CN109171128B - Wearable electronic equipment and watchband - Google Patents

Wearable electronic equipment and watchband Download PDF

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Publication number
CN109171128B
CN109171128B CN201811444663.7A CN201811444663A CN109171128B CN 109171128 B CN109171128 B CN 109171128B CN 201811444663 A CN201811444663 A CN 201811444663A CN 109171128 B CN109171128 B CN 109171128B
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CN
China
Prior art keywords
clamping
groove
locking block
shaft
groove wall
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Active
Application number
CN201811444663.7A
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Chinese (zh)
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CN109171128A (en
Inventor
王承谦
梁海松
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Goertek Techology Co Ltd
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Goertek Techology Co Ltd
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Priority to CN201811444663.7A priority Critical patent/CN109171128B/en
Publication of CN109171128A publication Critical patent/CN109171128A/en
Application granted granted Critical
Publication of CN109171128B publication Critical patent/CN109171128B/en
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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • A44C5/14Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps characterised by the way of fastening to a wrist-watch or the like

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  • Clamps And Clips (AREA)

Abstract

The invention discloses wearable electronic equipment, which comprises an equipment main body and a belt body. The two ends of the equipment main body are respectively connected with a belt body, at least one end of the equipment main body and one of the corresponding belt bodies are provided with clamping shafts, the other one is provided with a clamping head, the clamping head is provided with a through groove, the through groove is matched with the clamping shafts, and the width of the notch is smaller than the internal width. The middle part of the clamping shaft is provided with a bayonet, a clamping locking part is arranged in the clamping head, the clamping locking part is clamped into the bayonet to axially limit the clamping shaft when pushed out, and the clamping shaft can be inserted into or separated from the through groove when the clamping locking part is retracted. The invention also discloses a watchband, which comprises the clamping head, wherein the clamping head is internally provided with the clamping locking component. This wearable electronic equipment and watchband, the dismantlement and the installation process of the area body and equipment main part are simple and convenient, the quick replacement of the area body of being convenient for to satisfy different users' diversified demand.

