Luminous clock display using optical coupling through microstructures

The use of optical coupling through microstructures in watch displays simplifies manufacturing and color control, addressing the limitations of fluorescent pigments in luminous watch displays, achieving efficient and cost-effective luminous watch displays with controlled color mixing and extended luminescence.

JP7771255B2Active Publication Date: 2025-11-17THE SWATCH GRP RES & DEVELONMENT LTD
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Patent Information

Application Number
JP2024058792
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2023-06-12
Filing Date
2024-04-01
Publication Date
2025-11-17
Estimated Expiration
2044-04-01

AI Technical Summary

Technical Problem

Existing luminous watch displays rely on fluorescent pigments that require specific LED emission spectra and complex manufacturing, limiting design flexibility and increasing costs.

Method used

A luminous watch display using optical coupling through microstructures, eliminating the need for fluorescent materials and allowing for simpler manufacturing and color control, with light being coupled directly through microstructures on a transparent light guide layer.

Benefits of technology

Enables efficient and cost-effective luminous watch displays with controlled color mixing and extended luminescence duration, avoiding the complexities and limitations of fluorescent materials.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a display device capable of lighting the needle of a clock as needed without using an electric wiping contact.SOLUTION: A wrist watch display device includes at least one light source and a set of needles including at least one first light emitting indicator 1 including a first light guide body 11 coaxial around an axis D of rotation between a dial supporting at least one reference scale on the upper surface and a windshield on the side facing a user and arranged so as to scatter a part of light emitted by the at least one light source. The first light guide body 11 includes a first coupling fine structure 110 arranged so as to allow light to enter into the first light guide body 11 and / or allow the light to be emitted from the first light guide body 11.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a timepiece display device comprising a set of hands including at least one light source and at least one first luminous indicator, coaxial around an axis of rotation between a dial carrying at least one reference scale on its upper surface and a crystal on the side facing the user, and including a first light guide arranged to diffuse a portion of the light emitted by the at least one light source.

[0002] The present invention relates to the field of timepieces, in particular wristwatch displays, and more particularly to luminous displays. [Background technology]

[0003] EP19220169 describes the principle of illuminating a hand using several light sources. A first light source, typically an LED or group of LEDs, remotely excites a second light source, specifically a dot containing fluorescent pigment, located beneath the hand. Therefore, the emission spectrum of the primary light source and the excitation spectrum of the secondary light source must match for the system to be effective. This limits the choice of LEDs that emit sufficiently near 400 nm. Fluorescent pigments have a maximum absorption peak in the ultraviolet wavelengths. The document further describes an opening in the top of the hour hand that allows light to pass through to the minute hand, which obviously complicates the manufacture of such a hand. Summary of the Invention

[0004] It is an object of the present invention to develop a luminous indicator for a watch for display at night or in dark environments using an alternative to the fluorescent or phosphorescent coatings of the prior art.

[0005] To this end, the invention relates to a display device according to claim 1. [Brief explanation of the drawings]

[0006] The objects, advantages and features of the present invention will be better understood by reading the following detailed description, which is given in conjunction with the accompanying drawings. [Figure 1] 1 is a cross-sectional view of a first alternative embodiment of a needle according to the invention, taken through the axis of rotation of said needle; FIG. [Figure 2] 4 is a cross-sectional view of a second alternative embodiment of a needle according to the invention, taken through the axis of rotation of said needle. [Figure 3] 1 shows two superimposed needles of a coaxial set of needles according to the invention, in a cross section through the common axis of rotation of said needles. [Figure 4] 1 is a cross-section through the common axis of rotation of a wristwatch including a set of coaxial hands according to the invention, showing two superimposed hands illuminated by a downward light source. DETAILED DESCRIPTION OF THE INVENTION

[0007] The present invention relates to a luminous watch display using optical coupling through microstructures.

[0008] EP 3845974 A1, incorporated herein by reference, describes a timepiece display device including one or more movable indicators, such as hands, for an analog display device. The indicator comprises a multilayer portion including an opaque metal layer and a transparent light guide layer, forming the indicator's body and head. The head is centered about the indicator's axis of rotation and positioned to receive a light beam at its underside facing away from the user. A fluorescent material is disposed on the transparent light guide layer of the indicator's head, absorbing at least a portion of the light beam and re-emitting a second fluorescent light beam into the transparent light guide layer.

