Timepiece display device with a non-linear scale
The electromechanical display device addresses the challenge of representing varied time measurements by using a non-linear scale with variable speed control, enabling precise and readable displays of time and distance.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2026-04-02
AI Technical Summary
Existing clock display devices struggle to accurately represent time measurements with significant variations, such as light travel times between celestial bodies or distances between stars, due to the limitations of linear scales.
An electromechanical display device with non-linear scale indices, driven by an electromechanical motor and gear system, and controlled by a quartz regulator, allows for precise time and distance measurements by varying the speed of the display means along a non-linear path.
Enables accurate and readable display of time and distance measurements with large variations, such as light travel times between celestial bodies, by distributing indices non-uniformly to reflect real-time differences.
Smart Images

Figure EP2025074973_02042026_PF_FP_ABST
Abstract
Description
NON-LINEAR SCALE CLOCK DISPLAY DEVICE Technical field of the invention
[0001] The present invention relates to a non-linear scale clock display device. Technological background
[0002] Watches typically feature an analog display device, which can be powered by mechanical energy from a purely mechanical movement, or by electrical energy from an electric accumulator.
[0003] Analog displays often consist of two hands indicating the hours and minutes of the current time, and possibly a third hand indicating the seconds. The dial usually includes reference markers representing a specific duration.
[0004] In the case of electromechanical movements, these hands can be driven by electromechanical motors, for example stepper motors, which are specific to them, so that the movement of said hands is independent of each other.
[0005] Such a design is particularly useful for enabling the hands to perform a specific auxiliary function. For example, it is well known that hands are used to display a stopwatch time.
[0006] In this case, the seconds hand moves at a certain speed corresponding to the dial's indices to display the elapsed time.
[0007] Another known auxiliary function performed by such a layout is the display of multiple time zones. Thus, a needle specific allows you to read at least one hour in another time zone, using particular reference indices.
[0008] However, there are new functions that are not supported by current display devices. Indeed, there are time measurements that are difficult to display with linear scales.
[0009] For example, if we want to display the time it takes for light to travel between celestial bodies, such as the planets of the solar system, it is difficult to represent them because the distances between the sun and the nearest planets of the solar system are small compared to the distances between the sun and the most distant planets. Thus, sunlight takes a few minutes to reach the nearest planets, while it takes several hours to reach the most distant planets.
[0010] The reference indices of the first planets will overlap, while the reference indices of the distant planets are isolated on the dial.
[0011] Similarly, it is difficult to represent the travel times of light between the solar system and more or less distant stars, in which each second or minute corresponds to a light-year of distance. Nearby stars are a few light-years away, while the most distant are thousands, or even millions, of light-years away. Summary of the invention
[0012] The present invention pursues this objective of proposing an electromechanical display device capable of displaying eclectic time and / or distance measurements on the same scale of reference indices.
[0013] To this end, the invention relates to an electromechanical display device comprising display means that move mechanically along a path, and drive means for the display means. display means, the drive means being configured to generate the movement of the display means along the path, and the control means being configured to actuate the drive means.
[0014] The invention is remarkable in that the control means are configured to actuate the drive means to move the display means at a variable speed corresponding to a scale that is at least partly non-linear.
[0015] Thus, the electromechanical display device makes it possible to distribute, in a readable manner, indices along the path of mobile display means, for example around a dial, while producing a precise display and measurement of time.
[0016] Thanks to the invention, particular representations can be displayed, even with a large difference in travel time between stars or stars corresponding to each index.
[0017] According to a particular embodiment of the invention, the display means comprise at least one movable needle and a dial on which the needle moves.
[0018] According to a particular embodiment of the invention, the drive means comprise an electromechanical motor and a gear system connected to the display means.
[0019] According to a particular mode of the invention, the electromechanical motor operates by stepping, for example of the "Lavet" type.
[0020] According to a particular embodiment of the invention, the control means comprise a quartz regulator.
[0021] According to a particular embodiment of the invention, the electromechanical display device includes reference indices arranged along the path of the display means, and distributed according to the scale at least partly non-linear.
[0022] According to a particular mode of the invention, the indices are distributed uniformly along the path of the mobile display means.
[0023] According to a particular embodiment of the invention, the scale, at least partly non-linear, is logarithmic, with the speed of the display means varying by decreasing.
