EP2136271A1 - Display device for displaying one of two different indications using the same indicating element of a timepiece - Google Patents

Display device for displaying one of two different indications using the same indicating element of a timepiece Download PDF

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Publication number
EP2136271A1
EP2136271A1 EP08158405A EP08158405A EP2136271A1 EP 2136271 A1 EP2136271 A1 EP 2136271A1 EP 08158405 A EP08158405 A EP 08158405A EP 08158405 A EP08158405 A EP 08158405A EP 2136271 A1 EP2136271 A1 EP 2136271A1
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EP
European Patent Office
Prior art keywords
mobile
display device
counter
wheel
axial position
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.)
Granted
Application number
EP08158405A
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German (de)
French (fr)
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EP2136271B1 (en
Inventor
Vincent Laucella
Jean-Philippe Rochat
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.)
Montres Breguet SA
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Montres Breguet SA
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Filing date
Publication date
Application filed by Montres Breguet SA filed Critical Montres Breguet SA
Priority to DE602008004125T priority Critical patent/DE602008004125D1/en
Priority to AT08158405T priority patent/ATE492837T1/en
Priority to EP08158405A priority patent/EP2136271B1/en
Priority to US12/485,413 priority patent/US8179744B2/en
Priority to CN2009101496516A priority patent/CN101609301B/en
Priority to JP2009144016A priority patent/JP5322796B2/en
Publication of EP2136271A1 publication Critical patent/EP2136271A1/en
Application granted granted Critical
Publication of EP2136271B1 publication Critical patent/EP2136271B1/en
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    • 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
    • G04B19/00Indicating the time by visual means
    • G04B19/02Back-gearing arrangements between gear train and hands
    • 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
    • G04B19/00Indicating the time by visual means
    • G04B19/22Arrangements for indicating different local apparent times; Universal time pieces
    • G04B19/221Arrangements for indicating different local apparent times; Universal time pieces mechanisms for correcting the hours hand only, i.e. independently for minutes and seconds hands
    • GPHYSICS
    • G04HOROLOGY
    • G04FTIME-INTERVAL MEASURING
    • G04F7/00Apparatus for measuring unknown time intervals by non-electric means
    • G04F7/04Apparatus for measuring unknown time intervals by non-electric means using a mechanical oscillator
    • G04F7/08Watches or clocks with stop devices, e.g. chronograph
    • G04F7/0866Special arrangements

