Smart host and smart wearable device

The design of detachable connection between the smart host's bracket and the host body solves the problem of insufficient ease of use of smart wearable devices during calls and shooting, improves the user experience, and avoids increased size of the host body and accidental operation.

CN115129118BActive Publication Date: 2025-12-19GUANGDONG XIAOTIANCAI TECH CO LTD
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Patent Information

Application Number
CN202111556783.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-17
Publication Date
2025-12-19
Estimated Expiration
2041-12-17

AI Technical Summary

Technical Problem

Existing smart wearable devices lack ease of use during calls and photography, resulting in a poor user experience.

Method used

Design an intelligent host, including a bracket, a mounting structure, and a host body. The mounting structure 2 connects the host body to the bracket. The host body is rotatably connected to the mounting structure. When the host body can rotate relative to the bracket to a predetermined angle, the mounting structure can be detached from the bracket.

Benefits of technology

It improves the ease of use of the smart host, enhances the user experience, avoids the problem of excessive host size caused by detachable structure, and reduces the possibility of accidental operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an intelligent host and an intelligent wearable device, wherein the intelligent host comprises a support, a mounting structure and a host body; the mounting structure is detachably connected to the support; the host body is rotatably connected to the mounting structure; when the mounting structure is connected to the support, the host body can rotate relative to the support; when the host body rotates to a predetermined angle relative to the support, the mounting structure can be detached relative to the support, so that the host body can be separated from the support. In this way, the user can detach the host body from the support through the mounting structure, so as to meet the needs of the user in answering the phone or shooting.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent wearable devices, and particularly relates to an intelligent main machine and an intelligent wearable device. BACKGROUND

[0002] In the related art, an intelligent wearable device (such as a smart watch, a smart bracelet, etc.) integrates multiple functions such as a calling function and a photographing function, thereby meeting multiple use requirements of a user.

[0003] However, for some use scenarios, the use convenience of the intelligent wearable device is insufficient, resulting in poor user experience. For example, during a call, a user needs to raise an arm and close to an ear to clearly hear a call sound, and long-time calling causes the user's arm to be sore, and for another example, when a user needs to take a photograph, an arm posture needs to be adjusted to meet a photographing angle requirement, and even the adjustment of the arm posture is still difficult to meet the photographing angle requirement, and photographing is difficult. SUMMARY

[0004] Embodiments of the present application disclose an intelligent main machine and an intelligent wearable device, the use convenience of the intelligent main machine is higher, thereby being beneficial to improving user experience.

[0005] In order to achieve the above-mentioned purpose, in a first aspect, embodiments of the present application disclose an intelligent main machine, comprising:

[0006] a support;

[0007] a mounting structure, the mounting structure being detachably connected to the support; and

[0008] a main machine body, the main machine body being rotatably connected to the mounting structure;

[0009] when the mounting structure is connected to the support, the main machine body is rotatable relative to the support, and when the main machine body is rotated to a predetermined angle relative to the support, the mounting structure is detachable relative to the support, so that the main machine body and the support are separable.

[0010] As an optional implementation, in the embodiments of the first aspect of the present application, the mounting structure comprises a mounting assembly and a rotating component rotatably connected to the mounting assembly, the mounting assembly is detachably connected to the support, the main machine body is connected to the rotating component, so as to be rotated relative to the mounting assembly under the driving of the rotating component, and when the main machine body is rotated to the predetermined angle relative to the support, the mounting assembly is detachable relative to the support, so that the main machine body and the support are separable.

[0011] As an optional implementation, in the embodiment of the first aspect of the present application, the bracket is provided with a plug-in slot, the mounting assembly comprises a mounting component and a first plug-in part, the mounting component is provided with a mounting cavity, the mounting cavity is communicated with the plug-in slot, and the first plug-in part is slidably arranged in the mounting cavity;

[0012] The rotating component is used for rotating to drive the first plug-in part to slide relative to the mounting cavity and be inserted into the plug-in slot, so as to realize the connection between the mounting structure and the bracket;

[0013] The rotating component is also used for rotating to drive the first plug-in part to slide relative to the mounting cavity and be separated from the plug-in slot when the main machine body is rotated relative to the bracket to the predetermined angle, so as to realize the detachability of the mounting structure relative to the bracket.

[0014] As an optional implementation, in the embodiment of the first aspect of the present application, the plug-in slot has a first opening, and the opening direction of the first opening is parallel to the surface of the bracket provided with the plug-in slot.

