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    • 2. 发明申请
    • Input device
    • 输入设备
    • US20110140818A1
    • 2011-06-16
    • US12926753
    • 2010-12-08
    • Shinji HatanakaNozomi Kitagawa
    • Shinji HatanakaNozomi Kitagawa
    • H01F7/00
    • G05G5/05G05G2009/04714G05G2009/04766G05G2009/04781H01F7/08
    • An input device includes an operating member, a restoring force generating part for automatically returning the operating member to a stationary position, a detector for detecting an operation state of the operating member, an actuator for applying an external force to the operating member and a controller for controlling the actuator. The operating member is displaceable in directions along a XY plane including an X axis and a Y axis and rotatable about a Z axis. The actuator includes a first magnet, a second magnet and an electromagnet having a core and a coil. One of the electromagnet and the first and second magnets is integrated with the operating member. At least in a stationary condition, the first magnet and the second magnet are located on opposite sides of an axis of rotation of the operating member, and are opposed to end surfaces of the core across predetermined clearances, respectively.
    • 输入装置包括操作构件,用于将操作构件自动返回到静止位置的恢复力产生部,用于检测操作构件的操作状态的检测器,用于向操作构件施加外力的致动器,以及控制器 用于控制致动器。 操作构件沿着包括X轴和Y轴并且可围绕Z轴旋转的XY平面的方向移位。 致动器包括第一磁体,第二磁体和具有磁芯和线圈的电磁体。 电磁体中的一个和第一和第二磁体与操作构件一体化。 至少在静止状态下,第一磁体和第二磁体位于操作构件的旋转轴线的相对侧上,并分别与预定间隙的芯体的端面相对。
    • 3. 发明申请
    • Work Vehicle Having Hydraulic Appratus
    • 具有液压设备的工作车辆
    • US20110079305A1
    • 2011-04-07
    • US12725049
    • 2010-03-16
    • Hisashi Tsukatani
    • Hisashi Tsukatani
    • F16K11/20
    • F16K11/20E02F9/2004E02F9/226E02F9/2267G05G2009/04714Y10T74/20012Y10T74/20201Y10T74/20648Y10T137/87096
    • Disclosed is a work vehicle having a hydraulic apparatus which can reliably prevent erroneous operation of the valve of the hydraulic apparatus even when the operating lever is moved inadvertently. With this hydraulic apparatus, with operations of a single operating lever in two directions, two valves are operated respectively. Two valve operating links for operating the two valves respectively are pivotally supported to a support shaft provided to a pair of frame plates and a lock pin is provided to the frame plates. The two valve operating links form pin holes. When the two valves are at the neutral positions, the lock pin is inserted into the pin holes with a locking operation of a lock operating tool, thus fixing the valve operating links and locking the valves.
    • 公开了一种具有能够可靠地防止液压装置的阀的错误操作的液压装置的作业车辆,即使操作杆无意中移动。 使用这种液压装置,在两个方向上操作单个操作杆,分别操作两个阀。 分别用于操作两个阀的两个阀操作连杆被枢转地支撑到设置在一对框架板上的支撑轴上,并且锁定销设置在框架板上。 两个阀操作连杆形成销孔。 当两个阀门处于中立位置时,锁定销通过锁定操作工具的锁定操作插入销孔中,从而固定阀门操作链接并锁定阀门。
    • 4. 发明申请
    • INTEGRATED KEY USING OPTICAL SENSOR
    • 集成关键使用光传感器
    • US20100096537A1
    • 2010-04-22
    • US12533399
    • 2009-07-31
    • Ki Dong Kang
    • Ki Dong Kang
    • G05G9/00
    • H03K17/968G05G2009/04714G05G2009/04759G06F3/0338G06F3/03543G06F3/0362
    • The present invention relates to an integrated key using an optical key, in particular, to an integrated key which enables a more subdivided manipulation for the movement to the outside based on a center point, and to perform the operation of rotation and push. An integrated key using an optical sensor of the invention includes a housing which has an accommodation space inside while an upper portion is open; an operation member which has a guide unit which sticks to the housing between an upper end and a lower end of the operation member while a handle is formed in an upper side and a reflection unit is formed at a bottom surface; and an optical sensor which measures one or more of a separation distance with the reflection a rotation of the operation member, and a location coordinate value of the operation member, and outputs a sensing signal according to the measurement.
    • 本发明涉及一种使用光学钥匙的集成键,特别涉及一种集成键,其能够基于中心点进行更多细分的向外移动的操作,并且执行旋转和推动操作。 使用本发明的光学传感器的集成键包括壳体,其在上部打开时具有内部的容纳空间; 操作构件,其具有引导单元,所述引导单元在上表面形成手柄并且反射单元形成在底面处,所述引导单元在所述操作构件的上端和下端之间粘附到所述壳体; 以及光学传感器,其测量反射与操作构件的旋转的间隔距离和操作构件的位置坐标值之间的一个或多个,并且根据测量输出感测信号。
    • 5. 发明申请
    • Foam material sealing strip
    • 泡沫材料密封条
    • US20100077669A1
    • 2010-04-01
    • US12383380
    • 2009-03-24
    • Ruediger DANIEL
    • Ruediger DANIEL
    • E06B7/16
    • G05G9/047G05G2009/04714G05G2009/04755
    • The invention relates to a foam material sealing strip (1) for sealing a window frame with reference to an opening side wall. It is proposed that different foam material strips (5, 6) are impregnated for delayed recovery, in each instance, that the foam material strips (5, 6) extend over the entire thickness (d) of the foam material sealing strip (1), in each instance, and extend next to one another, at their facing longitudinal sides (7, 8), without being glued together, at least in part, in such a manner that the foam material sealing strip (1) is air-permeable in the crosswise direction, whereby the air permeability of the foam material sealing strip (1) is determined solely by the combination of the air permeability values of the impregnated foam material strips (5, 6), in each instance, and that the different vapor braking effect is achieved by means of a different initial density and/or a different impregnation of the foam material strips.
