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    • 2. 发明授权
    • Integrated tunable resonators for use in oscillators and filters
    • 用于振荡器和滤波器的集成可调谐谐振器
    • US5166646A
    • 1992-11-24
    • US832553
    • 1992-02-07
    • Branko AvanicRobert L. Benenati
    • Branko AvanicRobert L. Benenati
    • H03B5/32H03H5/12H03H9/05H03H9/17H03H9/25
    • H03H9/173H03B5/326H03H5/12H03H9/176H03H9/25H03H2009/02204
    • An integrated tunable resonator (100) includes a common semiconductor carrier (110). Formed on the common semiconductor carrier (110) is an integrated voltage variable capacitor (104). A bulk acoustic wave resonator is formed on the common semiconductor carrier (110) and coupled to the voltage variable capacitor (104). In one aspect of the present invention, a thin film resonator (106) is coupled to the voltage variable capacitor (104) both of which are formed on a common semiconductor substrate (110). The combination of these three elements provide for a tunable integrated resonator (100). In another aspect of the present invention, a surface acoustic wave resonator (522), formed on a common semiconductor carrier (514), is coupled to a voltage variable capacitor (520) in order to provide a tunable resonator (500).
    • 集成可调谐谐振器(100)包括公共半导体载体(110)。 形成在公共半导体载体(110)上的是集成电压可变电容器(104)。 体共振谐振器形成在公共半导体载体(110)上并耦合到电压可变电容器(104)。 在本发明的一个方面中,薄膜谐振器(106)耦合到电压可变电容器(104),二者均形成在共同的半导体衬底(110)上。 这三个元件的组合提供了可调谐的集成谐振器(100)。 在本发明的另一方面,形成在公共半导体载体(514)上的表面声波谐振器(522)耦合到电压可变电容器(520),以提供可调谐谐振器(500)。
    • 4. 发明授权
    • Adjustable transmission line filter and method of constructing same
    • 可调式传输线滤波器及其构造方法
    • US4157517A
    • 1979-06-05
    • US861784
    • 1977-12-19
    • Thomas F. KneiselRobert L. Benenati
    • Thomas F. KneiselRobert L. Benenati
    • H01P1/203H01P1/205H01P7/08H01P11/00H03H9/00H01P1/20
    • H01P1/20336Y10T29/49016
    • Transmission line filter adapted to respond to a predetermined frequency, having a resonator conducting layer with dielectric material on opposite sides thereof and a ground plane conducting layer on the outside surfaces of the dielectric material. The filter may be of the stripline or microstrip type having a resonator constructed so that it tends to operate at a frequency different from the desired frequency, and which is not accessible for trimming after the filter is constructed. The ground plane layer is accessible so that a portion thereof can be removed after the filter is constructed to change the electrical parameters of the line formed by the resonator and the ground plane layer to change the response frequency of the filter. Alternatively, conducting material can be added to an opening in the ground plane conducting layer to change the response frequency of the filter. The ground plane layer can be removed by a sand blast, laser beam or other means, and can be added by the use of conductive paint, to trim the frequency of the filter after it is constructed.
    • 传输线滤波器,其适于响应于预定频率,具有在其相对侧上具有介电材料的谐振器导电层和在电介质材料的外表面上的接地平面导电层。 滤波器可以是具有谐振器的带状线或微带线型谐振器,其被构造成使得其倾向于以不同于期望频率的频率运行,并且在构建滤波器之后不能进行修整。 接地层可以访问,使得其一部分可以在构造过滤器之后被去除以改变由谐振器和接地平面层形成的线的电参数以改变滤波器的响应频率。 或者,可以将导电材料添加到接地平面导电层中的开口,以改变滤波器的响应频率。 可以通过喷砂,激光束或其他方式去除地平面层,并且可以通过使用导电涂料来添加,以便在构建过滤器之后调整过滤器的频率。