Smart watch
By designing a detachable display module and carrier, combined with a hanging component, the smartwatch can switch between wearing modes on the hand and neck, solving the problem of the single wearing mode of the smartwatch and improving the applicability of usage scenarios.
Patent Information
- Application Number
- CN202520217292.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-11
AI Technical Summary
The limited wearing modes of existing smartwatches result in low applicability across different usage scenarios.
Design a smartwatch with a detachable display module and a carrier, and equipped with a hook. The display module can be detachably connected to the carrier or the hook, and different wearing modes can be switched through a snap-fit structure.
It enriches the wearing modes of smartwatches, improves their applicability in different usage scenarios, and allows users to choose to wear them on their hands or neck as needed.
Smart Images

Figure CN223679535U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of smart watches, and particularly relates to a smart watch. BACKGROUND
[0002] At present, with the increasing perfection of the functions of smart watches, the smart watches are used more and more widely. However, the smart watches in the related art are usually worn on the hands of users for use, so that the wearing mode is single and the applicability in some use scenarios is not high. CONTENT
[0003] The main purpose of the present application is to provide a smart watch, which aims to enrich the wearing mode of the smart watch so as to improve the applicability in different use scenarios.
[0004] To achieve the above purpose, the smart watch provided by the present application comprises:
[0005] a bearing member;
[0006] a display module, which is detachably installed on the bearing member; and
[0007] a hanging member, which is detachably installed on the display module when the display module and the bearing member are in a separated state, and is provided with a hanging part.
[0008] Optionally, the bearing member is provided with a first connecting structure, the display module is provided with a second connecting structure, and the hanging member is provided with a third connecting structure.
[0009] The second connecting structure and the first connecting structure are detachably connected when the display module is installed on the bearing member.
[0010] The third connecting structure and the second connecting structure are detachably connected when the hanging member is installed on the display module.
[0011] Optionally, the second connecting structure is connected with the first connecting structure and the third connecting structure through clamping.
[0012] Optionally, the second connecting structure comprises a clamping member, and the clamping member is provided with a clamping hole.
[0013] The first connecting structure comprises a first pressing member, and the first pressing member is provided with a first clamping protrusion configured to be clamped with the clamping hole and separated from the clamping hole when the first pressing member is pressed.
[0014] The third connecting structure comprises a second pressing member provided with a second clamping protrusion configured to be clamped with the clamping hole and separated from the clamping hole when the second pressing member is pressed.
[0015] Optionally, the bearing member is provided with a first installation cavity, a first exposure hole and a first passing hole communicating with the first installation cavity, the first pressing member is movably installed in the first installation cavity and partially exposed by the first exposure hole, and the first passing hole is configured to allow one end of the clamping member provided with the clamping hole to extend into the first installation cavity to be clamped with the first clamping protrusion.
[0016] The hanging member is provided with a second installation cavity, a second exposure hole and a second passing hole communicating with the second installation cavity, the second pressing member is movably installed in the second installation cavity and partially exposed by the second exposure hole, and the second passing hole is configured to allow one end of the clamping member provided with the clamping hole to extend into the second installation cavity to be clamped with the second clamping protrusion.
[0017] Optionally, the first connecting structure further comprises a first elastic member arranged in the first installation cavity and located between the first pressing member and the bearing member, and configured to drive the first pressing member to move back when the external force on the first pressing member is removed.
[0018] The third connecting structure further comprises a second elastic member arranged in the second installation cavity and located between the second pressing member and the hanging member, and configured to drive the second pressing member to move back when the external force on the second pressing member is removed.
[0019] Optionally, the second connecting structure further comprises a fixing seat, one end of the clamping member away from the clamping hole is rotatably connected to the fixing seat around a first axis, and the display module is rotatably connected to the fixing seat around a second axis.
[0020] The display module has a display surface, the first axis intersects the display surface, and the second axis intersects the first axis.
[0021] Optionally, the clamping member is slidably connected to the fixing seat along the first axis, the second connecting structure further comprises a positioning member connected to the clamping member, one of the positioning member and the fixing seat is provided with a positioning protrusion, and the other is provided with a positioning recess, the positioning protrusion is embedded in the positioning recess to position the initial position of the fixing seat relative to the clamping member when the fixing seat does not rotate relative to the clamping member, and the second connecting structure further comprises a third elastic member connected to the clamping member and the fixing seat.
[0022] And / or, the second connecting structure further comprises a connecting shaft and an auxiliary shaft, one end of the connecting shaft is fixedly connected to the fixing seat, the other end is rotatably inserted into the display module; one end of the auxiliary shaft is rotatably inserted into the fixing seat away from the other end of the connecting shaft, the other end is rotatably inserted into the display module.
[0023] Optionally, the fixing seat is provided with a third mounting cavity, the clamping piece is rotatably and slidably inserted into the fixing seat, and one end of the clamping piece provided with the clamping hole is located outside the third mounting cavity, and the other end away from the clamping hole is located in the third mounting cavity;
[0024] When the second connecting structure comprises the positioning piece and the third elastic piece, the positioning piece is an annular structure, and is sleeved on the clamping piece located outside the third mounting cavity, and the third elastic piece is sleeved on the clamping piece located in the third mounting cavity;
[0025] The second connecting structure further comprises a first blocking piece, the first blocking piece is arranged on the clamping piece located in the third mounting cavity, and cooperates with the fixing seat to clamp the third elastic piece.
[0026] Optionally, the first connecting structure is arranged on one of the opposite sides of the bearing piece, and the other of the opposite sides of the bearing piece is provided with a fourth connecting structure; the display module is provided with a fifth connecting structure, and the fifth connecting structure is detachably connected with the fourth connecting structure.
[0027] And / or, the mounting part is a hanging hole or a hanging ring;
[0028] And / or, the smart watch further comprises a watchband, and the watchband is connected to the bearing piece.
