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    • 5. 发明申请
    • IN-PLANE OPTICAL WAVE GUIDE WITH AREA BASED SPLITTER
    • 带有基于区域分割器的平面光波导
    • WO2010030295A1
    • 2010-03-18
    • PCT/US2008/076440
    • 2008-09-15
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.MEYER, NealBICKNELL, Robert NewtonKORNILOVICH, Pavel
    • MEYER, NealBICKNELL, Robert NewtonKORNILOVICH, Pavel
    • G02B6/26
    • G02B6/125
    • An optical interconnect includes a set of splitters. Each splitter includes a source waveguide, a reflection waveguide, an output waveguide, and a partially reflective mirror element with a reflective coating. The source waveguide and the reflection waveguide are optically coupled to the partially reflective element. A photonic signal from the source waveguide is partially reflected off the reflective coating as a reflected signal into the reflection waveguide. The output waveguide is optically coupled to the opposite surface and configured such that a non-reflected portion of the photonic signal propagates into the output waveguide. The reflective coating includes a reflected surface area interfacing with the photonic signal form the source waveguide, and power of the non-reflected portion is a function of the reflective surface area interfacing with source waveguide.
    • 光学互连包括一组分离器。 每个分离器包括源极波导,反射波导,输出波导和具有反射涂层的部分反射镜元件。 源极波导和反射波导光耦合到部分反射元件。 来自源波导的光子信号被部分地从作为反射信号的反射涂层反射到反射波导中。 输出波导光学耦合到相对表面并且被配置为使得光子信号的未反射部分传播到输出波导中。 反射涂层包括与形成源极波导的光子信号相连接的反射表面区域,而非反射部分的功率是与源波导接口的反射表面积的函数。
    • 6. 发明申请
    • OPTICAL INTERCONNECT
    • 光学互联
    • WO2009017771A3
    • 2009-04-09
    • PCT/US2008009226
    • 2008-07-30
    • HEWLETT PACKARD DEVELOPMENT COFATTAL DAVIDBICKNELL ROBERTSANTORI CHARLESWU WEI
    • FATTAL DAVIDBICKNELL ROBERTSANTORI CHARLESWU WEI
    • G02B6/36G02B6/38
    • H04B10/803
    • An optical interconnect (100, 200, 300, 400, 445) includes a first circuit board (140, 260, 350, 405) having an optical source (110, 210, 240, 305, 440) and an optical receiver (125, 220, 235, 315, 441); and a second circuit board (145, 265, 355, 410) having data source (105, 205, 250) and an optical modulator (225, 230, 310, 425, 430, 435) optically coupled with the optical source (110, 210, 240, 305, 440) and optical receiver (125, 220, 235, 315, 441), wherein the optical modulator (225, 230, 310, 425, 430, 435) is configured to encode data from the data source (105, 205, 250) into an optical signal from the optical source (110, 210, 240, 305, 440). The optical receiver (125, 220, 235, 315, 441) is configured to receive the optical signal from the optical modulator (225, 230, 310, 425, 430, 435). A method of optical communication includes generating on a first circuit board (140, 260, 350, 405) an optical signal directed at a second circuit board (145, 265, 355, 410); modulating the optical signal with data at the second circuit board (145, 265, 355, 410); reflecting the optical signal to the first circuit board (140, 260, 350, 405); and demodulating the optical signal to receive the data at the first circuit board (140, 260, 350, 405).
    • 光学互连(100,200,300,400,450)包括具有光源(110,210,240,305,440)和光接收器(125,240,350,440)的第一电路板(140,260,350,405) 220,235,315,441); 以及具有数据源(105,205,250)的第二电路板(145,265,355,410)以及与所述光源(110,104)接合的光学调制器(225,230,310,425,430,435) 210,240,305,440)和光接收器(125,220,235,315,441),其中所述光调制器(225,230,310,425,430,435)被配置为从所述数据源( 105,205,250)转换成来自光源(110,210,240,305,440)的光信号。 光接收器(125,220,235,315,441)被配置为从光调制器(225,230,310,425,430,435)接收光信号。 一种光通信方法包括在第一电路板(140,260,350,405)上生成指向第二电路板(145,265,355,410)的光信号; 用第二电路板(145,265,355,410)的数据调制光信号; 将光信号反射到第一电路板(140,260,350,405); 以及解调所述光信号以在所述第一电路板(140,260,350,405)处接收所述数据。
    • 7. 发明申请
    • OPTICAL INTERCONNECT
    • 光学互连
    • WO2009017771A2
    • 2009-02-05
    • PCT/US2008/009226
    • 2008-07-30
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L. P.FATTAL, DavidBICKNELL, RobertSANTORI, CharlesWU, Wei
    • FATTAL, DavidBICKNELL, RobertSANTORI, CharlesWU, Wei
    • G02B6/36G02B6/38
    • H04B10/803
    • An optical interconnect (100, 200, 300, 400, 445) includes a first circuit board (140, 260, 350, 405) having an optical source (110, 210, 240, 305, 440) and an optical receiver (125, 220, 235, 315, 441); and a second circuit board (145, 265, 355, 410) having data source (105, 205, 250) and an optical modulator (225, 230, 310, 425, 430, 435) optically coupled with the optical source (110, 210, 240, 305, 440) and optical receiver (125, 220, 235, 315, 441), wherein the optical modulator (225, 230, 310, 425, 430, 435) is configured to encode data from the data source (105, 205, 250) into an optical signal from the optical source (110, 210, 240, 305, 440). The optical receiver (125, 220, 235, 315, 441) is configured to receive the optical signal from the optical modulator (225, 230, 310, 425, 430, 435). A method of optical communication includes generating on a first circuit board (140, 260, 350, 405) an optical signal directed at a second circuit board (145, 265, 355, 410); modulating the optical signal with data at the second circuit board (145, 265, 355, 410); reflecting the optical signal to the first circuit board (140, 260, 350, 405); and demodulating the optical signal to receive the data at the first circuit board (140, 260, 350, 405).
    • 一种光学互连(100,200,300,400,445)包括具有光源(110,210,240,305,440)的第一电路板(140,260,350,405) )和光接收器(125,220,235,315,441); 以及具有数据源(105,205,250)和光学耦合于所述光源(110,115)的光调制器(225,230,310,425,430,435)的第二电路板(145,265,355,410) ,其中所述光调制器(225,230,310,425,430,435)被配置为对来自所述数据源的数据进行编码( 105,205,250)转换成来自光源(110,210,240,305,440)的光信号。 光接收器(125,220,235,315,441)被配置为从光调制器(225,230,310,425,430,435)接收光信号。 一种光通信的方法包括在第一电路板(140,260,350,405)上产生指向第二电路板(145,265,355,410)的光信号; 用第二电路板(145,265,355,410)处的数据调制光信号; 将光信号反射到第一电路板(140,260,350,405); 以及解调光信号以在第一电路板(140,260,350,405)处接收数据。