Definitions

  • the present invention generally relates to a display device for a timepiece comprising a rotating analog indicator member, a mobile of a first counter and a mobile of a second counter whose angular positions are respectively representative of two magnitudes to be displayed by the indicating member. and a manually operated switching mechanism for selectively displaying the first or second magnitude by the indicating member.
  • the present invention also relates to a timepiece comprising a display device of the above type.
  • the patent document CH 693'155 in particular discloses a switching mechanism which comprises two cores carried by two mobiles whose angular positions are respectively representative of two variables variables.
  • the first mobile and the heart that it carries are rotated by the movement of the timepiece.
  • a wheel carrying a needle is mounted freely on the axis of rotation of the first mobile. This wheel carries a lever which is permanently recalled against the side of the heart by a small spring.
  • the switching of the display in the opposite direction is considerably more complex.
  • the passage of the display of the first to that of the second variable variable involves a differential gear comprising a planet wheel integral with the second core of the mechanism.
  • An object of the present invention is therefore to provide a timepiece display device comprising a switching mechanism designed to selectively display a first or a second magnitude by the same indicator member, the mechanism being simpler and more compact than those that have been proposed so far.
  • the present invention accomplishes this purpose by providing a display device according to claim 1.
  • first (or second) meter mobile in the claims not only refers to a chronograph counter wheel. This expression designates on the contrary, in general, any mobile whose angular position is representative of a magnitude likely to be displayed by a rotating analog indicator member.
  • the display device according to the present invention may, alternatively, be integrated in a chronograph watch 1.
  • the terms 3 hours, 6 hours, 9 hours, 12 hours, up, down, upper and lower are used with reference to a chronograph watch seen from above, that is to say seen from the dial side as in the figure 1 .
  • the chronograph watch 1 makes it possible to display the current time using an hour hand 10, a minute hand 11 and a small second hand 13 arranged at 3 o'clock. Conventionally, it also comprises a winding crown and time setting 3. To ensure the chronograph function, the watch also includes a chronograph mechanism that can be turned on manually and intended to measure the time elapsed since its start up. In this Indeed, the watch 1 usually comprises a first push button 5 placed at 2 o'clock and controlling the start and stop of the chronograph, and a second push button 7 placed at 4 o'clock and controlling the reset of the chronograph.
  • the chronograph watch of the figure 1 further comprises a manually operated switching mechanism for selectively displaying by the same indicator member either a first magnitude or a second magnitude.
  • the first magnitude is the elapsed time measured by the chronograph mechanism
  • the second magnitude is the current time of a second time zone. It is the hand 21 of the hour meter 20 which constitutes the indicator organ intended to display the first and the second magnitude.
  • the watch 1 comprises two additional pushbuttons 23, 25.
  • a first of these additional pushbuttons 23, placed at 8 o'clock fulfills the manual control function for the switching mechanism according to the invention.
  • the function of the second additional pushbutton 25, placed at 10 o'clock will be explained later.
  • the chronograph watch 1 comprises a time base 30 associated with a frequency divider 32 for controlling the running of a display of the current time.
  • the hands 10, 11 and 13 ensuring the display of the current time are also shown schematically on the figure 2 .
  • the time base 30 may of course be in the form of a balance spring, and the frequency divider 32 may be constituted by the work train driving this balance.
  • the chronograph watch shown is also equipped with a mechanism of the traditional type scheduled to cooperate with a timer train 42 so as to change the display hours 10 and minutes 11.
  • the winding crown and setting time 3 controlling the setting mechanism at the time is also schematically represented in the figure 2 .
  • a chronograph mobile 34 which carries the second hand 15, a minute counter mobile 36 which carries the minute counter needle 18, and a clock counter mobile 38 intended to drive the counter needle 21; 20 hours via the switching mechanism 40 according to the invention.
  • This switching mechanism the operation of which will be described in detail later, is intended to be actuated manually by means of the push-button 23.
  • the switching mechanism 40 the elements which have just been described are components standard of a chronograph mechanism.
  • the figure 2 is still schematically the first push button 5 provided to control the running and stopping of the chronograph mechanism, and the second push button 7 provided to control its reset.
  • FIG 2 still shows a mobile time "spindle" 44 which is provided to be alternately coupled with / decoupled from the hand 21 of the hour counter 20 by the switching mechanism 40.
  • the mobile hours 44 is itself driven by the timer 42 via a time shift adjusting mechanism 46 controlled by the pushbutton 25.
  • the chronograph hour counter which is provided to display alternately one or the other of two indications.
  • the hour meter hand 21 which constitutes the indicator member of the display device of the present invention.
  • the figure 6 shows in detail an embodiment of the rotary shaft 73 and the moving mobile, or selector 71, which are in the center of the switching mechanism of the invention.
  • the rotary shaft 73 of the switching mechanism is a vertically oriented axis (perpendicular to the plane of the watch) at one end of which is mounted directly the counter needle.
  • the rotary shaft 73 has a long square 75 on which the selector 71, whose hole is also square, has the possibility of sliding between a first and a second extreme axial position.
  • the cooperation of the two squares, that of the rotary shaft and that of the selector makes it possible to make these two elements integral in rotation with one another.
  • the figures 4 , 5 and 6 shows the selector 71 in the first axial position, that is to say in the lower position, pressed against the wheel, or mobile, hour meter 38.
  • the selector is coupled to the hour counter wheel , and the latter can therefore drive the selector in rotation.
  • the hour hand of the hour counter 21 is connected to the hour counter wheel 38 so as to indicate the elapsed hours measured by the chronograph mechanism.
  • the switching mechanism of the invention also includes first and second means for synchronizing and stalling the phase to synchronize the rotary shaft with the mobile that drives it. Only the second means of synchronization and timing of the phase, which are provided to adjust the angular position of the shaft 73 to that of the hour wheel 44, are visible on the figure 6 .
  • These synchronization means comprise a bell cam 81 formed in the upper face of the selector 71 and a cam follower, or index 83, integral with the "spindle" hours wheel 44. When the selector 71 is pressed against the wheel 44, the index 83 presses against the incline of the cam 81, which has the effect of rotating the latter by driving the selector 71 and the rotary shaft 73.
  • the index 83 rotates the cam 81 by sliding on the slope of the latter until it is at the bottom, at the lowest point, called the tick of the cam. Once the index finger 83 seated in the check mark of the cam, the hour wheel "spindle" 44 and the selector 71 are synchronized.
  • This column wheel 51 comprises a peripheral sawtooth drive gear on which an operating lever 53 actuated by a pushbutton 23 operates.
  • the column wheel 51 is held in a determined position by a jumper (no represent).
  • the column wheel further comprises on its underside a series of columns 57a, 57b formed by singing teeth separated from each other by recesses.
  • the hollows have a flat bottom and that the edge teeth are truncated so as to also include a flat.
  • the edge toothing 57 has half fewer columns (or teeth) than the peripheral toothing, so that driving a step by actuation of the pusher 23 successively brings the bottom of a hollow and the flat of a tooth. in front of a given reference position.
  • the switching control is constituted by a flip-flop 61 forked.
  • Flip-flop 61 is held by a horizontal axis 63 around which it is free to pivot in a vertical plane.
  • a first arm 65 of the rocker (corresponding to the handle of the fork) has at its end a nose 66 biased against the toothing of edge 57 by a return spring 67.
  • the second arm of the rocker is shaped to communicate its movement to the selector 71.
  • the second arm ends with a fork between the branches 69a, 69b of which the selector is retained.
  • two coaxial cylindrical nipples are respectively formed on the inner faces of the two parallel branches 69a, 69b of the fork (only one of these nipples referenced 77 being visible on the figure 6 ).
  • the two pins are provided to engage on both sides in the annular notch 79 of the selector 71, so as to drive the latter to slide between the first and second axial position.
  • the figures 3 , 4 and 5 still show the kinematic chain which allows the barrel wheel 87 carrying the hour hand 10 to also drive the hour wheel "spindle" 44.
  • This kinematic chain comprises a spindle mobile formed of a toothed wheel 91 and a star with 12 branches 93, which is mounted crazy on the barrel of the hour hand.
  • the toothed wheel 91 and the barrel wheel are coaxial and the star 93 is mounted to rotate facing the barrel wheel 87.
  • the latter carries on its board a jumper 89 which is biased against the star 93 so as to maintain the latter in a given angular position relative to the hour wheel 87.
  • the jumper 89 can immobilize it in 12 different positions corresponding to the 12 possible values of the time difference between two time zones.
  • the spindle and its gear wheel 91 are driven by the barrel wheel 87 at the speed of one revolution per 12 hours.
  • the toothed wheel 91 is arranged to drive the spindle hours wheel 44 via a gear 95.
  • the wheel 44 and the wheel 91 having the same number of teeth, they turn to the same wheel. speed corresponding to one turn in 12 hours.
  • the time difference between the hour hand 10 and the "spindle" hour wheel 44 is determined by the cooperation of the jumper 89 with the 12-pointed star 93. It is possible to adjust the time difference to using pusher 25 ( figures 1 and 2 ).
  • the rotating shaft does not need to be mounted vertically, and can very well rotate horizontally in the plane of the watch much like a time-setting rod. Under these conditions, if the mobile flip is controlled by a flip-flop, it can also move in the horizontal plane in the manner of a time-setting flip-flop. It will be further understood that with such an embodiment, the display member can not be mounted directly on the rotary shaft, but must be driven via a train.
  • each of the means of synchronization and timing of the phase could for example include at least one magnet and a ferromagnetic element (or preferably two magnets, at least), one being secured to the moving mobile and the other integral with the meter mobile. Under these conditions, the timing of the phase would be ensured by the magnetic forces appearing between the magnet and the ferromagnetic element (or between the two magnets) when they are brought closer to one another.
  • the moving mobile could function as a double clutch without synchronization.
  • the means of synchronization and calibration of the phase could be constituted by two cores and at least one differential gear as in the document CH 693'155 .
  • the synchronization and timing means of the phase actually comprises a bell cam adapted to cooperate with a cam follower, it could be, in an equivalent manner, the sliding mobile carrying the follower of cam and the counter mobile which carries the cam bell.

Abstract

The device has a switch mechanism comprising a rotating arbor kinematically connected to an indicator. A sliding wheel set is secured to a rotating arbor and provided for sliding via action of a manual control device to selectively occupy an axial position in which the sliding wheel set is coupled with a counter wheel set. The sliding wheel set is coupled with another counter wheel set in another axial position. Phase synchronization and lock units adjust an angular position of the rotating arbor of the counter wheel sets when the sliding wheel set occupies the axial positions.

Description

La présente invention concerne généralement un dispositif d'affichage pour pièce d'horlogerie comportant un organe indicateur analogique tournant, un mobile de premier compteur et un mobile de second compteur dont les positions angulaires sont respectivement représentatives de deux grandeurs à afficher par l'organe indicateur, et un mécanisme de commutation à commande manuelle prévu pour faire afficher sélectivement la première ou la seconde grandeur par l'organe indicateur. La présente invention concerne également une pièce d'horlogerie comprenant un dispositif d'affichage du type ci-dessus.The present invention generally relates to a display device for a timepiece comprising a rotating analog indicator member, a mobile of a first counter and a mobile of a second counter whose angular positions are respectively representative of two magnitudes to be displayed by the indicating member. and a manually operated switching mechanism for selectively displaying the first or second magnitude by the indicating member. The present invention also relates to a timepiece comprising a display device of the above type.

