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    • 12. 发明申请
    • DRIVE CONTROLLER OF OPERATING MACHINE
    • 操作机械驱动控制器
    • US20120259497A1
    • 2012-10-11
    • US13518634
    • 2011-01-11
    • Ryo YamamotoMasahiro YamadaYoji Yudate
    • Ryo YamamotoMasahiro YamadaYoji Yudate
    • E02F9/20
    • B60T8/52B60T8/34B60T8/44E02F9/123E02F9/128E02F9/2095E02F9/2217E02F9/2285E02F9/2296F15B7/006
    • A drive controller of an operating machine configured to drive a structure by a hydraulic motor and an electric motor includes: a remote control valve configured to determine the operation amount of the structure; an electric motor torque calculation portion configured to calculate torque of the electric motor; a hydraulic motor torque calculation portion configured to calculate torque of the hydraulic motor; a controller configured to transmit an opening position control signal to the control valve based on the operation amount determined by the remote control valve such that torque necessary to drive the structure is obtained from the torque of the electric motor and the torque of the hydraulic motor; and solenoid-operated reducing valves and each configured to reduce a pilot pressure, to be applied to the control valve, based on the opening position control signal output from the controller.
    • 一种构造成通过液压马达和电动机驱动结构的操作机器的驱动控制器,包括:远程控制阀,其构造成确定结构的操作量; 电动机转矩计算部,其构成为计算所述电动机的转矩; 液压马达转矩计算部,其构成为计算所述液压马达的扭矩; 控制器,其基于由所述遥控阀确定的操作量,将打开位置控制信号发送到所述控制阀,使得从所述电动机的扭矩和所述液压马达的转矩获得驱动所述结构所需的扭矩; 和电磁操作的减压阀,并且每个都被构造成基于从控制器输出的打开位置控制信号来减小施加到控制阀的先导压力。
    • 13. 发明授权
    • Joystick device
    • 操纵杆装置
    • US06892481B2
    • 2005-05-17
    • US10156332
    • 2002-05-28
    • Ryo YamamotoHideyasu Muraoka
    • Ryo YamamotoHideyasu Muraoka
    • E02F9/20B66C13/18G05G1/06G05G5/05G05G9/047G05D1/02
    • G05G9/047E02F9/2004G05G1/06G05G9/04788G05G9/04792G05G2009/04755G05G2009/04774G05G2009/04781
    • A joystick device is provided including a larger number of proportional control actuators than the prior art thereby enjoying higher operability. Joystick device includes an operation lever having a grip portion provided on a surface thereof with a slide switch substantially T-shaped in section. The slide switch has a web portion connected to an upper surface of a shaft rotatably supported at a lower portion of the operation panel. A magnet is embedded in a lower surface of the shaft. When the operator slides the slide switch, the web portion of the slide switch pivots about the shaft, while the shaft rotates to displace the magnet in accordance with pivotal movement of the web portion. A magnetic sensor detects a variation in magnetic field intensity in accordance with displacement of the magnet, whereby a voltage proportional to the amount of movement of the slide switch is outputted.
    • 提供了一种操纵杆装置,其包括比现有技术更多的比例控制致动器,从而享受更高的可操作性。 操纵杆装置包括操作杆,操作杆具有在其表面上设置有基本上T形截面的滑动开关的把手部分。 滑动开关具有连接到可旋转地支撑在操作面板的下部的轴的上表面的腹板部分。 磁体埋在轴的下表面。 当操作者滑动滑动开关时,滑动开关的腹板部分围绕轴枢转,同时轴旋转以根据腹板部分的枢转运动使磁体移位。 磁传感器根据磁体的位移检测磁场强度的变化,从而输出与滑动开关的移动量成比例的电压。
    • 17. 发明授权
    • Electric motor integrated hydraulic motor
    • 电动机一体式液压马达
    • US08358042B2
    • 2013-01-22
    • US12918959
    • 2008-11-20
    • Masahiro YamadaRyo Yamamoto
    • Masahiro YamadaRyo Yamamoto
    • H02K7/06
    • F03C1/26F03C1/0607F03C1/0663F03C1/22F04B17/03H02K7/00
    • The present invention provides a small-size light-weight electric motor integrated hydraulic motor which is simple in configuration, integrally includes an electric motor and a hydraulic motor, and is capable of efficiently operating, by being configured such that: a swash plate type hydraulic motor and an electric motor driven by the swash plate type hydraulic motor are provided in one casing; the casing is filled with oil; a driving shaft of the swash plate type hydraulic motor is configured to extend from a front end portion of the casing up to a rear end portion thereof and be supported at the front and rear end portions of the casing; the swash plate type hydraulic motor and a rotor of the electric motor are provided in series at the driving shaft; and a stator of the electric motor is fixed to an inner side portion of the casing.
    • 本发明提供了一种结构简单的小型轻型电动机一体式液压马达,其一体包括电动马达和液压马达,并且能够有效地运行,其构造为:斜盘式液压 电动机和由斜盘式液压马达驱动的电动机设置在一个壳体中; 外壳充满油; 斜盘式液压马达的驱动轴构造成从壳体的前端部延伸到其后端部,并且被支撑在壳体的前端部和后端部; 斜盘式液压马达和电动机的转子串联设置在驱动轴上; 并且电动机的定子被固定到壳体的内侧部分。
    • 19. 发明授权
    • Optical transmission component and production method thereof
    • 光传输部件及其制造方法
    • US07510337B2
    • 2009-03-31
    • US11955026
    • 2007-12-12
    • Homare TakedaRyo Yamamoto
    • Homare TakedaRyo Yamamoto
    • G02B6/36G02B6/38
    • G02B6/3865G02B6/29361G02B6/32G02B6/34G02B6/3636G02B6/3652G02B6/3696G02B6/3861G02B6/3885
    • An aspect according to the invention provides a method of producing an optical transmission component in which peel-off and a bubble are not generated within a keeping temperature range in a bonding agent with which a space between an optical function portion and an end face of an optical transmission line is filled while a holder portion for holding the optical transmission line such as an optical fiber and the optical function portion such as a lens array are integrally molded. An optical function array is disposed across the space from a fiber holder, and the optical function array including lenses and a lower-side holder portion are integrally molded by a transparent resin. Fiber cores are placed in V-shape grooves of the lower-side holder portion, and an upper-side holder portion is put on the fiber cores. End faces of the fiber cores face the space, and the space is filled with the bonding agent. When a linear expansion coefficient of the bonding agent is smaller (or larger) than the linear expansion coefficient of the connection portion that connects the optical function array and the lower-side holder portion, the bonding agent is cured at an atmosphere temperature higher than an upper limit (or lower than a lower limit) of a keeping temperature of the optical transmission component.
    • 根据本发明的一个方面提供了一种制造光传输部件的方法,其中在光学功能部分和光学功能部分的端面之间的间隔的粘合剂中,在保持温度范围内不产生剥离和气泡 填充光传输线,同时用于保持诸如光纤的光传输线的保持器部分和诸如透镜阵列的光学功能部分被整体模制。 光纤功能阵列跨越光纤保持器的空间设置,包括透镜和下侧保持器部分的光学功能阵列通过透明树脂一体模制。 纤维芯被放置在下侧保持器部分的V形槽中,并且将上侧保持器部分放置在纤维芯上。 纤维芯的端面面向空间,并且用粘合剂填充空间。 当接合剂的线膨胀系数比连接光学功能阵列和下侧保持器部分的连接部分的线性膨胀系数小(或更大)时,粘合剂在高于 光传输部件的保持温度的上限(或低于下限)。