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    • 2. 发明申请
    • DEVICE INTENDED TO CONTROL THE ANGULAR SPEED OF A TRAIN IN A TIMEPIECE MOVEMENT AND INCLUDING A MAGNETIC ESCAPEMENT
    • 旨在控制时刻运动中火车的角速度,包括磁悬浮的装置
    • US20160357155A1
    • 2016-12-08
    • US15109066
    • 2014-12-22
    • THE SWATCH GROUP RESEARCH AND DEVELOPMENT LTD
    • Gianni DI DOMENICOPascal WINKLER
    • G04C5/00G04B15/06
    • G04C5/005G04B15/00G04B15/06G04B17/04G04B17/06G04C3/08
    • There is provided a device for regulating the operation of a horological movement, including a magnetic escapement, which includes a resonator and a magnetic escapement mobile turning about an axis. The mobile includes at least one magnetic track with a plurality of magnets having an angular dimension that is greater than their radial dimension. The resonator includes at least one magnetic element for coupling to the magnetic track. The coupling element extends radially relative to the axis of rotation, and has a contour with a portion oriented substantially angularly when the resonator is in the rest position. When the mobile is driven in rotation, each magnet penetrates beneath the coupling element and gradually accumulates some potential magnetic energy. The magnet then exits from beneath the coupling element through the portion and the coupling element receives a pulse located around its rest position.
    • 提供了一种用于调节钟表运动的操作的装置,包括磁擒纵机构,其包括谐振器和绕轴线移动的磁性擒纵机构。 移动体包括具有多个磁体的至少一个磁道,其具有大于其径向尺寸的角度尺寸。 谐振器包括用于耦合到磁道的至少一个磁性元件。 耦合元件相对于旋转轴线径向延伸,并且当谐振器处于静止位置时具有基本成角度定向的轮廓。 当移动体旋转驱动时,每个磁体穿过耦合元件下方并逐渐累积一些潜在的磁能。 磁体然后通过该部分从耦合元件下方离开,并且耦合元件接收位于其静止位置周围的脉冲。
    • 3. 发明申请
    • HOROLOGE
    • US20150234359A1
    • 2015-08-20
    • US14240888
    • 2012-12-11
    • FUZHOU XIAOSHENLONG WATCH TECHNOLOGY RESEARCH CO., LTD.
    • Xiangping Lin
    • G04C3/04
    • G04C3/04G04B17/285G04C3/08G04C10/00G04C11/088
    • Disclosed in the present application is a horologe, a walking system thereof including: a winding mechanism powering the second hand, minute hand and hour hand; a mechanical transmission wheel train engaged with the winding mechanism and driving the second hand, minute hand and hour hand to operate, wherein the mechanical transmission wheel train comprises a tourbillion mechanism driving a second wheel connected with the second hand to rotate; an accuracy control device, wherein the walking motor of the accuracy control device drives the rotation of the rotor and the walking accuracy of the walking motor is controlled by a quartz crystal oscillator; and an electronic transmission wheel train connected to the rotor. The horologe disclosed in the present application can solve the problem that the walking accuracy of the mechanical horologe is poor.
    • 在本申请中公开了一种钟表,其行走系统,包括:向二手,分针和时针供电的上弦机构; 与所述卷绕机构接合并驱动所述秒针,分针和时针操作的机械传动轮系,其中所述机械传动轮系包括驱动与所述秒针连接的第二轮旋转的陀飞轮机构; 精度控制装置,其中精度控制装置的行走马达驱动转子的旋转,并且行走马达的步行精度由石英晶体振荡器控制; 以及连接到转子的电子传动轮系。 本申请中公开的方法可以解决机械钟表的步行精度差的问题。
    • 4. 发明授权
    • System for generating periodical mechanical vibrations
    • 用于产生周期性机械振动的系统
    • US3838299A
    • 1974-09-24
    • US39199973
    • 1973-08-27
    • PROCOR ETS
    • ELKUCH F
    • G04C3/08H02N1/00
    • G04C3/08H02N1/008
    • A simplified swing system producing mechanical vibratory movements by means of electric energy and dispensing with any active elements execpt for any energy source. Three electrodes are arranged to constitute a mechanical oscillating arrangement, one electrode of which is a resilient vibrating reed capable of oscillating by flexing and swinging toward and away from the other electrodes, a charge compensation occurring when the vibrating reed electrode approaches either one of the other two electrodes closely enough within an electric field established therebetween. In the position of rest, said electrodes are sufficiently spaced from each other but aligned face to face. When said vibrating reed is vibrated, it acts, via a movementconverting body fixed at its free vibrating end, upon a cog-wheel advanced by one tooth for each period of oscillating movement of said vibrating reed. Control means adjust the frequency of said vibrating reed and are arranged in such a way that the requirements for isochronism are met in any frequency-adjusting position of said control means.
    • 简化的摆动系统通过电能产生机械振动运动,并分配任何有源元件,用于任何能量源。 三个电极被布置成构成机械振荡装置,其一个电极是能够通过向另一个电极和远离其它电极弯曲和摆动而振动的弹性振动片,当振动簧片电极接近另一个电极时发生的电荷补偿 在它们之间建立的电场内的两个电极足够紧密。 在休息的位置,所述电极彼此充分间隔开,但面对面对齐。 当所述振动片振动时,其经由固定在其自由振动端的移动转换体作用在由所述振动片的振荡运动的每个周期的一个齿前进的齿轮上。 控制装置调节所述振动片的频率,并且以这样的方式布置,使得在所述控制装置的任何频率调节位置满足等时性的要求。