[0015] As an optional implementation, in the embodiment of the first aspect of the present application, one of the first plug-in part and the rotating component has a protruding part, and the other of the first plug-in part and the rotating component is provided with a recess;

[0016] When the rotating component rotates to drive the main machine body to rotate relative to the bracket to the predetermined angle, the protruding part is located in the recess, so that the first plug-in part slides relative to the mounting cavity and is separated from the plug-in slot;

[0017] When the rotating component rotates to make the protruding part be located outside the recess, the rotating component drives the first plug-in part to slide relative to the mounting cavity and be inserted into the plug-in slot.

[0018] As an optional implementation, in the embodiment of the first aspect of the present application, the protruding part has a first guide surface matched with the recess, and / or the recess has a second guide surface matched with the protruding part;

[0019] The first guide surface and the second guide surface are inclined surfaces or arc surfaces.

[0020] As an optional implementation, in the embodiment of the first aspect of the present application, the first plug-in part comprises a plug-in part and the protruding part connected to the plug-in part, and the rotating component is provided with the recess;

[0021] The length of the insertion part along the second opening direction of the installation cavity is L, 0.3mm≤L≤1mm, and / or the protruding part has the first guide surface, the groove has the second guide surface, and the first guide surface and the second guide surface are inclined surfaces, the inclination angle of the first guide surface and the second guide surface is θ, 15°≤θ≤90°, so that 5°≤β≤90°, wherein β is the deviable angle of the predetermined angle.

[0022] As an optional implementation, in the embodiment of the first aspect of the present application, the first insertion part is provided as two, both of the first insertion parts are provided with the protruding part, and the rotating part is provided with two grooves, and each of the protruding parts is correspondingly arranged with each of the grooves.

[0023] As an optional implementation, in the embodiment of the first aspect of the present application, the rotating part comprises a first rotating shaft and a cam sleeved on the first rotating shaft, the outer periphery of the cam is provided with two grooves, the two grooves are located on both sides of the cam relative to the center of the first rotating shaft, and the two grooves are staggered along the axis direction of the first rotating shaft. As an optional implementation, in the embodiment of the first aspect of the present application, the first insertion part comprises an insertion part and a receiving part connected to the insertion part, the side of the receiving part away from the insertion part is provided with a recess, the protruding part is arranged in the recess, and the recess has a wall surface for connecting with the outer periphery of the cam, and the wall surface is an arc surface.

[0024] As an optional implementation, in the embodiment of the first aspect of the present application, the installation assembly further comprises a first elastic member, the first elastic member is arranged between the inner wall surface of the installation cavity and the first insertion part, and the first elastic member is used to provide the acting force of pressing the first insertion part to the rotating part.

[0025] As an optional implementation, in the embodiment of the first aspect of the present application, the bracket is provided with an installation slot, the insertion slot is arranged in the installation slot and communicates with the installation slot, and the installation part is installed in the installation slot.

[0026] The opening direction of the insertion slot is perpendicular to the opening direction of the installation slot.

[0027] As an optional implementation, in the embodiment of the first aspect of the present application, one of the inner wall surface of the installation slot and the outer wall surface of the installation part is provided with a buckle, the other of the inner wall surface of the installation slot and the outer wall surface of the installation part is provided with a clamping groove, and the buckle is connected to the clamping groove in a clamping manner.

[0028] As an optional implementation, in the embodiment of the first aspect of the present application, the buckle comprises a fixing part and a buckling part, the fixing part is arranged on the inner wall surface of the mounting groove or the outer wall surface of the mounting component, the fixing part is provided with a hollow part, and the buckling part is arranged on the fixing part and corresponds to the hollow part, and the hollow part is used to provide a deformation space for the buckling part.

[0029] The clamping groove is provided with a clamping surface for clamping the buckling part, and the clamping surface is an inclined surface.

[0030] As an optional implementation, in the embodiment of the first aspect of the present application, the bottom wall of the mounting groove is provided with a relief hole, the inner wall surface of the mounting groove is provided with a bearing part near the relief hole, the mounting component is provided with an abutting part corresponding to the bearing part, and the abutting part is connected with the bearing part to enable the bearing part to bear the mounting component.

[0031] As an optional implementation, in the embodiment of the first aspect of the present application, the rotating component comprises a first rotating shaft, one end of the first rotating shaft is connected to the main machine body, the other end of the first rotating shaft is rotatably connected to the mounting assembly, the axis of the first rotating shaft is perpendicular to the surface of the support for mounting the mounting assembly, and the first rotating shaft is used to rotate the main machine body relative to the support around the axis of the main machine body; and / or,

[0032] The rotating component comprises a second rotating shaft, the second rotating shaft is rotatably connected with the main machine body, the axis of the second rotating shaft is perpendicular to the axis of the first rotating shaft, so that the main machine body can be flipped relative to the support.

