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    • 8. 发明申请
    • COMPOSITE OPERATING DEVICE
    • 复合操作装置
    • US20140102244A1
    • 2014-04-17
    • US14039206
    • 2013-09-27
    • SUMITOMO WIRING SYSTEMS, LTD.
    • Masatomo INOUE
    • G05G1/02G05G1/10
    • G05G1/025B60N2/0228G05G1/10H01H25/002Y10T74/2084
    • A composite operating device includes a base, a slider, an operating member, a detecting element that detects that the operating member has been operated to slide, and a transmission member that transmits an operating force acting on the slider to the detecting element. The slider includes a transmission member pressing portion that presses the transmission member in the sliding direction. The transmission member includes a pressed portion that is pressed against by the slider and an element pressing portion that presses the detecting element in an element pressing direction. The base includes a transmission member retaining portion that rotatably retains the transmission member so that when the pressed portion is pressed by the transmission member pressing portion in the sliding direction, the transmission member rotates and therefore causes the element pressing portion to press against the detecting element.
    • 复合操作装置包括基座,滑块,操作构件,检测到操作构件已经被操作以滑动的检测元件,以及将作用在滑块上的操作力传递到检测元件的传动构件。 滑块包括沿滑动方向按压传动部件的传动部件按压部。 传递构件包括被滑块压靠的按压部分和沿元件按压方向按压检测元件的元件按压部分。 底座包括传动构件保持部分,其可旋转地保持传动构件,使得当按压部分被传动构件按压部分沿滑动方向按压时,传动构件旋转,因此使元件按压部分压靠检测元件 。
    • 9. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20130001055A1
    • 2013-01-03
    • US13634236
    • 2011-03-23
    • Naohiro OhataNobuyuki Kitamura
    • Naohiro OhataNobuyuki Kitamura
    • H01H21/04
    • H04M1/0237H01H9/04H01H25/002H01H2009/048H04M1/18H04M1/233
    • An electronic device in which a waterproof structure is formed without hindering a lever operation to a lever switch is provided. A device main body has a housing member in which an opening is provided to house a switch main body, and a cover member that is engaged to the housing member to form at least a part of the front surface of the device main body, and the device main body has an elastic sheet arranged at a rear surface side of the cover member to cover the opening of the housing member, having a shape extending to a position overlapping with engaging surfaces between the housing member and the cover member, and having an outer edge portion interposed between the engaging surfaces of the housing member and the cover member, and a bottomed cylindrical portion that projects from a front surface of the elastic sheet.
    • 提供一种电子装置,其中形成防水结构而不阻碍对杠杆开关的操纵杆操作。 装置主体具有壳体构件,其中设置开口以容纳开关主体;以及盖构件,其与壳体构件接合以形成装置主体的前表面的至少一部分, 装置主体具有布置在盖构件的后表面侧以覆盖壳体构件的开口的弹性片,其具有延伸到与壳体构件和盖构件之间的接合表面重叠的位置的形状,并且具有外部 插入在壳体构件的接合表面和盖构件之间的边缘部分和从弹性片的前表面突出的有底圆柱形部分。
    • 10. 发明申请
    • FORCE-FEEDBACK MULTIDIRECTIONAL INPUT DEVICE
    • 强制反馈多路输入设备
    • US20120080294A1
    • 2012-04-05
    • US13247464
    • 2011-09-28
    • Shinji IshikawaHajime Suzuki
    • Shinji IshikawaHajime Suzuki
    • H01H9/00
    • G05G5/03G05G1/02G06F3/016G06F3/0362H01H25/002H01H2003/008H01H2025/004H01H2025/043
    • A force-feedback multidirectional input device includes a slider slidably supported by a support base and an operation knob joined to the slider. In a sliding operation, the slider operates in conjunction with actuating members included in a force-feedback unit. Therefore, a sense of force based on the sliding is fed back to the operation knob. Furthermore, the slider is elastically urged by coil springs toward an inner bottom surface of a housing space defined in the support base. In a depressing operation, the operation knob presses the support base downward against the urging force of coil springs. Therefore, a vertically movable member joined to the support base is moved downward along guide portions (convex rails and concave grooves). Thus, a push switch provided on a pedestal (circuit board) is pressed and activated by the vertically movable member.
    • 力反馈多向输入装置包括由支撑基座可滑动地支撑的滑块和连接到滑块的操作旋钮。 在滑动操作中,滑块与包括在力 - 反馈单元中的致动构件一起操作。 因此,基于滑动的力的感觉被反馈到操作旋钮。 此外,滑块被螺旋弹簧弹性地推向限定在支撑基座中的壳体空间的内底表面。 在按压操作中,操作旋钮克服螺旋弹簧的推力向下按压支撑底座。 因此,与支撑基座接合的可升降构件沿着引导部(凸轨和凹槽)向下移动。 因此,设置在基座(电路板)上的按钮开关被可垂直移动的构件按压并启动。