WO1999034262A1 - Montre dotee d'un dispositif de correction d'affichage - Google Patents
Montre dotee d'un dispositif de correction d'affichage Download PDFInfo
- Publication number
- WO1999034262A1 WO1999034262A1 PCT/JP1998/005940 JP9805940W WO9934262A1 WO 1999034262 A1 WO1999034262 A1 WO 1999034262A1 JP 9805940 W JP9805940 W JP 9805940W WO 9934262 A1 WO9934262 A1 WO 9934262A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- wheel
- rotation
- winding
- correction
- display
- Prior art date
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Classifications
-
- G—PHYSICS
- G04—HOROLOGY
- G04B—MECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
- G04B27/00—Mechanical devices for setting the time indicating means
- G04B27/02—Mechanical devices for setting the time indicating means by making use of the winding means
- G04B27/06—Mechanical devices for setting the time indicating means by making use of the winding means with rocking bar
Definitions
- the present invention relates to a timepiece with a display correction device configured to be able to correct the display contents displayed by display members such as an hour hand, a minute hand, a date indicator, and an Akebono indicator by rotating a winding stem.
- a display correction device configured to be able to correct the display contents displayed by display members such as an hour hand, a minute hand, a date indicator, and an Akebono indicator by rotating a winding stem.
- the present invention relates to a timepiece correction device for correcting display contents by rotating a winding stem.
- a swinging lock provided on a main plate was used so that the watch could be swung to three positions by the action of a shim.
- a small iron wheel was provided rotatably without moving.
- the calendar correction lever was provided so that it could swing without swinging.
- the calendar correction wheel is rotatably provided on the calendar correction rocking lever and is disposed so as to be able to slip with a certain slip torque, when the winding stem is at the 0th stage, the swinging lock is the first in the axial direction of the winding stem.
- the stroller rotates, and the small wheel and the calendar correction wheel rotate based on the rotation of the stroller. In this state, no gear rotates based on the rotation of the calendar correction wheel.
- the rocking slewing rotates based on the rotation of the butt.
- the swinging lock is positioned at the second position in the axial direction of the winding stem.
- the ratchet wheel rotates, and the small iron wheel and the calendar correction wheel rotate based on the rotation of the ratchet wheel.
- the calendar correction swing lever moves to the first position. And rotate the date wheel based on the rotation of the calendar correction wheel to correct the date.
- the calendar correction swing lever swings in a second direction opposite to the first direction, and rotates the Akebono correction wheel based on the rotation of the force render correction wheel. Based on the rotation of the Akebono modified car, the day wheel is rotated to correct the day.
- the minute wheel rotates based on the rotation of the small iron wheel.
- the minute wheel and hour wheel rotate. Therefore, the display of the minute hand attached to the minute wheel and the hour hand attached to the hour wheel can be corrected based on the rotation of the winding stem.
- the thumbwheel has a first position corresponding to the 0th stage of the winding stem, a second position corresponding to the first stage of the winding stem, and a second position corresponding to the first stage of the winding stem. It is configured to move to three locations with a corresponding third location.
- a small iron wheel, a calendar correction swing lever and a Karen-Yu "correction car are mounted on the swinging lock.
- the clock with the display correction device has the following problems.
- the present invention provides a timepiece with a display correction device that can correct the display content by rotating a winding pin, and a first information display member for displaying first information. And a second information display member for displaying the second information.
- the first information display member is composed of, for example, a day display member for displaying the day, that is, a car, etc.
- the second information display member is composed of, for example, a time display member for displaying the time, that is, an hour hand and a minute hand.
- the timepiece with a display correcting device of the present invention has a rotation axis, and corrects the display content of the first information display member and corrects the display content of the second information display member.
- a pinion wheel having the same rotation axis as the rotation axis of the winding stem and being provided so as to rotate based on the rotation of the winding stem; and a first winding stem position in the rotation axis direction of the winding stem.
- a winding stem positioning means for positioning the second winding position in the rotation axis direction and a third winding position in the rotation axis direction; and When the winding stem is at the first winding stem position, the spur wheel is positioned at the first sprocket wheel position in the direction of the rotation axis, and the winding stem is positioned at the second winding stem position and the third winding shaft. To position the stroller in its true position in the second stroller position in its axis of rotation And a continuous wheel positioning means.
- the timepiece with a display correcting device of the present invention has a rotation center on the rotation axis of the winding stem, and when the winding stem is at the second winding position, swings in the first rotation direction, Swings in a second rotation direction different from the first rotation direction when the true is in the third position.
- a switching lever provided to correct the display content of the first information display member based on the rotation of the pinwheel when the winding stem is at the second winding position.
- Second correcting means is provided to correct the display content of the first information display member based on the rotation of the pinwheel when the winding stem is at the second winding position.
- the timepiece with the display correcting device of the present invention has a rotation center located at the same position as the rotation center of the switching lever, and when the winding stem is at the second winding stem position and the third winding stem position, It is preferable to have a small iron wheel provided to rotate based on the rotation of the ratchet wheel.
- the first correction means includes at least one correction transmission wheel provided to rotate based on the rotation of the small iron wheel, and rotation of the correction transmission wheel. It is preferable to include a modified vehicle provided to rotate based on the information displayed on the first information display member.
- the timepiece with a display correction device of the present invention includes a swing lever provided to swing based on the rotation of the correction transmission wheel when the winding stem is at the second winding position. It is preferable that the main wheel is rotatably mounted on the driving lever.
- the timepiece with the display correcting device of the present invention includes a moving lever positioning means for regulating the position of the swing lever in the rotation direction.
- the timepiece with a display correction device of the present invention is provided with a switching lever positioning means for regulating the position of the switching lever in the rotation direction.
- the position of the switching lever in the rotational direction can be reliably determined. Furthermore, in the timepiece with a display correction device of the present invention, it is preferable that the rotation of the switching lever is configured to be determined based on the operation of the winding true position determining means. With this configuration, the switching lever can be reliably rotated.
- the timepiece with a display correction device of the present invention is based on the operation of the winding stem positioning means for regulating the operation of the second information display member when the winding stem is at the third winding position. It is preferable to have a setting lever provided to operate.
- the setting lever can be reliably operated, and the second hand of the timepiece can be reliably stopped.
- the rotation of the switching lever is configured to be determined based on the operation of the winding stem positioning means. preferable.
- the switching lever can be reliably rotated.
- the timepiece with a display correction device of the present invention includes a third information display member for displaying third information, wherein when the winding stem is at the second winding position, the winding stem is in the first winding position.
- the correction wheel is configured to correct the first member information display member.