[0009] More specifically, the display device according to patent document EP 3 845 974 A1 comprises a dial and such indicators arranged above the dial, i.e. on the crystal side of the watch, and visible to the user, the respective heads of the indicators being superimposed so as to rotate about a common axis of rotation and fixed to respective arbors, the device comprising a fixed illumination source arranged from below, i.e. on the bottom side of the dial facing away from the user and not visible except in the case of skeleton or mystery watches, arranged to illuminate all the heads of the indicators with a light beam substantially parallel to the common axis of rotation and having a wavelength shorter than that re-emitted by the fluorescent material, which may comprise light-emitting diodes and / or organic LEDs, hereinafter referred to as LEDs, which may comprise miniature laser sources of the VCSEL type mounted on a printed circuit element, hereinafter referred to as PCB, distributed around the periphery of said arbors and arranged below the dial, or similarly arranged.

[0010] Similarly and alternatively, the invention proposes to produce a timepiece display comprising at least one luminous hand, in particular by optical coupling via a microstructure, which, due to the presence of the microstructure, is simpler than the one detailed in EP 3 845 974 A1, which necessarily comprises a fluorescent material, and therefore it is possible to reduce the cost of the hand.

[0011] A particular object of the present invention is to illuminate the hands of a clock as needed without the use of electrical wiping contacts.

[0012] The first proposal concerns the hour hand. In some hands, the hand head extends less or is barely present relative to the hand body. That is, there is no expansion around the hole relative to the hand body. Therefore, there is no obstruction to the flow of light to the minute hand. Such a design avoids the need to create an opening and to manufacture a complex design. The only thing to avoid is direct light leakage when viewed from the side or at a grazing angle.

[0013] The second proposal concerns the coupling of light into a light guide contained in the hands: just as light can leave a light guide by means of structures that change its path (such as prisms or cones), the same type of structures can be used to couple light from an LED into a light guide, these being placed in particular on a PCB located below or above the dial or that forms the dial.

[0014] This also applies to simple surface etching to modify surface roughness. Thus, rather than depositing fluorescent inks, which complicates the process, it is possible to etch the binding structures simultaneously with the extraction structures directly into the master that is used to replicate these structures on the needle light guide.

[0015] In the typical case of a needle set containing multiple needles, several options are available to choose from.

[0016] The first option is to standardize the luminous intensity of at least two adjacent hands, and for this purpose different coupling zone designs (surface, shape, depth) must be considered. By providing a sufficiently large coupling surface for the minute hand, continuous luminous coupling of this hand is guaranteed despite the presence of the hour hand in the light path.

[0017] The use of fluorescent pigments in a given luminous hand is often hindered by color differences between two adjacent hands. While most of the light coupled into the light guide comes from the fluorescent dots, some of it can be coupled in without special equipment, for example, through the edge of the light guide. This involves color mixing between the light emitted by the fluorescent pigment and the original light from the LED. For example, UV LEDs also emit blue light. This color mixing is difficult to control and is different for the hour and minute hands, but it does not exist when the coupling is via microstructures, as the color does not change through these microstructures.

[0018] Another alternative is to take advantage of this effect by using needles of different colors. This can be done by enhancing the color mix between the phosphor and the primary colors of the LED, but this is difficult to control. Or, more simply, fluorescent dots that emit different colors can be used.

[0019] Another alternative embodiment involves replacing the fluorescent material with a phosphorescent material. After a short period of excitation, the user will only see phosphorescence, and therefore the same color on both hands. This approach may also be advantageous in that it maximizes the duration of the luminescent effect with a minimal energy balance. Ambient light seen by the watch and hands can be used in part to recharge the phosphorescent material and generate light in the evening.

[0020] Therefore, in order to provide a luminous display that can still be used in addition to the present invention for colored alternative embodiments without necessarily relying on the use of luminescent or phosphorescent materials, the present invention more particularly relates to a display device 100 for a timepiece 1000, comprising at least one light source 200 and a set of hands 10, between a dial 300 carrying at least one reference scale on its upper surface 301 and a crystal 400 on the side facing the user. The set of hands 10 is movable about an axis of rotation D and, if it comprises several indicators, is coaxial about the axis of rotation D. The set of hands 10 comprises at least one first luminous indicator 1, comprising a first light guide 11 arranged to diffuse a portion of the light emitted by the at least one light source 200.

