EP1852755B1 - Uhr mit einem Minutenrepetiermechanismus - Google Patents

Uhr mit einem Minutenrepetiermechanismus Download PDF

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Publication number
EP1852755B1
EP1852755B1 EP07113157.7A EP07113157A EP1852755B1 EP 1852755 B1 EP1852755 B1 EP 1852755B1 EP 07113157 A EP07113157 A EP 07113157A EP 1852755 B1 EP1852755 B1 EP 1852755B1
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EP
European Patent Office
Prior art keywords
toothed
quarter
minute
sector
striking piece
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.)
Not-in-force
Application number
EP07113157.7A
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English (en)
French (fr)
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EP1852755A3 (de
EP1852755A2 (de
Inventor
Yves Corthesy
Jean-Pierre Charpier
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LVMH Swiss Manufactures SA
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LVMH Swiss Manufactures SA
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Publication date
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Priority to EP07113157.7A priority Critical patent/EP1852755B1/de
Publication of EP1852755A2 publication Critical patent/EP1852755A2/de
Publication of EP1852755A3 publication Critical patent/EP1852755A3/de
Application granted granted Critical
Publication of EP1852755B1 publication Critical patent/EP1852755B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • G04B21/00Indicating the time by acoustic means
    • G04B21/02Regular striking mechanisms giving the full hour, half hour or quarter hour
    • G04B21/12Reiterating watches or clocks
    • 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
    • G04B21/00Indicating the time by acoustic means
    • G04B21/02Regular striking mechanisms giving the full hour, half hour or quarter hour
    • G04B21/04Hour wheels; Racks or rakes; Snails or similar control mechanisms

