Flip smartwatch

By designing a flipped smart watch, the bottom bracket and holding structure are used to achieve rapid and accurate overlap of the watch host, solving the problems of inconvenient use and short service life in the prior art, and improving the compactness and appearance expressiveness of the equipment.

CN110133991BActive Publication Date: 2025-06-24GUANGDONG XIAOTIANCAI TECH CO LTD
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Patent Information

Application Number
CN201811152739.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2018-09-29
Publication Date
2025-06-24
Estimated Expiration
2038-09-29

AI Technical Summary

Technical Problem

When shooting at different angles, users need to rotate their arms, which is inconvenient to use; and after the watch with increased rotation axis rotates several times, the dial and strap are prone to fail to overlap normally, which affects the service life.

Method used

A flip smart watch is designed. By setting the bottom bracket, watch host, retaining structure and watch strap, the watch host can rotate relative to the bottom bracket, and the watch host and the bottom bracket are maintained through the retaining structure without turning.

Benefits of technology

It realizes that the watch host can be quickly and accurately overlap after multiple flips, extends the service life of the smartwatch, simplifies structural design, improves compactness and appearance expressiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a flip smart watch, which includes a bottom bracket, a watch main body, a holding structure and a watch band. The bottom bracket includes a first end provided with a first connecting portion and a second end provided with a second connecting portion. The watch main body is connected to the first connecting portion and can rotate relative to the bottom bracket and switch between a first state and a second state. The holding structure is configured to be connected to the watch main body and the bottom bracket so that the watch main body can be kept in the first state relative to the bottom bracket. The two ends of the watch band are respectively connected to the first connecting portion and the second connecting portion. In the flip smart watch provided by the embodiment of the present invention, by arranging the holding structure, the holding structure is used to enable the watch main body to be kept in a stacked state relative to the bottom bracket when not in need of rotation, so that the use of the smart watch is no different from that of an ordinary watch, effectively meeting different use requirements of users.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart watches, and in particular to a flip smart watch. Background Art

[0002] At present, most smart watches on the market are usually equipped with a single camera module to realize the shooting function. When users wear smart watches on their hands, if they want to shoot at different angles, they can usually only do so by rotating their arms, which is very inconvenient. Based on this, some watches with watch dials that can rotate relative to the straps have emerged on the market. However, this type of watch usually adds a rotating shaft to the watch dial to achieve rotation. After multiple rotations, it is easy for the watch dial and the strap to not overlap normally, which is not conducive to the normal use of the watch dial, thereby affecting the service life of the watch. Summary of the invention

[0003] The embodiment of the present invention discloses a flip smart watch, which can still be quickly and accurately folded after the watch host of the smart watch is flipped multiple times without affecting the service life of the smart watch.

[0004] In order to achieve the above-mentioned object, the embodiment of the present invention discloses a flip smart watch, comprising

[0005] A bottom bracket, the bottom bracket comprising a first end and a second end arranged opposite to each other, the first end being provided with a first connecting portion, and the second end being provided with a second connecting portion;

[0006] A watch host, the watch host is rotatably connected to the first connecting portion of the bottom bracket, and the watch host can rotate relative to the bottom bracket and switch between a first state and a second state;

[0007] a holding structure, wherein the holding structure is configured to be connected to the watch host and the bottom bracket so that the watch host maintains the first state relative to the bottom bracket; and

[0008] A watch strap, wherein two ends of the watch strap are respectively connected to the first connecting portion and the second connecting portion;

[0009] The first state is a state in which the watch main body is stacked on the bottom bracket, and the second state is a state in which the watch main body forms a certain angle with respect to the bottom bracket.

[0010] As an optional implementation, in an embodiment of the present invention, the retaining structure includes a button structure and / or a magnetic attraction structure.

[0011] As an alternative implementation, in an embodiment of the present invention, the button structure includes a pressing component, a fastening component, and a first elastic reset member. The pressing component is pressably disposed on the watch main body. One end of the fastening component abuts against the pressing component, and the other end of the fastening component is used for fastening connection with or separation from the bottom bracket.

[0012] The first elastic reset member is disposed at the one end of the fastening component, and the first elastic reset member is used to provide a force for maintaining the fastening connection between the other end of the fastening component and the bottom bracket.

[0013] As an alternative implementation, in an embodiment of the present invention, the button structure further includes a second elastic reset member. The second elastic reset member is arranged to be connected with the pressing component to provide a force for the pressing component to maintain its unpressed state.

[0014] As an alternative implementation, in an embodiment of the present invention, a positioning structure is provided at the bottom or inside of the watch main body. The positioning structure is used to position the pressing component and the fastening component.

[0015] As an alternative implementation, in an embodiment of the present invention, the positioning structure is provided at the bottom of the watch main body. The abutting portion of the pressing component is disposed in the positioning structure and abuts against the fastening component, and the pressing portion of the pressing component extends out from the bottom of the watch main body.

[0016] The fastening component is disposed in the positioning structure, and the other end of the fastening component extends out from the bottom of the watch main body and is fastened to the bottom bracket.

[0017] As an alternative implementation, in an embodiment of the present invention, the positioning structure includes a positioning groove provided at the bottom of the watch main body and a fixed cover plate covering the positioning groove. The fixed cover plate is used to cover the pressing component and the fastening component located on the positioning structure.

[0018] As an alternative implementation, in an embodiment of the present invention, the fixed cover plate is provided with a fixed card slot corresponding to the positioning groove and having an opening facing the positioning groove. The pressing component and the fastening component are disposed in the positioning groove and the fixed card slot.

[0019] As an alternative implementation, in an embodiment of the present invention, the positioning structure is provided inside the watch main body. The pressing portion of the pressing component is disposed in the positioning structure and extends out of the watch main body from the positioning structure, and the abutting portion of the pressing component abuts against the fastening component.

[0020] As an alternative implementation, in the embodiments of the present invention, a fixing member is further provided inside the watch main body. The fixing member is disposed adjacent to the positioning structure. One end of the fastening member is disposed on the fixing member, and the abutting portion of the pressing member extends to the fixing member and abuts against one end of the fastening member.

[0021] As an alternative implementation, in the embodiments of the present invention, the positioning structure is provided with a limiting member. There is a spacing between the limiting member and the pressing member. The limiting member is used to limit the pressing stroke of the pressing member.

[0022] As an alternative implementation, in the embodiments of the present invention, the fastening member can be one or two. The fastening member is fastened and connected to the bottom or side of the bottom bracket.

[0023] As an alternative implementation, in the embodiments of the present invention, the magnetic attraction structure at least includes a first magnetic element and a second magnetic element. The first magnetic element is disposed on or formed in the watch main body. The second magnetic element is disposed on or formed in the bottom bracket. The second magnetic element is used to attract and combine with the first magnetic element.

[0024] As an alternative implementation, in the embodiments of the present invention, the watch main body includes a main body housing provided with a display screen and a face cover surrounding the outer periphery of the display screen and connected to the main body housing. The holding structure is arranged to be connected to the main body housing and the bottom bracket.

[0025] As an alternative implementation, in the embodiments of the present invention, the first connecting portion of the watch main body and the bottom bracket and one end of the watch band are coaxially connected.

[0026] As an alternative implementation, in the embodiments of the present invention, the watch main body is rotatably connected to the first connecting portion of the bottom bracket through a first rotating shaft. A damping structure is provided on the first rotating shaft. The damping structure is used to provide a force for maintaining the watch main body to rotate relative to the bottom bracket to form a certain angle.

[0027] As an alternative implementation, in the embodiments of the present invention, the camera module of the watch main body is a front camera module and / or a rear camera module.

[0028] As an alternative implementation, in the embodiments of the present invention, the camera module of the watch main body includes a front camera module and a rear camera module. The front camera module and the rear camera module are respectively disposed on the front and back sides of the watch main body. When the watch main body rotates relative to the bottom bracket and switches between the first state and the second state, the front camera module and the rear camera module obtain different shooting directions as the watch main body rotates.