- the swing lever rotates in the first swing lever rotating direction different from the first winding stem rotating direction when the winding stem is at the winding straight position, the swing lever is different from the first swing lever rotating direction. It is preferable that the swing wheel is configured to rotate in the rotation direction so that the correction wheel corrects the third information display member.
- the third information display member is composed of, for example, an Akebono display member, that is, a day wheel. With this configuration, the three information display members can be reliably corrected.
- the second correction means includes one or more intermediate minute wheels provided so as to rotate based on the rotation of the small iron wheel, and It is preferable to have a minute wheel provided so as to rotate based on the rotation of the minute wheel when it is at the winding true position.
- the timepiece with a display correcting device of the present invention is constituted by a mechanical timepiece having a balance with hairspring.
- the setting lever is configured to set the balance with hair when the winding stem is in the third winding position.
- the timepiece with a display correcting device of the present invention has a front train wheel for displaying seconds, and when the winding stem is at the third winding stem position, the train wheel setting lever is set to one of the front train wheels. It is preferable that the gears are configured to regulate one gear.
- the train wheel train can be reliably regulated.
- the present invention provides a timepiece with a display correction device capable of correcting display contents based on rotation of a winding stem, a time display member for displaying time, a day display member for displaying day, and a day of the week. And a winding stem for correcting display contents of the time display member, the day indicating member and the day of the week display member, and a rotation axis same as the rotation axis of the winding stem. And a thumbwheel that rotates based on true rotation.
- a switching device positions the winding stem at a first winding position in the direction of the rotation axis, a second winding position in the direction of the rotation axis, and a third winding position in the direction of the rotation axis. Based on the movement of the winding stem in the rotation axis direction, when the winding stem is at the first winding stem position, the pinwheel is positioned at the first pinion wheel position in the rotation axis direction, and It is provided for positioning the handwheel in the second handwheel position and the third handwheel position in the second handwheel position in the rotation axis direction.
- the switching lever has a center of rotation on the rotation axis of the winding stem, and when the winding stem is at the second winding position, swings in the first rotation direction, and the winding stem is in the third position. When it is located in the second position, it is provided to swing in a second rotation direction different from the first rotation direction.
- the timepiece with a display correction device of the present invention further has a rotation center located at the same position as the rotation center of the switching lever, and when the winding stem is at the second winding stem position and the third winding stem position, A small iron wheel provided to rotate based on the rotation of the thumbwheel, and The first correction wheel train provided on the switching lever for correcting the display contents of the day display member and the day display member based on the rotation of the small wheel when the winding wheel is at And a second correction wheel train provided on the switching lever for correcting the display content of the time display member based on the rotation of the small wheelwheel when in the third winding true position.
- the first correction wheel train includes one or more correction transmission wheels provided so as to rotate based on the rotation of the small iron wheel.
- a swing lever provided to swing based on the rotation of the correction transmission wheel when the winding stem is in the second winding position; and when the winding stem is in the second winding position, A correction wheel attached to the swing lever so as to rotate based on the rotation of the correction transmission wheel, wherein when the winding stem is at the second winding position, the winding stem is the first winding stem.
- correction wheel is configured to modify the Akebono display member.
- the second correction wheel train includes at least one intermediate minute wheel provided so as to rotate based on the rotation of the small iron wheel, and the winding stem is the third wheel. It is preferable to have a minute wheel provided to rotate via the rotation of the intermediate minute wheel based on the rotation of the second correction wheel train when the winding wheel is at the winding true position.
- a timepiece with a display correction device includes a setting lever that operates based on an operation of a switching device for adjusting the operation of a time display member when the winding stem is at a third winding position. Is preferred.
- the shapes of the components constituting the display correcting device of the timepiece can be simplified. Therefore, manufacture and assembly of the timepiece can be facilitated.
- the first correction wheel train is one side with respect to the reference axis.
- the second modified wheel train is arranged in one region, and is arranged in a second region on the other side with respect to the reference axis.
- the present invention relates to a timepiece correcting device for correcting the display content based on the rotation of the winding stem, the device having a rotation center that does not move with respect to the movement of the timepiece, and A correction gear rotatably fixed to the movement so as to be rotatable; and a rotation center on the same axis as the rotation center of the correction gear, and extending in a first direction from the rotation center.
- a second portion extending from the rotation center in a second direction, the second portion being swingable in a first rotation direction with respect to the movement, and being different from the first rotation direction;
- a switching lever provided so as to be able to swing in the rotation direction of at least one, and at least one first correction provided at the first portion of the switching lever so as to rotate based on rotation of the correction gear.
- Transmission wheel and rotation of correction gear And at least one second correction transmission wheel provided on the second portion of the switching lever so as to rotate based on the second condition.
- the correction gear is configured as, for example, a small iron wheel.
- FIG. 2 is a partial plan view showing the structure on the back side of the first embodiment of the timepiece with a display correction device of the present invention when the winding stem is at the 0th stage.
- FIG. 3 is a partial cross-sectional view of the first m3 ⁇ 4-shaped form of the timepiece with a display correcting device of the present invention when the winding stem is at the 0th stage.
- FIG. 3 is a functional block diagram of the first ⁇ form of the timepiece with a display correction device of the present invention when the winding is at the 0th stage.
- FIG. 3 is a partial plan view showing the structure on the back side of the first embodiment of the timepiece with the display correcting device of the present invention in a state where the winding stem is in the first stage and the date is corrected.
- FIG. 2 is a partial cross-sectional view of the first embodiment of the timepiece with a display correcting device of the present invention in a state where the winding stem is in the first stage and the date is corrected.
- FIG. 2 is a functional block diagram of the first embodiment of the timepiece with a display correcting device according to the present invention in a state where the winding stem is in the first stage and a date correction or a day correction is performed.
- FIG. 2 is a partial plan view showing the structure of the backside of the first embodiment of the timepiece with the display correcting device of the present invention in a state where the winding stem is in the first stage and correction is performed.
- FIG. 3 is a partial cross-sectional view of a first ⁇ form of the timepiece with a display correction device of the present invention in a state where the winding stem is in the first stage and correction is performed.
- FIG. 2 is a partial plan view of the back side of the first embodiment of the timepiece with the display adjusting device of the present invention in a state where the winding stem is in the second stage and time is adjusted.
- FIG. 2 is a partial cross-sectional view of the first embodiment of the timepiece with a display adjusting device according to the present invention in a state where the winding stem is in the second stage and time is adjusted.
- FIG. 2 is a functional block diagram of the timepiece with a display adjusting device according to the first embodiment of the present invention in a state in which the winding stem is in the second stage and time is adjusted.