Definitions

  • the present invention relates to the field of mechanical watchmaking. It relates more particularly to a mechanism known to those skilled in the art as the minute repeater.
  • Such a device makes it possible to indicate, on demand, the hour to the minute, by means of blows struck by two hammers on two different stamps.
  • the hammers are operated by lifts that are raised by a striking mechanism. This includes a room of hours, a quarter and a minute, with twelve, three and fourteen teeth respectively to ring the hours, quarters and minutes.
  • a snail of the hours is arranged on a star with twelve teeth, advancing one step per hour, while a quarter snail and another minute are adjusted on the bolster of the roadway .
  • Three flip-flops, each equipped with a probe cooperating with these snails, make it possible to determine the stroke of the parts of the hours, quarters and minutes and to adjust the number of blows sounded.
  • the object of the present invention is to propose a new minute repetition mechanism employing a relatively small number of parts, which makes it easier to develop.
  • the invention relates to a striking piece intended to be integrated into a minute repeater mechanism, comprising a rake which successively presents, along one of its edges, a toothed sector of the hours, a space free of gearing and a toothed area of minutes.
  • the toothed sectors of minutes and hours of this ringing part are located in different planes.
  • the hour and minute toothed sectors are located on a ringing part as defined above.
  • the minute repetition mechanism according to the invention is described below with reference to the figure 1 . It takes place in a classic watch movement whose current elements, for the sake of clarity, have not been represented. Similarly, the plate, on which the pieces of the repetition are mounted, does not appear in the drawing.
  • the energy required for the operation of the repetition is provided by a ringer barrel 10 which is armed, either by a rack that the wearer actuates, either by an automatic winding system with oscillating weight, or by manual winding.
  • the barrel 10 is automatically reassembled. It is held in the armed position by means of a wolf-tooth wheel 12. More specifically, the end of a first rocker 14 visible on the figure 2 and pivotally mounted at the periphery of the movement, forms a pawl that locks the wheel 12.
  • a pusher 16 protruding outside the box.
  • the latter actuates a second latch 18, also located on the periphery of the movement, pivoting at a point X and having a pin 20 which cooperates with the first latch 14, the side of the center of the movement.
  • the barrel 10 rotates a clocking driving wheel 22, pivoting in a clockwise direction (SAM below) at a point A, under the other parts of the repetition mechanism.
  • SAM clockwise direction
  • the unwinding of the barrel is slowed down by a brake 23 or an escapement disposed at the outlet of the barrel 10.
  • the flip-flop 18 further comprises a lug 18c taking up, at rest, in one of the two notches 200 formed on a diameter of a counting wheel 202, so named because, as will be understood hereafter, it makes it possible to determine the duration of a cycle of the repetition mechanism.
  • the rocker 18 When the pusher 16 is pressed, the rocker 18 is raised and the barrel 10 is released. The counting wheel 202 is then rotated and, when the pusher 16 is released, the lug 18c bears on the edge of the counting wheel 202 which has rotated, which keeps the latch 18 in position and prevents the ratchet to fall back and lock the barrel 10. When the wheel 202 has made a half turn, the lug 18c goes down into the other notch 200 and the latch 18 falls. The pin 20 of the rocker 18 no longer pushes on the rocker 14, the pawl can then fall, blocking the barrel 10. The rotational speed of the counting wheel 202 is adjusted to allow the striking mechanism to perform a complete cycle while this wheel makes a U-turn.
  • the barrel 10 is kinematically connected with a gear train 210 performing a turn in a period substantially equal to that of the power reserve of the barrel.
  • This wheel is used to display, in a window of the dial, information on the power reserve of the barrel ring.
  • the gear 210 carries, on its axis, a cam 212 intended to cooperate with a finger 216a of a flip-flop 216.
  • a cam 212 intended to cooperate with a finger 216a of a flip-flop 216.
  • One end of the latter ends near the rocker 18, particularly a hook 18a that it involves.
  • This end is provided with a pillar 216b located on the cam and a stop 216c located below it and intended to act with the hook 18a.
  • a jumper spring 218 has two contiguous housings 218a and 218b which cooperate with the pillar 216b.
  • the interaction between the cam 212 and the finger 216a makes it possible to drive the pillar 216 from one to the other of the housings, the pressure of the spring 218 not allowing the rocker 216 to occupy only two positions.
  • the cam 212 is positioned so as to cross the finger 216a when the power reserve of the barrel does not make it possible to carry out a complete ringing repetition cycle at minutes, that is to say when it is approximately less than 30. % of the total reserve.
  • the flip-flop 216 When the power reserve is greater than this value, the flip-flop 216 is in the first of its positions, the pillar 216b being located in the housing 218a and the stop 216c leaving free the hook 18a.
  • the rotation of the gear 210 and the position of the cam 212 allow it to push the finger 216a and pass the latch 216 in its second position.
  • the pillar 216b is then located in the housing 218b and the stop 216c is positioned in the hollow of the hook 18a.
  • the latch 18 can not be actuated because the stop 216c blocks it at the hook 18a.
  • the barrel 10 can not be released and there is no ring.
  • the display indicates in the window, when the rocker is in its first position, that the repeat mechanism is usable, for example by means of a sector of a first color and, when the rocker is in its second position, that the mechanism is blocked, by means of a pellet of another color.