[0021] According to the present invention, the first light guide 11 includes first coupling microstructures 110 arranged to allow light to enter the first light guide 11 and / or allow light to exit the first light guide 11.

[0022] More particularly, the at least one first light emitting indicator 1 comprises a plurality of layers including a transparent layer 38 and an opaque metal layer 36 forming a first light guide 11 and forming a first head 15 and a first body 16, the first head 15 being centered about said rotation axis D and positioned to receive the light beam 54 on a first lower surface 152 not visible to the user. Such first coupling microstructure 110 is positioned on or in the transparent light guide layer in the head 15 to provide in-coupling to the transparent light guide layer.

[0023] In an alternative embodiment, fluorescent material is disposed on or in the transparent lightguide layer in head 15 .

[0024] In another alternative embodiment, phosphorescent material is disposed on or in the transparent lightguide layer in head 15 .

[0025] More specifically, the coaxial set of needles 10 includes at least a second light emitting indicator 2 between the first light emitting indicator 1 and the windshield 400, the second light emitting indicator 2 including at least one light source 200 and / or a second light guide 21 arranged to diffuse a portion of the light emitted by the first light emitting indicator 1. The second light guide 21 includes second coupling microstructures 210 arranged to allow light to enter the second light guide 21 and / or allow light to exit the second light guide 21.

[0026] More specifically, the coaxial set of needles 10 includes, between the first light-emitting indicator 1 and the windshield 400, a plurality of superimposed coaxial light-emitting indicators, each including a light-emitting indicator disposed thereunder on the side facing away from the windshield 400 and / or a light guide arranged to diffuse a portion of the light emitted by at least one light source 200, and each including a coupling microstructure arranged to allow light to enter the light guide and / or allow light to exit the light guide.

[0027] More particularly, at least one luminous indicator included in this coaxial set of needles 10 includes multiple layers, including an opaque metal layer and a transparent light guide forming layer, forming a head and a body, the head being centered about the rotation axis D and positioned to receive the light beam 54 on a first lower surface not visible to the user. Such bonding microstructures are positioned on or in the transparent light guide layer at the head to absorb at least a portion of the light beam and re-emit a second light beam into the transparent light guide layer.

[0028] More specifically, the fluorescent material is disposed on or in the transparent light guide layer of at least one luminescent indicator contained in a set of coaxial needles 10 in the head so as to absorb at least a portion of the light beam and re-emit a second fluorescent light beam into the transparent light guide layer.

[0029] More specifically, the phosphorescent material is disposed on or within the transparent light guide layer of at least one luminescent indicator included in the coaxial set of needles 10 so as to absorb at least a portion of the light flux and re-emit a second phosphorescent light flux into the transparent light guide layer.

[0030] In another embodiment, interposing a fluorescent or phosphorescent material between the light source 200 and the light emitting indicator facilitates coloring, but compromises the optical coupling solution provided by the fluorescent material to the light guide.

[0031] More specifically, the indicator closest to windshield 400 has a bonding surface that groups together larger bonding microstructures on the side facing away from windshield 400 than the bonding surface of the indicator directly below it.

[0032] More specifically, at least one luminous indicator included in the coaxial set of needles 10 includes a transparent light guide layer arranged to produce total internal reflection of light rays of the second light beam substantially perpendicular to said axis of rotation D.

[0033] More specifically, at least one luminous indicator included in the coaxial set of needles 10 includes multiple layers, including an opaque metal layer and a transparent light guide layer, with an optically insulating layer between the opaque metal layer and the transparent light guide layer. More specifically and without limitation, an adhesive, particularly a resin, is used to assemble the metal portion and the light guide portion of the needle, and this adhesive or resin acts as an insulating layer with a refractive index lower than that of the light guide portion. The difference Δn between the refractive index of the optically insulating layer and the refractive index of the transparent light guide layer is 0.1 or more and 0.5 or less. Although not particularly limited, it is preferable to use a resin with a refractive index of 1.1 or more for this purpose.

[0034] More specifically, the thickness of the optical insulating layer is in the range of 5 μm to 15 μm. This corresponds to using a liquid resin. For other clock applications, such as pendulum or wall clocks, where thickness is less restricted, it is also possible to use a film resin with a maximum thickness limited to 100 μm.

[0035] More specifically, the coaxial needle 10 includes at least one luminescent indicator having a flat upper surface and a flat lower surface perpendicular to the axis of rotation D.