Description

Wearable electronic equipment and watchband
Technical Field
The invention relates to the technical field of electronic equipment, in particular to wearable electronic equipment and a watchband.
Background
Wearable electronic devices, such as athletic bracelets, have become an indispensable intimate product for many people, generally comprising a device body and a strap. Taking a bracelet or a watch as an example, a corresponding watchband needs to be replaced in order to meet the requirement of the wrist size or the individual requirements of the global person.
Meanwhile, along with the gradual improvement of the living standard of people, people are not only satisfied with the articles which can be used, but also gradually pursue fashion and individuality, and if the equipment main bodies such as the same bracelet or the watch can be conveniently replaced, the special requirements of people can be satisfied. However, the device body and the watchband of the existing wearable electronic device are mostly fixedly connected, and it is difficult to satisfy the above-mentioned requirement of portable disassembly and assembly.
In summary, how to effectively solve the problems that the device main body and the watchband of the wearable electronic device are difficult to be assembled and disassembled, and the diversified requirements of different users are difficult to be met is a problem that needs to be solved by the person skilled in the art at present.
Disclosure of Invention
In view of the above, a first object of the present invention is to provide a wearable electronic device, which can effectively solve the problems that the device body is difficult to be assembled and disassembled with the watchband, and the diversified demands of different users are difficult to be satisfied, and a second object of the present invention is to provide a watchband.
In order to achieve the first object, the present invention provides the following technical solutions:
the utility model provides a wearable electronic equipment, includes the equipment main part, the both ends of equipment main part are connected with the area body respectively, at least one end of equipment main part with the area body that corresponds one of two has the card axle, and another has the dop, the dop have with card axle matched with logical groove, the notch width of leading to the groove is less than inside width, the card axle middle part has the bayonet socket, be provided with the kayser part in the dop, the kayser part card is gone into during the release the bayonet socket in order to right the card axle carries out the axial spacing, the kayser part is retracted time the card axle can insert or deviate from logical groove.
Preferably, in the wearable electronic device, a mounting hole is formed in a groove wall of the through groove, the locking component comprises a locking block slidably mounted in the mounting hole, and the locking block can be pushed out to protrude out of the groove wall and locked and can retract into the groove wall.
Preferably, in the wearable electronic device, an elastic member is installed in the chuck, two ends of the elastic member respectively abut against the locking block and the chuck, the elastic member deforms when the locking block retracts into the groove wall, and the restoring force of the elastic member pushes the locking block to protrude out of the groove wall when the locking block is released.
Preferably, in the wearable electronic device, the locking block is fixedly connected with a push rod, the push rod is slidably mounted in the chuck, and the locking block is retracted into the groove wall or protrudes out of the groove wall when the push rod is pressed down or lifted up.
Preferably, in the wearable electronic device, the top end of the push rod protrudes out of the chuck.
Preferably, in the wearable electronic device, the top end of the push rod protrudes out of the front surface of the chuck.
Preferably, in the wearable electronic device, an outer wall surface of the clamping shaft is an arc surface, and a wall of the through groove is an arc surface with a shape consistent with that of the outer wall surface of the clamping shaft.
Preferably, in the wearable electronic device, the middle part of the card shaft is broken, and the broken opening forms the bayonet.
Preferably, in the wearable electronic device, a clearance groove is formed in the belt body or the device main body having the clamping shaft, and the clamping head can rotate in the clearance groove with the clamping shaft as a rotating shaft.
The wearable electronic device provided by the invention comprises a device main body and a belt body. The two ends of the equipment main body are respectively connected with a belt body, at least one end of the equipment main body and one of the corresponding belt bodies are provided with clamping shafts, the other one is provided with a clamping head, the clamping head is provided with a through groove, the through groove is matched with the clamping shafts, and the width of the notch is smaller than the internal width. The middle part of the clamping shaft is provided with a bayonet, a clamping locking part is arranged in the clamping head, the clamping locking part is clamped into the bayonet to axially limit the clamping shaft when pushed out, and the clamping shaft can be inserted into or separated from the through groove when the clamping locking part is retracted.
By applying the wearable electronic equipment provided by the invention, at least one end of the equipment main body and one of the corresponding belt bodies are provided with the clamping shaft, and the other is provided with the clamping head. When the belt body is disassembled, the clamping lock part is retracted and withdrawn from the bayonet so that the clamping shaft can move along the through groove, and then external force acts on the clamping shaft to be separated from one side of the through groove, so that the belt body is disassembled. When the belt body is installed, the locking component is retracted to withdraw from the bayonet, then the clamping shaft is inserted into the through groove from one side of the through groove until the locking component is opposite to the bayonet, and the locking component is pushed out of the bayonet to be clamped. On the one hand, the clamping shaft is inserted into the through groove, the width of the notch of the through groove is smaller than the internal width, the clamping shaft cannot be separated from the notch, on the other hand, the clamping shaft and the clamping head cannot be separated from each other due to the fact that the clamping shaft is limited in the clamping groove due to the matching of the clamping part and the clamping head, and therefore the equipment main body and the belt body are connected, and the belt body loading process is completed. The disassembly and assembly processes are simple and convenient, and the belt body can be replaced conveniently and rapidly, so that the diversified requirements of different users can be met.
