专利摘要:
The invention relates to a watch with a time-setting mechanism with a disengageable timer lever (201), with a regulator-type striking mechanism, comprising at least one control part (226) set in motion by a movement or a control of a user, and a regulating mechanism (222) arranged to regulate at a substantially constant value the rotational speed of a ring actuator, said striking mechanism comprising, for at least one control part (226), a trigger of regulator arranged for, according to the angular position of this control member (226), to operate a stopper of the regulator (218) able to block or release the rotation of the regulating mechanism (222), and, through a articulated connection, to isolate the timer rocker (201) in a disengaged position or put it in a clutch position.
公开号:CH714362A2
申请号:CH01422/17
申请日:2017-11-23
公开日:2019-05-31
发明作者:Denden Mehdi;Peter Julien
申请人:Blancpain Sa;
IPC主号:
专利说明:

Description
FIELD OF THE INVENTION The invention relates to a watch with a striking mechanism with regulator, comprising a time-setting control mechanism with a time-setting means arranged to drive, in its position of clutch, a timer rocker able to occupy a clutch position and a disengaged position, a movement comprising a ringing trigger output when passing through the movement and arranged to drive at least one reference mobile, and said ringing mechanism comprising at least one control part arranged to be set in motion by said output or by a command from a user, and for reading position information on said at least one reference mobile, said striking mechanism also comprising a regulating mechanism arranged to regulate the speed of rotation of at least one striking actuator to a substantially constant value.
The invention relates to the field of striking mechanisms for watches, timepieces or music boxes, and more particularly to the field of striking or / and alarm watches.
BACKGROUND OF THE INVENTION Clockwork striking mechanisms are of great complications, complex as much by the number and the complexity of the kinematics of their components, as according to the operating modes of which they are capable. Managing security between the different modes is always difficult. For watches with additional complications operating on the way, such as a large ring, security management is even more complex.
Indeed, it is not only a question of ensuring correct play of the various ringtones or alarms without interference, but also of ensuring the normal operation of the timepiece, in particular a watch, with all of its others. functions, including of course the most classic: time setting and winding.
The situation becomes complicated when the mechanisms involve components with high inertia, which cannot be stopped immediately: oscillating winding weight, ring regulator weights, or the like.
The size, especially in a watch, does not allow to have an isolator with each mobile, and the difficulty is to provide security with a reduced number of components, medium complexity, and the lowest possible volume .
Document EP 2 498 148 in the name of MONTRES BREGUET SA describes, for a similar problem, a safety mechanism against untimely manipulation of the minute repeater control, applied to a striking mechanism comprising a striking block or rocket, and a pusher actuating a first lever for controlling the minute repeater, for a timepiece movement causing a trigger cam which, in automatic operation, pivots a trigger lever towards a detent röchet of the ringing block, which, during the execution of a buzzer, leads to a platform carrying an arming cam. This mechanism includes a safety mechanism against untimely manipulation, and a second safety lever whose pivoting is controlled by the first lever when the minute repeater is engaged, and which comprises a notch cooperating with a pivoting lock recalled by a spring, for prohibit re-triggering of the minute repeater after it has been launched, this swivel lock being released after the end of the minute repeater cycle.
Summary of the invention [0008] The invention proposes to produce a device prohibiting the setting of the time when executing a ringing tone on the passage (such as a large ringing or small ringing), a buzzer for minute repeater, or an alarm, simply and reliably, and compatible with the implementation of effective safety devices of medium complexity.
The invention is required to perform a good repositioning of the timer mechanism before the regulator stops, during the execution of a ring, to allow the user to set the time at the end of the ring. The invention also proposes to ensure the locking and unlocking of the ring regulator, while guaranteeing the proper functioning of the timer.
To this end, the invention relates to a timepiece, in particular a watch, according to claim 1.
The invention comprises special means for synchronization and sequencing between the two functions consisting, on the one hand in the triggering or blocking of the ring regulator, and on the other hand in the clutch or the disengagement of the timer setting mechanism.