[0029] The intelligent watch of the technical scheme of the present application sets the display module and the bearing member in detachable connection, and cooperates with the setting of the hanging member, so that after the display module is detached from the bearing member, the display module can be connected and assembled with the hanging member. That is, the display module of the intelligent watch in the present scheme can be in the installation mode of being installed on the bearing member, so that the user can wear the intelligent watch on the hand of the user. At this time, the user can use the intelligent watch in the use scenario of only checking time. Meanwhile, the display module of the intelligent watch in the present scheme can also be in the installation mode of being installed on the hanging member, and the hanging member is provided with a hanging part, which can be connected with a hanging rope or a hanging chain and the like, so that the user can wear the intelligent watch on the neck of the user. At this time, the user can use the intelligent watch in the use scenario of making a call for a long time. Therefore, the structure setting of the intelligent watch in the present scheme can enrich the wearing mode of the intelligent watch, so as to improve the applicability in different use scenarios. BRIEF DESCRIPTION OF DRAWINGS
[0030] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to the structures shown in the drawings without creative labor for those skilled in the art.
[0031] Figure 1 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0032] Figure 2 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member; Figure 1 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0033] Figure 3 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member; Figure 1 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0034] Figure 4 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member; Figure 3 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0035] Figure 5 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member; Figure 3 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0036] Figure 6 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member; Figure 3 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;
[0037] Figure 7 Structure schematic view of the display module of the intelligent watch in the present application being installed on the bearing member;Figure 1 A sectional view of the display module of the smart watch in 10;
[0038] Figure 8 A sectional view of the display module of the smart watch in 10; Figure 5 A sectional view of the display module of the smart watch in 10;
[0039] Figure 9 A sectional view of the display module of the smart watch in 10; Figure 8 A sectional view of the display module of the smart watch in 10;
[0040] Figure 10 A sectional view of the display module of the smart watch in 10; Figure 8 A sectional view of the display module of the smart watch in 10;
[0041] Figure 11 A sectional view of the display module of the smart watch in 10;
[0042] Figure 12 A sectional view of the display module of the smart watch in 10; Figure 1 A sectional view of the display module of the smart watch in 10
[0043] Figure 13 A sectional view of the display module of the smart watch in 10; Figure 12 A sectional view of the display module of the smart watch in 10;
[0044] Figure 14 A sectional view of the display module of the smart watch in 10; Figure 12 A sectional view of the display module of the smart watch in 10;
[0045] Figure 15 A sectional view of the display module of the smart watch in 10; Figure 14 A sectional view of the display module of the smart watch in 10;
[0046] Figure 16 A sectional view of the display module of the smart watch in 10; Figure 15 A sectional view of the display module of the smart watch in 10;
[0047] Figure 17 A sectional view of the display module of the smart watch in 10;
[0048] Figure 18 A sectional view of the display module of the smart watch in 10; Figure 6 A sectional view of the display module of the smart watch in 10;
[0049] Figure 19 A sectional view of the display module of the smart watch in 10; Figure 18 A sectional view of the display module of the smart watch in 10;
[0050] Figure 20 A sectional view of the display module of the smart watch in 10; Figure 19 A sectional view of the display module of the smart watch in 10;
[0051] Figure 21 A sectional view of the display module of the smart watch in 10; Figure 12 A sectional view of the display module of the smart watch in 10;
[0052] Figure 22For Figure 21 A partial structural schematic view of the display module;
[0053] Figure 23 For Figure 22 A partial exploded structural schematic view of the display module;
[0054] Figure 24 For Figure 21 A cross-sectional schematic view of the display module.
[0055] BRIEF DESCRIPTION OF THE DRAWINGS
[0056] 100, smart watch; 10, bearing piece; 11, first connecting structure; 111, first pressing piece; 1111, first clamping protrusion; 1112, first pressing block; 1113, first fence; 1114, first channel; 1115, first protruding column; 1116, first abutting block; 113, first elastic piece; 12, first mounting cavity; 13, first exposed hole; 14, first passing hole; 15, first bearing part; 16, second bearing part; 17, fourth connecting structure; 171, first clamping hook; 20, display module; 21, second connecting structure; 211, clamping piece; 2111, clamping hole; 2112, lower plate body; 2113, intermediate disc; 2114, upper column body; 212, fixing seat; 2121, positioning recess; 2122, third mounting cavity; 2123, fixing cover; 2124, fixing plate; 213, positioning piece; 2131, positioning protrusion; 214, third elastic piece; 215, first blocking piece; 216, second blocking piece; 217, connecting shaft; 218, auxiliary shaft; 219, sleeve; 22, display surface; 23, notch part; 24, fifth connecting structure; 241, third pressing piece; 2411, second clamping hook; 242, fourth elastic piece; 25, fourth mounting cavity; 26, third exposed hole; 27, third passing hole; 30, hanging piece; 31, hanging part; 32, third connecting structure; 321, second pressing piece; 3211, second clamping protrusion; 3212, second pressing block; 3213, second fence; 3214, second channel; 3215, second protruding column; 3216, second abutting block; 323, second elastic piece; 33, second mounting cavity; 34, second exposed hole; 35, second passing hole; 36, first hanging part; 37, second hanging part.
[0057] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0058] With reference to the drawings and embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0059] It should be noted that all directional indications, such as upper, lower, left, right, front, back, etc., in the embodiments of the present application are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly. In the present application, unless otherwise clearly specified and limited, the terms "connection", "fixation", etc. should be understood in a broad sense, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly specified and limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. In addition, the description involving "first", "second", etc. in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the meaning of "and / or" appearing throughout the text is that it includes three parallel solutions, for example, "A and / or B" includes A solution, or B solution, or A and B solutions at the same time. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the fact that those skilled in the art can realize it, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the scope of protection claimed by the present application.
[0060] Please refer to Figures 1 to 6 The present application provides a smart watch 100, in an embodiment of the present application, the smart watch 100 includes a bearing piece 10, a display module 20, a hanging piece 30 and a watchband (not shown); the display module 20 is detachably mounted on the bearing piece 10; in the state that the display module 20 and the bearing piece 10 are separated, the hanging piece 30 is detachably mounted on the display module 20, and the hanging piece 30 is provided with a hanging part 31; the watchband is connected to the bearing piece 10.
[0061] The carrier 10 can be used to provide a mounting position for mounting the display module 20. The carrier 10 can be a plate structure, and can also be a frame structure. The shape of the carrier 10 can be a square body (including a cube and a cuboid), an approximate square body, a cylinder, or an elliptical cylinder, and the like.