[0029] As an alternative implementation, in the embodiments of the present invention, the bottom bracket is a plate-like structure, or the bottom bracket is a closed ring structure formed by bending a bent rod.

[0030] As an alternative implementation, in the embodiments of the present invention, the two ends of the watch band are respectively provided with a first watch band buckle sleeve and a second watch band buckle sleeve;

[0031] The first watch band buckle sleeve is provided with a first watch band connection portion, and the first watch band connection portion is coaxially connected to the first connection portion and the watch main body;

[0032] The second watch band buckle sleeve is provided with a second watch band connection portion, and the second watch band connection portion is rotatably connected to the second connection portion of the bottom bracket through a second rotating shaft.

[0033] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0034] The flip smart watch provided by the embodiments of the present invention, by setting a holding structure, uses the holding structure to enable the watch main body to maintain a stacked state relative to the bottom bracket when not in need of rotation, so that the use of the smart watch is no different from that of an ordinary watch, effectively meeting the different usage requirements of users.

[0035] In addition, for the smart watch provided by the embodiments of the present invention, the rotation of the watch band and the bottom bracket and the rotation of the watch main body and the bottom bracket are coaxial designs, that is, both are realized through the first rotating shaft. Therefore, the structural design of the smart watch can be effectively simplified, the assembly of components can be reduced, and at the same time, the structural compactness of the smart watch can be improved, making the appearance expressiveness of the smart watch stronger. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0037] Figure 1It is a schematic structural diagram of the watch main body of the smart watch disclosed in the first embodiment of the present invention in the first state;

[0038] Figure 2 It is a schematic structural diagram of the watch main body of the smart watch disclosed in the first embodiment of the present invention in the second state;

[0039] Figure 3 It is a schematic structural diagram of the holding structure provided on the fixed cover plate disclosed in the first embodiment of the present invention;

[0040] Figure 4 It is a schematic structural diagram of the bottom of the watch main body disclosed in the first embodiment of the present invention;

[0041] Figure 5 It is a schematic structural diagram of the holding structure of the smart watch disclosed in the first embodiment of the present invention;

[0042] Figure 6 It is a schematic structural diagram of the fixed cover plate disclosed in the first embodiment of the present invention;

[0043] Figure 7 It is an exploded schematic diagram of the watch main body in the second state disclosed in the first embodiment of the present invention;

[0044] Figure 8 It is a schematic structural diagram of a kind of bottom bracket disclosed in the first embodiment of the present invention;

[0045] Figure 9 It is a schematic structural diagram of another kind of bottom bracket disclosed in the first embodiment of the present invention;

[0046] Figure 10 It is a schematic structural diagram of the holding structure provided inside the smart watch disclosed in the second embodiment of the present invention;

[0047] Figure 11 It is a schematic structural diagram of the holding structure of the smart watch disclosed in the third embodiment of the present invention;

[0048] Figure 12 It is a schematic diagram of the shooting direction of the camera module when the watch main body is in the first state disclosed in the fourth embodiment of the present invention;

[0049] Figure 13 It is a schematic diagram of the shooting direction of the front camera module when the watch main body is in the second state disclosed in the fourth embodiment of the present invention;

[0050] Figure 14 It is a schematic diagram of the shooting direction of the rear camera module when the watch main body is in the second state disclosed in the fourth embodiment of the present invention. Detailed implementation manners

[0051] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0052] In the present invention, the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", etc. is based on the orientation or positional relationship shown in the accompanying drawings. These terms are mainly used to better describe the present invention and its embodiments, rather than to limit that the indicated devices, elements or components must have a specific orientation or be constructed and operated in a specific orientation.

[0053] Moreover, in addition to being used to represent the orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the present invention can be understood according to specific circumstances.

[0054] In addition, the terms "mounted", "arranged", "provided with", "connected", "linked" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral structure; it may be a mechanical connection or an electrical connection; it may be directly connected, or indirectly connected through an intermediate medium, or there may be internal communication between two devices, elements or components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0055] In addition, the terms "first", "second", etc. are mainly used to distinguish different devices, elements or components (the specific types and structures may be the same or different), rather than to indicate or imply the relative importance and quantity of the indicated devices, elements or components. Unless otherwise specified, the meaning of "a plurality" is two or more.

[0056] The following will further illustrate the technical solutions of the present invention with reference to the embodiments and the accompanying drawings.

[0057] Embodiment 1

[0058] Please refer to Figures 1 to 4, a flip smart watch provided by an embodiment of the present invention includes a bottom bracket 10, a watch main body 20, a watch band 30, and a holding structure. The bottom bracket 10 includes a first end 11 and a second end 12 which are oppositely arranged. The first end 11 is provided with a first connecting portion 11a, and the second end 12 is provided with a second connecting portion 12a. The watch main body 20 is rotatably connected to the first connecting portion 11a of the bottom bracket 10, and the watch main body 20 can rotate relative to the bottom bracket 10 and switch between a first state and a second state. Two ends of the watch band 30 are respectively connected to the first connecting portion 11a and the second connecting portion 12a. The holding structure is arranged to be connected to the watch main body 20 and the bottom bracket 10 so that the watch main body 20 is held relative to the bottom bracket 10 in the first state. Wherein, the first state is a state in which the watch main body 20 is stacked on the bottom bracket 10, and the second state is a state in which the watch main body 20 forms a certain angle relative to the bottom bracket 10.

[0059] It should be known that in this embodiment, the first connecting portion 11a of the watch main body 20 and the bottom bracket 10 and one end of the watch band 30 should be coaxially connected, so as to reduce the component design of the smart watch, simplify the component assembly process of the smart watch, and further make the structure of the smart watch more compact.

[0060] Wherein, the watch main body 20 includes a front surface and a back surface 20b which are oppositely arranged. Generally, the front surface is the surface of the watch main body 20 where the display screen 20a is provided, and the back surface 20b is the surface of the watch main body 20 facing away from the display screen 20a. The state of being stacked on the bottom bracket 10 means that the back surface 20b of the watch main body 20 is approximately in contact with the front surface of the bottom bracket 10. And the state of forming a certain angle relative to the bottom bracket 10 means that both the front surface and the back surface 20b of the watch main body 20 form a certain angle with the front surface of the bottom bracket 10.

[0061] In this embodiment, the watch main body 20 is used as the main body of the smart watch, and it may include a main board disposed inside the watch main body 20, a battery for supplying power to the main board, a photographing device for realizing the photographing function of the watch main body 20, a communication device for realizing the communication function of the watch main body 20 (such as a wireless communication device, a Bluetooth communication device, an infrared communication device, etc.), a sensor for realizing the detection function of the watch main body 20 (such as a gravity sensor, an acceleration sensor, a distance sensor, a barometric pressure sensor, an ultraviolet detector, a water-play detection and recognition module), a heart rate detector for detecting the heart rate of the user, a timer for realizing the timing function of the watch main body 20, elements for identifying the identity of the user, such as a fingerprint module, a face recognition module, and a microphone, a speaker, etc. for realizing audio input and / or output. It should be understood that the above-mentioned devices and functional modules are all disposed inside the watch main body 20 and are electrically connected to the main board, and the control of these devices and functional modules is realized through the main board, thereby controlling them to realize the corresponding functions.

[0062] Therefore, the watch main body 20 in the embodiment of the present invention is different from the traditional watch dial that can only realize functions such as time display and timing.

[0063] Furthermore, since the watch main body 20 is rotatably connected to the first connection portion 11a of the bottom bracket 10, therefore, by adjusting the rotation angle between the watch main body 20 and the bottom bracket 10, the watch main body 20 can be switched between a first state and a second state. Specifically, in order to conform to the wearing habit and usage habit of the user, the rotation angle between the watch main body 20 and the bottom bracket 10 can be adjusted between 0 and 90°. For example, when the watch main body 20 is in the first state, the angle between the watch main body 20 and the bottom bracket 10 is 0°; and when the watch main body 20 is in the second state, the angle between the watch main body 20 and the bottom bracket 10 is preferably 90°. This is because: when the watch main body 20 is in the first state, the display screen 20a on the watch main body 20 is arranged upward relative to the bottom bracket 10, and when the watch main body 20 rotates relative to the bottom bracket 10 to form a 90° included angle, the display screen 20a of the watch main body 20 is also 90° relative to the bottom bracket 10. At this time, the user can conveniently view the screen.

