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    • 1. 发明授权
    • Transmission line voltage controlled nonlinear signal processors
    • 传输线电压控制非线性信号处理器
    • US07358834B1
    • 2008-04-15
    • US10233290
    • 2002-08-29
    • Steven H. PepperR. Clayton SmithRonald L. RamseyJames R. Andrews
    • Steven H. PepperR. Clayton SmithRonald L. RamseyJames R. Andrews
    • H01P1/20
    • H01P1/203
    • Waveguide nonlinear signal processors include transmission lines defined on a substrate. A plurality of varactors or pairs of varactors are situated along the transmission line and are in communication with a signal conductor of the transmission line and one or more control conductors. A processor controller is configured to provide a control signal to the one or more control conductors to select operational characteristics of the varactors or pairs of varactors. In some examples, the varactors are diodes and a control signal is provided to select a diode current-voltage characteristic in order to limit or clip an input signal to positive and/or negative amplitudes. Alternatively, a control signal is configured to provide a selected spectral transmission bandwidth or propagation delay by selecting a varactor capacitance-voltage characteristic.
    • 波导非线性信号处理器包括限定在基板上的传输线。 多个变容二极管或一对变容二极管沿着传输线设置并与传输线的信号导体和一个或多个控制导体连通。 处理器控制器被配置为向一个或多个控制导体提供控制信号以选择变容二极管或变容二极对的操作特性。 在一些示例中,变容二极管是二极管,并且提供控制信号以选择二极管电流 - 电压特性,以将输入信号限制或钳位到正和/或负幅度。 或者,控制信号被配置为通过选择变容二极管电容 - 电压特性来提供所选择的频谱传输带宽或传播延迟。
    • 2. 发明授权
    • Single photon imaging and timing array sensor apparatus and method
    • 单光子成像和定时阵列传感器装置及方法
    • US06583863B1
    • 2003-06-24
    • US09977873
    • 2001-10-15
    • R. Clayton Smith
    • R. Clayton Smith
    • G01C308
    • G01S17/89G01S7/481G01S7/487G01S17/10
    • An apparatus and method are disclosed for generating a three-dimension image of an object or target. The apparatus is comprised of a photon source for emitting a photon at a target. The emitted photons are received by a photon receiver for receiving the photon when reflected from the target. The photon receiver determines a reflection time of the photon and further determines an arrival position of the photon on the photon receiver. An analyzer is communicatively coupled to the photon receiver, wherein the analyzer generates a three-dimensional image of the object based upon the reflection time and the arrival position.
    • 公开了一种用于生成对象或目标的三维图像的装置和方法。 该装置由用于在目标处发射光子的光子源组成。 发射的光子被光子接收器接收,用于当从目标反射时接收光子。 光子接收器确定光子的反射时间,并进一步确定光子在光子接收器上的到达位置。 分析仪通信地耦合到光子接收器,其中分析仪基于反射时间和到达位置生成对象的三维图像。
    • 3. 发明申请
    • TIME SLOT SYNCHRONIZED, FLEXIBLE BANDWIDTH COMMUNICATION SYSTEM
    • 时隙同步,灵活的带宽通信系统
    • US20090257422A1
    • 2009-10-15
    • US12396447
    • 2009-03-02
    • R. Clayton SMITHLuis G. JORDANScott A. MCDERMOTT
    • R. Clayton SMITHLuis G. JORDANScott A. MCDERMOTT
    • H04J3/00H04L12/28
    • H04W52/0216H04W72/0446Y02D70/164
    • One or more frame slots to each transceiver are allocated for communication within each message cycle. The number of frame slots allocated can be dynamically adjusted to accommodate variable traffic loads per transceiver, and an offset of the frame slots within the message cycle is preferably predefined to provide a uniform distribution among the transceivers. The design of the transceiver is independent of the particular application, having at least one programmable parameter that controls the number of frame slots allocated within the message cycle. By controlling the number of frame slots allocated to a transceiver, the amount of inactive time, and hence battery life, can be controlled. When a conflict occurs among multiple transceivers having pending messages at the same frame slot, the allocation of the frame slot to a transceiver is based at least in part on the resultant lag time to each transceiver.
