A mechanism for displaying the annual cycle of a clock
A simplified gear train mechanism for watches accurately indicates the annual cycle with reduced size and power consumption, addressing integration and operational issues in existing technologies.
Patent Information
- Application Number
- JP2023172117
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-11-17
- Filing Date
- 2023-10-03
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2043-10-03
AI Technical Summary
Existing mechanisms for displaying the annual cycle in watches are inaccurate, complex, bulky, and power-consuming, limiting their integration into affordable watches and causing operational interruptions.
A simplified gear train mechanism with a ratio of 1:365.234375 or multiples, using up to four gearings between the operating train and the annual cycle indicator, which is driven by the clock movement's working train, reducing size and power consumption.
The mechanism provides accurate annual cycle indication with reduced complexity, size, and power requirements, enabling easy integration into various clock movements, including mechanical and electronic watches without power interruptions.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The technical field of the invention relates to mechanisms for indicating periods of the annual cycle of a watch, for example the seasons.
[0002] The invention further relates to a clock movement including a mechanism for indicating the periods of such a yearly cycle.
[0003] The invention further relates to a timepiece, such as a wristwatch, including a timepiece movement that includes a mechanism for indicating the periods of such a yearly cycle. [Background technology]
[0004] The annual cycle, and in particular the mechanism for displaying the periods of this annual cycle, makes it possible to display information about a given period in the solar yearly cycle.
[0005] The mechanism that displays the periods of the annual cycle is generally a mechanism equipped with a jumping drive that enables indicators pointing at the scales or divisions of the dial to correspond to these periods.
[0006] However, these jumping mechanisms for displaying the period of the year cycle are not very accurate because they do not tell the user whether they are at the beginning or end of the displayed period of the year cycle.
[0007] For example, if such a mechanism for displaying periods of a yearly cycle can also display months or, for example, seasons, the hands will indicate the current period (month or season) but will not give more accurate information about the remaining time of the current period. As a result, driving these indications by jumps will result in a "display error" regarding the actual state of the current period.
[0008] Furthermore, these jumping display mechanisms consume power and, during the jump, peaks in power consumption occur which can temporarily interrupt the normal operation of the actuation train.
[0009] To overcome this drawback, a dragging mechanism has been proposed to indicate the period of the annual cycle, this mechanism being continuously driven by the working train of the clock movement.
[0010] However, these dragging mechanisms are more complex to manufacture and bulkier because they require multiple gears between the actuation train and the annual period indicator.
[0011] Most known dragging mechanisms for displaying the duration of the annual cycle aim to produce an accurate display of the annual cycle by coming as close as possible to the theoretical value of the tropical year, in particular by using a number of mechanisms and specific gear ratios to get as close as possible to the theoretical value of the tropical year.
[0012] Patent document 1 can be cited as an example, which describes a mechanism for displaying a sky map, which includes a first disk showing a sky map, the first disk being rotated by a gear train with six gears actuated by a time wheel, the gear train having the following ratios: i = 36 / 28 * 42 / 12 * 50 / 12 * 51 / 12 * 55 / 12 * 50 / 25 = 2*365.234375
[0013] Citation may also be made of patent document 2, which describes a zodiac indicator formed by a ring divided into 12 segments, each segment bearing the name of a month and / or a zodiac sign, the ring making one revolution per year of 365.244008 days and rotated by a power take-off which makes one revolution per hour.
[0014] Although accurate, these mechanisms for displaying the annual cycle have several drawbacks.
[0015] First, as mentioned above, these mechanisms are complex and bulky to manufacture, making them difficult to incorporate into a watch movement.
[0016] Second, these multi-component display mechanisms require one or more power sources to provide the required torque, particularly to prevent interruptions in the operation of the actuation train.
[0017] As a result, complications for displaying the periods of the annual cycle are often limited to expensive, complicated and bulky watches. Therefore, there is a need to improve this type of dragging mechanism for displaying annual cycle periods to address at least one of the above problems. [Prior art documents] [Patent documents]
[0018] [Patent Document 1] Russian Patent No. 2767151 [Patent Document 2] Swiss Patent No. 679197 Summary of the Invention [Problem to be solved by the invention]
[0019] In this context, the present invention proposes a sufficiently accurate mechanism for indicating the periods of the annual cycle, which has a simplified design, is small in size, is easy to integrate into a clock movement and requires little power to operate. [Means for solving the problem]
[0020] To this end, the invention provides a mechanism for displaying the cycle of the year for a timepiece that can be driven by dragging with the working train of a timepiece movement, the mechanism for displaying the cycle of the year comprising: -Indicators showing the period of the yearly cycle; a yearly train driven by said operating train of the clock movement and capable of rotating an indicator of the periods of the yearly cycle; The invention is characterized in that it comprises The mechanism for displaying the periods of the annual cycle relates to a mechanism for displaying the periods of the annual cycle, characterized in that the annual cycle train forms a gear train including up to four gear trains between the operating train and the indicator of the periods of the annual cycle.