In order to achieve the second object, the present invention provides the following technical solutions:
the watchband is used for being connected with the equipment main body and comprises a clamping head, wherein the clamping head is provided with a through groove matched with a clamping shaft of the equipment main body, the width of a notch of the through groove is smaller than the internal width, a clamping locking part is arranged in the clamping head, a clamping opening in the middle of the clamping shaft is clamped when the clamping locking part is pushed out so as to axially limit the clamping shaft, and the clamping shaft can be inserted into or separated from the through groove when the clamping locking part is retracted.
When the watchband is connected with the equipment main body, the locking component firstly retracts to withdraw from the bayonet, then the clamping shaft is inserted into the through groove from one side of the through groove until the locking component is opposite to the bayonet, and the locking component is pushed out of the bayonet to be clamped into the bayonet, so that the watchband is installed. When the watchband is disassembled, the clamping and locking component is retracted and withdrawn from the bayonet, so that the clamping shaft can move along the through groove, and further, external force acts on the clamping shaft to be separated from one side of the through groove, and the watchband can be disassembled. The disassembly and the installation process are simple and convenient, and the watchband can be replaced conveniently.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the invention, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic top view of a wearable electronic device according to an embodiment of the invention;
FIG. 2 is an enlarged partial schematic view of FIG. 1;
FIG. 3 is a schematic elevational view of the assembled belt;
FIG. 4 is an enlarged partial schematic view of FIG. 2;
FIG. 5 is a schematic elevational view of the belt body in a disassembled state;
FIG. 6 is an enlarged partial schematic view of FIG. 5;
fig. 7 is a schematic view of a belt installation mode.
The figures are marked as follows:
101. the clamping device comprises a belt body, 102, clamping heads, 201, clamping and locking components, 301, push rods, 302, elastic components, 303, clamping and locking blocks, 401, a device body, 402, clamping shafts, 403, clearance grooves, 404 and clamping openings.
Detailed Description
The embodiment of the invention discloses wearable electronic equipment, which is convenient for quick replacement of watchbands and further meets the personalized requirements of different users.
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-2, fig. 1 is a schematic top view of a wearable electronic device according to an embodiment of the invention; fig. 2 is an enlarged partial schematic view of fig. 1.
In a specific embodiment, the wearable electronic device provided by the present invention includes a device main body 401 and a band body 101.
The two ends of the apparatus main body 401 are connected to the belt body 101, and it should be noted that the two ends of the apparatus main body 401 are connected to two ends of the same belt body 101, and the two ends of the apparatus main body 401 are connected to different belt bodies 101. The device body 401 may be a bracelet body, a watch body, etc., and the specific structure thereof may refer to the prior art and will not be described herein.
At least one end of the apparatus body 401 and the corresponding one of the belt bodies 101 have a chuck shaft 402, and the other has a chuck 102. That is, at least one end of the device main body 401 is detachably and fixedly connected with the corresponding belt body 101, specifically, at least one end of the device main body 401 may have a clamping shaft 402, one end of the corresponding belt body 101 may have a clamping head 102, or at least one end of the device main body may have a clamping head 102, and one end of the corresponding belt body 101 may have a clamping shaft 402. For convenience of description, the clamping shaft 402 is disposed on the apparatus main body 401 in the drawings and the following embodiments, and the clamping head 102 is disposed on the belt body 101. The setting position of the chuck shaft 402 and the chuck 102 in the following embodiments may be changed as needed.
The chuck 102 has a through slot that mates with the chuck shaft 402 and has a slot width that is less than the internal width. It should be noted that, the width of the slot is smaller than the internal width, specifically, the width from the slot bottom to the slot is gradually reduced, or the width of the slot is smaller than the maximum width of the through slot, so that the clamping shaft 402 cannot be separated from the slot after being inserted into the through slot due to the smaller width of the slot. The insertion or removal of the specific clip shaft 402 into or from the through slot may be performed by one end of the through slot, and the through slot may be extended left or right, i.e., by the left or right end of the through slot. The chuck 102 has a through groove, i.e., a recess, and the corresponding chuck shaft 402 has a protrusion, which is engaged with the recess, so that the belt body 101 is not separated due to the engagement of the two mechanisms when a tensile force perpendicular to the chuck shaft 402 is applied to the belt body 101.
The middle part of the clamping shaft 402 is provided with a bayonet 404, a clamping locking part 201 is arranged in the clamping head 102, the clamping locking part 201 is clamped into the bayonet 404 to axially limit the clamping shaft 402 when pushed out, and the clamping shaft 402 can be inserted into or separated from a through groove when the clamping locking part 201 is retracted. The arrangement of the clamping shaft 402 and the through groove enables the clamping shaft 402 and the clamping head 102 to move only along the axial direction. Further, the axial displacement of the clamping shaft 402 and the clamping head 102 is limited by the matching of the clamping and locking component 201 and the clamping opening 404, so that the clamping shaft 402 is prevented from being separated from the two ends of the through groove, and the clamping shaft 402 and the clamping head 102 are effectively connected. The specific structure of the latch member 201 may be configured as desired so that it can be pushed out of engagement with the bayonet 404 and retracted to exit the bayonet 404 so that the card shaft 402 can move along the through slot. The exit bayonet 404 here means that the latch member 201 is retracted until the point of engagement of the latch member 201 drops below the lowest point of the convex surface of the latch shaft 402, and the latch shaft 402 can be inserted into or removed from the through slot. The latch member 201 is specifically configured to be lockable in the pushed-out position, and further to maintain the connection between the card shaft 402 and the bayonet 404 without an external force.
