WATCH BEZEL ENTIRELY OR PARTIALLY FORMING A TACTILE INTERFACE
20230195049 · 2023-06-22
Assignee
Inventors
Cpc classification
G04B19/18
PHYSICS
International classification
Abstract
An electronic watch (1) including a case provided with a bezel (2) entirely or partially forming a tactile interface of the watch (1), the bezel (2) including an antenna circuit (10) of a communication module (6) and being provided with a body (5) including inner and outer faces (16, 17), the inner face (16) including a tactile control circuit (13) of a tactile control member (8) of this watch (1) and the outer face (17) including at least one tactile area (18a, 18b), the tactile control circuit (13) including at least one layer made of a conductive material forming an electrode (22) located beneath the at least one tactile area (18a, 18b).
Claims
1. An electronic watch (1) comprising: a case; and a bezel (2) entirely or partially forming a tactile interface of said watch (1), wherein said bezel (2) comprises an antenna circuit (10) of a communication module (6) and is provided with a body (5) comprising inner and outer faces (16, 17), the inner face (16) comprising a tactile control circuit (13) of a tactile control member (8) of the watch (1) and the outer face (17) comprising at least one tactile area (18a, 18b), said tactile control circuit (13) comprising at least one layer made of a conductive material forming an electrode (22) located beneath said at least one tactile area (18a, 18b).
2. The electronic watch (1) according to claim 1, wherein said at least one layer made of a conductive material forming the electrode (22) coats a portion of the inner face (16) defined beneath said at least one tactile area of the outer face (17) according to a technology of physical vapour deposition of the conductive material or a technology of micrometric-scale selective printing of the conductive material.
3. The electronic watch (1) according to claim 1, wherein the layer made of a conductive material coating said portion of the inner face (16) has a surface area which is smaller than the surface area of said tactile area of the outer face (17).
4. The electronic watch (1) according to claim 1, wherein the inner face (16) comprises several electrodes (22) per tactile area.
5. The electronic watch (1) according to claim 1, wherein the antenna circuit (10) and the tactile control circuit (13) are located within the bezel (2) on either side of an axis of symmetry (B) passing through the centre of the bezel (2).
6. The electronic watch (1) according to claim 1, wherein the antenna circuit (10) comprise first and second strands (19a, 19b) formed over a first portion of the inner face (16), each of said first and second strands (19a, 19b) having a proximal end and a distal end, and extending in parallel between their proximal and distal ends, the first and second strands (19a, 19b) being connected by their distal ends as well as at their proximal ends.
7. The electronic watch (1) according to claim 1, wherein said at least one layer made of a conductive material forming the electrode (22) is formed over a second portion of the inner face (16) of the bezel (2).
8. The electronic watch (1) according to claim 1, wherein the antenna circuit (10) comprises a microcircuit (11) connected to the first and second strands (19a, 19b) via an electrical connecting element (21).
9. The electronic watch (1) according to claim 1, wherein the control circuit (13) comprises a microcontroller (12) connected to said at least one electrode (22) via at least one an electrical connecting element (20).
10. The electronic watch (1) according to claim 1, wherein the bezel (2) is manufactured of at least one dielectric and/or electrically non-conductive material.
11. The electronic watch (1) according to claim 1, wherein the watch is a smartwatch comprising the bezel (2).
Description
BRIEF DESCRIPTION OF THE FIGURES
[0023] Other features and advantages of the present invention will appear more clearly from the following detailed description, made with reference to the appended figures listed hereinbelow:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF THE INVENTION
[0030] Referring to
[0031] In this context, such an electronic watch 1 is provided with a case 3 including a bezel 2 entirely or partially forming a tactile interface of said electronic watch 1 through which a wearer of said watch 1 could interact with the latter for example in order to control horological functions of this watch 1. This case 3 also includes a middle which could be made of metal (for example of steel, preferably stainless steel), of a synthetic material (for example of a composite material comprising a polymer matrix reinforced with fibres, typically carbon fibres) or of ceramic or else of at least one dielectric and/or electrically non-conductive material. The case 3 also comprises a back and a crystal which contribute to form with the middle, a hatch of this case 3. In particular, a display device 7 and an electronic device 4 of said electronic watch 1 are arranged within such a hatch.
