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    • 12. 发明申请
    • ELECTRIC POWER-STEERING DEVICE
    • 电动转向装置
    • US20150336604A1
    • 2015-11-26
    • US14762030
    • 2013-01-24
    • Shingo URABABAHiroyuki TOYODATakayuki MATSUNO
    • Shingo URABABAHiroyuki TOYODATakayuki MATSUNO
    • B62D5/04B62D5/00
    • B62D5/0412B62D5/001B62D5/0424B62D5/043F16H35/10
    • An electric power-steering device 100 comprises a steering mechanism 10, an electric motor 20 which outputs an assist force to this steering mechanism 10, a transmission mechanism 30 which comprises toothed pulleys 31, 32 and a toothed belt 33 and transmits the output power of the electric motor 20 to the steering mechanism 10, and a torque limiter 40 which sets a limit on the extent of the torque transmitted between the electric motor 20 and an output member (11) of the steering mechanism 10. In this electric power-steering device 100, a variation lower limit of a teeth jump torque at which a teeth jump occurs between the toothed pulleys 31, 32 and the toothed belt 33 is set at a value larger than a variation upper limit of a limit torque in the torque limiter 40. Therefore, when a torque which exceeds a normal torque occurs at a motive-power transmission system between the electric motor 20 and the steering mechanism 10, the torque limiter 40 functions (acts) before a teeth jump occurs in the transmission mechanism 30.
    • 电动助力转向装置100包括转向机构10,向该转向机构10输出辅助力的电动机20,包括带齿带轮31,32和齿形带33的变速机构30, 转向机构10的电动机20以及转矩限制器40,其设定在电动机20与转向机构10的输出部件(11)之间传递的转矩的范围的限制。在该电动助力转向 装置100中,在带齿带轮31,32与齿形带33之间发生齿跳跃的齿跳转矩的变化下限被设定为大于扭矩限制器40中的限制转矩的变化上限的值 因此,当在电动机20和转向机构10之间的动力传递系统发生超过正常转矩的转矩时,转矩限制器40在齿跳动之前起作用(动作) rs在传动机构30中。
    • 15. 发明授权
    • Optical pickup
    • 光学拾音
    • US08284640B2
    • 2012-10-09
    • US12414718
    • 2009-03-31
    • Hiroyuki ToyodaTakehiro HayamaJunichi SengaHitoshi MatsushimaTakayuki Fujimoto
    • Hiroyuki ToyodaTakehiro HayamaJunichi SengaHitoshi MatsushimaTakayuki Fujimoto
    • G11B7/00
    • G11B7/08582G11B7/0933G11B7/0935
    • An optical pickup, having an optical pickup housing made of resin, for maintaining the heat radiation performance or capacity of a semiconductor laser, also an objective lens driving mechanism, and further a driver IC for the semiconductor laser, while keeping small-size and light-weight thereof, comprises a pickup housing, in which an optical part and a semiconductor laser are fixed; an objective lens, which is attached within the pickup housing; and an objective lens driving mechanism, which is configured to drive the objective lens, further comprising: a metal-made bottom cover, which is configured to cover a lower surface of the pickup housing and a side surface of an inner periphery of an optical disc, wherein the metal-made bottom cover and the semiconductor laser are thermally connected with each other.
    • 一种具有由树脂制成的光学拾取器壳体的光学拾取器,用于保持半导体激光器的散热性能或容量,以及物镜驱动机构,以及用于半导体激光器的驱动器IC,同时保持小尺寸和轻 其重量包括其中固定有光学部件和半导体激光器的拾取器壳体; 物镜,其附接在拾取器壳体内; 以及被配置为驱动物镜的物镜驱动机构,还包括:金属制的底盖,其被构造成覆盖所述拾取器壳体的下表面和光盘的内周的侧表面 其中金属制的底盖和半导体激光器彼此热连接。
    • 20. 发明授权
    • Apparatus for measuring deposition speed of electroless plating
    • 用于测量化学镀的沉积速度的装置
    • US5270659A
    • 1993-12-14
    • US777580
    • 1991-10-16
    • Hiroyuki ToyodaTakeshi Shimazaki
    • Hiroyuki ToyodaTakeshi Shimazaki
    • G01N27/26C23C18/16C23C18/31G01N17/02G01N27/06G01N27/416G01N27/49G01N27/07
    • C23C18/1675C23C18/1619G01N17/02G01N27/49
    • An electroless plating deposition speed measuring apparatus is provided with a sensor having an electrode couple whose pair of electrodes are opposed to each other and a sensor drive circuit that cyclically applies voltage to the electrode couple to measure a polarization resistance between the pair of electrodes of the electrode couple. Measuring data from the sensor drive circuit are supplied to a processing circuit. The processing circuit computes and processes the measuring data to find the plating deposition speed. Data of the plating deposition speed from the processing circuit are supplied to a display circuit to display the data of the plating deposition speed. In a preferred embodiment, each of the pair of electrodes of the electrode couple has a conductor and a non-conductor, wherein the surfaces of the conductors and the non-conductors of the respective electrodes are arranged in facing and opposite relation to each other. Each of the conductors is made of a noble-metal material, such as copper, gold, platinum, palladium or the like, while each of the non-conductors is made of an alkaliproof non-conductive material, such as epoxy resin, epoxy resin of a glass base material, or the like.
    • 无电解电镀沉积速度测量装置设置有具有彼此相对的一对电极的电极对的传感器和向电极对循环施加电压的传感器驱动电路,以测量电极对的一对电极之间的极化电阻 电极对。 来自传感器驱动电路的测量数据被提供给处理电路。 处理电路计算和处理测量数据以找到电镀沉积速度。 来自处理电路的电镀沉积速度的数据被提供给显示电路以显示电镀沉积速度的数据。 在优选实施例中,电极对的每对电极中的每一个具有导体和非导体,其中导体的表面和各个电极的非导体彼此面对和相对地布置。 每个导体由诸如铜,金,铂,钯等的贵金属材料制成,而每个非导体由碱性非导电材料制成,例如环氧树脂,环氧树脂 的玻璃基材等。