[0062] The display module 20 can be used as the main structure of the smart watch 100 to realize the use function of the smart watch 100. For example, the display module 20 can be provided with a display surface 22 to display time information, and can also be used to display short message, email, photo, music, and the like. Further, the display module 20 can be provided with a microphone and a speaker, so that the smart watch 100 can be used for voice call function. Alternatively, the display module 20 can be provided with a camera, so that the smart watch 100 can be used for video call function and / or shooting function. It can be seen that the use function of the smart watch 100 is not limited, and the corresponding function module can be adaptively set according to the need. In addition, the display module 20 can be mounted on the carrier 10 on the side opposite to the display surface 22 to avoid affecting the display of the display surface 22 of the display module 20 by the carrier 10. In addition, the shape of the display module 20 can be square, circular, or elliptical in the projection plane parallel to the display surface 22 of the display module 20. In addition, in order to improve the accuracy and stability of the installation of the display module 20 on the carrier 10, the carrier 10 can be provided with a receiving groove, so that the part of the display module 20 opposite to the display surface 22 can be embedded in the receiving groove, thereby positioning the display module 20 through the receiving groove, and increasing the contact area between the display module 20 and the carrier 10. The hanging piece 30 can be used as an auxiliary accessory to assemble and connect with the display module 20 after the display module 20 is detached from the carrier 10. The hanging piece 30 is provided with a hanging part 31 connected with a hanging rope or a hanging chain, thereby realizing the wearing mode of the smart watch 100 worn on the neck of the user. The shape of the hanging piece 30 can be a square body, an approximate square body, a cylinder, or an elliptical cylinder, and the like. In addition, the hanging part 31 can be a hanging hole or a hanging ring to improve the stability of the hanging. Of course, the hanging part 31 can also be a hook. The watchband can be connected to the opposite sides of the display module 20 to realize the wearing mode of the smart watch 100 worn on the hand of the user.
[0063] The intelligent watch 100 of the technical scheme of the present application is detachably connected with the display module 20 and the carrier 10, and is provided with the hanging piece 30, so that the display module 20 can be connected and assembled with the hanging piece 30 after being detached from the carrier 10. That is, the display module 20 of the intelligent watch 100 in the present scheme can be in the installation mode of being installed on the carrier 10, so that the user can wear the intelligent watch 100 on the hand. At this time, the user can use the intelligent watch 100 only for checking time. Meanwhile, the display module 20 of the intelligent watch 100 in the present scheme can also be in the installation mode of being installed on the hanging piece 30, and the hanging piece 30 is provided with the hanging part 31, which can be connected with a hanging rope or a hanging chain, so that the user can wear the intelligent watch 100 on the neck. At this time, the user can use the intelligent watch 100 for a long time for calling. Therefore, the structure of the intelligent watch 100 in the present scheme can enrich the wearing mode of the intelligent watch 100, so as to improve the applicability in different use scenarios.
[0064] Please refer to Figure 1 , Figures 7 to 14 and Figures 18 to 20 In an embodiment of the present application, the carrier 10 is provided with the first connecting structure 11, the display module 20 is provided with the second connecting structure 21, and the hanging piece 30 is provided with the third connecting structure 32; in the state that the display module 20 is installed on the carrier 10, the second connecting structure 21 and the first connecting structure 11 are detachably connected; in the state that the hanging piece 30 is installed on the display module 20, the third connecting structure 32 and the second connecting structure 21 are detachably connected.
[0065] In the embodiment, the display module 20 is connected to the first connecting structure 11 of the bearing member 10 and the second connecting structure 21 of the hanging member 30 through the second connecting structure 21 in different wearing modes, so that the connecting structure of the display module 20 on the bearing member 10 and the connecting structure of the display module 20 on the hanging member 30 are consistent, thereby facilitating the simplification of the structure of the display module 20 and improving the convenience of manufacturing the display module 20. The number of the first connecting structure 11 can be one, and the number of the first connecting structure 11 can also be two or more. The application does not limit the number of the first connecting structure 11. The number of the second connecting structure 21 and the third connecting structure 32 can correspond to the number of the first connecting structure 11. In addition, the first connecting structure 11 can be arranged on the surface of the bearing member 10 for installing and supporting the display module 20 (which can be defined as a supporting surface), or can be arranged on the side surface (the surface connected to the supporting surface) of the bearing member 10. The application does not limit the arrangement position of the first connecting structure 11. In addition, it should be noted that in other embodiments, the connecting structure of the display module 20 on the bearing member 10 and the connecting structure of the display module 20 on the hanging member 30 can also be different. At this time, two connecting structures can be arranged on the display module 20 to be connected and assembled with the bearing member 10 and the hanging member 30, respectively.
[0066] Please refer to Figures 7 to 14 and Figures 18 to 20 In an embodiment of the application, the second connecting structure 21 is connected to the first connecting structure 11 and the third connecting structure 32 through clamping.
[0067] In the embodiment, the second connecting structure 21 of the display module 20 and the first connecting structure 11 on the bearing member 10 and the second connecting structure 21 on the hanging member 30 are all arranged in a clamping manner, which can make the connecting structure of the display module 20 and the bearing member 10 and the hanging member 30 relatively simple, thereby facilitating the disassembly and assembly of the display module 20 on the bearing member 10 and the hanging member 30. It should be noted that in other embodiments, the second connecting structure 21 and the first connecting structure 11 and the third connecting structure 32 can also be arranged in a magnetic attraction connection or a screw connection, and the application does not limit the connection mode of the second connecting structure 21 and the first connecting structure 11 and the third connecting structure 32. In addition, it should be noted that when the connecting structure of the display module 20 on the bearing member 10 and the connecting structure of the display module 20 on the hanging member 30 are different, the connection between the display module 20 and the bearing member 10 and the connection between the display module 20 and the hanging member 30 can be one clamping connection and the other magnetic attraction connection or screw connection.
[0068] Please refer to Figures 7 to 14 and Figures 18 to 20In an embodiment of the present application, the second connecting structure 21 comprises a clamping piece 211 provided with a clamping hole 2111; the first connecting structure 11 comprises a first pressing piece 111 provided with a first clamping protrusion 1111 configured to be clamped with the clamping hole 2111 and separated from the clamping hole 2111 when the first pressing piece 111 is pressed; and the third connecting structure 32 comprises a second pressing piece 321 provided with a second clamping protrusion 3211 configured to be clamped with the clamping hole 2111 and separated from the clamping hole 2111 when the second pressing piece 321 is pressed.
