EP3540524B1 - Springender und regulierter uhranzeigemechanismus - Google Patents

Springender und regulierter uhranzeigemechanismus Download PDF

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Publication number
EP3540524B1
EP3540524B1 EP18161514.7A EP18161514A EP3540524B1 EP 3540524 B1 EP3540524 B1 EP 3540524B1 EP 18161514 A EP18161514 A EP 18161514A EP 3540524 B1 EP3540524 B1 EP 3540524B1
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EP
European Patent Office
Prior art keywords
wheel set
display
finger
jump
cam
Prior art date
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Application number
EP18161514.7A
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English (en)
French (fr)
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EP3540524A1 (de
Inventor
Alain Zaugg
Christophe Riedo
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Montres Breguet SA
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Montres Breguet SA
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Application filed by Montres Breguet SA filed Critical Montres Breguet SA
Priority to EP18161514.7A priority Critical patent/EP3540524B1/de
Priority to JP2019040235A priority patent/JP6676802B2/ja
Priority to US16/299,182 priority patent/US11188030B2/en
Priority to CN201910184994.XA priority patent/CN110275421B/zh
Publication of EP3540524A1 publication Critical patent/EP3540524A1/de
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Publication of EP3540524B1 publication Critical patent/EP3540524B1/de
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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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • G04B19/253Driving or releasing mechanisms
    • G04B19/25333Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement
    • G04B19/25353Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement driven or released stepwise by the clockwork movement
    • 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
    • G04B19/06Dials
    • G04B19/08Geometrical arrangement of the graduations
    • G04B19/085Geometrical arrangement of the graduations varying from the normal 12 hour arrangement
    • 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
    • G04B19/20Indicating by numbered bands, drums, discs, or sheets
    • G04B19/202Indicating by numbered bands, drums, discs, or sheets by means of turning discs
    • 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
    • G04B19/24Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars
    • G04B19/243Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator
    • G04B19/247Clocks or watches with date or week-day indicators, i.e. calendar clocks or watches; Clockwork calendars characterised by the shape of the date indicator disc-shaped
    • G04B19/253Driving or releasing mechanisms
    • G04B19/25333Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement
    • G04B19/25393Driving or releasing mechanisms wherein the date indicators are driven or released mechanically by a clockwork movement driven or released by their own energy source which is released at regular time intervals

