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    • 2. 发明授权
    • Linear oscillating actuator
    • 线性振荡致动器
    • US06559563B1
    • 2003-05-06
    • US09874983
    • 2001-06-07
    • Hiroaki ShimizuRyo MotohashiHidekazu YabuuchiTakahiro NishinakaNoboru Kobayashi
    • Hiroaki ShimizuRyo MotohashiHidekazu YabuuchiTakahiro NishinakaNoboru Kobayashi
    • H02K106
    • H02K33/10B26B19/282B26B19/288
    • An improved linear oscillating actuator is capable of minimizing the undesired vibrations while moving first and second oscillators in parallel paths. The first and second oscillators carry first and second drive elements respectively for driving connection to individual reciprocating loads. The first and second drive elements project upwardly respectively from the first and second oscillators such that the first drive element is disposed immediately upwardly of the second oscillator and the second drive elements is disposed immediately upwardly of the first oscillator. With this reverse arrangement of the first and second drive elements relative to the first and second oscillators, the individual oscillating systems each including the oscillator, the drive element and the corresponding reciprocating load can have its mass center disposed in close proximity to a mass center of the actuator, thereby enabling to reduce undesired vibrations which would otherwise occur around the mass center of the actuator.
    • 改进的线性振荡致动器能够在以平行路径移动第一和第二振荡器的同时最小化不期望的振动。 第一和第二振荡器分别携带第一和第二驱动元件用于驱动连接到各个往复运动的负载。 第一和第二驱动元件分别从第一和第二振荡器向上突出,使得第一驱动元件立即设置在第二振荡器的上方,并且第二驱动元件紧邻第一振荡器的上方设置。 通过第一和第二驱动元件相对于第一和第二振荡器的相反布置,每个包括振荡器,驱动元件和相应的往复运动负载的各个振荡系统可以使其质心集中在靠近质量中心 致动器,从而能够减少否则将在致动器的质心周围发生的不期望的振动。
    • 6. 发明申请
    • Linear oscillating actuator system
    • 线性摆动致动器系统
    • US20050134123A1
    • 2005-06-23
    • US11013331
    • 2004-12-17
    • Noboru KobayashiMasashi MoriguchiTakahiro NishinakaHidekazu YabuuchiRyo Motohashi
    • Noboru KobayashiMasashi MoriguchiTakahiro NishinakaHidekazu YabuuchiRyo Motohashi
    • B26B19/28H02K7/04H02K7/06H02K33/00H02K33/02H02K33/06H02K33/10H02K33/16H02K35/00
    • H02K33/16B26B19/282B26B19/288H02K7/04H02K33/06
    • A linear oscillating actuator system which is capable of canceling out the stator vibrations for driving a load with a minimum of vibrations. The system includes an oscillator carrying a permanent magnet as well as an output shaft for connection to the load. A stator assembly is incorporated within a housing and is configured to movably support the oscillator and to carry an electromagnet. The electromagnet generates a magnetic field which interacts with the permanent magnet to reciprocate the oscillator relative to the stator assembly in a linear path. A balancer is added to the system for canceling out undesired stator vibrations. The balancer are commonly supported to the stator assembly to be driven thereby in parallel with the oscillator. The balancer is configured to have a mass generally equal to that of the oscillator and to be devoid of any output member. Thus, the oscillator and the balancer are driven in a counter reciprocating manner, thereby keeping the stator assembly free from counter-vibrations and therefore driving the output shaft with a maximum output power.
    • 线性振荡致动器系统,其能够消除定子振动,以最小的振动来驱动负载。 该系统包括承载永磁体的振荡器以及用于连接到负载的输出轴。 定子组件结合在壳体内并构造成可移动地支撑振荡器并携带电磁体。 电磁体产生与永磁体相互作用的磁场,以使振荡器相对于定子组件在线性路径中往复运动。 平衡器被添加到系统中以消除不期望的定子振动。 平衡器通常支撑在定子组件上,由此与振荡器平行地驱动。 平衡器被配置为具有大体上等于振荡器的质量并且没有任何输出构件的质量。 因此,振荡器和平衡器以反向往复方式驱动,从而保持定子组件不受反作用振动,从而以最大输出功率驱动输出轴。
    • 9. 发明授权
    • Linear oscillating actuator system
    • 线性摆动致动器系统
    • US07053507B2
    • 2006-05-30
    • US11013331
    • 2004-12-17
    • Noboru KobayashiMasashi MoriguchiTakahiro NishinakaHidekazu YabuuchiRyo Motohashi
    • Noboru KobayashiMasashi MoriguchiTakahiro NishinakaHidekazu YabuuchiRyo Motohashi
    • H02K33/00
    • H02K33/16B26B19/282B26B19/288H02K7/04H02K33/06
    • A linear oscillating actuator system which is capable of canceling out the stator vibrations for driving a load with a minimum of vibrations. The system includes an oscillator carrying a permanent magnet as well as an output shaft for connection to the load. A stator assembly is incorporated within a housing and is configured to movably support the oscillator and to carry an electromagnet. The electromagnet generates a magnetic field which interacts with the permanent magnet to reciprocate the oscillator relative to the stator assembly in a linear path. A balancer is added to the system for canceling out undesired stator vibrations. The balancer are commonly supported to the stator assembly to be driven thereby in parallel with the oscillator. The balancer is configured to have a mass generally equal to that of the oscillator and to be devoid of any output member. Thus, the oscillator and the balancer are driven in a counter reciprocating manner, thereby keeping the stator assembly free from counter-vibrations and therefore driving the output shaft with a maximum output power.
    • 线性振荡致动器系统,其能够消除定子振动,以最小的振动来驱动负载。 该系统包括承载永磁体的振荡器以及用于连接到负载的输出轴。 定子组件结合在壳体内并构造成可移动地支撑振荡器并携带电磁体。 电磁体产生与永磁体相互作用的磁场,以使振荡器相对于定子组件在线性路径中往复运动。 平衡器被添加到系统中以消除不期望的定子振动。 平衡器通常支撑在定子组件上,由此与振荡器平行地驱动。 平衡器被配置为具有大体上等于振荡器的质量并且没有任何输出构件的质量。 因此,振荡器和平衡器以反向往复方式驱动,从而保持定子组件不受反作用振动,从而以最大输出功率驱动输出轴。