EP4254075B1 - Versetzte steuerungsvorrichtung eines uhrwerks einer armbanduhr und diese steuerungsvorrichtung umfassende armbanduhr - Google Patents

Versetzte steuerungsvorrichtung eines uhrwerks einer armbanduhr und diese steuerungsvorrichtung umfassende armbanduhr

Info

Publication number
EP4254075B1
EP4254075B1 EP22165358.7A EP22165358A EP4254075B1 EP 4254075 B1 EP4254075 B1 EP 4254075B1 EP 22165358 A EP22165358 A EP 22165358A EP 4254075 B1 EP4254075 B1 EP 4254075B1
Authority
EP
European Patent Office
Prior art keywords
organ
control device
input control
output control
control
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP22165358.7A
Other languages
English (en)
French (fr)
Other versions
EP4254075A1 (de
Inventor
Bernat Monferrer
Steven DENOREAZ
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Harry Winston SA
Original Assignee
Harry Winston SA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Harry Winston SA filed Critical Harry Winston SA
Priority to EP22165358.7A priority Critical patent/EP4254075B1/de
Priority to US18/177,282 priority patent/US12399462B2/en
Priority to JP2023036216A priority patent/JP7546713B2/ja
Priority to CN202310323022.0A priority patent/CN116893602A/zh
Publication of EP4254075A1 publication Critical patent/EP4254075A1/de
Application granted granted Critical
Publication of EP4254075B1 publication Critical patent/EP4254075B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B27/00Mechanical devices for setting the time indicating means
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B27/00Mechanical devices for setting the time indicating means
    • G04B27/001Internal gear therefor, e.g. for setting the second hand or for setting several clockworks
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B27/00Mechanical devices for setting the time indicating means
    • G04B27/08Mechanical devices for setting the time indicating means by using parts of the case
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B3/00Normal winding of clockworks by hand or mechanically; Winding up several mainsprings or driving weights simultaneously
    • G04B3/04Rigidly-mounted keys, knobs or crowns
    • G04B3/046Operation by rotation and axial movement with extra function of axial shift of operating element, e.g. crown combined with push button
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B3/00Normal winding of clockworks by hand or mechanically; Winding up several mainsprings or driving weights simultaneously
    • G04B3/12Normal winding of clockworks by hand or mechanically; Winding up several mainsprings or driving weights simultaneously by mechanical means, e.g. pneumatic motor
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B37/00Cases
    • G04B37/06Forming the passage for the winding stem through the case; Divided winding stems
    • G04B37/066Divided stem (tige brisee)

