EP3316048B1 - Anzeige- und korrekturmechanismus des zustands von einer pluralität von informationen - Google Patents

Anzeige- und korrekturmechanismus des zustands von einer pluralität von informationen Download PDF

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Publication number
EP3316048B1
EP3316048B1 EP16196170.1A EP16196170A EP3316048B1 EP 3316048 B1 EP3316048 B1 EP 3316048B1 EP 16196170 A EP16196170 A EP 16196170A EP 3316048 B1 EP3316048 B1 EP 3316048B1
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EP
European Patent Office
Prior art keywords
watch
wheel
correction
display
piece
Prior art date
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Active
Application number
EP16196170.1A
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English (en)
French (fr)
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EP3316048A1 (de
Inventor
Martin BREUILH
Denis Rudaz
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.)
Rolex SA
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Rolex SA
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Publication date
Application filed by Rolex SA filed Critical Rolex SA
Priority to EP16196170.1A priority Critical patent/EP3316048B1/de
Priority to JP2017197343A priority patent/JP7045826B2/ja
Priority to US15/793,409 priority patent/US10281878B2/en
Priority to CN201711008787.6A priority patent/CN108021015B/zh
Publication of EP3316048A1 publication Critical patent/EP3316048A1/de
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Publication of EP3316048B1 publication Critical patent/EP3316048B1/de
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Classifications

    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • 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
    • 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
    • G04B19/04Hands; Discs with a single mark or the like
    • G04B19/042Construction and manufacture of the hands; arrangements for increasing reading accuracy
    • 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
    • G04B11/00Click devices; Stop clicks; Clutches
    • G04B11/02Devices allowing the motion of a rotatable part in only one direction
    • 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
    • G04B13/00Gearwork
    • G04B13/02Wheels; Pinions; Spindles; Pivots
    • 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
    • G04B19/25Devices for setting the date indicators manually
    • 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
    • G04B19/26Clocks or watches with indicators for tides, for the phases of the moon, or the like
    • G04B19/268Clocks or watches with indicators for tides, for the phases of the moon, or the like with indicators for the phases of the moon
    • 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
    • G04B35/00Adjusting the gear train, e.g. the backlash of the arbors, depth of meshing of the gears
    • 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
    • G04B15/00Escapements
    • G04B15/12Adjusting; Restricting the amplitude of the lever or the like

