EP3683633B1 - Uhr mit mechanischem oszillator, die ein drahtloses kommunikationsmodul umfasst - Google Patents

Uhr mit mechanischem oszillator, die ein drahtloses kommunikationsmodul umfasst Download PDF

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Publication number
EP3683633B1
EP3683633B1 EP20152107.7A EP20152107A EP3683633B1 EP 3683633 B1 EP3683633 B1 EP 3683633B1 EP 20152107 A EP20152107 A EP 20152107A EP 3683633 B1 EP3683633 B1 EP 3683633B1
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EP
European Patent Office
Prior art keywords
mechanical oscillator
running
timepiece
measuring
communication module
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Active
Application number
EP20152107.7A
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English (en)
French (fr)
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EP3683633A1 (de
Inventor
Manuel DA SILVA MATOS
Pim KOESLAG
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Frederique Constant SA
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Frederique Constant SA
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Publication of EP3683633A1 publication Critical patent/EP3683633A1/de
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    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D7/00Measuring, counting, calibrating, testing or regulating apparatus
    • G04D7/12Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard
    • G04D7/1207Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard only for measuring
    • G04D7/1214Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard only for measuring for complete clockworks
    • G04D7/1221Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard only for measuring for complete clockworks with recording, e.g. vibrograph
    • G04D7/1228Devices for facilitating the reading or the interpretation of the recording
    • 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
    • G04B18/00Mechanisms for setting frequency
    • G04B18/02Regulator or adjustment devices; Indexing devices, e.g. raquettes
    • G04B18/021Regulator or adjustment devices; Indexing devices, e.g. raquettes adjusting the indexing device from the outside
    • 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
    • G04B47/00Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece
    • G04B47/06Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece with attached measuring instruments, e.g. pedometer, barometer, thermometer or compass
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D7/00Measuring, counting, calibrating, testing or regulating apparatus
    • G04D7/12Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard
    • G04D7/1207Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard only for measuring
    • G04D7/1214Timing devices for clocks or watches for comparing the rate of the oscillating member with a standard only for measuring for complete clockworks
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • G04G21/04Input or output devices integrated in time-pieces using radio waves