Brief description of the drawings [0013] Other characteristics and advantages of the invention will appear on reading the detailed description which follows, with reference to the accompanying drawings, where:
CH 714 362 A2
fig. 1 to 8 are schematic representations, each comprising two plan views, recto-verso, and a perspective, of the main components of the mechanism according to the invention: Fig-1: timer toggle; fig- 2: intermediate timer release lever; Fig. 3: timer release lever; fig- 4: regulator trigger finger, in a monobloc version with a regulator plate and a single comma-shaped finger; Fig. 5: regulator management cam; Fig. 6: regulator stop jumper; fig- 7: minutes room; Fig. 8: regulator comprising a regulator pinion; fig. 9 to 14 show two by two, schematically, and in plan view, the striking mechanism according to the invention in the same position, the odd figures on the front side, and the even figures on the back side; all the components are not represented there, only visible are those which are essential for the execution of the illustrated function: fig. 9 and 10 represent the mechanism according to the invention in a position where the regulator is locked by pressing the regulator stop jumper on the teeth of the regulator pinion; fig. 11 and 12 represent the same mechanism when the regulator is released; fig. 13 and 14 represent the same mechanism in its position before the regulator is locked; fig. 15 is a detail of fig. 9, showing the support of a locking finger at the end of the regulator stop jumper in FIG. 6 on the teeth of the regulator pinion; fig. 16 is a detail of fig. 10, showing the interaction between a pin carried by the intermediate timer release lever of FIG. 2 and a first so-called upper end of an oblong lumen which comprises the timer rocker of FIG. 1; fig. 17 is another detail of fig. 10, showing the interaction between, on the one hand a pin that comprises the trigger plate of FIG. 4 in a first light that includes the regulator management cam of FIG. 5, and on the other hand between a probe that includes the stopper of the regulator of fig. 6, at its end opposite that of the finger of FIG. 15, with a side edge that includes the cam track of the regulator management cam of FIG. 5; fig. 18 similar to fig. 15 is a detail of FIG. 11, showing the release of the locking finger of the regulator stop jumper out of the toothing of the regulator pinion; fig. 19 similar to fig. 16 is a detail of FIG. 12, showing the interaction between the pin of the intermediate timer disengaging lever with the opposite end, called the lower end, of the oblong light of the timer lever; fig. 20 similar to fig. 17 is another detail of FIG. 12, showing on the one hand the same interaction between the first pin of the trigger plate and the first light of the regulator management cam of FIG. 5, and on the other hand the interaction between the feeler of the regulator stop jumper with a cylindrical sector which comprises the cam track of the regulator management cam; fig. 21 is another detail of fig. 12, showing in perspective an articulated connection between the timer release lever of FIG. 3 and the intermediate timer release lever of fig. 2, with an eccentric carried by the timer disengaging lever for adjusting the duration between the engagement of the timer lever with the means for setting the time of the clock movement on the one hand, and the locking of the regulating mechanism on the other hand; fig. 22 is a block diagram which represents a watch comprising a striking mechanism according to the invention.
CH 714 362 A2
Detailed description of the preferred embodiments The invention relates to a watch 1000 with at least one striking mechanism 100 with regulator.
By “ringing mechanism”, in the broad sense, is meant a clockwork sound emission mechanism: ringing on passing, repeating ringing, alarm or alarm clock, automaton, music box, or the like.
This watch 1000 includes a canceled time-setting mechanism, in particular but not necessarily of the conventional type by winding and time-setting control rod, with a time-setting means 200, in particular a sliding pinion, which is arranged to drive, in its clutch position, a timer lever 201 capable of occupying a clutch position and a disengaged position.
The watch 1000 includes at least one movement 2000, comprising an output 3 for triggering the ringing on passing through the movement, and which is arranged to drive at least one reference mobile 1 such as a snail or the like. The striking mechanism 100 comprises at least one control part 226, such as hour parts, quarter part, minute part, or the like, arranged to be set in motion by the output 3 or by a command from a user, and to read position information on this at least one reference mobile 1.
The invention relates to a watch 1000 or a timepiece 2000, comprising at least one particular striking mechanism 100. Such a timepiece 2000 can be a music box, or include a music box.
The work of François LECOULTRE "Complicated watches", Editions horlogères, Bienne (Switzerland), 1985, ISBN 2-88175-000-1, describes in detail the basic mechanisms constituting the striking mechanisms, on pages 97 to 205, under different chapters:
- ringtones,
- antique rehearsal,
- modern quarter repeater,
- simplified repetition,
- half shift repetition,
- Breguet half-shift rehearsal,
- five minute rehearsal,
- minute repeater,
- large bell.