    • 本发明涉及一种用于相对于开口侧壁密封窗框的泡沫材料密封条(1)。 提出不同的泡沫材料条(5,6)被浸渍用于延迟回收,在每种情况下,泡沫材料条(5,6)在泡沫材料密封条(1)的整个厚度(d)上延伸, 在每个情况下,并且彼此相对延伸,在其相对的纵向侧面(7,8)处,至少部分地以这样的方式粘合在一起,使得泡沫材料密封条(1)是透气的 在横向方向上,泡沫材料密封条(1)的透气性仅通过浸渍的泡沫材料条(5,6)的透气性值的组合来确定,并且不同的蒸气 通过泡沫材料条的不同的初始密度和/或不同的浸渍来实现制动效果。
    • 8. 发明授权
    • Compact pointing device
    • 紧凑型定位装置
    • US07429976B2
    • 2008-09-30
    • US10723957
    • 2003-11-24
    • Jonah HarleyFarid MattaStorrs Townsend Hoen
    • Jonah HarleyFarid MattaStorrs Townsend Hoen
    • G09G5/08
    • G06F3/03548G05G2009/04714
    • The pointing device has a moveable puck that moves over a surface in a puck field of motion. A position detector measures the puck position in the puck field of motion. In one embodiment, the puck includes a user sensor that detects an interaction between a user and the puck. A controller causes a cursor to move on a display in response to the puck moving in the puck field of motion when the user sensor senses the interaction between the user and the puck. The magnitude and direction of motion of the cursor is determined by the magnitude and direction of motion of the puck in the puck field of motion. In another embodiment, a restoring mechanism is provided that returns the puck to a predetermined area in the puck field of motion when the user releases the puck.
    • 指点装置具有可移动的圆盘,其可以在圆球运动区域中的表面上移动。 位置检测器测量圆球运动区域中的圆盘位置。 在一个实施例中,冰球包括用于检测用户和冰球之间的交互的用户传感器。 当用户传感器感测到用户和冰球之间的交互时,控制器使得光标在显示器上移动以响应于在圆盘运动区域中的移动。 光标的大小和运动方向由圆球运动的运动的大小和方向决定。 在另一个实施例中,提供一种恢复机构,当使用者释放冰球时,将恢复机构返回到运动区域中的预定区域。
    • 9. 发明申请
    • PUCK-BASED INPUT DEVICE WITH ROTATION DETECTION
    • 具有旋转检测功能的基于PUCK的输入装置
    • US20070290997A1
    • 2007-12-20
    • US11847531
    • 2007-08-30
    • Jonah HarleyDale Schroeder
    • Jonah HarleyDale Schroeder
    • G06F3/033
    • G06F3/03547G05G2009/04714G06F3/03543G06F3/03548G06F3/044
    • The present invention includes a pointing device having a first surface on which a puck field of motion is defined, a moveable puck, and a position detector. The moveable puck is confined to move on the first surface within the puck field of motion. The position detector determines a position of the puck in the puck field of motion and an angle of rotation of the puck about an axis perpendicular to the first surface. In one embodiment, the puck includes a puck electrode on a second surface on the puck that is parallel to the first surface. The first surface includes first, second, and third electrodes that are parallel to the puck electrode, the puck electrode overlying a portion of each of the first, second, and third electrodes.
    • 本发明包括具有第一表面的定点装置,在其上限定了运动的球场,可移动的圆盘和位置检测器。 可移动的冰球局限于在冰球运动范围内的第一表面上移动。 位置检测器确定圆盘在圆球运动领域的位置和圆盘围绕垂直于第一表面的轴线的旋转角度。 在一个实施例中,所述圆盘包括在所述圆盘上与所述第一表面平行的第二表面上的圆盘电极。 所述第一表面包括平行于所述圆盘电极的第一,第二和第三电极,所述圆盘电极覆盖所述第一,第二和第三电极中的每一个的一部分。
    • 10. 发明授权
    • Puck-based input device with rotation detection
    • 基于Puck的输入设备,具有旋转检测功能
    • US07304637B2
    • 2007-12-04
    • US10931113
    • 2004-08-30
    • Jonah HarleyDale Schroeder
    • Jonah HarleyDale Schroeder
    • G09G5/00
    • G06F3/03547G05G2009/04714G06F3/03543G06F3/03548G06F3/044
    • The present invention includes a pointing device having a first surface on which a puck field of motion is defined, a moveable puck, and a position detector. The moveable puck is confined to move on the first surface within the puck field of motion. The position detector determines a position of the puck in the puck field of motion and an angle of rotation of the puck about an axis perpendicular to the first surface. In one embodiment, the puck includes a puck electrode on a second surface on the puck that is parallel to the first surface. The first surface includes first, second, and third electrodes that are parallel to the puck electrode, the puck electrode overlying a portion of each of the first, second, and third electrodes.
    • 本发明包括具有第一表面的定点装置,在其上限定了运动的球场,可移动的圆盘和位置检测器。 可移动的冰球局限于在冰球运动范围内的第一表面上移动。 位置检测器确定圆盘在圆球运动领域的位置和圆盘围绕垂直于第一表面的轴线的旋转角度。 在一个实施例中,所述圆盘包括在所述圆盘上与所述第一表面平行的第二表面上的圆盘电极。 所述第一表面包括平行于所述圆盘电极的第一,第二和第三电极,所述圆盘电极覆盖所述第一,第二和第三电极中的每一个的一部分。