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    • 92. 发明授权
    • USB charger circuit
    • USB充电器电路
    • US08072186B2
    • 2011-12-06
    • US12058728
    • 2008-03-30
    • Shih-Yuan WangYung-Hsin ChiangYu-Ming Hsu
    • Shih-Yuan WangYung-Hsin ChiangYu-Ming Hsu
    • H02J7/04
    • H02M3/155H02J7/0052H02J2007/0059
    • A USB charger circuit includes at least a converter, a control circuitry, a first resistor, a second resistor, an error amplifier, a sense resistor and a diode. The converter has a transistor. The control circuitry is coupled to the transistor. The control circuitry is used for producing a drive signal to the transistor. The first resistor is connected between the output node of the converter and a first node. The second resistor is connected between the first node and a second node. The error amplifier is coupled to receive a voltage divided by the first resistor and the second resistor to compare to a reference voltage. The sense resistor is connected between the second node and ground. The diode is connected between the output node of the converter and a first node.
    • USB充电器电路至少包括转换器,控制电路,第一电阻器,第二电阻器,误差放大器,检测电阻器和二极管。 该转换器有一个晶体管。 控制电路耦合到晶体管。 控制电路用于产生到晶体管的驱动信号。 第一个电阻连接在转换器的输出节点和第一个节点之间。 第二电阻器连接在第一节点和第二节点之间。 误差放大器被耦合以接收由第一电阻器和第二电阻器分压的电压以与参考电压进行比较。 感测电阻连接在第二节点和地之间。 二极管连接在转换器的输出节点和第一个节点之间。
    • 97. 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。
    • 98. 发明申请
    • ARRAYS, SYSTEM AND METHOD FOR BI-DIRECTIONAL DATA TRANSMISSION
    • 用于双向数据传输的阵列,系统和方法
    • US20110058817A1
    • 2011-03-10
    • US12991107
    • 2008-05-07
    • Huei Pei KuoRobert G. WalmsleyShih-Yuan Wang
    • Huei Pei KuoRobert G. WalmsleyShih-Yuan Wang
    • H04B10/00
    • H04B10/803
    • A system for bi-directional data transmission includes a first array coupled to a first subsystem and a second array coupled to a second subsystem. The first array includes a first plurality of transmitters that produce first optical signals that are transmitted through free space, and a first plurality of receivers. The second array includes a second plurality of transmitters that produce second optical signals that are transmitted through free space to the first plurality of receivers, and a second plurality of receivers that is configured to receive the first optical signals. An image-forming apparatus is operatively positioned between the first and second arrays and is configured to concurrently form an image of the first plurality of transmitters on the second plurality of receivers and an image of the second plurality of transmitters on the first plurality of receivers.
    • 用于双向数据传输的系统包括耦合到第一子系统的第一阵列和耦合到第二子系统的第二阵列。 第一阵列包括产生通过自由空间传输的第一光信号的第一多个发射机和第一多个接收机。 第二阵列包括第二多个发射机,其产生通过自由空间传输到第一多个接收机的第二光信号,以及被配置为接收第一光信号的第二多个接收机。 图像形成装置可操作地定位在第一和第二阵列之间,并且被配置为同时形成第二多个接收机上的第一多个发射机的图像和第一多个接收机上的第二多个发射机的图像。
    • 99. 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。