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    • 2. 发明授权
    • Carriage recording head sandwiched by electromagnetic coil sections
    • 托架记录头夹在电磁线圈段上
    • US4823219A
    • 1989-04-18
    • US54778
    • 1987-05-27
    • Takaharu UedaTakashi YumuraTetsu YamamotoKiyosi Funai
    • Takaharu UedaTakashi YumuraTetsu YamamotoKiyosi Funai
    • G11B7/085G11B21/02G11B5/55G11B21/08
    • G11B7/08582G11B21/02
    • A carriage assembly for a disc operating apparatus comprising a frame, a carriage movably supported in the frame relative to the disc, an optical lens or magnetic head mounted on the carriage for recording and reproducing information on the disc, and a radial guide arrangement permitting movement of the carriage in a radial direction relative to the disc. The assembly also comprises a radial drive arrangement including an electromagnetic coil mounted to the carriage and a permanent magnet mounted to the frame. The permanent magnet is electromagnetically coupled with the electromagnetic coil for driving the carriage in the radial direction of the disc. The electromagnetic coil includes two sections which sandwich the carriage and are shaped to come into contact with each other at both sides thereof, whereby the cross section of the electromagnetic coil is hexagonal in a plane parallel to a surface of the disc. As a result, the dimensions in the radial direction of the carriage assembly are decreased.
    • 一种用于盘操作装置的托架组件,包括框架,相对于盘可移动地支撑在框架中的托架,安装在滑架上的用于在盘上记录和再现信息的光学透镜或磁头,以及允许运动的径向引导装置 相对于盘的径向方向。 组件还包括径向驱动装置,其包括安装到滑架的电磁线圈和安装到框架上的永磁体。 永磁体与电磁线圈电磁耦合,用于沿盘的径向驱动托架。 电磁线圈包括夹着托架的两个部分,并且成形为在其两侧彼此接触,由此电磁线圈的横截面在平行于盘表面的平面中为六边形。 结果,滑架组件的径向尺寸减小。
    • 4. 发明授权
    • Magnetic head suspension assembly for reducing vibration effects
    • 磁头悬挂组件,用于减少振动的影响
    • US5079660A
    • 1992-01-07
    • US374237
    • 1989-06-29
    • Takashi YumuraTetsu YamamotoTakaharu UedaMayumi NakazawaShigeki Mizuno
    • Takashi YumuraTetsu YamamotoTakaharu UedaMayumi NakazawaShigeki Mizuno
    • G11B5/48
    • G11B5/4886
    • An in-line type magnetic head supporting apparatus of the present invention including a first fixed part secured to a magnetic head slider mounted with a magnetic head in a floatable manner, a second fixed part secured to a load beam which presses the magnetic head slider toward the magnetic disc, and a gimbal mechanism comprising a spring part connecting the first and second fixed parts and enabling the pitching and rolling movements of the magnetic head slider in the radial direction of the magnetic disc, and further includes a restricting mechanism for preventing the sideslip of a pivot formed on the first fixed part as a fulcrum for pitching and rolling movements. Furthermore, in order to increase the flexural rigidity of the spring part of the gimbal mechanism in the radial direction, its lateral length is enlarged and slits are formed in the spring part to reduce the torsional rigidity thereby to prevent the inteference of the pitching and rolling movements.
    • 本发明的在线式磁头支撑装置包括固定在可浮动的方式安装有磁头的磁头滑块的第一固定部件,固定到负载梁上的第二固定部件,该负载梁将磁头滑块朝向 磁盘和万向架机构,其包括连接第一和第二固定部分的弹簧部分,并且使得磁头滑块在磁盘的径向上的俯仰和滚动运动,并且还包括限制机构,用于防止侧滑 形成在第一固定部分上的枢轴作为用于俯仰和滚动运动的支点。 此外,为了提高万向节机构的弹簧部的径向的弯曲刚性,其横向长度扩大,并且在弹簧部形成狭缝以降低扭转刚度,从而防止俯仰和滚动的干涉 动作。
    • 5. 发明授权
    • Reflector oscillating apparatus
    • 反光镜振荡装置
    • US5099352A
    • 1992-03-24
    • US594483
    • 1990-10-05
    • Tetsu YamamotoTakaharu UedaDaisuke OgataKiyoshi FunaiTakashi YumuraShigeki Mizuno
    • Tetsu YamamotoTakaharu UedaDaisuke OgataKiyoshi FunaiTakashi YumuraShigeki Mizuno
    • G02B26/08
    • G02B26/0816
    • Provided is a reflector oscillating apparatus in which the positions of a reflector and a compensating plate are detected so as to perform positioning with a high degree of positional accuracy (closed-loop control). Further, since the reflector and the compensating plate are driven by a couple of forces, no reaction forces by drive forces are applied to a rotary shaft and a support section, and accordingly, it is possible to enhance the positioning accuracy and to realize a short transient time and a large amplitude. Further, the magnetic circuit is commonly used so that the dimensions of a motor, that is, the height thereof in particular, can be reduced, irrespective of a large drive force. Accordingly, the reflector oscillating apparatus can be greatly miniaturized. Further, by commonly using the magnetic circuit, the impedance of the coil can be reduced, thereby it is possible to drive the apparatus at a high speed with a low drive voltage.
