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    • 1. 发明授权
    • Continuous-wave field disturbance sensing system
    • 连续波场扰动感应系统
    • US08089394B2
    • 2012-01-03
    • US12590116
    • 2009-11-02
    • Christopher E. StewartGrant E. MoultonSteven H. Goody
    • Christopher E. StewartGrant E. MoultonSteven H. Goody
    • G01S13/08G01S13/58G01S13/00
    • G01S7/034G01S13/583G01S2007/358H01P5/222H01Q21/065
    • A field disturbance sensing system has an antenna, an oscillator producing a high-frequency signal, a first detector circuit, a second detector circuit, a combining network configured to couple the high-frequency signal to the antenna, and to couple the high-frequency signal and a reflected high-frequency signal to the first detector and to the second detector. An algebraic combining network sums a first detected signal having first detected high-frequency signal and a first detected reflected signal from the first detector circuit and a second detected signal having second detected high-frequency signal and a second detected reflected signal from the second detector circuit to produce a detected output signal. The first detected reflected signal is added to the second detected reflected signal and the first detected high-frequency signal is subtracted from the second detected high-frequency signal. A controller configured to convert the detected output signal to a speed between the antenna and a target.
    • 场干扰感测系统具有天线,产生高频信号的振荡器,第一检测器电路,第二检测器电路,被配置为将高频信号耦合到天线的组合网络,以及耦合高频信号 信号和反射的高频信号送到第一检测器和第二检测器。 代数组合网络将具有第一检测到的高频信号的第一检测信号和来自第一检测器电路的第一检测反射信号和来自第二检测器电路的第二检测到的高频信号和第二检测反射信号的第二检测信号相加 以产生检测到的输出信号。 将第一检测到的反射信号添加到第二检测到的反射信号,并且从第二检测到的高频信号中减去第一检测的高频信号。 控制器,被配置为将检测到的输出信号转换成天线和目标之间的速度。
    • 2. 发明申请
    • Continuous-wave field disturbance sensing system
    • 连续波场扰动感应系统
    • US20110102241A1
    • 2011-05-05
    • US12590116
    • 2009-11-02
    • Christopher E. StewartGrant E. MoultonSteven H. Goody
    • Christopher E. StewartGrant E. MoultonSteven H. Goody
    • G01S13/58
    • G01S7/034G01S13/583G01S2007/358H01P5/222H01Q21/065
    • A field disturbance sensing system has an antenna, an oscillator producing a high-frequency signal, a first detector circuit, a second detector circuit, a combining network configured to couple the high-frequency signal to the antenna, and to couple the high-frequency signal and a reflected high-frequency signal to the first detector and to the second detector. An algebraic combining network sums a first detected signal having first detected high-frequency signal and a first detected reflected signal from the first detector circuit and a second detected signal having second detected high-frequency signal and a second detected reflected signal from the second detector circuit to produce a detected output signal. The first detected reflected signal is added to the second detected reflected signal and the first detected high-frequency signal is subtracted from the second detected high-frequency signal. A controller configured to convert the detected output signal to a speed between the antenna and a target.
    • 场干扰感测系统具有天线,产生高频信号的振荡器,第一检测器电路,第二检测器电路,被配置为将高频信号耦合到天线的组合网络,以及耦合高频信号 信号和反射的高频信号送到第一检测器和第二检测器。 代数组合网络将具有第一检测到的高频信号的第一检测信号和来自第一检测器电路的第一检测反射信号和来自第二检测器电路的第二检测到的高频信号和第二检测反射信号的第二检测信号相加 以产生检测到的输出信号。 将第一检测到的反射信号添加到第二检测到的反射信号,并且从第二检测到的高频信号中减去第一检测到的高频信号。 控制器,被配置为将检测到的输出信号转换成天线和目标之间的速度。
    • 3. 发明申请
    • Detector system with adjustable phase stage
    • 具有可调阶段的检测器系统
    • US20120280855A1
    • 2012-11-08
    • US13507122
    • 2012-06-04
    • Grant E. MoultonChristopher E. StewartSteven H. Goody
    • Grant E. MoultonChristopher E. StewartSteven H. Goody
    • G01S13/00
    • G01S7/354G01S7/032G01S13/32H03D7/1408H03D9/0633
    • A detector system has a local oscillator port, a radio frequency port, and an oscillator providing a local oscillator signal having amplitude-modulated (“AM”) noise coupled. A first detector detects the local oscillator signal and produces a first detected signal having a first detected AM noise signal component and a demodulated signal component at a first phase. A second detector detects a second high-frequency signal to produce a second detected signal having a second detected AM noise signal component at a second phase. An algebraic combining network combines the first detected signal and the second detected signal to produce a demodulated signal component at an output. A phase delay disposed between the local oscillator and the output of the algebraic combining network is calibrated to offset the first phase from the second phase to improve signal-to-noise ratio at the output.
