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    • 1. 发明申请
    • BUFFER CIRCUIT WITH INTEGRATED LOSS CANCELING
    • 具有集成式丢失的缓冲电路
    • US20100330948A1
    • 2010-12-30
    • US12493568
    • 2009-06-29
    • Bruce JudsonCong T. Nguyen
    • Bruce JudsonCong T. Nguyen
    • H04B1/16H03K5/00
    • H03H7/03H03H7/1775H03H11/06
    • A filter circuit enhances a deficient Q-value in a filter stage and buffers the filter stage from subsequent filter stages using a common active device. A filter circuit includes a first buffered filtering stage including a first Q-deficient filter stage to receive an input signal and a first Q-enhancement buffer stage. The first Q-enhancement buffer stage is coupled to the first Q-deficient filter stage, wherein the first Q-enhancement buffer stage includes a single active device to increase a Q-value of the first Q-deficient filter stage and isolate the first Q-deficient filter stage from any subsequent filter stage. A filtering method includes filtering an input signal in a first Q-deficient filter stage and enhancing a deficient Q-value of the first Q-deficient filter stage with an active device. The method further includes buffering the first Q-deficient filter stage from any subsequent filter stage with the active device.
    • 滤波器电路增强滤波器级中的不足的Q值,并且使用公共有源器件来缓冲来自后续滤波器级的滤波器级。 滤波器电路包括第一缓冲滤波级,其包括用于接收输入信号的第一Q缺陷滤波器级和第一Q增强缓冲级。 第一Q增强缓冲级耦合到第一Q缺陷滤波级,其中第一Q增强缓冲级包括单个有源器件,以增加第一Q缺陷滤波级的Q值并隔离第一Q 任何后续过滤阶段的缺陷过滤阶段。 滤波方法包括在第一Q缺陷滤波器级中对输入信号进行滤波,并利用有源器件增强第一Q缺陷滤波器级的缺陷Q值。 该方法还包括用有源器件从任何后续滤波器级缓冲第一Q缺陷滤波器级。
    • 5. 发明授权
    • Time multiplexed transmission scheme for a spread spectrum communication system
    • 用于扩频通信系统的时分复用传输方案
    • US06888805B2
    • 2005-05-03
    • US09816558
    • 2001-03-23
    • Paul BenderAhmad JalaliBruce JudsonRoberto PadovaniCharles E. Wheatley, III
    • Paul BenderAhmad JalaliBruce JudsonRoberto PadovaniCharles E. Wheatley, III
    • H04B7/26H04J3/00H04W16/02H04W16/12H04Q7/00H04B7/216H04Q7/20
    • H04W16/12H04B7/2618H04W16/02
    • A “time multiplexed” transmission scheme capable of reducing the amount of interference from other cells operated at the same frequency band. Each cell in a system transmits in designated time intervals (e.g., time slots) during which other interfering cells may be prevented from transmitting. By temporarily “blanking” transmissions from interfering cells during the designated time slots, the amount of interference from these cells is reduced. The improved signal quality may support transmission at a desired or higher data rate, which may not be possible without cell blanking. In one variant, transmissions from the cells are staggered over different time slots. A set of one or more cells may be designated to transmit in each of a number of slot phases. The cells transmit in a staggered manner on these phases to reduce interference. The transmission scheme may be used for a various channel types (e.g., a control channel) and applications.
    • “时分复用”传输方案能够减少在相同频带上工作的其他小区的干扰量。 系统中的每个小区以指定的时间间隔(例如,时隙)发送,在该时间间隔期间可以防止其他干扰小区的发射。 通过在指定时隙期间暂时从干扰小区“消隐”传输,减少了来自这些小区的干扰量。 改进的信号质量可以支持以期望的或更高数据速率的传输,这在没有小区消隐的情况下可能是不可能的。 在一个变型中,来自小区的传输在不同的时隙上交错。 可以指定一组一个或多个小区在多个时隙相位中的每一个中进行发送。 小区在这些相位上以交错的方式发送以减少干扰。 传输方案可以用于各种信道类型(例如,控制信道)和应用。