CN215266019U - Button structure of assembled watch movement - Google Patents

Button structure of assembled watch movement Download PDF

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Publication number
CN215266019U
CN215266019U CN202120680522.6U CN202120680522U CN215266019U CN 215266019 U CN215266019 U CN 215266019U CN 202120680522 U CN202120680522 U CN 202120680522U CN 215266019 U CN215266019 U CN 215266019U
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Prior art keywords
key
shell
hole
movement
button
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CN202120680522.6U
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Chinese (zh)
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王晓峰
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Shenzhen Mimitoou Technology Co ltd
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Shenzhen Mimitoou Technology Co ltd
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Abstract

The utility model discloses a button structure of an assembled watch movement, belonging to the field of wearable equipment, which comprises a shell with an assembly hole and a movement detachably connected with the shell, wherein, the side surface of the movement is used for being connected with the assembly hole in a matching way; the side surface of the machine core is provided with a key hole, the periphery surrounding the key hole is provided with a sunken position, and after the key is assembled to the key hole, the key protrudes out of the key hole and the protruding height is lower than the depth of the sunken position; compared with the prior art, the button neither influences the assembly of core and shell and can directly press the button again after core and shell separation, and when the user changed the shell, the button still can be directly pressed, and user experience feels better.

Description

Button structure of assembled watch movement
Technical Field
The utility model relates to a wrist-watch field, a concrete assembly is button structure of watch movement.
Background
A watch, which is an instrument worn on the wrist for timing/displaying time; both precious watches suitable for adults and smart watches suitable for children; smart watches are often used for children's conversations and include a watchband and a movement; the existing watch movement is not unified and standardized, and along with the change of the watchband and the shell, the watch movement needs to be opened again to adjust production for matching with a new watch shell and the watchband. Therefore, the appearance originality of each product needs to be opened, debugged, prepared and the like; when the chip is updated and upgraded, the whole series of products are debugged and replaced again, the workload is large, the task load of processing old inventory after new inventory is heavy, and the cost of loss is more if the old inventory cannot be processed and used boring and scrapping.
In order to solve this problem, the prior application with patent number 201922311789.3 discloses a standard movement for a smart watch; the problems can be effectively solved, but in order to achieve the portability of assembling the movement and the shell in the scheme, the keys of the movement are designed to be hidden keys, and the hidden 3 keys cannot be directly pressed after the movement is separated from the watch shell; when children use the machine core, if the shell is broken carelessly, the machine core key can not be used in the neutral period of buying and replacing the shell again, and certain inconvenience is brought to users.
SUMMERY OF THE UTILITY MODEL
To the weak point that exists among the above-mentioned technique, the utility model provides a button structure of assembled watch core encircles the periphery in key hole and is equipped with sunken position on the core, and the button is joined in marriage and is adorned to the key hole after, and the protrusion highly is less than the degree of depth of sunken position in key hole and protrusion, can directly press the button again after core and shell separation in the assembly of neither influencing core and shell like this, and when the user changes the shell, the button still can continue to use, and user experience feels better.
In order to achieve the purpose, the utility model provides a button structure of an assembled watch movement, which comprises a shell with an assembly hole and a movement detachably connected with the shell, wherein the side surface of the movement is used for being in adaptive connection with the assembly hole; the side surface of the machine core is provided with a key hole, the periphery surrounding the key hole is provided with a sunken position, and after the key is assembled to the key hole, the key protrudes out of the key hole and the protruding height is lower than the depth of the sunken position.
According to the specific scheme, the movement comprises an electronic component and a display panel, a key penetrates through a key hole to be linked with the electronic component, the electronic component is stimulated after the key is pressed, and the electronic component generates a corresponding signal to change the display state of the display panel or display information.
In a specific scheme, an additional key is arranged on a shell and penetrates through the shell; the head end protrudes out of the outer wall of the shell, and the tail end protrudes out of the inner wall of the shell; when the machine core is assembled with the shell, the head end of the attached key is pressed, and the tail end of the attached key is abutted against the key.
According to the specific scheme, the movement comprises an annular framework, an electronic assembly is arranged in the annular framework, a display panel is arranged on the top surface of the annular framework, a key hole is formed in an annular side wall, and the thickness of the side wall of the annular framework is 1-2 mm; the depth of the concave position is 0.5-1 mm.
