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    • 84. 发明申请
    • CALENDAR MECHANISM
    • US20180173164A1
    • 2018-06-21
    • US15834101
    • 2017-12-07
    • Blancpain SA
    • Martin ROBIN
    • G04B19/253
    • G04B19/2536G04B19/2532
    • A calendar mechanism including date-discs, a date programme unit, a drive unit that drives the date programme unit and a drive member for actuating the drive unit. The date-discs include a first lower units disc and a second upper units disc, and a third lower tens disc and a fourth upper tens disc. The date programme unit includes date programme wheel sets for actuating the date-discs and arranged to mesh selectively with the date-discs so that the last day of the month is displayed with the third lower tens disc and the first upper units disc, and the first day of the following month is displayed with the fourth upper tens disc and the second upper units disc, the change of date between two consecutive months occurring via a single jump of the fourth upper tens disc and of the second upper units disc, regardless of the month. The mechanism may include a month wheel set and a leap-year adjustment mechanism arranged to cooperate with the drive unit, the drive unit being a month programme wheel.
    • 85. 发明申请
    • TIMEPIECE CALENDAR MECHANISM
    • TIMEPIECE日历机制
    • US20160187854A1
    • 2016-06-30
    • US14958429
    • 2015-12-03
    • Montres Breguet S.A.
    • Eric GOELLER
    • G04B19/257
    • G04B19/2576G04B19/25333G04B19/2536G04B19/2575
    • Watch comprising a movement arranged to drive a timepiece calendar mechanism, which includes drive means that drive, at each change in month, complementary drive means arranged to drive a month cam whose periphery cooperates with a month feeler arm comprised in the calendar mechanism, where this month cam covers an angular sector of less than 360°, and the calendar mechanism includes elastic return means arranged to instantaneously return the month cam in a backward movement, in cooperation with the month feeler, to the position of the first month of the year upon completion of the last day of the preceding year.
    • 手表包括设置成驱动钟表日历机构的运动,其包括驱动装置,该驱动装置在每月的更改时驱动互补的驱动装置,该驱动装置被布置成驱动其周边与包括在日历机构中的月份检测器臂配合的月凸轮, 月凸轮覆盖小于360°的角度部分,并且日历机构包括弹性返回装置,其布置成与月度探测器协同地将向后移动的月凸轮立即返回到一年中的第一个月的位置 完成上一年的最后一天。
    • 88. 发明申请
    • Watch with calendar mechanism equipped with month indicator and date indicator
    • 观察日历机制配备月指标和日期指标
    • US20100135125A1
    • 2010-06-03
    • US12592429
    • 2009-11-24
    • Mamoru Watanabe
    • Mamoru Watanabe
    • G04B19/24
    • G04B19/2536
    • The present invention aims to provide a watch with a calendar mechanism which allows a reduction in the thickness of a date feeding mechanism and a month feeding mechanism. In a watch with a calendar mechanism according to the present invention, a date indicator includes a month end tooth for driving a month feeding lever at the end of a month and feeding the date indicator at the end of a shorter month. A month indicator includes a month cam for operating a shorter month end feeding lever at the end of a shorter month. The shorter month end feeding lever can feed the date indicator by one day based on the rotation of a date indicator driving wheel and the rotation of the month cam. The month feeding lever moves toward the month indicator at the end of a month based on the rotation of the date indicator, and can feed the month indicator by one month.
    • 本发明旨在提供一种具有日历机构的手表,其能够减少日期进给机构和月份进给机构的厚度。 在具有根据本发明的日历机构的手表中,日期指示器包括用于在一个月底驱动月份供给杆的月末齿,并且在较短的月份结束时馈送日期指示器。 月份指标包括在较短的月份结束时运行较短的月底供料杆的月份凸轮。 较短的月份进给杆可以基于日期指示器驱动轮的旋转和月凸轮的旋转,将日期指示符馈送一天。 根据日期指示灯的旋转,月份进给杆在月底指示器移动到月份指示器,并且可以将月份指示符提前一个月。
    • 89. 发明授权
    • Perpetual calendar mechanism
    • 万年历机制
    • US07706214B2
    • 2010-04-27
    • US11105444
    • 2005-04-14
    • Karl-Friedrich Scheufele
    • Karl-Friedrich Scheufele
    • G04B19/20G04B19/24
    • G04B19/2536G04B19/2538G04B19/268
    • The perpetual calendar mechanism includes a date mobile (16, 28-31), a date lever (3) bearing a small click (14), a correction lever (4) driving a great click (40) and a finger (2) driving the levers (3, 4). The date mobile (16, 28-31) is shifted instantaneously by the small click (14) during the transition from one day to the next within a month and during the transition from the last day of a month of 31 days to the first day of the following month, and partly in a dragging manner by the great click (40) during the transition from the last day of a month of less than 31 days to the first day of the following month.
    • 永久日历机构包括日期移动(16,28-31),具有小点击的日期杠杆(3)(14),驱动咔哒声(40)和手指(2)驱动的校正杆(4) 杠杆(3,4)。 日期移动(16,28-31)在一个月内从一天到一天的过渡期间以及在从31天的最后一天到第一天的过渡期间,通过小点击(14)瞬间移动 并在部分拖延的情况下,从一个月的最后一天(不到31天)到下一个月的第一天的转换期间的巨大点击(40)。
    • 90. 发明申请
    • TIMEPIECE WITH A CALENDAR NUMBER MECHANISM
    • 具有日历数量机制的时间
    • US20090201770A1
    • 2009-08-13
    • US12304132
    • 2007-05-31
    • Frederic Crettex
    • Frederic Crettex
    • G04B19/253
    • G04B19/2536
    • Timepiece with a perpetual calendar number mechanism, including: a time switch, a display device including a mobile (18b) whose position is determined by the calendar month number, a correction device (18a, 18d) cooperating with said display device and guaranteeing its drive at the end of months having less than thirty-one days. This mechanism includes, in addition: a month mechanism (24) with a period of one year and including a cam advancing by steps, one step per month, a programming mechanism (28) driven by the time switch and cooperating with the month mechanism (24) and having a mobile (28a) cooperating with the correction mechanism (18a) to make it advance, during the month, by as many steps as the month counts days in less than thirty-one days. This mechanism enables the energy required to perform the correction to be withdrawn during the month, and restored at the time of the automatic correction.
    • 具有永久日历编号机构的钟表,包括:时间切换器,包括其位置由日历月份号确定的移动台(18b)的显示装置,与所述显示装置协作并保证其驱动的校正装置(18a,18d) 在几个月的结束时间不到三十一天。 这个机制还包括:一个月的机制(24),包括一个阶段的凸轮,每月一个步骤,由时间转换驱动的编制机制(28),并与月度机制合作( 24),并且具有与校正机构(18a)配合的移动(28a),以在该月期间通过在少于三十一天内每月计算天数的步骤进行。 该机制使得能够在该月内执行校正所需的能量被撤回,并且在自动校正时恢复。