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    • 2. 发明授权
    • Active antenna tuning circuitry
    • 有源天线调谐电路
    • US07859474B1
    • 2010-12-28
    • US12221893
    • 2008-08-07
    • David W. CripeJeremiah D. WolfScott L. PattenJames B. West
    • David W. CripeJeremiah D. WolfScott L. PattenJames B. West
    • H01Q1/10
    • H03H11/30
    • The present invention is a tunable multi-element network for providing impedance transformation. The network may include a first switched capacitor power load modulator circuit and a second switched capacitor power load modulator circuit. The network may further include a series inductive component configured for connecting to at least one of the first power load modulator circuit and the second power load modulator circuit. The network may be further configured for connection to a transmit antenna and a power amplifier. The network may be further configured for receiving an arbitrary impedance from the antenna. The network may be further configured for synthesizing an arbitrary capacitive reactance based on a dynamically controllable phase angle between a switch drive signal provided by the network and an incident Radio Frequency (RF) signal. The network may be further configured for matching the antenna impedance to the power amplifier via the arbitrary capacitive reactance.
    • 本发明是用于提供阻抗变换的可调多元网络。 网络可以包括第一开关电容器功率负载调制器电路和第二开关电容器功率负载调制器电路。 网络还可以包括被配置为连接到第一功率负载调制器电路和第二功率负载调制器电路中的至少一个的串联电感元件。 网络可以被进一步配置用于连接到发射天线和功率放大器。 网络可以被进一步配置为从天线接收任意阻抗。 网络可以进一步被配置为基于由网络提供的开关驱动信号与入射射频(RF)信号之间的动态可控相位角来合成任意容抗。 该网络可以被进一步配置用于经由任意的电容性电抗将天线阻抗与功率放大器相匹配。
    • 9. 发明授权
    • Stacked dual-band electromagnetic band gap waveguide aperture with independent feeds
    • 堆叠的双频带电磁带隙波导孔径独立进料
    • US07688269B1
    • 2010-03-30
    • US11495380
    • 2006-07-28
    • James B. West
    • James B. West
    • H01Q3/36H01P5/12
    • H01P1/182H01P1/2005H01Q5/42H01Q5/47H01Q21/064
    • A dual-band stacked electromagnetic band gap (EBG) electronically scanned array (ESA) has a high-frequency aperture stacked on a low-frequency aperture. The high-frequency aperture looks through the low-frequency aperture. Low-frequency and high-frequency feeds feed the apertures. The low-frequency aperture comprises low-frequency cells with two vertical low-frequency EBG sidewalls and two horizontal metal walls. The high-frequency aperture comprises high-frequency cells with four cells stacked on each of the low-frequency cells. The four high-frequency cells comprise four vertical high-frequency EBG sidewalls, two horizontal metal top and bottom metal walls, and a center horizontal metal wall for operation with the same polarization as the low-frequency aperture. The high-frequency cells may comprise four horizontal high-frequency EBG sidewalls, two vertical left and right metal walls, and a center vertical metal wall for orthogonal polarization. A frequency selective surface may be used to provide isolation between the apertures.
    • 双带堆叠电磁带隙(EBG)电子扫描阵列(ESA)具有堆叠在低频孔径上的高频孔径。 高频光圈通过低频光圈观察。 低频和高频馈送馈送孔。 低频孔径包括具有两个垂直低频EBG侧壁和两个水平金属壁的低频单元。 高频孔径包括在每个低频单元上堆叠有四个单元的高频单元。 四个高频电池包括四个垂直高频EBG侧壁,两个水平金属顶部和底部金属壁,以及用于以与低频孔径相同的偏振运行的中心水平金属壁。 高频电池可以包括四个水平高频EBG侧壁,两个垂直的左右金属壁和用于正交极化的中心垂直金属壁。 可以使用频率选择表面来提供孔之间的隔离。
    • 10. 发明授权
    • Low-loss dual polarized antenna for satcom and polarimetric weather radar
    • 用于卫星和极化天气雷达的低损耗双极化天线
    • US07436361B1
    • 2008-10-14
    • US11527235
    • 2006-09-26
    • Lee M. PaulsenDaniel N. ChenJames B. WestBrian J. Herting
    • Lee M. PaulsenDaniel N. ChenJames B. WestBrian J. Herting
    • H01Q1/38H01Q13/10
    • H01Q1/28H01Q1/38H01Q21/0043H01Q21/065
    • The present invention is a low-loss polarized antenna for satellite communications and polarimetric weather radar. The antenna may comprise: (a) a microstrip patch antenna, (b) a waveguide, and (c) a coupling interface between the antenna and waveguide. The microstrip patch antennas may individually comprise: (i) a patch radiator having a defined area, and (ii) an associated microstrip.In a further embodiment of the invention, an antenna array is presented. The antenna array may comprise: (a) a plurality of microstrip antennas, and (b) a plurality of waveguides. The antenna array may further comprise: (c) a waveguide combiner. The microstrip patch antennas may individually comprise: (i) a patch radiator having a defined area, and (ii) an associated microstrip.In still a further embodiment of the invention, a method for the manufacturing of an antenna is presented. The method may comprise the step: (a) operably coupling a microstrip patch antenna to a waveguide.
    • 本发明是用于卫星通信和偏振天气雷达的低损耗极化天线。 天线可以包括:(a)微带贴片天线,(b)波导,和(c)天线和波导之间的耦合接口。 微带贴片天线可以分别包括:(i)具有限定区域的贴片辐射器,和(ii)相关联的微带线。 在本发明的另一实施例中,呈现天线阵列。 天线阵列可以包括:(a)多个微带天线,和(b)多个波导。 天线阵列还可以包括:(c)波导组合器。 微带贴片天线可以分别包括:(i)具有限定区域的贴片辐射器,和(ii)相关联的微带线。 在本发明的另一个实施例中,提出了一种用于制造天线的方法。 该方法可以包括以下步骤:(a)将微带贴片天线可操作地耦合到波导。