According to the specific scheme, the machine core is further provided with a mounting groove, a clamping support is arranged in the mounting groove, and one side of the clamping support is connected with a clamping plug used for sealing the mounting groove; and the clamping plug does not protrude out of the side surface of the machine core after sealing the mounting groove.
In the specific scheme, a lug is arranged on the inner wall of the assembling hole, and a groove is arranged on the side surface of the machine core; when the lug is matched and clamped with the groove, the machine core is matched and connected with the shell.
In the specific scheme, one surface of the bump, which is parallel to the inner wall of the assembly hole, is a front surface, two surfaces adjacent to the front surface are a top surface and a bottom surface, and the front surface, the top surface and the bottom surface are in transition through inclined surfaces; when the projection is clamped into the groove or the projection is separated from the groove, the edge of the groove slides along the inclined plane.
In the specific scheme, a plurality of lugs are distributed at intervals around the inner wall of the assembling hole; the number and the position of the grooves are arranged corresponding to the lugs.
In a specific scheme, the shell is made of hard plastic materials.
In a specific scheme, two opposite surfaces of the shell are used for connecting the watchband.
The utility model has the advantages that: the utility model provides a button structure of an assembled watch movement, which comprises a shell with an assembly hole and a movement detachably connected with the shell, wherein the side surface of the movement is used for being in adaptive connection with the assembly hole; the side surface of the machine core is provided with a key hole, the periphery surrounding the key hole is provided with a sunken position, and after the key is assembled to the key hole, the key protrudes out of the key hole and the protruding height is lower than the depth of the sunken position; compared with the prior art, the button neither influences the assembly of core and shell and can directly press the button again after core and shell separation, and when the user changed the shell, the button still can be directly pressed, and user experience feels better.
Drawings
FIG. 1 is an overall structure diagram of the present invention;
FIG. 2 is a view of the structure of the present invention showing the separation of the casing and the core;
FIG. 3 is an exploded view of the present invention;
FIG. 4 is a front structure view of the case and the core of the present invention separated from each other;
fig. 5 is an enlarged view of the bump structure of fig. 4.
The main element symbols are as follows:
1. a housing; 11. an additional key; 12. a bump; 2. a movement; 21. a framework; 22. a display panel; 23. pressing a key; 24. a recessed position; 25. mounting grooves; 26. and (4) a groove.
Detailed Description
In order to make the present invention clearer, the present invention will be further described with reference to the accompanying drawings.
In the case of the conventional assembled wristwatch structure as described in the background art, in order to ensure smooth assembly of the movement 2; the key 23 on the core 2 is set as a hidden key 23, the hidden key 23 cannot be directly pressed by fingers, and the key 23 on the core 2 can be touched only by pressing the additional key 2311 on the shell 1 after the core 2 is assembled with the shell 1; if a child carelessly breaks the shell 1 when using the novel multifunctional electronic clock, the key 23 of the movement 2 cannot be used in the neutral period of buying and replacing the shell 1 again, and certain inconvenience is brought to a user; based on this, the utility model provides a button 23 structure of assembled watch movement 2, refer to fig. 1 and fig. 2, it includes the shell 1 equipped with the pilot hole and the movement 2 that is connected with shell 1 can dismantle, the side of movement 2 is used for being connected with the pilot hole adaptation; a key 23 hole is arranged on the side surface of the machine core 2, a concave position 24 is arranged around the periphery of the key 23 hole, and the key 23 is assembled to the key 23 hole and then protrudes out of the key 23 hole, and the protruding height is lower than the depth of the concave position 24; compared with the prior art, the button 23 neither influences the assembly of core 2 and shell 1, can directly press the button 23 after core 2 and shell 1 separate, and when the user changed shell 1, the button 23 still can be directly pressed, and user experience feels better.
The structure of assembling the watch movement 2 and the shell 1 is very suitable for the innovation of the watch appearance style, the functional elements of the watch are mainly concentrated on the movement 2, and the appearance design is mainly concentrated on the shell 1; once the appearance of the traditional integrated watch is updated or the function of the movement 2 is updated, the traditional integrated watch needs to be replaced with the movement 2; the workload is various, the inventory task amount after the old inventory is processed is great, if the old inventory can not be processed and used, the old inventory needs to be scrapped, and the loss cost is more; the assembled watch can well solve the problem, but the raised keys 23 on the movement 2 can be a barrier in assembly, so that the case is set to be hidden in the prior art, so that the problem can be effectively avoided, but the hidden problem brings new problems to user experience; the innovative structure of this utility can compromise two aspects of assembly and user experience.