[0064] Of course, the rotation angle between the main body 20 of the host and the main body 10 of the bracket can also be adjusted between 0 and 180°. Preferably, the rotation angle can be 0°, 30°, 45°, 60°, 75°, 90°, 120°, 130°, 135°, 140°, 145°, 150°, 160°, 170° or 180°, etc.

[0065] It should be noted that when the host body 20 is in the second posture, the certain angle formed by the host body 20 and the bracket body 10 is preferably 0 to 90°.

[0066] Combined Figure 1 with Figure 3 As shown, in this embodiment, the watch host 20 may include a host housing 21 provided with a display screen 20a and a face cover 22 surrounding the outer periphery of the display screen 20a and connected to the host housing 21. That is to say, the face cover 22 covers the upper surface of the host housing 21 and surrounds the periphery of the display screen 20a. In this way, the face cover 22 can protect the periphery of the display screen 20a. That is, in this embodiment, the front of the host body refers to the front of the face cover.

[0067] Furthermore, the holding structure can be arranged to be connected to the host housing 21 and the bottom bracket 10. That is to say, the holding structure can be connected between the host housing 21 and the bottom bracket 10, so as to keep the host housing 21 in the first state relative to the bottom bracket 10.

[0068] Furthermore, in order to facilitate the setting of the holding structure and also facilitate the user to operate the holding structure, the holding structure can be connected to the bottom of the host housing 21. Specifically, the bottom of the host housing 21 can be provided with a positioning structure, and the positioning structure can be used to position the connection position of the holding structure and the host housing 21, so as to avoid the situation that the holding structure is displaced during use or after multiple uses.

[0069] Combined Figure 4 with Figure 6 As shown, in this embodiment, the positioning structure may include a positioning groove 21a provided at the bottom of the host housing 21 and a fixed cover plate 21b covering the positioning groove 21a. The fixed cover plate 21b can be used to cover the holding structure on the positioning structure, so as to avoid the situation that the holding structure is directly exposed at the bottom of the host housing 21 of the watch host 20 when the watch host 20 rotates relative to the bottom bracket 10 to the second state. While effectively ensuring the appearance decoration effect of the watch host 20, it is also beneficial to the protective effect of the fixed cover plate 21b and the holding structure.

[0070] Preferably, in order to facilitate the setting of the holding structure, the holding structure can be arranged on the fixed cover plate 21b. That is, the fixed cover plate 21b should be provided with a fixed card slot corresponding to the positioning groove 21a and opening towards the positioning groove 21a. In this way, when the fixed cover plate 21b is covered on the positioning groove 21a, the fixed card slot of the fixed cover plate 21b can be aligned with the positioning groove 21a to form a space for accommodating the holding structure.

[0071] Preferably, the fixed cover plate 21b can be connected to the bottom of the main body housing 21 by means of screws or bolts to realize the covering of the fixed cover plate 21b on the positioning groove 21a.

[0072] The holding structure can include a button structure, a magnetic attraction structure or both a button structure and a magnetic attraction structure. As shown in Figures 3 to 6 In this embodiment, the holding structure includes a button structure. The button structure includes a pressing member 41, a fastening member 42 and a first elastic reset member 43. The pressing member 41 can be press-fitted on the watch main body 20. One end of the fastening member 42 abuts against the pressing member 41, and the other end of the fastening member 42 is used for fastening connection with or separation from the bottom bracket 10. The first elastic reset member 43 is disposed at the other end of the fastening member 42 and is used to provide a force for maintaining the fastening connection between the other end of the fastening member 42 and the bottom bracket 10. That is to say, when the other end of the fastening member 42 is fastened to the bottom bracket 10, the first elastic reset member 43 provides a force for maintaining the connection between the fastening member 42 and the bottom bracket 10. Therefore, when the user needs to separate the fastening member 42 from the bottom bracket 10, the user needs to apply a pressing force on the pressing member 41 so that the first elastic reset member 43 stops exerting the holding force on the fastening member 42 under the action of the pressing force.

[0073] Using the first elastic reset member 43 to provide the force for maintaining the fastening of the fastening member 42 to the bottom bracket 10 can effectively improve the fastening tightness and reliability when the fastening member 42 is fastened to the bottom bracket 10. In this way, even after the watch main body 20 rotates relative to the bottom bracket 10 multiple times, the watch main body 20 can still return to the first state relative to the bottom bracket 10 under the action of the first elastic reset member 43, so as to maintain the normal use of the smart watch and effectively ensure the service life of the smart watch.

[0074] Furthermore, since a positioning structure is provided at the bottom of the main body housing 21 of the watch main body 20, both the pressing member 41 and the fastening member 42 can be disposed in the positioning structure. Specifically, both the pressing member 41 and the fastening member 42 can be disposed on the fixed cover plate 21b. As described above, a fixed card slot is provided on the fixed cover plate 21b. The fixed card slot may include a first card slot 211a and second card slots 211b that communicate with the first card slot 211a and are disposed on both sides of the first card slot 211a. The pressing member 41 may include a pressing portion 41a and abutting portions 41b respectively disposed on both sides of the pressing portion 41a. The pressing portion 41a is disposed in the first card slot 211a. And in order to facilitate the user to operate the pressing, the pressing portion 41a should be partially located outside the positioning structure, that is, the pressing portion 41a should partially protrude from the bottom of the main body housing 21. The two abutting portions 41b are respectively disposed in the second card slots 211b and extend in the direction towards the fastening member 42.

[0075] Adopting the design in which the fixed card slot of the fixed cover plate 21b respectively includes a first card slot 211a and a second card slot 211b that communicates with the first card slot 211a facilitates the positioning connection of the pressing portion 41a and the abutting portion 41b with the fixed card slot, so that there is no need to additionally fix the pressing portion 41a and the abutting portion 41b by means of screws, bolts, etc., and the disassembly and assembly are more convenient.

[0076] Furthermore, in order to realize the positioning and fixing of the fastening member 42 in the fixed card slot, the fixed card slot further includes a third card slot 211c. The third card slot 211c communicates with both the second card slot 211b and the first card slot 211a, and the second card slot 211b is located in the third card slot 211c to facilitate the connection between the abutting portion 41b of the pressing member 41 and the fastening member 42. Specifically, the fastening member 42 includes an abutting end 42a and a fastening end 42b. The abutting end 42a is the end that abuts against the abutting portion 41b of the pressing member 41, and the fastening end 42b is the end that is fastened and connected to the bottom bracket 10. The abutting end 42a of the fastening member 42 is located in the third card slot 211c, and the fastening end 42b extends outwards from the third card slot 211c to be fastened and connected to the bottom bracket 10.

[0077] Preferably, in order to make the fastening connection between the holding structure and the bottom bracket 10 more reliable and reasonable, there may be two fastening members 42. The two fastening members 42 are respectively provided corresponding to the two abutting portions 41b of the pressing member 41. Therefore, the third card slots 211c of the fixed card slot should also be two corresponding ones, and the two fastening members 42 are respectively disposed in the two third card slots 211c.

[0078] In this embodiment, since there are two fastening components 42, accordingly, two first elastic reset components 43 are also provided corresponding to the fastening components 42. In order to provide a force for fastening the fastening component 42 to the bottom bracket 10, the first elastic reset component 43 should be located in the third card slot 211c and should be connected to the fastening end 42b of the fastening component 42. Specifically, in order to ensure that both ends of the first elastic reset component 43 are fixed, a first fixing boss 2111 can be provided in the third card slot 211c. One end of the first elastic reset component 43 is fixedly connected to the abutting end 42a of the fastening component 42, and the other end of the first elastic reset component 43 is fixedly connected to the first fixing boss 2111. In this way, the fixation of both ends of the first elastic reset component 43 can be achieved. Thus, when the user needs to separate the fastening component 42 from the bottom bracket 10, the first elastic reset component 43 can also be squeezed between the abutting end 42a of the fastening component 42 and the first fixing boss 2111, so that the fastening end 42b of the fastening component 42 is separated from the bottom bracket 10 under the extrusion force of the first elastic reset component 43.