- FIG. 2 is a schematic plan view showing the structure of the backside of the first embodiment of the timepiece with a display correcting device of the present invention when the winding stem is at the 0th stage.
- FIG. 4 is a schematic plan view showing the structure of the back side of the first embodiment of the timepiece with a display correction device of the present invention when the winding wheel is at the 0th step in a state where the date wheel, the Akebono wheel and the day jumper are removed. is there.
- FIG. 1 is a schematic plan view showing a structure on a front side of a first embodiment of a timepiece with a display adjusting device according to the present invention in a state where a winding stem is in a second stage and time is adjusted.
- FIG. 2 is a functional block diagram showing the operation of the first embodiment of the timepiece with a display correction device of the present invention.
- FIG. 11 is a schematic plan view showing the structure of the back side of the second embodiment of the timepiece with a display adjusting device of the present invention in a state where the winding stem is in the second stage and time is adjusted.
- FIG. 13 is a schematic plan view showing the structure on the back side of the third embodiment of the timepiece with a display adjusting device of the present invention in a state where the winding stem is in the second stage and time is adjusted.
- FIG. 9 is a functional block diagram of a timepiece with a display adjusting device according to a second embodiment of the present invention in a state where the winding stem is in the second stage and time is adjusted.
- FIG. 8 is a functional block diagram showing the operation of the timepiece with a display correction device according to the second embodiment of the present invention.
- a movement (mechanical body) 100 according to the first embodiment of the timepiece with a display correction device of the present invention is constituted by a mechanical timepiece, and is a substrate of a movement.
- the main plate 102 is formed.
- the winding stem 110 is rotatably incorporated into the winding guide holes 102 a and 102 b of the main plate 102.
- the dial 104 is attached to the element 100.
- the side with the dial 104 is called the ⁇ back side '' of the movement
- the side opposite to the side with the dial 104 is called the ⁇ front side '' of the movement.
- the train wheel built into the “front side” of the movement is called “front train wheel”
- the train wheel built into the “back side” of the movement is called “back train wheel”.
- numerals 1 to 12 or corresponding abbreviations are usually provided on the outer peripheral portion of the surface of the dial 104. Therefore, each direction along the outer peripheral portion of the timepiece can be expressed by using these numbers.
- the left and left sides of the watch are called “9 o'clock” and “9 o'clock” respectively. Similarly,
- a winding pin 110 is arranged at "3 o'clock direction" of the movement.
- the straight line including the axis of rotation of the winding stem 110 is defined as the reference axis 1 1 2 of the watch.
- the area on the back side of the movement and to the left of the reference axis 1 1 2 is defined as the ⁇ first area '' of the movement. I do.
- This “first area” is referred to as a “3 to 12 to 9 o'clock area” corresponding to the number on the dial. Therefore, on the front side of the movement, the area to the right of the reference axis 112 is the “first area” of the movement.
- the area to the right of the reference axis 112 is defined as the “second area” of the movement.
- This "second area” is referred to as a "3-6 to 9 o'clock area” in correspondence with the numerals on the dial. Therefore, on the front side of the movement, the area to the left of the reference axis 112 is the “second area” of the movement.
- the winding stem 110 has a corner 110a and a guide shaft 111b.
- the wheel 1 1 4 is incorporated into the corner 1 1 10a of the winding 1 1 0.
- the ratchet wheel 114 has the same rotation axis as the rotation axis of the winding pin 110. That is, the ratchet wheel 114 has a square hole, and is provided so as to rotate based on the rotation of the winding stem 110 by fitting the square hole into the corner 110a. .
- the ratchet wheel 1 14 has an upper tooth 114a and a second tooth 114b.
- the instep 1 114a is located at the end of the towing wheel 114 closer to the center of the movement.
- the tooth 1 1 4 b is provided at the end of the wheel 4 which is farther from the center of the movement.
- a wheel 1 16 is rotatably provided on the guide shaft 11 Ob of the winding stem 110.
- the wheel 1 16 has inner teeth 1 16a and outer teeth 1 16b.
- the tooth 1 1 4 b of the continuation wheel 1 1 4 is the inner tooth 1 1 6 a of the wheel 1 1 6 ⁇ It is configured not to engage.
- the staple 120 is rotatably disposed on the back side of the main plate 102.
- a bar 1 22 is rotatably arranged on the back side of the main plate 102.
- the latch 122 is urged by the spring force of the latch spring portion 122 a so as to be pressed against the distal end 120 a of the setting lever 120.
- a latch retainer 1 2 4 is provided so as to press the shim 1 2 0 and the latch 1 2 2.
- the setting position bin 1 2 Ob provided on the setting 1 2 0 engages with the setting position 1 2 4 a of the setting position 1 2 4 a of the bolt 1 2 4, and the setting 1 2 4 It is positioned at three rotational directions.
- the guide 1 12 0 c of the winding 1 2 0 engages the step 1 1 10 c of the winding 1 1 0, and the rotation axis of the winding 1 1 10 is based on the rotation of the winding 1 2 0.
- the guide wheel 1 2 2c of the latch 1 2 2 engages with the step 1 1 4 c of the latch wheel 1 1 4 and, based on the rotation of the latch 1 2 2, Determine the position in the direction of the rotation axis.
- the bolt 122 is positioned at two positions in the rotation direction.
- the wheelwheel 114 in a state where the winding stem 110 is at the “0th stage”, the wheelwheel 114 is in the first position closer to the outside of the movement, With the winding stem 110 in the "first stage” and “second stage”, the wheel wheel 114 is configured so that it is close to the inside of the map and in the second position. .
- the towel 120, the bar 122 and the bar holder 124 constitute a switching device for a clock with a display correction device.
- the torsion positioning chevron portion 124a of the torsion 120 and the latch retainer 124 constitutes a winding stem positioning means for determining the position of the winding stem 110 in the rotation axis direction.
- the latch 122 constitutes a ratchet wheel positioning means which operates based on the operation of the setting lever 120 and the latch retainer 124.
- a small wheel pin 102c constituting the rotation center of the small wheel is provided on the rotation axis of the winding pin 110 on the back side of the main plate 102.
- the small wheel train 128 is rotatably incorporated into the small wheel pin 102c.
- the small iron wheel 1 2 8 does not engage with the instep 1 1 4a of the wheel 1 1 4 in the state where the winding 1 1 10 is in the ⁇ 0th step '', and the winding 1 In the state of "eye" and "second stage", it is configured to engage with the instep 1114a of the ratchet wheel 114.
- the switching lever 130 is provided to be swingable about the small wheel pin 102c.
- the switching lever stop frame 1 36 is fitted on the top of the small wheel bin 102 c.
- the switching lever stop frame 1336 is provided to hold the switching lever 130 swingably.