[0033] As an optional implementation, in the embodiment of the first aspect of the present application, when the rotating component comprises the first rotating shaft and the second rotating shaft, the rotating component further comprises a connecting seat body, the connecting seat body has opposite first and second faces, the first face is provided with a first shaft hole penetrating the second face, the first rotating shaft is arranged in the first shaft hole and rotatably connected with the mounting assembly, and the mounting assembly is arranged on the second face.

[0034] The first face is further provided with a boss, the boss is provided with a second shaft hole penetrating the boss, the second rotating shaft is arranged in the second shaft hole, and the main machine body is connected to the boss.

[0035] As an optional implementation, in the embodiment of the first aspect of the present application, the second face is provided with a first gear part, and the side of the mounting assembly facing the second face is provided with a second gear part, the second gear part is used to be connected with the first gear part when the main machine body is rotated to the predetermined angle relative to the support.

[0036] As an optional implementation, in an embodiment of the first aspect of the present invention, the bracket is provided with a first magnetic suction member, the mounting structure is provided with a second magnetic suction member, and the first magnetic suction member and the second magnetic suction member are magnetically connected.

[0037] Secondly, the present invention also discloses a smart wearable device, comprising:

[0038] The intelligent host, wherein the intelligent host is as described in the first aspect above; and

[0039] A wearable component, which is connected to the bracket of the smart host.

[0040] Compared with the prior art, the beneficial effects of the embodiments of the present invention are:

[0041] The smart host and smart wearable device provided in this embodiment include a mounting structure detachably connected to a bracket, and a host body rotatably connected to the mounting structure. When the host body rotates relative to the bracket to a predetermined angle, the mounting structure becomes detachable from the bracket, allowing the host body to be separated from the bracket. This facilitates answering phone calls and using the camera function, improving the ease of use of the smart host and enhancing the user experience. Furthermore, because the mounting structure and bracket are detachable, the host body does not require detachable components, thus avoiding changes to the host body's structural design and preventing excessive size due to detachable components. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0043] Figure 1 This is a structural diagram of the intelligent host in its non-removable state provided in Embodiment 1;

[0044] Figure 2 yes Figure 1 A schematic diagram of the disassembly structure of a smart host;

[0045] Figure 3 This is a structural diagram of the intelligent host in a detachable state provided in Embodiment 1;

[0046] Figure 4 yes Figure 3 A schematic diagram of the disassembly structure of the intelligent host;

[0047] Figure 5 is Figure 1 Another exploded structural schematic view of the intelligent host in the application;

[0048] Figure 6 is a structural schematic view of the installation structure from one angle provided by the first embodiment;

[0049] Figure 7 is an exploded structural schematic view of the installation structure provided by the first embodiment;

[0050] Figure 8 is another exploded structural schematic view of the installation structure provided by the first embodiment;

[0051] Figure 9 is an internal structural schematic view of the installation structure provided by the first embodiment;

[0052] Figure 10 is another internal structural schematic view of the installation structure provided by the first embodiment;

[0053] Figure 11 is a structural schematic view of the installation structure from another angle provided by the first embodiment;

[0054] Figure 12 is a structural schematic view of the bracket provided by the first embodiment;

[0055] Figure 13 is an internal structural schematic view of the bracket provided by the first embodiment;

[0056] Figure 14 is another exploded structural schematic view of the installation structure provided by the first embodiment;

[0057] Figure 15 is a structural schematic view of the connecting seat provided by the first embodiment;

[0058] Figure 16 is a structural schematic view of the intelligent wearable device provided by the second embodiment.

[0059] Icon: 10, intelligent host; 1, support; 11, plug slot; 12, first opening; 13, first magnetic attraction piece; 131, first magnetic pole part; 132, second magnetic pole part; 14, first side; 15, second side; 17, mounting slot; 171, buckle; 1711, fixed part; 17a, hollow part; 1712, buckling part; 172, avoiding hole; 173, bearing part; 2, mounting structure; 21, mounting assembly; 211, mounting component; 21a, shell; 21b, cover; 2a, mounting cavity; 2b, second opening; 2c, positioning hole; 212, first plug-in piece; 2121, protruding part; 212a, first guide surface; 2122, plug-in part; 2123, bearing part; 212b, recessed part; 213, first elastic piece; 214, positioning convex column; 215, clamping groove; 2151, clamping surface; 216, abutting part; 217, second gear part; 22, rotating component; 22a, groove; 22b, second guide surface; 221, first rotating shaft; 222, cam; 223, second rotating shaft; 224, connecting seat body; 2241, first surface; 2242, second surface; 2243, first shaft hole; 2244, boss; 2245, second shaft hole; 2246, first gear part; 23, second magnetic attraction piece; 231, third magnetic pole part; 241, fourth magnetic pole part; 24, third side; 25, fourth side; 26, second elastic piece; 27, protective cover; 3, host body; 31, display screen; 20, intelligent wearable device; 201, wearing component. DETAILED DESCRIPTION

[0060] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not intended to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0061] In addition, in addition to indicating the orientation or positional relationship, the above-mentioned part of the terms can also be used to indicate other meanings, for example, the term "upper" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For those skilled in the art, the specific meaning of these terms in the present application can be understood according to the specific situation.