Definitions

  • the invention relates to a clockwork display mechanism comprising at least one display mobile by jumps, said mechanism comprising at least one spring between a first mobile and a second mobile, said first mobile or respectively said second mobile being arranged to be driven by a mobile drive.
  • the invention also relates to a timepiece movement comprising such a display mechanism.
  • the invention also relates to a watch comprising such a clock movement and/or such a display mechanism.
  • the invention relates to the field of timepiece display mechanisms, in particular for watches.
  • instantaneous triggering generates high speeds of the components.
  • the dynamic stresses applied to the components become sensitive due to their inertia: a high speed, combined with a high inertia, generates significant stresses, which are non-existent in the case of a trailing function (one to several hours of passage), and operational disturbances may occur, for example double jumps may be performed.
  • the document CH203181A in the name of BROWN describes a sidereal timepiece indicating the degrees of arc on three discs, assigned respectively to the units, to the tens and to the hundreds, where the tens disc bears only the seven digits 0 to 6, and is associated to a concentric sector which bears the numbers 7, 8 and 9, and which is linked to the disc in question with a clearance which allows this sector to be carried successively by three divisions by the unit disc, at the end of three revolutions on four of the tens disc, which then remains motionless.
  • a device actuated on the fourth turn of the tens disc by the rotation of this disc, removes its connection with the sector and at the same time causes a retractable tooth to appear on the periphery of the tens disc, which allows the units disc to drive in quick succession the tens disk of two divisions, for the indications 360, then 001.
  • a display mechanism with change of display by jump such as in particular and without limitation a complex calendar mechanism, such as a perpetual calendar, or a calendar with a display with large apertures or rollers
  • a passage date at midnight instantaneous, but visible to the user for a few seconds. For example a passage from February 28 to March 1 in 3 to 4 seconds. This reduction of the notion of instantaneous becomes qualitative.
  • the present invention proposes to develop a regulated display drive, the jump of which can be seen by the user, and is more particularly described for a regulated date display mechanism.
  • the invention relates to a timepiece display mechanism with display moving by jumps, according to claim 1.
  • the invention also relates to a timepiece movement comprising such a display mechanism.
  • the invention also relates to a watch comprising such a clock movement and/or such a display mechanism.
  • the invention relates to a clockwork display mechanism 1 with display 100 movable by jumps. More particularly, this display is mobile by periodic jumps. This is the case of the embodiment illustrated by the figures.
  • This mechanism 1 comprises at least one spring 2 between a first mobile 4 and a second mobile 30.
  • This first mobile 4, or respectively this second mobile 30, is arranged to be driven by a driving mobile 201, which comprises, or the display mechanism itself, or an external mechanism, such as a 500 movement or similar.
  • the mobile which is not driven directly by the drive mobile 201, that is to say the second mobile 30, or respectively the first mobile 4, is arranged to drive or carry a cam 5 .
  • this cam 5 is a spiral peripheral cam 51, which is traversed by a sensor 6, which is arranged to control the jump, and in particular the periodic jump, of such a display 100.
  • the mechanism 1 comprises locking/triggering means 70, which comprise, on the one hand at least one finger 7 driven by the second mobile 30, or respectively the first mobile 4, and on the other hand a third mobile 80 which is arranged to, according to its angular position, stop or release this at least one finger 7, to prohibit or respectively authorize the rotation of the cam 5.
  • this cam 5 is to impose a certain travel time of the feeler 6, to effect a change of display, in a manner clearly visible to the user: the jump thus spreads out over a period of a few seconds, corresponding the longest possible distance around the cam.
  • the mechanism 1 comprises a regulation mechanism 9 to regulate the speed of rotation of the mobile which carries the cam 5:
  • this mechanism control gear 9 comprises in particular, in the illustrated version, a control train, which meshes with that of the second mobile 30, or respectively of the first mobile 4 which drives or carries the cam 5 to limit its speed of rotation when the finger 7 is released .
  • the mechanism 1 comprises at least one spring 2 wound between, on the one hand a shaft 41 of the first mobile 4, and on the other hand the second mobile 30.
  • this second mobile 30 is a drum 3, which carries at least one peripheral finger 7, without interference with the trajectory of the feeler 6, and in particular outside the trajectory of the feeler 6.
  • This drum 3 carries a peripheral cam 5, which comprises, more particularly, at least one reset threshold 52 after a jump of the display 100.
  • the cam is peripheral in a spiral shape 51.
  • the cam 5 is traversed by a feeler 6 arranged to control the jump, in particular the periodic jump, of a display 100, in particular but not limited to the date.
  • the spiral 51 comprises a long ramp, which extends from a lower level 511 to an upper level 512, and a single sill 52.