    • 提供了一种反射器振荡装置,其中检测反射器和补偿板的位置,以便以高位置精度(闭环控制)进行定位。 此外,由于反射器和补偿板由一对力驱动,因此驱动力没有反作用力施加到旋转轴和支撑部,因此,可以提高定位精度并实现短 瞬时时间和幅度较大。 此外,通常使用磁路,使得马达的尺寸,特别是其高度可以减小,而与大的驱动力无关。 因此,反射器振荡装置可以大大地小型化。 此外,通过通常使用磁路,可以减少线圈的阻抗,从而可以以低驱动电压高速驱动装置。
    • 8. 发明授权
    • Device for elevator door control based on a detected object
    • 基于检测对象的电梯门控制装置
    • US07992687B2
    • 2011-08-09
    • US12090288
    • 2006-03-20
    • Takashi YumuraTakaharu Ueda
    • Takashi YumuraTakaharu Ueda
    • B66B13/14
    • B66B13/26
    • A door device for an elevator is provided with an elevator door for opening/closing a doorway through which an interior of a car communicates with a landing, a distance sensor for continuously detecting a distance from the doorway to a passenger at the landing, a processing device for obtaining a door control command corresponding to information from the distance sensor, and a door control device for controlling a movement of the elevator door based on the door control command from the processing device. Thus, the elevator door can be moved in accordance with the movement of the passenger. Accordingly, the passenger is allowed to board the car more reliably, and a running efficiency of the elevator can be enhanced.
    • 电梯的门装置设有电梯门,用于打开/关闭轿厢内部与着陆部相连通的门口,距离传感器,用于连续地检测在着陆处从门口到乘客的距离,处理 用于获得与来自距离传感器的信息相对应的门控制命令的装置;以及门控制装置,用于根据来自处理装置的门控制命令来控制电梯门的移动。 因此,可以根据乘客的移动来移动电梯门。 因此,能够更可靠地搭乘乘客,能够提高电梯的行驶效率。
    • 9. 发明授权
    • Emergency stop system for elevator
    • 电梯紧急停机系统
    • US07918320B2
    • 2011-04-05
    • US12095025
    • 2005-11-25
    • Rikio KondoTakaharu UedaHiroshi KigawaKen-Ichi OkamotoTakashi Yumura
    • Rikio KondoTakaharu UedaHiroshi KigawaKen-Ichi OkamotoTakashi Yumura
    • B66B1/32
    • B66B5/02B66B1/32B66B5/0031
    • An emergency stop system for an elevator includes a state sensor for detecting an operation of a car, a brake device for braking the car, a brake controller for outputting a signal for operating the brake device based on a signal detected by the state sensor, and an uninterruptible power supply device for supplying electric power to the sensor, the brake device, and the controller. The controller has a signal processing/calculating unit for calculating the deceleration of the car based on the signal detected by the sensor, a command value calculating unit for calculating a command value for operating the brake device based on the deceleration of the car calculated by the processing/calculating unit, and a power monitoring device for monitoring state of the uninterruptible power supply device. At least one of the sensor, the processing/calculating unit, and the calculating unit includes independent systems.
    • 一种用于电梯的紧急停止系统包括用于检测汽车操作的状态传感器,用于制动轿厢的制动装置,用于根据状态传感器检测到的信号输出用于操作制动装置的信号的制动控制器,以及 用于向传感器,制动装置和控制器供电的不间断电源装置。 控制器具有信号处理/计算单元,用于根据由传感器检测到的信号来计算轿厢的减速度;指令值计算单元,用于根据由该传感器计算的轿厢的减速度,计算用于操作制动装置的指令值 处理/计算单元,以及用于监视不间断电源装置的状态的电力监视装置。 传感器,处理/计算单元和计算单元中的至少一个包括独立的系统。
    • 10. 发明申请
    • ELEVATOR APPARATUS
    • 电梯装置
    • US20090236184A1
    • 2009-09-24
    • US11721251
    • 2005-09-30
    • Takaharu UedaMasaya SakaiTakashi Yumura
    • Takaharu UedaMasaya SakaiTakashi Yumura
    • B66B1/06
    • B66B5/0031B66B5/0025
    • An elevator apparatus is equipped with an elevator component that is operated during operation of an elevator, a detector for measuring a change in a physical quantity other than temperature as to the elevator component, and a control device for controlling the operation of the elevator based on information from the detector. The elevator component is, for example, a hoisting machine for moving a car of the elevator. The hoisting machine has a motor, and a driving sheave that is rotated by the motor. The detector measures a strain of a frame of the motor as the physical quantity other than temperature. The control device determines based on the strain of the frame of the motor whether or not there is an abnormality in the operation of the elevator, and controls the operation of the elevator. It is therefore possible to determine easily and more reliably whether or not there is an abnormality in the operation of the elevator, without the need to directly measure the temperature of the motor (6).
    • 电梯装置配备有在电梯操作期间操作的电梯部件,用于测量关于电梯部件的温度以外的物理量的变化的检测器,以及用于控制电梯的操作的控制装置 来自检测器的信息。 电梯部件例如是用于使电梯轿厢移动的起重机。 起重机具有电动机和由电动机旋转的驱动绳轮。 检测器测量电动机的框架的应变作为温度以外的物理量。 控制装置基于电动机的框架的应变来判定电梯的动作是否有异常,并且控制电梯的动作。 因此,无需直接测量电动机(6)的温度,因此可以容易且可靠地确定电梯的运行是否有异常。