Definitions

  • the present invention also relates to a method for adjusting the rate of the mechanical oscillator of a timepiece according to the above characteristics.
  • This timepiece comprises a device for measuring the rate of its mechanical oscillator comprising a microphone, activated on demand to take a measurement, as well as a device for displaying the measured value for the rate of the oscillator directly on the watch.
  • this timepiece presents a sophisticated mechanical movement that is faithful to high-end watchmaking traditions, while proposing an evolution in the electronic field that does not intervene in the functioning of the movement but allows the wearer of the watch to 'interact with it.
  • the patent application CH 711 303 A1 describes a hybrid timepiece comprising a wireless communication module making it possible to control certain functions remotely, for example by means of a smartphone.
  • the smartphone can be provided with an application thanks to which it can measure the rate of the mechanical oscillator from outside its box. Then, depending on the result of this measurement, the application can act directly and automatically on a racket associated with the mechanical oscillator, via a controlled motor, to modify its position and adjust the speed of the oscillator.
  • a main aim of the present invention is to provide an alternative construction to the constructions already known for producing a timepiece with a mechanical watch movement in which the integration of electronic components is taken advantage of to provide a high level of interaction of the machine. user with his timepiece.
  • the present invention relates more particularly to a timepiece according to claim 1.
  • the external electronic unit can be a portable telephone of the smartphone or tablet type, or even a computer.
  • Such electronic devices have become ubiquitous in the way of life of the contemporary man who is accustomed to using it within the framework of numerous and very diversified activities.
  • the user can use a tool which is part of his usual environment to interact with his timepiece and become aware of the operating conditions of his mechanical oscillator.
  • these modern electronic analysis means is associated here with a mode of action, by the user, which respects the watchmaking tradition since the adjustment of the rate of the mechanical oscillator is carried out manually, by actuation of the manual control unit. The user can then take full measure of the impact of his manual intervention on the watch movement and of the delicacy of horological achievements, in general.
  • the device for measuring the rate of the mechanical oscillator can be designed to be able to carry out at least one measurement of the rate of the mechanical oscillator on demand, in response to the reception of a signal adapted by the wireless communication module, before transmitting back to the wireless communication module at least one signal representative of the result obtained for the measurement carried out.
  • the user wishing to adjust the rate of his timepiece can base himself on a recent measurement thereof before actuating the rate adjustment mechanism.
  • the device for measuring the rate of the mechanical oscillator can be arranged to perform close measurements for a predefined period in response to the reception of an adapted signal by the wireless communication module, before transmitting in return to the wireless communication module at least one signal representative of the result obtained for each of the measurements carried out.
  • the mechanical oscillator comprises an escapement
  • the kinematic connection can also be made for the kinematic connection to comprise an intermediate mobile having a first toothed sector arranged in engagement with the toothed correction mobile and a second toothed sector arranged in engagement with a toothing of the racket mobile.
  • the racket mobile can carry an off-center member with reference to the axis of rotation of the racket mobile and positioned in a fork of the racket such that a rotation of the racket mobile causes movement of the racket. .
  • the present invention also relates to an adjustment method according to claim 11.
  • the figure 1 represents a diagram illustrating the general principle of the timepiece according to the present invention.
  • the timepiece 1 is of the mechanical type, that is to say here that it comprises a watch movement comprising a mechanical oscillator and it can be, indifferently, with manual winding or with automatic winding without impact on the time. implementation of the invention.
  • the timepiece 1 comprises in particular a wireless communication module (not visible) arranged in such a way that it can exchange data with an external electronic unit 2, illustrated on the figure. figure 1 in the form of a cell phone of the smartphone type.
  • a wireless communication module not visible
  • Any other type of suitable external electronic unit can be used without departing from the scope of the invention, such as for example a dedicated electronic device, a tablet or a computer.
  • the operating system installed on the external electronic unit is of little importance for the implementation of the invention. Whatever the operating system used, the external electronic unit 2 is provided with an application suitable for communicating with the wireless communication module of the timepiece 1.
  • the timepiece 1 can have the appearance of a conventional mechanical timepiece depending on the electronic functions with which it is provided, or it can optionally have at least one display dedicated to the functions managed by the electronic module. .
  • the present invention provides that the electronic module comprises, or is associated with, a device for measuring the rate of the mechanical oscillator housed in the box of the timepiece 1.
  • This measuring device can be integrated directly into the electronic module or, alternatively, be separate from it.
  • This device for measuring the rate of the mechanical oscillator can be implemented in various known ways without much impact on the present invention, typically by using an acoustic sensor or an optical sensor, or even possibly a combination. both, or a magnetic field sensor.
  • the device for measuring the rate may preferably include a microphone arranged to listen to the operating noises of an escapement of the mechanical oscillator, in a conventional manner.
  • the device for measuring the rate is preferably capable of carrying out an analysis of the measurements made to determine the rate of the mechanical oscillator. Provision can optionally be made for the device for measuring the rate to deduce additional information from the results of the measurements, such as for example the amplitude of the oscillations of the mechanical oscillator or even its reference mark.
  • an electronic calculation module separate from the rate measuring device, is arranged in the timepiece 1 to analyze the results of the measurements carried out by the measuring device. a walk.
  • provision can be made for the device for measuring the rate to be programmed (or controlled by a suitable control circuit) to carry out automatic periodic measurements of the rate of the mechanical oscillator, for example once an hour or once per hour. or twice a day.
