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    • 1. 发明授权
    • Resonator having folded transmission line segments and filter comprising the same
    • 具有折叠传输线段的谐振器和包括该传输线段的滤波器
    • US07181259B2
    • 2007-02-20
    • US10480743
    • 2002-06-13
    • Genichi TsuzukiShen Ye
    • Genichi TsuzukiShen Ye
    • H01P1/203H01B12/02
    • H01P1/20336H01P1/20381H01P7/082
    • A resonator and filter including the resonator is disclosed. The resonator (100) includes an open conductive loop (100) with folded transmission line segments (124, 134) extending from the adjacent ends of the loop. Of each transmission line segment, the portion emanating from the respective end of the loop is positioned generally along-side the corresponding portion of the other transmission line segment. That is, the two transmission line segments are folded away from each other. The resonator can be generally elongated in shape, with the loop at one end of the long axis and the transmission line segments at the other. The transmission line segments occupy a footprint (W2) that is not substantially greater than the width of the loop (W1). The filter includes multiple resonators of the invention, each resonator being coupled to at least another or the resonators. The resonators can be positioned in a side-by-side fashion, with the long axes of the resonators parallel or anti-parallel to one another.
    • 公开了一种包括谐振器的谐振器和滤波器。 谐振器(100)包括具有从环路的相邻端延伸的折叠传输线段(124,134)的开放导电回路(100)。 在每个传输线段中,从环路的相应端发出的部分大致沿着另一传输线段的对应部分的位置。 也就是说,两个传输线段彼此折叠。 谐振器的形状通常可以是细长的,其中环在长轴的一端和传输线段在另一端。 传输线段占据基本上不大于环路宽度(W 1)的覆盖区(W 2)。 滤波器包括本发明的多个谐振器,每个谐振器耦合到至少另一谐振器或谐振器。 谐振器可以并排定位,谐振器的长轴彼此平行或反平行。
    • 3. 发明授权
    • Low-loss tunable radio frequency filter
    • 低损耗可调谐射频滤波器
    • US07719382B2
    • 2010-05-18
    • US11561333
    • 2006-11-17
    • Genichi TsuzukiBalam A. Willemsen
    • Genichi TsuzukiBalam A. Willemsen
    • H01P1/20
    • H01P1/20336H01P1/20H03H7/0153H03H7/12H03H7/1791H03H2210/012
    • A tunable radio frequency (RF) filter is provided. The RF filter comprises a signal transmission path having an input and an output, a plurality of resonant elements disposed along the signal transmission path between the input and the output, and a plurality of non-resonant elements coupling the resonant elements together. The resonant elements are coupled together to form a stop band having a plurality of transmission zeroes corresponding to respective frequencies of the resonant elements, and at least one sub-band between the transmission zeroes. The non-resonant elements comprise at least one variable non-resonant element for selectively introducing at least one reflection zero within the stop band to create a pass band in one of the sub-bands(s). The variable non-resonant element(s) may be configured for displacing the reflection zero(es) along the stop band to selectively move the pass band within the one sub-band or within selected ones of the sub-bands.
    • 提供可调谐射频(RF)滤波器。 RF滤波器包括具有输入和输出的信号传输路径,沿着输入和输出之间的信号传输路径设置的多个谐振元件以及将谐振元件耦合在一起的多个非谐振元件。 谐振元件耦合在一起以形成具有对应于谐振元件的相应频率的多个传输零点的阻挡带,以及传输零点之间的至少一个子带。 非谐振元件包括至少一个可变非谐振元件,用于选择性地在阻带内引入至少一个反射零点,以在一个子带中产生通带。 可变非共振元件可以被配置为沿着阻带移位反射零点,以选择性地移动一个子带内的通带或者在所选择的子带内的通带。
    • 8. 发明授权
    • Method of measuring resonant frequency of a resonator and coupling degree of two resonators
    • 测量谐振器的谐振频率和两个谐振器的耦合度的方法
    • US06329824B1
    • 2001-12-11
    • US09349450
    • 1999-07-08
    • Genichi TsuzukiMasanobu Suzuki
    • Genichi TsuzukiMasanobu Suzuki
    • G01R2704
    • G01R31/2824
    • A filter is composed of plural resonators formed on one surface of a dielectric substrate and a ground plane formed on the other surface. A resonant frequency of each resonator is accurately measured individually and independently from other resonators. Other resonators not selected for measurement are all short-circuited or covered with a conductive member to shift their resonant frequency to a region that does not interfere with the resonant frequency of the resonator under measurement. Also, a coupling coefficient of an arbitrary pair of resonators is accurately measured under no interference from other resonators in the similar manner.
    • 滤波器由形成在电介质基板的一个表面上的多个谐振器和形成在另一个表面上的接地平面组成。 每个谐振器的谐振频率与其他谐振器分别独立地精确测量。 未选择用于测量的其它谐振器全部短路或用导电部件覆盖,以将它们的谐振频率移动到不干扰正在测量的谐振器的谐振频率的区域。 此外,任何一对谐振器的耦合系数都以类似的方式在不受其他谐振器干扰的情况下被精确地测量。
    • 10. 发明授权
    • Systems and methods for tuning filters
    • 调整滤波器的系统和方法
    • US07825743B2
    • 2010-11-02
    • US12330510
    • 2008-12-08
    • Genichi TsuzukiMatthew P. HernandezBalam A. Willemsen
    • Genichi TsuzukiMatthew P. HernandezBalam A. Willemsen
    • H03J7/00
    • H04B3/04
    • Methods, systems and apparatus for filter design, analysis and adjustment are provided. Various embodiments may include, for example, methods, systems and apparatus for electric signal filter tuning. Embodiments may also include design techniques for planar electric signal (e.g., RF signals) filter tuning. In at least an embodiment of the present invention a technique for filter tuning is provided which may include parameter extraction, optimization and tuning recipes techniques that may require only a single permanent filter tuning. In at least another embodiment a system and method of filter design, analysis and adjustment according to the present invention includes use of tuning that may be set using a mechanical scribing tool or a laser trimming device. In at least one other embodiment, a filter tuning technique may be provided and include providing trimming tabs on a resonator edge that may be disconnected or trimmed for filter tuning.
    • 提供了滤波器设计,分析和调整的方法,系统和设备。 各种实施例可以包括例如用于电信号滤波器调谐的方法,系统和装置。 实施例还可以包括用于平面电信号(例如,RF信号)滤波器调谐的设计技术。 在本发明的至少一个实施例中,提供了一种用于滤波器调谐的技术,其可以包括仅需要单个永久滤波器调谐的参数提取,优化和调谐配方技术。 在至少另一个实施例中,根据本发明的滤波器设计,分析和调整的系统和方法包括可以使用机械划线工具或激光修整装置设置的调谐的使用。 在至少一个其他实施例中,可以提供滤波器调谐技术,并且包括提供谐振器边缘上的修剪突片,其可以被断开或修整用于滤波器调谐。