[0062] In addition, the terms "mounting", "arrangement", "provided with", "connected", "linked" should be understood broadly. For example, it can be fixed connection, detachable connection, or integral structure; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication between two devices, elements or components. The specific meaning of the above terms in the present application can be understood according to the specific circumstances by those skilled in the art.

[0063] In addition, the terms "first", "second" and the like are mainly used to distinguish different devices, elements or components (the specific type and structure can be the same or different), and are not intended to indicate or imply the relative importance and quantity of the indicated devices, elements or components. Unless otherwise stated, the meaning of "multiple" is two or more.

[0064] The technical solutions of the present application will be further described below in conjunction with the embodiments and drawings.

[0065] Embodiment one

[0066] Please refer to Figures 1 to 4 Embodiment one of the present application discloses a kind of intelligent host 10, the intelligent host 10 includes support 1, mounting structure 2 and host body 3, mounting structure 2 is detachably connected to support 1, host body 3 is rotatably connected to mounting structure 2, when mounting structure 2 is connected to support 1, host body 3 can be rotated relative to support 1, when host body 3 is rotated to predetermined angle relative to support 1, mounting structure 2 is detachable relative to support 1, so that host body 3 and support 1 can be separated.

[0067] The intelligent host 10 of embodiment one of the present application, since the intelligent host 10 includes support 1, mounting structure 2 and host body 3, mounting structure 2 is detachably connected to support 1, so that the user can be through mounting structure 2 and host body 3 is separated from support 1, to meet the user's needs such as listening to the phone or shooting etc..In addition, since host body 3 is rotatably connected to mounting structure 2, when host body 3 is rotated to predetermined angle, mounting structure 2 can be detachable relative to support 1, that is, when the user needs to detach host body 3 from support 1, host body 3 can be detached from support 1 by rotating host body 3, and the disassembly method is convenient.

[0068] Further, since host body 3 is connected to mounting structure 2, host body 3 and support 1 can be detached through mounting structure 2, compared with setting detachable structure on host body 3, host body 3 will not cause the volume of host body 3 to be too large due to the setting of detachable structure, so that host body 3 can have more space to arrange screen or other components.

[0069] In addition, since the user needs to rotate the mounting structure 2 and the host body 3 relative to the support 1 by a predetermined angle when disassembling the host body 3 from the support 1, compared with the mode that the host body 3 and the support 1 are detachably connected by using magnetic attraction, buckling or the like, the possibility of misoperation can be reduced, and the possibility of the host body 3 being separated from the support 1 without the subjective intention of the user is low. Especially for children users and young users, the situation that the host body 3 is disassembled from the support 1 due to misoperation can be avoided, and the situation that the host body 3 is separated from the support 1 accidentally and the user falls down can also be avoided.

[0070] It can be understood that the smart host 10 can be applied to a smart wearable device and used as a host of the smart wearable device. The smart wearable device can include but is not limited to a smart watch, a smart bracelet and the like. Taking the smart watch as an example, the smart host 10 can be used as a host part of the smart watch. That is, the host body 3 can realize functions such as calling, sending and receiving information, taking pictures, video calling, scanning two-dimensional codes, mobile payment, viewing environmental information and viewing body information. Therefore, in the embodiment, the host body 3 can include a mainboard assembly, a shooting assembly, a battery, a speaker, a microphone, a card seat assembly, a communication module and sensors for realizing various functions, wherein the sensors can be a gravity sensor, an acceleration sensor, a distance sensor, a heart rate sensor, an air pressure sensor, an ultraviolet detector and the like. The host body 3 also includes elements for identity recognition, such as a fingerprint recognition module, a face recognition module and the like.

[0071] It should be noted that the rotation of the host body 3 relative to the support 1 to the predetermined angle refers to the relative angle of the host body relative to the initial state, that is, the predetermined angle is constant, and the host body 3 can be rotated to the predetermined angle from any state including the initial state, and the angles rotated in the process of rotating from different states are different. The initial state refers to the fixed factory state of the smart host after design and production. For example, the initial state can be that the host body 3 is stacked on the support 1, and the length direction of the display screen 31 of the host body 3 is the same as the length direction of the support 1, that is, the display screen 31 of the host body 3 is in a vertical screen state at this time. Alternatively, the initial state can also be that the host body 3 is stacked on the support 1, and the display screen 31 of the host body 3 is in a horizontal screen state, or the initial state can also be that the host body 3 is inclined or perpendicular to the support 1, and the like, which is not limited in the embodiment.

