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    • 3. 发明授权
    • Vibration actuator and imaging device
    • 振动执行器和成像装置
    • US08344591B2
    • 2013-01-01
    • US12659494
    • 2010-03-10
    • Yoshihiko SuzukiEiji MatsukawaKazuyasu OoneMasaaki Tanabe
    • Yoshihiko SuzukiEiji MatsukawaKazuyasu OoneMasaaki Tanabe
    • H02N2/12
    • H02N2/105G02B7/08
    • Provided is a vibration actuator comprising an elastic body; an electromechanical transducer that causes the elastic body to vibrate; and a rotating body that rotates in response to a drive force received from contact with the elastic body at a vibrational antinode thereof, wherein the rotating body contacts the elastic body at a prescribed position along a direction in which an axis of the rotation extends. In the vibration actuator, the elastic body includes an elastic body contact member that is arranged in a region that includes the vibrational antinode of the elastic body, the rotating body includes a rotating body contact member that receives a drive force by contacting the elastic body contact member, and one of the elastic body contact member and the rotating body contact member has a contact surface that is oriented diagonally to the axis of rotation and contacts the other of the elastic body contact member and the rotating body contact member.
    • 提供一种振动致动器,包括弹性体; 导致弹性体振动的机电换能器; 以及旋转体,其响应于在其振动波腹处与弹性体接触而产生的驱动力而旋转,其中旋转体沿着旋转轴线延伸的方向在规定位置处接触弹性体。 在振动促动器中,弹性体包括弹性体接触构件,该弹性体接触构件布置在包括弹性体的振动波腹的区域中,旋转体包括旋转体接触构件,该旋转体接触构件通过使弹性体接触 所述弹性体接触构件和所述旋转体接触构件中的一个具有与所述旋转轴线对角定向并且与所述弹性体接触构件和所述旋转体接触构件中的另一个接触的接触面。
    • 7. 发明申请
    • Microactuator device and optical switching system using the same
    • 微致动器装置和使用其的光开关系统
    • US20050213878A1
    • 2005-09-29
    • US11099253
    • 2005-04-04
    • Keiichi AkagawaYoshihiko SuzukiKatsuhiko KurumadaToshiaki TamamuraMasatoshi Kanaya
    • Keiichi AkagawaYoshihiko SuzukiKatsuhiko KurumadaToshiaki TamamuraMasatoshi Kanaya
    • B81B3/00B81B7/04G01P15/125G02B6/26G02B6/35G02B6/42G02B26/08G02F1/09H02K33/18H02K41/035
    • G02B6/358G02B6/3516G02B6/3546G02B6/357G02B6/3572G02B6/3584G02B26/0858H02K33/18H02K41/0354
    • A movable plate 21 is fastened to a substrate 11 via flexure parts 27a and 27b, and can move upward and downward with respect to the substrate 11. The substrate 11 also serves as a fixed electrode. The movable plate 21 has second electrode parts 23a and 23b which can generate an electrostatic force between these electrode parts and the substrate 11 by means of a voltage that is applied across these electrode parts and the substrate 11, and a current path 25 which is disposed in a magnetic field, and which generates a Lorentz force when powered. A mirror 12 which advances into and withdraws from the optical path is disposed on the movable plate 21. When the movable plate 21 is caused to move from the lower position in which the electrostatic force is increased to the upper position, the control part controls the current so that the Lorentz force is generated in a downward orientation and gradually decreases while the movable plate 21 is moving from an intermediate position to the upper position. As a result, the mobility range of the movable part can be expanded without applying a high voltage or sacrificing compact size, and the power consumption can be reduced; furthermore, the reliability in the case of long-term operation can be increased.
    • 可移动板21通过挠曲部件27a和27b固定到基板11上,并且可相对于基板11上下移动。 基板11也用作固定电极。 可移动板21具有第二电极部分23a和23b,其可以通过施加在这些电极部分和基板11上的电压而在这些电极部分和基板11之间产生静电力,以及电流通路25, 被设置在磁场中,并且当通电时产生洛伦兹力。 在可动板21上设置有从光路前进和退出的反射镜12。 当可动板21从静电力增加的下部位置移动到上部位置时,控制部分控制电流,使得向下方向产生洛伦兹力并逐渐减小,而可动板21 从中间位置移动到上位置。 结果,可以在不施加高电压或牺牲紧凑尺寸的情况下扩大可移动部件的移动范围,并且可以降低功耗; 此外,可以增加长期运行情况下的可靠性。
    • 9. 发明授权
    • Assembly device for stacked ring
    • 堆叠环组装装置
    • US06868300B2
    • 2005-03-15
    • US10380217
    • 2001-08-15
    • Koji SaitoYoshihiko Suzuki
    • Koji SaitoYoshihiko Suzuki
    • B23P19/04F16G5/16G05B19/042G05B19/418B23P21/00
    • G05B19/41805B23P19/04F16G5/16G05B2219/32082G05B2219/35162G05B2219/49011Y02P90/04Y02P90/20Y10T29/49826
    • Component data including data of the circumferential length values of ring components 4 stored by a component storage facility 10 are managed by a component data managing unit 15. A processing unit 16 performs combinatorial trial calculations on the component data under a plurality of kinds of combinatorial conditions, generating lamination combinatorial data of component data of all layers of a laminated ring. A combinatorial condition which maximizes the number of generated lamination combinatorial data is used as an adequate combinatorial condition. A set of ring components that make up a laminated ring to be actually assembly is selected and unloaded based on lamination combinatorial data generated under the adequate combinatorial condition, and assembled into a laminated ring. With this arrangement, an increased number of laminated rings can efficiently be produced, and the mass-productivity of laminated rings can be increased.
    • 包括由组件存储设备10存储的环组件4的周长值的数据的组件数据由组件数据管理单元15管理。处理单元16对多种组合条件下的组件数据进行组合试验计算 ,生成层叠环的所有层的分量数据的层叠组合数据。 将生成的层叠组合数据的数量最大化的组合条件用作适当的组合条件。 基于在适当的组合条件下生成的层叠组合数据,选择和卸载组成实际组装的层叠环的一组环组件,并组装成层压环。 通过这种布置,可以有效地生产增加数量的层叠环,并且可以提高层压环的批量生产率。