- the switching lever stop frame 1336 may be fixed to the top of the small wheel bin 10 2c, or the switching lever stop frame 1336 may be arranged at the top of the small wheel pin 10c. Good.
- the switching lever 130 is provided with a switching lever first portion 130a extending to one side of the small wheel pin 102c, that is, a "first region” disposed to the left of the reference axis line 112. And a second portion 13 Ob of the switching lever extending into the “second region” disposed on the other side of the small wheel pin 102 c, that is, on the right side of the reference axis 112.
- the switching lever 130 has a pushing engagement portion 130e. It is preferable that the tongue engaging portion 130 e of the switching lever 130 is formed as an elastically deformable spring portion.
- a first correction transmission wheel 132 is rotatably mounted on the switching lever first portion 130a.
- a second correction transmission wheel 134 is rotatably mounted on the switching lever first portion 130a.
- the first modified transmission wheel 1332 is engaged with the small railway vehicle 128 and the second corrected transmission wheel 1324.
- the first correction transmission wheel 1 32 has a first correction transmission axle portion 132 a.
- the second correction transmission wheel 1 34 has a second correction transmission axle portion 1 34 a.
- a switching lever positioning hole 102 f is provided in the main plate 102.
- the second correction transmission axle part 134a is disposed in the switching lever positioning hole 102f. The position of the switching lever 130 in the rotational direction is determined by the second correction transmitting axle portion 134a contacting the cylindrical wall surface of the switching lever positioning hole 102f.
- first corrected transmission wheel 13 2 and the second corrected transmission wheel 13 4 rotate the small iron wheel 1 28 when the winding stem 110 is at the second winding stem position (first stage).
- a first correction wheel train provided on the switching lever 130 for correcting the display contents of the date wheel 150 and the day wheel 152 based on the first wheel train.
- the number of the correction transmission wheels constituting the first correction wheel train is preferably two, but may be one, or may be three or more.
- a third correction transmission wheel 140 is rotatably provided on the main plate 102.
- a swing lever 14 2 is provided to be swingable with respect to the third correction transmission wheel.
- the oscillating levers 14 and 14 are adapted to transmit the third corrected transmission so that the vehicle 140 can slip with respect to the oscillating levers 142 when the slip torque exceeds a certain value.
- a correction wheel 144 is rotatably provided on the swing lever 144.
- the modified wheel 144 has a modified pinion 144a, a modified gear 144b, and a modified axle 144c.
- the third corrected transmission wheel 140 is combined with the second corrected transmission wheel 134 and the corrected kana 144a.
- a swing lever positioning hole 102 g is provided in the main plate 102. Corrected axle part ⁇ 144c is placed in swing lever positioning hole 102g. The position of the swing lever 144 in the rotation direction is determined by the correction axle 144c contacting the cylindrical wall surface of the swing lever positioning hole 102g.
- a date wheel 150 constituting a date display member for displaying the day is rotatably incorporated in the main plate 102.
- the date indicator 150 has 31 date indicator teeth and is rotated by a date feed mechanism (not shown).
- the position of the date wheel 150 in the rotation direction is determined by a date jumper (not shown).
- the date wheel retainer 1 56 holds the wheel 150.
- a day wheel 152 that constitutes an Akebono display member for displaying the day.
- the Akebono car 15 2 has a day star wheel 15 4 with 14 teeth, and the day wheel 15 2 is rotated by an Akebono feed mechanism (not shown). The position of the Akebono 15 2 in the direction of rotation is determined by the day jumper (not shown). Is being used.
- Akebono modified vehicle 1 5 8 is installed rotatably. Day correction car 1 5 8 mates with day star car 1 5 4.
- the back intermediate wheel 160 of the first day is rotatably mounted on the switching lever second part 130b.
- the second intermediate wheel 16 2 of the second day is rotatably attached to the switching lever second portion 13 Ob.
- the first said middle back wheel 160 is interlocked with the small railway car 128 and the second back middle wheel 16 2.
- the said counter wheel 16 6 is located in the “second area” on the right side of the reference axis 1 12.
- the first intermediate back wheel 160 and the second intermediate back wheel 16 2 are located in the third winding position (second stage) when the winding stem 110 is at the third winding position (second stage).
- a second correction wheel train provided on the switching lever 130 for correcting the display content of the time display member by rotating the minute wheel 166 based on the rotation of 28 is constituted.
- the number of back intermediate wheels constituting the second modified wheel train is preferably two, but may be one, or may be three or more.
- a setting lever 170 for setting the operation of the time display member by operating based on the operation of the switching device is provided so as to be rotatable around the rotation center of the latch 122.
- the setting lever 170 is rotated clockwise by the pusher 120, and the switching lever contact portion 1 of the setting lever 170 is rotated clockwise.
- 70a is positioned by hitting the first correction transmission axle portion 132a.
- the switching lever 130 is rotated counterclockwise.
- the position of the switching lever 130 in the rotating direction is such that the switching lever 130 rotates counterclockwise, and the second correction transmission axle part 134a is connected to the switching lever positioning hole 1. It is determined by contacting the cylindrical wall of 0 2 f. In this condition 1, the train wheel setting lever 110 is not in contact with the balance 210.
- Haze 2 26 is provided to prevent the rotation of the square wheel 2 224 in the reverse direction.
- the barrel car 230 includes a barrel barrel 2 32, a mainspring 2 3 4, a barrel gear 2 3 6, and a barrel lid 2 3 8. Based on the rotation of the square wheel 2 2 4, the barrel 2 2 3 rotates and winds up the spring 2 3 4. The power of the mainspring 2 3 4 causes the barrel gear 2 3 6 to rotate in a certain direction.
- the front train wheel is rotated based on the rotation of the barrel gear 2336, and the second hand and the minute hand constituting the time display member are rotated.
- the rotation speed of the front train wheel is adjusted by a speed control device including a balance 210 and an escapement device.
- the back wheel train including the minute wheel 1666 and the hour wheel rotates to rotate the hour hand. Further, based on the rotation of the back train wheel, the feed mechanism operates to rotate the date wheel 150, and the Akebono feed mechanism operates to rotate the day wheel 152.
- the winding stem 110 is pulled out by one stage from the state at the 0th stage to make the winding stem 110 at the first stage.
- the setting 1 2 0 rotates counterclockwise, and the bar 1 2 2 rotates clockwise.
- the indentations 1 2 2a of the ratchet wheel 1 1 4 mesh with the small wheels 1 2 8 and the mating teeth 1 2 2 b of the ratchet wheel 1 1 4 Does not fit.