Definitions

  • the invention relates to a timepiece mechanism having several displays of time or time information.
  • the invention also relates to a timepiece movement comprising such a timepiece mechanism.
  • the invention relates to a timepiece comprising such a timepiece mechanism or such a timepiece movement.
  • the patent application FR2541005 discloses a date display and adjustment mechanism implemented by means of a planetary gear train, the output of which takes the form of a crown provided with a calendar driving finger which is capable of being engaged with a date trainer disc.
  • the planet carrier is engaged by the kinematic chain for driving the calendar, which is engaged with the hour wheel.
  • the sun gear is fixed by means of a correction wheel which is indexed by a spring.
  • the satellite moves relatively to the pinion and rotates the crown via the latter's internal toothing.
  • the planet carrier is in direct contact with the hour wheel, so that a rotation of the hour hand necessarily involves a rotation of the crown.
  • the patent application EP2615506 discloses, for its part, a specific planetary gear construction which is intended to allow the adjustment of a device for displaying the phases of the Moon.
  • the first entry of the sun gear is constituted by a crown whose external toothing is in engagement with the finishing chain of the basic movement, in particular by means of the hour mobile, and whose internal toothing is taken with at least one mounted satellite pivoting on a satellite carrier in engagement with the moon phase display wheel.
  • the second input to the planetary is constituted by a star for correcting the phases of the Moon, the angular position of which is intended to be locked by a jumper and whose actuation is controlled by a correction rocker. This star is also engaged with the satellite by means of a wheel which is integral with it.
  • the display mobile is actuated by the hour mobile through the satellite carrier and its satellite which pivots relative to the correction mobile.
  • the display mobile is activated by the mobile through the satellite carrier and its satellite which pivots relative to the crown.
  • the first entry to the planet is in direct contact with the hour mobile, so that a rotation of the hour display element necessarily involves a rotation of the display mobile.
  • Such a planetary gear construction is not optimal insofar as this requires a crown having a first internal toothing and a second external toothing arranged on a single level, which cannot be properly rotated on the same axis as that of the satellite carrier and the correction star.
  • the tolerances of the guide portions must moreover be minimized as much as possible so as to reduce the radial and longitudinal frolics, and thus minimize the risks of bracing between the different teeth, in particular those of the satellite which is engaged with interior and exterior teeth.
  • the patent application EP2950164 also discloses a device for displaying and correcting the phases of the Moon.
  • This device implements a specific construction of differential train.
  • the first entry consists of a wheel engaged with a 24-hour wheel of a calendar system, on which a spring is mounted.
  • This spring is intended to cooperate with a correction star secured to a wheel of a kinematic correction chain which constitutes the second input of the planet gear.
  • the correction star is also attached to a pinion continuously engaged with the satellites of a planet carrier which constitutes the exit from the planet in connection with the element for displaying the indication of the phases of the Moon.
  • the wheel drives the pinion via the spring which is resiliently engaged with the correction star.
  • the pinion thus meshes the satellites which are also engaged with an internal toothing integral with the frame of the movement.
  • the meshing of the satellites thus induces the rotation of the planet carrier.
  • the actuation of the correction wheel induces the rotation of the star relative to the spring which is then angularly indexed by the wheel.
  • the object of the invention is to provide a timepiece mechanism making it possible to remedy the drawbacks mentioned above and to improve the timepiece mechanisms known from the prior art.
  • the invention proposes a timepiece mechanism allowing the independent adjustment of the different timepiece information.
  • a timepiece mechanism according to the invention is defined by claim 1.
  • a watch movement according to the invention is defined by claim 13.
  • a timepiece according to the invention is defined by claim 14.
  • the timepiece is for example a watch, in particular a wristwatch.
  • the timepiece comprises an embodiment of a timepiece movement 200 according to the invention, in particular a mechanical movement.
  • the movement is for example such that it presents a calendar system intended to display the phases of the Moon.
  • the embodiment of movement described comprises a device for displaying and correcting the phases of the Moon, which is associated with a device for rapid correction of the time provided in particular to allow rapid adjustment of the dates or even the setting a time zone.
  • the watch movement 200 comprises an embodiment of a mechanism 100 according to the invention.
  • the first timepiece information derived from the time is date information, in particular date information.
  • the first display element of a first horological information derived from the time comprises for example a disc or a Q ring carrying date information and cooperating with a window provided on a dial so as to display the current information date.
  • the second timepiece information derived from the time is moon phase information.
  • the second display element of a second timepiece information derived from the time comprises for example a PDL disk carrying two representations of the Moon positioned at 180 ° from one another relative to the center of the disk and cooperating with a window provided on the dial so as to display the current Moon phase information.
  • the mechanism implements a mobile trainer TE of the second PDL element for displaying the second horological information derived from the time, which has the specificity of acting as a mobile for rapid correction of the second PDL element for displaying the second horological information. derived from the time when setting the timepiece.
  • the driving mobile is a planetary TE train whose construction is particularly simple, compact and robust.
  • This planetary gear train also has the particularity of being in engagement with the time display element, ie a main switch of the timepiece such as an hour hand and a minute hand, by means of a related declutching mechanism constituted by the notched mobile.
  • This declutching mechanism is provided to allow the adjustment of the first element Q for displaying the first watch information derived from the time independently of the setting of the second PDL element for displaying the second watch information derived from the time.