Unless necessary, these basic mechanisms will not be repeated here in detail, the ringtone specialist will be able to find their constitution in this universal reference work, in particular in the last two chapters cited above.
The striking mechanism 100 also includes a regulating mechanism 222, in particular of the centrifugal or / and eddy current type, arranged to regulate at a substantially constant value the speed of rotation of at least one striking or actuator. alarm.
According to the invention, this striking mechanism 100 comprises, for at least one control part 226, a regulator trigger 210 which is arranged, for, according to the kinematics of this control part 226 (angular position, movement, and direction of pivoting), maneuvering a regulator stop jumper 218. This regulator stop jumper 218 is designed capable of blocking or releasing the rotation of the regulator mechanism 222.
The regulator trigger 210 comprises means, which, in the non-limiting variant illustrated by the figures, are a trigger plate 212 and a finger 211, and which are arranged to, through an articulated connection, isolate the timer lever 201 in the disengaged position or put it in the clutch position.
In a particular, non-limiting embodiment, illustrated by the figures, at least one control part 226, which is associated with a regulator trigger 210, comprises a drive means 227, which is arranged for, in certain positions , lift or drive such a finger 211 that includes this regulator trigger 210 associated with this control part when the regulator 222 is released.
This drive means 227 can take various forms, for example as in the figures, a clearance delimited by an edge 228, or which can be a projecting relief, a finger, a feeler, a cam, or even a toothing, or other, to cooperate with this finger 211. The drive means 227 is arranged to lift the finger 211 when the regulator 222 is locked, and to pivot the finger 211 during the execution of a buzzer or alarm. This training can be carried out by support contact as illustrated in the figures, or even by meshing on other variants not illustrated.
In the variant illustrated by the figures, at least one regulator trigger 210 includes such a finger 211, which is arranged to pivot coaxially with a regulator management cam 215.
This regulator management cam 215 is coaxial with a trigger plate 212, secured to a finger 211. This trigger plate 212 and the regulator management cam 215 are pivotally movable in a limited manner by one relative to the other, with a relative amplitude which is limited by the travel of a first pin 214, which comprises the trigger plate 212, in a first lumen 216 which comprises the regulator management cam 215, as illustrated by the figures, or vice versa in another embodiment not illustrated. This has the effect of authorizing
CH 714 362 A2 the return of the timer lever 201 to its clutch position before the locking of an axial pinion 225 which comprises the regulating mechanism 222 by a locking finger 220, which comprises the regulator stop jumper 218 , the finger 211 being either secured in pivoting of the trigger plate 212, or else arranged to be driven by another finger 211 corresponding to another control part 226 and which is pivotally secured in the trigger plate 212.
More particularly, the regulator stop jumper 218 comprises a feeler 219, which is held in abutment on a cam track that comprises the regulator management cam 215, by a first spring 230. This cam track comprises at its distal periphery a cylindrical sector 217 corresponding to the free position of the regulator 222, and, set back from the cylindrical sector, a lateral edge 2170 corresponding to the locked position of the regulator 222 which is then held by the return torque of the first spring 230 .
In a particular variant, corresponding in particular to the case illustrated by the figures, the striking mechanism 100 comprises several control parts 226, operating in cascade, one of which is the last to be operated by the others, and the finger 211 is unique, pivotally secured to the trigger plate 212, and arranged to cooperate with the last control part 226. In the particular case of the figures, this last control part 226 is a minute part, conventionally coupled to a quarter piece, not shown so as not to overload the figures, the striking mechanism 100 comprising in particular still an hour piece; the single finger 211, pivotally secured to the trigger plate 212, is then arranged to cooperate with the minute piece.
Each reference mobile 1 is usually a snail, on which the corresponding control part 226 will seek information during a switchover. It is understood that, the snails being eccentric, and any action on the timer causing the snails to move, disengaging the timer is necessary during the execution of any ringing. In another variant not shown, the striking mechanism 100 comprises several control parts 226, each arranged to cooperate with a separate finger 211. Each control part 226 thus corresponds to a particular finger 211 of a regulator trigger 210, which is either specific to the control part 226 considered, or else common to all of the control parts 226. More particularly, the different fingers 211 have a limited angular amplitude with respect to each other, and a single finger 211 is pivotally attached to the trigger plate 212.
In another variant not shown, the regulator trigger 210 is common to all of the control parts 226, and carries all the fingers 211 specific to each of the control parts 226.
