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    • 65. 发明授权
    • Composite processors
    • 复合处理器
    • US08929694B2
    • 2015-01-06
    • US13978039
    • 2011-01-20
    • Raymond G BeausoleilMarco FiorentinoMoray McLarenGreg AstfalkNathan Lorenzo BinkertDavid A. Fattal
    • Raymond G BeausoleilMarco FiorentinoMoray McLarenGreg AstfalkNathan Lorenzo BinkertDavid A. Fattal
    • G02B6/12G06F15/80G06F3/00
    • G06F15/80G06E3/00G06F3/00G06F13/4063
    • In one example, a composite processor includes a circuit board, a first processor element package, and a second processor element package. The circuit board has an optical link and an electrical link. The first processor element package includes a substrate with an integrated circuit, a sub-wavelength grating optical coupler, and an electrical coupler coupled to the electrical link of the circuit board. The second processor element package includes a substrate with an integrated circuit, a sub-wavelength grating optical coupler, and an electrical coupler coupled to the electrical link of the circuit board. The sub-wavelength grating optical coupler of the first processor element package, the optical link of the circuit board, and the sub-wavelength grating optical coupler of the second processor element package collectively define an optical communications path between the substrate of the first processor element package and the substrate of the second processor element package.
    • 在一个示例中,复合处理器包括电路板,第一处理器元件封装和第二处理器元件封装。 电路板具有光连接和电连接。 第一处理器元件封装包括具有集成电路的基板,子波长光栅光耦合器和耦合到电路板的电连接器的电耦合器。 第二处理器元件封装包括具有集成电路的衬底,子波长光栅光耦合器和耦合到电路板的电连接的电耦合器。 第一处理器元件封装的子波长光栅光耦合器,电路板的光链路和第二处理器元件封装的子波长光栅光耦合器共同地限定第一处理器元件的衬底之间的光通信路径 封装和第二处理器元件封装的衬底。
    • 66. 发明授权
    • Dynamic impedance photodetector receiver circuit
    • 动态阻抗光电探测器接收电路
    • US08725005B2
    • 2014-05-13
    • US13202940
    • 2009-02-23
    • Kyung Hoae KooMarco FiorentinoDavid A. Fattal
    • Kyung Hoae KooMarco FiorentinoDavid A. Fattal
    • H04B10/06
    • H03K5/05G11C27/024H04B10/11H04B10/693H04B10/801
    • A photodetector receiver circuit for an optical communication system includes an optical photodetector which receives optical signals and converts them into an electrical current. In one illustrative embodiment, a dynamic impedance module which switches the receiver circuit between a high impedance state and a low impedance state and a buffer stage which receives the electrical current and converts the electrical current into a voltage signal compatible with a digital circuit. A method for receiving an optical signal includes, receiving the optical signal and converting it into an electrical pulse train, switching a dynamic impedance module between a high impedance state and a low impedance state, transforming the electrical pulse train into an output voltage signal using a buffer stage, and receiving the output voltage signal by a digital circuit.
    • 用于光通信系统的光电检测器接收器电路包括光接收器,其接收光信号并将其转换成电流。 在一个说明性实施例中,将接收器电路在高阻抗状态和低阻抗状态之间切换的动态阻抗模块和接收电流并将电流转换成与数字电路兼容的电压信号的缓冲级。 一种用于接收光信号的方法包括:接收光信号并将其转换成电脉冲串,在高阻抗状态和低阻状态之间切换动态阻抗模块,将电脉冲串转换成输出电压信号,使用 缓冲级,并通过数字电路接收输出电压信号。
    • 67. 发明授权
    • Fiber-optic modulators
    • 光纤调制器
    • US08724932B2
    • 2014-05-13
    • US13018301
    • 2011-01-31
    • Marco FiorentinoRaymond G. BeausolallDavid A. Fattal
    • Marco FiorentinoRaymond G. BeausolallDavid A. Fattal
    • G02B6/42G02B6/34G02F1/01
    • G02F1/0115G02F1/015G02F2201/12G02F2201/307G02F2203/15
    • This disclosure is directed to fiber-optic modulators that can be integrated in optical fibers to encode data in optical signals. In one aspect, a fiber-optic modulator includes a weak planar, sub-wavelength grating disposed between an end of a first optical fiber and an end of a second optical fiber. A first electrode is disposed on an edge of the grating and connected to an electronic signal source, and a second electrode is disposed on the edge of the grating opposite the first electrode and connected to the electronic signal source. The grating includes a grating pattern to reflect a channel input to the first optical fiber when a low or no current portion of an electronic signal to be generated by the electronic signal source is applied to the grating and to transmit the channel when a high current portion of the electronic signal is applied to the grating.
    • 本公开涉及可以集成在光纤中以对光信号中的数据进行编码的光纤调制器。 一方面,光纤调制器包括设置在第一光纤的端部和第二光纤端部之间的弱平面的亚波长光栅。 第一电极设置在光栅的边缘并连接到电子信号源,并且第二电极设置在光栅的与第一电极相对的边缘并连接到电子信号源。 当电子信号源产生的电子信号的低电流或无电流部分被施加到光栅上时,光栅包括用于反射到第一光纤的通道输入的光栅图案,并且当高电流部分 的电子信号被施加到光栅。
    • 70. 发明申请
    • FIBER-OPTIC MODULATORS
    • 光纤调制器
    • US20120195543A1
    • 2012-08-02
    • US13018301
    • 2011-01-31
    • Marco FiorentinoRaymond G. BeausolallDavid A. Fattal
    • Marco FiorentinoRaymond G. BeausolallDavid A. Fattal
    • G02F1/01
    • G02F1/0115G02F1/015G02F2201/12G02F2201/307G02F2203/15
    • This disclosure is directed to fiber-optic modulators that can be integrated in optical fibers to encode data in optical signals. In one aspect, a fiber-optic modulator includes a weak planar, sub-wavelength grating disposed between an end of a first optical fiber and an end of a second optical fiber. A first electrode is disposed on an edge of the grating and connected to an electronic signal source, and a second electrode is disposed on the edge of the grating opposite the first electrode and connected to the electronic signal source. The grating includes a grating pattern to reflect a channel input to the first optical fiber when a low or no current portion of an electronic signal to be generated by the electronic signal source is applied to the grating and to transmit the channel when a high current portion of the electronic signal is applied to the grating.
    • 本公开涉及可以集成在光纤中以对光信号中的数据进行编码的光纤调制器。 一方面,光纤调制器包括设置在第一光纤的端部和第二光纤端部之间的弱平面的亚波长光栅。 第一电极设置在光栅的边缘并连接到电子信号源,并且第二电极设置在光栅的与第一电极相对的边缘并连接到电子信号源。 当由电子信号源产生的电子信号的低电流或无电流部分被施加到光栅时,光栅包括用于反射到第一光纤的通道输入的光栅图案,并且当高电流部分 的电子信号被施加到光栅。