-06
    • Yasuhiro WatanabeSatoru AbeHiroshi Matsuura
    • Yasuhiro WatanabeSatoru AbeHiroshi Matsuura
    • G02B638
    • G02B6/2706G02B6/2773G02B6/32G02B6/4237G02B6/4248
    • An optical multiplexing module, which is easier in adjustment of an optical axis, has an optical multiplexing element and a prism to change optical paths of input light. The module also has one or more input collimators at the input-side end thereof a single output collimator at the output-side end thereof. The optical axes of the collimators are adjustable by optical axis adjusting means. Further, according to the method of correcting the optical axes, after fabricating the collimators into the module, with an optical loss between optical parts monitored, an external force is applied in turn to a plurality of arbitrary locations around a joint portion of one optical part. This application allows a hit location showing a maximum reduction in optical loss to be found out. Radiating a laser beam onto an opposite-side location on the joint portion to the hit location leads to an easier correction of displacements of the optical axis with ease.
    • 光学多路复用模块更容易调整光轴,具有光学复用元件和棱镜,以改变输入光的光路。 该模块在其输入侧端部还具有一个或多个输入准直器,其输出侧端部具有单个输出准直器。 准直仪的光轴可通过光轴调节装置调节。此外,根据校正光轴的方法,在将准直器制造成模块之后,在被监视的光学部件之间具有光学损耗,依次施加外力 到围绕一个光学部件的接合部分的多个任意位置。 该应用程序允许发现光损失最大减少的命中位置。 将激光束辐射到接合部分上的相对侧位置到命中位置,从而容易地校正光轴的位移。
    • 10. 发明授权
    • Re-alignable packaging for multi-port fiber optical devices
    • 多端口光纤设备可重新对齐的包装
    • US06692160B2
    • 2004-02-17
    • US09964594
    • 2001-09-28
    • Yi QinCharles X.W. Qian
    • Yi QinCharles X.W. Qian
    • G02B638
    • G02B6/29361G02B6/32
    • A packaging method and apparatus that improve the yield and reliability of multi-port fiber optical devices are disclosed. The method utilizes a flexible metallic connection between a solid frame holding input and output optics (including fibers, collimators) and the main body of an optical device. Optical alignment and realignment are accomplished following the soldering and/or hermetically sealing of the entire package. A flexible connection is made with permeable material that has minimum stress memory associated with realignments and can tolerate repeated adjustment or realignment without becoming structurally unsound.
    • 公开了一种提高多端口光纤设备的产量和可靠性的封装方法和装置。 该方法利用固定框架保持输入和输出光学器件(包括光纤,准直器)和光学器件的主体之间的柔性金属连接。 在整个封装的焊接和/或气密密封之后实现光学对准和重新对准。 柔性连接通过具有与重新对准相关联的最小应力记忆的可渗透材料制成,并且可以容忍重复的调整或重新对准,而不会在结构上不健康。