[0021] Preferably, the gear train is configured to have a ratio of 1:365.234375, or a ratio that is a multiple of 1:365.234375, and has only four gearings between the operating train and the indicator showing the annual cycle.
[0022] Thus, the gear train of the annual gear is configured to have a ratio R of 1:365.234375, or a ratio R' that is a multiple of the ratio R1:365.234375, so that R'=n×R (n is an integer).
[0023] According to the invention, the mechanism for displaying periods of the annual cycle may be a mechanism for displaying months, weeks, astrological signs, zodiacal signs, equation of time, running equation of time, Christian festivals, equinoxes, solstices, climatic seasons, the tilt of the Earth relative to the Sun, Chinese seasons or the solar cycle.
[0024] Preferably, the mechanism for displaying the period of the annual cycle is a mechanism for displaying the solar cycle.
[0025] Preferably, the mechanism for indicating periods of the yearly cycle is a mechanism for indicating the Chinese seasons.
[0026] Preferably, the mechanism for displaying the periods of the annual cycle is a celestial display mechanism.
[0027] Thanks to the particular choice of gear train for the annual period train, the applicant proposes a simplified mechanism for displaying the period of the annual period, in particular where the gear train is limited to a maximum of four gearings and consists of a maximum of three intermediate wheel sets between the working train and the annual period wheel carrying the indicator of the period of the annual period, and which is sufficiently accurate to allow a correction of one day every 128 years.
[0028] Such mechanisms for displaying the periods of the annual cycle are easy to install in a watch movement, have a reduced number of moving parts which increases reliability, and consume little power due to the various gear ratios of the wheelsets that make up the gear train.
[0029] As a result, such a mechanism for indicating the period of the year cycle can be easily installed in a clock that includes a clock movement with a power source and an electronic oscillator, for example a quartz crystal.
[0030] In addition to the features mentioned in the previous paragraph, the device for indicating the periods of the annual cycle according to the invention may have one or more complementary features from the following, considered individually or in any technically possible combination: The operating train includes a time wheel that rotates once every 12 hours, and the gear train of the yearly cycle train can mesh with the time wheel of the operating train, and the gear train of the yearly cycle train is configured to have a ratio of 1:2*365.234375 between the time wheel of the operating train and the indicator of the period of the yearly cycle. The operating train includes a 24-hour wheel that rotates once in 24 hours, and the gear train of the yearly cycle train can mesh with the 24-hour wheel of the operating train, and the gear train of the yearly cycle train is configured to have a ratio of 1:365.234375 between the 24-hour wheel of the operating train and the indicator of the period of the yearly cycle. The annual train includes up to three wheel sets. The annual train a first intermediate wheel set including a first intermediate wheel set wheel having 34 teeth and a first intermediate wheel set pinion having 8 teeth; a second intermediate wheel set including a second intermediate wheel set wheel having 44 teeth and a second intermediate wheel set pinion having 8 teeth; a third intermediate wheel set including a third intermediate wheel set wheel having 40 teeth and a third intermediate wheel set pinion having 8 teeth; Includes. The display mechanism further includes a mechanism for frictionally setting an indicator of a period of the yearly cycle. One of the wheels of the intermediate wheelset is frictionally mounted against its pinion.
[0031] The invention further relates to a timepiece movement comprising a working train and a mechanism for indicating the periods of the annual cycle according to the invention, the annual cycle train being directly meshed with the working train.
[0032] Preferably, the actuation train includes an hour wheel that rotates once every 12 hours and the yearly train directly meshes with the hour wheel, or the actuation train includes a 24-hour wheel that rotates once every 24 hours and the yearly train directly meshes with the 24-hour wheel.
[0033] Preferably, the timepiece movement comprises a working train including an hour wheel or a 24-hour wheel, and a gear train of an annual cycle train of a mechanism for displaying the periods of an annual cycle meshes with said hour wheel and has a ratio of 1:2 x 365.234375, or a gear train of a mechanism for displaying the periods of an annual cycle meshes with said 24-hour wheel and has a ratio of 1:365.234375.
[0034] Preferably, the hour wheel has 8 teeth, the indicator of the period of the year cycle is rotated by a year cycle wheel having 50 teeth, and the gear train of the year cycle train has the following ratio: 34 / 8*44 / 8*40 / 8*50 / 8.