[0069] In the embodiment, when the display module 20 is mounted on the carrier 10, the first clamping protrusion 1111 on the first pressing member 111 can be inserted into the clamping hole 2111 for clamping cooperation, so as to realize the connection and assembly between the display module 20 and the carrier 10. Then when disassembly is needed, the first pressing member 111 is pressed, so as to drive the first clamping protrusion 1111 to be separated from the clamping hole 2111, thereby realizing the disassembly of the display module 20 on the carrier 10. Similarly, when the display module 20 is mounted on the hanging member 30, the second clamping protrusion 3211 on the second pressing member 321 can be inserted into the clamping hole 2111 for clamping cooperation, so as to realize the connection and assembly between the display module 20 and the hanging member 30. Then when disassembly is needed, the second pressing member 321 is pressed, so as to drive the second clamping protrusion 3211 to be separated from the clamping hole 2111, thereby realizing the disassembly of the display module 20 on the hanging member 30. As can be seen, the first connecting structure 11 and the third connecting structure 32 are respectively provided with the first pressing member 111 and the second pressing member 321, so that when the display module 20 is disassembled from the carrier 10 and the hanging member 30, only a simple pressing action is needed, thereby further improving the convenience of disassembling the display module 20 from the carrier 10 and the hanging member 30. It should be noted that the first pressing member 111 can be elastically deformed by itself, so as to be pressed. At this time, the first pressing member 111 can be a structure type of an elastic arm. Of course, the first pressing member 111 can also be movably installed as described below, so as to be pressed. Similarly, the second pressing member 321 can be elastically deformed by itself, so as to be pressed. At this time, the second pressing member 321 can be a structure type of an elastic arm. Of course, the second pressing member 321 can also be movably installed as described below, so as to be pressed. In addition, it should be noted that the second connecting structure 21 is clamped and cooperated with the first connecting structure 11 and the third connecting structure 32, which can be in the form of clamping cooperation of the clamping protrusion and the clamping hole 2111 as described above, or in the form of clamping cooperation of the clamping hook and the clamping hole 2111, or in the form of clamping cooperation of the clamping hook and the clamping hook. That is, the clamping cooperation form of the second connecting structure 21 with the first connecting structure 11 and the third connecting structure 32 is not limited in the application.
[0070] Please refer to Figures 7 to 14 and Figures 18 to 20In an embodiment of the present application, the carrier 10 is provided with a first installation cavity 12, a first exposure hole 13 and a first passing hole 14 communicating with the first installation cavity 12, the first pressing member 111 is movably installed in the first installation cavity 12 and partially exposed from the first exposure hole 13, and the first passing hole 14 is configured to allow the one end of the clamping member 211 provided with the clamping hole 2111 to be inserted into the first installation cavity 12 to be clamped and matched with the first clamping protrusion 1111; the hanging member 30 is provided with a second installation cavity 33, a second exposure hole 34 and a second passing hole 35 communicating with the second installation cavity 33, the second pressing member 321 is movably installed in the second installation cavity 33 and partially exposed from the second exposure hole 34, and the second passing hole 35 is configured to allow the one end of the clamping member 211 provided with the clamping hole 2111 to be inserted into the second installation cavity 33 to be clamped and matched with the second clamping protrusion 3211.
[0071] In the embodiment, the first pressing member 111 and the second pressing member 321 are movably installed in the first installation cavity 12 and the second installation cavity 33 respectively, which can improve the compactness of the distribution of the first pressing member 111 on the carrier 10 and the compactness of the distribution of the second pressing member 321 on the hanging member 30. When the display module 20 is defined to be installed on the upper side of the carrier 10, the first passing hole 14 can be arranged on the upper surface of the carrier 10, and the first exposure hole 13 can be arranged on the side surface of the carrier 10. Similarly, the second passing hole 35 and the second exposure hole 34 can also be arranged on the adjacent two surfaces of the hanging member 30. In addition, the movable installation of the first pressing member 111 and the second pressing member 321 includes rotary installation and sliding installation. When the first pressing member 111 and the second pressing member 321 are rotatably installed, pressing them can drive them to rotate. When the first pressing member 111 and the second pressing member 321 are slidably installed, pressing them can drive them to slide. In order to simplify the connection structure, the first pressing member 111 and the second pressing member 321 can be arranged to be slidably installed.
[0072] Please refer to Figures 8 to 11In an embodiment of the present application, the carrier 10 can include a first carrier portion 15 and a second carrier portion 16. The first carrier portion 15 can be used to mount and carry the display module 20. The second carrier portion 16 can be connected to the first carrier portion 15 and enclose the first carrier portion 15 to form the first mounting cavity 12 and the first exposure hole 13. The first passing hole 14 can be provided on the first carrier portion 15. At this time, the carrier 10 can be split into the first carrier portion 15 and the second carrier portion 16 for separate manufacturing, and then assembled together to form the first mounting cavity 12, thereby facilitating the convenience of processing and forming. Moreover, the first carrier portion 15 and the second carrier portion 16 can be detachably connected, for example, screw connection or magnetic attraction connection, so as to maintain and replace the first pressing member 111 and other components in the first mounting cavity 12. Similarly, please refer to Figures 18 to 20 In an embodiment of the present application, the carrier 10 can include a first carrier portion 15 and a second carrier portion 16. The first carrier portion 15 can be used to mount and carry the display module 20. The second carrier portion 16 can be connected to the first carrier portion 15 and enclose the first carrier portion 15 to form the first mounting cavity 12 and the first exposure hole 13. The first passing hole 14 can be provided on the first carrier portion 15. At this time, the carrier 10 can be split into the first carrier portion 15 and the second carrier portion 16 for separate manufacturing, and then assembled together to form the first mounting cavity 12, thereby facilitating the convenience of processing and forming. Moreover, the first carrier portion 15 and the second carrier portion 16 can be detachably connected, for example, screw connection or magnetic attraction connection, so as to maintain and replace the first pressing member 111 and other components in the first mounting cavity 12. Similarly, please refer to
[0073] Please refer to Figure 11 and Figure 20 In an embodiment of the present application, the first connecting structure 11 further includes a first elastic member 113. The first elastic member 113 is arranged in the first mounting cavity 12 and located between the first pressing member 111 and the carrier 10. The first elastic member 113 is configured to drive the first pressing member 111 to move back when the first pressing member 111 cancels the external force. The third connecting structure 32 further includes a second elastic member 323. The second elastic member 323 is arranged in the second mounting cavity 33 and located between the second pressing member 321 and the carrier 10. The second elastic member 323 is configured to drive the second pressing member 321 to move back when the second pressing member 321 cancels the external force.