- the setting lever 170 is rotated clockwise by the setting lever 120, and the switching lever abutment portion of the setting lever 1 10 is provided.
- the position 170 a contacts the first correction transmission axle portion 132 a and is positioned.
- the setting lever 170 rotates the switching lever 130 counterclockwise by the action of the lever 170, and the second correction transmitting axle portion 1344a is set to the switching lever positioning hole 102: f at 9 o'clock. Abut the cylindrical wall closer to. In this state, the setting lever 170 does not contact the balance 210.
- the small iron wheel 1 2 8 is deflected based on the rotation of the thumbwheel 1 14 Rotate clockwise.
- the first correction transmission wheel 132 rotates clockwise.
- the second correction transmission wheel 13 4 rotates counterclockwise.
- the third correction transmission wheel 140 rotates clockwise.
- the swing levers 1 and 4 rotate clockwise, and the corrected axle section 144c touches the cylindrical wall of the swing lever positioning hole 102g closer to the 3 o'clock side and is positioned. Is done.
- the third correction transmission wheel 140 can slip on the swing lever 144.
- the correction wheel 144 rotates in the counterclockwise direction at the position shown in FIG.
- the date wheel 150 is rotated counterclockwise based on the rotation of the modified gear 144b.
- the position of the date wheel 150 in the rotation direction is determined by the date jumper 180.
- the date can be corrected by rotating the winding stem 110 clockwise while the winding stem 110 is in the first stage.
- the winding stem 1 110 when the winding stem 1 110 is in the first stage and the winding stem 110 is rotated counterclockwise (when viewed from the outside of the watch, the winding stem 110 is rotated counterclockwise.
- the small iron wheel 1 28 rotates clockwise.
- the first correction transmission wheel 132 rotates counterclockwise.
- the second correction transmission wheel 1 3 4 rotates clockwise.
- the third corrected transmission wheel 140 rotates counterclockwise.
- the swing lever 144 rotates counterclockwise, and the corrected axle 144c touches the cylindrical wall of the swing lever positioning hole 102g closer to the 9 o'clock side for positioning. Is done.
- the third correction transmission wheel 140 can slip on the swing lever 144.
- the correction wheel 144 rotates clockwise at the position shown in FIG.
- the Akebono correction wheel 158 rotates counterclockwise.
- the day wheel 15 2 rotates clockwise.
- the position of the day wheel 150 in the direction of rotation is determined by the day day 1802.
- the dawning correction can be performed by rotating the winding stem 110 counterclockwise while the winding stem 110 is in the first stage.
- the date feed mechanism of the timepiece with a display correction device of the present invention is based on the rotation of an hour wheel 250 that rotates once every 12 hours. And a date clock 2 5 4 that sends a date wheel 1 50 by one tooth per day based on the rotation of the date wheel 2 52.
- the dawning mechanism of the timepiece with a display correction device of the present invention includes a day-turning mechanism 258 that sends the dawning wheel 15 2 by two teeth per day based on the rotation of the date-setting wheel 25 2.
- Day wheel 1 5 2 is rotatably supported with respect to hour wheel 250 by day wheel stop seat 16 2
- the winding stem 110 is further drawn out from the first stage by one stage, so that the winding stem 110 is in the second stage.
- the setting 1 2 0 rotates further counterclockwise.
- the yoke 1 2 2 does not rotate. Therefore, in the state of the second stage, the indentations 1 2 a of the continuous wheel 1 14 engage the small wheels 1 2 8 in the same manner as the state where the winding stem 110 is in the first stage.
- the teeth 1 1 2 2 b of the ratchet 1 1 4 are not engaged with the wheel 1 1 6.
- the setting lever 170 When the winding stem 110 is in the second stage, the setting lever 170 is rotated in the counterclockwise direction by rotating the setting lever 120, and the setting operating part 17 of the setting lever 170 is rotated in the counterclockwise direction.
- the Off contacts the periphery of the balance with the balance 210 and stops the rotation of the balance 210.
- the ankle 266 and the escape wheel 262 do not operate, the rotation of the second wheel 264 is regulated, and the rotation of the second hand 266 is stopped.
- the setting operation section 170 f of the setting lever 1 ⁇ 0 may be constituted by the end face of the setting lever 170, or may be constituted by bending the end face of the setting lever 170 at a right angle. Alternatively, it may be configured by fixing a separate setting pin to the end of the setting lever 100.
- the setting lever 120 rotates, the setting position pin 12Ob of the setting lever 120 pushes the setting engagement portion 130e of the switching lever 130. Then, the switching lever 130 rotates clockwise, and the second correction transmitting axle portion 134a contacts the cylindrical wall surface closer to the 3 o'clock side of the switching lever positioning hole 102f. Then, the second said back intermediate wheel 16 2 matches the said second wheel 16 6.
- the small iron wheel 1 2 8 is deflected based on the rotation of the pinwheel 1 14 Rotate clockwise.
- the first intermediate wheel 160 described above rotates clockwise.
- the back middle wheel 16 2 of the second day rotates counterclockwise.
- the minute wheel 1 6 6 rotates clockwise.
- the hour wheel 250 and the minute wheel 260 rotate counterclockwise. Therefore, when the winding stem 110 is in the second stage, by rotating the winding stem 110 clockwise, a so-called “reverse needle adjustment” can be performed.
- the small iron is rotated based on the rotation of the thumbwheel 114.
- Car 1 2 8 rotates clockwise.
- the first intermediate wheel 160 rotates in the counterclockwise direction.
- the intermediate back wheel 16 2 of the second day rotates clockwise.
- the second minute wheel 16 6 rotates counterclockwise.
- the hour wheel 250 and the minute wheel 260 rotate clockwise.
- a car 150 on the back side of the timepiece with the display correcting device of the present invention, there are a car 150, an Akebono car 15 2 (including an Akeboshi star car 154), and a switching device. (Including the rest, bun, and shovel).
- the center of rotation 254 t of the day clock 2 5 4 and the day clock 2 5 8 is arranged in the second area on the right side with respect to the reference axis 1 12 of the movement.
- the center of rotation 2 5 4 t of the saying 2 5 4 and the day 2 5 8 is far from Makino 1 1 0 in the second area It is located in the half area (referred to as the "6-9 o'clock area").
- the center of rotation 254 t of the daily clock 255 and the Akebono clock 258 be arranged almost “8 o'clock” of the movement.
- the day jumper 180 is located in the first area on the left side of the reference axis 112 of the movement.
- the day jumper 180 is located in the half area of the first area that is farther away from Makino 1 110 (corresponding to the number on the dial, called “9: L 2 o'clock area”). Have been.
- the center 180 t of rotation of the jumper 180 be located substantially between the “10 o'clock direction” and the “11 o'clock direction” of the movement.