    • 检测器系统具有本地振荡器端口,射频端口和提供具有耦合振幅调制(AM)噪声的本地振荡器信号的振荡器。 第一检测器检测本地振荡器信号,并产生具有第一相位的第一检测到的AM噪声信号分量和解调信号分量的第一检测信号。 第二检测器检测第二高频信号以产生具有第二相位的具有第二检测到的AM噪声信号分量的第二检测信号。 代数组合网络组合了第一检测信号和第二检测信号,以在输出端产生解调信号分量。 校准本地振荡器和代数组合网络的输出之间的相位延迟,以将第一相位与第二相位相抵消,以提高输出端的信噪比。
    • 8. 发明授权
    • Noise-canceling down-converting detector
    • 降噪转换检测器
    • US08223067B2
    • 2012-07-17
    • US12590145
    • 2009-11-02
    • Grant E. MoultonChristopher E. StewartSteven H. Goody
    • Grant E. MoultonChristopher E. StewartSteven H. Goody
    • G01S13/00
    • G01S7/354G01S7/032G01S13/32H03D7/1408H03D9/0633
    • A detector system has a first detector configured to detect a first high-frequency signal having amplitude-modulated (“AM”) noise to produce a first detected signal having at least a first detected AM noise signal component and a demodulated signal component and a second detector configured to detect a second high-frequency signal having the AM noise to produce a second detected signal having at least a second detected AM noise signal component. An algebraic combining network combines the first detected signal and the second detected signal to cancel the first detected AM noise signal component with the second detected AM noise signal component to produce an output signal including the demodulated signal component.
    • 检测器系统具有第一检测器,其被配置为检测具有幅度调制(“AM”)噪声的第一高频信号,以产生具有至少第一检测到的AM噪声信号分量和解调信号分量的第一检测信号, 检测器,被配置为检测具有AM噪声的第二高频信号,以产生具有至少第二检测到的AM噪声信号分量的第二检测信号。 代数组合网络组合第一检测信号和第二检测信号,以利用第二检测到的AM噪声信号分量来消除第一检测到的AM噪声信号分量,以产生包括解调信号分量的输出信号。
    • 10. 发明授权
    • Long reach unamplified optical SONET/SDH card
    • 长距离光放大SONET / SDH卡
    • US07088898B2
    • 2006-08-08
    • US10999501
    • 2004-11-30
    • Grant E. MoultonJeff P. Hamilton-Gahart
    • Grant E. MoultonJeff P. Hamilton-Gahart
    • G02B6/10
    • G02B6/4453G02B6/3897
    • An assembly, method, and device for high-speed optical format data transmission includes a printed circuit board containing mounting locations for electrical components, optical components, and a heatsink device. A tray may also be mounted on the printed circuit board to route optical fiber to various components. The heatsink is positioned at a predetermined height above the printed circuit board so that it physically contacts the electrical and optical components that require cooling. The printed circuit board may include one or more openings in which one or more of the electrical or optical components that are significantly taller than the other components are embedded. The heatsink may also include one or more openings in which one or more of the taller electrical or optical components are positioned. Additional compliant heat conductive material may be placed between the top of one or more electrical or optical components and the heatsink when the components are not as high at the position of the heatsink. Material may also be removed from the bottom of one or more portions of the heatsink to accommodate one or more of the electrical or optical components that are slightly higher than the position of the heatsink. The layout of the printed circuit board assembly includes positioning the electrical and optical components for receiving data on one section of the printed circuit board, while the electrical and optical components for transmitting data are positioned on another section of the printed circuit board. The electrical and optical components that are sensitive to temperature variation are positioned near the portion of the printed circuit board that receives the greatest amount of cooling.
    • 用于高速光学格式数据传输的组件,方法和装置包括包含用于电气部件,光学部件和散热装置的安装位置的印刷电路板。 托盘也可以安装在印刷电路板上以将光纤路由到各种部件。 散热器位于印刷电路板上方的预定高度处,使得其物理地接触需要冷却的电气和光学部件。 印刷电路板可以包括一个或多个开口,其中嵌入了显着高于其它部件的电气或光学部件中的一个或多个。 散热器还可以包括其中一个或多个更高的电气或光学部件被定位的一个或多个开口。 当部件在散热器的位置不高时,附加的柔性导热材料可以放置在一个或多个电气或光学部件的顶部和散热器之间。 还可以从散热器的一个或多个部分的底部去除材料,以容纳稍微高于散热器位置的一个或多个电气或光学部件。 印刷电路板组件的布局包括将用于在印刷电路板的一个部分上接收数据的电气和光学部件定位,而用于传输数据的电气和光学部件位于印刷电路板的另一部分上。 对温度变化敏感的电气和光学部件位于接收最大冷却量的印刷电路板的部分附近。