CN111552168A - Watch with a memory - Google Patents

Watch with a memory Download PDF

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Publication number
CN111552168A
CN111552168A CN202010319806.2A CN202010319806A CN111552168A CN 111552168 A CN111552168 A CN 111552168A CN 202010319806 A CN202010319806 A CN 202010319806A CN 111552168 A CN111552168 A CN 111552168A
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CN
China
Prior art keywords
watchband
host
host computer
top end
connecting part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202010319806.2A
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Chinese (zh)
Inventor
刘庆龙
高益仟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Continental Wireless Technology Co ltd
Original Assignee
Shenzhen Continental Wireless Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Continental Wireless Technology Co ltd filed Critical Shenzhen Continental Wireless Technology Co ltd
Priority to CN202010319806.2A priority Critical patent/CN111552168A/en
Publication of CN111552168A publication Critical patent/CN111552168A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G17/00Structural details; Housings
    • G04G17/08Housings
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G17/00Structural details; Housings
    • G04G17/02Component assemblies

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

The invention relates to a watch, which comprises a host machine, a watchband and a connecting piece, wherein the host machine is detachably connected with the watchband through the connecting piece, the host machine is provided with a card slot, the card slot is arranged on the side surface of the host machine connected with the watchband, and when the host machine is connected with the watchband, the watchband seals the card slot. The bayonet socket only stably seals the bayonet socket through the watchband, can no longer need hold in the palm wall or sealed the pad through the card and seal, so, the design depth of bayonet socket is littleer, and the bayonet socket is littleer at the inside shared space of host computer, and the inside usable space of host computer is bigger, helps optimizing the inside spare part design of host computer and overall arrangement, and can reduce wrist-watch production, assembly cost.