With the wearable electronic device provided by the invention, at least one end of the device main body 401 and one of the corresponding belt bodies 101 are provided with the clamping shaft 402, and the other is provided with the clamping head 102. Referring to fig. 5-6, when the belt body 101 is detached, the latch member 201 is first retracted to withdraw from the bayonet 404, so that the latch shaft 402 can move along the through slot, and then an external force acts on the latch shaft 402 to withdraw from one side of the through slot, thereby completing the detachment of the belt body 101. Referring to fig. 3-4 and fig. 7, when the band body 101 is installed, the latch member 201 is retracted to withdraw from the bayonet 404, then the latch member 402 is inserted into the through slot from one side of the through slot until the latch member 201 is opposite to the bayonet 404, and the latch member 201 is pushed out to be clamped into the bayonet 404, on one hand, the latch member 402 is inserted into the through slot, and the width of the slot opening of the through slot is smaller than the internal width, so as to limit the non-release of the latch member 402 from the slot opening, on the other hand, the cooperation of the latch member 201 and the bayonet 404 limits the axial displacement of the latch member 402 and the chuck 102, so that the latch member 402 is limited in the slot and cannot be released, thereby connecting the device main body 401 with the band body 101, and completing the process of installing the band body 101. The disassembly and assembly processes are simple and convenient, and the belt body 101 can be replaced quickly, so that the diversified requirements of different users can be met.
Further, a mounting hole is formed in the wall of the through groove, a locking block 303 is slidably mounted in the mounting hole, and the locking block 303 can be pushed out to protrude out of the groove wall and locked and can retract into the groove wall. That is, the locking member 201 includes a locking block 303 slidably mounted in the mounting hole, the locking block 303 moves up and down along the mounting hole, and when moving along the mounting hole to protrude from the slot wall, the locking block 303 can be inserted into the bayonet 404 to axially limit the locking shaft 402, and the locking block 303 can be locked in the protruding position, so that the effective connection between the locking shaft 402 and the chuck 102 can be maintained without external force. When the belt body 101 is disassembled, the locking of the locking block 303 is firstly released, and then the locking block 303 is retracted and the locking shaft 402 is pushed to be separated from one end of the through groove. The pushing out or the retraction of the locking block 303 is realized by the movement of the locking block 303 along the mounting hole, the arrangement structure of the locking block 303 is simple, the processing is convenient, the cost is lower, and the reliable connection with the bayonet 404 can be provided. The latch member 201 may also include a telescoping rod member, as desired, with the extension and retraction of the telescoping rod member itself effecting the pushing out and retraction, but with a relatively complex structure.
Further, an elastic member 302 is installed in the chuck 102, two ends of the elastic member 302 respectively prop against the locking block 303 and the chuck 102, the elastic member 302 deforms when the locking block 303 retracts into the groove wall, and the restoring force of the elastic member 302 pushes the locking block 303 to protrude out of the groove wall when the locking block 303 is released. Through the arrangement of the elastic piece 302, when the external force acts on the locking piece 303 to retract, the elastic piece 302 elastically deforms to generate a restoring force, and then when the locking piece 303 is released, the restoring force of the elastic piece 302 pushes the locking piece 303 to reset, that is, the elastic piece 302 pushes the locking piece 303 to protrude out of the groove wall so as to lock the locking piece 303 at the position and be clamped with the bayonet 404. The elastic piece 302 locks the locking piece 303 at the position protruding out of the groove wall, the structure is simple, and the elastic piece 302 can push the locking piece 303 to reset automatically, so that the operation of a user is further simplified. The elastic member 302 may be a spring, such as a compression spring, where two ends of the compression spring respectively abut against the locking block 303 and the chuck 102, and the compression spring is further compressed when the locking block 303 retracts, and the restoring force of the compression spring pushes the locking block 303 to protrude out of the groove wall when the locking block 303 is released by an external force.
Specifically, when the belt body 101 is installed, the external force overcomes the elasticity of the elastic member 302 to retract the locking block 303, then the clamping shaft 402 is inserted into the through groove from one end of the through groove until the locking block 303 is opposite to the bayonet 404, and then the external force is released, so that the locking block 303 automatically resets under the action of the restoring force of the elastic member 302, that is, the elastic member 302 jacks the locking block 303 to the groove wall protruding from the through groove so as to be clamped into the bayonet 404 to realize the axial limiting of the clamping shaft 402. When the belt body 101 is detached, only the external force is needed to overcome the elastic force of the elastic piece 302 to push the locking piece 303 to retract, and then the locking shaft 402 is pushed to be separated from one end of the through groove, so that the belt body 101 and the device main body 401 are detached.
The above description has been made about the condition that the locking piece 303 is locked and protruded and the slot wall by the elastic piece 302, it may be set as required that the locking piece 303 can be detachably and fixedly connected to the pushing-out position and the retraction position respectively, for example, fixing portions such as a buckle are respectively provided on the chuck 102 corresponding to the position of the locking piece 303 protruded and the retraction position of the slot wall, so that the locking piece 303 is detachably and fixedly connected to the position of the locking piece 303 protruded and the retraction position of the slot wall respectively, and the locking of the locking piece 303 can be also realized, so as to ensure the reliable connection between the chuck 102 and the chuck shaft 402.