  • the gait measuring device may perform one or more successive measurements at the request of a user, for example by selecting an appropriate function in the application, on the external electronic unit 2. .
  • an operating mode for adjusting the rate in which the device for measuring the rate is controlled to take close measurements for a period of time. predefined in response to the reception of an adapted signal by the wireless communication module, before transmitting back to the wireless communication module at least one signal representative of the result obtained for each of the measurements carried out.
  • the results of these measurements are then transmitted to the external electronic unit 2 so that the user can take note of the value of the rate of the mechanical oscillator and decide whether it is worthwhile to adjust it.
  • the figures 2 , 3 and 4 represent various simplified perspective views of part of the timepiece 1 according to the present invention and of certain construction details of this timepiece 1, illustrating how the user can act on his mechanical oscillator if the results of the measures of his walk are not satisfactory.
  • the timepiece 1 has a generally conventional construction. It comprises a case comprising in particular a caseband 4 and a back (not shown), the caseband 4 carrying lugs 6 for attachment to a bracelet (not shown) and being traversed by a winding and time-setting rod integral with 'a crown 8 at its outer end.
  • a watch movement 10 of the mechanical type is assembled to the caseband 4 by means of a casing ring 12, the watch movement 10 here being self-winding, by way of non-limiting illustration, as indicated by the presence of an automatic winding mass 14.
  • the time base of the watch movement 10 is provided by a mechanical oscillator 16 comprising here a balance 18 associated with a spiral spring 20 as well as an escapement, the escape wheel 22 of which is partially visible on the figure 2 .
  • the balance 18 is integral with a balance shaft (not visible), one end of which is pivoted in a balance bridge 24.
  • the balance bridge 24 carries a racket 26, assembled with greasy friction so as to be able to be pivoted on the balance bridge 24 to adjust the useful length of the spiral spring 20.
  • the racket 26 has a fork 28, positioned above an arm of the balance bridge 24.
  • the latter also carries a racket mobile 30 capable of pivoting in a hole in the balance bridge 24.
  • the snowshoe mobile 30 is also represented, on the figure 4 , in a view from its side opposite to that visible on the figure 3 . It comprises a tenon 32 carrying a head 34 at its free end, defining an axial stop for a toothed board 36, and the other end 38 of which is housed in the balance bridge 24.
  • a disc 40 is driven out on the tenon 32 of so as to be arranged to bear against the toothed board 36, the disc 40 being off-center relative to the tenon 32 and therefore more generally relative to the axis of rotation of the snowshoe mobile 30.
  • the disc 40 is positioned between the two teeth of the fork 28 in the assembled configuration, and that a rotation of the snowshoe mobile 30 causes a displacement, in its plane, of the disc 40, the latter then acting on the fork 28 to move the racket 26.
  • the snowshoe mobile 30 is part of a manual adjustment mechanism of the rate of the mechanical oscillator 16 further comprising a control member 42 (see figure 2 ), arranged through the middle part 4 to be accessible from outside the box, a reference 44 carrying a toothed correction mobile 46 and an intermediate mobile 48.
  • the intermediate mobile 48 is pivotally mounted on a frame element of the movement watchmaker 10 and has a first toothed sector 50 arranged in engagement with the corrector toothed mobile 46, and a second toothed sector 52 arranged in engagement with the teeth of the toothed board 36 of the snowshoe mobile 30.
  • the control member 42 is inserted into a hole 54 of the caseband 4, in which it is retained by a screw 56 engaged in a groove 58 of the control member 42.
  • Two O-rings 60 are engaged in the hole 54, on the control member 42, to ensure both the sealing of the opening corresponding in the middle part 4 and the holding of the control member 42 in rotation.
  • the control member 42 has a square 62 at its internal end intended to be engaged in a pinion 64 arranged in engagement with a return wheel 44, in order to be able to drive the toothed correction wheel 46 in rotation, in response to a rotation of the control member 42 by a user, in one direction or the other.
  • a cutout 66 adapted in the frame of the watch movement 10 makes it possible to define limit stops for the rotation of the intermediate mobile wheel 48, in such a way that its toothed sectors 50 and 52 cannot disengage from the teeth with which they. cooperate.
  • the user can act manually on the racket of his timepiece to adjust the rate of his mechanical oscillator, while having access to the value of the rate in real time. or almost, depending on the operating parameters selected.
  • a gait measurement can be requested as needed and / or an adjustment operating mode can be activated of taking close measurements for a certain predefined period of time, long enough to be able to change the position of the racket several times and check the position. impact of this modification on the value of the rate measured subsequently.
  • the user can alternate readings of measurements and manual actions to modify the position of the racket as long as the adjustment of the rate of the mechanical oscillator is not satisfactory for him.
  • Each user can define his own criteria corresponding to a satisfactory setting. Typically, it can be considered that a rate adjustment is satisfactory, for example if its value is between -1 second / day and +5 seconds / day, preferably in three perpendicular orientations of the timepiece.
  • the present invention therefore proposes a new balance between respect for the tradition of mechanical watchmaking and the use of modern electronic tools, with an approach that is both fun and allowing the user to better appreciate the operation of his mechanical watch. .
  • the foregoing description attempts to describe a particular embodiment by way of nonlimiting illustration and the invention is not limited to the implementation of certain particular characteristics which have just been described, such as for example the fact that the illustrated timepiece is a wristwatch, the mode of implantation of the manual control member in the middle part or the nature of the illustrated and described horological movement.
  • the electronic module is not illustrated and has not been described in detail given that it can have a large number of additional functionalities not directly linked to the implementation of the present invention.
  • the operation of the electronic module is preferably ensured by a cell or a rechargeable battery, not shown, a battery possibly being recharged from the movements of the winding mass.
  • the exemplary embodiment which has been described enables those skilled in the art to produce a wide variety of constructions of timepieces, of the type comprising a wireless communication module arranged to transmit information relating to the operation of its oscillator. mechanical to an external electronic unit, to allow a user to then intervene on a manual adjustment mechanism of the rate of the mechanical oscillator, according to his own needs and without departing from the scope of the present invention.