  • the feeler 6 is a roller in the non-limiting variant illustrated by the figures. In other variants not shown, this sensor can be a simple finger rubbing on the cam profile, or other.
  • the spiral may comprise, on its circumference, an alternation of such ramps and such sills. More particularly and without limitation, the angular sector corresponding to each ramp is identical.
  • the third mobile 80 is an anchor 8, which is angularly mobile around an anchor axis D8 under the action of the first mobile 4, or respectively of the second 30.
  • This anchor 8 is arranged to, depending on its angular position, stop or release this at least one finger 7, to prohibit or respectively authorize the rotation of the cam 5.
  • the first mobile 4 comprises an eccentric pin 42, which permanently guides a groove 81, which comprises an anchor 8 for triggering, to control the periodic to-and-fro movements of this pivoting anchor 8.
  • This anchor 8 comprises, on either side of its anchor axis D8, a beak 83 and a stop 84 to stop or release the finger 7 depending on the angular position of the anchor 8.
  • each finger 7 between its release by the beak 83 and its return to bearing on the stop 84 defines the duration of the jump, that is to say the change of display.
  • the finger 7 is unique.
  • the reset threshold 52 on the cam 5 is unique.
  • the mechanism 1 comprises a barrel 10 comprising at least one such spring 2 between on the one hand the shaft of the barrel 10, which is integral with the shaft 41 of the first mobile 4, or which constitutes it, and on the other hand the drum 3.
  • this spring 2 can also be any suitable spring
  • the mainspring is only a particular case, which lends itself well to the industrial implementation of the invention.
  • the winding of the spring 2 is carried out by a driving wheel set 201, which is a 24-hour wheel or which is connected in a gear train to a 24-hour wheel.
  • the spring can be wound by means other than the 24-hour wheel, for example an automatic gear train driven by an oscillating weight, a manual winding mechanism, or other.
  • the first wheel set 4 is pivotable, and driven in an entire speed ratio by a drive wheel set 201.
  • the to-and-fro movement of the anchor 8 defines an angular travel, relative to the axis D4 of the first mobile 4, of each finger 7 between its release by the beak 83 and its return to rest on the abutment 84.
  • This angular stroke defines the jump duration, which corresponds to the duration of the stroke of the feeler 6 on the cam 5, first according to a gentle ramp gradually rising from a lower level 511 to an upper level 512 of the spiral 51 then instantaneous descent to the lower level 511 when crossing the reset threshold 52.
  • This return to the position of the lower level 511 by the steep side of the threshold 52 is done instantaneously, and without influencing the display, for example by means of a click finger system on a star, or the like.
  • each jump corresponds to a change of state of the display 100 between an earlier state and a later state
  • the jump duration corresponds to the lapse of time between the stable display of the earlier state and the display stable from the posterior state.
  • the first input wheel set 4 is arranged to be driven by a continuous drive wheel set 201 and to accomplish, during one revolution of the continuous drive wheel set 201, a revolution or an integer number of revolutions or a whole fraction of a turn.
  • the drive wheel 201 is a 24-hour wheel supplying the energy, and the time reference (one revolution in 24 hours) of a conventional watch movement.
  • This drive wheel 201 drives a first input wheel 4, which here is an auxiliary 24-hour wheel.
  • This first entry mobile 4 carries an eccentric pin 42, and its shaft 41 is connected to a spring 2 of the auxiliary barrel 3.
  • This auxiliary barrel 3 is therefore, here, armed with one turn per 24 hours.
  • the eccentric pin 42 cooperates continuously with the groove 81 of the anchor 8, which is a straight oblong groove in the particular case of the figures, of the 24h wheel.
  • the trigger anchor 8 therefore performs a back and forth in 24 hours. It is understood that the example illustrated relates to a single daily jump at midnight for the particular case of a date, but it is possible to extrapolate the invention to any display with another period by playing on the gear ratios, the number of fingers 7 and their positions, the number of third mobiles 80, in particular of anchors 8, the number of reset thresholds 52, to carry out other jump commands.
  • an application with two daily jumps at noon and midnight allows the change of state of an AM/PM indicator
  • an application with two daily jumps at 6 a.m. and 6 p.m. allows the change of state of a day/night indicator.
  • Yet another application concerns a weekly planner, with rotation of seven days, and display of the day of the week.
  • Many other applications are accessible and advantageous to those skilled in the art, because the invention provides new visibility of display changes, which constitutes a pleasing improvement for the user.
  • the comings and goings of the anchor 8 therefore releases the rotation of the drum 3, in particular of the drum 3 of the barrel 10 in the case of the figures, by its finger 7, at midnight to authorize its rotation through an angle of approximately 330° , and at noon an additional 30°.
  • the eccentric pin 42 is assembled on the shaft 41 by friction, to allow indexing of the jump, for example at midnight for the date.
  • the rotation of the drum 3 by 330° drives the display mechanism, in particular the date, by the peripheral spiral cam 51 51, which is attached to it, and which applies a movement to the feeler 6, which is in the figures a roller of the date drive, arranged to move the display 100.