Description

Watch with a memory
Technical Field
The invention relates to the technical field of watches, in particular to a watch.
Background
In the existing watch provided with a card slot, the card slot is sealed by a card support wall or a sealing gasket.
Disclosure of Invention
The technical problem to be solved by the present invention is to provide a wristwatch for overcoming the above-mentioned drawbacks of the prior art.
The technical scheme adopted by the invention for solving the technical problems is as follows: the utility model provides a watch, includes host computer, watchband and connecting piece, and the host computer passes through the connecting piece with the watchband and can dismantle the connection, and the host computer is provided with the card slot, and the card slot setting is in the host computer side that host computer and watchband are connected, and when the host computer is connected with the watchband, the card slot is sealed to the watchband.
Preferably, the watchband comprises a second connecting part, the second connecting part is provided with a closing part, the bottom end of the closing part is connected with the second connecting part, and the top end of the closing part extends along the length direction of the watchband and in the direction far away from the second connecting part; when the host is connected with the watchband, the top end of the sealing part is contacted with the side surface of the host where the card slot is positioned, and the card slot is sealed.
Preferably, the closure portion tapers in thickness from the bottom end to the top end.
Preferably, the second connecting part is further provided with a clamping part, the bottom end of the clamping part is connected with the inner surface of the second connecting part, and the top end of the clamping part extends along the thickness direction of the watchband and in the direction far away from the second connecting part; when the host is connected with the watchband, the top end of the clamping part is contacted with the side surface of the host where the card inserting opening is positioned or the bottom surface of the host.
Preferably, the second connecting part is also provided with a connecting through hole and a limiting groove, and the connecting through hole is communicated with the limiting groove; the distance from the limiting groove to the top end of the closed part is less than or equal to the distance from the bottom end of the clamping part to the top end of the closed part; when the watchband is connected with the host computer, the spacing groove is totally or partially sheltered from by the host computer.
Preferably, the connecting piece comprises an adjusting handle, when the host is connected with the watchband, the adjusting handle is positioned in the limiting groove, and the length of the adjusting handle is smaller than the depth of the limiting groove.
Preferably, the host further comprises a first connecting part, and the first connecting part is connected with the second connecting part through a connecting piece; the second connecting part is also provided with a guide part, the bottom end of the guide part is connected with the side surface of the second connecting part, the top end of the guide part extends along the width direction of the watchband and the direction far away from the second connecting part, and the projection of the guide part on the side surface of the second connecting part is an arc surrounding the connecting through hole; when the watchband is connected with the host computer, the guiding part is matched with the first connecting part in contour and in clamping fit.
Preferably, the second connecting portion is further provided with a deformation resisting portion, and the deformation resisting portion is arranged on the outer surface of the second connecting portion and extends to the outer surface of the closing portion.
Preferably, the host is also provided with a convex outer edge, the convex outer edge is arranged at the contact part of the top end of the closed part and the side face of the host where the card inserting port is located, and the width of the convex outer edge is greater than or equal to that of the closed part; when the watchband is connected with the host computer, the protruding outer edge contacts with the closing part, and the protruding outer surface of outer edge links up with the surface smoothness of closing part.
Preferably, the main machine comprises a first shell and a second shell, and the first shell and the second shell are connected in an adhesive manner; a force application groove is formed in the joint of the first shell and the second shell and is also formed in the side face, connected with the watchband, of the host; when the host computer is connected with the watchband, the watchband shields the force application groove.
The invention has the beneficial effects that:
1. the plug-in socket is only stably closed by the strap and no longer needs to be closed by the socket wall or the sealing gasket. The design depth of the card inserting port is smaller, the occupied space in the host is smaller, the available space in the host is larger, and the design and layout of parts in the host are optimized. The complexity of part processing or the number of parts is reduced, and the production and assembly cost of the watch can be reduced.
2. The host computer is hidden with the disassembly structure of the watchband. The watch has the advantages that the exposed surface of the watch is more integral and attractive, the idea and the will of a child for disassembling the watchband are effectively reduced, the action of the child for disassembling the watchband is reduced, the disassembling difficulty is high, and the condition of the child for disassembling the watchband can be effectively reduced.
