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    • 54. 发明授权
    • Electronic timepiece
    • 电子钟表
    • US4437769A
    • 1984-03-20
    • US168321
    • 1980-07-10
    • Masaharu ShidaMakoto UedaShuji OtawaMasaaki MandaiKatsuhiko Sato
    • Masaharu ShidaMakoto UedaShuji OtawaMasaaki MandaiKatsuhiko Sato
    • G04C3/14G04C10/00G04C10/02G04C10/04H02P8/02G04C3/00
    • G04C10/04G04C10/02G04C3/143
    • An electronic timepiece having a stepping motor includes a power source, an oscillating circuit, a dividing circuit connected to the oscillating circuit, and a wave shaping circuit receptive of a plurality of output signals produced from the dividing circuit to produce a plurality of controlling signals. A controlling circuit receives the controlling signals and controls a driving circuit. The power source is connected to a detecting voltage circuit by which the variation of the supply voltage of the power source is detected, and a normal waveform or an intermittent waveform is selectively applied to the stepping motor according to the variation of the supply voltage. As a result, the power consumption of the steppng motor is controlled at a constant level, even if the supply voltage of the power source is higher than the optimum voltage of the stepping motor and even if the supply voltage varies.
    • 具有步进电动机的电子钟表包括电源,振荡电路,连接到振荡电路的分频电路和接收由分频电路产生的多个输出信号的波形整形电路,以产生多个控制信号。 控制电路接收控制信号并控制驱动电路。 电源连接到检测电压电路,通过该检测电压电路检测电源的电源电压的变化,并且根据电源电压的变化选择性地向步进电机施加正常波形或间歇波形。 结果,即使电源的电源电压高于步进电机的最佳电压,并且即使电源电压变化,步进电动机的功耗也被控制在恒定水平。
    • 55. 发明授权
    • Battery switch plate for a timepiece
    • 电池开关板用于钟表
    • US4435088A
    • 1984-03-06
    • US406656
    • 1982-08-09
    • Leonard M. Dorfman
    • Leonard M. Dorfman
    • G04G99/00G04C10/00G04G17/02G04G17/06G04G19/00G04C23/02
    • G04G17/02G04C10/00
    • A battery switch plate is disclosed having a U-shaped frame that receives and supports a timepiece battery and that also provides electrical contact between the positive battery terminal and the timepiece integrated circuit via a lead frame. The switch plate, which is received by an aperture in the rear pod of the timepiece module, holds the battery in position and permits the negative battery terminal to come into contact with another lead frame conducting member. Switching occurs to correct and change timekeeping function of the timepiece when switch contacts are independently forced into electrical contact with underlying leaf spring members that are attached to and extend oppositely outward from the ends of the U-shaped frame or when the leaf spring members are independently forced into electrical contact with underlying switch contacts.
    • 公开了一种电池开关板,其具有接收并支撑时计电池的U形框架,并且还经由引线框架在正电池端子和时计集成电路之间提供电接触。 由钟表模块的后盒中的孔容纳的开关板将电池保持在适当位置,并且允许负电池端子与另一引线框导电构件接触。 当开关触点被独立地强制地与附接到U形框架的端部并且相对地向外延伸的下面的板簧构件电连接时或当板簧构件独立地进行时,切换发生以校正和改变计时器的计时功能 强制与底层开关触点电接触。
    • 56. 发明授权
    • Drive assembly for a timepiece
    • 一个钟表的驱动组件
    • US4416550A
    • 1983-11-22
    • US284212
    • 1981-07-17
    • Robert WolberRoland Maurer
    • Robert WolberRoland Maurer
    • G04C3/00G04C10/00G04B19/00G04B37/00
    • G04C3/008G04C10/00
    • A timepiece drive assembly is adapted to be mounted in a timepiece housing, e.g., a small designer desk clock. The assembly includes a movement casing equipped with a removable battery-receiving member in which battery contact terminals are releasably arranged. The contact terminals are connected by means of flexible connecting lines with the circuit board of the movement. The movement casing may be arranged in a cylindrical part of the clock housing, while the battery-receiving member is located in a pedestal provided underneath the cylindrical part. It is only necessary to equip the pedestal with fastening means for the battery-receiving member and not with the more expensive individual fastening means for the holding and contacting of the battery. Thus, substantially flexibility is obtained in the design of the timepiece housing because the battery-receiving member can be connected to the movement casing or spaced therefrom.
    • 钟表驱动组件适于安装在钟表外壳中,例如小型设计师台钟。 组件包括配备有可释放地布置电池接触端子的可移除电池接收构件的移动壳体。 接触端子通过与运动的电路板的柔性连接线连接。 运动壳体可以布置在钟表壳体的圆柱形部分中,而电池容纳构件位于设置在圆柱形部分下方的基座中。 仅需要为基座设置用于电池接收构件的紧固装置,而不是用于更加昂贵的用于保持和接触电池的单独紧固装置。 因此,由于电池接收构件可以连接到移动壳体或与其隔开,因此在钟表壳体的设计中获得了基本上的灵活性。