[0035] Preferably, the 24-hour wheel has 8 teeth, the indicator of the periods of the year cycle is rotated by a year cycle wheel having 25 teeth, and the gear train of the year cycle train has the following ratios: 34 / 8 x 44 / 8 x 40 / 8 x 25 / 8.
[0036] The invention further relates to a timepiece including a mechanism for indicating the periods of the annual cycle according to the invention or including a timepiece movement according to the invention.
[0037] Advantageously, the timepiece is a wristwatch. [Brief explanation of the drawings]
[0038] The objects, advantages and features of the present invention will be better understood by reading the detailed description given below in conjunction with the following drawings. [Figure 1] 1A and 1B diagrammatically show a top view of an exemplary embodiment of a mechanism for displaying periods of a yearly cycle according to the present invention; [Figure 2] 2 shows an operational diagram illustrating in more detail the annual cycle train of the mechanism for displaying the period of the annual cycle shown in FIG. 1; [Figure 3] 1 shows diagrammatically an embodiment of a timepiece including a mechanism for displaying the periods of a yearly cycle according to the invention;
[0039] In all figures, common elements are numbered the same unless otherwise indicated. DETAILED DESCRIPTION OF THE INVENTION
[0040] The present invention results from the concept of simplifying the mechanism for indicating the periods of the annual cycle so that it can be more easily installed in any type of mechanical, electromechanical or electronic clock movement.
[0041] FIG. 1 shows diagrammatically an exemplary embodiment of a mechanism 100 for indicating the periods of the annual cycle according to the invention, attached to a plate 2 of a clock movement 1 .
[0042] The mechanism 100 for indicating the periods of the year cycle according to the invention is intended to be housed in a timepiece 200, for example in a wristwatch case 210 as shown diagrammatically in FIG.
[0043] The mechanism 100 for indicating the periods of the annual cycle according to the invention is driven by a clock movement 1, partly shown in FIGS.
[0044] Conventionally, the clock movement 1 includes a working train 10 having, among other things, a motion work (not shown) that drives an hour wheel 11, the assembly of which is configured so that the hour wheel 11 makes one complete revolution in 12 hours.
[0045] The hour wheel 11 conventionally carries a time indicator 15, for example an hour hand.
[0046] The mechanism 100 for displaying the period of the year cycle includes an indicator 110 that indicates the period of the year cycle.
[0047] The yearly period indicator 110 is rotated by the yearly period wheel 112. Preferably, the yearly period indicator 110 is rigidly connected to the yearly period wheel 112.
[0048] The yearly period indicator 110 is, for example, a needle rigidly connected to the shaft of the yearly wheel 112 .
[0049] According to another alternative embodiment, the annual period indicator 110 may be a disc rigidly joined to the annual wheel 112 .
[0050] Depending on the type of display desired, the disc may be entirely visible to the user, or may be partially visible through an appropriately shaped opening in the face of the watch 200 .
[0051] The annual cycle period indicator 110 is kinematically connected to the actuation train 10 via an annual cycle train 120 .
[0052] More specifically, the yearly train 120 is in direct mesh with the hour wheel 11 carrying the hour hand 15 on the one hand and the yearly wheel 112 carrying the yearly period indicator 110 on the other hand.
[0053] In this way, the annual period indicator 110 is actuated by the actuation train 10 in a dragging manner.
[0054] The annual cycle train 120 forms a gear train between the operating train 10 and the annual cycle period indicator 110 with a ratio R of 1:365.234375 or a ratio R' that is a multiple of the ratio R of 1:365.234375.
[0055] More specifically, the yearly train 120 forms a gear train with a ratio of 1:2*365.234375 between the hour wheel 11 (which rotates once every 12 hours) and the yearly wheel 112 .
[0056] The yearly train 120 is formed by up to three intermediate wheel sets 121, 122, 123 located between the hour wheel 11 and the yearly wheel 112, thereby forming four gear trains from the hour wheel 11 to the yearly wheel 112. The yearly train 120 according to the invention has a reduced number of wheel sets, which allows the overall size of such a mechanism for displaying the periods of the year to be reduced.
[0057] Preferably, the annual cycle train 120 forms a gear train with the prime numbers 17, 11, and 5 in the numerator and 2 in the denominator.