The regulator trigger 210, by its finger 211 and its trigger plate 212, is arranged to, through an articulated connection, isolate the timer lever 201 in the declutching position or put it in the position d 'clutch. This articulated link comprises for at least one regulator trigger 210, in particular for each regulator trigger 210, at least one timer release lever 205. This timer release lever 205 is articulated by a groove 209 which it comprises on a second pin 213 that includes this regulator trigger 210, or vice versa, and this timer disengaging lever 205 is subjected to the return torque of a second spring 231, and is arranged to directly or indirectly control the rocking of the lever timer 201 between its clutch position and its disengage position or vice versa, depending on the angular position of the regulator release 210.
Advantageously, the timer disengaging lever 205 is articulated with an intermediate timer disengaging lever 203, which is articulated with the timer lever 201, and comprises a pin 2030 sliding in a second oblong slot 202 which comprises the lever of timer 201. The stop position 202B furthest from the time setting means 200 corresponds to the released position of the regulating mechanism 222, and the stop position 202A closest to the time setting means 200 corresponds in the locked position of the regulating mechanism 222. The pivot point of the intermediate timer disengaging lever 203 is located between the pin 2030 and the joint with the timer disengaging lever 205. The timer lever 201 has two references which are substantially aligned on its pivot axis, the most distant of which is arranged to mesh with the time setting means 200, constit on the variant of FIGS by a sliding pinion, and the closer engages with the dial train. The second oblong opening 202 has at its two ends substantially circular arcs, substantially oriented, in a middle position of the small angular travel of the timer lever 201, on the pivot axis of the intermediate timer clutch lever lever 203, these arcs are joined by a substantially linear section, the second oblong light 202 thus has an S shape which forces the timer rocker 201 to pivot during the movements of the pin 2030. This S shape allows the actions to be sequenced: unlocking the regulator then disengaging the timer, and especially re-engaging the timer before the regulator is locked. Disengaging the timer requires bringing pin 2030 to the bottom of oblong slot 202.
In a particular variant illustrated in the figures and in particular in FIG. 21, the articulated link between the timer release lever 205 and the intermediate timer release lever 203 includes an eccentric 206 for adjusting the duration between the engagement of the timer lever 201 with the setting means hour 200 on the one hand, and the locking of the regulating mechanism 222 on the other hand.
CH 714 362 A2 [0035] Figs. 9 and 10 show the regulator locked. The finger 211 of the regulator trigger 210 is stopped on the edge 228 of the minute piece 226. As visible in FIG. 17, the probe 219 of the regulator stop jumper 218 is on the side of the regulator management cam 215, at the edge 2170, and is therefore in its position closest to the axis common to the cam regulator management 215 and regulator trigger 210. The first spring 230 carries on the pin 221 of the regulator stop jumper 218, and pushes the control finger 220 at the bottom of the teeth of the regulator pinion 225, to immobilize in rotate regulator 222, as shown in fig. 15. As shown in fig. 17, the lower pin 214 of the regulator trigger 210 is in the abutment position in the first oblong lumen 216 which comprises the regulator management cam 215, against a first end which, on the variant illustrated by the figures, is on the opposite side to the minute piece 226. The upper pin 213 cooperates with the groove 209 of the hook 208 of the timer release lever 205, in the position of this upper pin 213 furthest from the second spring 231, which is supported on the pin 2050, and tends to move the articulation with the intermediate timer release lever 203 away from the minute piece 226, an articulation which, in the position of these figs. 9 and 10, is as close as possible to this minute piece 226. This articulation then does not oppose the pivoting of the intermediate timer release lever 203, in the illustrated position where the pin 2030 thereof can occupy the upper end of the light 202 of the timer lever 201, which can thus occupy the position shown, where one of its pinions meshes with the time setting means 200, which authorizes the operation of the setting time. Fig. 16 shows the interaction between a pin 2030 carried by the intermediate timer release lever 203 and a first so-called upper end 202A of an oblong lumen 202 that the timer lever 201 comprises, this piece 2030 not being in abutment in the background of this light 202.