[0074] The first elastic member 113 and the second elastic member 323 are arranged in the embodiment, so that the first pressing member 111 and the second pressing member 321 can be automatically reset after the pressing force is cancelled, for the next use. Meanwhile, under the action of the first elastic member 113 and the second elastic member 323, the first clamping convex 1111 and the second clamping convex 3211 can be respectively driven to be stably clamped in the clamping hole 2111, and further, the stability of the connection assembly of the display module 20 on the bearing member 10 and the hanging member 30 is improved. The first elastic member 113 can be a spring, and of course, it can also be a spring sheet. The structure type of the first elastic member 113 is not limited in the application. In addition, the number of the first elastic member 113 can be one, and of course, it can also be two or more. Similarly, the second elastic member 323 can be a spring, and of course, it can also be a spring sheet. The structure type of the second elastic member 323 is not limited in the application. In addition, the number of the second elastic member 323 can be one, and of course, it can also be two or more.
[0075] Please refer to Figure 11 In an embodiment of the application, the first pressing member 111 can include a first pressing block 1112 and a first surrounding plate 1113. The first pressing block 1112 can be slidably installed in the first installation cavity 12 and partially extended from the first exposure hole 13. The two ends of the first surrounding plate 1113 can be connected to the side of the first pressing block 1112 away from the side for pressing, and the first surrounding plate 1113 and the first pressing block 1112 can form a first channel 1114. The first clamping convex 1111 can be protruded on the wall of the first surrounding plate 1113 facing the first pressing block 1112 and located in the first channel 1114. At this time, the first surrounding plate 1113 can form a U-shaped structure, so that the first clamping convex 1111 on the opposite sides in the first direction (the first direction intersects the sliding direction of the first pressing member 111 and the insertion direction of the clamping member 211) can be connected by the first surrounding plate 1113 to improve the overall structural strength of the first pressing member 111. Further, in order to improve the stability of the sliding of the first pressing member 111, the number of the first elastic member 113 can be set to at least two, and located on the opposite sides of the first surrounding plate 1113 in the first direction. Moreover, the first pressing block 1112 can be provided with a first protruding column 1115 corresponding to the first elastic member 113, so as to be respectively inserted into the corresponding first elastic member 113, thereby achieving the installation of the first elastic member 113 and the limiting and guiding effect on the elastic force direction. In addition, the two sides of the first pressing block 1112 in the first direction can be provided with a first abutting block 1116, so as to abut the inner side of the first installation cavity 12 through the two first abutting blocks 1116, thereby preventing the first pressing member 111 from sliding out of the first exposure hole 13.
[0076] Please refer to Figure 20In an embodiment of the present application, the second pressing member 321 can include a second pressing block 3212 and a second enclosing plate 3213. The second pressing block 3212 can be slidingly installed in the second installation cavity 33 and partially extended out of the second exposure hole 34. The two ends of the second enclosing plate 3213 can be connected to the side of the second pressing block 3212 opposite to the side used for pressing, and form a second channel 3214 together with the second pressing block 3212. The second clamping protrusion 3211 can be protruded on the wall of the second enclosing plate 3213 opposite to the second pressing block 3212 and located in the second channel 3214. At this time, the second enclosing plate 3213 can form a U-shaped structure, so that the two opposite sides of the second clamping protrusion 3211 in the second direction (which intersects the sliding direction of the second pressing member 321 and the insertion direction of the clamping member 211) can be connected and strengthened by the second enclosing plate 3213, and the overall structural strength of the second pressing member 321 can be improved. Further, in order to improve the stability of the sliding of the second pressing member 321, the number of the second elastic members 323 can be set to at least two, and located on the opposite sides of the second enclosing plate 3213 in the second direction. Moreover, the second pressing block 3212 can also be provided with a second protruding column 3215 corresponding to the second elastic member 323, so as to be inserted into the corresponding second elastic member 323, thereby achieving the installation of the second elastic member 323 and the limiting and guiding effect on the elastic force direction. In addition, the two sides of the second pressing block 3212 in the second direction can also be provided with a second abutting block 3216, so as to abut against the inner side of the second installation cavity 33 through the two second abutting blocks 3216, thereby preventing the second pressing member 321 from sliding out of the second exposure hole 34.
[0077] In an embodiment of the present application, in order to realize that the one end of the clamping member 211 provided with the clamping hole 2111 can automatically drive the first pressing member 111 to slide and avoid during the process of being inserted into the first channel 1114 of the first pressing member 111 through the first passing hole 14, so as to realize the clamping and cooperation of the clamping member 211 and the first clamping protrusion 1111, a guide slope or a guide arc surface can be provided on the one end of the clamping member 211 provided with the clamping hole 2111 and / or the first clamping protrusion 1111. Of course, when the guide slope and the guide arc surface are not provided, the insertion of the clamping member 211 can be avoided by pressing the first pressing member 111. Similarly, in order to realize that the one end of the clamping member 211 provided with the clamping hole 2111 can automatically drive the first pressing member 111 to slide and avoid during the process of being inserted into the first channel 1114 of the second pressing member 321 through the second passing hole 35, so as to realize the clamping and cooperation of the clamping member 211 and the second clamping protrusion 3211, a guide slope or a guide arc surface can be provided on the one end of the clamping member 211 provided with the clamping hole 2111 and / or the second clamping protrusion 3211. Of course, when the guide slope and the guide arc surface are not provided, the insertion of the clamping member 211 can be avoided by pressing the second pressing member 321.
[0078] Please refer to Figure 3 and Figure 4 , and Figures 12 to 15 In an embodiment of the present application, the second connecting structure 21 further comprises a fixing seat 212, the clamping piece 211 is rotationally connected to the fixing seat 212 around the first axis at an end away from the clamping hole 2111, and the display module 20 is rotationally connected to the fixing seat 212 around the second axis; the first axis intersects the display surface 22, and the second axis intersects the first axis.
