EP2362277A1 - Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr - Google Patents

Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr Download PDF

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Publication number
EP2362277A1
EP2362277A1 EP10154623A EP10154623A EP2362277A1 EP 2362277 A1 EP2362277 A1 EP 2362277A1 EP 10154623 A EP10154623 A EP 10154623A EP 10154623 A EP10154623 A EP 10154623A EP 2362277 A1 EP2362277 A1 EP 2362277A1
Authority
EP
European Patent Office
Prior art keywords
time zone
memory
wheel
hammer
wheels
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP10154623A
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English (en)
French (fr)
Other versions
EP2362277B1 (de
Inventor
Alain Zaugg
Olivier Karlen
Christophe Bifrare
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Montres Breguet SA
Original Assignee
Montres Breguet SA
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Montres Breguet SA filed Critical Montres Breguet SA
Priority to EP10154623A priority Critical patent/EP2362277B1/de
Priority to KR1020110015305A priority patent/KR20110097656A/ko
Priority to US13/035,057 priority patent/US8416645B2/en
Priority to JP2011040379A priority patent/JP5300887B2/ja
Priority to CN2011100460124A priority patent/CN102169322B/zh
Publication of EP2362277A1 publication Critical patent/EP2362277A1/de
Priority to HK12101803.1A priority patent/HK1162074A1/xx
Application granted granted Critical
Publication of EP2362277B1 publication Critical patent/EP2362277B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • G04B19/22Arrangements for indicating different local apparent times; Universal time pieces
    • G04B19/223Arrangements for indicating different local apparent times; Universal time pieces with rotary disc, rotary bezel, or rotary dial
    • 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
    • G04B19/28Adjustable guide marks or pointers for indicating determined points of time