The shell 1 of the utility model is made of hard plastic; materials such as PVB, PC, PP, PVC, PE, PET, but not limited thereto; if the cost is not considered, the silica gel can be directly selected as the material of the shell 1, and because the silica gel is soft gel, the assembly process of the core 2 and the shell 1 cannot be influenced even if the key 23 of the core 2 is protruded; compared with soft rubber, the hard plastic adopted by the utility model can greatly reduce the cost of the shell, and meanwhile, the innovative structure is designed on the hard shell, thus achieving the same effect as the soft rubber; this is also another advantage of the inventive structure of the present invention.
Referring to fig. 3 and 4, the movement 2 includes an electronic component and a display panel 22, the button 23 penetrates through a hole of the button 23 to be linked with the electronic component, the electronic component is stimulated after the button 23 is pressed, and the electronic component generates a corresponding signal to change the display state or display information of the display panel 22; the electronic components comprise a PCB, a battery, contacts designed on the PCB for contacting the keys 23, and the like; the display panel 22 displays a time signal or a telephone number or a finder screen at the time of photographing or the like.
In this embodiment, the housing 1 is provided with an additional key 2311, and the additional key 2311 penetrates through the housing 1; the head end protrudes out of the outer wall of the shell 1, and the tail end protrudes out of the inner wall of the shell 1; when the machine core 2 is assembled with the shell 1, the head end of the attached key 23 is pressed, and the tail end of the attached key 23 is abutted against the key 23; when the movement 2 is assembled with the shell 1, the functions of starting up, shutting down, setting time or communicating and the like can be completed by pressing the additional key 2311; when the movement 2 is taken out, the push-button 23 needs to be directly pressed to complete the above function.
In this embodiment, the movement 2 includes an annular frame 21, the electronic component is disposed in the annular frame 21, the display panel 22 is disposed on the top surface of the annular frame 21, the holes of the keys 23 are disposed on the annular side wall, and the thickness of the side wall of the annular frame 21 is 1-2 mm; the depth of the concave position 24 is 0.5-1 mm; it is worth mentioning here that on the premise of ensuring that the volume of the movement 2 does not become larger; if the depth of the recessed position 24 is greater than the thickness of the side wall of the annular framework 21, the side wall of the framework 21 is recessed, and the electronic components in the movement 2 cannot be placed; if the depth of the recessed portion 24 is too small, it is difficult to ensure that the protruding portion protrudes out of the hole of the key 23 and the protruding height is lower than the depth of the recessed portion 24.
In this embodiment, the movement 2 is further provided with an installation groove 25, a clamping support is arranged in the installation groove 25, and one side of the clamping support is connected with a clamping plug for sealing the installation groove 25; and the clamping plug does not protrude out of the side surface of the machine core 2 after sealing the mounting groove 25; the assembly process is not hindered; the card holder is used for placing the SD card.
Referring to fig. 5, the inner wall of the assembly hole is provided with a bump 12, and the side surface of the movement 2 is provided with a groove 26; when the convex block 12 is matched and clamped with the groove 26, the movement 2 is matched and connected with the shell 1; in a preferred scheme, one surface of the bump 12 parallel to the inner wall of the assembly hole is a front surface, two surfaces adjacent to the front surface are a top surface and a bottom surface, and the front surface, the top surface and the bottom surface are in transition through inclined surfaces; when the projection 12 is snapped into the groove 26 or the projection 12 is separated from the groove 26, the edge of the groove 26 slides along the slope; the inclined plane can play a guiding role, and the hand feeling is smoother when the movement 2 is assembled and disassembled.
In this embodiment, the plurality of bumps 12 are distributed around the inner wall of the assembling hole at intervals; the number and the positions of the grooves 26 are arranged corresponding to the lugs 12; the plurality of lugs 12 are distributed in different directions of the assembly holes; the stability of assembly is improved; the movement 2 cannot fall off due to the force in a single direction.
In the present embodiment, two opposite sides of the case 1 are used for strap attachment; the watch strap is rotatably connected to the case 1 by a pin.
The utility model has the advantages that:
1. the side surface of the machine core is used for being in adaptive connection with the assembling hole; the side surface of the machine core is provided with a key hole, the periphery surrounding the key hole is provided with a sunken position, and after the key is assembled to the key hole, the key protrudes out of the key hole and the protruding height is lower than the depth of the sunken position; compared with the prior art, the button neither influences the assembly of core and shell and can directly press the button again after core and shell separation, and when the user changed the shell, the button still can be directly pressed, and user experience feels better.
2. The shell of the utility model is made of hard plastic; the cost is low.
3. The front surface, the top surface and the bottom surface are in transition through inclined planes; when the lug is clamped into the groove or the lug is separated from the groove, the edge of the groove slides along the inclined plane; the inclined surface can play a guiding role, and the movement is more smooth when being assembled and disassembled.
The above disclosure is only for the specific embodiments of the present invention, but the present invention is not limited thereto, and any changes that can be made by those skilled in the art should fall within the protection scope of the present invention.