Figs. 11 and 12 show the released regulator when a ringing cycle is started. The finger 211 of the regulator trigger 210 is not in contact with the edge 228 of the minute piece 226, but is free in the groove 227 thereof. As seen in fig. 20, the probe 219 of the regulator stop jumper 218 is on the cylindrical part 217 of the regulator management cam 215, and is therefore in its position furthest from the axis common to the regulator management cam 215 and to the regulator trigger 210, rendering ineffective the return torque of the first spring 230, which cannot push the control finger 220 to the bottom of the toothing of the regulator pinion 225, and cannot oppose the rotation of the regulator 222, as shown in fig. 18. Fig. 20 shows the lifting of the probe thanks to the cam: the lower pin 214 of the regulator release 210 leaves its stop position in FIG. 17, this lower pin 214 is no longer in abutment in the first oblong slot 216, it does not cause anything, and is able to travel, during the play of the ring, an angular stroke which will allow to re-engage the timer. The upper pin 213 cooperates with the groove 209 of the hook 208 of the timer release lever 205, this time in the position of this upper pin 213 closest to the second spring 231, and the articulation with the intermediate release lever of timer 203, is at the furthest from the minute piece 226. This joint forces the intermediate timer release lever 203 to pivot, in the position illustrated in FIG. 19 where the pin 2030 is closest to the minute piece 226, and abuts on the lower end 202B of the light 202 of the timer lever 201, which is then released from the time setting means 200 , in particular a sliding pinion, which prohibits the operation of setting the time.
Figs. 13 and 14 show the mechanism just before the regulator was locked, at the end of a ringing cycle. The return of the minute piece 226 re-hooks the finger 211, and shifts the lower pin 214 of the regulator trigger 210, which after its circulation in the first oblong light 216, abuts on a second end which, on the variant illustrated by figures, is on the side of the minutes piece. The probe 219 of the regulator stop jumper 218 arrives at an unstable equilibrium point on the edge of the cam 215, between the cylindrical part 217 and the edge 2170, just before the sudden tilting to return to the position of the fig. 9 and 10. In these last moments, the timer is re-engaged, then the regulator is relocked. The timer is well repositioned before the regulator stops, in fact otherwise the user can no longer set the time; this action is set exactly thanks to the eccentric 206 which determines the timing of end of ringing, and guarantees the re-engagement of the timer before the regulator stops.
The manual adjustment of the eccentric 206 makes it possible to adjust these two moments very finely, more easily than an adjustment of the beak of the finger 211, the position of which, in relation to that of the minute piece 226, determines actually the start and end of the trigger.
The invention ensures the preservation of the mechanisms by avoiding any interference or collision between the components, with great ease of use, requiring few precautions on the part of the user not always aware of the maneuvers to be avoided. . The invention also allows fine adjustment, by the eccentric mechanism, of the time delay between the locking of the regulator and the engagement of the timer.
Thus, the timer is well repositioned before the regulator stops, during the execution of a ring.
The operation of the invention is completely automated by movement.
CH 714 362 A2
权利要求:
Claims (11)
[1]
claims
1. Watch (1000) with striking mechanism (100) with regulator, comprising a time-setting control mechanism with time-setting means (200) arranged to drive, in its clutch position, a timer rocker (201) capable of occupying a clutch position and a disengage position, a movement (2000) comprising an output (3) for triggering the ringing on passing through the movement and arranged to drive at least one mobile of reference (1), and said striking mechanism (100) comprising at least one control part (226) arranged to be set in motion by said output (3) or by a command from a user, and to read information from position on said at least one reference mobile (1), said striking mechanism (100) further comprising a regulating mechanism (222) arranged to regulate the rotation speed of at least one striking actuator to a substantially constant value, characterized in that said striking mechanism (100) comprises, for at least one said control part (226), a regulator trigger (210) which is arranged, for, according to the kinematics of this control part (226), to operate a regulator stop jumper (218) capable of blocking or releasing the rotation of said regulator mechanism (222), and, through an articulated link, isolating said timer rocker (201) in said declutching position or putting it in said clutch position.
[2]
2. Watch (1000) according to claim 1, characterized in that at least one said control part (226), with which is associated a said regulator release (210), comprises a drive means (227) arranged to cooperate with a finger (211) that includes this regulator trigger (210) associated with this control part when said regulator (222) is released, said drive means (227) comprising an edge (228) arranged to lift said finger (211) when said regulator (222) is locked, and for pivoting said finger (211) during the execution of a buzzer or alarm.