[0024] According to a particular embodiment of the invention, the scale, at least partly non-linear, is inversely logarithmic, with the speed of the display means varying as it increases.
[0025] According to a particular mode of the invention, the control means are configured to accelerate and / or decelerate the display means progressively, the speed following a non-monotonic function.
[0026] According to a particular mode of the invention, the control means are configured to accelerate and / or decelerate the display means only when passing each index.
[0027] According to a particular mode of the invention, the indices are distributed uniformly along the path of the mobile display means.
[0028] According to a particular mode of the invention, the indices are symbols, for example planets.
[0029] According to a particular embodiment of the invention, the indices are graduations, for example in astronomical units.
[0030] According to a particular mode of the invention, the scale is entirely non-linear.
[0031] The invention also relates to a clockwork movement comprising such an electromechanical display device.
[0032] The invention also relates to a timepiece, for example a watch, comprising such a timepiece movement. Brief description of the figures
[0033] The goals, advantages and characteristics: - Figure 1 schematically represents a top view of an electromechanical display device according to a first embodiment of the invention, and - Figure 2 schematically represents a top view of an electromechanical display device according to a second embodiment of the invention. Detailed description of the invention
[0034] Figures 1 and 2 show schematic representations of examples of embodiments of electromechanical display devices 1, 10 according to two embodiments of the invention. These display devices 1, 10 are intended to be mounted on a timepiece, for example a watch.
[0035] The electromechanical display device 1, 10 includes a dial 6 and mechanically movable display means 2, which move along a path on the dial 6. The display means 2 include, for example, at least one movable pointer 7 on the dial 6. The pointer 7 is here movable around a rotating shaft.
[0036] The electromechanical display device 1, 10 is provided with electromechanical drive means 3 for the display means 2, the electromechanical drive means 3 being configured to generate the movement of the display means 2. The electromechanical drive means 3 comprise, for example, an electromechanical motor and a gear system 9 connected to the movable display means 2, and driven by the electromechanical motor.
[0037] The electromechanical motor is, for example, a Lavet-type electromechanical motor, which operates in steps. Thus, needle 7 it turns in jerks, each time the electromechanical motor is activated.
[0038] Alternatively, the electromechanical motor is a continuous electromechanical motor, the display means 2 being continuously mobile.
[0039] The electromechanical display device 1, 10 also includes control means 4 configured to actuate the electromechanical drive means 3 according to the display to be performed. For this purpose, the control means 4 preferably include a quartz regulator for accuracy.
[0040] The electromechanical display device 1, 10 can further be triggered by actuation means, not shown in the figures, which are actuable by a user, for example, by means of a chronograph push button.
[0041] The electromechanical display device 1, 10 also includes reference indices 5, 15 arranged on the dial 6 of the display means 2. The reference indices 5, 15 are arranged along the path of the display means 2, here around the dial 6.
[0042] In Figure 1, the reference indices 5 are the planets of the solar system. The large circle at 12 o'clock represents the Sun, and the smaller circles represent the planets Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, and Neptune, which are arranged around dial 6 in clockwise order. The circles can be replaced with the symbols of each planet.
[0043] Alternatively, in Figure 2, the reference indices 15 are a graduation, for example in astronomical units.
[0044] The reference indices 5 and 15 are distributed on said dial 6 according to a scale that is at least partly non-linear. Preferably, the indices 5 and 15 are distributed uniformly around the dial 6.
[0045] The 5,15 reference index scale can be entirely non-linear over the entire 5,15 index scale. Thus, the speed of the display means 2 varies continuously between the 5,15 reference indices.
[0046] Alternatively, the scale can be linear only between two consecutive reference indices 5 and 15. Thus, the speed of the display means 2 varies with each passage of index 5 and 15, and remains constant between two consecutive reference indices 5 and 15.
[0047] In the example in Figure 2, the scale of the reference indices 5 is logarithmic. Thus, the distance between two consecutive reference indices 5 represents an increasingly larger real distance, even if the distance between two consecutive indices is approximately the same.
[0048] Furthermore, the control means 4 are configured to actuate the electromechanical drive means 3 to move the display means 2 at a variable speed corresponding to the scale, at least in a non-linear manner. The speed of the display means 2 varies according to the non-linear scale on which the reference indices 5, 15 of the dial are arranged.