[0058] The yearly train 120 includes a first intermediate wheel set 121 that directly meshes with the hour wheel 111, and a second intermediate wheel set 123 that is positioned between the first intermediate wheel set 121 and a third intermediate wheel set 123 and directly meshes with the yearly wheel 112. 122 Includes:
[0059] In the exemplary embodiment shown in FIGS. The hour wheel 11 has 8 teeth, the first intermediate wheel set 121 includes a first intermediate wheel set wheel having 34 teeth and a first intermediate wheel set pinion having 8 teeth; the second intermediate wheel set 122 includes a second intermediate wheel set wheel having 44 teeth and a second intermediate wheel set pinion having 8 teeth; the third intermediate wheel set 123 includes a third intermediate wheel set wheel having 40 teeth and a third intermediate wheel set pinion having 8 teeth; The year wheel 112 has 50 teeth.
[0060] As a result, between the hour wheel 11 and the year wheel 112, the year train 120 forms a gear train with the following ratio:
number
[0061] If the gear train has a ratio R between the operating train 10 and the indicator 110 of the period of the year cycle of 1:365.234375 or a ratio R' that is a multiple of the ratio R1:365.234375, so that R'=n×R (n is an integer), and the gear train is limited to four gears between the hour wheel 11 and the year cycle wheel 112, other gear combinations are possible by equivalence.
[0062] The mechanism 100 for indicating the period of the annual cycle includes a setting mechanism that is independent of or common to the mechanism for setting the operating train 10 .
[0063] Preferably, the indicator 110 of the period of the year cycle is set by a control stem 3 used to set the hands 15 of a working train 10 contained in the timepiece movement 1 .
[0064] In the case of a mechanical timepiece movement, the control stem 3 is associated with a winding stem which winds the mainspring and sets the hands of the working train.
[0065] The control stem 3 can assume various axial positions relative to the case 210 and can perform various control and / or setting functions.
[0066] One of the positions of the control stem 3 allows the indicator 110 of the period of the annual cycle to be set by friction via a setting train 7 which, in cooperation with a sliding pinion of the control stem 3, is driven by the rotation of the control stem 3.
[0067] Preferably, one of the wheels of the intermediate wheel set 121, 122, 123 of the yearly cycle train 120, or the yearly cycle wheel 112, is frictionally mounted on its shaft so that the yearly cycle wheel 112 can be disengaged from the operating train 10 and thereby the angular position of the yearly period indicator 110 can be changed without changing the angular position of the hands 15 of the operating train 10. The principles of friction are well known and need not be explained further.
[0068] Preferably, the setting train 7 acts on one of the intermediate wheel sets 121, 122, 123 of the annual train 120 to improve accuracy during the setting operation.
[0069] Preferably, the setting train 7 acts on the third intermediate wheel set 123 , i.e. the intermediate wheel set of the annual train 120 which is in direct mesh with the annual wheel 112 .
[0070] Preferably, the wheels of the second intermediate wheel set 122 are frictionally mounted to their pinions.
[0071] The setting train 7 is thereby located between the sliding pinion (not shown) of the control stem 3 and the pinion of the third intermediate wheel set 123 .
[0072] Although the invention has been described in particular with the annual train 120 in direct mesh with an hour wheel that completes one complete revolution in 12 hours, it will be appreciated that the invention is also applicable when the annual train 120 meshes with another wheel in the operating train whose complete revolutions are a multiple of the revolutions of the hour wheel, such as a 24-hour wheel. The mechanisms for displaying such annual periods must therefore be adapted to take into account the ratio of two.
[0073] As an example, if the yearly train 120 meshes with a 24-hour wheel while maintaining the same ratio as above, the yearly wheel 112 can have 25 teeth instead of 50. This results in a ratio of 1:365.234375 between the 24-hour wheel and the yearly period indicator 110.
[0074] According to another exemplary embodiment, the yearly wheel 112 is a wheel with 50 teeth that meshes with a 24-hour wheel having 10 teeth instead of 20 as described above. The ratio is thereby maintained.
[0075] Such a mechanism for indicating the periods of the year cycle is perfectly suitable for mechanical timepiece movements, with or without a date display, and for electronic or electromechanical timepiece movements, since the mechanism for indicating the periods of the year cycle is of the dragging type and does not cause peaks in power consumption in the operating train 10.
[0076] The invention further relates to a timepiece movement 1 including a mechanism 100 for displaying the periods of the annual cycle according to the invention.
[0077] The mechanism for displaying the period of the year according to the present invention may further include ad-hoc means for generating a retrograde display of the period of the year. Such means are conventionally used to move an indicator of the period of the year in an arc (e.g. facing a scale on a dial) and return the indicator to its starting position when the indicator has traveled through the entire year.
[0078] The invention further relates to a timepiece 200, such as a wristwatch, including a timepiece movement 1 according to the invention housed in a watch case 210.