Definitions

  • the invention falls within the field of watchmaking, and relates in particular to a remote control device for a watch movement and a watch comprising said control device.
  • a control element such as a pusher, corrector, crown, etc., is arranged in a watch case, usually opposite a watch movement mechanism which it is intended to activate following a request from a user.
  • control mechanisms for chronographs, alarms, time zone changes, date corrections, etc. are frequently arranged in the immediate vicinity of the watch movement mechanisms they are intended to operate.
  • control elements may be desirable to arrange remotely from the mechanisms they are intended to operate.
  • the invention solves the aforementioned drawbacks by proposing a remote control device for a watch movement allowing a control element to actuate a mechanism of the watch movement without their position relative to each other being a constraint.
  • the present invention makes it possible to kinematically link a control element with a mechanism of a watch movement to be operated, regardless of their respective positions relative to each other, and regardless of the dimensions and geometry of the case.
  • the present invention relates to a remote control device for a watch movement as claimed in attached claim 1.
  • the invention may further comprise one or more of the following features, taken individually or in all technically possible combinations.
  • control device includes a supporting structure to which the input and output control elements are attached, said supporting structure forming an annular housing receiving the connecting element.
  • the connecting element forms a ring.
  • the input control member includes a cooperation profile configured to cooperate with a led cooperation element of the linking member, so as to cause the rotation of said linking member when said input control member is aroused.
  • the cooperation profile and the conducted cooperation element are respectively shaped into bevels of complementary shapes.
  • the input control member is formed by a lever extending between a first end by which it is fixed to the supporting structure in a movably rotational manner, at the level of a first end, said lever having at a second end, the cooperation profile.
  • the input control element is arranged to slide movably relative to the supporting structure and is configured to cooperate, via the cooperation profile, with a transmission element fixed to the supporting structure in a movable and rotational manner and cooperating with the connecting element, so that the sliding of said input control member causes the rotation of the linking member.
  • the output control member has a cooperation profile configured to cooperate with a leading cooperation element of the linking member, such that the rotation of said linking member causes the displacement of said output control member.
  • the output control member is formed by a lever fixed to the supporting structure in a movably rotational manner, at a first end, said lever having a bevel at a second end, constituting the cooperation profile, said output control member being intended to act on the watch movement by an internal flank opposite to the cooperation profile.
  • the output control member is connected by a pivot joint, on the one hand to the connecting member, and on the other hand to the supporting structure, said output control member having a support arm intended to be arranged to bear against a balance wheel of the watch movement in order to perform a balance wheel stop function when the input control member is activated.
  • the leading cooperation element is constituted by a spur.
  • control device includes a spring connected to the linking member and tending to move it into a rest position in which said linking member is able to cooperate with the input control member.
  • control device comprises a second input control element and a second output control element kinematically connected to each other via the linking element and configured respectively to cooperate with a driven cooperation organ and a leading cooperation organ, the input control organs being configured so that, depending on which one or the other is called upon, the linking organ is driven in a different direction of rotation and causes the displacement respectively of one or the other output control organ.
  • the linking member includes a locking element arranged to constitute a stop preventing any movement of one of the input control members when the other is activated.
  • the locking element is formed by a tooth extending between two beveled radial flanks, each constituting a conducted cooperation element, the tooth further comprising an external flank connecting the radial flanks together and arranged so as to constitute a stop preventing any movement of one of the input control members when the other is activated.
  • the present invention relates to a watch comprising a watch movement and a control device as described above.
  • the present invention relates to a remote control device 10 for a watch movement 100, as shown in the figures 1 to 3 It should be noted that the watch movement 100 is represented by dashed lines in the figures, and that only a part of the watch is shown.
  • the control device 10 includes at least one input control element 11 intended to be activated by a user.