  • the planetary gear train TE includes, as shown in the figure 5 , a satellite carrier 1 in permanent kinematic connection with the notched mobile MC, a first planetary pinion 4 in permanent kinematic connection with an element 7 for correcting the second PDL element for displaying the second horological information derived from the time, a second planetary gear 6 in permanent kinematic connection with a mobile of the PDL element for displaying the second horological information derived from the time and at least one satellite 2, 3 pivoted on the planet carrier.
  • the planetary gear train TE has a particularly simple structure.
  • the cogs of the planetary gear train TE are for example only provided with external teeth.
  • the cogs of the planetary gear train TE are shaped so as to be pivoted only according to a single pivot means which can for example take the form of a foot-screw P1 secured to a frame of the movement.
  • This conformation allows an implementation of a particularly simple and compact planetary gear train which only uses gears with external teeth.
  • the pitch radius of the second planetary gear 6 is less than the spacing of the gear of the first planetary gear 4 - satellite 2, or even substantially identical to the pitch radius of the first planetary gear 4, or even less than the pitch radius of the first pinion planetary 4. This provides a particularly robust construction.
  • first and second planetary gears 4, 6 are therefore in meshed connection with the at least one satellite via external teeth of the first and second planetary gears.
  • the watch mechanism comprises a first kinematic chain C1 for driving the second PDL element for displaying the second watch information derived from the time.
  • the first kinematic chain C1 is rotated by an hour wheel RH which is connected to the basic movement by means of a carriageway CH.
  • the hour wheel RH rotates the planetary gear train TE by means of the declutching mechanism which takes the form of the notched mobile MC and a mobile 9.
  • An output of the planetary train TE is engaged with the second display element the second horological information derived from the time, here the second display element of the phases of the Moon PDL (not shown in the figures 3 and 4 ).
  • the watch mechanism also includes a second kinematic chain C2 for driving the first element Q for displaying the first watch information derived from the time.
  • the second kinematic chain C2 is also driven in rotation by the hour wheel RH which is connected to the basic movement by means of the carriageway CH.
  • the RH hour wheel rotates a mobile MQ calendar trainer.
  • the mobile date trainer MQ is designed to actuate the first display element of the first horological information derived from the time, here the first display element of the Q dates (shown in the Figures 1 and 2 , not shown on figures 3 and 4 ).
  • the watch mechanism also includes a third kinematic chain for driving the time display element H.
  • the third kinematic chain is driven in rotation by the carriageway CH which is kinematically linked to the basic movement.
  • the carriageway CH rotates the notched mobile MC which in turn drives the hour wheel RH.
  • the notched mobile MC constitutes a timer mobile connecting the carriageway CH on which is mounted or fixed a display element for the minutes, in particular the minute hand, and the hour wheel RH on which is mounted or fixed the time display element H (shown diagrammatically on the figure 3 ), especially the hour hand.
  • the minute display element is thus integral in rotation with the roadway CH and the hour display element is thus integral in rotation with the wheel RH.
  • the first kinematic correction chain CC1 allows the adjustment of the hours and minutes, the date, and the phase of the Moon simultaneously.
  • the first channel correction kinematics CC1 comprises a rod T provided with a pinion 91 with front teeth, a first reference 92, a second reference 93, the notched mobile MC, the hour wheel RH, a mobile 10, the mobile driving the dates MQ, the mobile 9 and the planetary gear train TE.
  • the second kinematic chain for rapid CC2 correction of the time allows rapid adjustment of the time independently of the minute indication.
  • Such a correction kinematic chain in particular allows rapid correction of the first element Q for displaying the first horological information derived from the time without affecting the second PDL element for displaying the second horological information derived from the time.
  • the second correction kinematic chain CC2 comprises the rod T provided with the gear 91 with front teeth, a third gear 94, a fourth gear 95, a fifth gear 96, a sixth gear 97, a sixth gear 98, a gear 12 of the mobile notched MC, the hour wheel RH, the mobile 10 and the mobile coach of the dates MQ.
  • the correction kinematic chains CC1 and CC2 can be activated by means of a COM switching mechanism.
  • the first and second kinematic correction chains are arranged so that they can be engaged with the rod T using the switching mechanism COM.
  • the switching mechanism COM is controlled by the rod T, in particular by the axial position of the rod.
  • the COM switching mechanism may include a pull tab.
  • the COM switching mechanism can also include all the traditional elements which constitute this type of rod switching mechanism.
  • the third kinematic correction chain CC3 is partially integrated within the planetary gear train TE.
  • the third kinematic correction chain CC3 allows independent correction of the display element of the phases of the Moon under the actuation of a control member OC.
  • the third correction kinematic chain CC3 comprises the control member OC, a correction rocker BC, a lever LC, a correction mobile 7 and the planetary gear train TE.
  • the control member is preferably made in one piece. In the embodiment shown, the control member is a pusher.
  • the notched mobile MC makes it possible to decouple the kinematic correction chains CC1 and CC2, so that a rotation of the hour wheel RH independent of the rotation of the display element of the phases of the Moon PDL is made possible.
  • a first input of the planetary gear train is constituted by the satellite carrier 1.
  • the satellite carrier 1 is engaged with the hour wheel RH by means of the notched mobile MC and a mobile 9.
  • a satellite in the form of a mobile comprising a first gear 2 and a second gear 3 is pivoted on the planet carrier 1.
  • the two gear 2, 3 are integral and are arranged on either side of the board of the carrier 1.
  • the first gear 2 is engaged with a second input of the planetary gear.
  • This second input of the planetary gear consists of the pinion 4.
  • the second gear 3 is engaged with the pinion 6 of the output of the planetary gear.
  • This output pinion 6 is in kinematic connection with the second PDL element for displaying the second watch information derived from the time.
  • the planet carrier 1 is driven in rotation under the impulse of the hour wheel RH via the notched mobile MC and the mobile 9.
