Measuring device for a mechanical watch
11372375 · 2022-06-28
Assignee
Inventors
- Alexandre Hundzinger (Neuchâtel, CH)
- Thierry Scordilis (Cormondrèche, CH)
- Yoann Mosteiro Vazquez (Montmagny, CH)
- José Lehmann (Bevaix, CH)
- Giuseppe Zamuner (Chavannes-Renens, CH)
Cpc classification
G04D7/006
PHYSICS
International classification
Abstract
A portable device, and related method, that allows the values of one or more parameters characterising the operation of a mechanical watch to be measured. The device is provided with a contact microphone including a contact piece and a piezoelectric element. The contact piece is brought into physical contact with the case of a watch during a measurement period. The device further includes a power source, such as a rechargeable or replaceable battery, a microprocessor, a memory, and a screen for displaying the values measured, preferably a touch-sensitive screen. Preferably, the dimensions of the device are of a same order of magnitude as the case of a wristwatch. The device may have the shape of a horological eyeglass.
Claims
1. A portable device for testing a mechanical watch, configured so as to be held in the hand and kept in physical contact with the case of a mechanical watch, wherein the device comprises: a contact microphone comprising a contact piece and a piezoelectric element, for detecting the noises of the impulses generated by the movement of the watch, when the contact piece is held in physical contact with the case of the watch, a microprocessor configured so as to calculate, based on the signal generated by the microphone, the values of one or more parameters characterizing the operation of the movement of the watch, in addition to a memory for recording said values, a screen configured so as to display at least said values, and an electrical power source for powering at least the microprocessor, the memory and the screen, wherein said device includes an outer casing, a frame inside the outer casing, and wherein the contact piece has a curved external contact surface configured so as to be placed in contact with the watch case, the contact piece being attached to the frame, such that the curved surface projects at least partially from the outer casing when the device is not in use, wherein the entire external contact surface has a curved surface, wherein the contact piece comprises an elevation surrounding a cavity into which the piezoelectric element is provided, wherein the contact piece is attached a first inner flange of the frame though a compressible washer, wherein the microprocessor is provided on a circuit board attached to a second inner flange of the frame, wherein a hollow space is provided between the contact piece and the circuit board, and wherein the curved surface, which projects at least partially from the outer casing, is configured to allow the compressible washer to compress when a contact force between the portable device and the watch is applied.
2. The device according to claim 1, wherein the microprocessor and the memory are mounted on the circuit board.
3. The device according to claim 1, wherein the frame and at least one portion of the outer casing have a round cylindrical shape, the contact piece being a round piece that projects from the casing on one side of said casing, and wherein the screen is mounted on another side of said casing.
4. The device according to claim 3, wherein the outer casing has the shape of a horological eyeglass, comprising a cylindrical portion and a portion which widens in the direction of a section that is wider than the cylindrical portion, and wherein the screen is mounted in said wide section.
5. The device according to claim 1, wherein the screen is a touch-sensitive screen.
6. A method for testing a mechanical watch in the wound state using a device according to claim 1, the method comprising: acquiring the signal generated by the microphone during a measurement period during which the device is held in contact with the case of the watch, the signal representing a sequence of ‘tick’ and ‘tock’ impulses generated by the movement of the watch, recording, at the end of the measurement period, the value of at least one parameter characterizing the operation of the movement of the watch, and repeating the previous steps at determined intervals.
7. The method according to claim 6, wherein the values recorded comprise one or more of the following values: the frequency of the ‘tick’ impulses and the frequency of the ‘tock’ impulses, the running state, the beat, the amplitude of the movement, and the type of movement.
8. The method according to claim 7, further comprising the recording of the amplitude of the movement, and wherein the amplitude of the movement is calculated is based on the sum of the signals linked to the ‘tick’ impulses and on the sum of the signals linked to the ‘tock’ impulses, during the measurement period, wherein the ‘tick’ impulses are different from the ‘tock’ impulses.
9. The device according to claim 1, wherein the cavity is a cylindrical cavity and the elevation is hollow and cylindrical.