[0049] In these examples, the electromechanical display device 1, 10 shows the time it takes for sunlight to travel from the sun to the planets of the solar system, from Mercury to Neptune. Thus, from the index of the Sun, the needle takes 3.2 minutes to reach the index of Mercury, 6 minutes to reach that of Venus, 8.3 minutes to reach that of Earth, 12.7 minutes to reach that of Mars, 43.3 minutes to reach that of Jupiter, 78.9 minutes to reach that of Saturn, 159.4 minutes to reach Uranus and 250 minutes to reach that of Neptune.
[0050] Thus, the needle 7 rotates faster between the index of the Sun and the indices of the first planets, while it rotates less and less fast as it progresses along the indices 5 of the following planets, the furthest from the sun.
[0051] The control means 4 are configured to adjust the rotation speed of the needle 7 between each index 5, 15 to obtain the desired result. The control means preferably include a memory containing the passage times of each index 5, 15.
[0052] With an electromechanical stepper motor, the 3 electromechanical control means operate the electromechanical motor step by step according to the elapsed time.
[0053] In one embodiment, for other reference indices, the speed decreases between two consecutive indices, then increases between the following consecutive indices, and / or vice versa, depending on the needs of the electromechanical display device. Thus, the speed follows a non-monotonic function.
[0054] In another embodiment, not shown, the index scale is inversely logarithmic. Thus, the distance between two indices represents an increasingly shorter distance. Consequently, the speed of the display means increases as one moves along the dial.
[0055] Naturally, the invention is not limited to the embodiments of display devices described with reference to the figures, and variants could be envisaged without departing from the scope of the invention.
Claims
DEMANDS 1. Electromechanical clockwork display device (1) comprising mechanically movable display means (2) along a path, electromechanical drive means (3) for the display means (2), the electromechanical drive means (3) being configured to generate the movement of the display means (2) along the path, and control means (4) configured to actuate the electromechanical drive means (3), characterized in that the control means are configured to actuate the electromechanical drive means (3) to move the display means (2) according to a variable speed corresponding to a scale that is at least partly non-linear.
2. Electromechanical display device (10) according to claim 1, wherein the display means (2) comprise at least one movable needle (7) and a dial (6) on which the needle moves.
3. Electromechanical display device (10) according to claim 1 or 2, wherein the electromechanical drive means (3) comprise an electromechanical motor (8) and a gear system (9) connected to the display means (2).
4. Electromechanical display device (10) according to claim 3, wherein the electromechanical motor (8) operates by step, for example of the "Lavet" type.
5. Electromechanical display device according to any one of the preceding claims, wherein the control means (4) comprise a quartz regulator.
6. Electromechanical display device according to any one of the preceding claims, comprising reference indices (5) arranged along the path of the display means (2) distributed along the scale at least partly non-linear.
7. Electromechanical display device according to claim 6, wherein the indices (5) are distributed uniformly over the path of the movable display means (2).
8. Electromechanical display device according to any one of the preceding claims, wherein the scale at least partly non-linear is logarithmic, the speed of the display means (2) varying by decreasing.
9. Electromechanical display device according to any one of the preceding claims, wherein the control means (4) are configured to accelerate and / or decelerate the display means (2) progressively.
10. Electromechanical display device according to claim 6 and any one of the preceding claims, wherein the control means (4) are configured to accelerate and / or decelerate the display means (2) only when passing each index (5).
11. Electromechanical display device according to claim 6 and any one of the preceding claims, wherein the indices (5) are symbols, for example planets.
12. Electromechanical display device according to claim 6 and any one of the preceding claims, wherein the indices (15) are graduations, for example in astronomical units.
13. Electromechanical display device according to any one of the preceding claims, wherein the scale is entirely non-linear.
14. Clock movement, characterized in that it comprises an electromechanical display device (1, 10) according to any one of the preceding claims.
15. Timepiece, for example a watch, characterized in that it comprises a timepiece movement according to claim 14.
Citation Information
Patent Citations
logarithmic device with dial indicating a linear function of a variable, mainly, but not exclusively, time.
CH245134A
Method and device for analog display of a clock or measurement time
DE19507635C2
Method and device for obtaining a continuous movement of a display means
EP2652563B1
Tidal watch
WO1997007436A1
Chronograph watch
WO2023223193A1