[0079] In the embodiment, the display module 20 can have an initial installation posture in which the display surface 22 is arranged to face away from the bearing member 10, and can be rotated around the second axis relative to the fixing seat 212 to form an installation posture, and the fixing seat 212 can be rotated around the first axis relative to the bearing member 10, so that the display module 20 can also form another installation posture. In this way, the installation postures of the display module 20 are diversified, and the user can have more visual angles to adaptively use the display module 20, thereby facilitating the convenience of use of the smart watch 100. When the display module 20 is installed on the bearing member 10 in the initial installation posture, the display surface 22 can be defined to be arranged upward. At this time, the first axis can be vertically arranged, and the second axis can be horizontally arranged. In addition, the fixing seat 212 can be rotated 360° around the first axis relative to the clamping piece 211, of course, it can also be rotated 180°, and the present application does not limit the rotation stroke of the fixing seat 212 around the first axis relative to the clamping piece 211. Moreover, the fixing seat 212 can be relatively fixed after being rotated to any angle around the first axis relative to the clamping piece 211, of course, it can also be relatively fixed after being rotated to a corresponding gear angle. In addition, the display module 20 can be rotated to 90° around the second rotation axis relative to the fixing seat 212, so that the display module 20 is used in a vertical installation posture, of course, it can also be rotated to other angles. In addition, one side of the display module 20 having the display surface 22 and the side facing away from the display surface 22 can be provided with a camera, so as to better perform video call or shooting function after the display module 20 is rotated.
[0080] Please refer to Figures 15 to 17In an embodiment of the present application, the clamping piece 211 is slidingly connected to the fixing base 212 along the first axis, the second connecting structure 21 further comprises a positioning piece 213, the positioning piece 213 being connected to the clamping piece 211; one of the positioning piece 213 and the fixing base 212 is provided with a positioning protrusion 2131, and the other is provided with a positioning recess 2121, the positioning protrusion 2131 being embedded in the positioning recess 2121 to position the initial position of the fixing base 212 relative to the clamping piece 211; the second connecting structure 21 further comprises a third elastic piece 214, the third elastic piece 214 being connected to the clamping piece 211 and the fixing base 212.
[0081] In the embodiment, the initial position can also be said to be the position of the display module in the installed posture formed by rotating 90° relative to the fixing base 212. At this time, the positioning protrusion 2131, the positioning recess 2121 and the third elastic piece 214 are matched to realize that the fixing base 212 can slide during rotation around the first axis relative to the clamping piece 211, so that the positioning protrusion 2131 and the positioning recess 2121 are disengaged to facilitate rotation of the fixing base 212; then when the fixing base 212 is rotated to 180°, the positioning protrusion 2131 can be embedded in the positioning recess 2121 again under the elastic force of the third elastic piece 214 to position the current position of the fixing base 212, thereby facilitating subsequent rotation of the display module around the second axis relative to the fixing base 212 to reset to the initial installed posture. The positioning protrusion 2131 can be a column, a block or a protrusion, and the positioning recess 2121 can be a groove or a hole, and the present application does not limit the structure type of the positioning protrusion 2131 and the positioning recess 2121. In addition, the number of the positioning protrusion 2131 can be one, of course, it can also be two or more, and the number of the positioning recess 2121 can be set corresponding to the number of the positioning protrusion 2131. The positioning piece 213 can be an annular structure as described below, of course, it can also be a block structure, and the present application does not limit the structure type of the positioning piece 213. The third elastic piece 214 can be a spring, of course, it can also be a spring sheet, and the present application does not limit the structure type of the third elastic piece 214.
[0082] Please refer to Figures 15 to 17In an embodiment of the present application, the fixing base 212 is provided with a third mounting cavity 2122, the clamping member 211 is sleeved on the first axis and slides along the first axis to pass through the fixing base 212, and the clamping member 211 is provided with a clamping hole 2111, one end of which is located outside the third mounting cavity 2122, and the other end thereof is located inside the third mounting cavity 2122; the positioning member 213 is in a ring structure, and is sleeved on the clamping member 211 located outside the third mounting cavity 2122; the third elastic member 214 is sleeved on the clamping member 211 located inside the third mounting cavity 2122; and the second connecting structure 21 further comprises a first blocking member 215, which is arranged on the clamping member 211 located inside the third mounting cavity 2122, and cooperates with the fixing base 212 to clamp the third elastic member 214.
[0083] In the embodiment, the third mounting cavity 2122 is arranged in the fixing base 212, and can accommodate part of the clamping member 211 and the third elastic member 214, thereby facilitating the compactness of the structure distribution, so as to reduce the overall volume of the second connecting structure 21 and improve the convenience of the installation and arrangement of the second connecting structure 21 on the display module 20. Moreover, the third elastic member 214 and the positioning member 213 are both sleeved on the clamping member 211, thereby facilitating the assembly of the third connecting structure 32. The arrangement of the first blocking member 215 can avoid the possibility of the clamping member 211 sliding out of the fixing base 212, and improve the stability of the assembly between the clamping member 211 and the fixing base 212. The first blocking member 215 can also be in a ring structure, so as to be sleeved on the clamping member 211. Of course, in other embodiments, the first blocking member 215 can also be in a plate structure, and the present application does not limit the structure type of the first blocking member 215.
[0084] Further, please refer to Figures 15 to 17The clamping member 211 can include a lower plate body 2112, an intermediate disc 2113, and an upper column body 2114. The lower plate body 2112 can be connected to the lower surface of the intermediate disc 2113 and extend downward. The clamping hole 2111 introduced above can be arranged on the lower plate body 2112, so that the size of the lower plate body 2112 in the sliding direction of the first pressing member 111 is smaller, facilitating the clamping and disengagement of the clamping convex. The upper column body 2114 can be connected to the upper surface of the intermediate disc 2113 and extend upward, so that the connection between the upper column body 2114 and the intermediate disc 2113 can form a step, thereby facilitating the installation of the limiting member 213 introduced above at the step. In addition, the upper column body 2114 can be a cylindrical body and further provided with a rotation-stopping plane, so that the first blocking member 215 will not rotate after being fitted and installed. The fixing seat 212 can be provided with a circular hole for the upper column body 2114 to pass through, so that the fixing seat 212 can rotate relative to the clamping member 211. In addition, the second connecting structure 21 can further include a second blocking member 216, which is fitted and installed between the third elastic member 214 and the fixing seat 212, to avoid the fixing seat 212 from rotating the third elastic member 214 when the fixing seat 212 rotates relative to the clamping member 211. It should be noted that the first blocking member 215 can be fixed to the upper column body 2114, and the second blocking member 216 can slide along the first axis relative to the upper column body 2114, so that the disengagement of the positioning convex 2131 and the positioning concave 2121 introduced above.
