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    • 1. 发明申请
    • Optical interconnect
    • 光互连
    • US20090034985A1
    • 2009-02-05
    • US11881943
    • 2007-07-30
    • David A. FattalRobert N. BicknellCharles SantoriWei Wu
    • David A. FattalRobert N. BicknellCharles SantoriWei Wu
    • H04B10/00
    • H04B10/803
    • An optical interconnect includes a first circuit board having an optical source and an optical receiver; and a second circuit board having data source and an optical modulator optically coupled with the optical source and optical receiver, wherein the optical modulator is configured to encode data from the data source into an optical signal from the optical source. The optical receiver is configured to receive the optical signal from the optical modulator. A method of optical communication includes generating on a first circuit board an optical signal directed at a second circuit board; modulating the optical signal with data at the second circuit board; reflecting the optical signal to the first circuit board; and demodulating the optical signal to receive the data at the first circuit board.
    • 光学互连包括具有光源和光接收器的第一电路板; 以及第二电路板,其具有数据源和与所述光源和光接收器光学耦合的光学调制器,其中所述光学调制器被配置为将来自所述数据源的数据编码为来自所述光源的光信号。 光接收器被配置为从光调制器接收光信号。 一种光通信方法包括在第一电路板上产生指向第二电路板的光信号; 用第二电路板上的数据调制光信号; 将光信号反射到第一电路板; 以及解调所述光信号以在所述第一电路板处接收所述数据。
    • 4. 发明授权
    • Free space WDM signal detector
    • 自由空间WDM信号检测器
    • US07929865B2
    • 2011-04-19
    • US11881557
    • 2007-07-27
    • Raymond G. BeausoleilWei WuDavid A. FattalMarco Fiorentino
    • Raymond G. BeausoleilWei WuDavid A. FattalMarco Fiorentino
    • H04B10/00
    • H04B10/1121
    • A system can include a transmitter that produces an optical signal having a plurality of carrier frequencies and a receiver separated from the transmitter by free space through which the optical signal propagates. The receiver includes an array of detectors of multiple types, with the types being capable of detecting light respectively having the carrier frequencies. A location of an incident area where the optical signal is incident on the detector array generally depends on a misalignment of the receiver relative to the transmitter, but the detectors in the detector array are arranged so that at least one detector of each of the types detects light from the optical signal regardless of where the incident area is on the detector array.
    • 系统可以包括产生具有多个载波频率的光信号的发射机,以及通过光信号传播的自由空间与发射机分离的接收机。 接收机包括多种类型的检测器阵列,其类型能够检测分别具有载波频率的光。 光信号入射在检测器阵列上的入射区域的位置通常取决于接收器相对于发射器的未对准,但检测器阵列中的检测器被布置成使得每种类型的至少一个检测器检测 来自光信号的光,而不管入射面积在检测器阵列上的哪里。
    • 7. 发明申请
    • ANGLE SENSOR, SYSTEM AND METHOD EMPLOYING GUIDED-MODE RESONANCE
    • 角度传感器,系统和方法使用指导型共振
    • US20100309459A1
    • 2010-12-09
    • US12864234
    • 2008-03-04
    • David A. FattalAnna PyaytRaymond G. BeausoleilWei Wu
    • David A. FattalAnna PyaytRaymond G. BeausoleilWei Wu
    • G01B11/26
    • G01B11/26G01D5/38
    • An angle sensor, system and method employ a guided-mode resonance. The angle sensor includes a guided-mode resonance (GMR) grating and a resonance processor. The resonance processor determines an angle of incidence of a signal incident on the GMR grating. The resonance processor uses a guided-mode resonance response of the GMR grating to the signal to determine the angle of incidence. The angle sensing system includes the GMR grating, the resonance processor and further includes an optical source that produces the signal. The method includes providing a GMR grating, detecting a guided-mode resonance produced in the GMR grating when subjected to an incident signal, and determining an angle of incidence of the incident signal from one or both of a number of and a spectral distance between guided-mode resonances present in a response of the GMR grating to the incident signal.
    • 角度传感器,系统和方法采用导模共振。 角度传感器包括导模谐振(GMR)光栅和谐振处理器。 谐振处理器确定入射在GMR光栅上的信号的入射角。 谐振处理器使用GMR光栅的导模谐振响应信号来确定入射角。 角度感测系统包括GMR光栅,谐振处理器,还包括产生该信号的光源。 该方法包括:提供GMR光栅,检测在受到入射信号时在GMR光栅中产生的导模共振,以及确定入射信号之间的数量和频谱距离之间的一个或两个的入射角 在GMR光栅对入射信号的响应中存在共模谐振。
    • 8. 发明授权
    • Angle sensor, system and method employing guided-mode resonance
    • 采用导模共振的角度传感器,系统和方法
    • US08390800B2
    • 2013-03-05
    • US12864234
    • 2008-03-04
    • David A. FattalAnna PyaytRaymond G. BeausoleilWei Wu
    • David A. FattalAnna PyaytRaymond G. BeausoleilWei Wu
    • G01B11/26G01C1/00G01J3/28
    • G01B11/26G01D5/38
    • An angle sensor, system and method employ a guided-mode resonance. The angle sensor includes a guided-mode resonance (GMR) grating and a resonance processor. The resonance processor determines an angle of incidence of a signal incident on the GMR grating. The resonance processor uses a guided-mode resonance response of the GMR grating to the signal to determine the angle of incidence. The angle sensing system includes the GMR grating, the resonance processor and further includes an optical source that produces the signal. The method includes providing a GMR grating, detecting a guided-mode resonance produced in the GMR grating when subjected to an incident signal, and determining an angle of incidence of the incident signal from one or both of a number of and a spectral distance between guided-mode resonances present in a response of the GMR grating to the incident signal.
    • 角度传感器,系统和方法采用导模共振。 角度传感器包括导模谐振(GMR)光栅和谐振处理器。 谐振处理器确定入射在GMR光栅上的信号的入射角。 谐振处理器使用GMR光栅的导模谐振响应信号来确定入射角。 角度感测系统包括GMR光栅,谐振处理器,还包括产生该信号的光源。 该方法包括:提供GMR光栅,检测在受到入射信号时在GMR光栅中产生的导模共振,以及确定入射信号之间的数量和频谱距离之间的一个或两个的入射角 在GMR光栅对入射信号的响应中存在共模谐振。