[0036] More particularly, at least one luminescent indicator included in the coaxial set of needles 10 has a head including a central bore in which is located a socket made from an opaque material.

[0037] More specifically, the coaxial set of hands 10 includes a plurality of superimposed coaxial luminous indicators between the first luminous indicator 1 and the crystal 400, each including a head around the axis of rotation D and a body extending substantially perpendicular to the axis of rotation D, and the lower indicator, which is located closer to the dial 300 than the upper indicator located directly above it, has at least one second hole arranged around the central hole of its head on the crystal 400 side, thereby allowing the light beam to pass through the lower indicator through the at least one second hole, whereby at least a portion of the light beam is absorbed by the light guide of the upper indicator.

[0038] More specifically, at least one light source 200 is positioned below the dial 300 near a bottom surface 302 of the dial 300 facing away from the crystal 400 relative to the dial 300, is embedded in the dial 300, or is positioned on a PCB 201 positioned below the dial 300 near the bottom surface 302 of the dial 300.

[0039] More particularly, the at least one light source 200 is a fixed light source comprising light emitting diodes and / or organic light emitting diodes and / or compact laser sources of the VCSEL type distributed around the axis of rotation D.

[0040] More specifically, at least one luminescent indicator included in the coaxial set of needles 10 includes at least one luminescent indicator whose light guide includes a fluorescent material. The light source 200 is a fixed illumination source arranged to illuminate from below all heads of the indicators included in the coaxial set of needles 10 with a light beam that is substantially parallel to the rotation axis D and has a wavelength shorter than the wavelength re-emitted by the fluorescent material.

[0041] More particularly, the at least one luminescent indicator included in the coaxial set of needles 10 includes at least two luminescent indicators whose light guides include fluorescent materials that emit light in different colors.

[0042] The invention further relates to a watch 1000 including at least one such display device 100.

[0043] More particularly, at least one indicator included in the coaxial set of hands 10 is a luminous hand.

[0044] More particularly, at least one indicator included in the coaxial set of needles 10 is a disk.

[0045] In short, the present invention allows light to be coupled directly through the microstructure. It is no longer necessary to couple light by absorption / re-emission through a fluorescent material. By using the microstructure according to the present invention in combination with fluorescent or phosphorescent elements, it is possible to achieve specific color effects.

Claims

1. A display device (100) for a wristwatch (1000), comprising: The watch comprises at least one light source (200), and a set of needles (10) coaxial around a rotation axis (D) including at least one first luminous indicator (1) including a first light guide (11) arranged to diffuse a portion of the light emitted by the at least one light source (200), between a dial (300) carrying at least one reference scale on an upper surface (301) and a crystal (400) on the side facing the user; A display device (100) in which the first light guide (11) includes a first bonding microstructure (110) disposed in a transparent layer of the first light guide, the first bonding microstructure (110) being a structure having a surface roughness modified to change the path of light and arranged to allow light to enter the first light guide (11) and / or exit the first light guide (11) by direct optical coupling.

2. the at least one first light-emitting indicator (1) comprises a plurality of layers including a transparent layer and an opaque metal layer (36) forming the first light guide (11) and forming a first head (15) and a first body (16), the first head (15) being centered with respect to the rotation axis (D) and positioned to receive a light beam at a first lower surface (152) that is not visible to a user; The display device (100) of claim 1, wherein the first coupling microstructure (110) is arranged on or in the transparent layer of the first light guide (11) in the head (15) so as to provide input coupling to the transparent layer of the first light guide (11).

3. The coaxial set of needles (10) includes at least one second light-emitting indicator (2) between the first light-emitting indicator (1) and the windshield (400), the second light-emitting indicator (2) including a second light guide (21) arranged to diffuse a portion of the light emitted by the at least one light source (200) and / or the first light-emitting indicator (1); 2. The display device (100) of claim 1, wherein the second light guide (21) includes a second bonding microstructure (210) disposed in a transparent layer of the second light guide (21), the second bonding microstructure (210) being disposed to allow light to enter and / or exit the second light guide (21).

4. 2. The display device (100) of claim 1, wherein the coaxial set of needles (10) comprises, between the first light-emitting indicator (1) and the windshield (400), a plurality of superimposed coaxial light-emitting indicators, each comprising a light guide arranged to diffuse a portion of light emitted by the at least one light source (200) and / or the light-emitting indicator arranged thereunder on a side facing away from the windshield (400), and each comprising a coupling microstructure arranged to allow light to enter the light guide and / or light to exit the light guide.