[0085] Please refer to Figures 12 to 15In an embodiment of the present application, the fixing seat 212 can include a fixing cover 2123 and a fixing plate 2124, the fixing plate 2124 is connected to the opening at one end of the fixing cover 2123 and forms the third mounting cavity 2122 together with the fixing cover 2123. In this way, the fixing seat 212 can be divided into the fixing cover 2123 and the fixing plate 2124 for separate manufacture, and then assembled together to form the third mounting cavity 2122, thereby facilitating the convenience of processing and forming. At this time, the upper column body 2114 in the clamping piece 211 can be rotatably arranged in the fixing plate 2124, and the positioning recess 2121 can also be arranged on the fixing plate 2124. Moreover, in order to further simplify the assembly of the second connecting structure 21, the fixing plate 2124 can be locked to the fixing cover 2123 by screws. Moreover, the second connecting structure 21 can also include a connecting shaft 217, one end of the connecting shaft 217 can pass through the fixing cover 2123 and extend into the third mounting cavity 2122, so as to be locked to the fixing cover 2123 by the screws connecting the fixing plate 2124 and the fixing cover 2123. The connecting shaft 217 located outside the fixing cover 2123 can be rotatably arranged in the display module. In addition, in order to improve the stability of the rotation of the display module 20, the second connecting structure 21 can also include an auxiliary shaft 218, one end of the auxiliary shaft 218 can be rotatably arranged in the fixing cover 2123 away from the one end of the connecting shaft 217, and the other end can be rotatably arranged in the display module 20, the axis of the auxiliary shaft 218 and the rotating shaft are located on the same straight line. Moreover, in order to reduce the wear between the display module 20 and the connecting shaft 217 and the auxiliary shaft 218, the second connecting structure 21 can also include two sleeves 219 made of wear-resistant materials (for example, carbon steel or alloy steel), the two sleeves 219 can be respectively sleeved on the connecting shaft 217 and the auxiliary shaft 218, and the outer contour of the sleeve 219 can be a square, a rectangle or a hexagon, so that after the sleeve 219 is fitted and arranged in the display module 20, the sleeve 219 and the display module 20 do not rotate relative to each other. Please refer to Figures 12 to 14 The display module 20 can also be provided with a notch portion 23, so as to accommodate the fixing seat 212, thereby improving the compactness of the distribution of the fixing seat 212 on the display module 20 and reducing the overall volume of the display module 20.
[0086] Please refer to Figures 1 to 3 and Figures 21 to 24 In an embodiment of the present application, the first connecting structure 11 is arranged on one of the opposite sides of the bearing member 10, and the other of the opposite sides of the bearing member 10 is provided with a fourth connecting structure 17; the display module 20 is provided with a fifth connecting structure 24, and the fifth connecting structure 24 and the fourth connecting structure 17 are detachably connected.
[0087] In the embodiment, one side of the display module 20 is connected by the second connecting structure 21 and the first connecting structure 11, and the other side is detachably connected by the fifth connecting structure 24 and the fourth connecting structure 17, so that the other side of the display module 20 can also be locked and limited, and then without rotating the display module 20 around the second axis, the stability of the installation of the display module 20 on the bearing 10 can be improved. The fifth connecting structure 24 and the fourth connecting structure 17 can be a clamping connection as described below, or can be a magnetic connection, or can be a screw connection, and the application does not limit the detachable connection mode between the fifth connecting structure 24 and the fourth connecting structure 17.
[0088] Please combine Figure 3 , and Figures 21 to 24 In an embodiment of the application, the fourth connecting structure 17 includes a first clamping hook 171, and the fifth connecting structure 24 includes a third pressing piece 241, the third pressing piece 241 is provided with a second clamping hook 2411, the second clamping hook 2411 is configured to be clamped and matched with the first clamping hook 171, and separated from the first clamping hook 171 when the third pressing piece 241 is pressed.
[0089] In the embodiment, when the display module 20 is installed on the bearing 10, the second clamping hook 2411 on the third pressing piece 241 can be clamped and matched with the first clamping hook 171 to realize the connection and assembly between the side of the display module 20 and the bearing 10. Then when disassembly is needed, the second clamping hook 2411 and the first clamping hook 171 can be separated by pressing the third pressing piece 241, thereby realizing the disassembly of the display module 20 on the bearing 10. As can be seen, the fifth connecting structure 24 is provided with the third pressing piece 241, so that only a simple pressing action is needed when the display module 20 is disassembled on the bearing 10, thereby further improving the convenience of disassembling the display module 20 from the bearing 10. It should be noted that the third pressing piece 241 can be elastically deformed by itself so as to be pressed. At this time, the third pressing piece 241 can be a structure type of an elastic arm. Of course, the third pressing piece 241 can also be provided to be movably installed as described below so as to be pressed. In addition, the fourth connecting structure 17 can include only one first clamping hook 171, and of course can include two or more first clamping hooks 171, which can be arranged along the first direction as described above. At this time, two or more second clamping hooks 2411 can be correspondingly provided on the third pressing piece 241, so as to improve the stability of the connection between the display module 20 and the bearing 10, and at the same time, two or more second clamping hooks 2411 can be separated from the corresponding first clamping hooks 171 by one third pressing piece 241, thereby ensuring the convenience of disassembly.