On connaît déjà des dispositifs d'affichage pour pièce d'horlogerie correspondant à la définition ci-dessus. Le document de brevet CH 693'155 notamment décrit un mécanisme de commutation qui comporte deux coeurs portés par deux mobiles dont les positions angulaires sont respectivement représentatives de deux grandeurs variables. Le premier mobile et le coeur qu'il porte sont entraînés en rotation par le mouvement de la pièce d'horlogerie. De plus, de façon analogue à ce qui est connu dans les chronographes à rattrapante, une roue portant une aiguille est montée libre sur l'axe de rotation du premier mobile. Cette roue porte un levier qui est rappelé en permanence contre le flanc du coeur par un petit ressort.Already known timepiece display devices corresponding to the definition above. The patent document CH 693'155 in particular discloses a switching mechanism which comprises two cores carried by two mobiles whose angular positions are respectively representative of two variables variables. The first mobile and the heart that it carries are rotated by the movement of the timepiece. In addition, similarly to what is known in split-second chronographs, a wheel carrying a needle is mounted freely on the axis of rotation of the first mobile. This wheel carries a lever which is permanently recalled against the side of the heart by a small spring.

Avec ce mécanisme antérieur, lorsque l'aiguille indique la grandeur variable représentée par la position angulaire du second mobile. Si le porteur de la pièce d'horlogerie veut commuter l'affichage pour connaître la première grandeur variable, il actionne un mécanisme de commutation qui agit, tout d'abord, en découplant l'aiguille d'avec le second coeur. Une fois ce découplage effectué, l'aiguille n'est plus reliée qu'à la roue qui porte le levier rappelé contre le flanc du premier coeur. Dans ces conditions, la faible pression exercée par le levier suffit pour faire glisser celui-ci contre le flanc du coeur, et donc pour faire tourner le levier autour du coeur avec la roue qui le porte. A la fin de sa course autour du coeur, l'incliné du levier vient se caler à la base du coeur, ce dernier se trouvant ainsi coupler avec l'aiguille. On comprendra donc que l'action du levier sur le coeur a pour effet d'amener et de maintenir l'aiguille dans la position correspondant à l'état de la première grandeur variable.With this prior mechanism, when the needle indicates the variable magnitude represented by the angular position of the second mobile. If the wearer of the timepiece wants to switch the display to know the first variable variable, it actuates a switching mechanism that acts, firstly, by decoupling the needle from the second heart. Once this decoupling is done, the needle is no longer connected to the wheel bearing the lever raised against the flank of the first heart. Under these conditions, the low pressure exerted by the lever is enough to slide it against the side of the heart, and thus to rotate the lever around the heart with the wheel that carries it. At the end of its run around the heart, the inclined lever is wedged to the base of the heart, the latter being thus coupled with the needle. It will therefore be understood that the action of the lever on the heart has the effect of bringing and maintaining the needle in the position corresponding to the state of the first variable variable.

Selon ce document antérieur, la commutation de l'affichage en sens inverse est nettement plus complexe. En effet, le passage de l'affichage de la première à celui de la seconde grandeur variable fait intervenir un rouage différentiel comportant une roue porte-satellite solidaire du deuxième coeur du mécanisme.According to this earlier document, the switching of the display in the opposite direction is considerably more complex. Indeed, the passage of the display of the first to that of the second variable variable involves a differential gear comprising a planet wheel integral with the second core of the mechanism.

Un but de la présente invention est donc de fournir un dispositif d'affichage pour pièce d'horlogerie comportant un mécanisme de commutation prévus pour faire afficher sélectivement une première ou une seconde grandeur par un même organe indicateur, le mécanisme étant plus simple et plus compact que ceux qui ont été proposé jusqu'ici. La présente invention atteint ce but en fournissant un dispositif d'affichage conforme à la revendication 1.An object of the present invention is therefore to provide a timepiece display device comprising a switching mechanism designed to selectively display a first or a second magnitude by the same indicator member, the mechanism being simpler and more compact than those that have been proposed so far. The present invention accomplishes this purpose by providing a display device according to claim 1.

Il est important de préciser que l'expression « mobile de premier (ou de second) compteur » dans les revendications ne désigne pas uniquement une roue de compteur de chronographe. Cette expression désigne au contraire, de manière générale, tout mobile dont la position angulaire est représentative d'une grandeur susceptible d'être affichée par un organe indicateur analogique tournant.It is important to clarify that the term "first (or second) meter mobile" in the claims not only refers to a chronograph counter wheel. This expression designates on the contrary, in general, any mobile whose angular position is representative of a magnitude likely to be displayed by a rotating analog indicator member.

D'autres caractéristiques et avantages de la présente invention apparaîtront à la lecture de la description qui va suivre, donnée uniquement à titre d'exemple non limitatif, et faite en référence aux dessins annexés dans lesquels :

  • la figure 1 est une vue de dessus d'une montre bracelet avec chronographe comprenant un mécanisme d'affichage correspondant à un mode de réalisation particulier de la présente invention ;
  • la figure 2 est un schéma de principe décrivant le fonctionnement de la montre chronographe de la figure 1 ;
  • la figure 3 est une vue de dessus du dispositif d'affichage selon l'invention intégré dans la montre chronographe des figures 1 et 2 (certains éléments du dispositif placés sous le cadran de la montre chronographe étant visible en transparence) ;
  • la figure 4 est une vue en coupe du dispositif d'affichage de la figure 3 ;
  • la figure 5 est une vue en perspective du dispositif d'affichage des figures 3 et 4 ;
  • la figure 6 est une vue partielle du dispositif d'affichage des figures 3, 4 et 5 dans laquelle les mobiles de premier et de second compteur ont été omis pour montrer les moyens de synchronisation et de calage de la phase ainsi que d'autres éléments faisant partie d'un mode de réalisation particulier du mécanisme de commutation de l'invention.
Other features and advantages of the present invention will appear on reading the following description, given solely by way of non-limiting example, and with reference to the appended drawings in which:
  • the figure 1 is a top view of a wristwatch with chronograph comprising a display mechanism corresponding to a particular embodiment of the present invention;
  • the figure 2 is a schematic diagram describing the operation of the chronograph watch of the figure 1 ;
  • the figure 3 is a top view of the display device according to the invention integrated into the chronograph watch of the figures 1 and 2 (certain elements of the device placed under the dial of the chronograph watch being visible in transparency);
  • the figure 4 is a sectional view of the display device of the figure 3 ;
  • the figure 5 is a perspective view of the display device of figures 3 and 4 ;
  • the figure 6 is a partial view of the display device of the figures 3 , 4 and 5 wherein the first and second counter mobiles have been omitted to show the timing and timing means of the phase as well as other elements forming part of a particular embodiment of the switching mechanism of the invention.

Comme illustré par la figure 1, le dispositif d'affichage selon la présente invention peut, selon une variante, être intégré dans une montre chronographe 1. Dans la description qui suit, les termes 3 heures, 6 heures, 9 heures, 12 heures, haut, bas, supérieur et inférieur sont utilisés en faisant référence à une montre chronographe vue de dessus, c'est-à-dire vue du côté cadran comme dans la figure 1.As illustrated by figure 1 , the display device according to the present invention may, alternatively, be integrated in a chronograph watch 1. In the following description, the terms 3 hours, 6 hours, 9 hours, 12 hours, up, down, upper and lower are used with reference to a chronograph watch seen from above, that is to say seen from the dial side as in the figure 1 .

