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    • 3. 发明授权
    • Ceramic element, method for producing ceramic element, display device, relay device and capacitor
    • 陶瓷元件,陶瓷元件的制造方法,显示装置,继电器装置及电容器
    • US06265811B1
    • 2001-07-24
    • US09117243
    • 1998-11-10
    • Yukihisa TakeuchiToshikatsu KashiwayaNobuo Takahashi
    • Yukihisa TakeuchiToshikatsu KashiwayaNobuo Takahashi
    • H01L4108
    • H01L41/1875H01H1/0036H01H57/00H01H2001/0042H01H2057/006H01L41/0973H01L41/098H01L41/314Y10T29/42
    • A ceramic element comprises a main actuator element 26 having an anti-ferroelectric film 22 and a pair of electrodes 24a, 24b formed on a first principal surface (front surface) of the anti-ferroelectric film 22, a vibrating section 18 for supporting the main actuator element 26, and a fixed section 20 for supporting the vibrating section 18 in a vibrating manner. The anti-ferroelectric film 22 after polarization has a region Zt in which its average dielectric constant is increased in an analog manner in accordance with a voltage V applied to the pair of electrodes 24a, 24b. Specifically, an expression of p/t≦2.5 is satisfied provided that an average film thickness of the anti-ferroelectric film 22 is t, and a pitch between the pair of electrodes 24a, 24b is p. Accordingly, the mechanical displacement amount is changed in an analog manner in accordance with the applied voltage, making it possible to maintain a displacement amount equivalent to that obtained during application of a driving voltage, in a no voltage-loaded state after completion of application of the driving voltage.
    • 陶瓷元件包括具有抗铁电体膜22的主致动器元件26和形成在反铁电体膜22的第一主表面(前表面)上的一对电极24a,24b,用于支撑主铁芯的振动部分18 致动器元件26和用于以振动方式支撑振动部分18的固定部分20。 偏振后的反铁电体膜22具有根据施加到一对电极24a,24b的电压V的模拟方式增加平均介电常数的区域Zt。 具体地,如果反铁电体膜22的平均膜厚为t,并且一对电极24a,24b之间的间距为p,则p / t <= 2.5的表达式被满足。 因此,机械位移量根据所施加的电压以模拟方式改变,使得可以在完成施加之后的无电压负载状态下保持与施加驱动电压期间获得的位移量相当的位移量 的驱动电压。
    • 4. 发明授权
    • Ceramic element, method for producing ceramic element, display device, relay device, and capacitor
    • 陶瓷元件,陶瓷元件的制造方法,显示装置,继电器装置以及电容器
    • US06476540B2
    • 2002-11-05
    • US09861738
    • 2001-05-21
    • Yukihisa TakeuchiToshikatsu KashiwayaNobuo Takahashi
    • Yukihisa TakeuchiToshikatsu KashiwayaNobuo Takahashi
    • H01L4108
    • H01L41/1875H01H1/0036H01H57/00H01H2001/0042H01H2057/006H01L41/0973H01L41/098H01L41/314Y10T29/42
    • A ceramic element comprises a main actuator element 26 having an anti-ferroelectric film 22 and a pair of electrodes 24a, 24b formed on a first principal surface (front surface) of the anti-ferroelectric film 22, a vibrating section 18 for supporting the main actuator element 26, and a fixed section 20 for supporting the vibrating section 18 in a vibrating manner. The anti-ferroelectric film 22 after polarization has a region Zt in which its average dielectric constant is increased in an analog manner in accordance with a voltage V applied to the pair of electrodes 24a, 24b. Specifically, an expression of p/t≦2.5 is satisfied provided that an average film thickness of the anti-ferroelectric film 22 is t, and a pitch between the pair of electrodes 24a, 24b is p. Accordingly, the mechanical displacement amount is changed in an analog manner in accordance with the applied voltage, making it possible to maintain a displacement amount equivalent to that obtained during application of a driving voltage, in a no voltage-loaded state after completion of application of the driving voltage.
    • 陶瓷元件包括具有抗铁电体膜22的主致动器元件26和形成在反铁电体膜22的第一主表面(前表面)上的一对电极24a,24b,用于支撑主铁芯的振动部分18 致动器元件26和用于以振动方式支撑振动部分18的固定部分20。 偏振后的反铁电体膜22具有根据施加到一对电极24a,24b的电压V的模拟方式增加平均介电常数的区域Zt。 具体地,如果反铁电体膜22的平均膜厚为t,并且一对电极24a,24b之间的间距为p,则p / t <= 2.5的表达式被满足。 因此,机械位移量根据所施加的电压以模拟方式改变,使得可以在完成施加之后的无电压负载状态下保持与施加驱动电压期间获得的位移量相当的位移量 的驱动电压。
    • 8. 发明申请
    • Water droplet generating system and method for generating water droplet
    • 水滴产生系统和产生水滴的方法
    • US20080295695A1
    • 2008-12-04
    • US12154015
    • 2008-05-19
    • Yukihisa Takeuchi
    • Yukihisa Takeuchi
    • B01D53/02
    • B01D53/265A01G25/02B01D53/261C02F1/32C02F1/444
    • The water droplet generating system includes a vessel, an opening/closing valve, a moisture absorbent member, and a condenser portion. The vessel has an opening portion. The opening/closing valve opens and closes the opening portion. The water absorbent member absorbs and releases water vapor depending on a change of humidity. The condenser portion is communicated with the inside of the vessel and cools water vapor released from the moisture absorbent member to be at a dew point of water vapor or less. When the opening portion is opened, the moisture absorbent member absorbs water vapor in atmosphere. When the opening portion is closed, the moisture absorbent member releases water vapor, and the condenser portion condenses water vapor, which is released from the moisture absorbent member, to generate a water droplet.
    • 水滴产生系统包括容器,开/关阀,吸湿构件和冷凝器部分。 容器具有开口部分。 打开/关闭阀打开和关闭开口部分。 吸湿部件根据湿度的变化吸收和释放水蒸气。 冷凝器部与容器的内部连通,将从吸湿部件释放出的水蒸气冷却至水蒸汽的露点以下。 当开口部分打开时,吸湿部件吸收大气中的水蒸气。 当开口部分关闭时,吸湿构件释放水蒸汽,并且冷凝器部分冷凝从吸湿构件释放的水蒸汽产生水滴。