[0079] Furthermore, in order to facilitate the fastening connection with the fastening component 42, fastening grooves 101 can be provided on two opposite side parts of the bottom bracket 10 corresponding to the fastening component 42, and the fastening end 42b of the fastening component 42 is used for fastening and connecting in the fastening grooves 101.

[0080] Specifically, in combination with Figures 3 to 6 The working process of the watch main body 20 and the holding structure will be described in detail:

[0081] When the watch main body 20 is in the first state relative to the bottom bracket 10, since the fastening part of the fastening component 42 is provided corresponding to the fastening groove 101 of the bottom bracket 10, accordingly, the watch main body 20 can be pressed to fasten the fastening part in the fastening groove 101. The first elastic reset component 43 is connected between the abutting end 42a of the fastening component 42 and the first fixing boss 2111 in a pre-compressed state. At this time, the watch main body 20 is no longer rotatable relative to the bottom bracket 10.

[0082] When the user needs to make the watch main body 20 rotatable relative to the bottom bracket 10 (i.e., the watch main body 20 is no longer in the first state), the user can press the pressing portion 41a of the pressing member 41. The pressing portion 41a is subjected to a pressing force, so that the abutting portion 41b connected to the pressing portion 41a abuts against the abutting end 42a of the fastening member 42, thereby causing the abutting end 42a to squeeze the first elastic reset member 43. At this time, the first elastic reset member 43 is squeezed and compressed between the abutting end 42a and the first fixing boss 2111, so that the fastening end 42b of the fastening member 42 is disengaged from the fastening groove 101 of the bottom bracket 10 under force. At this time, the user can rotate the watch main body 20, so that the watch main body 20 can be switched from the first state to the second state relative to the bottom bracket 10.

[0083] It should be noted that in the above process, when the fastening end 42b of the fastening member 42 is disengaged from the fastening groove 101 of the bottom bracket 10, the user can stop pressing. At this time, the pressing force acting on the pressing portion 41a disappears, and the first elastic reset member 43 can return to its pre-pressed state under its own elastic force. Until the user needs to make the watch main body 20 relative to the bottom bracket 10 in the first state again, just press the watch main body 20 again to make the fastening portion squeeze the first elastic reset member 43 and fasten it in the fastening groove 101 of the bottom bracket 10.

[0084] In this embodiment, in order to enable the pressing portion 41a to return to its non-pressed state after the user presses the pressing portion 41a, so as to facilitate the next pressing, the holding structure may further include a second elastic reset member 44. The second elastic reset member 44 is arranged to be connected to the pressing member 41 to provide a force for the pressing member 41 to maintain its non-pressed state. Specifically, the second elastic reset member 44 is arranged in the first card slot 211a. A second fixing boss 2112 is also arranged in the first card slot 211a. One end of the second elastic reset member 44 is connected to the pressing portion 41a of the pressing member 41, and the other end of the second elastic reset member 44 is connected to the second fixing boss 2112. Preferably, in order to position the second elastic reset member 44 in the first card slot 211a, a first positioning slot 2113 may be correspondingly arranged in the first card slot 211a for the second elastic reset member 44. The first positioning slot 2113 extends from the pressing portion 41a of the pressing member 41 to the second fixing boss 2112, and the second elastic reset member 44 is located in the first positioning slot 2113. In addition, in order to make the force on the pressing portion 41a more balanced when the user presses, the second elastic reset member 44 may preferably be provided in two.

[0085] Specifically, when the user presses the pressing portion 41a of the pressing member 41, the second elastic restoring member 44 is pressed by the pressing force of the pressing portion 41a and is squeezed between the pressing portion 41a and the second fixing boss 2112. When the user stops pressing the pressing portion 41a of the pressing member 41, the pressing force acting on the second elastic restoring member 44 disappears. At this time, the second elastic restoring member 44 can return to its natural state under its own elasticity, so that the pressing portion 41a returns to its unpressed state. Wherein, the unpressed state means that the pressing portion 41a is not subjected to a pressing force.

[0086] It can be known that the above-mentioned first elastic restoring member 43 and second elastic restoring member 44 can both be springs.

[0087] Furthermore, in order to enable the user to timely perceive the pressing degree of the pressing member 41, a limiting member 2114 can be provided on the fixed cover plate 21b. There is a distance between the limiting member 2114 and the pressing portion 41a of the pressing member 41. The limiting member 2114 is used to limit the pressing stroke of the pressing portion 41a of the pressing member 41. Specifically, the limiting member 2114 can be a boss provided in the first card slot 211a. In the non-pressed state, there is a distance between the pressing portion 41a of the pressing member 41 and the limiting member 2114. When the user presses the pressing portion 41a, the pressing portion 41a is pressed to squeeze the second elastic restoring member 44, so that the pressing portion 41a moves in the direction close to the limiting member 2114 until it abuts against the limiting member 2114. At this time, due to the limiting effect of the limiting member 2114, even if the user applies a greater pressing force, the pressing portion 41a will no longer move. Then the user can know that the pressing limit has been reached and the user can stop pressing.

[0088] By adopting the limiting member 2114, by limiting the pressing stroke of the pressing portion 41a, it is beneficial to the user's pressing and the pressing is more labor-saving.

[0089] In addition, in order to improve the comfort of the user's pressing, the pressing portion 41a can be made of silica gel material or a silica gel sleeve can be provided outside the pressing portion 41a, etc.

[0090] It should be known that since the fixed card slot of the fixed cover plate 21b needs to be aligned with the positioning groove 21a to form a space for setting the holding structure, the structure of the positioning groove 21a should match the structure of the fixed card slot, which will not be elaborated here.

[0091] Combined Figure 1 、 Figure 2 and Figure 7As shown, in this embodiment, the watch main body 20 is coaxially connected to the first connecting portion 11a of the bottom bracket 10 and one end of the watch band 30. Specifically, the watch main body 20 can be connected to the first connecting portion 11a of the bottom bracket 10 and one end of the watch band 30 through the first rotating shaft 23. That is to say, when the watch main body 20 rotates relative to the bottom bracket 10, one end of the watch band 30 can also rotate relative to the bottom bracket 10.

[0092] Further, in order to achieve the shaft connection between the watch main body 20 and the bottom bracket 10, a main body connecting portion is provided on the watch main body 20. The main body connecting portion can be provided with a first groove 24a. The first groove 24a divides the main body connecting portion 24 into a first portion 24b and a second portion 24c arranged at intervals. The first connecting portion 11a is located in the first groove 24a, and both sides of the first connecting portion 11a face the first portion 24b and the second portion 24c respectively.

[0093] Further, the first connecting portion 11a is a cylindrical boss provided on the bottom bracket 10. When the watch main body 20 is connected to the bottom bracket 10, the first connecting portion 11a should be completely located in the first groove 24a, so that the first rotating shaft 23 can pass through the main body connecting portion and the first connecting portion 11a at the same time to realize the connection between the watch main body 20 and the bottom bracket 10. It can be understood that in other embodiments, the first connecting portion 11a can also be a square boss.

[0094] In this embodiment, in order to realize the coaxial design of the shaft connection among the watch band 30, the watch main body 20 and the bottom bracket 10, a first watch band buckle sleeve 31 is provided at one end of the watch band 30. The first watch band buckle sleeve 31 is provided with a first watch band connecting portion 31a. The first watch band connecting portion 31a is connected to the first connecting portion 11a through the first rotating shaft 23. Specifically, a second groove 311 is provided in the middle of the first watch band connecting portion 31a. The second groove 311 is partially communicated with the first groove 24a. The first connecting portion 11a is located in the second groove 311, and the first watch band connecting portion 31a is located in the first groove 24a. At this time, both sides of the first watch band connecting portion 31a should face the first portion 24b and the second portion 24c of the main body connecting portion respectively. Therefore, in terms of the positional relationship, the first portion 24b and the second portion 24c of the main body connecting portion should be located on the outside, and from the outside to the inside in turn are the first watch band connecting portion 31a and the first connecting portion 11a.