3. The outer surface of the host machine shell is not provided with exposed connecting structures between shells such as screw holes, and the outer surface of the host machine is more integral and more attractive visually.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention will be further described with reference to the accompanying drawings and embodiments, wherein the drawings in the following description are only part of the embodiments of the present invention, and for those skilled in the art, other drawings can be obtained without inventive efforts according to the accompanying drawings:
fig. 1 is a perspective view of a wristwatch according to the present invention, schematically illustrated in fig. 1.
Fig. 2a is a schematic perspective view of a host 1 provided in the present invention.
Fig. 2b is a perspective view of the connector of the present invention.
Fig. 2c is a schematic view of a wristband provided with connectors according to the present invention.
Fig. 3a is a schematic perspective view of a host provided by the present invention 2.
Fig. 3b is a perspective view of the watch band of the present invention.
Fig. 3c is a schematic cross-sectional view of the watch profile of the present invention 1.
FIG. 4a is a schematic side view of a wristband according to the present invention.
FIG. 4b is a schematic view of the exterior surface of the band of the present invention.
Fig. 5a is a schematic perspective view of a host provided in the present invention 3.
Fig. 5b is a schematic cross-sectional view of the watch profile provided by the present invention, fig. 2.
Fig. 6 is a perspective view of the watch of the present invention, schematically illustrated in fig. 2.
Fig. 7 is a perspective view of a host computer 4 provided by the present invention.
Description of the drawings: 10. a watch; 20. a host; 21. a first connecting projection; 211. a first connection hole; 22. A second connecting projection; 23. a card inserting opening; 24. a raised outer edge; 25. a first housing; 26. a second housing; 27. a force application groove; 30. a watchband; 31. a second connecting portion; 311. a connecting through hole; 312. a limiting groove; 313. a closing part; 314. a clamping part; 315. a deformation resistant portion; 316. a guide section; 32. an extension portion; 40. a connecting member; 41. an adjusting handle; 42. and (7) a pin shaft.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention, and it is obvious that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without inventive step, are within the scope of the present invention.
Referring to fig. 1, a wristwatch 10 includes: host 20, wristband 30, and connectors 40 (not shown), where the host 20 and the wristband 30 are detachably connected by the connectors 40.
Specifically, referring to fig. 2a, the main body 20 is provided with a first connecting portion, the first connecting portion is disposed on a side surface of the main body where the main body 20 is connected to the watch band 30, and the first connecting portion is used for connecting the watch band 30 equipped with the connecting member 40. In this embodiment, the first connecting portion includes a first connecting protrusion 21 and a second connecting protrusion 22, the first connecting protrusion 21 has a first connecting hole 221, and the second connecting protrusion 22 has a second connecting hole.
Referring to fig. 2b, the connecting member 40 includes an adjusting handle 41 and a pin 42, wherein the adjusting handle 41 is connected to the pin 42. Moving the adjustment handle 41 changes the exposed length of the pin 42, and thus the length of the connector 40. The maximum length of the connecting member 40 is greater than the distance between the first connecting protrusion 21 and the second connecting protrusion 22, the minimum length is less than the distance between the first connecting protrusion 21 and the second connecting protrusion 22, and the pin shaft 42 can be in pin-hole fit with the first connecting hole 211 and the second connecting hole.
Referring to fig. 2c, band 30 includes a second connecting portion 31 and an extending portion 32, and the second connecting portion 31 is connected to the extending portion 32. The second connecting portion 31 is connected to the first connecting portion by a connecting member.
The second connecting portion 31 has a connecting through hole 311 (not shown in fig. 2 c) and a stopper groove 312, and the connecting through hole 311 penetrates the second connecting portion 31 in the width direction of the watch band. The limit groove 312 is opened on the inner surface of the second connecting portion 31 (when the main unit 20 is connected to the band 30, the band surface is close to the main unit), and the limit groove 312 is communicated with the connecting through hole 311. When the connector 40 is assembled with the band 30, the pin 42 is partially received in the connecting through hole 311, two ends of the pin 42 are respectively exposed out of the second connecting portion 31 from two ends of the connecting through hole 311, and the adjusting handle 41 is located at the position of the limiting groove 312 and can move along the limiting groove 312 under the action of external force to adjust the length of the connector.