  • the rest of the display functions, in particular the date is done in known manner, for example in the form of a simple or perpetual date.
  • the mechanism 1 is also linked to a regulation mechanism 9, or comprises a regulation mechanism 9.
  • the drum 3 meshes with a cog of this regulation mechanism 9, in particular in the variant illustrated by the figures, with a pinion 91 of a regulation wheel 92, which meshes with an escapement pinion 95, fixed to a regulation escapement wheel 94.
  • the regulating escapement wheel 94 comprises teeth 95, which are arranged to cooperate with a regulating anchor 97, which comprises pallets 98 and 99. Under the torque imparted by the drum 3, the regulating anchor 97 passes alternately of one of its pallets on the other, by driving an inertial mass 970 which is integral with it.
  • This oscillating movement of regulating anchor 97 has a natural frequency which, without being as isochronous as a spiral balance wheel, allows good regulation of a function.
  • the frequency of the oscillator can be substantially modified with an additional spring 971, here movably mounted on a 972 screw head, which makes it possible to change, to a small extent, the operating time.
  • regulation mechanism 9 can also be used: inertial regulator, centrifugal brake, magnetic brake, or eddy current brake, or others.
  • the figure 4 illustrates the state of the system shortly before noon, around 11 a.m.
  • the finger 7 is in support cooperation with the abutment 84 of the anchor 8.
  • the eccentric pin 52 is very close to a first end 811 of the oblong groove 81 of the anchor 8.
  • the roller of the feeler 6 is in bearing on the lower level 511 of the spiral 51, in the immediate vicinity of the reset threshold 52, the position of which is materialized by a radial in dotted line.
  • the date drive is therefore inactive.
  • the figure 5 illustrates the state of the system shortly after noon, around 12:30 p.m.
  • the finger 7 is in bearing cooperation with the beak 83 of the anchor 8.
  • the eccentric pin 52 is still close to the first end 811 of the oblong groove 81.
  • the roller of the feeler 6 is resting on the lower level 511 of the spiral 51, at an angular distance a, here approximately 30°, from the reset threshold 52.
  • the date drive is still inactive.
  • the figure 6 illustrates the state of the system shortly before midnight, around 11 p.m.
  • the finger 7 is point against point with the beak 83 of the anchor 8: the drum 3 can thus be released, for its rotation of almost one revolution, as soon as this point contact is broken.
  • the eccentric pin 52 crossed in the afternoon the oblong groove 81 of the anchor 8, and is now very close to a second end 812 of this oblong groove 81.
  • the roller of the feeler 6 is still bearing on the lower level 511 of the spiral 51, in the immediate vicinity of the reset threshold 52.
  • the drive of the date is still inactive.
  • the drum 3 Shortly after, around midnight, the finger 7 leaves the beak 83 of the anchor 8, the drum 3 performs its rotation through an angle ⁇ , here approximately 330°.
  • which is regulated by the regulation mechanism 9, detailed on the figure 1 , in order to last a few seconds and be clearly visible to the user, the feeler roller 6 first traverses the lower level 511 of the spiral 51, then rises to the level upper 512, activating the date drive for the display of the new date. The roller 6 drops when passing the reset threshold 52.
  • the figure 7 illustrates the state of the system shortly after midnight, around 12:30 a.m.
  • the finger 7 is again in bearing cooperation with the abutment 84 of the anchor 8.
  • the eccentric pin 52 is still close to the second end 812 of the oblong groove 81.
  • the roller of the feeler 6 has fallen, from its position top illustrated in phantom, in its low position resting on the lower level 511 of the snail 51.
  • the angle ⁇ traversed is that formed between the positions of the reset threshold 52 on the figures 6 and 7 .
  • the invention also relates to a watch movement 500 comprising such a display mechanism 1.
  • the invention also relates to a timepiece, in particular a clock, or a watch 1000, comprising such a movement 500 and/or such a display mechanism 1.
  • a variant of the invention constitutes the reverse configuration of that illustrated by the figures: the second wheel set 30 is a barrel 3 arranged to be driven by a driving wheel set 201, and which carries the third wheel set 80. And the first wheel set 4 is then arranged to drive or carry said spiral peripheral cam 51.
  • the regulation can be ensured by another type of regulator, of the type of bell regulator, for example eddy current regulator, or magnetic regulator, or electrostatic regulator, or other.
  • the time of the function which is defined by the type of regulation mechanism 9 chosen, can be chosen freely, here it is, without limitation defined between 1 and 30 seconds. Indeed, at these speeds, the dynamic stresses generated by the speed are negligible, only the static stresses are significant.
  • the date jump is done in such a way as to generate only constraints that can be calculated statically, the dynamic effect linked to the inertias of the components during the jump is negligible.
  • the jump is considered instantaneous on the scale of a day, but remains clearly visible to the user, which gives a qualitative rendering.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Geometry (AREA)
  • Electromechanical Clocks (AREA)
  • Measurement Of Unknown Time Intervals (AREA)