  • the references 2, 3 are thus driven in rotation relative to the first pinion planetary 4 which is held in position under the effect of indexing means R1, 8 taking part in the third kinematic correction chain CC3.
  • the output of the planetary gear train constituted by the second planetary gear 6 is driven in rotation by the second reference 3.
  • the second PDL element for displaying the second horological information derived from the time is driven by the pinion 6.
  • the driving speed of the second PDL element for displaying the second horological information derived from the time is defined by the reduction given by the number of toothed mobiles taking part in the first kinematic chain C1.
  • the first planetary gear 4 When the third correction kinematic chain CC3 is actuated under the effect of the control member OC, the first planetary gear 4 is rotated under the effect of the rotation of a wheel 5 which is integral with the first planetary gear 4, in particular which is fixed on the first planetary gear 4.
  • the planet carrier 1 is immobilized by the first kinematic chain C1, and more particularly by the carriageway CH which is friction mounted on a gear train finishing the basic movement.
  • the rotation of the first planetary gear 4 thus causes the rotation of the gear 3 via the gear 2, and therefore the rotation of the second planetary gear 6 and the movement of the second PDL element for displaying the second horological information derived from the hour.
  • the third correction kinematic chain CC3 more particularly comprises the correction mobile 7 including a correction star 8.
  • the correction star 8 is held in position by a leaf spring R1 as shown in the figure 4 .
  • the correction star 8 is arranged so as to be actuated by the control member OC, in particular by a rocker BC.
  • the first planetary gear 4 is held in position by leaf spring R1 via elements 7, 8, 5.
  • the third kinematic correction chain CC3 is actuated in rotation under the effect of the control member OC via the correction lever BC , pivoted around an axis P2, and having the correction lever LC which is pivoted around an axis P3 on the rocker.
  • the lever and the lever are both returned to position by a single leaf spring R2 so that the lever-lever assembly acts unidirectionally on the correction star 8 at a predetermined angular pitch.
  • the notched mobile MC is arranged at the interface of the mobile 9, the carriageway CH and the hour wheel RH, as shown in the figures 7 and 8 .
  • the notched mobile MC constitutes a timer mobile by connecting the hour wheel RH and the road CH.
  • the notched mobile MC connects the planetary gear train TE via the planet carrier 1.
  • the figure 7 shows a partial sectional view along the planes BB represented on the figure 3 .
  • the notched mobile MC comprises the first mobile 12 meshed with the hour wheel RH and a second mobile 11, 13 meshed with the roadway CH, the first and second mobile being linked by an indexing element R3, 14 of the first mobile 12 relatively to the second mobile 11, 13.
  • the second mobile 11, 13 comprises a wheel 11.
  • the second mobile constitutes a first entry of the notched mobile.
  • the wheel 11 is engaged with the carriageway CH.
  • the first mobile 12 constitutes a second entry of the notched mobile.
  • the first mobile comprises a pinion 12 engaged with the hour wheel RH.
  • the wheel 11 and the pinion 12 are advantageously pivoted coaxially.
  • a wheel 13 is integral with the wheel 11, and meshes with the mobile 9.
  • the first and second inputs of the notched mobile MC have the particularity of being disengageable by means of a spring R3 mounted on the wheel 13, which is designed to cooperate with a cam 14 integral with the pinion 12 or fixed on the pinion 12.
  • the elements 11, 13 and 12 are joined together by means of the elements 14 and R3 so as on the one hand to constitute a timer mobile disposed at the interface of the carriageway CH and of the hour wheel RH, and secondly, to allow the activation of the first kinematic chain C1, namely the driving of the second PDL element for displaying the second horological information derived from the time by the wheel RH hours via the TE planetary gear train.
  • the notched mobile MC is also an integral part of the kinematic correction chains CC1 and CC2.
  • the notched mobile MC is included in the first kinematic correction chain CC1.
  • the notched mobile MC is connected to the rod T, by means of its first input 11.
  • a rotation of the rod T allows the adjustment of the hour, the minutes, the date and the Moon phase, the elements 11, 13 and 12 of the notched mobile being secured by means of the elements 14 and R3.
  • the notched mobile MC is also included in the second kinematic correction chain CC2.
  • the notched mobile MC is connected to the rod T, by means of its second input 12.
  • a rotation of the rod T allows the adjustment of the hour, even the date, independently of the minutes and the display of the phase Moon according to a predetermined angular pitch, in particular predetermined by the elements 14 and R3, the elements 11, 13 being held in position by the carriageway CH which is friction mounted on the gear train of the basic movement.
  • the friction torque of the road on the gear train for finishing the basic movement brought back to the axis of the notched mobile is greater than the resistant torque created around the axis of the notched mobile by the elements 14 and R3.
  • the second mobile 11, 13 remains stationary due to the friction torque of the road on the gear train of the basic movement.
  • the spring R3 is deformed by the action of the cam 14 and the first mobile is moved one step relative to the second mobile.
  • the amplitude of the pitch, here 90 °, is defined by the geometry of the cam 14.
  • the second kinematic correction chain CC2 thus allows rapid adjustment of the hour display element and in particular rapid adjustment of the date display element which is engaged with the hour wheel RH, via the mobile 10 and a mobile MQ.
  • the notched mobile MC is therefore placed within the kinematic correction chains CC1 and CC2 so as to allow simultaneous adjustment of the hours and minutes, of the first time indication or derived from the time, and d '' a possible time or derivative indication of the overtime, and on the other hand to allow an independent adjustment of the hour, even of the dates, and of the possible time or derivative indication of the overtime according to an angular step determined by the notched mobile MC.
  • mobile we mean any watchmaking assembly comprising at least one toothed wheel and / or a toothed pinion.
  • notched mobile we preferably mean an assembly comprising a first mobile and a second mobile, the first mobile being movable relative to the second mobile and the first and second mobile being linked by an indexing element of the first mobile relative to the second mobile.
  • the first and second mobiles are preferably coaxial.
  • the indexing element preferably comprises a cam and a spring.
  • basic movement we mean any watch movement with at least one finishing chain allowing the counting of time, in particular the counting of minutes.

