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    • 2. 发明申请
    • OPTICAL SWITCH
    • 光开关
    • US20130287336A1
    • 2013-10-31
    • US13456767
    • 2012-04-26
    • Shih-Yuan WangMichael Renne Ty TanWayne Victor SorinMichael SchlanskerSagi Varghese Mathai
    • Shih-Yuan WangMichael Renne Ty TanWayne Victor SorinMichael SchlanskerSagi Varghese Mathai
    • G02B6/26
    • G02B6/3538G02B6/3524
    • An apparatus comprises a given multimode optical waveguide extending in a given direction. The apparatus also comprises another multimode optical waveguide extending in another direction and intersecting with the given multimode waveguide. The apparatus further comprises a bi-stable optical switch positioned at the intersection of the given multimode optical waveguide and the another multimode optical waveguide to redirect a multimode optical signal transmitted on the given multimode optical waveguide to the another optical waveguide in a redirection state and pass the multimode optical signal transmitted on the given multimode optical waveguide across the intersection of the given multimode optical waveguide and the another optical waveguide in a pass-through state. The bi-stable optical switch can comprise a gap extending diagonally from a given corner of the intersection of the given and the another optical multimode waveguides to an opposing corner of the intersection.
    • 一种装置包括沿给定方向延伸的给定多模光波导。 该装置还包括在另一个方向上延伸并且与给定的多模波导相交的另一个多模光波导。 该装置还包括位于给定多模光波导和另一多模光波导的交叉点处的双稳态光开关,以将在给定多模光波导上传输的多模光信号重定向到重定向状态的另一光波导并通过 在给定的多模光波导上通过给定的多模光波导与另一光波导在交叉状态的交点处发送的多模光信号。 双稳态光开关可以包括从给定的和另一个光学多模波导的交叉点的给定角向对角延伸到相交角的相对拐角处的间隙。
    • 6. 发明授权
    • Beamsplitters with offset compensation
    • 分波器补偿补偿
    • US08174769B2
    • 2012-05-08
    • US12922095
    • 2008-04-04
    • Huei Pei KuoShih-Yuan WangMichael Renne Ty TanSagi Mathai
    • Huei Pei KuoShih-Yuan WangMichael Renne Ty TanSagi Mathai
    • G02B27/14G02B27/12
    • G02B27/145G02B27/0025G02B27/1073G02B27/142G02B27/144
    • Embodiments of the present invention are directed to beamsplitters that include optical elements to correct for beam offset. In one embodiment, a beamsplitter includes a first plate having two approximately parallel and opposing planar surfaces and a partially reflective layer coating one of the planar surfaces, and a compensator plate having two approximately parallel and opposing planar surfaces. The compensator plate is positioned so that an incident beam of light passing through the compensator plate acquires a first beam offset. Subsequently, the incident beam of light with the first beam offset passing through the first plate is split into a reflected beam and a transmitted beam by the partially reflective layer where the transmitted beam has a second beam offset that substantially cancels the first beam offset such that the transmitted beam is approximately parallel to and aligned with the incident beam.
    • 本发明的实施例涉及分光器,其包括用于校正光束偏移的光学元件。 在一个实施例中,分束器包括具有两个近似平行和相对的平坦表面的第一板和涂覆其中一个平坦表面的部分反射层,以及具有两个大致平行和相对的平面的补偿板。 补偿板被定位成使得通过补偿板的入射光束获得第一光束偏移。 随后,具有穿过第一板的第一光束偏移的入射光束被部分反射层分成反射光束和透射光束,其中透射光束具有基本上抵消第一光束偏移的第二光束偏移,使得 透射光束近似平行于入射光束并对准入射光束。
    • 8. 发明授权
    • Optical interconnect system providing communication between computer system components
    • 光学互连系统提供计算机系统组件之间的通信
    • US07925168B2
    • 2011-04-12
    • US11873325
    • 2007-10-16
    • Michael Renne Ty TanTerrel MorrisNorman Paul JouppiShih-Yuan Wang
    • Michael Renne Ty TanTerrel MorrisNorman Paul JouppiShih-Yuan Wang
    • H04B10/00
    • H04J14/02H04B10/803
    • An optical interconnect system for communication between computer system components is described. The system includes an optical data communication path and a plurality of optical taps, each optical tap optically coupling a respective computer system component to the optical data communication path. Each optical tap splits power from an optical signal received from the data communication path or from a light source generating a data signal from its associated computer component resulting in another optical signal. Each optical tap splits light in accordance with a respective power ratio relationship between reflectivity and transmissivity. The ratio relationships of the optical taps together provide a predetermined communication reliability metric for signals traversing the optical interconnect system between computer system components.
    • 描述了用于计算机系统组件之间的通信的光学互连系统。 该系统包括光学数据通信路径和多个光学抽头,每个光学抽头将相应的计算机系统组件光学耦合到光学数据通信路径。 每个光学抽头从从数据通信路径接收的光信号或从产生来自其相关联的计算机组件的数据信号的光源分割功率,导致另一个光信号。 每个光学抽头根据反射率和透射率之间的相应的功率比关系分离光。 光学抽头的比率关系一起为计算机系统组件之间穿过光学互连系统的信号提供预定的通信可靠性度量。
    • 9. 发明申请
    • OPTICAL INTERCONNECTS
    • 光学互联
    • US20110052120A1
    • 2011-03-03
    • US12812937
    • 2008-01-30
    • Michael Renne Ty TanShih-Yuan WangPaul Kessier Rosenberg
    • Michael Renne Ty TanShih-Yuan WangPaul Kessier Rosenberg
    • G02B6/42G02B6/32
    • G02B6/43
    • Various embodiments of the present invention are directed to optical interconnects. In one embodiment of the present invention, an optical interconnect comprises a laser configured to output an optical signal and a laser-diode driver electronically coupled to the laser. The laser-diode driver induces the laser to output the optical signal in response to an electrical signal received by the laser-diode driver. The optical interconnect includes a diffractive optical element and a plurality of photodetectors. The optical interconnect is positioned to receive the optical signal and configured to split the optical signal into a plurality of optical signals, and each photodetector converts one of the plurality of optical signals into an electrical signal that is output on a separate signal line.
    • 本发明的各种实施例涉及光学互连。 在本发明的一个实施例中,光学互连包括被配置为输出光信号的激光器和电耦合到激光器的激光二极管驱动器。 激光二极管驱动器响应于由激光二极管驱动器接收到的电信号而引起激光器输出光信号。 光学互连包括衍射光学元件和多个光电检测器。 光学互连被定位成接收光信号并且被配置为将光信号分离成多个光信号,并且每个光电检测器将多个光信号中的一个转换成在单独的信号线上输出的电信号。