  • the mechanism is provided with a counting member which comprises a set of snails of known type, driven by the finishing gear.
  • a counting member which comprises a set of snails of known type, driven by the finishing gear.
  • it comprises a minute snail 24 with four arms each provided with fourteen teeth, adjusted on a tigeron of the roadway in the center of the movement, and a quarter snail 26 provided with three teeth, in solidarity with the surprise.
  • a snail of hours 28 is disposed on a star with twelve teeth 30, advancing one step per hour.
  • the minutes snail 24 is provided with a surprise, of conventional type, provided with a jumper 31.
  • This mechanism is intended to prevent, at the time of passage from one quarter to another, the minute probe (described below) falls directly to the "0 minute” level.
  • the repetition comprises, at its periphery, two stamps 32a and 32b that two hammers 34a and 34b, driven by upper levies 36a and lower 36b, sound.
  • the stamps 32a and 32b can be made in one or more independent pieces.
  • the springs and counter-springs of the hammers are not shown.
  • the pallet 44a is positioned to act on the pin 46a during a rising phase of its rotational movement in the counter-clockwise direction (SIAM below).
  • the pallet 44b is positioned to act on the pin 46b during a downward phase of its rotational movement in the SIAM.
  • the lifts can, thanks to their structure, be operated separately or together, depending on the shape and especially the thickness of the toothed sectors.
  • the relative positioning of the nozzles makes it possible to adjust the offset in time of hammer strike.
  • a ringing part 100 is pivotally mounted at A. It comprises a base 100a of generally triangular shape, the point A being located near one of the corners, and a rake 100b. The latter presents successively from left to right, along its outer edge, that is to say on the outside of the movement, a toothed sector of the hours 106 positioned, in the direction of the thickness of the mechanism, at the level of the lower lift 36b, a free space of teeth 104 whose role will appear later, and a toothed sector minutes minutes 102, positioned in the direction of the thickness of the mechanism, at the upper lift 36a.
  • a hollow 107 visible on the Figures 4 to 7 and whose role will appear later, is provided at the level of the free space 104.
  • the bell part 100 carries, beneath it, a flip-flop 112 visible on the Figures 4 to 7 and pivoting at a point B.
  • the latter is provided with a first pin 114 intended to cooperate with the ring driving wheel 22, and a second pin 116 rising on the dial side and passing through the piece 100 through an opening 118 As will be seen below, this pin 116 serves to actuate the rocker.
  • a spring 120 is fixed on one side to the plate and, on the other side to the striking piece 100 and exerts a force tending to drive the piece 100 in the SIAM.
  • the stop means blocking the piece 100 will be explained hereinafter.
  • a part called trigger 122 is pivotally mounted at A on the striking piece 100 and is coupled thereto by a rod 124 (or a screw, for example) which passes through an oblong hole in the piece 100.
  • the trigger 122 comprises a first 128 and a second arm 130 in the form of circular arcs, concentrically oriented to the driving wheel 22.
  • the first arm 128 terminates with a probe 128a intended to collaborate with the snail minutes 24.
  • the second arm 130 ends with a probe 130a intended to collaborate with the snail of hours 28.
  • the trigger 122 has a housing 132 in which takes place the pin 116 of the flip-flop 112.
  • the piece 100 can move relative to the trigger 122, which causes the pivoting of the rocker 112 and engages the pin 114 on the driving wheel 22.
  • the second arm 130 is provided on its outer edge with a lug 134 intended to cooperate with the spring 110.
  • the latter positions the trigger 122 in abutment on one or other end of the oblong 126. He forces the rocking 112 to be in one or other of its extreme positions, that is to say engaged or completely disengaged.
  • a quarter piece 136 is pivotally mounted, by known means, at a point C on the ringing piece 100.
  • This piece 136 has, overall, the shape of a conventional ring rake. More particularly, one of its corners 136a delimits, on one side, a locking surface 136b and, on the other side, a bearing surface 136c. This is formed by the edge of the piece 136 located on the side of the center of the movement which draws a portion of a circle centered on the point A.
  • the quarter piece 136 has, in addition, a toothed portion 136d, arranged to be positioned in the free space 104.
  • This portion 136d has only three teeth, respectively intended to ring the first, the second and the third quarter the current time. Its thickness and its positioning allow the teeth to cross, in their race, the nozzles 130 of the two lifts 36. Given the structure of the latter described above, each tooth first actuates one 36b and then, immediately afterwards, other 36a raises, thus producing the sound usually identifying the quarters.
  • the quarter part 136 is provided with a pressure surface 136e with which the spring 108 cooperates, exerting a force which tends to tilt the toothed portion 136e towards the center of the movement.
  • the piece 136 has a shoulder 136g for cooperating with the recess 107 of the ringing part.
  • the piece 136 has a boss 136f.
  • the latter and the toothed portion 136d are located on either side of the pivot point C.
  • the boss makes it possible to actuate and rotate the workpiece 136.
  • a quarter control 138 is mounted, under the ringing piece 100, rotatable about the point A. It comprises a first arm 140 ending in a probe 140a intended to cooperate with the quarter snail 26. It comprises, in addition , a second arm 142 having a wedge 142a defining, on one side, a locking sector 142b, and, on the other side, a bearing sector 142c. This is formed by the edge of the arm 142 located on the side of the periphery of the movement and draws a portion of a circle centered on the point A. It will be explained hereinafter how the control 138 and the quarter part 136 cooperate.
