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    • 102. 发明申请
    • Optical Interconnect
    • 光互连
    • US20140029955A1
    • 2014-01-30
    • US14110445
    • 2011-07-18
    • Michael SchlanskerMichael Renne Ty TanShih-Yuan WangWayne. V. SorinJose Renato G. Santos
    • Michael SchlanskerMichael Renne Ty TanShih-Yuan WangWayne. V. SorinJose Renato G. Santos
    • G02B6/35H04B10/25
    • G02B6/3514G02B6/3546G02B6/357G02B6/3596H04B10/2503
    • An optical interconnect (200) includes: a reflective body (230) having a first reflective surface (235) and a second reflective surface (240) opposite the first reflective surface (235); a first optical waveguide (205) that directs a first optical signal received from a first communicating device (105) to the first reflective surface (235); a second optical waveguide (210) that directs the first optical signal from the first reflective surface (235) of the reflective body (230) to a second communicating device (110); a third optical waveguide (215) that directs a second optical signal received from the second communicating device (110) to the second reflective surface (240) of the reflective body (230); and a fourth optical waveguide (220) that directs the second optical signal from the second reflective surface (240) of the reflective body (230) to the first communicating device (105).
    • 光学互连(200)包括:具有与第一反射表面(235)相对的第一反射表面(235)和第二反射表面(240)的反射体(230); 第一光波导(205),其将从第一通信设备(105)接收的第一光信号引导到所述第一反射表面(235); 第二光波导(210),其将来自反射体(230)的第一反射表面(235)的第一光信号引导到第二连通装置(110); 将从第二连通装置(110)接收的第二光信号引导到反射体(230)的第二反射表面(240)的第三光波导(215); 以及将来自反射体(230)的第二反射面(240)的第二光信号引导到第一通信装置(105)的第四光波导(220)。
    • 107. 发明申请
    • OPTICAL STAR COUPLER
    • 光星联轴器
    • US20130003185A1
    • 2013-01-03
    • US13387010
    • 2010-03-19
    • David A. FattalMichael Renne Ty TanMarco FiorentinoHuei Pei KuoWayne V. Sorin
    • David A. FattalMichael Renne Ty TanMarco FiorentinoHuei Pei KuoWayne V. Sorin
    • G02B27/14
    • G02B23/08G02B6/2804G02B6/29367
    • An optical device (15; 25; 315; 325; 345; 400; 500; 600; 700; 800) may include a light transmissive medium (450; 550; 650; 750; 850) having two sides. On one side may be a high reflectivity mirror (430; 530; 630; 830) and on the other side may be a plurality of partial reflectivity mirrors (460-466; 560-566; 662-666; 860-870) that may be guided mode resonance or nanodot mirrors. An optical system (25; 315; 325; 345; 500; 600; 700; 800) may have a plurality of light inputs (FIG. 2A; FIG. 5A), a light transmissive medium (550; 650; 750; 850), and a plurality of light outputs (FIGS. 2A-2B; FIG. 5B) from the light transmissive medium (550; 650; 750; 850). The light transmissive medium (550; 650; 750; 850) may have a high reflectivity mirror (530; 630; 830) on one side and a plurality of partial reflectivity mirrors (560-566; 662-666; 860-870) on a second side.
    • 光学装置(15; 25; 315; 325; 345; 400; 500; 600; 700; 800)可以包括具有两侧的透光介质(450; 550; 650; 750; 850)。 在一侧可以是高反射镜(430; 530; 630; 830),另一侧可以是多个部分反射镜(460-466; 560-566; 662-666; 860-870),其可以 引导模式共振或纳米点反射镜。 光学系统(25; 315; 325; 345; 500; 600; 700; 800)可以具有多个光输入(图2A;图5A),透光介质(550; 650; 750; 850) ,以及来自透光介质(550; 650; 750; 850)的多个光输出(图2A-2B;图5B)。 透光介质(550; 650; 750; 850)可以在一侧具有高反射率反射镜(530; 630; 830),并且多个部分反射镜(560-566; 662-666; 860-870) 第二面。