Referring to fig. 3a, the host 20 is provided with a card slot 23, the card slot 23 is used for installing a communication card, and the card slot 23 is disposed on a side surface of the host where the first connection portion is located, that is, a side surface of the host where the host 20 is connected to the watchband 30. When the band 30 is connected to the main body 20, the band 30 seals the plug-in socket 23, i.e., the plug-in socket is not connected to the outside. Specifically, the insertion opening 23 is provided between the first coupling projection 21 and the second coupling projection 22. When the main body 20 is connected to the band 30, the band 30 is also located between the first connecting protrusion 21 and the second connecting protrusion 22, and the band 30 closes the plug 23. It is understood that there are many cases where the relative position of the plug 23 and the first connecting portion exists, and there are also many cases where the relative position of the band 30 and the first connecting portion exists, and various combinations of band closing plugs can be formed by simply changing the positional relationship, which is not listed here.
Referring to fig. 3b and 3c, the second connecting portion 31 has a sealing portion 313 and a positioning portion 314.
The bottom end of the closed portion is connected to the end of the second connecting portion 31 far away from the extending portion 32, the top end extends along the length direction of the watch band 30 and in the direction far away from the second connecting portion 31, when the host 20 is connected to the watch band 30, the top end of the closed portion contacts the side surface of the host where the card insertion opening 23 is located at the first contact position, and the closed portion 313 closes the card insertion opening 23. The bottom end of the clamping portion is connected with the inner surface of the second connecting portion, the top end extends along the thickness direction of the watchband 30 and in the direction away from the second connecting portion 31, and when the host 20 is connected with the watchband 30, the top end of the clamping portion contacts with the side face of the host where the card inserting opening 23 is located or the bottom face of the host at the second contact position. In this embodiment, the top end of the blocking portion contacts with the side surface of the host. The inserting opening 23 is located between the first contact position and the second contact position, and the projection of the connecting through hole 311 on the side of the host where the inserting opening 23 is located between the first contact position and the second contact position, that is, the sealing portion 313 and the clamping portion 314 are respectively in contact with the host 20 at two ends of the inserting opening 23 and the connecting through hole 311. Thus, under the combined action of the closing portion 313 and the latching portion 314, that is, under the action of the closing portion 313 and the latching portion 314 contacting and abutting with the host 20 at the two ends of the connecting through hole 311, relative rotation between the second connecting portion and the host is ensured, and under the action of the restriction of the relative movement between the second connecting portion and the host by the connecting member, relative position between the second connecting portion and the host is ensured not to change, so that the closing portion 313 stably closes the socket 23. In this way, the plug-in opening 23 no longer needs to be closed by a card-holding wall or a gasket, but only by the strap 30. Closing the bayonet 23 by the strap 30 only, with respect to the prior art, has the following advantages: firstly, when the depth of the card inserting port 23 is designed, the thickness of the card supporting wall or the sealing gasket is not reserved, the design depth of the card inserting port 23 is smaller, and the occupied space of the card inserting port 23 in the host 20 can be reduced. Further, a reserved empty space can be designed between the sealing portion 313 and the card insertion opening 23, so that the communication card inserted into the card insertion opening 23 can be partially exposed out of the card insertion opening 23 and be located in the reserved empty space, and thus, the depth of the card insertion opening 23 can be further reduced, the available space in the host 20 is larger, and optimization of design and layout of internal parts of the host 20 is facilitated. The card support does not need the card support wall or the sealing gasket to be sealed, so that the processing complexity of the card support can be reduced, or the sealing gasket is not needed any more, the number of parts is reduced, and the production and assembly cost of the watch 10 can be reduced.
Further, the thickness of the closed part is gradually reduced from the bottom end to the top end. That is, the sealing portion is a triangular or triangular-like protruding structure, which has the characteristic of stable shape, and is difficult to have large shape change when elastically deformed by stress, so that the sealing portion 313 can be prevented from being elastically deformed by stress to expose the card slot 23, and the sealing portion 313 can be further ensured to stably seal the card slot 23. In addition, in the present embodiment, the thickness of the blocking portion 314 gradually decreases from the bottom end to the top end. The side surface of the closing portion 313 close to the positioning portion 314 is connected to the side surface of the positioning portion 314 close to the closing portion 313.
