TUNING FORK OSCILLATOR FOR TIMEPIECES
    1.
    发明申请
    TUNING FORK OSCILLATOR FOR TIMEPIECES 有权
    调频摇摆振荡器

    公开(公告)号:US20160179058A1

    公开(公告)日:2016-06-23

    申请号:US14958373

    申请日:2015-12-03

    CPC classification number: G04C3/101 G04B17/04 G04B17/045 G04C3/008

    Abstract: A timepiece oscillator including a resonator formed by a tuning fork which includes at least two mobile oscillating parts, fixed to a connection element by flexible elements whose geometry determines a virtual pivot axis having a determined position with respect to this connection element and around which the respective mobile part oscillates, and the centre of masse of the mobile part coincides in the rest position with the respective virtual pivot axis, and, for at least one of the two mobile parts the flexible elements are formed of intersecting resilient strips extending at a distance from each other in two parallel planes, and whose directions, in projection on one of the parallel planes, intersect at the virtual pivot axis of the mobile part.

    Abstract translation: 一种钟表振荡器,包括由音叉形成的谐振器,所述谐振器包括至少两个可移动振荡部分,所述振荡部分通过柔性元件固定到连接元件,柔性元件的几何形状决定了相对于该连接元件具有确定位置的虚拟枢转轴线, 可移动部分振动,并且可移动部分的大块的中心与相应的虚拟枢转轴线重合在静止位置,并且对于两个可移动部件中的至少一个,柔性元件由相交的弹性条形成, 彼此在两个平行的平面中,并且在其中一个平行平面上的投影中的方向在可移动部分的虚拟枢转轴线处相交。

    ANGULAR SPEED REGULATING DEVICE FOR A WHEEL SET IN A TIMEPIECE MOVEMENT INCLUDING A MAGNETIC ESCAPEMENT MECHANISM
    4.
    发明申请
    ANGULAR SPEED REGULATING DEVICE FOR A WHEEL SET IN A TIMEPIECE MOVEMENT INCLUDING A MAGNETIC ESCAPEMENT MECHANISM 有权
    用于定时移动的车轮的角速度调节装置,包括磁悬浮机构

    公开(公告)号:US20150177698A1

    公开(公告)日:2015-06-25

    申请号:US14579287

    申请日:2014-12-22

    Abstract: The invention concerns a device for regulating the relative angular speed between a magnetic structure and a resonator magnetically coupled to each other and forming an oscillator which defines a magnetic escapement. The magnetic structure includes at least one annular magnetic path at least partially formed of a magnetic material of which one physical parameter is correlated to the magnetic potential energy of the oscillator, the magnetic material being arranged along the annular path so that the physical parameter varies angularly in a periodic manner. The annular path includes, in each angular period, an area of accumulation of magnetic potential energy in the oscillator, radially adjacent to an impulse area. The magnetic material, in each accumulation area, is arranged so that the physical parameter of said magnetic material gradually increases angularly or gradually decreases angularly.

    Abstract translation: 本发明涉及一种用于调节磁性结构和彼此磁耦合的谐振器之间的相对角速度的装置,并形成限定磁擒纵机构的振荡器。 该磁性结构包括至少一个环形磁路,其至少部分由磁性材料形成,其中一个物理参数与振荡器的磁势能相关联,磁性材料沿着环形路径布置,使得物理参数成角度变化 定期进行。 环形路径在每个角度周期中包括在振荡器中径向相邻于脉冲区域的磁势能积累的区域。 在每个积聚区域中的磁性材料被布置成使得所述磁性材料的物理参数逐渐成角度地逐渐减小或逐渐减小。

    ANGULAR SPEED REGULATING DEVICE FOR A WHEEL SET IN A TIMEPIECE MOVEMENT INCLUDING A MAGNETIC ESCAPEMENT MECHANISM
    5.
    发明申请
    ANGULAR SPEED REGULATING DEVICE FOR A WHEEL SET IN A TIMEPIECE MOVEMENT INCLUDING A MAGNETIC ESCAPEMENT MECHANISM 有权
    用于定时移动的车轮的角速度调节装置,包括磁悬浮机构

    公开(公告)号:US20150177697A1

    公开(公告)日:2015-06-25

    申请号:US14579166

    申请日:2014-12-22

    Abstract: The invention concerns a device for regulating the relative angular speed between a magnetic structure and a resonator magnetically coupled to each other and forming an oscillator which defines a magnetic escapement. The magnetic structure includes at least one annular magnetic path at least partially formed of a magnetic material and the resonator includes at least one element for magnetic coupling to the annular magnetic path, this coupling element being formed of a magnetic material having a physical parameter correlated to the magnetic potential energy of the oscillator. The radial dimension of the annular magnetic path is smaller than a corresponding dimension of the coupling element, and the magnetic material is arranged so that the physical parameter of said magnetic material gradually increases angularly or gradually decreases angularly in order to obtain an angularly extended magnetic potential energy area in each angular period of the annular magnetic path.

    Abstract translation: 本发明涉及一种用于调节磁性结构和彼此磁耦合的谐振器之间的相对角速度的装置,并形成限定磁擒纵机构的振荡器。 磁性结构包括至少部分由磁性材料形成的至少一个环形磁路,并且谐振器包括用于与环形磁路磁耦合的至少一个元件,该耦合元件由具有与 振荡器的磁势能。 环形磁路的径向尺寸小于耦合元件的相应尺寸,并且磁性材料被布置成使得所述磁性材料的物理参数逐渐成角度地逐渐减小或逐渐减小,以获得角度上延伸的磁势 能量区域在环形磁路的每个角度周期。

    UNIVERSAL DEVICE FOR THE PREPARATION OF A WATCH

    公开(公告)号:US20210011432A1

    公开(公告)日:2021-01-14

    申请号:US16499735

    申请日:2019-05-21

    Abstract: A universal device is for preparation of a watch with a gain/loss correction crown and an oscillating resonator. The device includes winding and a gain/loss corrector with a robotic manipulator for manoeuvring the crown. It also includes an adjustment device with a gain/loss correction device including a gain/loss-corrector oscillator generating an oscillation to subject the watch to an oscillation at a correction frequency NC and/or to a modulated movement. The gain/loss correction device includes a gain/loss controller that controls the oscillation of the gain/loss-corrector oscillator, interfaced with a device to measure the gain/loss of the watch. The gain/loss correction device also includes an automatic winder with a watch-holder stand subjected to the oscillations or movements generated by the gain/loss-corrector oscillator.

    WINDING DEVICE FOR A HOROLOGICAL MOVEMENT OF A WATCH

    公开(公告)号:US20240419126A1

    公开(公告)日:2024-12-19

    申请号:US18641920

    申请日:2024-04-22

    Abstract: An apparatus (10) for winding a horological movement of a watch (20), including an electronic module (13) configured to control a motor (14) kinematically connected to a drive member intended to rotate a winding member of the watch (20). The apparatus (10) includes a support (11) for the watch (20) formed by a body having a central element (110) and at least one side element (111) arranged at a distance from each other so as to form a recess (118) intended to receive a strand (21) of a bracelet of the watch (20), the central element (110) and the side element (111) being adapted to apply opposing forces to the strand (21) so as to ensure that it is held in the recess (118).

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