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    • 7. 发明授权
    • High frequency quasi optical power source capable of solid state implementation
    • 具有固态实现的高频准光功率源
    • US07403076B1
    • 2008-07-22
    • US11347330
    • 2006-02-03
    • Jonathan J. LynchDaniel F. SievenpiperJoseph S. Colburn
    • Jonathan J. LynchDaniel F. SievenpiperJoseph S. Colburn
    • H03B9/01H01S3/00
    • H03B5/1841H03B7/04
    • In one embodiment, a high frequency quasi optical oscillator power source is provided which includes an array of amplifier devices each having an input antenna tuned for a fundamental frequency. A amplifier coupled to the input antenna amplifies fundamental frequency signals. A multiplier coupled to the amplifier provides signals at a multiple of the fundamental frequency and at the fundamental frequency. The output antenna coupled to the multiplier is tuned at the fundamental frequency and at a multiple of the fundamental frequency. A grating lobe-to-main lobe converter located above the array of amplifier devices converts grating lobe power to main lobe power at the multiple of the fundamental frequency. A frequency selective reflector opposes the amplifier array to reflect signals at the fundamental frequency and to pass signals at the multiple of the fundamental frequency.
    • 在一个实施例中,提供了一种高频准光振荡器电源,其包括每个具有针对基频调谐的输入天线的放大器装置的阵列。 耦合到输入天线的放大器放大基频信号。 耦合到放大器的乘法器以基频和基频的倍数提供信号。 耦合到乘法器的输出天线被调谐在基频和基频的倍数。 位于放大器装置阵列上方的光栅波瓣至主瓣转换器以基波频率的倍数将光栅波瓣功率转换为主波瓣功率。 频率选择反射器与放大器阵列相对,以反射基频处的信号并以基频倍数传递信号。
    • 8. 发明授权
    • Method and apparatus for multilayer frequency selective surfaces
    • 多层频率选择表面的方法和装置
    • US06870511B2
    • 2005-03-22
    • US10383385
    • 2003-03-06
    • Jonathan J. LynchJoseph S. Colburn
    • Jonathan J. LynchJoseph S. Colburn
    • H01Q15/00H01Q15/24
    • H01Q15/0026
    • A method for designing a multiple layer frequency selective surface structure. An overall response for the structure is specified. The desired response may be modeled as a filter response. Parameters for each of the layers making up the structure that provide the overall response are determined based on the polarization modes between the layers being decoupled. To provide for decoupling, the individual layers are rotated with respect to each other. The overall response of the structure is then calculated and compared to the desired response. Adjustments are made in the parameters of each layer until the calculated response is equal or nearly equal to the desired response.
    • 一种设计多层频率选择性表面结构的方法。 规定了结构的整体响应。 期望的响应可以被建模为过滤器响应。 基于分离层之间的偏振模式来确定构成提供总体响应的结构的每个层的参数。 为了提供去耦合,各层相对于彼此旋转。 然后计算结构的总体响应并将其与期望的响应进行比较。 在每个层的参数中进行调整,直到计算出的响应等于或几乎等于所需的响应。