[3]
3. Watch (1000) according to claim 2, characterized in that at least one said regulator trigger (210) comprises a said finger (211) arranged to pivot coaxially to a regulator management cam (215), coaxially to a trigger plate (212) which is pivotally movable relative to said regulator management cam (215) with a relative amplitude limited by the travel of a first pin (214), which comprises said trigger plate (212), in a first light (216) that comprises said regulator management cam (215), or vice versa, to authorize the return of said timer rocker (201) in its said clutch position before the locking of a pinion that comprises said regulator mechanism (222) by a locking finger (220) which comprises said regulator stop jumper (218), said finger (211) being either pivotally secured to said trigger plate (212), or else arranged for be driven by another said finger (211) corresponding to another control part (226) and which is pivotally integral with said trigger plate (212).
[4]
4. Watch (1000) according to claim 3, characterized in that said regulator stop jumper (218) comprises a feeler (219) which is held in abutment on a cam track which comprises said regulator management cam ( 215), by a first spring (230), said cam track comprising at its distal periphery a cylindrical sector (217) corresponding to the free position of said regulator (222), and, set back from said cylindrical sector (217), a song lateral (2170) corresponding to the locked position of said regulator (222) which is then held by the return torque of said first spring (230).
[5]
5. Watch (1000) according to claim 3 or 4, characterized in that said striking mechanism (100) comprises several said control parts (226), operating in cascade, and one of which is the last to be operated by the others, and in that said finger (211) is single, pivotally integral with said trigger plate (212), and arranged to cooperate with said last said control parts (226).
[6]
6. Watch (1000) according to claim 5, characterized in that said striking mechanism (100) comprises, among said control parts (226), said last said control parts (226) which is a minute piece driven by a quarter piece, and in that said single finger (211), pivotally secured to said trigger plate (212), is arranged to cooperate with said minute piece.
[7]
7. Watch (1000) according to one of claims 1 to 6, characterized in that said articulated link comprises, for each said regulator trigger (210), at least one timer release lever (205) articulated by a groove (209) which it comprises on a second pin (213) which comprises this regulator trigger (210), or vice versa, and which is subjected to the return torque of a second spring (231), and which is arranged to control directly or indirectly the tilting of said timer rocker (201) between its clutch position and its disengagement position or vice versa, depending on the angular position of said regulator release (210).
[8]
8. Watch (1000) according to claim 7, characterized in that said timer disengaging lever (205) is articulated with an intermediate timer disengaging lever (203) which is articulated with said timer lever (201), and comprises a pin (2030) sliding in a second oblong slot (202) which comprises said timer rocker (201), a first stop position of said (200) corresponding to the released position of said regulating mechanism (222), and the second one abutment position of said (200) corresponding to the locked position of said regulating mechanism (222).
CH 714 362 A2
[9]
9. Watch (1000) according to claim 8, characterized in that the articulated connection between said timer disengaging lever (205) and said intermediate timer disengaging lever (203) comprises an eccentric (206) for adjusting the duration between the instant of the engagement of said timer lever (201) with said time setting means (200) on the one hand, and the instant of locking of said regulating mechanism (222) on the other hand go.
[10]
10. Watch (1000) according to claim 2 or a claim which depends on it, characterized in that said striking mechanism (100) comprises several said control parts (226), each arranged to cooperate with a separate said finger (211) , characterized in that, to each said control part (226) corresponds a finger (211) specific to a said regulator release (210), which is, or else specific to said control part (226) considered, or good common to all of said control parts (226).
[11]
11. Watch (1000) according to one of claims 1 to 10, characterized in that at least one said reference mobile (1) is a snail.
CH 714 362 A2 226 '225- 7 ^ z23
CH 714 362 A2 ο
CH 714 362 A2
CH 714 362 A2
CH 714 362 A2
2000 1,100
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同族专利:
公开号 | 公开日
CN109828446A|2019-05-31|
EP3489765A1|2019-05-29|
CN109828446B|2020-11-24|
EP3489765B1|2021-03-10|
JP6666978B2|2020-03-18|
US20190155220A1|2019-05-23|
JP2019095432A|2019-06-20|
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EP3070543A1|2015-03-18|2016-09-21|Glashütter Uhrenbetrieb GmbH|Repetition striking mechanism with integrated trigger lock|EP3502801B1|2017-12-19|2021-02-17|Omega SA|Chronograph repetition mechanism with safety|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
EP17203201.3A|EP3489765B1|2017-11-23|2017-11-23|Watch with chiming mechanism with regulator and time-setting protection|
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