[0095] Further, for the first watch band connecting portion 31a, the host connecting portion, and the first connecting portion 11a, the axes of the three should be on the same straight line. In this way, the first rotating shaft 23 can be simultaneously passed through the first watch band connecting portion 31a, the host connecting portion, and the first connecting portion 11a to achieve shaft connection. Specifically, a through first shaft hole 24d is provided on the host connecting portion, and the first shaft hole 24d should communicate with the first groove 24a; the first connecting portion 11a is provided with a through second shaft hole 111, and the first watch band connecting portion 31a is provided with a through third shaft hole (not labeled), and the third shaft hole communicates with the second groove 311. The first shaft hole 24d, the second shaft hole 111, and the third shaft hole are coaxially arranged, and the first rotating shaft 23 is simultaneously passed through the first shaft hole 24d, the second shaft hole 111, and the third shaft hole to achieve the shaft connection of the host connecting portion and the first watch band connecting portion 31a with the first connecting portion 11a at the same time, and further achieve the shaft connection of the watch host 20 and the watch band 30 with the bottom bracket 10 at the same time. That is to say, for the host connecting portion, the first shaft hole 24d penetrates through the first part 24b and the second part 24c at the same time. It can be understood that the first shaft hole 24d, the second shaft hole 111, and the third shaft hole should be circular holes matching the first rotating shaft 23.

[0096] In this embodiment, in order to maintain the state in which the watch host 20 rotates relative to the bottom bracket 10 to form a certain angle, that is, the watch host 20 remains in the second state unchanged, a damping structure may be provided on the first rotating shaft 23, and the damping structure is used to provide a force for maintaining the rotation of the watch host 20 relative to the bottom bracket 10 to form a certain angle.

[0097] Specifically, the damping structure includes a rotating shaft sleeve 23a fixedly sleeved on the first rotating shaft 23 and an elastic member 23b connected between the first rotating shaft 23 and the rotating shaft sleeve 23a. The elastic member 23b is used to generate frictional resistance with the rotating shaft sleeve 23a when the first rotating shaft 23 drives the rotating shaft sleeve 23a to rotate, so that the watch host 20 remains in the second state relative to the bottom bracket 10.

[0098] Further, in order to improve the connection tightness between the rotating shaft sleeve 23a and the first rotating shaft 23, the damping structure may further include a washer 23c. The washer 23c is passed through the first rotating shaft 23 and connected to one end of the rotating shaft sleeve 23a away from the elastic member 23b, so that the rotating shaft sleeve 23a can be firmly fixed on the first rotating shaft 23 under the action of the washer 23c.

[0099] Preferably, in order to improve the damping effect of the damping structure, the first rotating shaft 23 may include a first shaft body and a second shaft body spaced from the first shaft body. At this time, the damping structure should be provided on both the first shaft body and the second shaft body.

[0100] In this embodiment, in order to ensure that the rotating shaft sleeve 23a does not fall off the first rotating shaft 23 during rotation and to improve the external decoration effect of the main body connection part of the watch main body 20, a rotating shaft plug 24e can be provided at the main body connection part of the watch main body 20. The rotating shaft plug 24e can be clamped in the shaft hole 24d of the first part 24b and the second part 24c of the main body connection part, so as to hold the rotating shaft sleeve 23a located on the first rotating shaft 23. At the same time, it also prevents users from seeing components such as the first rotating shaft 23 and the rotating shaft sleeve 23a, making the visual appearance of the watch main body 20 at the main body connection part better.

[0101] Combined with Figure 1 , Figure 7 and Figure 8 As shown, in this embodiment, the bottom bracket 10 can be a plate-like structure. In this case, the bottom bracket 10 can be a flat plate. That is to say, when the watch main body 20 is in the first state, the watch main body 20 is completely stacked on the bottom bracket 10. Specifically, when the bottom bracket 10 is a plate-like structure, the material of the bottom bracket 10 can preferably be a heat-insulating material, such as plastic. This is because: when the shell of the watch main body 20 is made of a metal material, since the above-mentioned devices and functional modules are provided inside the watch main body 20, when these devices are running, a large amount of heat will be generated, and this heat can just be separated by the heat-insulating material of the bottom bracket 10. Thus, when the user wears the smart watch, the watch main body 20 will not directly contact the user's wrist skin, and further, it can avoid the situation that the watch main body 20 generates a large amount of heat and may scald the user's wrist skin.

[0102] Therefore, the bottom bracket 10 can not only realize the function of carrying the rotation of the watch main body 20, but also realize the effect of heat insulation between the watch main body 20 and the user's wrist skin.

[0103] Furthermore, when the watch main body 20 is in the first state, in order to ensure that the bottom bracket 10 can completely carry the watch main body 20, the size of the bottom bracket 10 should match the size of the watch main body 20.

[0104] In this embodiment, both the first connection part 11a and the second connection part 12a are cylindrical bosses provided at two opposite ends 11 of the bottom bracket 10. And in order not to affect the stacking of the watch main body 20 on the bottom bracket 10, both the first connection part 11a and the second connection part 12a are provided outside the ends of the bottom bracket 10.

[0105] Further, in order to improve the structural strength of the bottom bracket 10, reinforcing elements 13 may be provided at both ends of the bottom bracket 10. The reinforcing elements 13 are used to facilitate the setting of the first connecting portion 11a and the second connecting portion 12a on the bottom bracket 10, and at the same time, can also strengthen the overall structural strength of the bottom bracket 10.

[0106] It can be seen from this that for the bottom bracket 10, when it is a plate-like structure, it can be an ordinary thin plate, and then the reinforcing elements 13 are provided at its two ends. In this way, the bottom bracket 10 does not need to be set as a thick plate. Thus, when the watch main body 20 is in the first state relative to the bottom bracket 10, the overall thickness of the smart watch can still be kept thin, so as to meet the requirements of the lightweight and miniaturized design of the smart watch and meet the needs of the general users.

[0107] Combined with Figure 9 As shown, it can be understood that in other embodiments, the bottom bracket 10 can also be a closed ring structure formed by bending a bent rod 102. At this time, the first connecting portion 11a and the second connecting portion 12a can be provided on the bent rod 102. And since the bottom bracket 10 is a closed ring structure, when the user wears the smart watch and the watch main body 20 is in the first state, the bottom of the watch main body 20 is directly attached to the user's wrist skin.

[0108] The bottom bracket 10 adopting the bent rod 102 can effectively reduce the overall weight of the smart watch and the overall thickness of the smart watch, so that the smart watch can maintain its lightweight design.

[0109] Combined with Figures 1 to 4 As shown, in this embodiment, in order to facilitate the connection between the watch band 30 and the bottom bracket 10, a second watch band buckle sleeve 32 may be provided at the other end of the watch band 30. The second watch band buckle sleeve 32 is provided with a second watch band connecting portion 32a, and the second watch band connecting portion 32a is rotationally connected to the second connecting portion 12a of the bottom bracket 10 through a second rotating shaft 321, so that the second watch band connecting portion 32a can rotate relative to the second connecting portion 12a, and further realizes the rotational connection of the other end of the watch band 30 relative to the bottom bracket 10.

[0110] Combined with Figure 2 and Figure 4 As shown, when the user needs to adjust the angle of the watch main body 20 relative to the bottom bracket 10, the rotational angle of the watch main body 20 relative to the bottom bracket 10 can be manually adjusted. When the watch main body 20 rotates to the target angle of the user, at this time, the user stops adjusting the watch main body 20, and the watch main body 20 can be kept at the current angle unchanged due to the holding effect of the damping structure.