  • the input control member 11 is kinematically connected, via a linking member 13, to an output control member 12 intended to act on the clockwork movement 100 of said watch.
  • control device 10 comprises two input control elements 11 and two output control elements 12, each of said input control elements 11 being kinematically connected to an output control element 12.
  • control device 10 comprises a single input control member 11 and a single output control member 12.
  • the output control organ 12 may be intended to cooperate with a watchmaking component of the watch movement 100 by means of an actuator 101 of the watch movement 100, such as a corrector, a pusher, a lever, a rocker, a wheel, etc., of the movement for the realization of a function of said watch movement 100.
  • an actuator 101 of the watch movement 100 such as a corrector, a pusher, a lever, a rocker, a wheel, etc.
  • the output control member 12 is intended to cooperate directly with a watchmaking component of the watch movement 100, such as a balance wheel 102.
  • a watchmaking component of the watch movement 100 such as a balance wheel 102.
  • Such a function is then a balance wheel stop function, also called a "stop-seconds" or “stop-balance.”
  • such a function may be a chronograph function, a date correction, a moon phase, or a tourbillon cage or carousel stop function, etc.
  • the output control member 12 is thus intended to be interposed between the clockwork movement 100 and the connecting member 13, as can be seen in the figures 1 to 5 .
  • the connecting member 13 is designed to be arranged in a movable, rotational manner around the watch movement 100 within a supporting structure, for example, within the case of a watch (not visible in the figures). More precisely, the supporting structure forms an annular housing, such as a groove, intended to receive the connecting member 13.
  • the connecting member 13 preferably forms a closed ring.
  • the connecting member 13 can form an open ring extending over an angular sector dependent on the angular distance separating the input control member 11 and the output control member 12.
  • the linking member 13 is configured so as to be driven in rotation by the input control member 11 when the latter is activated, and to cause, during this rotation, the displacement of the output control member 12.
  • the connecting member 13 is defined between an inner peripheral wall 130 and an outer peripheral wall 131, the output control member 12 being arranged at the inner peripheral wall 130, inside the connecting member 13. All or part of the input control member 11 is arranged outside the connecting member 13, as shown in the figures 1 to 5 .
  • the input control elements 11 and output 12 are integral with the supporting structure.
  • the input control element 11 is formed by a lever fixed to the supporting structure in a movable rotational manner, at a first end, said lever comprising, at a second end, a cooperation profile 110.
  • the cooperation profile 110 of the input control member 11 is preferably beveled and is configured to cooperate directly with a driven cooperation element 132 of the linking member 13, so as to drive said linking member 13 in rotation when said input control member 11 is stressed.
  • the cooperation element 132 of the connecting member 13 is constituted, according to the invention, by a bevel of complementary shape to that of the bevel shape of the input control element 11.
  • the output control member 12 also includes a cooperation profile 120 configured to cooperate with the linking member 13, and more particularly with a leading cooperation element 133 of the latter, so that the rotation of said linking member 13 causes the displacement of said output control member 12.
  • the cooperation profile 120 of the output control element 12 is shaped in a bevel.
  • the output control member 12 is formed by a lever fixed to the supporting structure in a movable rotational manner, at a first end, said lever comprising, at a second end, the cooperation profile 120.
  • the output control member 12 is intended to act on the watch movement 100 by an internal flank opposite to the cooperation profile 120.
  • the cooperation element leading 133 is constituted by a lug, for example formed by a pin driven into the linking member 13.
  • the driven cooperation elements 132 and 133 may be formed interchangeably by notches made on the inner peripheral wall 130 and/or outer peripheral wall 131 of the connecting member 13, by lugs, bevels, or by any other protrusion extending from the connecting member 13. It is understood that, depending on the embodiment of the driven cooperation element 132 or 133, the input control member 11 or, respectively, the control member outputs 12 are arranged in planes parallel to or coinciding with the plane in which the connecting member 13 extends.
  • control device 10 may include a spring (not shown in the figures) connected to the linking member 13 and tending to move it into a rest position in which said linking member 13 is able to cooperate with the input control member 11.
  • spring means any component capable of elastic deformation.
  • the input control member 11 when the connecting member 13 is in the rest position, the input control member 11 is also in a rest position, i.e., it is not being activated by a user and is stationary, and consequently, the output control member 12 is also in a rest position, as can be seen in the figure 1 .