- a portion where the date jumper 180 engages with the date wheel 150 is disposed substantially between the “9 o'clock direction” and the “10 o'clock direction” of the movement.
- the day jumper 18 2 is arranged in the second area on the right side with respect to the reference axis 112 of the movement.
- the day jumper 18 2 is located in the half of the first area that is closer to Makino 1 110 (referred to as the “3-6 o'clock area” according to the number on the dial). I have.
- the portion where the day jumper 182 engages with the day wheel is located between the "6 o'clock direction" and the "7 o'clock direction” of the movement.
- the rotation center 158 t of the day correction transmission wheel 158 is located in the first area on the left side with respect to the reference axis 1 12 of the movement. It is preferable that the rotation center 158 t of the day correction transmission wheel 158 is arranged substantially “12 o'clock direction” of the movement.
- the rotation center 144 t of the third correction transmission wheel 140 is disposed in the first area on the left side with respect to the reference axis 1 12 of the movement. It is preferable that the rotation center 140 t of the third correction transmission wheel 140 be positioned approximately “1 o'clock” of the movement.
- a barrel wheel 230 on the front side of the watch with the display correction device of the present invention, a barrel wheel 230, a second wheel 280, a third wheel 284, a minute wheel 270, There are 282, a second, a car, a 2664, an escape wheel, a 262, an ankle, and a balance.
- Rotation center of barrel wheel 230, rotation center of second wheel 280, rotation of third wheel 284 The center is located in the second area on the left side with respect to the reference axis 112 of the movement.
- the center of rotation of barrel box 230 is located in the half area near the winding pin 110 in the second area (referred to as the "3-6 o'clock area", corresponding to the number on the dial). It has been done.
- the rotation center of barrel box 230 be arranged between the "5 o'clock direction" and the "6 o'clock direction" of the movement.
- the center of rotation of the second wheel & pinion 280 and the center of rotation of the third wheel & pinion 284 are the half of the second area farther from the winding pin 110 (corresponding to the number on the dial). , "6-9 o'clock area").
- the rotation center of the second wheel 264 is located on the reference axis 1 12 of the movement, at a position farther from the winding stem 110. In particular, it is preferable that the rotation center of the second wheel 264 is arranged in the “9 o'clock direction” of the movement.
- the structure of the timepiece shown in Fig. 14 constitutes a timepiece having a so-called "small second hand”.
- the rotation center of the escape wheel & pinion 260, the rotation center of the ankle 260 and the rotation center of the balance 210 are arranged in the first area on the right side with respect to the reference axis 112 of the movement. ing.
- the center of rotation of the escape wheel & pinion 2 62, the center of rotation of the ankle 2 628, and the center of rotation of the balance 210 are the half of the first area that is farthest from the winding stem 110 ( "The 9-12 o'clock area”). In particular, it is preferable that the center of rotation of the balance 210 is located between the "10 o'clock direction” and the “11 o'clock direction" of the movement.
- a position where the setting lever 170 sets the balance with hair balance 210 is located between the "11 o'clock direction" and the "12 o'clock direction" of the movement.
- a second wheel & pinion 280 is rotated by a mainspring housed in a barrel box 230 as a power source. Based on the rotation of the second wheel & pinion 280, the second wheel & pinion 264 rotates for a second via the third wheel & pinion 284. Attach to second wheel 2 6 4 The second hand 2 6 6 indicates “second”. The rotation speed of the second wheel 264 is controlled by a balance 2110, an ankle 268 and an escape wheel 262.
- the minute wheel 270 rotates via the minute pinion pinion 282.
- the minute hand 276 attached to the minute wheel 270 indicates “minute”.
- the slip wheel 270 is provided with a slip mechanism.
- the minute wheel 166 rotates.
- the hour wheel 250 rotates based on the rotation of the minute wheel 16 6.
- the hour hand 2 56 attached to the hour wheel 250 displays “hour”.
- the rotation of the daily wheel 250c provided integrally with the hour wheel 250 rotates the daily wheel 255.
- the date wheel 2 5 4 sends the date wheel 1 5 0 only one tooth per day.
- the second day of the week 2 5 8 will send the day wheel 15 2 only 2 teeth a day.
- the rotation of the date wheel 150 is regulated by the day jumper 180.
- the rotation of day wheel 152 is regulated by day jumper 1832.
- the movement 400 of the second embodiment of the timepiece with a display correction device of the present invention is constituted by an analog electronic timepiece.
- the movement 400 of the second embodiment of the timepiece with a display correction device of the present invention is different from the movement 100 of the first embodiment of the timepiece with a display correction device of the present invention in that It has the structure of the front side, that is, the power source of the timepiece, the control device for controlling the rotation speed of the wheel train, and the structure of the front wheel train.
- the switching device, the back train wheel, the needle adjusting device, the date feeding device, the day feeding device, the day correcting device, and the day correcting device of the movement 400 are the same as the structure of the movement 100. Therefore, for FIG. 16, the description of the same parts as the structure shown in FIG. 1 will be omitted.
- a train wheel 292 is arranged on the front side of the movement 400. Train car 2 9 2 seconds Combined with car 2 64 or 4th car 290.
- the train wheel 292 is configured to engage with the second wheel 264.
- the train wheel 2992 should preferably be configured to engage with the fourth wheel 290.
- the train wheel setting lever 1 ⁇ 0 When the train wheel setting lever 1 ⁇ 0 operates, the train wheel setting lever 1 ⁇ 0 is configured to train the train wheel 2922.
- the center of rotation of the train wheel 292 is located in the first half of the movement in the half area farther away from the winding stem 110 (corresponding to the number on the dial, the “9 to 12 o'clock area”). "). In particular, it is preferable that the rotation center of the train wheel 292 is disposed between the “10 o'clock direction” and the “i 1 o'clock direction” of the movement.
- the movement 500 of the third embodiment of the timepiece with a display correction device of the present invention is constituted by an analog electronic timepiece.
- the movement 500 of the third embodiment of the timepiece with a display correction device of the present invention is different from the movement 400 of the second embodiment of the timepiece with a display correction device of the present invention in that
- the parts on the front side and the parts on the back side are arranged symmetrically (mirror mirror) with respect to the reference axis 112.
- the center of rotation of the train wheel 292 is the half area farthest from the winding stem 110 in the second area of the movement (corresponding to the number on the dial, the “6-9 o'clock area” ).
- the rotation center of the train wheel 292 is arranged between the "7 o'clock direction" and the "8 o'clock direction” of the movement.