[0111] When the user wants to stack the watch main body 20 on the bottom bracket 10 (i.e., the watch main body 20 is in the first state), the watch main body 20 can be adjusted manually again. At this time, due to the acting force of the damping structure, the force applied by the user to adjust the watch main body 20 needs to be greater than the acting force of the damping structure, so that the watch main body 20 can be adjusted again and rotate relative to the bottom bracket 10 until the watch main body 20 is stacked on the bottom bracket 10. At this time, the fastening member 42 of the holding structure is fastened in the fastening grooves 101 on both sides of the bottom bracket 10. The user stops adjusting the watch main body 20, and the watch main body 20 can be kept in the current state (i.e., the first state) unchanged due to the holding action of the holding structure.

[0112] In the flip smart watch provided in the first embodiment of the present invention, by providing that the holding structure includes a button structure, the watch main body 20 can be fastened to the bottom bracket 10 under the holding action of the holding structure. In this way, when the user does not need the watch main body 20 to rotate, it can be kept stationary, making it no different from an ordinary smart watch.

[0113] In addition, by arranging the button structure at the bottom of the watch main body 20, it is not only convenient for the user to press and operate, but also can reduce the space occupied by the button structure for the watch main body 20.

[0114] In addition, the design of setting the limiting member 2114 on the fixed cover plate 21b to limit the pressing stroke of the pressing member 41 can make the user's pressing more labor-saving and effectively improve the user's use comfort.

[0115] Embodiment 2

[0116] Combined with Figure 10 As shown, the difference between the flip smart watch in the second embodiment of the present invention and the flip smart watch in the first embodiment is only that:

[0117] A positioning structure is arranged inside the watch main body 20. The positioning structure is used to position the pressing member 41 and the fastening member 42. At the same time, the fastening groove 101 for fastening with the fastening member 42 is arranged at the bottom of the bottom bracket 10.

[0118] Specifically, the positioning structure is integrally formed on the positioning boss 201 inside the main body housing 21 of the watch main body 20, that is, the positioning boss 201 can be formed together when the main body housing 21 is formed. The pressing part 41a of the pressing member 41 is arranged on the positioning boss 201 and extends from the positioning boss 201 to the outside of the watch main body 20. The abutting part 41b of the pressing member 41 abuts against the fastening member 42. Preferably, the pressing member 41 can be an approximate screw structure, the pressing part 41a of the pressing member 41 can be a nut, and the abutting part 41b of the pressing member 41 can be a screw.

[0119] Further, in order to facilitate the user's pressing and make it more labor-saving, a pressing groove 201a is formed in the positioning boss 201. The opening of the pressing groove 201a is provided outside the main body housing 21, so that the pressing portion 41a of the pressing member 41 can cover the opening of the pressing groove 201a. Specifically, a second elastic restoring member 44 is disposed in the pressing groove 201a. One end of the second elastic restoring member 44 is connected to the pressing portion 41a, and the other end of the second elastic restoring member 44 is connected to the bottom of the pressing groove 201a. In this way, when the user presses the pressing portion 41a, the pressing portion 41a moves in the direction towards the bottom of the pressing groove 201a under the action of the pressing force until the pressing portion 41a abuts against the bottom of the pressing groove 201a. At this time, the user can know that the pressing portion 41a has reached the pressing limit, and thus can stop pressing in time.

[0120] That is to say, in this embodiment, the bottom of the pressing groove 201a is the component that limits the pressing stroke of the pressing portion 41a.

[0121] In this embodiment, the fastening member 42 can also be a screw structure. The abutting end 42a of the fastening member 42 just abuts against the abutting portion 41b of the pressing member 41. The fastening end 42b of the fastening member 42 extends out of the main body housing 21 and is used to fasten to the bottom bracket 10. That is, the abutting end 42a of the fastening member 42 is a nut, and the fastening end 42b of the fastening member 42 is a screw.

[0122] Further, in order to position the fastening component 42 within the main body housing 21, a fixing component 21c is further provided inside the main body housing 21. The fixing component 21c is disposed adjacent to the positioning boss 201. The abutting end 42a of the fastening component 42 is disposed on the fixing component 21c. The abutting portion 41b of the pressing component 41 extends from the positioning boss 201 to the fixing component 21c and abuts against the fastening end 42b of the fastening component 42. Specifically, a fixing groove 212 communicating with the fastening groove 101 of the bottom bracket 10 is formed on the fixing component 21c. One end of the first elastic reset member 43 is connected to the inner wall of the fixing groove 212, and the other end of the first elastic reset member 43 is fixedly connected to the fastening end 42b of the fastening component 42. When the user needs to rotate the watch main body 20, the pressing portion 41a can be pressed. The pressing portion 41a presses the second elastic reset member 44 and the abutting portion 41b. At this time, the abutting end 42a of the fastening component 42 presses the first elastic reset member 43, so that the first elastic reset member 43 is pressed against the inner wall of the fixing groove 212 and the fastening end 42b of the fastening component 42, thereby shortening the length of the first elastic reset member 43, and driving the fastening end 42b of the fastening component 42 to extend out of the fastening groove 101 of the bottom bracket 10.

[0123] It can be known that, in order to ensure that the abutting portion 41b of the pressing component 41 and the abutting end 42a of the fastening component 42 are always in an abutting state, a first inclined surface (not marked) is provided on the abutting portion 41b of the pressing component 41, and a second inclined surface 421 is provided on the abutting end 42a of the fastening component 42. The first inclined surface and the second inclined surface 421 are mutually attached. In this way, during the process that the abutting portion 41b of the pressing component 41 abuts against the abutting end 42a of the fastening component 42 under force, due to the action of the second inclined surface 421 and the first inclined surface, the abutting portion 41b and the abutting end 42a can be kept in an abutting state all the time without dislocation, ensuring the use reliability of the holding structure.

[0124] The flip smart watch provided in the second embodiment of the present invention makes the overall structure of the smart watch more compact by disposing the positioning structure inside the main body housing 21.

[0125] In addition, the holding structure is a button structure, and the button structure only includes a single pressing component 41 and a single fastening component 42. Correspondingly, only one fastening groove 101 needs to be provided on the bottom bracket 10, so that the overall structural design of the holding structure is simpler, and the connection between the holding structure and the bottom bracket 10 is more rapid and convenient.

[0126] Embodiment Three

[0127] Combined with Figure 11As shown in the figure, the difference between the smart watch provided in the third embodiment of the present invention and the smart watch in the first embodiment lies in that:

[0128] In this embodiment, the holding structure may include a magnetic attraction structure. The watch main body 20 is attracted to the bottom bracket 10 through the magnetic attraction structure, so as to keep the watch main body 20 relative to the bottom bracket 10 in the first state.

[0129] As an optional implementation manner, the magnetic attraction structure at least includes a first magnetic element 202 and a second magnetic element (not labeled). The first magnetic element 202 is disposed on the watch main body 20, and the second magnetic element can be formed on the bottom bracket 10. The second magnetic element is used to attract the first magnetic element 202. Specifically, the first magnetic element 202 can be a magnet disposed at the bottom of the main body housing 21 of the watch main body 20, and the second magnetic element can be a metal element formed on the bottom bracket 10. It should be noted that if the material of the bottom bracket 10 itself is metal, the second magnetic element can be integrally formed with the bottom bracket 10 without additional setting.

[0130] As another optional implementation manner, the first magnetic element 202 can be formed on the watch main body 20, and the second magnetic element can be disposed on the bottom bracket 10. Specifically, the second magnetic element can be a magnet disposed on the bottom bracket 10, and the first magnetic element 202 can be a metal part formed on the watch main body 20. And it should be noted that if the outer shell of the watch main body 20 is made of metal, the first magnetic element 202 does not need to be additionally provided.

[0131] As yet another optional implementation manner, the first magnetic element 202 is a magnet disposed on the watch main body 20, and the second magnetic element is a magnet disposed on the bottom bracket 10, and the magnetism of the second magnetic element should be opposite to that of the first magnetic element 202. In this way, when the watch main body 20 is in the first state, due to the principle of attraction between opposite magnetic poles of the magnetic elements, the watch main body 20 can be kept in the state of being stacked on the bottom bracket 10 unchanged, that is, the watch main body 20 remains in the first state unchanged. Preferably, a first magnetic element 202 can be disposed at the bottom of the main body housing 21 of the watch main body 20. At the same time, a second magnetic element can be disposed at a position corresponding to the bottom of the main body housing 21 of the bottom bracket 10, and the magnetism of the second magnetic element is opposite to that of the first magnetic element 202. When the watch main body 20 is in the first state relative to the bottom bracket 10, the first magnetic element 202 can be attracted to the second magnetic element, so that the watch main body 20 remains in its first state unchanged.