  • the input control member 11 can advantageously be constrained by a spring 111, for example consisting of an elastic blade extending from the first end of said input control member 11 and arranged as a stop against the supporting structure.
  • a spring 111 for example consisting of an elastic blade extending from the first end of said input control member 11 and arranged as a stop against the supporting structure.
  • the input control elements 11 are configured so that, depending on which one is activated, the connecting element 13 is driven in a different direction of rotation and causes the displacement of one or the other output control element 12 respectively, as shown respectively by the figures 2 and 3 .
  • the two input control elements 11 conform to the description of the input control element 11 given above and are preferably identical, as illustrated in the figures 1 to 3 Furthermore, the input control elements 11 are preferably arranged symmetrically with respect to each other, along a diametrical plane of the connecting element 13.
  • the two output control elements 12 conform to the description of the output control element 12 given above and are preferably identical, as shown by the figures 1 to 3 Furthermore, the output control elements 12 are preferably arranged symmetrically with respect to each other, along a diametrical plane of the connecting element 13.
  • the linking member 13 comprises two cooperation elements led 132, each intended to cooperate with one of the input control members 11, and comprises two cooperation elements led 133, each intended to cooperate with one of the output control members 12.
  • the connecting member 13 further preferably includes a locking element 134 arranged to constitute a stop preventing any movement of one of the input control members 11 when the other is activated.
  • the locking element 134 can advantageously be formed by a tooth extending between two beveled radial flanks, each constituting a driven cooperation element 132 intended to cooperate with one of the input control members 11.
  • the tooth further comprises an inner flank opposed to an outer flank connecting the radial flanks to each other.
  • the outer flank is curved, as is the inner flank, and is arranged to constitute a stop preventing any movement of one of the input control members 11 when the other is activated, as illustrated in the figures 2 and 3 .
  • the beveled radial flanks constituting the cooperation elements conducted 132 the external flank extends over a smaller angular sector than that over which the internal flank extends.
  • the input control member 11 is formed by a rod, in particular a time-setting rod, arranged to slide movably relative to the supporting structure.
  • the input control member 11 is arranged to extend through the connecting member 13 and to open from the inner peripheral wall 130 by an internal portion and from the outer peripheral wall 131 by an external portion, as shown in the diagrams. Figures 4 and 5 .
  • the input control member 11 is intended to be stressed in tension along its longitudinal axis, from its external portion by a user, and is configured to cooperate from its internal portion, via a transmission element, with a conducted cooperation element 132 of the linking member 13.
  • the input control member 11 is configured to cooperate, via a cooperation profile 110, with a transmission rocker 14.
  • the transmission rocker 14 is fixed in a movably rotational manner to the supporting structure and cooperates with the linking member 13, so that the sliding of said input control member 11 causes the rotation of said transmission rocker 14, which causes the rotation of the linking member 13.
  • the cooperation profile 110 has the form of a radial groove with which a first end of the transmission rocker 14 cooperates in the form of a finger. Furthermore, the driven cooperation element 132 cooperates via a pivot joint with a second end of the transmission rocker 14.
  • the output control member 12 also includes a cooperation profile 120 configured to cooperate with a leading cooperation element 133 of the linking member 13, so that the rotation of said member linkage 13 causes the displacement of said output control member 12.
  • the output control member 12 is, in this example of an embodiment of the invention, formed by a lever fixed in a movably rotational manner, on the one hand to the supporting structure, and on the other hand to the connecting member 13.
  • the cooperation profile 120 and the leading cooperation element 133 can be formed interchangeably by a pin and a bore, respectively.
  • the pivot joint between the output control member 12 and the supporting structure can advantageously be made in a similar manner.
  • the output control member 12 includes a support arm 121 intended to bear against the balance wheel of the watch movement 100 in order to perform the balance wheel stop function when the input control member 11 is activated, as shown in the figure 5 .
  • the input control member 11 and/or the output control member 12 are formed by flip-flops in this description but can be formed by any type of control, such as pull tabs, push buttons, crown, wheel, etc.
  • cooperation profiles 110 and 120 can be formed by toothed portions in interlocking relationship with respectively the cooperation elements led 132 and led 133.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Mechanical Control Devices (AREA)
  • Electric Clocks (AREA)