Referring to fig. 4a and 4b, the second connecting portion 31 is further provided with a deformation resisting portion 315, the deformation resisting portion 315 is disposed on an outer surface of the second connecting portion 31 and extends to an outer surface of the sealing portion 313, that is, the deformation resisting portion 315 partially covers the outer surface of the second connecting portion and partially covers the outer surface of the sealing portion, that is, the deformation resisting portion is overlapped on the second connecting portion 31 and the sealing portion 313 in a thickness direction of the second connecting portion 31. The deformation resisting portion 315 can enhance the resistance of the closing portion 313 to elastic deformation in the thickness direction of the closing portion, so that the closing portion 313 is more difficult to be elastically deformed, thereby further maintaining the closing of the bayonet socket 23 by the closing portion 313 more stably.
Referring to fig. 5a and 5b, the main body 20 further has a protruding outer edge 24, the protruding outer edge 24 is disposed at the first contact position, and the width of the protruding outer edge 24 is greater than or equal to the distance between the first connecting protrusion 21 and the second connecting protrusion 22, that is, greater than or equal to the width of the sealing portion 313. When the watch band 30 is connected with the main unit 20, the convex outer edge 24 contacts with the top end of the closed part, and the outer surface of the convex outer edge 24 smoothly connects with the outer surface of the closed part 313, namely, at the contact part of the convex outer edge 24 and the closed part 313, the thickness of the convex outer edge 24 is equal to that of the closed part 313. In this embodiment, the convex outer edge is also in contact with the first connection portion.
The provision of the projecting outer edge 24 can change the direction in which the closing portion 313 is urged by an external force. When the protruding outer edge 24 is not provided, an external force may apply a force to the closing portion 313 to move the closing portion 313 away from the side wall of the main body through a contact gap between the closing portion 313 and the side wall of the main body, and the direction of the force is substantially perpendicular to the side wall of the closing portion. The force may cause the closing portion 313 to elastically deform in the thickness direction of the closing portion 313, so that a part of the closing portion 313 (e.g., the top end of the closing portion) may be away from the sidewall of the main body from a state of being in close contact with the sidewall of the main body, and the card slot 23 may be exposed. When the convex outer edge 24 is arranged, a contact gap between the closed part 313 and the side wall of the host is shielded by the convex outer edge 24, external force can only pass through the contact gap between the convex outer edge 24 and the closed part 313, force far away from the convex outer edge 24 is applied to the closed part 313, the direction of the force is directed to the bottom end of the closed part from the top end of the closed part, the distance from the top end to the bottom end of the closed part 313 is far greater than the thickness of the closed part 313, the closed part 313 is difficult to be stressed and elastically deformed, the force is approximately aligned with the pin hole matching connecting piece 40 of the host 20, the connecting piece 40 can provide supporting force opposite to the direction of the force, and the displacement of the closed part 313 in the direction of the. Therefore, when the projecting outer edge 24 is provided, the sealing portion 313 is deformed more easily and cannot be displaced, which contributes to more stably sealing the bayonet 23 by the sealing portion 313 and ensures sealing of the bayonet 23 by the sealing portion 313.
Referring to fig. 4a, 4b and 6, the second connecting portion 31 further has a guiding portion 316, a bottom end of the guiding portion is connected to a surface of the second connecting portion (i.e. a side surface of the second connecting portion or a side surface of the band), the top end of the guiding portion extends along a width direction of the band 30 and a direction away from the second connecting portion 31, a projection of the guiding portion 316 on the side surface of the second connecting portion is an arc surrounding the connecting through hole 311, and the guiding portion 316 is matched with the first connecting portion in contour and engaged with the first connecting portion. The guiding part can limit and guide the assembling and disassembling directions of the first connecting part and the second connecting part 31. Further, when the watch band is connected to the main unit, the guiding portion 316 is also in contact with the side wall of the main unit where the first connecting portion is located, so as to further enhance the limiting effect on the relative rotation between the watch band 30 and the main unit 20, and to keep the relative position relationship between the watch band 30 and the main unit 20 stable.
Referring to fig. 2c and fig. 6, the limiting groove 312 is formed on the inner surface of the second connecting portion 31, and the distance from the limiting groove to the top end of the sealing portion is less than or equal to the distance from the bottom end of the positioning portion to the top end of the sealing portion. When the watch band 30 is connected to the main body 20, the limit groove 312 is completely or partially covered by the main body 20.