Claims (11)

  1. Uhr (1) mit einem Gehäuse, das Folgendes beherbergt:
    ein Uhrwerk (10), das einen mechanischen Oszillator (16) umfasst,
    eine Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16),
    einen Mechanismus zur Einstellung des Gangs des mechanischen Oszillators (16), der ein manuelles Bedienorgan (42) umfasst, das von außerhalb des Gehäuses zugänglich ist und angeordnet ist, den Gang des mechanischen Oszillators (16) in Reaktion auf eine vorgegebene Einwirkung eines Benutzers auf das manuelle Bedienorgan (42) zu ändern,
    wobei das Gehäuse ferner ein Drahtloskommunikationsmodul beherbergt, das geeignet ist, Daten mit der Vorrichtung zur Regelung des Gangs des mechanischen Oszillators (16) auszutauschen und dazu bestimmt ist, mit einer externen elektronischen Einheit (2) zu kommunizieren, um an sie Ergebnisse der Messungen, die von der Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) vorgenommen werden, zu übertragen, die für einen Benutzer bestimmt sind.
  2. Uhr (1) nach Anspruch 1, dadurch gekennzeichnet, dass die Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) dafür programmiert ist, periodische Messungen durchzuführen.
  3. Uhr (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) angeordnet ist, mindestens eine Messung des Gangs des mechanischen Oszillators (16) auf Anforderung vornehmen zu können, in Reaktion auf den Empfang eines Signals, das vom Drahtloskommunikationsmodul angepasst ist, bevor sie mindestens ein Signal, das für das Ergebnis repräsentativ ist, das für die mindestens eine vorgenommene Messung erhalten wurde, an das Drahtloskommunikationsmodul zurück überträgt.
  4. Uhr (1) nach Anspruch 3, dadurch gekennzeichnet, dass die Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) angeordnet ist, angenäherte Messungen während einer vorgegebenen Dauer vornehmen zu können, in Reaktion auf den Empfang eines Signals, das vom Drahtloskommunikationsmodul angepasst ist, bevor sie mindestens ein Signal, das für das Ergebnis repräsentativ ist, das für jede der vorgenommenen Messungen erhalten wurde, an das Drahtloskommunikationsmodul zurück überträgt.
  5. Uhr (1) nach Anspruch 4, dadurch gekennzeichnet, dass die angenäherten Messungen alle zwei Sekunden vorgenommen werden, vorzugsweise alle Sekunden, während die vorgegebene Dauer zwischen zehn Sekunden und zehn Minuten, vorzugsweise zwischen dreißig Sekunden und drei Minuten liegt.
  6. Uhr (1) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
    dass der mechanische Oszillator (16) eine Hemmung (22) aufweist, und,
    dass die Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) einen Sensor aufweist, der angeordnet ist, nach Betriebsgeräuschen der Hemmung (22) zu lauschen, um davon den Wert des Gangs des mechanischen Oszillators (16) abzuleiten.
  7. Uhr (1) nach Anspruch 6, dadurch gekennzeichnet, dass die Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) ferner angeordnet ist, den Wert der Amplitude der Schwingungen des mechanischen Oszillators (16) und/oder seinen Gleichgewichtspunkt zu bestimmen.
  8. Uhr (1) nach einem der vorhergehenden Ansprüche, wobei das Gehäuse einen Mittelteil (4) aufweist, wobei der mechanische Oszillator (16) mit einem Rücker (26) in Verbindung steht, dessen Bewegungen eine Variation des Gangs des mechanischen Oszillators (16) herbeiführen, dadurch gekennzeichnet,
    dass das manuelle Bedienorgan (42) des Mechanismus zur Einstellung des Gangs so durch den Mittelteil (4) angeordnet ist, dass seine Drehung die Drehung eines gezahnten Korrekturdrehteils (46) herbeiführt, das sich innerhalb des Gehäuses befindet, und,
    dass das gezahnte Korrekturdrehteil (46) eine kinematische Verbindung mit einem Regulierdrehteil (30) aufweist, dessen Drehbewegungen Bewegungen des Rückers (26) herbeiführen.