- the timepiece with the display correction device of the present invention is configured by a mechanical timepiece, the arrangement of the parts shown in FIGS. 12 to 14 is symmetrical with respect to the reference axis 112. (Mirror symmetry).
- the operation of the display correction device according to the third embodiment of the timepiece with the display correction device of the present invention is substantially the same as the operation of the display correction device according to the second embodiment, and will be described in detail here. Is omitted.
- the movement 400 of the timepiece with a display correction device of the present invention does not have a wheel and a winding device.
- the winding 1 1 1 0 is at the 0th stage, there is no gear that engages with the spur wheel 1 1 4.
- the operation in the state where the winding stem 110 is at the first stage is the same as the operation of the first embodiment of the timepiece with the display correcting device of the present invention.
- the instep 122 a of the continuous wheel 114 is still engaged with the small iron wheel 128.
- the gear trained by the train wheel setting lever 170 may be the train wheel 292 that is in babies with the fourth wheel 290, or may be the fourth wheel 290.
- a watch equipped with a fourth wheel 290 and a fifth wheel 170, and a second wheel 266 attached to the fourth wheel 290 The second wheel 290 may be regulated, or the fifth wheel 170 may be regulated.
- the turning lever 130 is actuated by the rotation of the switching lever 130 and the small iron wheel 128 by the rotation of the winding stem 110, the back intermediate wheel 160 of the first day, and the second
- the operation of the rear intermediate wheel 162 is the same as the operation of the first embodiment of the timepiece with a display correcting device of the present invention. Therefore, when the winding stem 110 is in the second stage, by rotating the winding stem 110 clockwise, so-called “reverse needle adjustment” can be performed, and the winding stem 110 is rotated counterclockwise. In this way, so-called “positive needle adjustment” can be performed.
- the second and third embodiments of the timepiece with a display correction device of the present invention are an electric timepiece having a display correction device, for example, an analog electronic timepiece.
- the battery 420 constitutes the power source of the watch, and the crystal oscillator 422 oscillates at, for example, 32,768 Hz.
- the oscillation circuit 424 outputs a reference signal based on the oscillation of the crystal oscillator 422, and the frequency dividing circuit 426 divides the frequency of the output signal of the oscillation circuit 424.
- the drive circuit 428 outputs a motor drive signal which drives the step motor based on the output signal of the frequency divider circuit 426 based on the output signal.
- the stay block 432 turns the magnet and rotates the mouth block 334. Rho 4 3 4 rotates, for example, 180 degrees every second.
- the fourth wheel 290 rotates through the rotation of the fifth wheel 440 based on the rotation of the fourth wheel 4 3 4.
- the fourth wheel 290 is configured to make one revolution per minute.
- the second hand 2 66 is attached to the fourth wheel 290.
- the second wheel may be rotated via one or more trains based on the rotation of the mouth 4 3 4.
- the fourth wheel 290 or the second wheel may be arranged at the center of the watch or at a position different from the center of the watch.
- the third wheel 284 rotates based on the rotation of the fourth wheel 290.
- the second wheel 280 rotates based on the rotation of the third wheel 284.
- a minute wheel may be used instead of the second wheel 280.
- the minute hand 2 76 is attached to the center wheel & pinion 2 80.
- a slip mechanism is provided on the center wheel & pinion 280 or the minute wheel. By rotating the winding pin 110 with the second hand 26 6 stopped, the minute hand 2 76 And the hour hand 2 5 6 can be rotated.
- the second wheel 280 or the minute wheel rotates once an hour.
- the said minute wheel 1 6 6 rotates based on the rotation of the second wheel 2 80.
- the hour wheel 250 rotates based on the rotation of the reverse wheel 16.
- the hour wheel 250 rotates once every 12 hours.
- the rotation of the hour wheel 250, the rotation of 250c, causes the rotation of the wheel 250, and the rotation of the wheel 250 sends the tooth 1550 only one tooth per day. .
- Akebono 2 5 8 sends the day wheel 1 5 2 to 1 only 2 teeth.
- the rotation of the car 150 is regulated by the Japan-Jampa 180.
- the rotation of day wheel 152 is regulated by day jumper 182.
- the number of teeth of the Akebono star wheel is described as 14. However, the number of teeth of the Akebono star wheel may be 7 or 21. If the day star wheel has seven teeth, the day turning mechanism 258 will send the day wheel 155 only one tooth per day. If the number of teeth of the day star is 21, the Akebono 258 will send the day wheel 152 only 3 teeth per day.
- the structure of the display correction device of the present invention may be applied to a "two-hand timepiece” or a "one-hand timepiece” having no second hand. it can.
- the display members that can be modified when the winding stem 110 is in the first stage are the wheel 150 and the day wheel 152, but the display of the present invention
- the structure of the correction device can also be applied to a watch having only the date indicator 150.
- the plurality of display members to which the structure of the display correction device of the present invention can be applied may be, for example, a month indicating car, a month indicating car, a six-day indicating car, a year indicating car, and the like.
- the present invention is configured as described above in a timepiece with a display correction device, and has the following effects.
