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    • 64. 发明授权
    • Power tool
    • 电动工具
    • US08167054B2
    • 2012-05-01
    • US13022671
    • 2011-02-08
    • Keiji NakashimaTakayuki TaharaHajime TakeuchiRyo Sunazuka
    • Keiji NakashimaTakayuki TaharaHajime TakeuchiRyo Sunazuka
    • E02D7/06
    • B25D17/24B25D2222/57
    • It is an object of the invention to provide an effective technique for a motor support structure of a power tool to reduce vibration. A representative reciprocating power tool may include a tool body, a tool bit, a grip, a motor, a tool bit side bearing, a grip side bearing, a tool bit side bearing housing, a grip and an elastic element. The tool bit side bearing housing houses the tool bit side bearing, while the grip side bearing housing houses the grip side bearing. The elastic element is disposed between the grip side bearing housing and the grip wherein the grip side bearing housing is elastically supported by the grip via the elastic element. According to the invention, because the grip is adapted to support the grip side bearing housing via the elastic element and the rigidity of the grip side bearing housing can be increased and vibration of the grip side bearing housing can be reduced. Further, the elastic element can absorb manufacturing errors caused between the tool body and the grip when the grip is mounted to the tool body.
    • 本发明的目的是提供一种用于电动工具的电动机支撑结构以减少振动的有效技术。 代表性的往复动力工具可以包括工具主体,工具钻头,手柄,马达,工具钻头侧轴承,夹持侧轴承,工具头侧轴承壳体,手柄和弹性元件。 工具头侧轴承座容纳工具头侧面轴承,而手柄侧轴承座容纳夹持侧轴承。 弹性元件设置在手柄侧轴承壳体和把手之间,其中握持侧轴承壳体通过弹性元件被手柄弹性支撑。 根据本发明,由于把手用于经由弹性元件支撑抓握侧轴承壳体,并且可以增加抓握侧轴承壳体的刚性,并且可以减小夹持侧轴承壳体的振动。 此外,当把手安装到工具主体时,弹性元件可以吸收在工具主体和把手之间引起的制造误差。
    • 68. 发明申请
    • EXPOSURE APPARATUS AND DEVICE MANUFACTURING METHOD
    • 曝光装置和装置制造方法
    • US20100134775A1
    • 2010-06-03
    • US12624722
    • 2009-11-24
    • Hajime Takeuchi
    • Hajime Takeuchi
    • G03B27/53G03B27/54
    • G03B27/53G03F7/70591
    • An apparatus includes an original stage configured to hold an original, a substrate stage configured to hold a substrate, an illumination optical system configured to illuminate the original with light from a light source, a projection optical system configured to project light from the original to the substrate to expose the substrate, a detector configured to detect first light from a first reflecting member disposed on the original stage and second light from a second reflecting member disposed on the substrate stage produced by illumination with light, wherein either the first or second light travels forward and backward via the projection optical system, and is detected by the detector, and a processor configured to obtain intensities of the first and the second lights based on an output from the detector, and to calculate transmittance of the projection optical system based on the obtained intensities.
    • 一种装置,包括:被配置为保持原稿的原稿台,配置成保持基板的基板台;配置成用来自光源的光来照亮原稿的照明光学系统;投影光学系统,其将来自原稿的光投射到 衬底以露出衬底;检测器,被配置为检测来自设置在原始台上的第一反射部件的第一光和设置在通过用光照射产生的衬底台上的第二反射部件的第二光,其中第一光或第二光行进 通过投影光学系统前后反射,并由检测器检测,以及处理器,其被配置为基于来自检测器的输出获得第一和第二光的强度,并且基于该投影光学系统计算投影光学系统的透射率 获得强度。
    • 69. 发明申请
    • HAMMER DRILL
    • 锤钻
    • US20100096154A1
    • 2010-04-22
    • US12450615
    • 2008-02-22
    • Yasutoshi ShinmaKeiji NakashimaHajime Takeuchi
    • Yasutoshi ShinmaKeiji NakashimaHajime Takeuchi
    • B25D16/00B23B45/16
    • B25D16/006B25D2211/003B25D2216/0015B25D2216/0023B25D2216/0046B25D2250/255
    • Mode switching is reliably performed with a durable and small-sized configuration. A clutch pin (40) is provided in a reduction shaft (34) and configured to be slidable by an operation from outside, and a driven gear (38) is inserted onto the reduction shaft (34) and configured to be rotatable separately from the reduction shaft (34), so that a clutch mechanism is provided. By switching the clutch mechanism, a selection can be made between a hammer drill mode and a hammer mode. Meanwhile, the clutch pin (40) is configured to be slidable to a sliding position where the clutch pin (40) runs through the reduction shaft (34) so as to be capable of protruding upward beyond the reduction shaft (34), and at the sliding position, the clutch pin (40) engages with an engagement hole (46) provided on the tool holder (7) side so that a rotation of the tool holder (7) can be locked, whereby in the hammer mode, a selection can be further made between a neutral state where the clutch pin (40) does not engage with the engagement hole (46) and a rotation locked state where the clutch pin (40) engages with the engagement hole (46).
    • 通过耐用和小型化配置可靠地执行模式切换。 离合器销(40)设置在减速轴(34)中并构造成可以通过外部的操作而滑动,并且从动齿轮(38)插入到减速轴(34)上,并且构造成能够与 减速轴(34),从而设置离合器机构。 通过切换离合器机构,可以在锤击模式和锤击模式之间进行选择。 同时,离合器销40能够滑动到离合器销(40)穿过减速轴(34)的滑动位置,以能够向上突出到减速轴(34)的上方,并且在 所述滑动位置,所述离合器销(40)与设置在所述工具架(7)侧的接合孔(46)接合,使得所述工具架(7)的旋转能够被锁定,由此在所述锤模式中, 可以进一步在离合器销(40)不与接合孔(46)接合的中立状态和离合器销(40)与接合孔(46)接合的旋转锁定状态之间进行。