Definitions

  • the present invention relates to a time zone mechanism, arranged for displaying, on demand, the time in a particular time zone, on the main switch of a timepiece comprising a movement with a finishing gear .
  • the invention also relates to a timepiece comprising such a mechanism.
  • the invention relates to the field of watchmaking, including watchmaking mechanisms integrable in watches, and, more precisely, the particular field of display on timepieces.
  • the invention seeks to solve the problem of the display on demand, on the main switch, of dual time zones.
  • the main problem of the on-demand display is mainly the problem related to the instantaneousness of the desired result, which is further complicated when one wants, as in this case, to display on the central switch of a timepiece, including a watch. It is necessary, in fact, to instantly have a stored information in mechanical form. Of course, it is necessary to offer the user the ability to easily change the settings stored in memory.
  • Mechanical memories are known in the form of punched or machined cards or discs, for example having teeth alternating with beaches without toothing, or with grooves or cleats of different lengths. These devices are of perfect reliability, but realized once and for all. The only way to modify the adjustment data contained in these mechanical memories is to exchange them completely and to replace them with another similar medium, including other adjustment data.
  • the invention seeks to solve this problem of achieving a programmable mechanical memory, which can be reprogrammable by the user, and in particular by the end user of a watch movement, such as the wearer of a watch. In short, it is easy to memorize settings made by the user, very reliably and accurately.
  • the user actuates, at each stroke played, an incrementing push-button causing the tilting of a lever, which triggers the pivoting of an incremental mobile, which on the one hand causes a pivoting star held by a jumper and solidary of a heart of reference of origin and a snail cam degressive ray, and on the other hand the star of the totalizer.
  • a revolving rake lever is biased towards the track of the snail cam, whose decay allows a limited rotation of the rake, which drives that of the pinion gear of the score disc relative to the current hole. Repeated presses allow to change the score, the user also has a pusher for a reverse movement of decrementation.
  • the traction of a control member allows the user to control the passage to the next hole of its path, by the movement of a special cam that allows a release action of the rake lever of the snail cam, and the rotation of the movable stage showing the next hole.
  • the resetting of the scores is done by the action on a lever actuating a ring gear that realigns all the hearts of all the mobiles in an original position. As long as the user has not done this reset, he can recall each of the holes to view his score, by an action on the controller, since the position of each mobile is stored by a jumper. Naturally, these jumpers are indispensable, at the rate of one per mobile, and the whole mechanism requires a certain volume.
  • the storage performed by such a device is effective, and offers an easy return to the stored information, without however making it immediately available, for example on a single push button.
  • This device is, moreover, not specifically designed for a display on the main switch, with which it does not interfere.
  • the jumper mechanism behaves like a rigid coupling.
  • An auxiliary wheel is integral with the correction star, and drives a date disc via an intermediate mobile.
  • Each action on a pusher causes a jump of one hour to the hour hand, the date disc is always wedged or in phase with the needle of the hours.
  • a twenty-four hour disc allows the display of another time zone, different from the switch which displays the local time, or at least one reference hour chosen by the user by action on the push buttons. This document thus exposes a mode of rapid change of position of the hour hand in steps of one hour. However, there is no possibility of memorizing another time zone, or the possibility of jumping the display for several hours at a time.
  • said support means are constituted by a hammer arranged to pivot between at least two positions, one resting on said support surface of said heart of one of said memory wheels, and the other bearing on said bearing surface of said heart of the other of said memory wheels.
  • the mechanism comprises a pusher arranged to actuate a rocker under a pressure of the user, rocker which is permanently recalled to a starting rest position by a rocker spring, and which carries a pivoting shuttle, which is returned to an original position under the action of a compensating spring and which is arranged to cooperate with said hammer by relying on one or the other of two pins that includes said hammer for rotate the latter to one of said memory wheels, said mechanism comprising a jumper arranged to lock said hammer in its position after pivoting to a new action on said push which will trigger the cooperation of said shuttle with the other of said pins to pivot said hammer toward the other of said memory wheels.