[0032] The display device 7 includes display elements which could be analog such as hands and/or digital such as a LCD, LED or OLED screen. Such a display device 7 is located between the crystal and the electronic device 4, a spacer or flange could be arranged between the crystal and this display device 7.
[0033] As regards the electronic device 4, it comprises an electronic horological movement. It is configured to provide at least one piece of information having to be displayed on this display device 7. Non-exhaustively and without limitation, this electronic device 4 includes a communication module 6, a control module of the portable watch, an electrical energy accumulator in particular a battery as well as different sensors such as sensors involved in the determination of a geolocation, an altitude or a temperature of a location or in the determination of physiological, biometric, vital and/or behavioural parameters of the wearer of the electronic watch 1.
[0034] It should be noted that in this configuration, the control module enables the wearer of such an electronic watch 1 to be able to interact with the latter in particular by being able to activate/deactivate/select different functions—for example horological functions—that could be implemented by this electronic watch 1. This control module comprises a tactile control member 8 and in some alternatives other control members such as push-pieces or buttons arranged on the middle.
[0035] In the electronic device 4, the communication module 6 comprises an antenna circuit 10 connected to a microcircuit 11, and the tactile control member 8 comprises a microcontroller 12 connected to a tactile control circuit 13. As we will see later on, the antenna circuit 10 and the control circuit 13 are arranged over an inner face 16 of the bezel 2, the latter entirely or partially forming a tactile interface of said electronic watch 1.
[0036] Preferably, such a bezel 2 is fastened on the middle of the case 3. This bezel 2 may be a part removably fastened on the middle or else a part integrally made with this middle. It may consist of a monolithic part or conversely of a part made into two portions connected together in a reversible and/or tight manner. The bezel 2 comprises a body 5 provided with the aforementioned inner face 16 and with an outer face 17. The outer face 17 is a face of this bezel 2 visible to the wearer which could be manipulated at first and second tactile areas 18a, 18b defined over this face. The bezel 2 may comprise a graduation over its outer face 17. In the illustrated example, the graduation comprises figurative indexes 24 which are in the form of numerals (preferably Arabic numerals).
[0037] For the antenna circuit 10 and the control circuit 13 to operate effectively and/or optimally, this bezel 2 is made of at least one dielectric and/or electrically non-conductive material. Said at least one material allows contributing to the achievement of the capacitive effect of the tactile control member 8. This material is also involved in not deteriorating the radiation of the antenna circuit 10, enlarging its electric length and improving its efficiency with regards to its physical size. For example, such a material may be a polymer, titanium or a ceramic, or any other synthetic material. It should be noted that it is possible that the entire body 5 of this bezel 2 is not made of this material type but only portions of this body 5: [0038] within which are arranged the antenna circuit 10 and the control circuit 13 are made of this material, and/or [0039] comprising the first and second tactile areas 18a, 18b of the external face of the bezel 2 are made of this material.
[0040] Thus, as we have mentioned before, such a bezel 2 is located at the middle and clasps the crystal. It may consist of a rotating bezel or a fixed bezel. The bezel 2 may also be arranged in the case 3 so as to form one-piece with the middle i.e. a middle-bezel. In this variant, the middle and the bezel then have an outer face 17 which is the face visible to the wearer of this watch 1.
[0041] The body 5 of this bezel 2 may comprise arrangements intended to provide access to a printed circuit 14 of the electronic device 4 including the microcontroller 12 of the control member 8 and the microcircuit 11 of the communication module 6. Thus, such arrangements offer the possibility of forming a passage in this body 5 of the bezel 2 in order to connect the control circuit 13, in particular the electrodes 22, and the antenna circuit 10 respectively to the microcontroller 12 of the control member 8 and to the microcircuit 11 of the communication module 6.