[0132] It should be noted that in the above embodiments, the number of the first magnetic element 202 and the second magnetic element can be adjusted according to actual situations, such as one, two or more.

[0133] It can be understood that, as an embodiment of the present invention, the holding structure of the smart watch may also include the button structure and the magnetic attraction structure at the same time, that is, the button structure and the magnetic attraction structure are provided between the watch main body 20 and the bottom bracket 10 at the same time. In this way, the effect of the holding structure on the watch main body 20 in the first state relative to the bottom bracket 10 can be better and more reliable.

[0134] In the flip smart watch provided in the third embodiment of the present invention, by setting the holding structure to include a magnetic attraction structure, the watch main body 20 and the bottom bracket 10 can be attracted together under the action of the magnetic attraction structure, so that the watch main body 20 can be kept in the first state relative to the bottom bracket 10. In addition, by adopting the magnetic attraction structure, the overall structure is simple, the structural design of the holding structure can be effectively simplified, and it is beneficial to save the design cost.

[0135] Embodiment 4

[0136] Combined with Figures 12 to 14 As shown, the difference between the flip smart watch disclosed in the fourth embodiment of the present invention and the flip smart watch in the first embodiment of the present invention lies in:

[0137] The camera module of the watch main body 20 of the present invention is a front camera module and / or a rear camera module.

[0138] Specifically, since the watch main body 20 is rotationally connected to the bottom bracket 10 through the first rotating shaft 23, the watch main body 20 may include a rotating end 20c and a free end 20d which are oppositely arranged. The rotating end 20c is the end connected to the first connecting portion 11a of the bottom bracket 10 through the first rotating shaft 23, and the free end 20d is the end that can rotate relative to the bottom bracket 10 along with the rotating end 20c and can form an angle relative to the bottom bracket 10. Specifically, in order to avoid affecting the shooting angle of the camera module, the camera module is preferably arranged at the free end 20d, and in order to avoid affecting the display of the display area of the watch main body 20, the camera module can be arranged at the end of the free end 20d.

[0139] Furthermore, the camera module can be disposed inside the watch main body 20. To meet different shooting requirements of users, the camera module can include a front camera module 25 and a rear camera module 26. The front camera module is disposed on the front of the watch main body 20, and the rear camera module is disposed on the back of the watch main body. In this embodiment, when the watch main body is in the first posture, the shooting direction of the front camera module is the first shooting direction X1, and the shooting direction of the rear camera module is the third shooting direction X3; when the watch main body is in the second posture, the shooting direction of the front camera module is the second shooting direction X2, and the shooting direction of the rear camera module is the fourth shooting direction X4; the first shooting direction X1, the second shooting direction X2, the third shooting direction X3, and the fourth shooting direction X4 are different directions. That is, when the watch main body 20 rotates relative to the bottom bracket and switches between the first posture and the second posture, the front camera module 25 can switch between the first shooting direction X1 and the second shooting direction X2, and the rear camera module 26 can switch between the third shooting direction X3 and the fourth shooting direction X4. Among them, the directions of the first shooting direction X1 and the second shooting direction X2 are different, and the directions of the third shooting direction X3 and the fourth shooting direction X4 are different.

[0140] That is, when the watch main body 20 rotates relative to the bottom bracket 10 and switches between the first state and the second state, the front camera module 25 can switch between the first shooting direction X1 and the second shooting direction X2, and the rear camera module 26 can switch between the third shooting direction X3 and the fourth shooting direction X4. In this way, during the rotation of the watch main body 20, the adjustment and transformation of the shooting angles of the front camera module 25 and the rear camera module 26 are realized, so as to meet the shooting requirements of users for different shooting angles.

[0141] In this embodiment, the face cover 22 of the watch main body 20 is provided with a first opening (not labeled) communicating with the inside of the main body housing 21. The front camera module 25 can be disposed in the first opening. In this way, not only can the front camera module 25 achieve framing through the first opening, but also it is beneficial to the wiring design of the connection between the first camera module and the main board inside the main body housing 21 due to the communication between the first opening and the inside of the main body housing 21. At the same time, a second opening (not labeled) can be provided on the back 20b of the main body housing 21. The second opening communicates with the inside of the main body housing 21. The rear camera module 26 can be disposed in the second opening. In this way, the rear camera module 26 can achieve framing through the second opening and realize the wire connection with the main board inside the main body housing 21 through the second opening.

[0142] It can be seen from this that when the watch main body 20 is in the first state, for the front camera module 25 and the rear camera module 26, the front camera module 25 takes pictures facing the front of the watch main body 20, and the rear camera module 26 takes pictures facing the back surface 20b of the watch main body 20. At this time, the first shooting direction X1 of the front camera module 25 is the direction facing the front of the watch main body 20, and the third shooting direction X3 of the rear camera module 26 is the direction facing the back surface 20b of the watch main body 20.

[0143] Furthermore, for the convenience of setting the front camera module 25 and the rear camera module 26 without affecting their view finding, the second opening is correspondingly arranged with the first opening and is communicated with the first opening.

[0144] Furthermore, when the watch main body 20 is in the first state relative to the bottom bracket 10, the back surface 20b of the watch main body 20 is approximately attached to the upper surface of the bottom bracket 10. Therefore, for the front camera module 25 and the rear camera module 26, the rear camera module 26 is blocked by the bottom bracket 10 when the watch main body 20 is in the first state, that is, the third shooting direction X3 of the rear camera module 26 is the direction facing the upper surface of the bottom bracket 10 (as Figure 14 shown). It can be seen from this that when the watch main body 20 is in the first state relative to the bottom bracket 10, the user can perform shooting operations through the front camera module 25.

[0145] When the watch main body 20 rotates relative to the bottom bracket 10 to the second state, since the watch main body 20 forms a certain angle relative to the bottom bracket 10, the front camera module 25 is switched from the first shooting direction X1 to the second shooting direction X2, and the rear camera module 26 is switched from the third shooting direction X3 to the fourth shooting direction X4. At this time, the rear camera module 26 also forms a certain angle relative to the bottom bracket 10, that is, the rear camera module 26 is no longer blocked by the bottom bracket 10, and the user can select the front camera module 25 or the rear camera module 26 to execute the shooting function according to their shooting needs. For example, the user can select the front camera module 25 to achieve self-timer and video call, and select the rear camera module 26 to achieve barcode scanning operation, shooting surrounding scenery, etc.

[0146] Furthermore, since both the front camera module 25 and the rear camera module 26 are arranged at the end of the free end 20d of the watch main body 20, the first opening and the second opening can be formed by a hollow cylindrical boss protruding outward at the end of the free end 20d. That is, the hollow part of the hollow cylindrical boss forms the first opening and the second opening. In this way, the setting of the first opening will not affect the setting of the display screen 20a of the watch main body 20, and at the same time, it can also enable the front camera module 25 to have a good shooting field of view.

[0147] Further, in order to prevent external dust or debris from entering the first opening and the second opening, a first lens (not labeled) may be provided at the first opening, and a second lens (not labeled) may be provided at the second opening. The front camera module 25 can achieve framing through the first lens, and the rear camera module 26 can achieve framing through the second lens. Specifically, the first lens can be bonded to the first opening, and the second lens can be bonded to the second opening.

[0148] It can be understood that in other embodiments, the front camera module 25 can still be provided in the first opening on the front, and the rear camera module 26 can be provided on the side surface at an angle with the front. At this time, the second opening is opened on the side surface. In this case, whether the watch main body 20 is in the first state or the second state, the rear camera module 26 will not be blocked. In this way, the user can select the corresponding camera module to perform the shooting operation according to the shooting requirements at any time.