  • the invention also relates to a timepiece comprising such a mechanism.
  • the invention brings many advantages: it makes it possible to realize a spindle watch with great simplicity and optimum reading, as much for reading the reference time or current time instead of of use, only for the reading of the time zone desired by the user.
  • the dial of the timepiece retains its simplicity, although the function is technically complicated. This display function by the main switch is original, and provides undeniable approval to the user.
  • the solution proposed by the invention is, again, applicable to the display of other temporal, astronomical, or other quantities, and the invention is remarkable precisely for its versatility and the range of solutions it offers to the skilled person with similar problems.
  • the invention relates to the field of display on timepieces.
  • the present invention relates to a clock mechanism which is first arranged to store settings chosen by the user.
  • the invention is described in a preferred, but not limiting, application of a time zone mechanism, which is arranged to display, on demand and instantaneously, the time in a particular time zone. , on the main switch of a timepiece.
  • This mechanism will be described in a preferred embodiment, with indication of the 24 time zones, with double spindle on the main switch, indication of the date and display 24 hours day-night.
  • such a mechanism is based on the use of at least one memory wheel, which constitutes a physical support for the mechanical storage of a particular setting, and which is programmable and reprogrammable by the user, without no disassembly.
  • Such a memory wheel 30 for a clockwork mechanism comprises a wheel 31 which comprises means for driving in rotation 36 about an axis of rotation 33.
  • this wheel 31 is toothed and has a toothing 32 constituting the latter.
  • this toothing 32 is external, but the invention is applicable in the same way if the toothing 32 is internal, or according to a bell, or other.
  • the driving means 36 may be constituted by a groove or the like for the support of a driving belt, or a chain, or the like, or by pins or the like, or by wheel a friction surface for driving the wheel.
  • the memory wheel 30 comprises a core 40, which is reversibly movable by pivoting between indexing positions that the wheel 31 comprises. figure 6 , where the wheel 31 is a toothed wheel, the core 40 is movable by pivoting relative thereto around the axis of rotation 33, between indexing positions 34 that comprises the toothed wheel 31.
  • the core 40 comprises indexing means, preferably an indexing finger 41, with which it can cooperate with these indexing positions 34, one at a time.
  • This indexing finger 41 in particular made in the form of a pin 42, as visible on the Figures 4 to 6 , is recalled radially by elastic return means 43, in particular by a spring 44, to the indexing positions 34.
  • the elastic return means 43 can work in compression, as in the example of the figure 6 , or in traction as on the figure 7 .
  • the core 40 comprises at least one bearing surface 45, which is arranged to cooperate with a complementary surface that comprises a mechanism incorporating the memory wheel 30.
  • this bearing surface 45 corresponds, in a section of the heart 40 perpendicular to the axis of rotation 43, the portion of the peripheral surface of the core 40 which is closest to this axis of rotation 43.
  • this bearing surface 45 is substantially flat and substantially perpendicular to a radial end of the axis of rotation 33.
  • the bearing surface 45 has a V-shaped female profile substantially symmetrical with respect to such a radial.
  • this bearing surface 45 can provide a driving function, when the opposing means are arranged to also perform the dual function of support and drive.
  • the remainder of the periphery 47 of the core 40 advantageously has an ovoid or cardioid cam profile, which is not necessarily symmetrical, as shown in FIG. figure 7 .
  • the indexing positions 34 consist of notches 35 distributed over a sector centered on the axis of rotation 33.
  • the notches 35 are 24 in number and equidistant.
  • the indexing positions 34 are distributed over a complete circumference.
  • the notches 35 are open towards the axis of rotation 33.
  • the notches 35 are open towards the periphery of the wheel 31.
  • the spring 44 forces the pin 42 towards the center 33, the two toothed wheels are secured and the core 40 can rotate when the pin 42 passes a notch 35.
  • it may be advantageous to make only external cuts, for a toothing 32, and for the indexing notches 35.
  • the wheel 31 is then advantageously stepped, or else in two parts one on the other.
  • the notches 35 are equidistant.
  • the notches 35 are made with slopes or shelves on either side of a hollow central portion forming the receptacle of the indexing finger 41.