Claims (14)

  1. Uhrmechanismus (100), umfassend ein Element (H) zum Anzeigen der Uhrzeit, ein erstes Element (Q) zum Anzeigen einer ersten Uhrinformation, die von der Uhrzeit abgeleitet wird, und ein zweites Element (PDL) zum Anzeigen einer zweiten Uhrinformation, die von der Uhrzeit abgeleitet wird, wobei der Mechanismus umfasst:
    - eine erste kinematische Kette (CC1) zur gleichzeitigen Korrektur der Anzeige der Uhrzeit, der Anzeige der ersten Uhrinformation und der Anzeige der zweiten Uhrinformation, und
    - eine dritte kinematische Kette (CC3) zur Korrektur der Anzeige der zweiten Uhrinformation unabhängig von der Anzeige der Uhrzeit und der Anzeige der ersten Uhrinformation,
    dadurch gekennzeichnet, dass der Mechanismus eine zweite kinematische Kette (CC2) zur Korrektur der Anzeige der Uhrzeit unabhängig von der Anzeige der zweiten Uhrinformation umfasst, dass die dritte kinematische Kette zur Korrektur ein Planetengetriebe (TE) umfasst, dass das Planetengetriebe (TE) kinematisch mit dem Element (H) zum Anzeigen der Uhrzeit durch ein bewegliches Zahnrad (MC) verbunden ist, und dass die erste und zweite kinematische Kette das bewegliche Zahnrad (MC) umfassen.
  2. Uhrmechanismus nach Anspruch 1, dadurch gekennzeichnet, dass das bewegliche Zahnrad (MC) ein bewegliches Uhrwerk darstellt.
  3. Uhrmechanismus nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass das bewegliche Zahnrad (MC) einen ersten beweglichen Teil (12), der mit einem Stundenrad (RH) in Eingriff steht, und einen zweiten beweglichen Teil (11, 13), der mit einem Minutenrohr (CH) in Eingriff steht, umfasst, wobei der erste und zweite bewegliche Teil durch ein Indexierungselement (R3, 14) des ersten beweglichen Teils relativ zu dem zweiten beweglichen Teil verbunden sind.
  4. Uhrmechanismus nach dem vorhergehenden Anspruch, dadurch gekennzeichnet, dass das Indexierungselement eine Feder (R3), die auf dem zweiten beweglichen Teil (11, 13) montiert ist, und einen Nocken (14), der, insbesondere fest, auf dem ersten beweglichen Teil (12) montiert ist, umfasst, wobei die Feder und der Nocken derart angeordnet sind, dass sie durch den Kontakt miteinander zusammenwirken.
  5. Uhrmechanismus nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das Planetengetriebe (TE) einen Planetenradträger (1) in permanenter kinematischer Verbindung mit dem beweglichen Zahnrad (MC), ein erstes Planetenrad (4) in permanenter kinematischer Verbindung mit einem Element (7) zur Korrektur der zweiten Uhrinformation, ein zweites Planetenrad (6) in permanenter kinematischer Verbindung mit einem beweglichen Teil des zweiten Elements (PDL) zum Anzeigen der zweiten Uhrinformation und mindestens ein Satellitenrad (2, 3), das auf dem Planetenradträger verschwenkt wird, umfasst.
  6. Uhrmechanismus nach dem vorhergehenden Anspruch, dadurch gekennzeichnet, dass das erste und zweite Planetenrad in Eingriffverbindung mit mindestens einem Satellitenrad über die äußeren Zähne des ersten und zweiten Planetenrads stehen.
  7. Uhrmechanismus nach einem der Ansprüche 5 und 6, dadurch gekennzeichnet, dass der Satellitenradträger (1) äußere Zähne umfasst.
  8. Uhrmechanismus nach einem der Ansprüche 5 bis 7, dadurch gekennzeichnet, dass ein Halbmesser des zweiten Planetenrads (6) kleiner ist als der Achsabstand des Getriebes, das aus dem ersten Planetenrad (4) und mindestens einem Satellitenrad (2, 3) besteht, wobei der Halbmesser des zweiten Planetenrads (6) im Wesentlichen gleich dem Halbmesser des ersten Planetenrads (4) ist, oder wobei der Halbmesser des zweiten Planetenrads (6) kleiner als der Halbmesser des ersten Planetenrads (4) ist.
  9. Uhrmechanismus nach einem der Ansprüche 5 bis 8, dadurch gekennzeichnet, dass das Element (7) zur Korrektur ein beweglicher Teil zur Korrektur ist, umfassend einen Stern (8) zur Korrektur, der derart angeordnet ist, dass er von einem Steuerorgan (OC), insbesondere über eine Wippe (BC), betätigt wird.
  10. Uhrmechanismus nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die erste und zweite kinematische Kette (CC1), (CC2) zur Korrektur derart angeordnet sind, dass sie mit einem Stift (T) in Eingriff gebracht werden können.
  11. Uhrmechanismus nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die erste Uhrinformation, die von der Uhrzeit abgeleitet wird, eine Datumsinformation, insbesondere eine Kalenderinformation, ist.
  12. Uhrmechanismus nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die zweite Uhrinformation, die von der Uhrzeit abgeleitet wird, eine Information der Mondphase ist.
  13. Uhrwerk (200), umfassend einen Mechanismus (100) nach einem der vorhergehenden Ansprüche.
  14. Uhr (300), umfassend ein Uhrwerk (200) nach dem vorhergehenden Anspruch oder einen Mechanismus (100) nach einem der Ansprüche 1 bis 12.
EP16196170.1A 2016-10-28 2016-10-28 Anzeige- und korrekturmechanismus des zustands von einer pluralität von informationen Active EP3316048B1 (de)