    • 每个收发器的一个或多个帧时隙被分配用于每个消息周期内的通信。 分配的帧时隙的数量可以被动态地调整以适应每个收发机的可变业务负载,并且消息周期内的帧时隙的偏移优选地被预先定义以在收发器之间提供均匀的分布。 收发器的设计独立于特定应用,具有至少一个可编程参数,其控制在消息周期内分配的帧时隙的数量。 通过控制分配给收发器的帧时隙的数量,可以控制非活动时间量,从而控制电池寿命。 当在相同帧时隙中具有未决消息的多个收发器之间发生冲突时,帧收发器的帧时隙的分配至少部分地基于到每个收发器的合成滞后时间。
    • 5. 发明申请
    • Time Slot Synchronized, Flexible Bandwidth Communication System
    • 时隙同步,灵活的带宽通信系统
    • US20140079040A1
    • 2014-03-20
    • US13621932
    • 2012-09-18
    • R. Clayton SmithLuis G. JordanScott A. McDermott
    • R. Clayton SmithLuis G. JordanScott A. McDermott
    • H04W72/04H04J3/06
    • H04B7/2656H04B7/18539
    • One or more frame slots to each transceiver are allocated for communication within each message cycle. The number of frame slots allocated can be dynamically adjusted to accommodate variable traffic loads per transceiver, and an offset of the frame slots within the message cycle is preferably predefined to provide a uniform distribution among the transceivers. The design of the transceiver is independent of the particular application, having at least one programmable parameter that controls the number of frame slots allocated within the message cycle. By controlling the number of frame slots allocated to a transceiver, the amount of inactive time, and hence battery life, can be controlled. When a conflict occurs among multiple transceivers having pending messages at the same frame slot, the allocation of the frame slot to a transceiver is based at least in part on the resultant lag time to each transceiver.
    • 每个收发器的一个或多个帧时隙被分配用于每个消息周期内的通信。 分配的帧时隙的数量可以被动态地调整以适应每个收发机的可变业务负载,并且消息周期内的帧时隙的偏移优选地被预先定义以在收发器之间提供均匀的分布。 收发器的设计独立于特定应用,具有至少一个可编程参数,其控制在消息周期内分配的帧时隙的数量。 通过控制分配给收发器的帧时隙的数量,可以控制非活动时间量,从而控制电池寿命。 当在相同帧时隙中具有等待消息的多个收发器之间发生冲突时,帧收发器的帧时隙的分配至少部分地基于到每个收发器的合成滞后时间。
    • 6. 发明授权
    • Time slot synchronized, flexible bandwidth communication system
    • 时隙同步,灵活的带宽通信系统
    • US08284749B2
    • 2012-10-09
    • US12396447
    • 2009-03-02
    • R. Clayton SmithLuis G. JordanScott A. McDermott
    • R. Clayton SmithLuis G. JordanScott A. McDermott
    • H04B7/216
    • H04W52/0216H04W72/0446Y02D70/164
    • One or more frame slots to each transceiver are allocated for communication within each message cycle. The number of frame slots allocated can be dynamically adjusted to accommodate variable traffic loads per transceiver, and an offset of the frame slots within the message cycle is preferably predefined to provide a uniform distribution among the transceivers. The design of the transceiver is independent of the particular application, having at least one programmable parameter that controls the number of frame slots allocated within the message cycle. By controlling the number of frame slots allocated to a transceiver, the amount of inactive time, and hence battery life, can be controlled. When a conflict occurs among multiple transceivers having pending messages at the same frame slot, the allocation of the frame slot to a transceiver is based at least in part on the resultant lag time to each transceiver.
    • 每个收发器的一个或多个帧时隙被分配用于每个消息周期内的通信。 分配的帧时隙的数量可以被动态地调整以适应每个收发机的可变业务负载,并且消息周期内的帧时隙的偏移优选地被预先定义以在收发器之间提供均匀的分布。 收发器的设计独立于特定应用,具有至少一个可编程参数,其控制在消息周期内分配的帧时隙的数量。 通过控制分配给收发器的帧时隙的数量,可以控制非活动时间量,从而控制电池寿命。 当在相同帧时隙中具有等待消息的多个收发器之间发生冲突时,帧收发器的帧时隙的分配至少部分地基于到每个收发器的合成滞后时间。