[0072] It can be understood that when the host body 3 is in the initial state, the host body 3 is in a state that cannot be disassembled relative to the support 1, and when the host body 3 is rotated relative to the support 1 to the predetermined angle, the host body 3 can be disassembled relative to the support 1.

[0073] The embodiment takes the initial state as an example, in which the host body 3 is stacked on the support 1, and the length direction of the display screen of the host body 3 is the same as the length direction of the support 1.

[0074] In some embodiments, when the host body 3 is rotated to the predetermined angle, the host body 3 and the support 1 are partially misaligned, and the length direction of the display screen 31 of the host body 3 is the same as the length direction of the support 1. It can be understood that when a user wears a smart watch to which the smart host is applied for use, the host body 3 is generally rotated to be stacked on the support 1, and the display screen 31 of the host body 3 is in a landscape screen state or a portrait screen state. The initial state is a 0° position (as shown in Figure 1 ), the landscape screen state is a 90° position, and when the host body 3 is rotated to the predetermined angle, the host body is in a 180° position (as shown in Figure 3 ), that is, the predetermined angle can be 180°. That is, when the user uses the smart host 10, the host body 3 is generally rotated to the 0° and 90° positions for use, and when the user is talking, the host body is rotated to the 180° position to detach the host body 3 from the support 1. At this time, when the user wears a smart watch to which the smart host is applied, the display screen 31 of the smart host 10 faces the upper surface of the support 1, that is, the display screen 31 of the smart host faces away from the user's arm. The design of the above-mentioned predetermined angle can avoid the separation of the host body 3 and the support 1 due to misoperation, and on the other hand, the predetermined angle is used as the angle at which the host body 3 and the support 1 are separated, which does not affect the normal use of the smart host. Of course, in other embodiments, when the initial state of the host body 3 changes, the predetermined angle can also be other angles, for example, 60°, 90°, 120°, 270°, 360°, etc.

[0075] In some embodiments, the mounting structure 2 includes a mounting assembly 21 and a rotating part 22 rotatably connected with the mounting assembly 21, the mounting assembly 21 is detachably connected to the support 1, and the host body 3 is connected to the rotating part 22 to rotate relative to the mounting assembly 21 under the driving of the rotating part 22. When the host body 3 is rotated to the predetermined angle relative to the support 1, the mounting assembly 21 is detachable relative to the support 1, so that the host body 3 and the support 1 are separable. In this way, by connecting the host body 3 to the rotating part 22 and rotatably connecting the rotating part 22 with the mounting assembly 21, the host body 3 is rotatable relative to the support 1, and by detachably connecting the mounting assembly 21 with the support 1, the host body 3 can be detached from the support 1 to meet the user's needs for answering the phone, shooting, video, etc.

[0076] Please refer to Figure 2 , Figure 4 andFigure 5 as shown, Figure 2 a structural exploded view showing the mounting assembly 21 of the smart host 10 and the bracket 1 in a non-detachable state, Figure 4 a structural exploded view showing the mounting assembly 21 of the smart host 10 and the bracket 1 in a detachable state, Figure 5 a structural exploded view showing the mounting assembly 21 of the smart host 10 and the bracket 1 in a detachable state.

[0077] In some embodiments, the bracket 1 is provided with a plug-in slot 11, the mounting assembly 21 comprises a mounting component 211 and a first plug-in piece 212, the mounting component 211 is provided with a mounting cavity 2a, the mounting cavity 2a is in communication with the plug-in slot 11, the first plug-in piece 212 is slidably arranged in the mounting cavity 2a, the rotating component 22 is used to rotate to drive the first plug-in piece 212 to slide relative to the mounting cavity 2a to be inserted into the plug-in slot 11, so as to realize the connection between the mounting structure 2 and the bracket 1, and the rotating component 22 is also used to rotate to drive the first plug-in piece 212 to slide relative to the mounting cavity 2a to be separated from the plug-in slot 11 when the host body 3 is rotated to a predetermined angle relative to the bracket 1, so as to realize the detachability of the mounting structure 2 relative to the bracket 1. In this way, the first plug-in piece 212 can be inserted into the plug-in slot 11 or separated from the plug-in slot 11 by rotating the rotating component 22, so as to realize the detachability of the mounting structure 2 relative to the bracket 1.