Claims (9)

1. A button structure of an assembled watch movement comprises a shell provided with an assembling hole and the movement detachably connected with the shell, wherein the side surface of the movement is used for being in adaptive connection with the assembling hole; the key is characterized in that a key hole is arranged on the side surface of the machine core, a concave position is arranged around the periphery of the key hole, and the key protrudes out of the key hole after being assembled to the key hole and the protruding height is lower than the depth of the concave position; the shell is provided with an additional key which penetrates through the shell; the head end protrudes out of the outer wall of the shell, and the tail end protrudes out of the inner wall of the assembly hole; when the machine core is assembled with the shell, the head end of the attached key is pressed, and the tail end of the attached key is abutted against the key.
2. The button structure of an assembled watch movement according to claim 1, wherein the movement includes an electronic component and a display panel, the button penetrates through the button hole to be linked with the electronic component, the electronic component is stimulated after the button is pressed, and the electronic component generates a corresponding signal to change a display state of the display panel or display information.
3. A push-button arrangement for a fabricated watch movement according to claim 2, wherein the movement includes an annular frame; the electronic assembly is arranged in the annular framework, the display panel is arranged on the top surface of the annular framework, the key hole is arranged on the annular side wall, and the thickness of the side wall of the annular framework is 1-2 mm; the depth of the concave position is 0.5-1 mm.
4. The button structure of an assembled watch movement according to claim 1, wherein the movement is further provided with an installation groove, a card holder is arranged in the installation groove, and a card plug for sealing the installation groove is connected to one side of the card holder; and the clamping plug does not protrude out of the side surface of the machine core after sealing the mounting groove.
5. A push-button structure of a movement of an assembled wristwatch as in claim 1, wherein the inner wall of the assembly hole is provided with a projection, and the side of the movement is provided with a groove; when the lug is matched and clamped with the groove, the machine core is matched and connected with the shell.
6. The button structure of an assembled watch movement according to claim 5, wherein one side of the projection parallel to the inner wall of the assembly hole is a front side, two sides adjacent to the front side are a top side and a bottom side, and the front side and the top side and the bottom side are both transited through inclined planes; when the projection is clamped into the groove or the projection is separated from the groove, the edge of the groove slides along the inclined plane.
7. A push-button structure of a fabricated watch movement according to claim 5, wherein the number of the protrusions is plural, and the protrusions are distributed at intervals around the inner wall of the assembly hole; the number and the position of the grooves are arranged corresponding to the lugs.
8. The push-button structure of an assembled watch movement of claim 1, wherein the housing is made of a hard plastic material.
9. A push-button arrangement for a fabricated watch movement according to claim 1, wherein the opposite faces of the case are adapted for strap attachment.
CN202120680522.6U 2021-04-02 2021-04-02 Button structure of assembled watch movement Active CN215266019U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120680522.6U CN215266019U (en) 2021-04-02 2021-04-02 Button structure of assembled watch movement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120680522.6U CN215266019U (en) 2021-04-02 2021-04-02 Button structure of assembled watch movement

Publications (1)

Publication Number Publication Date
CN215266019U true CN215266019U (en) 2021-12-21

Family

ID=79507372

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120680522.6U Active CN215266019U (en) 2021-04-02 2021-04-02 Button structure of assembled watch movement

Country Status (1)

Country Link
CN (1) CN215266019U (en)

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