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    • 3. 发明授权
    • Piezoelectric element, vibratory actuator and drive unit
    • 压电元件,振动执行器和驱动单元
    • US07646136B2
    • 2010-01-12
    • US12115063
    • 2008-05-05
    • Yusuke AdachiHideaki MukaeMasaru HigashionjiEiichi Nagaoka
    • Yusuke AdachiHideaki MukaeMasaru HigashionjiEiichi Nagaoka
    • H01L41/04H01L41/08
    • H01L41/083H01L41/0913H02N2/004H02N2/006H02N2/026H02N2/06H02N2/065H02N2/103
    • A piezoelectric element is formed by stacking piezoelectric layers and internal electrode layers. The internal electrode layers are positive and negative electrode layers. The positive electrode layers are first and second positive electrode layers. The negative electrode layers are first and second negative electrode layers. Each of the first positive and negative electrode layers includes four divided electrodes and a connecting electrode for connecting a pair of the four divided electrodes formed on diagonally opposite two areas along a first diagonal direction on a principle surface of the associated one of the piezoelectric layers. Each of the second positive and negative electrode layers includes four divided electrodes and a connecting electrode for connecting a pair of the four divided electrodes formed on diagonally opposite two areas along a second diagonal direction on a principle surface of the associated one of the piezoelectric layers.
    • 压电元件通过堆叠压电层和内部电极层形成。 内部电极层是正极层和负极层。 正极层是第一和第二正极层。 负极层是第一负极层和第二负极层。 第一正极层和负极层中的每一个包括四个分隔电极和连接电极,用于在相关联的一个压电层的主表面上沿着第一对角线方向连接形成在对角相对的两个区域上的一对四个分隔电极。 第二正极层和负极层中的每一个包括四个分隔电极和连接电极,用于在相关联的一个压电层的主表面上沿着第二对角线方向连接形成在对角相对的两个区域上的一对四个分隔电极。
    • 4. 发明授权
    • Vibratory actuator
    • 振动执行器
    • US08314533B2
    • 2012-11-20
    • US12738353
    • 2008-07-29
    • Masaru HigashionjiHideaki MukaeEiichi NagaokaYusuke Adachi
    • Masaru HigashionjiHideaki MukaeEiichi NagaokaYusuke Adachi
    • H02N2/00
    • H01L41/0906H01L41/053
    • A supporting structure for an actuator body, which can prevent reduction of vibration of an actuator body and maintain a contact state of a driver element with an abutment body in a stable manner even when the driver element receives reactive force from the abutment body is realized.An ultrasonic actuator (2) includes an actuator body (4) for generating vibration, driver elements (8), provided on a mounting surface (40a) of the actuator body (4), for outputting driving force, a pressing rubber (62) for pressing the actuator body (4) to a stage (11), a case (5) to which the actuator body (4) is coupled, and a plate spring (61) for elastically supporting the actuator body (4) relative to the case (5). The plate spring (61) supports the mounting surface (40a) of the actuator body (4) on which the driver elements 8 are provided.
    • 一种用于致动器主体的支撑结构,其可以防止致动器主体的振动的减小,并且即使当驱动元件从抵接体接收到反作用力时,也能够以稳定的方式保持驱动元件与抵接体的接触状态。 超声波致动器(2)包括用于产生振动的致动器主体(4),设置在致动器主体(4)的安装表面(40a)上的用于输出驱动力的驱动元件(8),压紧橡胶(62) 用于将致动器主体(4)按压到台架(11),致动器主体(4)联接到的壳体(5)和用于相对于所述致动器主体(4)弹性地支撑致动器本体 情况(5)。 板簧(61)支撑在其上设置有驱动元件8的致动器本体(4)的安装表面(40a)。
    • 6. 发明申请
    • VIBRATORY ACTUATOR
    • 振动执行器
    • US20100301704A1
    • 2010-12-02
    • US12738353
    • 2008-07-29
    • Masaru HigashionjiHideaki MukaeEiichi NagaokaYusuke Adachi
    • Masaru HigashionjiHideaki MukaeEiichi NagaokaYusuke Adachi
    • H02N2/04
    • H01L41/0906H01L41/053
    • A supporting structure for an actuator body, which can prevent reduction of vibration of an actuator body and maintain a contact state of a driver element with an abutment body in a stable manner even when the driver element receives reactive force from the abutment body is realized.An ultrasonic actuator (2) includes an actuator body (4) for generating vibration, driver elements (8), provided on a mounting surface (40a) of the actuator body (4), for outputting driving force, a pressing rubber (62) for pressing the actuator body (4) to a stage (11), a case (5) to which the actuator body (4) is coupled, and a plate spring (61) for elastically supporting the actuator body (4) relative to the case (5). The plate spring (61) supports the mounting surface (40a) of the actuator body (4) on which the driver elements 8 are provided.
    • 一种用于致动器主体的支撑结构,其可以防止致动器主体的振动的减小,并且即使当驱动元件从抵接体接收到反作用力时,也能够以稳定的方式保持驱动元件与抵接体的接触状态。 超声波致动器(2)包括用于产生振动的致动器主体(4),设置在致动器主体(4)的安装表面(40a)上的用于输出驱动力的驱动元件(8),压紧橡胶(62) 用于将致动器主体(4)按压到台架(11),致动器主体(4)联接到的壳体(5)和用于相对于所述致动器主体(4)弹性地支撑致动器本体 情况(5)。 板簧(61)支撑在其上设置有驱动元件8的致动器本体(4)的安装表面(40a)。
    • 7. 发明授权
    • Ultrasonic actuator
    • 超声波执行器
    • US07737604B2
    • 2010-06-15
    • US12469212
    • 2009-05-20
    • Yusuke AdachiHideaki MukaeMasaru HigashionjiEiichi NagaokaKenichi Honjo
    • Yusuke AdachiHideaki MukaeMasaru HigashionjiEiichi NagaokaKenichi Honjo
    • H02N2/14
    • H02N2/008H01L41/0913H02N2/026H02N2/028
    • An ultrasonic actuator includes: an actuator body (5) including an actuator body (50); a control circuit (150) for setting a driving frequency; power supply sources (191, 192) for applying a driving voltage having the driving frequency to the actuator body; and a memory (170) for storing data related to a difference between antiresonance and resonance frequencies of the actuator body (50). The control circuit (150) determines, based on a reference frequency where a current value of a current fed to the piezoelectric element (50) is local minimum and the data stored in the memory (170), a lower limit of a control range of the driving frequency so that the lower limit is equal to or higher than a frequency where the current value of the current fed to the piezoelectric element (50) is local maximum and determines the driving frequency to be a frequency in the control range.
    • 超声致动器包括:致动器主体(5),包括致动器主体(50); 用于设定驱动频率的控制电路(150) 用于将具有驱动频率的驱动电压施加到致动器主体的电源(191,192); 以及用于存储与致动器主体(50)的反共振和谐振频率之间的差异有关的数据的存储器(170)。 控制电路(150)基于馈送到压电元件(50)的电流的当前值是局部最小值的参考频率和存储在存储器(170)中的数据来确定控制范围的下限 驱动频率使得下限等于或高于馈送到压电元件(50)的电流的电流值为局部最大值的频率,并将驱动频率确定为控制范围内的频率。