  • the latter can slide or roll from one notch to another, under the effect of the application of a tangential force applied by the wheel 31, provided that the radial component of the reaction of the wall of the notch 35 to this force is greater and in the opposite direction to the centrifugal return force, or centripetal depending on the case, exerted by the elastic return means 43, in particular a spring 44.
  • this clock mechanism comprises support means 50 arranged to cooperate disengageably with the surface 45 support of each memory wheel 30 that includes this clock mechanism.
  • the limitation of the number of memory wheels is imposed by the space available in the case of the watch mechanism and by the desired functionalities.
  • the clock mechanism comprises at least two memory wheels 30 corresponding to two different states of the time display on the clock mechanism.
  • the figures 4 , 5 , and 8 at 16 illustrate the particular and preferred case of a two-wheeled memory mechanism. But it is understood that many other applications can be envisaged, without departing from the invention, especially with more than two memory wheels on the same level preferably consisting of an additional board relative to the movement of the room. watchmaker who incorporates it, or even with several additional boards each having several memory wheels, each additional board then being equipped with a separate pusher.
  • the user has full latitude to program each of the memory wheels 30, and to control, by a mechanical action on a pusher that provides the necessary energy, the passage of a stored state to another.
  • the invention relates to a time zone mechanism 100, which is arranged to display, on demand and instantaneously, the time in a particular time zone, on the main switch of a timepiece.
  • the latter comprises a movement, especially with a finishing gear, not shown in the figures.
  • This mechanism 100 makes it possible to store two hours of localities located in preferably different time zones, but not necessarily as shown in FIG. figure 11 but only one of the two time zones is displayed on the main switch.
  • the time that is displayed then corresponds to the time zone of the locality which is displayed or engraved on a city disc 60 which appears in a window 66, located at 6 o'clock in the example of the figure 1 .
  • a 24-hour disc 65 indicates whether the city in the selected time zone is in the day or at night.
  • the date is also indicated by a date disk 64 which appears in a window 67, located at 12 o'clock in the example of the figure 1 .
  • the standard time is the legal time for each country, determined by local law, and based on the theoretical division of the Earth's surface into 24 zones or spindles, of 15 degrees of longitude each, with certain deviations due borders or decisions of the authorities.
  • the user generally compares the standard time of the place where it is, to that of another place.
  • the mechanism 100 comprises, as visible on the figures 4 , 5 , and 8 at 16 , a memory mechanism, a display state change mechanism, and a differential mechanism.
  • the memory mechanism comprises two programmable and reprogrammable memory wheels, of the type as described above, the role of which will be specified below.
  • the display state change mechanism comprises bearing means 50 arranged to cooperate disengageably with a bearing surface 45 that includes the core 40 of each wheel of FIG. memory 30. Between two actions of the user, these support means 50 cooperate in engagement with the bearing surface 45 of one of the memory wheels 30, and are disengaged from the bearing surface 45 of the other two memory wheels 30.
  • the support means 50 of the watch mechanism cooperatively engage with the bearing surface 45 of the one of the memory wheels 30, and are disengaged from the bearing surface 45 of the other of the memory wheels 30.
  • the differential mechanism comprises a differential 12 with two inputs and an output.
  • This differential 12 is preferably located at the center of the movement of the timepiece in which is incorporated the time zone mechanism 100.
  • a first input is constituted by a timer mobile arranged to be driven by the basic movement of the room. watchmaking, in particular by the finishing gear of this one.
  • a second input is formed by a ring 12A that includes this differential 12.
  • the output consists of a gun, a roadway 18 or an axis carrying a 25 hour hand.
  • Each of the memory wheels 30 cooperates by its drive means 36, either directly or indirectly by at least one intermediate mobile 9, with the differential ring 12A. When the wheel 31 has a toothing 32, it meshes with the differential ring 12A or with an intermediate mobile 9 which meshes with the latter.
  • This rocker 1 is permanently recalled to a starting rest position by a rocker spring 6.
  • the rocker 1 carries a shuttle 2 pivoting about a shuttle pivot axis 2A, which is returned to a position of origin under the action of a compensating spring 3.
  • the shuttle 2 is arranged to cooperate by relying on one or other of the two pins 4A or 4B integral with a hammer 4.
  • the bearing means 50 which act on the hearts of the memory wheels are constituted by this hammer 4, which is arranged to pivot about a pivot axis 4C between two positions, one in support on the bearing surface 45 of the core 40 of one of the memory wheels 30, and the other bearing on the bearing surface 45 of the core 40 of the other of the memory wheels 30.