Priority Applications (4)

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EP16196170.1A EP3316048B1 (de) 2016-10-28 2016-10-28 Anzeige- und korrekturmechanismus des zustands von einer pluralität von informationen
JP2017197343A JP7045826B2 (ja) 2016-10-28 2017-10-11 小型時計機構
US15/793,409 US10281878B2 (en) 2016-10-28 2017-10-25 Watch mechanism
CN201711008787.6A CN108021015B (zh) 2016-10-28 2017-10-25 表机构

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EP3316048B1 true EP3316048B1 (de) 2020-03-18

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EP3492997B1 (de) * 2017-11-30 2020-08-19 Montres Breguet S.A. Mechanisches uhrwerk, das einen schlagwerkmechanismus umfasst
EP3599515B1 (de) * 2018-07-24 2022-07-06 Harry Winston SA Antriebsmechanismus für uhrwerk
EP3944026A1 (de) * 2020-07-21 2022-01-26 Rolex Sa Uhrwerkmechanismus mit zählkette

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US4443112A (en) 1982-09-29 1984-04-17 Timex Corporation Planetary gear for date mechanism in a wristwatch
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Also Published As

Publication number Publication date
JP2018109604A (ja) 2018-07-12
CN108021015B (zh) 2021-05-25
EP3316048A1 (de) 2018-05-02
CN108021015A (zh) 2018-05-11
US20180120770A1 (en) 2018-05-03
US10281878B2 (en) 2019-05-07
JP7045826B2 (ja) 2022-04-01

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