[0149] Preferably, in order to prevent the bottom of the watch main body 20 from hitting or rubbing against the rear camera module 26 when the watch main body 20 is stacked on the bottom bracket 10 in the first state, an avoidance groove may be provided at the position of the bottom bracket 10 corresponding to the rear camera module 26. Specifically, the avoidance groove can be a circular groove, a U-shaped groove, a square groove, etc. that matches the second lens.

[0150] By adopting the design of providing an avoidance groove on the bottom bracket 10, the blocking of the shooting angle of the rear camera module 26 by the bottom bracket 10 can be avoided, so that even when the watch main body 20 is in the first state, the rear camera module 26 can still achieve framing through the avoidance groove.

[0151] When the user needs to adjust the angle of the watch main body 20 relative to the bottom bracket 10, the rotation angle of the watch main body 20 relative to the bottom bracket 10 can be adjusted manually. When the watch main body 20 rotates to the target angle of the user, at this time, the user stops adjusting the watch main body 20, and the watch main body 20 can be kept at the current angle due to the holding effect of the holding structure. At this time, both the front camera module 25 and the rear camera module 26 can be in a shootable state, and the user can select the front camera module 25 or the rear camera module 26 to perform the corresponding operation according to the actual shooting requirements.

[0152] When the user wants to stack the watch main body 20 on the bottom bracket 10, the user can manually adjust the watch main body 20 again. At this time, due to the acting force of the holding structure, the force applied by the user to adjust the watch main body 20 needs to be greater than the acting force of the holding structure, so that the watch main body 20 can be adjusted again and rotate relative to the bottom bracket 10 until the watch main body 20 is stacked on the bottom bracket 10. At this time, the user stops adjusting the watch main body 20, and the watch main body 20 can be kept in the current state (i.e., the first state) due to the holding effect of the holding structure. At this time, due to the design of the clearance groove, the rear camera module 26 is not blocked by the bottom bracket 10, and the front camera module 25 and the rear camera module 26 are also in a state where they can take pictures.

[0153] A flip smart watch provided in Embodiment 4 of the present invention is provided with a front camera module 25 and a rear camera module 26, and by using the rotation of the watch main body 20 relative to the bottom bracket 10, the front camera module 25 and the rear camera module 26 can obtain different shooting directions as the watch main body 20 rotates, meeting different shooting needs of users.

[0154] The above has introduced in detail a flip smart watch disclosed in the embodiments of the present invention. Specific examples are used in this article to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the core idea of a flip smart watch of the present invention; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation of the present invention.

Claims

1. A flip smart watch, characterized in that, including a bottom bracket, the bottom bracket including a first end and a second end disposed opposite to each other, the first end being provided with a first connection portion and the second end being provided with a second connection portion; a watch main body, the watch main body being rotatably connected to the first connection portion of the bottom bracket, the watch main body being rotatable relative to the bottom bracket and convertible between a first state and a second state; a holding structure, the holding structure being configured to be connected to the watch main body and the bottom bracket so that the watch main body maintains the first state relative to the bottom bracket; and a watch band, two ends of the watch band being respectively connected to the first connection portion and the second connection portion; the watch main body is coaxially connected to the first connection portion of the bottom bracket and one end of the watch band; wherein, the first state is a state where the watch main body is stacked on the bottom bracket, and the second state is a state where the watch main body forms a certain angle relative to the bottom bracket.

2. The flip smart watch according to claim 1, characterized in that The holding structure includes a button structure and / or a magnetic attraction structure.

3. The flip smart watch according to claim 2, wherein The button structure includes a pressing member, a fastening member, and a first elastic reset member. The pressing member is pressably disposed on the watch main body. One end of the fastening member abuts against the pressing member, and the other end of the fastening member is used for fastening connection with the bottom bracket or separating from the bottom bracket; The first elastic reset member is disposed at the one end of the fastening member, and the first elastic reset member is used for providing a force to keep the other end of the fastening member in fastening connection with the bottom bracket.

4. The flip smart watch according to claim 3, characterized in that, The button structure further includes a second elastic reset member, and the second elastic reset member is configured to be connected to the pressing member to provide a force for the pressing member to maintain its unpressed state.

5. The flip smart watch according to claim 3 or 4, characterized in that, A positioning structure is provided at the bottom or inside of the watch main body, and the positioning structure is used for positioning the pressing member and the fastening member.

6. The flip smart watch according to claim 5, wherein, The bottom of the watch main body is provided with the positioning structure. The abutting portion of the pressing member is disposed on the positioning structure and abuts against the fastening member, and the pressing portion of the pressing member extends out from the bottom of the watch main body; The fastening member is disposed on the positioning structure, and the other end of the fastening member extends out from the bottom of the watch main body and is in fastening connection with the bottom bracket.

7. The flip smart watch according to claim 6, wherein, The positioning structure includes a positioning groove provided at the bottom of the watch main body and a fixed cover plate covering the positioning groove. The fixed cover plate is used for covering the pressing member and the fastening member located on the positioning structure.

8. The flip smart watch according to claim 7, characterized in that, The fixed cover plate is provided with a fixed card slot corresponding to the positioning groove and having an opening facing the positioning groove. The pressing member and the fastening member are disposed in the positioning groove and the fixed card slot.

9. The flip smart watch according to claim 5, characterized in that, The inside of the watch main body is provided with the positioning structure. The pressing portion of the pressing member is disposed on the positioning structure and extends out of the watch main body from the positioning structure, and the abutting portion of the pressing member abuts against the fastening member.

10. The flip smart watch according to claim 9, wherein The interior of the watch main body further includes a fixing component, which is disposed adjacent to the positioning structure. One end of the fastening component is disposed on the fixing component, and the abutting portion of the pressing component extends to the fixing component and abuts against one end of the fastening component.

11. The flip smart watch according to claim 5, characterized in that, The positioning structure is provided with a limiting member, and there is a distance between the limiting member and the pressing component. The limiting member is used to limit the pressing stroke of the pressing component.

12. The flip smart watch according to claim 3 or 4, characterized in that, The fastening component can be one or two, and the fastening component is fastened and connected to the bottom or side of the bottom bracket.

13. The flip smart watch according to claim 2, wherein, The magnetic attraction structure at least includes a first magnetic element and a second magnetic element. The first magnetic element is disposed on or formed in the watch main body, and the second magnetic element is disposed on or formed in the bottom bracket. The second magnetic element is used to attract and combine with the first magnetic element.

14. The flip smart watch according to any one of claims 1 to 4, characterized in that, The watch main body includes a main body housing provided with a display screen and a face cover surrounding the outer periphery of the display screen and connected to the main body housing. The holding structure is configured to be connected to the main body housing and the bottom bracket.

15. The flip smart watch according to claim 1, characterized in that, The watch main body is rotatably connected to the first connection portion of the bottom bracket through a first rotating shaft, and a damping structure is provided on the first rotating shaft. The damping structure is used to provide a force for maintaining the rotation of the watch main body relative to the bottom bracket to form a certain angle.

16. The flip smart watch according to any one of claims 1 to 4, characterized in that, The camera module of the watch main body is a front camera module and / or a rear camera module.

17. The flip smart watch according to claim 16, wherein The camera module of the watch main body is a front camera module and a rear camera module. The front camera module and the rear camera module are respectively disposed on the front and back sides of the watch main body. When the watch main body rotates relative to the bottom bracket and switches between the first state and the second state, the front camera module and the rear camera module obtain different shooting directions as the watch main body rotates.

18. The flip smart watch according to any one of claims 1 to 4, characterized in that, The bottom bracket is a plate-like structure, or the bottom bracket is a closed ring structure formed by bending a bent rod.

19. The flip smart watch according to any one of claims 1 to 4, characterized in that, Both ends of the watch band are respectively provided with a first watch band buckle sleeve and a second watch band buckle sleeve; The first watch band buckle sleeve is provided with a first watch band connection portion, and the first watch band connection portion is coaxially connected to the first connection portion and the watch main body; The second watch band buckle sleeve is provided with a second watch band connection portion, and the second watch band connection portion is rotatably connected to the second connection portion of the bottom bracket through a second rotating shaft.

Citation Information

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