La montre chronographe 1 permet d'afficher l'heure courante à l'aide d'une aiguille des heures 10, d'une aiguille des minutes 11 et d'une aiguille de petite seconde 13 disposée à 3 heures. De façon classique, elle comprend également une couronne de remontoir et de mise à l'heure 3. Pour assurer la fonction de chronographe, la montre comprend également un mécanisme de chronographe pouvant être mis en marche manuellement et prévu pour mesurer le temps écoulé depuis sa mise en marche. A cet effet, la montre 1 comprend de manière habituelle un premier bouton poussoir 5 placé à 2 heures et commandant la mise en marche et l'arrêt du chronographe, et un deuxième bouton poussoir 7 placé à 4 heures et commandant la remise à zéro du chronographe. Elle est prévue pour afficher le temps écoulé à l'aide d'une trotteuse centrale 15 indiquant les secondes, d'un compteur de trente minutes 17 placé à 9 heures et muni d'une aiguille 18 et, enfin, d'un compteur de douze heures 20 placé à 6 heures et munis d'une aiguille 21.The chronograph watch 1 makes it possible to display the current time using an hour hand 10, a minute hand 11 and a small second hand 13 arranged at 3 o'clock. Conventionally, it also comprises a winding crown and time setting 3. To ensure the chronograph function, the watch also includes a chronograph mechanism that can be turned on manually and intended to measure the time elapsed since its start up. In this Indeed, the watch 1 usually comprises a first push button 5 placed at 2 o'clock and controlling the start and stop of the chronograph, and a second push button 7 placed at 4 o'clock and controlling the reset of the chronograph. It is intended to display the elapsed time using a central second hand indicating the seconds, a thirty-minute counter placed at 9 o'clock and equipped with a needle 18 and finally a counter of twelve hours placed at 6 o'clock and provided with a needle 21.

Conformément à l'invention, la montre chronographe de la figure 1 comporte encore un mécanisme de commutation à commande manuelle pour faire afficher sélectivement par un même organe indicateur, soit une première grandeur, soit une seconde grandeur. Dans le présent exemple, la première grandeur est le temps écoulé mesuré par le mécanisme de chronographe, et la seconde grandeur correspond à l'heure courante d'un second fuseau horaire. C'est l'aiguille 21 du compteur d'heure 20 qui constitue l'organe indicateur prévu pour afficher la première et la seconde grandeur. On peut voir sur la figure 1 que la montre 1 comporte deux boutons-poussoirs supplémentaires 23, 25. Dans le présent exemple, un premier de ces boutons-poussoirs supplémentaires 23, placé à 8 heures, remplit la fonction de commande manuelle pour le mécanisme de commutation selon l'invention. La fonction du second bouton-poussoir supplémentaire 25, placé à 10 heures, sera expliquée plus loin.According to the invention, the chronograph watch of the figure 1 further comprises a manually operated switching mechanism for selectively displaying by the same indicator member either a first magnitude or a second magnitude. In the present example, the first magnitude is the elapsed time measured by the chronograph mechanism, and the second magnitude is the current time of a second time zone. It is the hand 21 of the hour meter 20 which constitutes the indicator organ intended to display the first and the second magnitude. We can see on the figure 1 that the watch 1 comprises two additional pushbuttons 23, 25. In the present example, a first of these additional pushbuttons 23, placed at 8 o'clock, fulfills the manual control function for the switching mechanism according to the invention. The function of the second additional pushbutton 25, placed at 10 o'clock, will be explained later.

Si l'on se réfère maintenant au schéma de principe de la figure 2, on voit que, de façon classique, la montre chronographe 1 comporte une base de temps 30 associée à un diviseur de fréquence 32 pour commander la marche d'un affichage de l'heure courante. Les aiguilles 10, 11 et 13 assurant l'affichage de l'heure courante sont également représentées schématiquement sur la figure 2. La base de temps 30 peut évidement être réalisée sous la forme d'un balancier-spiral, et le diviseur de fréquence 32 peut être constitué par le rouage de finissage entraînant ce balancier. La montre chronographe représentée est également équipée d'un mécanisme de mise à l'heure de type traditionnelle prévu pour coopérer avec un rouage de minuterie 42 de manière à changer l'affichage des heures 10 et des minutes 11. La couronne de remontoir et de mise à l'heure 3 commandant le mécanisme de mise à l'heure est également représentée schématiquement dans la figure 2.If we now turn to the schematic diagram of the figure 2 it will be seen that, in a conventional manner, the chronograph watch 1 comprises a time base 30 associated with a frequency divider 32 for controlling the running of a display of the current time. The hands 10, 11 and 13 ensuring the display of the current time are also shown schematically on the figure 2 . The time base 30 may of course be in the form of a balance spring, and the frequency divider 32 may be constituted by the work train driving this balance. The chronograph watch shown is also equipped with a mechanism of the traditional type scheduled to cooperate with a timer train 42 so as to change the display hours 10 and minutes 11. The winding crown and setting time 3 controlling the setting mechanism at the time is also schematically represented in the figure 2 .

On voit encore sur la figure 2 un mobile de chronographe 34 qui porte la trotteuse 15, un mobile de compteur des minutes 36 qui porte l'aiguille 18 de compteur de minutes 17, et un mobile de compteur d'heures 38 prévu pour entraîner l'aiguille 21 du compteur d'heures 20 par l'intermédiaire du mécanisme de commutation 40 selon l'invention. Ce mécanisme de commutation dont le fonctionnement sera décrit en détail plus loin est prévu pour être actionné manuellement à l'aide du bouton-poussoir 23. A l'exception du mécanisme de commutation 40, les éléments qui viennent d'être décrits sont des composants standard d'un mécanisme de chronographe. La figure 2 représente encore de manière schématique le premier bouton-poussoir 5 prévu pour commander la marche et l'arrêt du mécanisme de chronographe, et le second bouton-poussoir 7 prévu pour commander sa remise à zéro.We still see on the figure 2 a chronograph mobile 34 which carries the second hand 15, a minute counter mobile 36 which carries the minute counter needle 18, and a clock counter mobile 38 intended to drive the counter needle 21; 20 hours via the switching mechanism 40 according to the invention. This switching mechanism, the operation of which will be described in detail later, is intended to be actuated manually by means of the push-button 23. With the exception of the switching mechanism 40, the elements which have just been described are components standard of a chronograph mechanism. The figure 2 is still schematically the first push button 5 provided to control the running and stopping of the chronograph mechanism, and the second push button 7 provided to control its reset.

Finalement, la figure 2 montre encore un mobile des heures « fuseau » 44 qui est prévu pour être alternativement couplé avec/découplé de l'aiguille 21 du compteur d'heures 20 par le mécanisme de commutation 40. Le mobile des heures 44 est lui-même entraîné par la minuterie 42 par l'intermédiaire d'un mécanisme de réglage du décalage horaire 46 commandé par le bouton-poussoir 25.Finally, the figure 2 still shows a mobile time "spindle" 44 which is provided to be alternately coupled with / decoupled from the hand 21 of the hour counter 20 by the switching mechanism 40. The mobile hours 44 is itself driven by the timer 42 via a time shift adjusting mechanism 46 controlled by the pushbutton 25.