  • this support of the shuttle 2 on one of the pins 4A, 4B, is by burying or the like.
  • the hammer 4 has bearing faces 4D and 4E to cooperate with the bearing surface 45 of each memory wheel.
  • these bearing faces 4D and 4E are planar.
  • the bearing faces 4D and 4E have a male V-shaped profile arranged to cooperate with the V-shaped female profile of each bearing surface 45.
  • the ends of the hammer 4 having the bearing faces 4D and 4E have an elasticity provided by a slot 4G optionally extended by a 4H light.
  • the change of position of the hammer 4 by pivoting is preferred for reasons of reliability and small size.
  • the first is called the "reference” memory wheel 11, and corresponds to the display of the time in a first time zone said displayed, for example corresponding to the current time instead of activity of the user, while the second is called the “spindle” memory wheel 8, and corresponds to the display of time in a second particular time zone memorized by the user.
  • Each of the two memory wheels 8 and 11 can be set independently on a particular time zone, one being said reference reference spindle and corresponding to the reference memory wheel 11, the other being said memorized spindle and corresponding to the spindle memory wheel 8.
  • one of the two memory wheels 11, 8 meshes, directly or indirectly with the mobile 9, with the ring 12A of the differential 12.
  • the intermediate mobile of the time zone 9 meshes with the differential 12 which will change the needle of the 25 hours on the selected time zone, depending on the case "reference” or "time zone".
  • Figures 11 to 17 illustrate the variety of positions that can occupy, on the one hand the hearts compared to the memory wheels that carry them, and on the other hand with respect to each other.
  • the figure 11 illustrates two hearts set in the same time zone of London.
  • the figure 12 illustrates the heart of spindle 7 set in the time zone of Midway, and the heart of reference 10 on that of Wellington, the display being made on the time zone of Midway, and the figure 13 represents, with the same heartbeat, the display on the Wellington time zone.
  • the Figures 14 and 15 illustrate the inverse wedges: the figure 14 the spindle core 7 set to the Wellington time zone and the reference heart 10 to the Midway heart, the display being made to the Wellington time zone, and the figure 15 with the same rigging of hearts as the figure 14 , but the display is done on the Midway time zone.
  • the time zone mechanism 100 performs, thanks to the energy transmitted by the thrust of the user, the disengagement of the memory wheel which was engaged , and the clutch of the memory wheel which was not engaged, so as to transmit, by the differential 12, to the output gun 18 the position corresponding to the display of the time in the desired time zone.
  • a simple pressure on the pusher therefore allows to go from the displayed zone to the second time zone memorized, and vice versa, by a second pressure which again displays the starting time zone.
  • the two memory wheels 11 and 8 are preferably driven together by an intermediate mobile of time zone 9. They rotate together until the bearing surface 45 of the core 40 of one of the memory wheels 30 , comes in stable cooperation with the support means 50, in this case one of the bearing faces 4D or 4E that includes the hammer 4. In the position shown on the figures 4 and 5 it is the spindle core 7 of the spindle memory wheel 8 which bears on the bearing surface 4D of the hammer 4. It will be understood that, previously to the action on the pusher 28, it is 4E other bearing surface of the hammer 4 which was supported on the reference core 10 of the reference memory wheel 11. There is thus, between the positions blocked by the hammer 4 of these two memory wheels, a phase shift angle which corresponds to the angle which then pivots the hour hand 25.
  • the mechanism 100 further comprises a jumper 5 arranged to lock the hammer 4, after its pivoting, in a chosen position, corresponding to the reference time or the memorized time zone, until a new action on the pusher 28 and thus on the flip-flop 1, which will trigger the cooperation of the shuttle 2 with the other hammer pin, 4A or 4B, that with which, 4B or 4A, with which it was previously engaged., to pivot the hammer 4 towards the other of the memory wheels 30.
  • a jumper 5 arranged to lock the hammer 4, after its pivoting, in a chosen position, corresponding to the reference time or the memorized time zone, until a new action on the pusher 28 and thus on the flip-flop 1, which will trigger the cooperation of the shuttle 2 with the other hammer pin, 4A or 4B, that with which, 4B or 4A, with which it was previously engaged., to pivot the hammer 4 towards the other of the memory wheels 30.
  • each of the memory wheels 11 and 8 has an external toothing 32 for meshing with the intermediate time zone mobile 9, and an inner toothed sector, respectively 21 for the wheel 11, and 24 for the wheel 8, constituting the indexing positions 34.
