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    • 83. 发明授权
    • Workpiece transfer system and workpiece transfer method
    • 工件传送系统和工件传送方式
    • US07762757B2
    • 2010-07-27
    • US11666809
    • 2005-12-14
    • Minoru UedaMasami MitsuhashiNobuo MashinoEisaku AndouYasushi Tokoyo
    • Minoru UedaMasami MitsuhashiNobuo MashinoEisaku AndouYasushi Tokoyo
    • B66C23/00
    • B66C23/18B62D65/12Y10S212/901
    • A workpiece transfer system includes a bracket rotatably supported on a support part, a rotary drive mechanism provided on the support part in order to rotate the bracket, a workpiece support arm swingably and axially supported on the bracket, a swing drive mechanism provided on the bracket in order to swing the workpiece support arm, and a workpiece retainer provided on a tip end part of the workpiece support arm and retaining a workpiece that is to be transferred, the workpiece being inclined by operation of the swing drive mechanism when the rotary drive mechanism is operated so that a center of gravity of the workpiece comes on the vicinity of an axis of rotation of the rotary drive mechanism. This reduces the rotational load on the rotary drive mechanism, and since a small size and a reduction in weight can be achieved for the system, the workpiece transfer system and method enables a single worker to easily give a workpiece an inclination and inversion attitude change.
    • 工件传送系统包括可旋转地支撑在支撑部分上的支架,设置在支撑部分上以便旋转支架的旋转驱动机构,可摆动和轴向地支撑在支架上的工件支撑臂,设置在支架上的摆动驱动机构 为了摆动工件支撑臂,以及设置在工件支撑臂的前端部上的工件保持架,并且保持要被转移的工件,当旋转驱动机构 操作使得工件的重心在旋转驱动机构的旋转轴线附近。 这减小了旋转驱动机构的旋转负载,并且由于系统可以实现小尺寸和重量的减轻,所以工件传送系统和方法使得单个工人能够容易地给予工件倾斜和反转姿态改变。
    • 86. 发明授权
    • Zoom lens, digital camera and portable information device
    • 变焦镜头,数码相机和便携式信息设备
    • US07551365B2
    • 2009-06-23
    • US11595652
    • 2006-11-09
    • Minoru Ueda
    • Minoru Ueda
    • G02B15/14
    • G02B15/177
    • A zoom lens in the present invention is composed of a first lens group G1 having a fixed distance from the image plane side and negative refracting power, a second lens group G2 having positive refracting power and moving during zooming, a third lens group G3 having positive refracting power and moving during zooming, and a fourth lens group G4 having a fixed distance from the image plane side and positive refracting power. The first, the second, the third and the fourth lens groups G1-G4 are arranged in order from the object side to the image plane side. The third lens group G3 includes an aperture stop s, a lens 13 having positive refracting power and a lens 14 having negative refracting power, being arranged in order from the object side to the image plane side. The zoom lens is high performance and large in zoom ratio and is compact due to the simple structure.
    • 本发明中的变焦透镜由具有与像面侧固定距离的第一透镜组G1和负折射率组成,具有正折射力并且在变焦期间移动的第二透镜组G2,具有正的折射率的第三透镜组G3 变焦时的屈光力和移动,以及距离像平面侧具有固定距离的第四透镜组G4和正折射力。 第一,第二,第三和第四透镜组G1-G4从物体侧到像面侧依次布置。 第三透镜组G3包括孔径光阑s,具有正折射率的透镜13和具有负折射光焦度的透镜14,从物体侧到像面侧依次布置。 变焦镜头具有高性能和大的变焦比,并且由于结构简单而紧凑。
    • 88. 发明申请
    • Callus elongating/regenerating device
    • 愈伤组织伸长/再生装置
    • US20070043370A1
    • 2007-02-22
    • US10555812
    • 2004-04-30
    • Minoru UedaHideharu Hibi
    • Minoru UedaHideharu Hibi
    • A61F2/30
    • A61B17/663
    • In a callus elongating/regenerative device (1), a plate (3) is provided in a bar-shaped fashion to move in a three-dimensional direction depending on a pre-mutilated bone shape so as to bridge a mutilated bone portion (2). A bone cut end (8) is severed to produce two bone pieces (4) which are held by brackets (5). The brackets (5) are pulled to move along the plate (3) to three-dimensionally extend a callus (9) osteoplastically formed between a severed bone end (10) and a severed end surface (11). Since the brackets (5) are formed to move while surrounding the plate (3), the sizes of the plate (3) and the brackets (5) are such a degree as to be placed in a wound to-be osteoplastically treated. Thus, the callus (9) can be three-dimensionally extended with a most part of the callus elongating/regenerative device (1) retained in the wound.
    • 在愈伤组织伸长/再生装置(1)中,以条形方式设置板(3),以根据预先造成的骨形状在三维方向上移动,以便桥接残留的骨部分(2 )。 骨切割端(8)被切断以产生由支架(5)保持的两个骨块(4)。 支架(5)被拉动以沿着板(3)移动以三维地延伸骨切割形成在切断的骨端(10)和切断的端表面(11)之间的愈伤组织(9)。 由于托架(5)形成为在围绕板(3)的同时移动,所以板(3)和支架(5)的尺寸为放置在要被骨形成的受伤处理的程度。 因此,愈伤组织(9)可以与保留在伤口中的愈伤组织延长/再生装置(1)的大部分三维地延伸。
    • 89. 发明申请
    • Electronic image pickup device with hand-shake compensation function and camera-equipped portable electronic device
    • 具有手抖补偿功能的电子摄像装置和配备有相机的便携式电子设备
    • US20070035631A1
    • 2007-02-15
    • US11502273
    • 2006-08-09
    • Minoru Ueda
    • Minoru Ueda
    • G03B17/00H04N5/228
    • G03B17/17G02B27/646G03B5/00G03B2205/0023G03B2205/0061G03B2217/005H04N5/23248H04N5/23258H04N5/23287
    • There is provided an electronic image pickup device with a hand-shake compensation function capable of reducing drive amount necessary for shake compensation and achieving downsizing without increasing a size of a piezoelectric element or voltage to be applied. A lens L2 is attached to an output-side surface of a prism P1 for bending an optical axis, and the prism P1 and the lens L2 are integrated together. Upon occurrence of a hand-shake vibration, as the prism P1 is rotationally driven by a drive member 17, the lens L2 is also translated in a direction approximately perpendicular to the optical axis. By the moves of both prism P1 and lens L2, hand-shake compensation can be achieved with a small drive amount. Thus, the drive member 17 can be made smaller-size and compact, and the electronic image pickup device with a hand-shake compensation function can be reduced in size.
    • 提供一种具有手抖补偿功能的电子摄像装置,其能够减小抖动补偿所需的驱动量,并且在不增加压电元件的尺寸或施加的电压的情况下实现小型化。 透镜L 2安装在用于弯曲光轴的棱镜P 1的输出侧表面上,并且棱镜P 1和透镜L 2被集成在一起。 发生手抖动时,由于棱镜P 1被驱动部件17旋转驱动,所以透镜L 2也沿大致垂直于光轴的方向平移。 通过棱镜P 1和透镜L 2的移动,可以以小的驱动量实现手抖动补偿。 因此,可以使驱动构件17更小尺寸和紧凑,并且可以减小手抖补偿功能的电子摄像装置的尺寸。