[0078] It can be understood that when the user wears the smart host 10, especially for children users who are active, the host body 3 may be pulled upward (away from the surface of the user's arm, that is, the force is perpendicular to the surface of the bracket 1 attached to the user's arm, in other words, when the host body 3 is stacked on the bracket 1, the force is perpendicular to the display surface of the display screen 31 of the host body 3). In order to avoid the host body 3 from separating the mounting component 211 from the bracket 1 in this case, in some embodiments, the plug-in slot 11 has a first opening 12, and the opening direction of the first opening 12 is parallel to the surface of the bracket 1 provided with the plug-in slot 11. In other words, when the user wears the smart host 10, the opening direction of the first opening 12 is parallel to the surface of the arm, that is, when the host body 3 is stacked on the bracket 1, the opening direction of the first opening 12 is parallel to the display surface of the display screen 31. In this way, when the host body 3 is pulled upward, the force applied to the host body 3 is perpendicular to the opening direction of the first opening 12, so that the host body 3 is not easy to separate the mounting component 211 from the bracket 1.

[0079] In combination with Figure 6 and Figure 7As shown, specifically, the mounting component 211 can be a mounting box body, comprising a housing 21a and a cover 21b, the cover 21b covers the housing 21a and cooperates with the housing 21a to form the mounting cavity 2a. The housing 21a can be provided with a second opening 2b, so that the first plug-in part 212 can extend out of the second opening 2b to the outside of the mounting cavity 2a or move into the mounting cavity 2a.

[0080] Specifically, one of the first plug-in part 212 and the rotating component 22 has a protruding part 2121, and the other of the first plug-in part 212 and the rotating component 22 is provided with a groove 22a. When the rotating component 22 is rotated to drive the main body 3 to rotate relative to the support 1 to a predetermined angle, the protruding part 2121 is located in the groove 22a, so that the first plug-in part 212 slides relative to the mounting cavity 2a to separate from the plug-in slot 11. When the rotating component 22 is rotated to make the protruding part 2121 located outside the groove 22a, the rotating component 22 drives the first plug-in part 212 to slide relative to the mounting cavity 2a to be inserted into the plug-in slot 11. Exemplarily, the rotating component 22 is provided with the groove 22a, and the first plug-in part 212 is provided with the protruding part 2121. By one of the first plug-in part 212 and the rotating component 22 having the protruding part 2121 and the other of the first plug-in part 212 and the rotating component 22 being provided with the groove 22a, the relative position of the protruding part 2121 and the groove 22a can be changed by rotating the main body 3 to drive the rotating component 22 to rotate. When the protruding part 2121 and the groove 22a are staggered, the rotating component 22 generates a force towards the outside of the mounting cavity 2a on the first plug-in part 212, so that the first plug-in part 212 slides out of the mounting cavity 2a to be plugged into the plug-in slot 11, thereby fixing the mounting component 211 to the support 1. At this time, the mounting assembly 21 is not detachable relative to the support 1 (as shown in Figure 2 、 Figure 6 When the protruding part 2121 is matched in the groove 22a, the first plug-in part 212 slides into the mounting cavity 2a. At this time, the first plug-in part 212 is separated from the plug-in slot 11, so that the mounting component 211 and the support 1 can be separated, thereby the main body 3 and the mounting structure 2 are detachable relative to the support 1 (as shown in Figure 4 、 Figure 7 ).

[0081] In order to facilitate the rotating component 22 to rotate to make the protruding part 2121 slide out of the groove 22a, optionally, the protruding part 2121 has a first guide surface 212a matched with the groove 22a, and / or the groove 22a has a second guide surface 22b matched with the protruding part 2121, the first guide surface 212a and the second guide surface 22b are inclined surfaces or arc surfaces. Exemplarily, as shown in Figure 6 、 Figure 7As shown, the protruding part 2121 has the first guide surface 212a, and the groove 22a has the second guide surface 22b, when the protruding part 2121 is connected with the groove 22a, the first guide surface 212a can be connected with the second guide surface 22b, so that the first guide surface 212a and the second guide surface 22b can play a guiding role, thereby making it easier to rotate the rotating part 22 to separate the groove 22a from the protruding part 2121.