Claims (14)

  1. Uhrenanzeigemechanismus (1), umfassend mindestens einen sprungbeweglichen Anzeiger (100), wobei der Mechanismus (1) zwischen einem ersten Drehteil (4) und einem zweiten Drehteil (30) mindestens eine Feder (2) aufweist, und das erste Drehteil (4) bzw. das zweite Drehteil (30) so angeordnet sind, dass sie durch ein Antriebsdrehteil (201) angetrieben werden, wobei das zweite Drehteil (30) bzw. das erste Drehteil (4) dazu vorgesehen sind, eine Umfangsnocke (5) in Form einer Schnecke (51) anzutreiben oder zu tragen, die von einem Taster (6) durchlaufen wird, der dazu vorgesehen ist, den Sprung des Anzeigers (100) zu steuern, und wobei der Mechanismus (1) Verriegelungs-/Entriegelungsmittel (70) umfasst, die einerseits mindestens einen Finger (7), der durch das zweite Drehteil (30) bzw. das erste Drehteil (4) angetrieben wird, und andererseits ein drittes Drehteil (80), das dazu vorgesehen ist, je nach seiner Winkelposition den mindestens einen Finger (7) zu arretieren oder freizugeben, um die Drehung der Nocke (5) zu verhindern bzw. zuzulassen, aufweisen, dadurch gekennzeichnet, dass das dritte Drehteil (80) ein Anker (8) ist, der unter der Wirkung des ersten Drehteils (4) bzw. des zweiten Drehteils (30) in Winkelrichtung um eine Ankerachse (D8) beweglich ist, wobei der Anker (8) dazu vorgesehen ist, je nach seiner Winkelposition den mindestens einen Finger (7) zu arretieren oder freizugeben, um die Drehung der Nocke (5) zu verhindern bzw. zuzulassen.
  2. Mechanismus (1) nach Anspruch 1, dadurch gekennzeichnet, dass der Mechanismus (1) einen Regulierungsmechanismus (9) umfasst, der ein Regulierrad aufweist, das mit demjenigen des zweiten Drehteils (30) bzw. des ersten Drehteils (4), das die Nocke (5) antreibt oder trägt, in Eingriff steht, um dessen Drehgeschwindigkeit zu begrenzen, wenn der Finger (7) freigegeben ist.
  3. Mechanismus (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass zwischen einer Welle (41) des ersten Drehteils (4) und dem zweiten Drehteil (30) mindestens eine Feder (2) gewickelt ist.
  4. Mechanismus (1) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass das zweite Drehteil (30) eine Trommel (3) ist, die mindestens einen Umfangsfinger (7) außerhalb der Bahn des Tasters (6) trägt.
  5. Mechanismus (1) nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass das erste Drehteil (4) einen exzentrischen Kurbelzapfen (42) aufweist, der ständig eine Nut (81) führt, um periodische Hin- und Herbewegungen des Schwenkankers (8) zu steuern, der beiderseits der Ankerachse (D8) einen Schnabel (83) und einen Anschlag (84) aufweist, um den Finger (7) je nach der Winkelposition des Ankers (8) zu arretieren oder loszulassen, wobei die Winkelbahn jedes Fingers (7) zwischen dem Loslassen durch den Schnabel (83) und seiner Rückkehr in Anlage an den Anschlag (84) die Dauer des Sprungs definiert.
  6. Mechanismus (1) nach Anspruch 4 und einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der Mechanismus (1) ein Federhaus (10) umfasst, das mindestens eine Feder (2) zwischen einerseits der Welle des Federhauses (10), die mit der Welle (41) des ersten Drehteils (4) fest verbunden ist oder sie bildet, und andererseits der Trommel (3) aufweist.