  9. Uhr (1) nach Anspruch 8, dadurch gekennzeichnet, dass die kinematische Verbindung ein Zwischendrehteil (48) umfasst, das einen ersten gezahnten Bereich (50), der in Eingriff mit dem gezahnten Korrekturdrehteil (46) angeordnet ist, und einen zweiten gezahnten Bereich (52), der in Eingriff mit einer Zahnung (36) des Regulierdrehteils (30) angeordnet ist, aufweist.
  10. Uhr (1) nach Anspruch 9, dadurch gekennzeichnet, dass das Regulierdrehteil (30) ein Organ (40) trägt, das in Bezug auf die Drehachse des Regulierdrehteils (30) dezentriert ist und in einer Gabel (28) des Rückers (26) so positioniert ist, dass eine Drehung des Regulierdrehteils (30) eine Bewegung des Rückers (26) herbeiführt.
  11. Verfahren zur Einstellung des Gangs eines mechanischen Oszillators (16) einer Uhr (1) mit einem Gehäuse, das Folgendes beherbergt:
    ein Uhrwerk (10) umfassend den mechanischen Oszillator (16), eine Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16), einen Mechanismus zur Einstellung des Gangs des mechanischen Oszillators (16), der ein manuelles Bedienorgan (42) umfasst, das von außerhalb des Gehäuses zugänglich ist und angeordnet ist, den Gang des mechanischen Oszillators (16) in Reaktion auf eine vorgegebene Einwirkung eines Benutzers auf das manuelle Bedienorgan (42) zu ändern,
    ein Drahtloskommunikationsmodul, das geeignet ist, Daten mit der Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) auszutauschen und dazu bestimmt ist, mit einer externen elektronischen Einheit (2) zu kommunizieren, um an sie Ergebnisse der Messungen, die von der Vorrichtung zur Messung des Gangs des mechanischen Oszillators (16) vorgenommen werden, zu übertragen, die für einen Benutzer bestimmt sind, wobei es die Schritte aufweist, die darin bestehen:
    a) sich mit einer externen elektronischen Einheit (2) zu versehen, die eine Anwendung umfasst, die geeignet ist, mit dem Kommunikationsmodul der Uhr (1) zu kommunizieren,
    b) die Vorrichtung zur Messung des Gangs mittels der Anwendung und des Kommunikationsmoduls so zu bedienen, dass sie mindestens eine Messung des Gangs vornimmt,
    c) den Messwert für den Gang des mechanischen Oszillators (16) in der Anwendung zu lesen,
    d) von außerhalb des Gehäuses auf das manuelle Bedienorgan (42) einzuwirken, um die Einstellung des Gangs des mechanischen Oszillators (16) zu ändern,
    e) die Schritte b) bis d) erneut zu beginnen, bis der Messwert für den Gang des mechanischen Oszillators (16) zufriedenstellend ist.
EP20152107.7A 2019-01-18 2020-01-16 Uhr mit mechanischem oszillator, die ein drahtloses kommunikationsmodul umfasst Active EP3683633B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CH00061/19A CH715761A2 (fr) 2019-01-18 2019-01-18 Pièce d'horlogerie à oscillateur mécanique comportant un module de communication sans fil.

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EP3683633A1 EP3683633A1 (de) 2020-07-22
EP3683633B1 true EP3683633B1 (de) 2021-09-29

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH718090B1 (fr) 2020-11-26 2023-07-31 Rewary Gmbh Dispositif électronique pour montre-bracelet et montre-bracelet comprenant un tel dispositf électronique.
DE102021116655A1 (de) * 2021-06-28 2022-12-29 Stefan Herr Elektronische Überwachung von rein mechanischen Uhren zum Zweck der prädiktiven Wartung

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH290647A (fr) * 1950-07-15 1953-05-15 Bueche Vital Dispositif de commande d'une raquette de montre depuis l'extérieur de la boîte.
CH707105B1 (de) 2013-04-12 2014-04-30 Urwerk Sa Felix Baumgartner Mechanische Uhr mit elektronischer Ganggenauigkeitsanzeige.
FR3019321B1 (fr) * 2014-03-27 2017-11-03 Davy Pillet Systeme de verification des performances de marche d'une montre mecanique
CH711303A1 (fr) 2015-07-09 2017-01-13 Soprod Sa Dispositif de correction pour un mouvement horloger mécanique.

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EP3683633A1 (de) 2020-07-22

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