Claims (14)

  1. Fernbedienungsvorrichtung (10) für ein Uhrentechnik-Uhrwerk (100) in einer Uhr, aufweisend ein Eingabesteuerorgan (11), das dazu bestimmt ist, von einem Benutzer betätigt zu werden, und das über ein Verbindungsorgan (13) kinematisch mit einem Ausgabesteuerorgan (12) verbunden ist, das dazu bestimmt ist, auf das Uhrentechnik-Uhrwerk (100) in der Uhr einzuwirken, wobei das Verbindungsorgan (13) dazu bestimmt ist, derart angeordnet zu werden, dass es sich um das Uhrentechnik-Uhrwerk (100) drehen kann, und eingerichtet ist, durch das Eingabesteuerorgan (11) gedreht zu werden, wenn dieses betätigt wird, und das Ausgabesteuerorgan (12) zu veranlassen, sich während dieser Drehung zu bewegen, das Eingabesteuerorgan (11) umfassend ein Eingriffsprofil (110), das eingerichtet ist, in ein angetriebenes Eingriffselement (132) an dem Verbindungsorgan (13) einzugreifen, um das Verbindungsorgan (13) zu drehen, wenn das Eingabesteuerorgan (11) betätigt wird, wobei die Vorrichtung dadurch gekennzeichnet ist, dass das Eingriffsprofil (110) und das angetriebene Eingriffselement (132) jeweils als komplementäre Abschrägung ausgebildet sind.
  2. Steuervorrichtung (10) nach Anspruch 1, aufweisend eine Trägerstruktur, an der das Eingabesteuerorgan (11) und das Ausgabesteuerorgan (12) befestigt sind, wobei die Trägerstruktur ein ringförmiges Bett für ein Halten des Verbindungsorgans (13) bildet.
  3. Steuervorrichtung (10) nach Anspruch 1 oder 2, wobei das Verbindungsorgan (13) einen Ring bildet.
  4. Steuervorrichtung (10) nach Anspruch 1 und 2, wobei das Eingabesteuerorgan (11) durch einen Stab gebildet wird, der sich zwischen einem ersten Ende, mit dem er an der Trägerstruktur befestigt ist, sodass er sich drehen kann, und einem zweiten Ende erstreckt, wobei der Stab an einem zweiten Ende das Eingriffsprofil (110) aufweist.
  5. Steuervorrichtung nach Anspruch 1 und 2, wobei das Eingabesteuerorgan (11) angeordnet ist, dass es in Bezug auf die Trägerstruktur gleiten kann, und eingerichtet ist, über das Eingriffsprofil (110) mit einem an der Trägerstruktur befestigten Übertragungselement in Eingriff zu kommen, sodass es sich drehen kann und mit dem Verbindungsorgan (13) in Eingriff kommt, sodass das Gleiten des Eingabesteuerorgans (11) eine Drehung des Verbindungsorgans (13) bewirkt.
  6. Steuervorrichtung (10) nach Anspruch 2, wobei das Ausgabesteuerorgan (12) ein Eingriffsprofil (120) aufweist, das eingerichtet ist, mit einem Antriebseingriffselement (133) an dem Verbindungsorgan (13) in Eingriff zu kommen, sodass die Drehung des Verbindungsorgans (13) eine Bewegung des Ausgabesteuerorgans (12) bewirkt.
  7. Steuervorrichtung (10) nach Anspruch 6, wobei das Ausgabesteuerorgan (12) durch einen Stab gebildet wird, der an der Trägerstruktur angebracht ist, sodass er sich an einem ersten Ende, drehen kann, der Stab umfassend eine Abschrägung an einem zweiten Ende, die das Eingriffsprofil (120) bildet, wobei das Ausgabesteuerorgan (12) dazu bestimmt ist, über eine dem Eingriffsprofil (120) gegenüberliegende Innenflanke auf das Uhrentechnik-Uhrwerk (100) einzuwirken.
  8. Steuervorrichtung (10) nach Anspruch 6, wobei das Ausgabesteuerorgan (12) einerseits über ein Schwenkgelenk mit dem Verbindungsorgan (13) und andererseits mit der Trägerstruktur verbunden ist, wobei das Ausgabesteuerorgan (12) einen Lagerarm (121) umfasst, der dazu bestimmt ist, angeordnet zu werden, sodass er an einer Unruh des Uhrentechnik-Uhrwerks (100) anliegt, um die Unruh anzuhalten, wenn das Eingabesteuerorgan (11) betätigt wird.
  9. Steuervorrichtung (10) nach Anspruch 6, wobei das Antriebseingriffselement (133) ein Sporn ist.