[0090] Please refer to Figures 21 to 24 In an embodiment of the present application, in order to improve the compactness of the structure distribution, the display module 20 can be provided with a fourth mounting cavity 25, and a third exposure hole 26 and a third passing hole 27 communicating with the fourth mounting cavity 25. The third pressing piece 241 can be movably installed in the fourth mounting cavity 25 and partially exposed by the third exposure hole 26. The third passing hole 27 is configured to allow the first hook 171 to extend into the fourth mounting cavity 25 to be clamped and matched with the second hook 2411. Wherein, the movable installation of the third pressing piece 241 includes rotary installation and sliding installation. When the third pressing piece 241 is rotary installed, it can be driven to rotate after being pressed. When the third pressing piece 241 is slidingly installed, it can be driven to slide after being pressed. In order to facilitate the driving of the third pressing piece 241 to separate the second hook 2411 and the first hook 171, the third pressing piece 241 can be provided as rotary installation.
[0091] Please refer to Figures 22 to 24 In an embodiment of the present application, the fifth connecting structure 24 can further include a fourth elastic piece 242. The fourth elastic piece 242 is arranged in the fourth mounting cavity 25 and located between the third pressing piece 241 and the display module 20. The fourth elastic piece 242 is configured to drive the third pressing piece 241 to move back to the original position when the external force on the third pressing piece 241 is removed. In this embodiment, the fourth elastic piece 242 can make the third pressing piece 241 automatically reset after the pressing force is removed, so as to be used next time. At the same time, under the action of the fourth elastic piece 242, the second hook 2411 can also be driven to be stably clamped on the first hook 171, thereby improving the stability of the connection and assembly of the display module 20 on the bearing piece 10. Wherein, the fourth elastic piece 242 can be a spring, of course, it can also be a spring sheet, and the present application does not limit the structure type of the fourth elastic piece 242. In addition, the number of the fourth elastic piece 242 can be one, of course, it can also be two or more.
[0092] The above description is only the preferred embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation made according to the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.
Claims
1. A smart watch, characterized by The application relates to a display module, which comprises a carrier, a display module detachably mounted on the carrier, and a hanging piece detachably mounted on the display module when the display module and the carrier are separated, the hanging piece being provided with a hanging part. The carrier is provided with a first connecting structure, the display module is provided with a second connecting structure, and the hanging piece is provided with a third connecting structure. The second connecting structure and the first connecting structure are detachably connected when the display module is mounted on the carrier. The third connecting structure and the second connecting structure are detachably connected when the hanging piece is mounted on the display module. The second connecting structure is snap-connected with the first connecting structure and the third connecting structure.
2. The smart watch of claim 1, wherein, The second connecting structure comprises a snap piece provided with a snap hole. The first connecting structure comprises a first pressing piece provided with a first snap convex, which is configured to be snap-connected with the snap hole and separated from the snap hole when the first pressing piece is pressed. The third connecting structure comprises a second pressing piece provided with a second snap convex, which is configured to be snap-connected with the snap hole and separated from the snap hole when the second pressing piece is pressed.
3. The smart watch of claim 2, wherein, The carrier is provided with a first mounting cavity, a first exposure hole and a first passing hole communicating with the first mounting cavity, the first pressing piece is movably mounted in the first mounting cavity and partially exposed from the first exposure hole, and the first passing hole is configured to allow one end of the snap piece provided with the snap hole to extend into the first mounting cavity to be snap-connected with the first snap convex.
4. The smart watch of claim 3, wherein, The hanging piece is provided with a second mounting cavity, a second exposure hole and a second passing hole communicating with the second mounting cavity, the second pressing piece is movably mounted in the second mounting cavity and partially exposed from the second exposure hole, and the second passing hole is configured to allow one end of the snap piece provided with the snap hole to extend into the second mounting cavity to be snap-connected with the second snap convex. The first connecting structure further comprises a first elastic piece arranged in the first mounting cavity and located between the first pressing piece and the carrier, the first elastic piece being configured to drive the first pressing piece to move back when the first pressing piece is free from external force. The third connecting structure further comprises a second elastic piece arranged in the second mounting cavity and located between the second pressing piece and the hanging piece, the second elastic piece being configured to drive the second pressing piece to move back when the second pressing piece is free from external force.
5. The smart watch of claim 4, wherein, The second connecting structure further comprises a fixing seat, one end of the snap piece away from the snap hole being rotatably connected to the fixing seat around a first axis, and the display module being rotatably connected to the fixing seat around a second axis. The display module has a display surface, the first axis intersects the display surface, and the second axis intersects the first axis.
6. The smart watch of claim 5, wherein, 7. The smart watch of claim 4, wherein, 8. The smart watch of claim 7, wherein, The clamping piece is slidably connected to the fixing base along the first axis, the second connecting structure further comprises a positioning piece connected to the clamping piece, one of the positioning piece and the fixing base is provided with a positioning convex, and the other is provided with a positioning concave, the positioning convex is embedded in the positioning concave, so as to position the initial position of the fixing base relative to the clamping piece when the fixing base is not rotated relative to the clamping piece; the second connecting structure further comprises a third elastic piece connected to the clamping piece and the fixing base; And / or, the second connecting structure further comprises a connecting shaft and an auxiliary shaft, one end of the connecting shaft is fixedly connected to the fixing base, and the other end is rotatably inserted into the display module; one end of the auxiliary shaft is rotatably inserted into the fixing base away from the other end of the connecting shaft, and the other end is rotatably inserted into the display module.
9. The smart watch of claim 8, wherein, The fixing base is provided with a third mounting cavity, the clamping piece is rotatably and slidably inserted into the fixing base, and one end of the clamping piece provided with the clamping hole is located outside the third mounting cavity, and the other end away from the clamping hole is located in the third mounting cavity; When the second connecting structure comprises the positioning piece and the third elastic piece, the positioning piece is an annular structure and is sleeved on the clamping piece located outside the third mounting cavity, and the third elastic piece is sleeved on the clamping piece located in the third mounting cavity; The second connecting structure further comprises a first blocking piece, the first blocking piece is arranged on the clamping piece located in the third mounting cavity, and the fixing base and the first blocking piece cooperate to clamp the third elastic piece. 10.The smart watch according to any one of claims 2 to 9, wherein, The first connecting structure is arranged on one of the opposite sides of the bearing piece, and the other of the opposite sides of the bearing piece is provided with a fourth connecting structure; the display module is provided with a fifth connecting structure, and the fifth connecting structure and the fourth connecting structure are detachably connected; And / or, the mounting part is a hanging hole or a hanging ring; And / or, the smart watch further comprises a watchband connected to the bearing piece.