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    • 4. 发明申请
    • OPTICAL CONNECTOR
    • 光学连接器
    • WO2014055226A1
    • 2014-04-10
    • PCT/US2013/059861
    • 2013-09-16
    • 3M INNOVATIVE PROPERTIES COMPANYHAASE, Michael A.SMITH, Terry L.KOCH, Barry J.WANG, DingMATHEWS, Alexander R.
    • HAASE, Michael A.SMITH, Terry L.KOCH, Barry J.WANG, DingMATHEWS, Alexander R.
    • G02B6/38
    • G02B6/383G02B6/3829G02B6/3861G02B6/3869G02B6/3881G02B6/3885G02B6/389G02B6/3897G02B6/40
    • Optical connectors are provided for connecting sets of optical wavcguides (104), such as optical fiber ribbons to each other, to printed circuit boards, or to backplanes. The provided connectors (100) include a housing (110) that has an attachment area (102) for receiving and permanently attaching a plurality of optical waveguides. Additionally, the provided connectors include a light coupling unit (120) disposed in and configured to move with the housing. The provided connectors also include a second attachment area (108) for receiving and permanently attaching to the plurality of optical waveguides that causes each optical waveguide to be bent between the two attachment areas. The provided connectors utilize expanded beam optics with non-contact optical mating resulting in relaxed mechanical precision requirements. The provided connectors can have low optical loss, are easily scalable to high channel count (optical fibers per connector) and can be compatible with low insertion force blind mating.
    • 提供光连接器用于将诸如光纤带彼此的光波导(104)组合到印刷电路板或背板。 所提供的连接器(100)包括具有用于接收和永久地附接多个光波导的附接区域(102)的壳体(110)。 另外,所提供的连接器包括布置在壳体中并配置成与壳体一起移动的光耦合单元(120)。 所提供的连接器还包括第二连接区域(108),用于接收和永久地附接到多个光波导,其使得每个光波导在两个附接区域之间弯曲。 所提供的连接器利用具有非接触光学匹配的扩展光束光学器件,导致放松的机械精度要求。 所提供的连接器可以具有低光损耗,易于扩展到高通道数(每个连接器的光纤),并且可以与低插入力盲配合兼容。
    • 6. 发明申请
    • OPTICAL COUPLER
    • 光耦合器
    • WO2015038932A1
    • 2015-03-19
    • PCT/US2014/055450
    • 2014-09-12
    • 3M INNOVATIVE PROPERTIES COMPANY
    • SMITH, Terry L.KOCH, Barry J.WANG, Ding
    • G02B6/26G02B6/36
    • G02B6/3801G02B6/262G02B6/3604G02B27/0025
    • An optical assembly includes first (102) and second (103) housings configured to move relative to each other. The first housing includes an attachment area (124) configured to permanently attach an optical waveguide (122) and having a facet (634) that optically couples the optical waveguide to the first housing. The first housing further includes an first input/output surface (112) at a non-zero angle to the facet and a light redirecting member (638) optically coupled to change a direction and divergence of light between the facet and the first input/output surface. The second housing includes a second input/output surface (113) facing and optically coupled to the first input/output surface. The first and second input/output surfaces maintain an alignment along a light propagation direction therebetween through a range of motion between the first and second housings. The second housing includes a transmission path configured to convey signals optically received or transmitted via the second input/ output surface.
    • 光学组件包括被配置为相对于彼此移动的第一(102)和第二(103)壳体。 第一壳体包括被配置为永久地附接光波导(122)并且具有将光波导光耦合到第一壳体的小面(634)的附接区域(124)。 第一壳体还包括与小面成非零角度的第一输入/输出表面(112)和光学耦合的光重定向构件(638),以改变小面与第一输入/输出之间的光的方向和发散 表面。 第二壳体包括面对并光耦合到第一输入/输出表面的第二输入/输出表面(113)。 第一和第二输入/输出表面通过第一和第二壳体之间的运动范围沿其光传播方向保持对准。 第二壳体包括被配置为传送经由第二输入/输出表面光学接收或发送的信号的传输路径。
    • 7. 发明申请
    • OPTICAL SENSING DEVICES AND METHODS
    • 光传感器件及方法
    • WO2008070438A1
    • 2008-06-12
    • PCT/US2007/085105
    • 2007-11-19
    • 3M INNOVATIVE PROPERTIES COMPANY
    • SMITH, Terry L.KOCH, Barry J.YI, Yasha
    • G01N21/27G01N21/17
    • G01N21/7746
    • An optical sensing system and method of using it includes a light source and a first bus waveguide having an input port that is in optical communication with the light source. The system further includes a microresonator configured so that the light source excites at least first and second resonant guided optical modes of the microresonator. The microresonator includes a first location on a surface of a core of the microresonator where a field intensity of the first mode is greater than a field intensity of the second mode. The microresonator core has a first cladding at the first location. The microresonator also has a second location on a surface of the core of the microresonator where a field intensity of the first mode is less than or equal to a field intensity of the second mode, the microresonator core having a second cladding at the second location. The first cladding is different than the second cladding.
    • 光学传感系统及其使用方法包括光源和具有与光源光学通信的输入端口的第一总线波导。 该系统还包括微谐振器,其被配置为使得光源至少激发微谐振器的第一和第二谐振引导光学模式。 微谐振器包括在微谐振器的芯的表面上的第一位置,其中第一模式的场强大于第二模式的场强度。 微谐振器芯在第一位置具有第一包层。 微谐振器还在微谐振器的芯的表面上具有第二位置,其中第一模式的场强小于或等于第二模式的场强度,微谐振器芯在第二位置具有第二覆层。 第一包层与第二包层不同。