  10. Steuervorrichtung (10) nach Anspruch 1 bis 4, 6 und 7, aufweisend eine mit dem Verbindungsorgan (13) verbundene Feder, um es in eine Verriegelungsposition zu bewegen, in der das Verbindungsorgan (13) mit dem Eingabesteuerorgan (11) in Eingriff kommen kann.
  11. Die Steuervorrichtung (10) nach einem der Ansprüche 1 bis 10, aufweisend ein zweites Eingabesteuerorgan (11) und ein zweites Ausgabesteuerorgan (12), die über das Verbindungsorgan (13) kinematisch miteinander verbunden und jeweils dazu eingerichtet sind, mit einem angetriebenen Eingriffsorgan (132) und einem antreibenden Eingriffsorgan (133) in Eingriff zu kommen, wobei die Eingabesteuerorgane (11) dazu eingerichtet sind, in Abhängigkeit davon, auf welches von ihnen eingewirkt wird, das Verbindungsorgan (13) in eine andere Drehrichtung anzutreiben und jeweils eine Bewegung des einen oder des anderen Ausgabesteuerorgans (12) zu bewirken.
  12. Steuervorrichtung (10) nach Anspruch 11, wobei das Verbindungsorgan (13) ein Verriegelungselement (134) aufweist, das angeordnet ist, einen Anschlag zu bilden, der jede Bewegung eines der Eingabesteuerorgane (11) verhindert, wenn auf das andere eingewirkt wird.
  13. Steuervorrichtung (10) nach einem der Ansprüche 1 und 12, wobei das Verriegelungselement (134) durch einen Zahn gebildet wird, der sich zwischen zwei abgeschrägten radialen Flanken erstreckt, die jeweils ein angetriebenes Eingriffselement (132) bilden, wobei der Zahn ferner eine Außenflanke aufweist, die die radialen Flanken verbindet und angeordnet ist, einen Anschlag zu bilden, der jede Bewegung eines der Eingabesteuerorgane (11) verhindert, wenn auf das andere eingewirkt wird.
  14. Uhr, aufweisend ein Uhrentechnik-Uhrwerk (100), dadurch gekennzeichnet, dass sie eine Fernbedienungsvorrichtung (10) nach einem der Ansprüche 1 bis 13 umfasst.
EP22165358.7A 2022-03-30 2022-03-30 Versetzte steuerungsvorrichtung eines uhrwerks einer armbanduhr und diese steuerungsvorrichtung umfassende armbanduhr Active EP4254075B1 (de)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP22165358.7A EP4254075B1 (de) 2022-03-30 2022-03-30 Versetzte steuerungsvorrichtung eines uhrwerks einer armbanduhr und diese steuerungsvorrichtung umfassende armbanduhr
US18/177,282 US12399462B2 (en) 2022-03-30 2023-03-02 Remote control device for a horological movement of a watch and watch comprising said control device
JP2023036216A JP7546713B2 (ja) 2022-03-30 2023-03-09 携行型時計の計時器用ムーブメントを離れて制御する制御デバイス、及びかかる制御デバイスを備える携行型時計
CN202310323022.0A CN116893602A (zh) 2022-03-30 2023-03-29 用于手表的钟表机芯的远程控制装置及包括所述控制装置的手表

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP22165358.7A EP4254075B1 (de) 2022-03-30 2022-03-30 Versetzte steuerungsvorrichtung eines uhrwerks einer armbanduhr und diese steuerungsvorrichtung umfassende armbanduhr

Publications (2)

Publication Number Publication Date
EP4254075A1 EP4254075A1 (de) 2023-10-04
EP4254075B1 true EP4254075B1 (de) 2025-12-24

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Country Status (4)

Country Link
US (1) US12399462B2 (de)
EP (1) EP4254075B1 (de)
JP (1) JP7546713B2 (de)
CN (1) CN116893602A (de)

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CH715472A1 (fr) * 2018-10-26 2020-04-30 Richemont Int Sa Dispositif de commande pour mouvement horloger.
CH717653A2 (fr) * 2020-07-30 2022-01-31 Montres Breguet Sa Ensemble sympathique d'horlogerie.

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CN116893602A (zh) 2023-10-17
EP4254075A1 (de) 2023-10-04
US12399462B2 (en) 2025-08-26
US20230315016A1 (en) 2023-10-05
JP7546713B2 (ja) 2024-09-06
JP2023152793A (ja) 2023-10-17

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