Claims
1. A mechanism (100) for indicating the period of the annual cycle for a timepiece (200) that can be driven continuously by being dragged by the hour wheel (11) of the working train (10) of the timepiece movement (1), comprising: The mechanism (100) for indicating the period of the annual cycle comprises: an indicator (110) showing the period of the annual cycle; a yearly cycle train (120) continuously driven by said hour wheel (11) and capable of continuously rotating an indicator (110) showing the period of said yearly cycle; Including, The yearly cycle train (120) forms a gear train including up to four gear trains between the hour wheel (11) and an indicator (110) showing the period of the yearly cycle; A mechanism (100) for indicating periods of a yearly cycle, characterized in that the gear train of the yearly cycle train (120) is configured to have a ratio between the hour wheel (11) and the indicator (110) showing the periods of the yearly cycle of 1:365.234375 or a ratio that is a multiple of 1:365.234375.
2. 2. The mechanism (100) for indicating the period of a yearly cycle according to claim 1, wherein the hour wheel (11) is a 12-hour wheel (11) which rotates once in 12 hours, the gear train of the yearly cycle train (120) is capable of meshing with the 12-hour wheel (11), and the gear train of the yearly cycle train (120) is configured so as to have a ratio of 1:2 x 365.234375 between the 12-hour wheel (11) and an indicator (110) which indicates the period of the yearly cycle.
3. 2. The mechanism (100) for indicating the period of a yearly cycle according to claim 1, wherein the hour wheel (11) is a 24-hour wheel that rotates once in 24 hours, the gear train of the yearly cycle train (120) is capable of meshing with the 24-hour wheel, and the gear train of the yearly cycle train (120) is configured so as to have a ratio of 1:365.234375 between the 24-hour wheel and the indicator (110) that indicates the period of the yearly cycle.
4. 2. The mechanism (100) for indicating the period of a yearly cycle according to claim 1, characterized in that the gear train ratios of said yearly cycle train (120) have the prime numbers 17, 11, and 5 in the numerator and 2 in the denominator.
5. The annual cycle train (120) comprises: a first intermediate wheel set (121) including a first intermediate wheel set wheel with 34 teeth and a first intermediate wheel set pinion with 8 teeth; a second intermediate wheel set (122) including a second intermediate wheel set wheel with 44 teeth and a second intermediate wheel set pinion with 8 teeth; a third intermediate wheel set (123) including a third intermediate wheel set wheel having 40 teeth and a third intermediate wheel set pinion having 8 teeth; 2. The mechanism (100) for displaying the period of a yearly cycle according to claim 1, characterized in that it comprises:
6. 2. The mechanism (100) for indicating periods of a year cycle according to claim 1, characterized in that it includes a mechanism for frictionally setting the indicator (110) showing the period of the year cycle.
7. 6. A mechanism (100) for indicating the period of a yearly cycle according to claim 5, characterized in that one of the wheels of the first, second and third intermediate wheel sets (121, 122, 123) is frictionally mounted on its pinion.
8. The mechanism (100) for displaying periods of a yearly cycle according to claim 1, characterized in that said mechanism (100) for displaying periods of a yearly cycle is a mechanism for displaying Chinese seasons.
9. A timepiece movement (1) comprising a working train (10) and a mechanism (100) for displaying the periods of a yearly cycle according to claim 1, said yearly cycle train (120) being directly meshed with the hour wheel (11) of said working train (10).
10. 10. The timepiece movement (1) according to claim 9, characterized in that the hour wheel (11) is a 12-hour wheel (11) that makes one rotation in 12 hours, and the yearly train (120) is directly meshed with the 12-hour wheel (11).
11. The 12-hour wheel (11) has 8 teeth, the indicator (110) showing the period of the year cycle is rotated by a year cycle wheel (112) having 50 teeth, and the gear train of the year cycle train (120) has the following ratio: 34/8*44/8*40/8*50/8 11. A clock movement (1) according to claim 10, characterized in that it comprises:
12. 10. The timepiece movement (1) according to claim 9, characterized in that the hour wheel (11) is a 24-hour wheel that makes one revolution in 24 hours, and the annual train (120) is directly meshed with the 24-hour wheel.
13. The 24-hour wheel has 8 teeth, the indicator (110) showing the period of the year cycle is rotated by a year cycle wheel (112) having 25 teeth, and the gear train of the year cycle train (120) has the following ratio: 34/8*44/8*40/8*25/8 13. A clock movement (1) according to claim 12, characterized in that it comprises:
14. A timepiece (200) comprising a mechanism (100) for displaying the periods of the annual cycle according to claim 1 or comprising a timepiece movement (1) according to claim 9.
15. 15. The timepiece (200) according to claim 14, characterized in that said timepiece (200) is a wristwatch.
Citation Information
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