  • a pin 144 is positioned in the plate to limit the stroke of the command 138 in the SIAM.
  • the second latch 18 mentioned above has a second hook 18b cooperating with a connecting rod 148 formed essentially of a first arm 148a and a second arm 148b.
  • the rod is pivotally mounted on the plate at a point D located at the first end of the arm 148a.
  • the arms 148a and 148b are articulated at a point E located at the second end of the arm 148a and at the first end of the arm 148b.
  • a spring 150 connecting the first arm 148a to the second end of the second arm 148b exerts a force holding the arms of the rod in a semi-folded position.
  • the second end of the arm 148b has a first narrow cylindrical portion 152 and a larger diameter platen 154 for acting on the boss 136f of the quarter piece 136 to rotate it.
  • a pin 156 is fixed in the plate. It is truncated and has a flat part 156a intended to cooperate with the part 152 to guide the movement of the connecting rod 148.
  • the latch 18, via the hook 18b pushes the rod 148 near the point D so as to rotate around this point.
  • the cylindrical portion 152 rests on the flat part 156a, and the arms 148a and 148b unfold, putting the spring 150 under tension.
  • the plate 154 pushes the boss 136f, then the portion 152 exceeds the flat.
  • the rod 148 resumes its initial position, in order to prevent the plate hinders the stroke of the quarter piece 136.
  • the figure 4 gives a close-up of the area specific to the rehearsal mechanism in the rest position.
  • Sector 142b and 136b block 136b of the control 138 and the quarter part 136 are vis-à-vis one another.
  • the spring 108 presses the part of the quarters 136, but it is positioned in abutment with the support of the shoulder 136g on the recess 107.
  • the sector 142b and the surface 136b rely one on the other under the effect of the springs 120 and 108.
  • the spring 120 all the ringing parts is positioned by the support of the quarter control 138 on the pin 144 which form a stop member.
  • the rocker is not engaged on the driving wheel which does not rotate, the ringer barrel being kept blocked by the ratchet rocker 14.
  • the carrier presses on the pusher 16. On the one hand, this causes, via the latches 14 and 18, the release of the ringing barrel 10 which rotates the driving wheel 22. On the other hand, the rod 148 presses on the boss 136f and pivots the piece 136. The sector 142b and the blocking surface 136b, respectively of the control 138 and the quarter piece 136 slide over each other.
  • the wedges 136a and 142a escape from each other, all the ringing parts formed by the piece 100, the trigger 122 and the quarter piece 136, turn in the SIAM around the point A, until the probe hours 130a bears on the snail hour 28.
  • the toothed sectors 102 and 136d operate the lifts 36 without any effect on the hammers .
  • the ringing part 100 is positioned so that ten teeth are upstream of the lifts, that is to say they are ready to actuate them again when the ringing parts will turn in the SAM, with, this time, an effect on the hammers 34.
  • the spring 108 presses on the pressure surface 136e of the quarter piece 136 which rests on the arm 142 of the quarter control 138.
  • the toothed portion 136d remains at the toothed sectors of minutes 102 and hours 106 and is likely to cross the beaks 38 of the lifts 36.
  • the driving wheel 22 brings all the ringing parts back into the SAM.
  • the friction generated between the bearing surface 136c and the support sector 142c also drives the control of the quarters in the SAM.
  • the ten teeth of the hours sector 106 positioned upstream of the lift 36a successively cross the spout 38a and actuate the hammer 34a which strikes the stamp 20a to ring the ten strokes of the hours.
  • the teeth portion 136d in turn cross the beaks levées. Because of their thickness, they successively push the two lifts 36 and actuate the two hammers 34b and 34a which strike, in an offset manner, the stamps 32b and 32a to ring the quarters.
  • the probe 142b of the quarter control 138 When, still driven by the friction of the striking piece, the probe 142b of the quarter control 138 is supported on the quarter snail 26 to take the information relative to the number of quarters of the current time, the piece 138 stops his movement. The corner 142a of the quarter control 138 is then positioned in such a way that when the corner 136a of the quarter piece 136 reaches the level of the corner 142a of the control, the number of teeth useful for the ringing crosses the lifts 36 .
  • the piece 100 and the quarter piece 136 continue their rotation, still under the action of the driving wheel 22.
  • the teeth of the minutes sector 102 then cross the spout 38b of the lift 36b and push it successively to actuate the hammer 34b which hit the 20b stamp to ring the minutes.
  • the minute buzzer continues until the minute probe 128a comes to take its information on the minutes snail 24, which stops the trigger movement 122 ( figure 5 ).
  • the number of teeth then crossed the lift 36b corresponds to the number of minutes to ring (10 in the example).
  • the striking piece 100 is always moved by the driving wheel 22. Thanks to the oblong opening, the parts 100 and 122 then have a relative movement which actuates the lever 112 and causes the wheel 22 to disengage.
  • the counting wheel 202 allows the barrel 10 to remain free during the cycle of the repetition mechanism.
  • a minute repeater mechanism comprising a reduced number of parts. As a result, it is easier to set up and adjust, especially at the quarter ring level.
  • the three teeth of the quarter sector can actuate non-coaxial lifts, but whose centers of rotation are very close. It suffices, indeed, that the distance between the two nozzles is less than the distance separating two consecutive teeth.

