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    • 2. 发明授权
    • Holder for electrically charging a substrate during coating
    • 用于在涂覆期间对基底进行充电的支架
    • US09539593B2
    • 2017-01-10
    • US11877591
    • 2007-10-23
    • James B. McClainDoug TaylorEd DickinsonSteve Worm
    • James B. McClainDoug TaylorEd DickinsonSteve Worm
    • B05C13/02B05B5/053A61L31/10B05B5/08
    • B05B5/0533A61L31/10B05B5/082B05B13/0207B05C13/025
    • A stent holder for mounting and electrically charging a stent during coating of the stent using dry particles, the particles comprising inert polymers, pharmaceutical or biological agents, is provided. An assembly for supporting and electrically charging a stent during the coating of the stent using dry particles, the particles comprising inert polymers, pharmaceutical or biological agents, is provided. A chamber for creating an electrical field around a stent and for supporting, electrically charging, and exposing the stent to dry particles, the particles comprising inert polymers, pharmaceutical or biological agents, is provided. A method for creating an electrical field around a stent and for supporting, electrically charging, and exposing the stent to dry particles comprising inert polymers, pharmaceutical or biological agents is provided.
    • 提供一种用于在使用干燥颗粒涂覆支架期间安装和充电支架的支架支架,所述颗粒包括惰性聚合物,药物或生物制剂。 提供了一种用于在使用干燥颗粒涂覆支架期间支撑和充电支架的组件,所述颗粒包含惰性聚合物,药物或生物制剂。 提供了一种用于在支架周围产生电场并用于支撑,充电并将支架暴露于干颗粒的腔室,包括惰性聚合物,药物或生物制剂的颗粒。 提供了一种用于在支架周围产生电场并用于支撑,充电和将支架暴露于包含惰性聚合物,药物或生物制剂的干燥颗粒的方法。
    • 7. 发明授权
    • Interference cancellation system and method using impulse response
    • 干扰消除系统和使用脉冲响应的方法
    • US07907690B2
    • 2011-03-15
    • US11550283
    • 2006-10-17
    • Doug TaylorJohn FansonGeorge PriceTooraj EsmailianLaszlo Hazy
    • Doug TaylorJohn FansonGeorge PriceTooraj EsmailianLaszlo Hazy
    • H04B1/10
    • H04L12/40006H04L2012/4028
    • An interference cancellation (IC) system and method for use within a 1553 communication system comprising a data bus carrying primary signals having a 1553 component and a non-1553 component are provided. The IC system has an input port, a 1553 data extraction block and an interference cancellation circuit with an interference measurement and a cancellation block. The interference measurement block receives 1553 decoded data from the 1553 data extraction block and a sampled primary signal via the input port, and, within an impulse response block, produces an interference signal based on a 1553 impulse response system model. The cancellation block subtracts the interference signal from the sampled primary signal and produces an output signal with the 1553 component substantially cancelled. Furthermore, an IC system using adaptive filtering techniques within the impulse response block is provided. The Least Mean Squares (LMS) algorithm can be used as an adaptive filter technique.
    • 提供了一种在1553通信系统内使用的干扰消除(IC)系统和方法,包括承载具有1553分量和非1553分量的主信号的数据总线。 IC系统具有输入端口,1553数据提取块和具有干扰测量和消除块的干扰消除电路。 干扰测量块通过1553数据提取块接收1553个解码数据,经由输入端口接收采样的主信号,脉冲响应块内产生基于1553脉冲响应系统模型的干扰信号。 消除块从采样的主信号中减去干扰信号,并产生基本上消除了1553分量的输出信号。 此外,提供了在脉冲响应块内使用自适应滤波技术的IC系统。 最小均方(LMS)算法可用作自适应滤波技术。