  • this internal toothing occupies a circular sector, and has 24 internal notches 35.
  • Each of the memory wheels 11 and 8 supports a core, respectively 10 and 7.
  • This core is pivotally mounted on the axis of rotation and pivoting of the memory wheel with which it is associated. It comprises an inner chamber enclosing a spring, respectively 44, 23, constituting the elastic return means 43, and on which is mounted a pin, respectively 42, 22 constituting the indexing means 41, and which is movable radially relative to to the axis of rotation and pivoting concerned, and which is arranged to cooperate with one of the notches of the internal toothing, respectively 21, 24.
  • the pin 42, 22 has a dual function: on the one hand the displaying a time zone corresponding to one of the 24 notches of the wheel 11, 8 concerned, and secondly the integral drive of the heart 10, 7 and the associated memory wheel 11, 8.
  • the rocker system is designed to alternately block the cores 10 and 7.
  • the opposite operation of the time display is similar: the action of the user on the pusher 28, echoed by the rocker 1, the shuttle 2 and the hammer 4, allows the hammer 4 to pivot against the heart of the other memory wheel, and thus also rotate the latter.
  • the entire system is energized to prevent play in the gears.
  • the time zone mechanism 100 is mounted on an additional board that is superimposed on the one carrying the movement.
  • the mechanism 100 may comprise more than two memory wheels 30, and in particular that it may comprise several additional boards, each corresponding to a plurality of memory wheels, preferably two per board. Each board then preferably comprises an independent pusher.
  • the correction of the selected spindle is done by the rod 13.
  • the various referrals 14 composed of 14A and 14B, and 15, 16, 17, as visible on the figures 4 and 5
  • the two memory wheels rotate ("reference” or "spindle”
  • the wheels of the memories 8 and 11 allow the memorization of the two different zones thanks to their 24 notches 35 interiors.
  • the hammer 4 actuated by the pusher 28, moves the heart and rotate one of the two memory wheels.
  • the toggle system allows you to alternately block a heart and rotate the second.
  • the core which is blocked by the hammer 4 increments one notch in one direction or the other, which results in the incrementation or decrementation of one hour of the hour hand 25 corresponding to one time.
  • the heart that is not blocked can rotate freely by driving the associated memory wheel.
  • the pin 42 mounted on the spring 44 allows indexing 24 positions of different time zones using hearts.
  • the time zone mechanism 100 comprises means for displaying cities linked to each time zone, in particular in the form of a disk or ring 60.
  • the disk of the cities 60 is driven, during the change of spindle, from the memory wheels, by a gear train 61 comprising for example two wheels 62 and 63, the wheel 62 meshing with a memory wheel 8 and the wheel 63, the latter meshing with a toothed sector of the disc cities 60.
  • the device comprises a safety clutch when the user comes to a stop.
  • the hour hand 25 is 1 / 12th of a turn
  • the city disc is 1 / 24th of a turn
  • the ratio of reduction between the two is 2.
  • the time zone mechanism 100 comprises means for displaying the state of the display, as the case said reference start state, or the state obtained linked to a particular time zone memorized.
  • This display means is advantageously constituted by the combination of a reference / spindle display window 26, through the opening of which is visible a portion of a reference / spindle display medium 27, such as a disc, ring, or similar, for the display of mentions such as "reference” and "spindle", only one of these mentions is readable both through the window 26, the passage from one mention to the other being ensured by the pivoting of the hammer 4.
  • a disk is, preferably, following the memory wheels.
  • a surface of the hammer 4 facing the user may also constitute such a display medium 27.
  • the time zone mechanism 100 includes display means 64 of the date linked to the particular time zone memorized by the user.
  • these display means 64 consist of a date disc, which is driven by a wheel gear engaged with the differential 12.
  • the time zone mechanism 100 includes a day-night display 65 relative to the particular time zone memorized by the user.
  • the information for this day-night display is taken on the gear train which connects the differential 12 to the date disc 64.
  • the time zone mechanism 100 includes an indication to the user of the setting direction to be applied. Indeed, in the case of a toothed sector, graduated and limited for example between + 12h and -11 h, it is necessary to know in which direction to adjust.
  • the invention also relates to a timepiece comprising such a mechanism 100.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromechanical Clocks (AREA)
  • Measurement Of Unknown Time Intervals (AREA)
EP10154623A 2010-02-25 2010-02-25 Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr Active EP2362277B1 (de)