Un mode de réalisation particulier du dispositif d'affichage selon la présente invention va maintenant être décrit en faisant référence aux figures 3, 4, 5 et 6. Comme on l'a déjà dit, dans le présent mode de réalisation, c'est le compteur d'heures du chronographe qui est prévu pour afficher alternativement l'une ou l'autre de deux indications. Autrement dit, selon le présent exemple, c'est l'aiguille de compteur d'heures 21 qui constitue l'organe indicateur du dispositif d'affichage de la présente invention.A particular embodiment of the display device according to the present invention will now be described with reference to the figures 3 , 4 , 5 and 6 . As has already been said, in the present embodiment, it is the chronograph hour counter which is provided to display alternately one or the other of two indications. In other words, according to the present example, it is the hour meter hand 21 which constitutes the indicator member of the display device of the present invention.

La figure 6 montre en détail un mode de réalisation de l'arbre rotatif 73 et du mobile coulant, ou sélecteur 71, qui sont au centre du mécanisme de commutation de l'invention. Comme on peut le constater, dans l'exemple illustré, l'arbre rotatif 73 du mécanisme de commutation est un axe orienté verticalement (perpendiculairement au plan de la montre) à l'une des extrémités duquel est montée directement l'aiguille de compteur d'heures 21. A son autre extrémité, l'arbre rotatif 73 possède un long carré 75 sur lequel le sélecteur 71, dont le trou est également carré, à la possibilité de coulisser entre une première et une seconde position axiale extrême. La coopération des deux carrés, celui de l'arbre rotatif et celui du sélecteur, permet de rendre ces deux éléments solidaires en rotation l'un de l'autre.The figure 6 shows in detail an embodiment of the rotary shaft 73 and the moving mobile, or selector 71, which are in the center of the switching mechanism of the invention. As can be seen, in the example illustrated, the rotary shaft 73 of the switching mechanism is a vertically oriented axis (perpendicular to the plane of the watch) at one end of which is mounted directly the counter needle. At its other end, the rotary shaft 73 has a long square 75 on which the selector 71, whose hole is also square, has the possibility of sliding between a first and a second extreme axial position. The cooperation of the two squares, that of the rotary shaft and that of the selector, makes it possible to make these two elements integral in rotation with one another.

Les figures 4, 5 et 6 montre le sélecteur 71 dans la première position axiale, c'est à dire en position inférieure, plaqué contre la roue, ou mobile, de compteur d'heure 38. Dans cette position, le sélecteur est couplé à la roue de compteur d'heure, et cette dernière peut donc entraîner le sélecteur en rotation. On comprendra donc qu'en première position axiale, l'aiguille des de compteur d'heures 21 est reliée à la roue de compteur d'heures 38 de manière à indiquer les heures écoulées mesurées par le mécanisme de chronographe.The figures 4 , 5 and 6 shows the selector 71 in the first axial position, that is to say in the lower position, pressed against the wheel, or mobile, hour meter 38. In this position, the selector is coupled to the hour counter wheel , and the latter can therefore drive the selector in rotation. It will thus be understood that in first axial position, the hour hand of the hour counter 21 is connected to the hour counter wheel 38 so as to indicate the elapsed hours measured by the chronograph mechanism.

On comprendra que lorsque le sélecteur 71 se trouve dans la seconde position axiale, c'est-à-dire en position supérieure (non représentée), il se trouve plaqué contre la roue, ou mobile, des heures « fuseau » 44. Dans la seconde position axiale, le sélecteur est donc couplé à la roue des heures « fuseau ».It will be understood that when the selector 71 is in the second axial position, that is to say in the upper position (not shown), it is pressed against the wheel, or mobile, hours "spindle" 44. In the second axial position, the selector is coupled to the hour wheel "spindle".

Le mécanisme de commutation de l'invention comporte également des premiers et des seconds moyens de synchronisation et de calage de la phase pour synchroniser l'arbre rotatif avec le mobile qui l'entraîne. Seul les seconds moyens de synchronisation et de calage de la phase, qui sont prévus pour ajuster la position angulaire de l'arbre 73 à celle de la roue des heures 44, sont visibles sur la figure 6. Ces moyens de synchronisation comprennent une came en cloche 81 formée dans la face supérieure du sélecteur 71 et un suiveur de came, ou index 83, solidaire de la roue des heures « fuseau » 44. Lorsque le sélecteur 71 se trouve plaqué contre la roue des heures 44, l'index 83 appuie contre l'incliné de la came 81, ce qui a pour effet de faire tourner cette dernière en entraînant le sélecteur 71 et l'arbre rotatif 73. L'index 83 fait tourner la came 81 en glissant sur l'incliné de celle-ci jusqu'à se trouver en bas, à l'endroit le moins élevé, appelé la coche de la came. Une fois l'index 83 calé dans la coche de la came, la roue des heures « fuseau » 44 et le sélecteur 71 sont synchronisés.The switching mechanism of the invention also includes first and second means for synchronizing and stalling the phase to synchronize the rotary shaft with the mobile that drives it. Only the second means of synchronization and timing of the phase, which are provided to adjust the angular position of the shaft 73 to that of the hour wheel 44, are visible on the figure 6 . These synchronization means comprise a bell cam 81 formed in the upper face of the selector 71 and a cam follower, or index 83, integral with the "spindle" hours wheel 44. When the selector 71 is pressed against the wheel 44, the index 83 presses against the incline of the cam 81, which has the effect of rotating the latter by driving the selector 71 and the rotary shaft 73. The index 83 rotates the cam 81 by sliding on the slope of the latter until it is at the bottom, at the lowest point, called the tick of the cam. Once the index finger 83 seated in the check mark of the cam, the hour wheel "spindle" 44 and the selector 71 are synchronized.

Bien que les figures ne montre pas clairement les premiers moyens de synchronisation et de calage de la phase, prévus pour ajuster la position angulaire de l'arbre 73 à celle de la roue de compteur d'heure 38, on comprendra qu'ils sont tout à fait similaires au second moyens qui viennent d'être décrits. Ils comprennent une came en cloche, qui est formée dans la face inférieure du sélecteur 71, et un suiveur de came, qui est solidaire de la roue de compteur d'heures 38. Lorsque le sélecteur 71 se trouve plaqué contre la roue de compteur d'heure 38, le suiveur de came appuie contre l'incliné de la came, ce qui a pour effet de faire tourner cette dernière jusqu'à la synchronisation du sélecteur 71 avec la roue de compteur d'heure 38.Although the figures do not clearly show the first means of synchronization and timing of the phase, provided to adjust the angular position of the shaft 73 to that of the hour counter wheel 38, it will be understood that they are all in fact similar to the second means which have just been described. They comprise a bell cam, which is formed in the lower face of the selector 71, and a cam follower, which is integral with the hour counter wheel 38. When the selector 71 is pressed against the counter wheel 38, the cam follower presses against the incline of the cam, which has the effect of rotating the latter until the synchronization of the selector 71 with the hour counter wheel 38.