- (1) The amount of movement of the continuous wheel in the axial direction of the winding stem can be reduced as compared with the conventional structure, and the size of the watch with the display correction device can be reduced.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Electromechanical Clocks (AREA)
Description
Claims
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US09/582,016 US6295249B1 (en) | 1997-12-25 | 1998-12-24 | Display correction device and timepiece equipped with display correction device |
EP98961584A EP1043634A4 (en) | 1997-12-25 | 1998-12-24 | WATCH WITH DISPLAY CORRECTION DEVICE |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP9357352A JPH11183649A (ja) | 1997-12-25 | 1997-12-25 | 表示修正装置付き時計 |
JP9/357352 | 1997-12-25 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO1999034262A1 true WO1999034262A1 (fr) | 1999-07-08 |
Family
ID=18453695
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP1998/005940 WO1999034262A1 (fr) | 1997-12-25 | 1998-12-24 | Montre dotee d'un dispositif de correction d'affichage |
Country Status (6)
Country | Link |
---|---|
US (1) | US6295249B1 (ja) |
EP (1) | EP1043634A4 (ja) |
JP (1) | JPH11183649A (ja) |
CN (1) | CN1285053A (ja) |
TW (1) | TW392096B (ja) |
WO (1) | WO1999034262A1 (ja) |
Cited By (2)
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CN104898402A (zh) * | 2014-03-06 | 2015-09-09 | 精工爱普生株式会社 | 电子钟表及机芯 |
US11550267B2 (en) | 2017-03-22 | 2023-01-10 | Manufacture D'horlogerie Audemars Piguet Sa | Device for adjusting the functions of a timepiece |
Families Citing this family (27)
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CN1049208C (zh) * | 1994-08-10 | 2000-02-09 | 中国石油化工总公司 | 1,4-丁二醇的制备方法 |
US6711099B1 (en) * | 2001-04-10 | 2004-03-23 | Watch-U-License Ag | Setting and winding mechanism |
DE10160287A1 (de) * | 2001-12-07 | 2003-06-26 | Lange Uhren Gmbh | Tourbillon |
JP4149751B2 (ja) * | 2002-06-27 | 2008-09-17 | セイコーインスツル株式会社 | ブシュ付きリセットレバーを備えた電子時計 |
JP2004170271A (ja) * | 2002-11-20 | 2004-06-17 | Seiko Instruments Inc | カレンダ付き時計 |
JP4296018B2 (ja) * | 2003-03-27 | 2009-07-15 | セイコーインスツル株式会社 | カレンダ機構を備えたクロノグラフ時計 |
JP4462606B2 (ja) * | 2004-01-27 | 2010-05-12 | セイコーインスツル株式会社 | 表示修正機構付き時計 |
EP1862871B1 (fr) * | 2006-05-31 | 2008-05-21 | Montres Breguet S.A. | Pièce d'horlogerie comportant un dispositif de mise à l'heure amélioré |
DE602007005214D1 (de) * | 2007-01-30 | 2010-04-22 | Longines Montres Comp D | Uhr, die einen Antriebsmechanismus einer Vorrichtung zur Anzeige einer mit der Zeit zusammenhängenden Größe umfasst |
EP1978419B1 (fr) * | 2007-04-04 | 2010-07-21 | ETA SA Manufacture Horlogère Suisse | Dispositif de remontage comprenant un accouplement à sens unique |
ATE487962T1 (de) * | 2007-04-04 | 2010-11-15 | Eta Sa Mft Horlogere Suisse | Zahnrad für uhrwerk und vorrichtung zur korrektur eines anzeigemechanismus für eine uhr mit einem solchen zahnrad |
JP5343670B2 (ja) * | 2009-04-01 | 2013-11-13 | セイコーエプソン株式会社 | 時計 |
EP3339967A1 (fr) * | 2011-06-21 | 2018-06-27 | Rolex Sa | Pièce d'horlogerie comportant un mécanisme de remontage et au moins un mécanisme de correction d'au moins un organe indicateur |
EP2565728B1 (fr) * | 2011-08-29 | 2018-05-09 | ETA SA Manufacture Horlogère Suisse | Mécanisme autonome de commande pour pièce d'horlogerie |
CN103869681B (zh) * | 2012-12-12 | 2016-03-02 | 天王电子(深圳)有限公司 | 一种机械手表及机械手表的上条拨针机构 |
CH707870B1 (fr) * | 2013-04-08 | 2017-07-14 | Gfpi S A | Mécanisme de sélection et d'actionnement des fonctions d'un mouvement horloger et pièce d'horlogerie comprenant un tel mécanisme. |
EP2945026B1 (fr) * | 2014-05-14 | 2018-01-03 | ETA SA Manufacture Horlogère Suisse | Mécanisme de correction rapide d'horlogerie |
EP2945024B1 (fr) * | 2014-05-14 | 2017-07-12 | ETA SA Manufacture Horlogère Suisse | Bascule d'horlogerie |
JP6492928B2 (ja) * | 2015-04-22 | 2019-04-03 | セイコーエプソン株式会社 | 時計および時計の製造方法 |
EP3333642B1 (fr) * | 2016-12-06 | 2019-08-21 | ETA SA Manufacture Horlogère Suisse | Mécanisme horloger de correction bidirectionnel d'une pluralité d'affichages |
CH714741B1 (fr) * | 2018-03-12 | 2022-06-30 | Hublot Sa Geneve | Système de blocage d'un rochet de barillet horloger. |
EP3584644B1 (fr) | 2018-06-20 | 2021-03-31 | Patek Philippe SA Genève | Mécanisme de remontoir et de correction à bascule pour mouvement horloger |
CN110209041B (zh) * | 2019-05-31 | 2021-02-12 | 福建瑞达精工股份有限公司 | 一种钟表起闹点的快速校准方法 |
JP6751215B1 (ja) * | 2020-03-02 | 2020-09-02 | セイコーウオッチ株式会社 | てんぷ規正機構、時計用ムーブメントおよび時計 |
EP4006650A1 (fr) * | 2020-11-27 | 2022-06-01 | Omega SA | Mecanisme d affichage d horlogerie sautant a rouleaux |
CH718513A1 (fr) * | 2021-04-07 | 2022-10-14 | Mft Dhorlogerie Audemars Piguet Sa | Dispositif de sélection et d'actionnement de plusieurs fonctions d'un mouvement horloger. |
WO2024046724A1 (fr) | 2022-08-29 | 2024-03-07 | Richemont International Sa | Dispositif de correction bidirectionnelle et mouvement horloger comportant un tel dispositif |
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JPS5381059A (en) | 1976-12-27 | 1978-07-18 | Toshiba Corp | Digital phase synchronizing system |
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-
1998
- 1998-12-24 EP EP98961584A patent/EP1043634A4/en not_active Withdrawn
- 1998-12-24 WO PCT/JP1998/005940 patent/WO1999034262A1/ja not_active Application Discontinuation
- 1998-12-24 CN CN98813630A patent/CN1285053A/zh active Pending
- 1998-12-24 TW TW087121647A patent/TW392096B/zh active
- 1998-12-24 US US09/582,016 patent/US6295249B1/en not_active Expired - Lifetime
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JPS372249B1 (ja) * | 1958-10-31 | 1962-05-19 | ||
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JPS4322941Y1 (ja) * | 1965-06-08 | 1968-09-27 | ||
JPS4833335Y1 (ja) * | 1969-08-07 | 1973-10-09 | ||
JPS4881868U (ja) * | 1971-12-29 | 1973-10-05 | ||
JPS4883864A (ja) * | 1972-01-21 | 1973-11-08 | ||
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104898402A (zh) * | 2014-03-06 | 2015-09-09 | 精工爱普生株式会社 | 电子钟表及机芯 |
US11550267B2 (en) | 2017-03-22 | 2023-01-10 | Manufacture D'horlogerie Audemars Piguet Sa | Device for adjusting the functions of a timepiece |
Also Published As
Publication number | Publication date |
---|---|
TW392096B (en) | 2000-06-01 |
CN1285053A (zh) | 2001-02-21 |
JPH11183649A (ja) | 1999-07-09 |
EP1043634A4 (en) | 2001-03-21 |
EP1043634A1 (en) | 2000-10-11 |
US6295249B1 (en) | 2001-09-25 |
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