Priority Applications (6)

Application Number Priority Date Filing Date Title
EP10154623A EP2362277B1 (de) 2010-02-25 2010-02-25 Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr
KR1020110015305A KR20110097656A (ko) 2010-02-25 2011-02-22 사용자의 요구에 따라 시계의 주요 바늘들위에 시간대를 표시하기 위한 장치
US13/035,057 US8416645B2 (en) 2010-02-25 2011-02-25 Time zone on demand on the main hands of a timepiece
JP2011040379A JP5300887B2 (ja) 2010-02-25 2011-02-25 時計の主針によるオンデマンドの時間帯表示
CN2011100460124A CN102169322B (zh) 2010-02-25 2011-02-25 在钟表的主指针上按照需要显示时区
HK12101803.1A HK1162074A1 (en) 2010-02-25 2012-02-23 Time zone on demand on the main hands of a timepiece

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP10154623A EP2362277B1 (de) 2010-02-25 2010-02-25 Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr

Publications (2)

Publication Number Publication Date
EP2362277A1 true EP2362277A1 (de) 2011-08-31
EP2362277B1 EP2362277B1 (de) 2012-10-31

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EP10154623A Active EP2362277B1 (de) 2010-02-25 2010-02-25 Zeitzone auf Wunsch auf den Hauptzeigern einer Uhr

Country Status (6)

Country Link
US (1) US8416645B2 (de)
EP (1) EP2362277B1 (de)
JP (1) JP5300887B2 (de)
KR (1) KR20110097656A (de)
CN (1) CN102169322B (de)
HK (1) HK1162074A1 (de)

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WO2013030268A1 (fr) 2011-09-01 2013-03-07 Rolex S.A. Piece d'horlogerie capable d'afficher deux fuseaux horaires
CH711228A1 (fr) * 2015-06-19 2016-12-30 Vaucher Mft Fleurier S A Dispositif d'affichage pour pièce d'horlogerie.
EP3599520A1 (de) 2018-07-26 2020-01-29 ETA SA Manufacture Horlogère Suisse Verfahren zum wechseln des stundenanzeigemodus einer elektronischen armbanduhr zur analoganzeige, und entsprechende armbanduhr
CH716686A1 (de) * 2019-10-09 2021-04-15 Richemont Int Sa Nocke mit verformbarem Umfangsnockenbahnabschnitt sowie zugehöriger Uhrmechanismus, insbesondere Rattrapantenmechanismus und Uhr.
EP3839658A1 (de) * 2019-12-20 2021-06-23 Blancpain SA Anzeigeänderungsmechanismus
CN113189855A (zh) * 2020-01-29 2021-07-30 精工时计株式会社 轮系机构、机芯和钟表

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US20130322218A1 (en) * 2012-05-29 2013-12-05 Wolfgang Burkhardt World Time Timepiece
EP2977832B1 (de) * 2014-07-23 2017-08-30 The Swatch Group Research and Development Ltd. Uhr, die den sonnenauf oder den untergang an jedem punkt der erde anzeigen kann
WO2016057062A1 (en) 2014-10-10 2016-04-14 Simplify and Go, LLC World watch
EP3101486B1 (de) * 2015-06-02 2018-10-03 ETA SA Manufacture Horlogère Suisse Herz eines uhrwerks oder eines chronographen
CN107015467B (zh) * 2017-05-23 2019-07-02 天王电子(深圳)有限公司 一种具有生肖显示的飞返结构手表
US10216146B2 (en) * 2017-07-18 2019-02-26 Patek Philippe Sa Geneve Indicator actuating organ for a timepiece
JP7041836B2 (ja) * 2017-09-27 2022-03-25 カシオ計算機株式会社 輪列装置および時計
EP3540524B1 (de) * 2018-03-13 2022-02-16 Montres Breguet S.A. Springender und regulierter uhranzeigemechanismus
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EP3605243A1 (de) * 2018-07-31 2020-02-05 Montres Breguet S.A. Uhr-anzeigemechanismus mit variabler geometrie und elastischem zeiger
CN110260209A (zh) * 2019-06-21 2019-09-20 蒋恩熙 一种防辐射护脑护眼学习灯
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EP3985446B1 (de) * 2020-10-14 2023-05-24 The Swatch Group Research and Development Ltd Vorrichtung zur positionsbestimmung einer uhranzeige

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CN102169322B (zh) 2013-03-27
KR20110097656A (ko) 2011-08-31
US20110205852A1 (en) 2011-08-25
EP2362277B1 (de) 2012-10-31
JP5300887B2 (ja) 2013-09-25
CN102169322A (zh) 2011-08-31

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