5. At least one luminous indicator included in the coaxial set of needles (10) comprises a plurality of layers including an opaque metal layer (36) and a transparent light guide layer, and forms a head and a body, the head being centered about the axis of rotation (D) and positioned to receive a light beam at a first lower surface invisible to a user; 2. The display device (100) of claim 1, wherein the coupling microstructure is disposed on or within the transparent light guide layer in the head so as to absorb at least a portion of the light beam and re-emit a second light beam into the transparent light guide layer.

6. 6. The display device (100) of claim 5, wherein a fluorescent or phosphorescent material is disposed on or in the transparent light guide layer (38) of at least one luminescent indicator included in the set of coaxial needles (10) in the head to absorb at least a portion of the light beam and respectively re-emit a second fluorescent or phosphorescent light beam into the transparent light guide layer.

7. 2. The display device (100) of claim 1, wherein the indicator closest to the windshield (400) has a bonding surface that groups bonding microstructures together, the bonding surface being larger than the bonding surface of the indicator directly below it on the side facing away from the windshield (400).

8. 7. The display device (100) of claim 5 or 6, wherein at least one luminous indicator included in the set of coaxial needles (10) comprises a transparent light guide layer (38), the transparent light guide layer (38) being arranged to generate total internal reflection of light rays of a second light beam substantially perpendicular to the axis of rotation (D).

9. At least one luminous indicator included in the coaxial set of needles (10) comprises a plurality of layers including an opaque metal layer (36) and a transparent light guide layer (38), and includes an optical insulating layer (40) between the opaque metal layer (36) and the transparent light guide layer (38); 2. The display device (100) of claim 1, wherein the difference Δn between the refractive index of the optical insulating layer and the refractive index of the transparent light guide layer (38) is in the range of 0.1 to 0.

5.

10. The display device (100) of claim 9, wherein the optical insulating layer (40) has a thickness in the range of 5 μm to 15 μm.

11. 2. The display device (100) of claim 1, wherein the at least one light-emitting indicator included in the coaxial set of needles (10) includes a flat upper surface and a flat lower surface perpendicular to the axis of rotation (D).

12. 2. The display device (100) of claim 1, wherein at least one luminous indicator included in the coaxial set of needles (10) comprises a head including a central hole in which a socket made of an opaque material is placed.

13. The coaxial set of needles (10) includes a plurality of superimposed coaxial luminous indicators between the first luminous indicator (1) and the windshield (400), each including a head centered on the rotation axis (D) and a body extending substantially perpendicular to the rotation axis (D); The display device (100) of claim 5, wherein the lower indicator, which is located closer to the dial (300) on the side of the crystal (400) than the upper indicator located directly above the lower indicator, has at least one second hole arranged around a central hole in the head, thereby allowing the light beam to pass through the lower indicator through the at least one second hole so that at least a portion of the light beam is absorbed by the light guide of the upper indicator.

14. 2. The display device (100) of claim 1, wherein the at least one light source (200) is located below the dial (300) near a bottom surface (302) of the dial (300) facing away from the crystal (400) relative to the dial (300), is embedded in the dial (300), or is located on a PCB (201) located below the dial (300) near the bottom surface (302) of the dial (300).

15. 15. The display device (100) according to claim 14, wherein the at least one light source (200) is a fixed illumination source comprising light-emitting diodes and / or organic light-emitting diodes and / or compact laser sources of the VCSEL type distributed around the axis of rotation (D).

16. At least one luminescent indicator included in said coaxial set of needles (10) includes at least one luminescent indicator whose light guide comprises a fluorescent material; 2. The display device (100) of claim 1, wherein the light source (200) is a fixed illumination source arranged to illuminate from below all heads of indicators included in the set of coaxial needles (10) with a light beam that is substantially parallel to the axis of rotation (D) and has a wavelength shorter than the wavelength re-emitted by the fluorescent material.

17. 2. The display device (100) of claim 1, wherein the at least one luminous indicator included in the coaxial set of needles (10) includes at least two luminous indicators whose light guides include fluorescent materials that emit light in different colors.

18. 10. A wristwatch (1000) including at least one display device (100) according to claim 1, wherein at least one indicator included in said set of coaxial hands (10) is a luminous hand.

Citation Information

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