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    • 3. 发明公开
    • WIRELESS POWER SUPPLY DEVICE
    • EP3859939A1
    • 2021-08-04
    • EP20212406.1
    • 2020-12-08
    • SMK Corporation
    • YONEZAWA, Satoshi
    • H02J50/12B62M6/50G01L3/10H01F38/18H02J50/50
    • There is provided a wireless power supply device capable of being assembled through an easy process of electrically connecting both ends of a power transmitting LC circuit to an electrically-conductive case that forms a resonant cavity. The wireless power supply device includes the electrically-conductive case that accommodates a power transmitting circuit board and a power receiving LC circuit in the resonant cavity formed therein and surrounded by an electrically-conductive plate with the both ends of the power transmitting LC circuit being connected to the electrically-conductive plate. In the resonant cavity, a power transmitting coil and a power receiving coil resonate magnetically so as to supply power of an AC voltage signal to a load. The both ends of the power transmitting LC circuit are electrically connected to the electrically-conductive case using a pair of electrically-conductive attachment units configured to attach the power transmitting circuit board to an inner wall surface of the electrically-conductive case. In the step of attaching the power transmitting circuit board to the electrically-conductive case, the both ends of the power transmitting LC circuit can be electrically connected to the electrically-conductive case.
    • 7. 发明公开
    • VIBRATION GENERATING APPARATUS FOR ELECTRONIC DEVICE
    • 电子设备用振动发生装置
    • EP3267296A1
    • 2018-01-10
    • EP15804299.4
    • 2015-06-10
    • SMK Corporation
    • FUJII, KatsuhitoMATSUDA, TakeshiWATANABE, YoshinoriAKITA, Yuki
    • G06F3/041G06F3/01
    • G06F3/016
    • A vibration generation apparatus includes a holder (2) including a receiver disposed with a distance from a vibration target component (1) on the outside thereof, an actuator (3) supported by the receiver and configured to push out one side surface of the vibration target component, and biasing means (4) supported by the receiver and configured to bias the other side surface of the vibration target component in a pushing-back direction. The biasing means (4) includes one or more insulating elastic members opening at both ends thereof and formed in a tubular shape, and the elastic members are interposed between the receiver and the vibration target component side surface in the state in which the elastic members are compressed in a tube diameter direction.
    • 本发明提供一种振动产生装置,其包括:保持器(2),该保持器包括在外侧与振动对象部件(1)隔开距离配置的承受部;致动器(3),其被支承在该承受器上并且被构造成将振动的一个侧面 目标部件和偏置装置(4),所述偏置装置由所述接收器支撑并且被构造成沿着推回方向偏置所述振动目标部件的所述另一侧表面。 偏置装置(4)包括在其两端开口并形成为管状的一个或多个绝缘弹性构件,并且弹性构件在弹性构件是弹性构件的状态下介于接收器和振动目标构件侧表面之间 沿管径方向压缩。
    • 9. 发明公开
    • DRIVE DEVICE AND MOUNTING STRUCTURE THEREOF
    • 驱动装置及其安装结构
    • EP3211227A1
    • 2017-08-30
    • EP15804300.0
    • 2015-04-09
    • SMK Corporation
    • FUJII, KatsuhitoMATSUDA, TakeshiWATANABE, YoshinoriAKITA, Yuki
    • F03G7/06
    • F03G7/065F16M13/02H02N10/00
    • A drive unit 1 includes a base member 3 having an operation base 32 having operation recesses 31, 31, ... in a front surface, a movable member 4 that is disposed to be opposite to the base member 3 and has operation projections 41 to be inserted into the operation recesses 31 in an opposed surface, and a shape memory alloy member 2 that is disposed between the base member 3 and the movable member 4 and shrinks by heat generated by passing an electric current. In conjunction with the shrinkage of the shape memory alloy member 2 by the passage of the electric current, the movable member 4 is moved in a direction away from the base member 3. The base member 3 has a fixed portion in its middle in a core axial direction of the shape memory alloy member, to fix the middle on a support member A.
    • 驱动单元1包括基座构件3,该基座构件3具有在前表面中具有操作凹部31,31,...的操作基座32;可移动构件4,其被设置为与基座构件3相对并且具有操作突起41至 被插入相对表面中的操作凹槽31中;以及形状记忆合金构件2,其设置在基体构件3和可动构件4之间并且通过通过通电所产生的热量而收缩。 随着电流通过形状记忆合金构件2的收缩,可动构件4沿远离基座构件3的方向移动。基座构件3在其中心处具有固定部分 在形状记忆合金构件的轴向上,将中间部分固定在支撑构件A上。