10. The device according to claim 1, wherein the piezoelectric element is provided at the bottom of the cavity.
11. The device according to claim 1, wherein the frame is a cylindrical frame.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The invention will be described in more detail hereinafter using the accompanying drawings, given by way of examples that are in no way limiting, wherein:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF THE INVENTION
(7) The device 1 shown in
(8)
(9) A piezoelectric element 20 is fastened to the bottom of the cavity 11 of the contact piece 10 such that the assembly formed by the piece 10 and the piezoelectric element 20 constitutes a contact microphone. The piezoelectric element 20 is connected by an electric wire 21 to a PCB (printed circuit board) 22 fastened to a second inner flange 23 of the frame 14. The PCB 22 is provided with electronic components, configured so as to process and analyse the signals generated by the microphone, and described in more detail hereinbelow.
(10) A battery carrier 25 made of plastic is inserted in a fixed manner inside the frame 14, above the PCB 22. The battery carrier 25 comprises a housing capable of receiving a replaceable battery 26, for example a standard battery of the CR1632 type. According to other embodiments, the device is provided with a rechargeable battery. Conductors (not shown) are integrated into the battery carrier 25 so as to connect the battery 26 to the PCB 22 in order to power the components of the PCB. The battery carrier 25 is provided with a number of openings 27 for passing spring-loaded pins 28 which will create a connection between the PCB 22 and the digital screen 6 of the device. The screen 6 is provided with a connector 30 which will be in contact with the spring-loaded pins 28.
(11) An outer eyeglass-shaped casing 31 is mounted around the frame 14 and is clipped onto said frame by means of a rib 32 on the outer surface of the frame 14. The rib 32 enters a recess 33 inside the outer casing 31 when the latter is placed around the frame 14 and pushed downwards. The outer casing 31 is made of a synthetic material, for example silicone, which allows for sufficient deformation to produce the connection by clipping. Instead of this type of connection, other means for reversibly attaching the casing 31 to the frame 14 are possible within the scope of the invention. The top section of the casing 31 includes a protective glass 34 for the screen 6, allowing the instructions of the user to be transmitted in the case of a touch-sensitive screen. On the other side, the casing 31 comes into contact with an outer flange 35 of the frame 14.
(12) In order to use the device 1, a user holds the device in his/her hand and positions it with the contact surface 5 in physical contact with a watch case in the wound state, while slightly pressing down on the device. The offset ‘a’ allows this pressure to compress the resilient washer 15, so as to ensure an adequate contact force between the device 1 and the watch case. The device is held in this position using a fastening system for a measurement period of about ten seconds for example. The user can activate the device via the touch-sensitive screen 6 or the device can be configured to be automatically activated as soon as it is positioned and pressed against a surface of the watch. A measurement period is thus started, during which the microphone measures the acoustic noises generated by the mechanical movement of the watch. In a manner known per se, these noises consist of an alternating sequence of two types of impulses of different character, often referred to as ‘tick’ and ‘tock’. Analysing the impulses allows parameters linked to the operation of the movement to be calculated, such as the running state and the beat. These analyses and calculations are carried out by the components mounted on the PCB. Several configurations are possible for these components within the scope of the invention. One example of a configuration is shown in
(13) The signal generated by the piezoelectric element 20 passes via an amplification stage 40 to a processing unit 41 which includes an analogue-to-digital converter (ADC) 42, a microprocessor 43 clocked by an accurate oscillator 44 (preferably of the TOXO—Temperature Compensated Crystal Oscillator type) and a memory 45. The processing unit 41 is connected to a power management unit 46 connected to the battery, and to the digital screen 6. The microprocessor 43 is configured so as to calculate the values of the parameters, record the values in the memory 45, and display the values on the screen 6.
(14)
(15) According to one possible mode of operation of the device of the invention, the values of one or more of these parameters are recorded at the end of each measurement period, for example the values of the five parameters identified hereinabove (frequency, running state, etc.). The values can be identified in an instantaneous manner at the end of the measurement period P. For certain parameters, the values can also be calculated based on the signals detected during the entire period. For example, and as shown in
(16) One specific mode of operation, also shown in
(17) The invention is not limited to the outer shape shown in the figures. In general, the device is portable and compact, preferably having dimensions of the same order of magnitude as the case of a wristwatch. The device is easy to use and is designed to be used by the individual wearing the watch, who can use it to periodically check the operation of his/her watch. The device can thus serve as a diagnostics device capable of being used by the individual wearing a watch, in order to gather operating data and which will allow a specialist to detect defects.