Le mécanisme de commutation qui vient d'être décrit est actionné par une roue à colonnes. Cette roue à colonnes 51 comporte une denture d'entraînement périphérique en dent de scie sur laquelle agit un levier de manoeuvre 53 actionné par un poussoir 23. De manière classique, la roue à colonnes 51 est maintenue dans une position déterminée par un sautoir (non représenté). La roue à colonnes comprend encore sur sa face inférieure une série de colonnes 57a, 57b constituées par des dents de chant séparées les unes des autres par des creux. On peut voir sur la figure 4 que les creux ont un fond plat et que les dents de chant sont tronquées de manière à comporter également un replat. La denture de chant 57 comporte moitié moins de colonnes (ou de dents) que la denture périphérique, de sorte que l'entraînement d'un pas par actionnement du poussoir 23 amène successivement le fond d'un creux et le replat d'une dent en face d'une position de référence donnée.The switching mechanism which has just been described is actuated by a column wheel. This column wheel 51 comprises a peripheral sawtooth drive gear on which an operating lever 53 actuated by a pushbutton 23 operates. In a conventional manner, the column wheel 51 is held in a determined position by a jumper (no represent). The column wheel further comprises on its underside a series of columns 57a, 57b formed by singing teeth separated from each other by recesses. We can see on the figure 4 that the hollows have a flat bottom and that the edge teeth are truncated so as to also include a flat. The edge toothing 57 has half fewer columns (or teeth) than the peripheral toothing, so that driving a step by actuation of the pusher 23 successively brings the bottom of a hollow and the flat of a tooth. in front of a given reference position.

La commande de commutation est constituée par une bascule 61 en forme de fourche. La bascule 61 est maintenue par un axe horizontal 63 autour duquel elle est libre de pivoter dans un plan vertical. Un premier bras 65 de la bascule (correspondant au manche de la fourche) présente à son extrémité un bec 66 rappelé contre la denture de chant 57 par un ressort de rappel 67. Le second bras de la bascule est conformé pour communiquer sont mouvement au sélecteur 71. A cet effet, le second bras se termine par une fourche entre les branches 69a, 69b de laquelle le sélecteur est retenu. Plus précisément, comme le montre la figure 6, deux tétons cylindriques coaxiaux sont respectivement formés sur les faces intérieures des deux branches parallèles 69a, 69b de la fourche (un seul de ces tétons référencé 77 étant visible sur la figure 6). Les deux tétons sont prévus pour s'engager de part et d'autre dans l'encoche annulaire 79 du sélecteur 71, de manière à entraîner ce dernier pour le faire coulisser entre la première et la seconde position axiale.The switching control is constituted by a flip-flop 61 forked. Flip-flop 61 is held by a horizontal axis 63 around which it is free to pivot in a vertical plane. A first arm 65 of the rocker (corresponding to the handle of the fork) has at its end a nose 66 biased against the toothing of edge 57 by a return spring 67. The second arm of the rocker is shaped to communicate its movement to the selector 71. For this purpose, the second arm ends with a fork between the branches 69a, 69b of which the selector is retained. More specifically, as shown in figure 6 , two coaxial cylindrical nipples are respectively formed on the inner faces of the two parallel branches 69a, 69b of the fork (only one of these nipples referenced 77 being visible on the figure 6 ). The two pins are provided to engage on both sides in the annular notch 79 of the selector 71, so as to drive the latter to slide between the first and second axial position.

Les figures 3, 4 et 5 montrent encore la chaîne cinématique qui permet à la roue à canon 87 portant l'aiguille des heures 10 d'entraîner également la roue des heures « fuseau » 44. Cette chaîne cinématique comprend un mobile fuseau, formé d'une roue dentée 91 et d'une étoile à 12 branches 93, qui est monté fou sur le canon de l'aiguille des heures. Comme on peut le voir sur les figures, la roue dentée 91 et la roue à canon sont coaxiales et l'étoile 93 est montée pour tourner en regard de la roue à canon 87. Pour sa part, cette dernière porte sur sa planche un sautoir 89 qui est rappelé contre l'étoile 93 de manière à maintenir cette dernière dans une position angulaire déterminée relativement à la roue des heures 87. Comme l'étoile 93 compte 12 branches, le sautoir 89 peut l'immobiliser dans 12 positions différentes correspondant aux 12 valeurs possibles du décalage horaire entre deux fuseaux.The figures 3 , 4 and 5 still show the kinematic chain which allows the barrel wheel 87 carrying the hour hand 10 to also drive the hour wheel "spindle" 44. This kinematic chain comprises a spindle mobile formed of a toothed wheel 91 and a star with 12 branches 93, which is mounted crazy on the barrel of the hour hand. As can be seen in the figures, the toothed wheel 91 and the barrel wheel are coaxial and the star 93 is mounted to rotate facing the barrel wheel 87. For its part, the latter carries on its board a jumper 89 which is biased against the star 93 so as to maintain the latter in a given angular position relative to the hour wheel 87. As the star 93 has 12 branches, the jumper 89 can immobilize it in 12 different positions corresponding to the 12 possible values of the time difference between two time zones.

Grâce à la présence du sautoir 89, le mobile fuseau et sa roue dentée 91 sont entraînés par la roue à canon 87 à la vitesse d'un tour par 12 heures. D'autre part, la roue dentée 91 est arrangée pour entraîner la roue des heures « fuseau » 44 par l'intermédiaire d'un renvoi 95. La roue 44 et la roue 91 ayant le même nombre de dents, elles tournent à la même vitesse correspondant à un tour en 12 heures. De plus, le décalage horaire entre l'aiguille des heures 10 et la roue des heures « fuseau » 44 est déterminé par la coopération du sautoir 89 avec l'étoile à 12 branches 93. Il est possible de régler le décalage horaire à l'aide du poussoir 25 (figures 1 et 2). Le mécanisme qui permet de changer le décalage horaire en exerçant des pressions sur le poussoir 25 ne sera pas décrit ici puisque, d'une part, il n'est pas directement lié à la présente invention et, d'autre part, ce genre de mécanisme est connu en tant que tel de l'homme du métier.Thanks to the presence of the jumper 89, the spindle and its gear wheel 91 are driven by the barrel wheel 87 at the speed of one revolution per 12 hours. On the other hand, the toothed wheel 91 is arranged to drive the spindle hours wheel 44 via a gear 95. The wheel 44 and the wheel 91 having the same number of teeth, they turn to the same wheel. speed corresponding to one turn in 12 hours. In addition, the time difference between the hour hand 10 and the "spindle" hour wheel 44 is determined by the cooperation of the jumper 89 with the 12-pointed star 93. It is possible to adjust the time difference to using pusher 25 ( figures 1 and 2 ). The mechanism that makes it possible to change the jet lag by exerting pressure on the pusher 25 will not be described here since, on the one hand, it is not directly related to the present invention and, on the other hand, this kind of mechanism is known as such to those skilled in the art.

