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    • 21. 发明授权
    • Shooter for snow remover
    • 射击者除雪机
    • US07841111B2
    • 2010-11-30
    • US11493750
    • 2006-07-26
    • Hiroshi SueshigeKeiji NaganoNobuyuki Hirose
    • Hiroshi SueshigeKeiji NaganoNobuyuki Hirose
    • E01H5/09F16F7/00
    • E01H5/045
    • A shooter for a snow remover has a shooter main body configured to be rotatably mounted on an auger housing of a snow remover for ejecting snow collected by an auger of the snow remover. A shooter guide is swingably mounted on a top end of the shooter main body to undergo swinging movement from an initial state thereof so as to allow adjustment of an angle of projection of the snow ejected from the shooter main body. A torsion spring has a single coil and is connected between the shooter main body and the shooter guide for urging the shooter guide to return to the initial state thereof. Vibration-reducing members are inserted into the single coil of the torsion spring so as to be in physical contact with one another and to surround and support an entire inner periphery of the single coil for reducing vibration and deformation in a radial direction of the torsion spring.
    • 用于除雪机的射手具有射击器主体,其构造成可旋转地安装在除雪器的螺旋推运器壳体上,用于排出由除雪器的螺旋钻收集的积雪。 射击引导件可摆动地安装在射击主体的顶端,以从其初始状态进行摆动,以便调节从射手主体喷出的雪的投影角度。 扭簧具有单个线圈并且连接在射击器主体和射击引导件之间,用于迫使射击引导件返回其初始状态。 减振构件被插入到扭簧的单个线圈中,以便彼此物理接触,并围绕和支撑单个线圈的整个内周,用于减小扭簧的径向振动和变形 。
    • 22. 发明授权
    • Driving apparatus
    • 驱动装置
    • US07791247B2
    • 2010-09-07
    • US11719497
    • 2006-07-20
    • Norihiko KikuchiNobuyuki Hirose
    • Norihiko KikuchiNobuyuki Hirose
    • H01L41/00
    • H02N2/062G02B7/102G03B3/10H02N2/025
    • An automatic focus camera Unit 10, comprises; a piezoelectric element 13a; a driving shaft 13b to be driven by the piezoelectric element 13a; a moving unit 13c to be moved with respect to the driving shaft 13b by a friction force caused by the driving shaft 13b; a microcomputer unit 24 for controlling power supply to the piezoelectric element 13a, and in which the microcomputer unit 24 assumes a preprocessing mode of calculating an amount of adjustment for a power supply time in accordance with a moving direction of the moving unit 13c, and a movement controlling mode of adjusting the supply time and controlling power supply based on the moving direction and the amount of adjustment. In the preprocessing mode, the moving unit 13c is controlled based on the detecting result of the base end sensor 15 and moved in forward and backward directions using the base end position 15a as a reference point, and the amount of adjustment is calculated based on the supply time for which power is supplied while the moving unit 13c is moved in the forward direction and the supply time for which power is supplied while the moving unit 13c is moved in backward direction.
    • 自动对焦摄像机单元10包括: 压电元件13a; 由压电元件13a驱动的驱动轴13b; 通过由驱动轴13b产生的摩擦力相对于驱动轴13b移动的移动单元13c; 用于控制对压电元件13a的供电的微计算机单元24,其中微型计算机单元24采取根据移动单元13c的移动方向计算供电时间的调整量的预处理模式,以及 运动控制模式,根据移动方向和调整量调节供电时间和控制电源。 在预处理模式中,基于基端传感器15的检测结果,使用基端位置15a作为基准点,在前后方向上移动移动单元13c,并且基于 在移动单元13c沿向前方向移动的同时,在移动单元13c向后移动的同时,供应电力的供给时间和供给时间。
    • 23. 发明授权
    • Spring device and timepiece
    • 弹簧装置和钟表
    • US07780342B2
    • 2010-08-24
    • US12207164
    • 2008-09-09
    • Osamu TakahashiNobuyuki HiroseMasaaki MaejimaMasatoshi Moteki
    • Osamu TakahashiNobuyuki HiroseMasaaki MaejimaMasatoshi Moteki
    • G04B1/10
    • G04B1/10G04B9/02
    • A spring device having an inside-end wheel that moves in conjunction with the inside end of a mainspring; an outside-end wheel that moves in conjunction with the outside end of the mainspring; a torque return unit that transfers part of the output torque of the mainspring from one to the other of the inside-end wheel and outside-end wheel; a duration time indicating unit that operates in conjunction with both the inside-end wheel and outside-end wheel and indicates the number of winds in the mainspring; and a torque transfer clutch unit that disengages torque transfer between the inside-end wheel and outside-end wheel by means of the torque return unit when the mainspring unwinds and the duration time indicating unit indicates a predetermined reference number of winds.
    • 弹簧装置,其具有与主发条的内端一起移动的内端轮; 与主发条的外端一起移动的外端轮; 转矩返回单元,其将主发条的输出转矩的一部分从内端轮和外端轮中的一个转移到另一个; 持续时间指示单元,其与内端轮和外端轮一起操作并且指示主发条中的风数; 以及扭矩传递离合器单元,当发条退绕和持续时间指示单元指示预定的参考数量时,借助于转矩返回单元使内端轮和外端轮之间的转矩传递脱离。
    • 24. 发明申请
    • DRIVING APPARATUS
    • 驱动装置
    • US20090146602A1
    • 2009-06-11
    • US11719497
    • 2006-07-20
    • Norihiko KikuchiNobuyuki Hirose
    • Norihiko KikuchiNobuyuki Hirose
    • G05G5/04H02N2/06
    • H02N2/062G02B7/102G03B3/10H02N2/025
    • [Problems] It is therefore an object of the present invention to provide a driving apparatus which can be reduced in the number of complete parts in comparison with the conventional driving apparatus.[Means for Solving Problems] An automatic focus camera unit 10, comprises; a piezoelectric element 13a; a driving shaft 13b to be driven by the piezoelectric element 13a; a moving unit 13c to be moved with respect to the driving shaft 13b by a friction force caused by the driving shaft 13b; a microcomputer unit 24 for controlling power supply to the piezoelectric element 13a, and in which the microcomputer unit 24 assumes a preprocessing mode of calculating an amount of adjustment for a power supply time in accordance with a moving direction of the moving unit 13c, and a movement controlling mode of adjusting the supply time and controlling power supply based on the moving direction and the amount of adjustment. In the preprocessing mode, the moving unit 13c is controlled based on the detecting result of the base end sensor 15 and moved in forward and backward directions using the base end position 15a as a reference point, and the amount of adjustment is calculated based on the supply time for which power is supplied while the moving unit 13c is moved in the forward direction and the supply time for which power is supplied while the moving unit 13c is moved in backward direction.
    • 发明内容因此,本发明的目的在于提供一种驱动装置,与传统的驱动装置相比,能够减少完整部件的数量。 解决问题的手段自动聚焦照相机单元10包括: 压电元件13a; 由压电元件13a驱动的驱动轴13b; 通过由驱动轴13b产生的摩擦力相对于驱动轴13b移动的移动单元13c; 用于控制对压电元件13a的供电的微计算机单元24,其中微型计算机单元24采取根据移动单元13c的移动方向计算供电时间的调整量的预处理模式,以及 运动控制模式,根据移动方向和调整量调节供电时间和控制电源。 在预处理模式中,基于基端传感器15的检测结果,使用基端位置15a作为基准点,在前后方向上移动移动单元13c,并且基于 在移动单元13c沿向前方向移动的同时,在移动单元13c向后移动的同时,供应电力的供给时间和供给时间。