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  • Mechanical Treatment Of Semiconductor (AREA)
  • Addition Polymer Or Copolymer, Post-Treatments, Or Chemical Modifications (AREA)
  • Treatments Of Macromolecular Shaped Articles (AREA)
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Claims (10)

  1. Schlagwerk, das dazu bestimmt ist, in einen Minutenrepetiermechanismus integriert zu sein, einen Rechen (100b) umfassend, der nacheinander entlang einer seiner Ränder einen gezahnten Stundensektor (106), einen zahnfreien Raum (104) aufweist, dadurch gekennzeichnet, dass der Rechen (100b) ferner entlang des Randes einen gezahnten Minutensektor (102) umfasst, der dem freien Raum folgt.
  2. Schlagwerk nach Anspruch 1, dadurch gekennzeichnet, dass sich die gezahnten Minuten- (102) und Stundensektoren (106) auf verschiedenen Ebenen befinden.
  3. Schlagwerk nach einem der Ansprüche 1 und 2, dadurch gekennzeichnet, dass es einen Abzug (122) trägt, der einen ersten (128) und einen zweiten (130) Arm aufweist, wobei jeder Arm jeweils einen Taster (128a, 130a) aufweist.
  4. Schlagwerk nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass es ein Viertelstundenschlagwerk (136) trägt, das einen gezahnten Viertelstundensektor (136d) aufweist und derart drehend montiert ist, dass der gezahnte Viertelstundensektor imstande ist, ausschließlich in dem zahnfreien Raum (104) zu erscheinen.
  5. Uhr, die einen Minutenrepetiermechanismus umfasst, der ausgestattet ist mit:
    • einer Energiequelle (10), die diesen Mechanismus versorgt,
    • einem Steuerorgan (16), um diesen Mechanismus zu betätigen,
    • ein Zählorgan, um eine Information über die laufende Zeit aufzunehmen, das umfasst:
    - eine Stundenstaffel (28), einen Stundentaster (128a),
    - eine Viertelstundenstaffel (26), einen Viertelstundentaster (142b), und
    - eine Minutenstaffel (24), einen Minutentaster (130a),
    • einen gezahnten Stundensektor (106), einen der Viertelstunden (136d) und einen der Minuten (102), die rotierend beweglich montiert sind und deren Verlagerung von dem Zählorgan bestimmt wird, und
    • Mittel, um einen Ton zu senden, die umfassen:
    - zwei Schöpfer (36), die imstande sind, von dem einen und/oder dem anderen der gezahnten Sektoren betätigt zu werden,
    - zwei Hämmer (34), die von den Schöpfern bewegt werden, und
    - zwei Tonfedern (32), auf die die Hämmer schlagen, um einen Ton zu senden,
    dadurch gekennzeichnet, dass sich die gezahnten Sektoren der Stunden (106) und der Minuten (102) auf einem Schlagwerk (100) befinden, wie nach einem der Ansprüche 1 bis 4 definiert.
  6. Uhr nach Anspruch 5, dadurch gekennzeichnet, dass die gezahnten Sektoren der Stunden (106) und der Minuten (102) in Richtung der Dicke des Mechanismus jeweils in der Ebene des einen und des anderen der Schöpfer (36a, 36b) positioniert sind.
  7. Uhr nach einem der Ansprüche 5 und 6, wenn sie von 3 abhängen, wobei die Energiequelle ein Federhaus (10) ist, dessen Energie anhand eines Antriebsrads (22) an den Mechanismus übertragen wird, dadurch gekennzeichnet, dass der Abzug (122) und das Schlagwerk (100) im Zentrum des Rads drehen, wobei mindestens einer von dem ersten (128) und zweiten (130) Arm des Abzugs konzentrisch zum Antriebsrad (22) ausgerichtet ist, und dass der Abzug mit Spiel an das Schlagwerk gekoppelt ist, wobei das Spiel eine relative Verlagerung des Abzugs im Verhältnis zum Schlagwerk hervorrufen kann, so dass das Schlagwerk über eine Wippe, die mit dem Schlagwerk verbunden ist und von dem Abzug bewegt wird, mit dem Antriebsrad koppelt oder entkoppelt wird.
  8. Uhr nach einem der Ansprüche 5 bis 7, wenn sie von 4 abhängen, dadurch gekennzeichnet, dass das Schlagwerk (100) eine Vertiefung (107) aufweist, und dass das Viertelstundenschlagwerk (136) mit einem Absatz (136g) und einer Druckfläche (136e) ausgestattet ist, mit der eine erste Positionierungsfeder (108) zusammenarbeitet, indem sie eine Kraft ausübt, die dazu neigt, den Absatz (136g) in Anschlag auf die Vertiefung (107) zu führen.
  9. Uhr nach Anspruch 8, dadurch gekennzeichnet, dass eine zweite Feder (120) eine Kraft auf das Schlagwerk (100) ausübt, die dazu neigt, es rotierend anzutreiben und dass die Positionierungsfeder (108) und die zweite Feder (120) das Viertelstundenschlagwerk (136) gegen ein Anschlagelement (144, 138) führen, das den Mechanismus in seiner Ruhestellung hält.
  10. Uhr nach einem der Ansprüche 5 bis 9, dadurch gekennzeichnet, dass die Schöpfer koaxial positioniert sind und dass der gezahnte Viertelstundensektor (136d) die Schnäbel (38) der zwei Schöpfer (36) in seiner Dicke umschließt.
EP07113157.7A 2005-03-31 2005-03-31 Uhr mit einem Minutenrepetiermechanismus Not-in-force EP1852755B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP07113157.7A EP1852755B1 (de) 2005-03-31 2005-03-31 Uhr mit einem Minutenrepetiermechanismus