On comprendra que diverses modifications et/ou améliorations évidentes pour un homme du métier peuvent être apportées au mode de réalisation qui fait l'objet de la présente description sans sortir du cadre de la présente invention définie par les revendications annexées. En particulier, l'arbre rotatif n'a pas besoin d'être monté vertical, et peut très bien tourner horizontalement dans le plan de la montre un peu comme une tige de mise à l'heure. Dans ces conditions, si le mobile coulant est commandé par une bascule, celle-ci peut également se déplacer dans le plan horizontal à la manière d'une bascule de mise à l'heure. On comprendra de plus qu'avec un tel mode de réalisation, l'organe d'affichage ne peu pas être monté directement sur l'arbre rotatif, mais doit être entraîné par l'intermédiaire d'un rouage.It will be understood that various modifications and / or improvements obvious to one skilled in the art can be made to the embodiment which is the subject of the present description without departing from the scope of the present invention defined by the appended claims. In particular, the rotating shaft does not need to be mounted vertically, and can very well rotate horizontally in the plane of the watch much like a time-setting rod. Under these conditions, if the mobile flip is controlled by a flip-flop, it can also move in the horizontal plane in the manner of a time-setting flip-flop. It will be further understood that with such an embodiment, the display member can not be mounted directly on the rotary shaft, but must be driven via a train.

On comprendra d'autre part que les moyens de synchronisation et de calage de la phase de l'invention ne comportent pas nécessairement de came en cloche. En effet, au lieu d'une came, chacun des moyens de synchronisation et de calage de la phase pourrait par exemple comporter au moins un aimant et un élément ferromagnétique (ou de préférence deux aimants, au moins), l'un étant solidaire du mobile coulant et l'autre solidaire du mobile de compteur. Dans ces conditions, le calage de la phase serait assuré par les forces magnétiques apparaissant entre l'aimant et l'élément ferromagnétique (ou entre les deux aimants) lorsqu'ils sont rapprochés l'un de l'autre. D'autre part, selon une autre variante encore, le mobile coulant pourrait fonctionner comme un double embrayage sans synchronisation. Dans ces conditions, les moyens de synchronisation et de calage de la phase pourraient être constitués par deux coeurs et au moins un engrenage différentiel comme dans le document CH 693'155 . On comprendra finalement que même dans le cas où les moyens de synchronisation et de calage de la phase comporte effectivement une came en cloche prévue pour coopérer avec un suiveur de came, ce pourrait être, de façon équivalente, le mobile coulant qui porte le suiveur de came et le mobile de compteur qui porte la came en cloche.It will be understood, on the other hand, that the synchronization and timing means of the phase of the invention do not necessarily comprise a bell-shaped cam. Indeed, instead of a cam, each of the means of synchronization and timing of the phase could for example include at least one magnet and a ferromagnetic element (or preferably two magnets, at least), one being secured to the moving mobile and the other integral with the meter mobile. Under these conditions, the timing of the phase would be ensured by the magnetic forces appearing between the magnet and the ferromagnetic element (or between the two magnets) when they are brought closer to one another. On the other hand, according to yet another variant, the moving mobile could function as a double clutch without synchronization. Under these conditions, the means of synchronization and calibration of the phase could be constituted by two cores and at least one differential gear as in the document CH 693'155 . Finally, it will be understood that even in the case where the synchronization and timing means of the phase actually comprises a bell cam adapted to cooperate with a cam follower, it could be, in an equivalent manner, the sliding mobile carrying the follower of cam and the counter mobile which carries the cam bell.

Claims (9)

Dispositif d'affichage pour pièce d'horlogerie comportant un organe indicateur analogique tournant (21), un mobile de premier compteur (38) et un mobile de second compteur (44) dont les positions sont respectivement représentatives de deux grandeurs à afficher par ledit organe indicateur (21), et un mécanisme de commutation (40) à commande manuelle (23) prévu pour faire afficher sélectivement la première ou la seconde grandeur par l'organe indicateur, caractérisé en ce que le mécanisme de commutation comporte un arbre rotatif (73) relié cinématiquement à l'organe indicateur (21) et un mobile coulant (71) solidaire en rotation de l'arbre et prévu pour coulisser sous l'action de la commande manuelle (23) de manière à occuper sélectivement sur l'arbre (73) une première position axiale dans laquelle le mobile coulant (71) embraye avec le mobile de premier compteur (38) et une seconde position axiale dans laquelle le mobile coulant (71) embraye avec le mobile de second compteur (44), et en ce que le mécanisme de commutation comporte encore des premiers moyens de synchronisation et de calage de la phase pour ajuster la position angulaire de l'arbre rotatif (73) à celle du mobile de premier compteur (38) lorsque le mobile coulant occupe la première position axiale, et des seconds moyens de synchronisation et de calage de la phase (81, 83) pour ajuster la position angulaire de l'arbre rotatif (73) à la position du mobile de second compteur (44) lorsque le mobile coulant occupe la seconde position axiale.A display device for a timepiece comprising an analog rotary indicator member (21), a first counter wheel (38) and a second counter wheel (44) whose positions are respectively representative of two magnitudes to be displayed by said body indicator (21), and a manually operated switching mechanism (40) (23) for selectively displaying the first or second magnitude by the indicating member, characterized in that the switching mechanism comprises a rotary shaft (73). ) kinematically connected to the indicator member (21) and a sliding mobile (71) integral in rotation with the shaft and designed to slide under the action of the manual control (23) so as to occupy selectively on the shaft ( 73) a first axial position in which the sliding mobile (71) engages with the mobile first counter (38) and a second axial position in which the moving mobile (71) engages with the mobile second co meter (44), and in that the switching mechanism further comprises first phase synchronization and timing means for adjusting the angular position of the rotary shaft (73) to that of the first counter wheel (38) when the moving wheel occupies the first axial position, and second synchronization and phase locking means (81, 83) for adjusting the angular position of the rotary shaft (73) at the position of the second counter wheel (44). when the moving mobile occupies the second axial position. Dispositif d'affichage selon la revendication 1, caractérisé en ce qu'une au moins des deux grandeurs à afficher par ledit organe indicateur (21) est un temps écoulé.Display device according to claim 1, characterized in that at least one of the two quantities to be displayed by said indicator member (21) is an elapsed time. Dispositif d'affichage selon la revendication 1 ou 2, caractérisé en ce que le mobile de premier compteur (38) et le mobile de second compteur (44) sont montés fous sur l'arbre rotatif (73) de part et d'autre du mobile coulant (71).Display device according to Claim 1 or 2, characterized in that the mobile of the first counter (38) and the mobile of the second counter (44) are mounted idle on the rotating shaft (73) on either side of the moving mobile (71). Dispositif d'affichage selon la revendication 3, caractérisé en ce que l'arbre rotatif (73) est disposé verticalement.Display device according to claim 3, characterized in that the rotary shaft (73) is arranged vertically. Dispositif d'affichage selon la revendication 4, caractérisé en ce que ledit organe d'affichage (21) est fixé à l'arbre rotatif. (73)Display device according to claim 4, characterized in that said display member (21) is fixed to the rotary shaft. (73) Dispositif d'affichage selon l'une des revendications 1 à 4, caractérisé en ce que ledit organe d'affichage (21) est entraîné par l'arbre rotatif (73) par l'intermédiaire d'un rouage.Display device according to one of claims 1 to 4, characterized in that said display member (21) is driven by the rotary shaft (73) via a gear train. Dispositif d'affichage selon l'une des revendications précédentes, caractérisé en ce que lesdits premiers moyens de synchronisation et de calage de la phase comportent une première came en cloche et un premier suiveur de came qui sont prévus pour coopérer lorsque le mobile coulant occupe ladite première position axiale, la première came en cloche et le premier suiveur de came étant portés, l'un par ledit mobile coulant (71) et l'autre par ledit premier mobile de compteur (38).Display device according to one of the preceding claims, characterized in that said first phase synchronization and timing means comprise a first bell cam and a first cam follower which are provided to cooperate when the moving mobile occupies said first axial position, the first bell cam and the first cam follower being carried, one by said moving mobile (71) and the other by said first counter mobile (38). Dispositif d'affichage selon l'une des revendications précédentes, caractérisé en ce que lesdits seconds moyens de synchronisation et de calage de la phase (81, 83) comportent une seconde came en cloche (81) et un second suiveur de came (83) qui sont prévus pour coopérer lorsque le mobile coulant (71) occupe ladite seconde position axiale, la seconde came en cloche (81) et le second suiveur de came (83) étant portés, l'un par ledit mobile coulant (71) et l'autre par ledit second mobile de compteur (44).Display device according to one of the preceding claims, characterized in that said second phase synchronization and timing means (81, 83) comprise a second bell-shaped cam (81) and a second cam follower (83). which are provided for cooperating when the moving mobile (71) occupies said second axial position, the second camming cam (81) and the second cam follower (83) being carried, one by said moving mobile (71) and the other by said second counter mobile (44). Montre-chronographe caractérisée en ce qu'elle comprend un mécanisme d'affichage conforme à l'une des revendications précédentes.Chronograph watch characterized in that it comprises a display mechanism according to one of the preceding claims.
EP08158405A 2008-06-17 2008-06-17 Display device for displaying one of two different indications using the same indicating element of a timepiece Active EP2136271B1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
DE602008004125T DE602008004125D1 (en) 2008-06-17 2008-06-17 Display device for displaying one or the other of two different indications with the same display element of a clock
AT08158405T ATE492837T1 (en) 2008-06-17 2008-06-17 DISPLAY DEVICE FOR DISPLAYING ONE OR THE OTHER OF TWO DIFFERENT INFORMATION WITH THE SAME DISPLAY ELEMENT OF A CLOCK
EP08158405A EP2136271B1 (en) 2008-06-17 2008-06-17 Display device for displaying one of two different indications using the same indicating element of a timepiece
US12/485,413 US8179744B2 (en) 2008-06-17 2009-06-16 Display device for displaying one or other of two different indications with the same timepiece indicator member
CN2009101496516A CN101609301B (en) 2008-06-17 2009-06-17 Display device for displaying one of two different indications using the same indicating element of a timepiece
JP2009144016A JP5322796B2 (en) 2008-06-17 2009-06-17 Display device for displaying one or the other of two different instructions on the same watch indicator member