Referring to fig. 6, in the first embodiment, the width of the blocking portion is smaller than the depth of the connecting through hole, and the distance from the limiting groove to the top end of the sealing portion is equal to the distance from the bottom end of the blocking portion to the top end of the sealing portion, i.e., the blocking portion 314 and the limiting groove 312 are sequentially arranged in the axial direction of the connecting through hole 311. Thus, when the locking portion 314 contacts the host 20, since the width of the locking portion is smaller than the width of the second connecting portion 31 and the locking portion 314 is a protrusion structure, a free space exists between the second connecting portion 31 and the host 20 and is communicated with the outside, and the limiting groove 312 is located in the free space. When the main unit 20 is connected to the band 30, the stopper groove 312 is partially covered by the main unit 20. At this time, in order to detach the band 30, a tool is inserted from the outside into a space between the second connecting portion 31 and the main unit 20, and the adjustment lever 41 in the stopper groove 312 is adjusted. It can be understood that if the distance from the limiting groove to the top end of the closed part is smaller than the distance from the bottom end of the clamping part to the top end of the closed part, the limiting groove can be completely shielded by the host machine and cannot be seen from the outside by adjusting the setting position of the limiting groove 312. Such as: when the clamping portion contacts with the host, the side surface of the clamping portion close to the host is not attached to the host, a reserved space exists between the clamping portion and the host, the limiting groove is located in the reserved space, and the projection of the clamping portion 314 and the limiting groove 312 in the axial direction of the connecting through hole 311 coincides. ,.
The second embodiment is as follows: the width of the position-locking portion 314 is equal to the width of the second connecting portion 31, and when the position-locking portion 314 contacts the host 20, the side of the position-locking portion close to the host does not fit the host, and a reserved space exists between the position-locking portion and the host, and the reserved space is in a closed state. The distance from the limiting groove to the top end of the closed part is smaller than the distance from the bottom end of the clamping part to the top end of the closed part, namely, the limiting groove 312 is located in the reserved space, at this time, the limiting groove 312 is completely shielded by the host 20, and the limiting groove 312 cannot be seen from the outside. At this time, when the band 30 is to be detached, an external force is applied to the band 30 to elastically deform the band 30, so that the relative position between the locking portion 314 and the main unit 20 changes, a gap communicating with the reserved space is generated, the stopper groove 312 is exposed, and then an external force is applied to the adjustment lever 41 by a tool to detach the band 30.
The hidden arrangement of the position of the limiting groove can make children difficultly find a dismounting structure for separating the host machine 20 and the watchband 30, effectively reduce the idea and the willingness of the children to dismount the watchband 30, reduce the dismounting actions of the watchband 30 of the children, prevent the children from dismounting the watchband 30, further dismount a communication card and keep the effectiveness of the watchband 30 for sealing the bayonet 23; in addition, the exposed surface of the watch 10 can be more integral and beautiful.
Further, the length of the adjusting handle 41 is smaller than the depth of the limiting groove 312, i.e. the adjusting handle 41 is located in the limiting groove 312 and not exposed out of the limiting groove 312. Thus, when the band 30 is removed, the tool is further found and extends into the position-limiting groove 312, and then the adjusting handle 41 in the position-limiting groove 312 is adjusted. Therefore, the structure of the tool for disassembling the watchband 30 is more complex, so that children can find related tools more difficultly, the difficulty in disassembling the watchband 30 is further increased, and the sealing effect and the safety of the communication card and the force application groove 27 are ensured more effectively.
Referring to fig. 7, the main body 20 includes a first housing 25 and a second housing 26, the first housing 25 and the second housing 26 are connected by gluing, a force applying groove 27 is disposed at a connection position of the first housing 25 and the second housing 26, and the force applying groove 27 is used for facilitating separation of the first housing 25 and the second housing 26, even if an external force for relatively separating the first housing 25 and the second housing 26 is applied at the connection position of the first housing 25 and the second housing 26. The urging groove 27 is formed in the side surface of the main unit 20 to which the band 30 is connected, and when the main unit 20 is connected to the band 30, the band 30 shields the urging groove 27. In the present embodiment, the urging groove 27 is provided on the same side as the insertion opening 23. The hidden arrangement of the force application groove 27 can prevent a child from applying force to the force application groove 27 to destroy the adhesion between the first shell 25 and the second shell 26 and relatively separate the first shell 25 and the second shell 26 when the force application groove 27 is exposed; on the other hand, the exposed surface of the main unit 20 looks more integral and beautiful without a connection structure between the main unit 20 housings such as an exposed screw hole.
It will be understood that modifications and variations can be made by persons skilled in the art in light of the above teachings and all such modifications and variations are intended to be included within the scope of the invention as defined in the appended claims.