In order to facilitate external force to act on the locking block 303, the locking block 303 is fixedly connected with a push rod 301, the push rod 301 is slidably mounted in the chuck 102, and the locking block 303 is retracted into the groove wall or protrudes out of the groove wall when the push rod 301 is pressed down or lifted up. The push rod 301 and the locking block 303 can be in an integral structure, and can be reliably connected, or can be in a split structure connected in a conventional fixed connection mode. By the arrangement of the push rod 301, the push rod 301 is pushed when the user operates, so that the mounting hole for mounting the card lock piece 303 can be provided as a blind hole. Specifically, the connection between the push rod 301 and the locking block 303 may be such that when the push rod 301 is pressed, the locking block 303 is retracted into the groove wall, and when the push rod 301 is lifted, the corresponding locking block 303 protrudes out of the groove wall. It is also possible that the latching blocks 303 retract into the groove wall when the push rod 301 is lifted, and that the corresponding latching blocks 303 protrude out of the groove wall when the push rod 301 is pressed down. In the above-mentioned case of providing the elastic member 302, the elastic member 302 pushes the locking block 303 to protrude from the groove wall, and simultaneously, the push rod 301 is correspondingly lifted or pressed.
Preferably, the top end of the push rod 301 protrudes from the chuck 102. The protrusion from the chuck 102 includes both the case where the tip of the push rod 301 protrudes from the chuck 102 when lifted and the case where the tip of the push rod 301 protrudes from the chuck 102 when pressed. Through the arrangement, the operation of a user is facilitated.
Further, the tip of the push rod 301 protrudes from the front surface of the chuck 102. The front surface of the chuck 102 means the front surface of the apparatus body 401 when the chuck 102 is positioned on the apparatus body 401, and the front surface of the belt body 101 when the chuck 102 is positioned on the belt body 101. The top end of the push rod 301 is located on the front surface, so that the operation of a user is facilitated, and when the device main body 401 is worn on the user, the wearing is not interfered, so that the user can wear the push rod conveniently. Of course, the tip of the push rod 301 may be provided to protrude from the side surface of the chuck 102 or the like as needed.
In the above embodiments, the outer wall surface of the clamping shaft 402 is an arc surface, and the groove wall of the through groove is an arc surface having a shape consistent with the outer wall surface of the clamping shaft 402. The particular bayonet 402 may be spherical. The shape of the clip shaft 402 is not limited to the above shape, and may be set according to the need, and the shape of the through groove may be set according to the need.
Specifically, the middle of the card shaft 402 is broken, and the broken opening forms a bayonet 404. That is, the clamping shaft 402 has a segmented structure, and the notches between two adjacent segments of the segments form a bayonet 404, so that the structure is simple, and the notch form is convenient for pushing out and retracting the locking component 201. The bayonet 404 may also be a hole or slot formed in the shaft 402, as desired.
In addition to the above embodiments, the tape body 101 or the apparatus main body 401 having the chuck shaft 402 is provided with the clearance groove 403, and the chuck 102 can rotate in the clearance groove 403 with the chuck shaft 402 as a rotation axis. That is, according to the shape of the chuck 102, the belt body 101 or the device main body 401 is provided with a clearance groove 403, so that the chuck 102 can rotate in the clearance groove 403 with the chuck shaft 402 as a rotating shaft, and specifically, the rotation angle of the chuck 102 relative to the chuck shaft 402 can be controlled through the size setting of the clearance groove 403. By rotating the chuck 102, the belt body 101 can be attached to the wearing part of the user better, and when the device body 401 is a bracelet or a wristwatch, the belt body 101 can be attached to the wrist of the user better. In order to facilitate the rotation of the chuck 102, preferably, the outer wall of the chuck 102 is an arc surface or a spherical surface, and the wall of the clearance groove 403 is a corresponding arc surface or spherical surface. The latch member 201 is held in operative engagement with the bayonet 404 as the chuck 102 rotates about the chuck shaft 402, and therefore, it is preferable that the outer wall surface of the chuck shaft 402 is an arc surface, and the groove wall of the through groove is correspondingly engaged therewith. Preferably, the middle of the chuck shaft 402 is broken, and the broken opening forms a bayonet 404 to facilitate rotation of the chuck 102 about the chuck shaft 402. Of course, other shapes of the chuck 402 and the bayonet 404 may be provided as desired to accommodate rotation of the chuck 102 about the chuck 402.
The invention also provides a watchband which is used for being connected with the equipment main body 401, and comprises a clamp head 102, wherein the clamp head 102 is provided with a through groove which is used for being matched with a clamping shaft 402 of the equipment main body 401, the width of the notch of the through groove is smaller than the internal width, a clamping locking part 201 is arranged in the clamp head 102, when the clamping locking part 201 is pushed out, the clamping locking part is clamped into a clamping opening 404 in the middle part of the clamping shaft 402 so as to axially limit the clamping shaft 402, and when the clamping locking part 201 is retracted, the clamping shaft 402 can be inserted into or pulled out of the through groove. For a specific description of the chuck 102 and the latch member 201, reference is made to the related content in the embodiments of the wearable electronic device, and the description is omitted herein.
When the watchband is connected with the equipment main body 401, the locking component 201 is retracted to withdraw from the bayonet 404, then the clamping shaft 402 is inserted into the through groove from one side of the through groove, and the locking component 201 is pushed out of the bayonet 404 until the locking component 201 is opposite to the bayonet 404, so that the watchband is mounted. When the watchband is detached, the clamping and locking component 201 is retracted and withdrawn from the bayonet 404, so that the clamping shaft 402 can move along the through groove, and further, external force acts on the clamping shaft 402 to be separated from one side of the through groove, and the watchband can be detached. The disassembly and the installation process are simple and convenient, and the watchband can be replaced conveniently.
In the present specification, each embodiment is described in a progressive manner, and each embodiment is mainly described in a different point from other embodiments, and identical and similar parts between the embodiments are all enough to refer to each other.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (6)