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP08158405A EP2136271B1 (en) 2008-06-17 2008-06-17 Display device for displaying one of two different indications using the same indicating element of a timepiece

Publications (2)

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EP2136271A1 true EP2136271A1 (en) 2009-12-23
EP2136271B1 EP2136271B1 (en) 2010-12-22

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EP08158405A Active EP2136271B1 (en) 2008-06-17 2008-06-17 Display device for displaying one of two different indications using the same indicating element of a timepiece

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US (1) US8179744B2 (en)
EP (1) EP2136271B1 (en)
JP (1) JP5322796B2 (en)
CN (1) CN101609301B (en)
AT (1) ATE492837T1 (en)
DE (1) DE602008004125D1 (en)

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EP2362277A1 (en) 2010-02-25 2011-08-31 Montres Breguet SA On-demand time zone displayed on the main hand of a timepiece
EP2410388A1 (en) * 2010-07-21 2012-01-25 Blancpain S.A. Time piece with double display
US8382366B2 (en) 2010-02-25 2013-02-26 Montres Breguet Sa Programmable and reprogrammable mechanical memory wheel for a timepiece
EP2811347A3 (en) * 2013-05-31 2016-07-06 Rolex Sa Clockwork mechanism for storing and displaying a time indication
US9423773B2 (en) 2013-05-31 2016-08-23 Rolex Sa Clock mechanism for storing and displaying time information

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CH703261B1 (en) * 2010-06-08 2014-11-28 Bulgari Horlogerie S A Timepiece fitted with a mobile time indication needle between two positions.
CH707233A1 (en) * 2012-11-22 2014-05-30 Eterna Ag Uhrenfabrik Minutzenzähler a watch, in particular a chronograph.
USD752467S1 (en) * 2014-06-18 2016-03-29 Breitling Ab Dial
USD786727S1 (en) * 2015-09-24 2017-05-16 Bramwell Brown Limited Tidal clock
USD786729S1 (en) * 2015-09-25 2017-05-16 Bramwell Brown Limited Tidal clock
EP3264199A1 (en) * 2016-07-01 2018-01-03 Montres Breguet S.A. Timepiece comprising a switching device of a clockwork mechanism
EP3844574B1 (en) * 2018-08-28 2022-07-20 Patek Philippe SA Genève Display device for a timepiece and timepiece comprising such a device

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WO2007115984A2 (en) * 2006-04-07 2007-10-18 Frederic Piguet S.A. Timepiece comprising a dual time zone mechanism

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2362277A1 (en) 2010-02-25 2011-08-31 Montres Breguet SA On-demand time zone displayed on the main hand of a timepiece
CN102169322A (en) * 2010-02-25 2011-08-31 蒙特雷布勒盖股份有限公司 On-demand time zone displayed on the main hand of a timepiece
US8382366B2 (en) 2010-02-25 2013-02-26 Montres Breguet Sa Programmable and reprogrammable mechanical memory wheel for a timepiece
CN102169322B (en) * 2010-02-25 2013-03-27 蒙特雷布勒盖股份有限公司 On-demand time zone displayed on the main hand of a timepiece
US8416645B2 (en) 2010-02-25 2013-04-09 Montres Breguet Sa Time zone on demand on the main hands of a timepiece
EP2410388A1 (en) * 2010-07-21 2012-01-25 Blancpain S.A. Time piece with double display
WO2012010392A3 (en) * 2010-07-21 2012-04-26 Blancpain Sa Dual display timepiece
US8848488B2 (en) 2010-07-21 2014-09-30 Blancpain S.A. Dual display timepiece
EP2811347A3 (en) * 2013-05-31 2016-07-06 Rolex Sa Clockwork mechanism for storing and displaying a time indication
US9423773B2 (en) 2013-05-31 2016-08-23 Rolex Sa Clock mechanism for storing and displaying time information
US9507323B2 (en) 2013-05-31 2016-11-29 Rolex Sa Clock mechanism for storing and displaying time information

Also Published As

Publication number Publication date
US8179744B2 (en) 2012-05-15
EP2136271B1 (en) 2010-12-22
JP5322796B2 (en) 2013-10-23
US20090310445A1 (en) 2009-12-17
DE602008004125D1 (en) 2011-02-03
ATE492837T1 (en) 2011-01-15
JP2009300447A (en) 2009-12-24
CN101609301A (en) 2009-12-23
CN101609301B (en) 2013-03-27

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