[0082] It can be understood that when the main body 3 is manually rotated to rotate the rotating part 22 to a predetermined angle relative to the mounting assembly 21 to achieve the detachable connection of the mounting assembly 21 and the support 1, it is difficult to achieve accurate rotation to a certain fixed angle, especially for children users and young users, when rotating the main body, it is difficult to accurately determine the rotation to the predetermined angle. Based on this, in some embodiments, the first plug-in part 212 includes a plug-in part 2122 and a protruding part 2121 connected to the plug-in part 2122, the rotating part 22 is provided with a groove 22a, the length of the plug-in part 2122 in the direction of the second opening 2b of the mounting cavity 2a is L, 0.3mm≤L≤1mm, and / or the protruding part 2121 has a first guide surface 212a and the groove 22a has a second guide surface 22b, and the first guide surface 212a and the second guide surface 22b are inclined surfaces, the inclination angle of the first guide surface 212a and the second guide surface 22b is θ, 15°≤θ≤90°, so that 5°≤β≤90°, wherein β is the allowable deviation angle of the predetermined angle. Exemplarily, the length of the plug-in part 2122 in the direction of the second opening 2b can be 0.3mm, 0.5mm, 0.6mm, 0.8mm, 1.0mm, and the inclination angle of the first guide surface 212a can be 15°, 30°, 50°, 70°, 90°, etc. Thus, by limiting the length of the plug-in part 2122 to be within the range of 0.3mm≤L≤1mm and limiting the inclination angle of the first guide surface 212a and the second guide surface 22b to be within the range of 15°≤θ≤90°, the main body 3 and the mounting structure 2 can be detached from the support 1 within a wider range of rotation angles, thereby facilitating the user to detach the main body 3.

[0083] It should be noted that the allowable deviation angle β of the predetermined angle can be understood as follows: when the protruding part 2121 is located in the groove 22a and the angle bisector of the two first guide surfaces 212a of the protruding part 2121 coincides with the angle bisector of the two second guide surfaces 22b of the groove 22a, the angle of rotation of the main body 3 relative to the support 1 is the predetermined angle, and when the angle of rotation of the main body 3 relative to the support 1 deviates from the predetermined angle within a certain range, the mounting structure 2 can also be detached from the support 1, and the angle deviating from the predetermined angle is β. For example, as shown in FIG. 6, when the angle of rotation of the main body 3 relative to the support 1 is within the range of 5°≤β≤90°, the mounting structure 2 can be detached from the support 1. Figure 7As shown, at this time, the angle bisector m of the protruding portion 2121 coincides with the angle bisector n of the groove 22a, if the angle of the host body 3 relative to the bracket 1 at this time is 180° (i.e., the predetermined angle is 180°), and β is 90°, then when the angle of the host body 3 relative to the bracket 1 is in the range of 90° to 270°, the host body 3 relative to the bracket 1 can be detached. In this way, while ensuring that the host body is prevented from being mistakenly detached, the convenience of the detachable operation of the host body 3 and the mounting structure 2 can also be ensured.

[0084] In combination Figure 8 and Figure 9 As shown, in order to improve the stability of the first plug-in part 212 plugged into the plug-in slot 11, so that the mounting structure 2 is stably fixed to the bracket 1. In some embodiments, the first plug-in part 212 is provided with two protruding portions 2121, and the rotating part 22 is provided with two grooves 22a, each protruding portion 2121 is correspondingly arranged with each groove 22a, and the two protruding portions 2121 are arranged to cooperate with the two grooves 22a, so as to improve the stable connection of the mounting structure 2 to the bracket 1. Correspondingly, the two grooves 22a can be arranged at intervals, for example, the two grooves 22a are arranged on both sides of the rotating part 22, so as to have better balance.

[0085] In some embodiments, the rotating part 22 includes a first rotating shaft 221 and a cam 222 sleeved on the first rotating shaft 221. Specifically, the cam 222 can be fixed to the first rotating shaft 221 by welding, riveting or the like, and the cam 222 and the first rotating shaft 221 can be fixedly connected, for example, the cam 222 is fixed to the first rotating shaft 221 by riveting.

[0086] Further, the cam 222 is a flat columnar structure, and the outer periphery of the cam 222 is provided with two grooves 22a, which are located on two sides of the cam 222 relative to the center of the first rotating shaft 221 and are staggered along the axis direction of the first rotating shaft 221. By sleeving the cam 222 on the first rotating shaft 221, the cam 222 will rotate with the first rotating shaft 221 when the first rotating shaft 221 rotates, thereby changing the position of the groove 22a on the cam 222 relative to the protruding portion 2121. Since the first rotating shaft 221 is sleeved with the cam 222 to form the groove 22a on the cam 222, compared with directly forming the groove 22a on the first rotating shaft 221, the diameter of the first rotating shaft 221 can be smaller, thereby reducing the space occupied by the first rotating shaft 221 in the intelligent host 10, which is beneficial to the miniaturization design of the intelligent host 10. At the same time, since the two grooves 22a are staggered along the axis direction of the first rotating shaft 221, the length of the mounting structure 2 in the direction perpendicular to the first axis can be shortened, thereby realizing the miniaturization design of the mounting structure 2. In addition, since the two grooves 22a are staggered along the axis direction of the first rotating shaft 221 on the cam 222, the influence of the two grooves 22a on the structural strength of the cam 222 due to being located on the same straight line can be avoided, and the structural strength of the cam 222 is ensured without increasing the volume of the cam 222.