1. The wearable electronic equipment comprises an equipment main body (401), wherein two ends of the equipment main body (401) are respectively connected with a belt body (101), and the wearable electronic equipment is characterized in that at least one end of the equipment main body (401) and one of the corresponding belt bodies (101) are provided with clamping shafts (402), the other clamping shaft is provided with clamping heads (102), the clamping heads (102) are provided with through grooves matched with the clamping shafts (402), the width of the notch of each through groove is smaller than the internal width, the middle part of each clamping shaft (402) is provided with a bayonet (404), a clamping part (201) is arranged in each clamping head (102), the clamping parts (201) are clamped into the corresponding bayonet (404) when pushed out so as to axially limit the clamping shafts (402), and the clamping shafts (402) can be inserted into or pulled out of the through grooves when the clamping parts (201) are retracted.
The groove wall of the through groove is provided with a mounting hole, the locking component (201) comprises a locking block (303) which is slidably arranged in the mounting hole, and the locking block (303) can be pushed out to protrude out of the groove wall and be locked and can retract into the groove wall;
an elastic piece (302) is arranged in the clamping head (102), two ends of the elastic piece (302) are respectively propped against the locking block (303) and the clamping head (102), the elastic piece (302) deforms when the locking block (303) is retracted into the groove wall, and the restoring force of the elastic piece (302) pushes the locking block (303) to protrude out of the groove wall when the locking block (303) is released;
the locking block (303) is fixedly connected with a push rod (301), the push rod (301) is slidably mounted in the clamping head (102), and the locking block (303) is retracted into the groove wall or protrudes out of the groove wall when the push rod (301) is pressed down or lifted up;
the belt body (101) or the equipment main body (401) with the clamping shaft (402) is provided with an empty avoiding groove (403), and the clamping head (102) can rotate in the empty avoiding groove (403) by taking the clamping shaft (402) as a rotating shaft.
2. The wearable electronic device according to claim 1, characterized in that the tip of the push rod (301) protrudes from the cartridge (102).
3. The wearable electronic device according to claim 2, characterized in that the tip of the push rod (301) protrudes from the front face of the cartridge (102).
4. The wearable electronic device according to claim 1, wherein the outer wall surface of the clamping shaft (402) is an arc surface, and the groove wall of the through groove is an arc surface consistent with the outer wall surface shape of the clamping shaft (402).
5. The wearable electronic device according to claim 1, characterized in that the middle part of the card shaft (402) is broken, the broken opening forming the bayonet (404).
6. The watchband is used for being connected with a device main body (401), and is characterized by comprising a clamping head (102), wherein the clamping head (102) is provided with a through groove matched with a clamping shaft (402) of the device main body (401), the notch width of the through groove is smaller than the inner width, a clamping locking part (201) is arranged in the clamping head (102), a clamping opening (404) clamped in the middle of the clamping shaft (402) when the clamping locking part (201) is pushed out so as to axially limit the clamping shaft (402), and the clamping shaft (402) can be inserted into or separated from the through groove when the clamping part (201) is retracted;
the groove wall of the through groove is provided with a mounting hole, the locking component (201) comprises a locking block (303) which is slidably arranged in the mounting hole, and the locking block (303) can be pushed out to protrude out of the groove wall and be locked and can retract into the groove wall;
an elastic piece (302) is arranged in the clamping head (102), two ends of the elastic piece (302) are respectively propped against the locking block (303) and the clamping head (102), the elastic piece (302) deforms when the locking block (303) is retracted into the groove wall, and the restoring force of the elastic piece (302) pushes the locking block (303) to protrude out of the groove wall when the locking block (303) is released;
the locking block (303) is fixedly connected with a push rod (301), the push rod (301) is slidably mounted in the clamping head (102), and the locking block (303) is retracted into the groove wall or protrudes out of the groove wall when the push rod (301) is pressed down or lifted up;
the clamping head (102) can rotate in the clearance groove (403) of the equipment main body (401) by taking the clamping shaft (402) as a rotating shaft.
CN201811444663.7A 2018-11-29 2018-11-29 Wearable electronic equipment and watchband Active CN109171128B (en)