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP05102567A EP1708050B1 (de) 2005-03-31 2005-03-31 Repetieruhr mit einem Minutenrepetiermechanismus
EP07113157.7A EP1852755B1 (de) 2005-03-31 2005-03-31 Uhr mit einem Minutenrepetiermechanismus

Related Parent Applications (2)

Application Number Title Priority Date Filing Date
EP05102567A Division EP1708050B1 (de) 2005-03-31 2005-03-31 Repetieruhr mit einem Minutenrepetiermechanismus
EP05102567.4 Division 2005-03-31

Publications (3)

Publication Number Publication Date
EP1852755A2 EP1852755A2 (de) 2007-11-07
EP1852755A3 EP1852755A3 (de) 2008-03-19
EP1852755B1 true EP1852755B1 (de) 2013-12-25

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EP05102567A Not-in-force EP1708050B1 (de) 2005-03-31 2005-03-31 Repetieruhr mit einem Minutenrepetiermechanismus
EP07113157.7A Not-in-force EP1852755B1 (de) 2005-03-31 2005-03-31 Uhr mit einem Minutenrepetiermechanismus

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EP05102567A Not-in-force EP1708050B1 (de) 2005-03-31 2005-03-31 Repetieruhr mit einem Minutenrepetiermechanismus

Country Status (9)

Country Link
US (1) US7773463B2 (de)
EP (2) EP1708050B1 (de)
JP (1) JP5203182B2 (de)
AT (1) ATE395639T1 (de)
DE (1) DE602005006733D1 (de)
ES (1) ES2307111T3 (de)
HK (1) HK1097610A1 (de)
RU (1) RU2007140326A (de)
WO (1) WO2006103267A1 (de)

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EP2107438A1 (de) * 2008-04-04 2009-10-07 Montres Journe S.A. Uhr mit Minutenrepetition
EP2226688B1 (de) * 2009-03-05 2011-09-07 Vaucher Manufacture Fleurier S.A. Uhr
JP5192440B2 (ja) * 2009-05-15 2013-05-08 株式会社神戸製鋼所 モータ及びこれを備えた圧縮機
EP2290480B1 (de) * 2009-08-26 2012-04-25 Montres Breguet SA Glocke für ein Schlagwerk einer Uhr
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EP2363764B1 (de) * 2010-03-05 2015-09-16 Montres Breguet SA Vorrichtung zur sequenziellen Steuerung mindestens zwei Schöpfer eines Uhrwerks
EP2367076B1 (de) * 2010-03-17 2018-08-08 Glashütter Uhrenbetrieb GmbH Alarmvorrichtung, die 30 Tage im Voraus eingestellt werden kann
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ATE395639T1 (de) 2008-05-15
ES2307111T3 (es) 2008-11-16
JP2008534941A (ja) 2008-08-28
EP1852755A3 (de) 2008-03-19
WO2006103267A1 (fr) 2006-10-05
EP1708050A1 (de) 2006-10-04
EP1708050B1 (de) 2008-05-14
US7773463B2 (en) 2010-08-10
DE602005006733D1 (de) 2008-06-26
JP5203182B2 (ja) 2013-06-05
US20080192585A1 (en) 2008-08-14
RU2007140326A (ru) 2009-05-10
HK1097610A1 (en) 2007-06-29
EP1852755A2 (de) 2007-11-07

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