[0042] Referring to
[0043] This electrode 22 may comprise a connection terminal 23a intended to link/connect it to the microcontroller 12 of the control member 8. In this configuration, the control circuit 13 comprises an electrical connecting element 20 able to achieve the connection between each electrode 22 and the microcontroller 12. This connecting element 20 is able to cooperate with at least one electrical track 15b of the printed circuit 14 of the electronic device 4 comprising the microcontroller 12. In this manner, each electrode 22 is thus connected to the microcontroller 12 from this connecting element 20 and said at least one electrical track 15b. Finally, one could notice that the tactile control circuit 13 preferably comprises as many connecting elements 20 as electrodes 22 that the inner face 16 of the bezel 2 comprises.
[0044] Referring to
[0045] In the electronic device 4, the communication module 6 is able to enable the connection of the electronic watch 1 to a Bluetooth-type communication network. In other words, the communication module 6 is configured to communicate according to a Bluetooth-type protocol. Alternatively, this communication module 6 could be able to enable the connection of the watch 1 to a GNSS (Geolocation and Navigation Satellite System) satellite location network, such as the GPS (Global Positioning System), Glonass or Galileo. This communication module 6 comprises the antenna circuit 10 connected to the microcircuit 11.
[0046] In the present embodiment, such an antenna circuit 10 is comprised over the inner face 16 of the body 5 of the bezel 2. This antenna circuit 10 comprises first and second strands 19a, 19b each having a proximal end and a distal end, and extending in parallel between their proximal and distal ends. In this antenna circuit 10, the architecture with two strands in parallel allows enlarging the frequency band (100 MHz), necessary for example to communicate over a Bluetooth-type communication network (2.4 GHz). In this antenna circuit 10, the first and second strands 19a, 19b are connected by their distal ends as well as at their proximal ends. In this configuration, the antenna circuit 10 extends essentially according to a circular arc trajectory including two strands 19a, 19b arranged in parallel over the inner face 16 which follows this trajectory. This antenna circuit 10 also comprises an electrical connecting element 21 connected to a connection terminal 23b comprised over the inner face 16 connected to these proximal or distal ends. This electrical connecting element 21 is able to cooperate with at least one electrical track 15a of the printed circuit 14 of the electronic device 4 comprising the microcircuit 11 of the communication module 6. In this manner, the antenna circuit 10 is connected to this microcircuit 11 from this said at least one electrical connecting element 21 and from said at least one electrical track 15a.
[0047] In this configuration, the antenna circuit 10 and the tactile control circuit 13 are located within the bezel 2 on either side of an axis of symmetry B passing through the centre O of the bezel 2 and which is substantially perpendicular or perpendicular to the axis of revolution R of this bezel 2. This axis referenced B separates the bezel 2 into two parts/portions and forms an angle α with the axis A which is comprised between 30 and 40 degrees and which is preferably 36 degrees. Thus, the antenna circuit 10 and the tactile control circuit 13 are entirely or partially made over distinct portions of the inner face 16 of the body 5 of the bezel 2. These two portions are separated by the axis of symmetry B. More specifically, the inner face 16 of the bezel 2 comprises two portions having substantially the same surface area or with the same surface area. This first portion comprises the first and second strands 19a, 19b as well as the connection terminal 23b of this antenna circuit 10. In turn, the second portion comprises the electrodes 22.
[0048] It should be further noted that the control circuit 13 and the antenna circuit 10 could be made over this inner face 16 of the body 5 of the bezel 2 according to a technology of physical vapour deposition of a conductive material or a technology of micrometric-scale selective printing of this conductive material comprising a conductive ink. Technologies of screen-printing with silver over an inner face 16 made of polyester or with copper over an inner face 16 made of polyimide could also be considered.
[0049] It goes without saying that the present invention is not limited to the embodiment that has just been described and that various simple modifications and variants could be considered by a person skilled in the art without departing from the scope of the invention as defined by the appended claims.