  7. Mechanismus (1) nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass das erste Drehteil (4) schwenkbar ist und in einem ganzzahligen Geschwindigkeitsverhältnis durch ein Antriebsdrehteil (201) angetrieben wird, dass die Schnecke (51) eine Nullrücksetzungs-Schwelle (52) nach einem Sprung umfasst und dass die Winkelbahn bezogen auf die Achse (D4) des ersten Drehteils (4) jedes Fingers (7) zwischen seinem Loslassen durch den Schnabel (83) und seiner Rückkehr in Anlage an den Anschlag (84) die Sprungdauer definiert, die der Dauer der Bahn des Tasters (6) auf der Nockenfläche (5) entspricht, zunächst längs einer allmählich ansteigenden Rampe ausgehend von einer unteren Höhe (511) zu einer oberen Höhe (512) der Schnecke (51) und dann plötzlich zu der unteren Höhe (511) abfallend, wenn die Nullrücksetzungs-Schwelle (52) überschritten wird.
  8. Mechanismus (1) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass jeder Sprung einer Zustandsänderung des Anzeigers (100) zwischen einem vorhergehenden Zustand und einem nachfolgenden Zustand und mit einer Sprungdauer, die der Zeitspanne entspricht, die zwischen der stabilen Anzeige des vorhergehenden Zustands und der stabilen Anzeige des nachfolgenden Zustands vergeht, entspricht.
  9. Mechanismus (1) nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass das erste Eingangsdrehteil (4) so angeordnet ist, dass es von einem Dauerantriebsdrehteil (201) angetrieben wird und während einer Umdrehung des Dauerantriebsdrehteils (201) eine Umdrehung oder eine ganzzahlige Anzahl von Umdrehungen oder einen ganzzahligen Bruchteil eines Umlaufs ausführt.
  10. Anzeigemechanismus (1) nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass das zweite Drehteil (30) ein Federhaus (3) ist, das dafür ausgelegt ist, durch ein Antriebsdrehteil (201) angetrieben zu werden, und das ein drittes Drehteil (80) trägt, und dass das erste Drehteil (4) dazu vorgesehen ist, die Umfangsnocke (5) in Form einer Schnecke (51) anzutreiben oder zu tragen.
  11. Mechanismus (1) nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass der Anzeiger (100) in periodischen Sprüngen beweglich ist.
  12. Mechanismus (1) nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, dass der Anzeiger (100) ein Datumsanzeiger ist.
  13. Uhrwerk (500), umfassend einen Anzeigemechanismus (1) nach einem der Ansprüche 1 bis 12.
  14. Tragbare Uhr (1000), umfassend ein Werk (500) nach Anspruch 13 und/oder einen Anzeigemechanismus (1) nach einem der Ansprüche 1 bis 12.
EP18161514.7A 2018-03-13 2018-03-13 Springender und regulierter uhranzeigemechanismus Active EP3540524B1 (de)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP18161514.7A EP3540524B1 (de) 2018-03-13 2018-03-13 Springender und regulierter uhranzeigemechanismus
JP2019040235A JP6676802B2 (ja) 2018-03-13 2019-03-06 計時器のための調整された跳躍表示機構
US16/299,182 US11188030B2 (en) 2018-03-13 2019-03-12 Regulated jumping display mechanism for timepieces
CN201910184994.XA CN110275421B (zh) 2018-03-13 2019-03-12 钟表的经调节的跳转显示机构

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP18161514.7A EP3540524B1 (de) 2018-03-13 2018-03-13 Springender und regulierter uhranzeigemechanismus

Publications (2)

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EP3540524A1 EP3540524A1 (de) 2019-09-18
EP3540524B1 true EP3540524B1 (de) 2022-02-16

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EP18161514.7A Active EP3540524B1 (de) 2018-03-13 2018-03-13 Springender und regulierter uhranzeigemechanismus

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US (1) US11188030B2 (de)
EP (1) EP3540524B1 (de)
JP (1) JP6676802B2 (de)
CN (1) CN110275421B (de)

Cited By (1)

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EP3540524A1 (de) 2019-09-18
JP2019158878A (ja) 2019-09-19
US20190286058A1 (en) 2019-09-19
CN110275421A (zh) 2019-09-24
US11188030B2 (en) 2021-11-30
CN110275421B (zh) 2020-12-11

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