Priority Applications (1)

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CN201811444663.7A CN109171128B (en) 2018-11-29 2018-11-29 Wearable electronic equipment and watchband

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CN109662404B (en) * 2019-01-18 2024-02-27 歌尔科技有限公司 Wearable equipment and connection structure thereof
CN111418966A (en) * 2020-05-28 2020-07-17 歌尔科技有限公司 Quick detach wrist wears device and wrist and wears equipment

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EP1820415A1 (en) * 2006-02-20 2007-08-22 Hirsch Armbänder Gesellschaft m.b.H. Device for connecting the end part of a sheet with another section
CN206791839U (en) * 2017-01-20 2017-12-26 广东小天才科技有限公司 Electronics wearable device
CN208030485U (en) * 2018-04-11 2018-11-02 歌尔科技有限公司 A kind of wearable electronic
CN209573484U (en) * 2018-11-29 2019-11-05 歌尔科技有限公司 A kind of wearable electronic and watchband

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1820415A1 (en) * 2006-02-20 2007-08-22 Hirsch Armbänder Gesellschaft m.b.H. Device for connecting the end part of a sheet with another section
CN206791839U (en) * 2017-01-20 2017-12-26 广东小天才科技有限公司 Electronics wearable device
CN208030485U (en) * 2018-04-11 2018-11-02 歌尔科技有限公司 A kind of wearable electronic
CN209573484U (en) * 2018-11-29 2019-11-05 歌尔科技有限公司 A kind of wearable electronic and watchband

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