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    • 1. 发明授权
    • Non-reciprocal circuit device
    • 不可逆电路装置
    • US06844790B2
    • 2005-01-18
    • US10367770
    • 2003-02-19
    • Shinji YamamotoTakefumi Terawaki
    • Shinji YamamotoTakefumi Terawaki
    • H01P1/387H01P1/32H01P1/31
    • H01P1/387
    • A non-reciprocal circuit device comprising a ferrite plate, a magnet disposed opposite to a principal surface of the ferrite plate for applying a DC magnetic field, and a plurality of central conductors disposed on the side of the principal surface of the ferrite plate while crossing each other in an electrically insulating state, wherein (a) at least one of the central conductors is bent in a plane parallel with the principal surface of the ferrite plate, the remainder of the central conductors being straight; (b) the bent central conductor has a ground-side portion inside a bending point and an input/output terminal-connecting-side portion outside the bending point; and wherein (c) an angle θz between the connecting-side portion of the bent central conductor and the straight central conductor or a connecting-side portion of another bent central conductor is larger than an angle θa between the ground-side portion of the bent central conductor and the straight central conductor or a ground-side portion of another bent central conductor.
    • 一种不可逆电路装置,包括铁氧体板,与用于施加DC磁场的铁氧体板的主表面相对设置的磁体,以及多个中心导体,其布置在铁素体板的主表面的一侧,同时穿过 彼此处于电绝缘状态,其中(a)至少一个中心导体在与铁氧体板的主表面平行的平面中弯曲,其余的中心导体是直的; (b)弯曲的中心导体在弯曲点的内部具有接地侧部分和弯曲点外部的输入/输出端子连接侧部分; 并且其中(c)弯曲的中心导体的连接侧部分与直的中心导体或另一个弯曲的中心导体的连接侧部分之间的角度大于弯曲的中心导体的接地侧部分之间的角度θa 中心导体和直的中心导体或另一个弯曲的中心导体的接地侧部分。
    • 7. 发明授权
    • Vibration actuator and method for manufacturing the same
    • 振动致动器及其制造方法
    • US08633632B2
    • 2014-01-21
    • US13052989
    • 2011-03-21
    • Yuki OdaShinji YamamotoAkio Atsuta
    • Yuki OdaShinji YamamotoAkio Atsuta
    • H02N11/00
    • H01L41/35H02N1/008H02N2/001H02N2/005H02N2/0055H02N2/006H02N2/0065H02N2/12H02N2/16H02N2/163H02N2/22Y10T29/42Y10T29/49
    • A vibration actuator includes an elastic body on which at least one projection is formed and a vibrating body including an electromechanical conversion device, and drives a driven member that is in contact with a contact portion of the projection by causing an end portion of the projection to perform an ellipsoidal movement in response to a combination of two vibration modes generated in the vibrating body when an alternating driving voltage is applied. The elastic body is formed integrally with the projection and a bonding portion between the projection and the electromechanical conversion device. A space is provided between the contact portion and the electromechanical conversion device to which the projection is bonded. The spring portion is provided between the bonding portion and the contact portion and causes the projection to exhibit a spring characteristic when the contact portion is pressed by the driven member.
    • 振动致动器包括:弹性体,其上形成有至少一个突起;以及振动体,其包括机电转换装置,并且通过使突起的端部通过突出部的端部驱动与突起的接触部分接触的从动构件 当施加交替的驱动电压时,响应于在振动体中产生的两种振动模式的组合来执行椭圆运动。 弹性体与突起一体地形成,并且在突起和机电转换装置之间形成接合部。 在接触部和与该凸起接合的机电转换装置之间设置有空间。 弹性部分设置在接合部分和接触部分之间,并且当接触部分被被驱动部件按压时,使突起呈现出弹簧特性。
    • 8. 发明授权
    • Image forming apparatus with conveying belt position detection and correction
    • 具有输送带位置检测和校正的图像形成装置
    • US08606153B2
    • 2013-12-10
    • US13030589
    • 2011-02-18
    • Takashi HiratsukaShinji YamamotoYasumi YoshidaToshihiro FukasakaTadashi MatsumotoSumitoshi Sotome
    • Takashi HiratsukaShinji YamamotoYasumi YoshidaToshihiro FukasakaTadashi MatsumotoSumitoshi Sotome
    • G03G15/01
    • G03G15/161G03G15/1615G03G15/50G03G2215/00156
    • An image forming apparatus includes a rotatable belt member; an image forming station; first and second detecting members for detecting widthwise positions of the belt member; first and second steering rollers for correcting the widthwise positions of the belt member by inclination; a control portion configured to control inclinations of the first and second steering rollers on the basis of an output of the first or second detecting member; a first executing portion configured to execute, in a period other than an image formation period, an operation in a correction mode of, in a state that the first steering roller is at a first reference inclination, controlling the second steering roller to correct a second reference inclination of the second steering roller; and a second executing portion configured to execute, in a period other than that of the correction mode operation, an operation in a control mode of controlling the first and second steering rollers on the basis of the first and second reference inclinations.
    • 图像形成装置包括:可转动的带构件; 图像形成站; 第一和第二检测构件,用于检测带构件的宽度方向位置; 第一和第二转向辊,用于通过倾斜校正带部件的宽度方向位置; 控制部,被配置为基于所述第一或第二检测构件的输出来控制所述第一和第二转向辊的倾斜度; 第一执行部,被配置为在除了图像形成期间之外的期间中执行在所述第一转向辊处于第一基准倾斜的状态下的校正模式中的操作,控制所述第二转向辊来校正第二转向辊 第二转向辊的参考倾角; 以及第二执行部,被配置为在除了所述校正模式操作之外的时段中执行基于所述第一和第二参考倾斜度来控制所述第一和第二转向辊的控制模式中的操作。
    • 10. 发明申请
    • VEHICLE
    • 车辆
    • US20130297152A1
    • 2013-11-07
    • US13977942
    • 2012-01-18
    • Koki HayashiYuji TakakuraShinji Yamamoto
    • Koki HayashiYuji TakakuraShinji Yamamoto
    • B62D9/04
    • B62D9/04B60G17/015B60G17/0195B60G2300/122B60G2300/45B60G2400/0533B60G2400/104B60G2400/204B62K5/025B62K5/10
    • The vehicle includes a vehicle body having a steering section and a drive section connected together; a steerable wheel which steers the vehicle body; a drive wheel which drives the vehicle body; an inclination actuator apparatus for inclining the steering section or the drive section in a turning direction; a plurality of sensors which detect lateral accelerations; yaw angular velocity detection means; vehicle speed detection means; and a control apparatus which controls the inclination of the vehicle body by controlling the inclination actuator apparatus. The control apparatus performs feedback control on the basis of the lateral accelerations, calculates a link angular velocity predicted value from the derivative value of the yaw angular velocity and the vehicle speed, and controls the inclination of the vehicle body by performing feedforward control while using the calculated link angular velocity predicted value.
    • 车辆包括具有连接在一起的转向部分和驱动部分的车体; 转向车体的转向轮; 驱动车体的驱动轮; 倾斜致动器装置,用于使转向部或驱动部沿转向方向倾斜; 检测横向加速度的多个传感器; 偏航角速度检测装置; 车速检测手段; 以及通过控制倾斜致动器装置来控制车身倾斜的控制装置。 控制装置基于横向加速度进行反馈控制,根据偏航角速度的导数值和车速计算连杆角速度预测值,并且通过执行前馈控制来控制车体的倾斜,同时使用 计算链接角速度预测值。