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    • 12. 发明申请
    • MICROMACHINE SWITCH, FILTER CIRCUIT, DUPLEXER CIRCUIT, AND COMMUNICATION DEVICE
    • MICROMACHINE SWITCH,滤波电路,双工器电路和通信设备
    • US20090277762A1
    • 2009-11-12
    • US12297334
    • 2007-04-25
    • Hiroshi NakatsukaTakehiko YamakawaKeiji Onishi
    • Hiroshi NakatsukaTakehiko YamakawaKeiji Onishi
    • H01H19/00
    • B81B5/00B81B2201/018B81B2201/034H01H1/0036H01P1/127
    • A micromachine switch of the present invention is a micromachine switch for switching an electrical connection between signal electrodes in accordance with control signals from outside which include: a first control signal for electrically connecting the signal electrodes between which a signal is to be passed; and a second control signal for disconnecting the electrical connection between the signal electrodes. The micromachine switch comprises: a substrate; a rotating body provided on the substrate, which is rotatable on the substrate; a movable electrode provided on the rotating body; a first signal electrode, one end of which is electrically connected to one end of the movable electrode, and another end of which is provided on the substrate; a second signal electrode which is provided near the rotating body so as to be positioned such that a rotation of the rotating body causes the second signal electrode to be electrically connected to another end of the movable electrode; and a drive section for causing, in accordance with the first control signal, the rotating body to rotate until the rotating body is in such a position as to allow said another end of the movable electrode and the second signal electrode to be electrically connected, and for causing, in accordance with the second control signal, the rotating body to rotate until the rotating body is in such a position as to disconnect an electrical connection between said another end of the movable electrode and the second signal electrode.
    • 本发明的微加工开关是根据来自外部的控制信号切换信号电极之间的电连接的微型机械开关,其包括:用于电连接信号电极之间的信号的第一控制信号; 以及用于断开信号电极之间的电连接的第二控制信号。 微机械开关包括:基板; 旋转体,其设置在所述基板上,所述旋转体可在所述基板上旋转; 设置在所述旋转体上的可动电极; 第一信号电极,其一端电连接到可动电极的一端,另一端设置在基板上; 第二信号电极,设置在旋转体附近,以便使得旋转体的旋转使第二信号电极电连接到可动电极的另一端; 以及驱动部分,用于根据第一控制信号使旋转体旋转直到旋转体处于允许可动电极和第二信号电极的另一端电连接的位置,以及 用于根据第二控制信号使旋转体旋转直到旋转体处于断开可动电极的另一端和第二信号电极之间的电连接的位置。
    • 19. 发明授权
    • Frequency-variable acoustic thin film resonator, filter and communication apparatus using the same
    • 变频声波薄膜谐振器,滤波器及使用其的通信装置
    • US07986198B2
    • 2011-07-26
    • US12375313
    • 2007-08-01
    • Hiroshi NakatsukaTakehiko YamakawaKeiji Onishi
    • Hiroshi NakatsukaTakehiko YamakawaKeiji Onishi
    • H03H9/70H03H9/54H03H9/15
    • H03H9/564H03H9/132H03H9/542H03H9/585H03H9/587H03H9/605H03H2009/02204
    • An acoustic thin film resonator including: a first piezoelectric thin film 101; a pair of primary electrodes 103 and 104 for applying an electric signal, which are formed on the first piezoelectric thin film; a second piezoelectric thin film 102 that is disposed so that an oscillation generated in the first piezoelectric thin film propagates to the second piezoelectric thin film; a pair of secondary electrodes 104 and 105 for outputting an electric signal, which are formed on the second piezoelectric thin film; a load 108 that is connected between the secondary electrodes; and a control portion 109 that controls a value of the load. Thereby, an acoustic thin film resonator element is formed so that an electric signal inputted from the primary electrodes is outputted from the secondary electrodes by a piezoelectric effect, and a resonant frequency and an antiresonant frequency are made variable through the control of the value of the load. A resonant frequency and an antiresonant frequency are made variable at the same time without resonant characteristics being deteriorated.
    • 一种声学薄膜谐振器,包括:第一压电薄膜101; 形成在第一压电薄膜上的用于施加电信号的一对主电极103和104; 第二压电薄膜102被布置成使得在第一压电薄膜中产生的振荡传播到第二压电薄膜; 一对二次电极104和105,用于输出形成在第二压电薄膜上的电信号; 连接在次级电极之间的负载108; 以及控制负载值的控制部109。 由此,形成声学薄膜谐振器元件,使得从主电极输入的电信号通过压电效应从次级电极输出,并且通过控制第二电极的值,使谐振频率和反谐振频率变得可变 加载。 使共振频率和反谐振频率同时变化,而谐振特性不变。