Claims (10)

1. The utility model provides a watch, includes host computer, watchband and connecting piece, and the host computer passes through the connecting piece with the watchband and can dismantle the connection, its characterized in that: the host computer is provided with the card slot, and the card slot setting is in the host computer side that host computer and watchband are connected, and when the host computer is connected with the watchband, the watchband seals the card slot.
2. A watch according to claim 1, characterized in that: the watchband comprises a second connecting part, the second connecting part is provided with a sealing part, the bottom end of the sealing part is connected with the second connecting part, and the top end of the sealing part extends along the length direction of the watchband and in the direction far away from the second connecting part;
when the host is connected with the watchband, the top end of the sealing part is contacted with the side surface of the host where the card slot is positioned, and the card slot is sealed.
3. A watch according to claim 2, characterized in that: the closed portion has a thickness that gradually decreases from the bottom end to the top end.
4. A watch according to claim 3, characterized in that: the second connecting part is also provided with a clamping part, the bottom end of the clamping part is connected with the inner surface of the second connecting part, and the top end of the clamping part extends along the thickness direction of the watchband and in the direction far away from the second connecting part;
when the host is connected with the watchband, the top end of the clamping part is contacted with the side surface of the host where the card inserting opening is positioned or the bottom surface of the host.
5. A watch according to claim 4, characterized in that: the second connecting part is also provided with a connecting through hole and a limiting groove, and the connecting through hole is communicated with the limiting groove;
the distance from the limiting groove to the top end of the closed part is less than or equal to the distance from the bottom end of the clamping part to the top end of the closed part;
when the watchband is connected with the host computer, the spacing groove is totally or partially sheltered from by the host computer.
6. A watch according to claim 5, characterized in that: the connecting piece comprises an adjusting handle, when the host is connected with the watchband, the adjusting handle is positioned in the limiting groove, and the length of the adjusting handle is smaller than the depth of the limiting groove.
7. A watch according to claim 5, characterized in that: the host machine also comprises a first connecting part, and the first connecting part is connected with the second connecting part through a connecting piece;
the second connecting part is also provided with a guide part, the bottom end of the guide part is connected with the side surface of the second connecting part, the top end of the guide part extends along the width direction of the watchband and the direction far away from the second connecting part, and the projection of the guide part on the side surface of the second connecting part is an arc surrounding the connecting through hole;
when the watchband is connected with the host computer, the guiding part is matched with the first connecting part in contour and in clamping fit.
8. A watch according to claim 2, characterized in that: the second connecting portion still are provided with deformation resistance portion, and deformation resistance portion sets up the surface at the second connecting portion and extends to the surface of sealing.
9. A watch according to claim 2, characterized in that: the host is also provided with a convex outer edge, the convex outer edge is arranged at the contact part of the top end of the closed part and the side surface of the host where the card inserting port is positioned, and the width of the convex outer edge is greater than or equal to that of the closed part;
when the watchband is connected with the host computer, the protruding outer edge contacts with the closing part, and the protruding outer surface of outer edge links up with the surface smoothness of closing part.
10. A watch according to any one of claims 1 to 9, characterised in that: the host comprises a first shell and a second shell, and the first shell is connected with the second shell in an adhesive mode;
a force application groove is formed in the joint of the first shell and the second shell and is also formed in the side face, connected with the watchband, of the host;
when the host computer is connected with the watchband, the watchband shields the force application groove.
CN202010319806.2A 2020-04-22 2020-04-22 Watch with a memory Pending CN111552168A (en)

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CN202010319806.2A CN111552168A (en) 2020-04-22 2020-04-22 Watch with a memory

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Application Number Priority Date Filing Date Title
CN202010319806.2A CN111552168A (en) 2020-04-22 2020-04-22 Watch with a memory

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CN202010319806.2A Pending CN111552168A (en) 2020-04-22 2020-04-22 Watch with a memory

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113273773A (en) * 2021-05-18 2021-08-20 北京小米移动软件有限公司 Coupling assembling and wearing formula equipment

Citations (9)

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