[0087] Further, since the groove 22a is provided in two, two cams 222 can be provided, and one groove 22a is provided on each cam 222. In this way, the structure of the cam 222 is simpler, thereby being more convenient for the forming and manufacturing of the cam 222, and being beneficial to ensuring that the cam 222 has sufficient structural strength.

[0088] In some embodiments, the first plug-in part 212 includes a plug-in portion 2122 and a receiving portion 2123 connected to the plug-in portion 2122, and the side of the receiving portion 2123 away from the plug-in portion 2122 is provided with a recessed portion 212b, and the protruding portion 2121 is arranged in the recessed portion 212b. The wall surface of the recessed portion 212b for connecting with the outer periphery of the cam 222 is an arc surface, so as to abut against the outer periphery of the cam 222. In this way, the receiving portion 2123 can be used to receive the cam 22a, and by designing the wall surface of the recessed portion 212b as an arc surface, the contact area between the recessed portion 212b and the cam 222 can be increased by cooperating with the outer periphery of the cam 222, thereby improving the stability of the connection between the first plug-in part 212 and the cam 222.

[0089] In combination Figures 8 to 10As shown, in order to further improve the stability of the connection between the first plug-in part 212 and the cam 222, some embodiments of the mounting assembly 21 further comprise a first elastic part 213, which is arranged between the inner wall surface of the mounting cavity 2a and the receiving part 2123, and is used to provide the force for pressing the receiving part 2123 against the cam 222. By pressing the receiving part 2123 against the cam 222 through the first elastic part 213, the stability of the connection between the receiving part 2123 and the cam 222 is improved. In addition, when the groove 22a of the cam 222 corresponds to the protruding part 2121, the protruding part 2121 can be pressed in the groove 22a through the elastic action of the first elastic part 213 on the receiving part 2123, so that the first plug-in part 212 slides into the mounting cavity 2a, so as to realize the detachable connection between the mounting part 211 and the bracket 1.

[0090] Specifically, the first elastic part 213 can be, but is not limited to, a spring, a spring sheet, etc. Taking the spring as an example, in order to guide the first elastic part 213 and enable the first plug-in part 212 to be fixed in the mounting cavity 2a, the receiving part 2123 is further provided with a positioning protruding column 214, which can be located at the outer periphery of the recessed part. The inner wall surface of the mounting cavity 2a is provided with a positioning hole 2c, the positioning protruding column 214 is plugged into the positioning hole 2c, and the first elastic part 213 is sleeved on the positioning protruding column 214. By arranging the positioning protruding column 214 on the receiving part 2123 and arranging the positioning hole 2c on the inner wall surface of the mounting cavity 2a, the plug-in part is fixed in the mounting cavity 2a. By sleeving the first elastic part 213 on the positioning protruding column 214, the positioning protruding column 214 can also guide the deformation direction of the first elastic part 213, so that the compression direction of the first elastic part 213 is the direction in which the inner wall surface of the mounting cavity 2a faces the first rotating shaft 221, so as to ensure that the elastic force of the first elastic part 213 on the receiving part 173 remains in the direction towards the cam 222, so as to ensure the stability of the connection between the receiving part 173 and the cam 222.

[0091] In combination with Figures 11 to 13As shown, in some embodiments, the bracket 1 is provided with a mounting groove 17 with a third opening, as known from the foregoing, the mounting component 211 is detachably connected to the bracket 1, in order to improve the connection stability of the mounting component 211 and the bracket 1, the insertion groove 11 is arranged in the mounting groove 17 and communicates with the mounting groove 17, and the mounting component 211 is mounted in the mounting groove 17, wherein the opening direction of the insertion groove 11 is perpendicular to the opening direction of the mounting groove 17, that is, the opening direction of the third opening is perpendicular to the surface of the bracket 1 provided with the insertion groove 11. Since the mounting component 211 is mounted in the mounting groove 17, the mounting groove 17 can support the mounting component 211, thereby improving the stability of the connection between the mounting component 211 and the bracket 1, and ensuring that the mounting structure 2 can still be stably connected to the bracket 1 when the main machine body 3 is rotated. In addition, for the assembly process of mounting the mounting structure 2 to the bracket 1, the predetermined positioning of the mounting structure 2 can be achieved by mounting the mounting component 211 in the mounting groove 17, and then rotating the main machine body 3 to insert the first insertion piece 212 into the insertion groove 11 to fix the main machine body 3 and the mounting structure 2 to the bracket 1, thereby making the assembly process more stable and reliable.

[0092] As known from the foregoing, the predetermined positioning is achieved by inserting the mounting component 211 into the mounting groove 17, and then rotating the main machine body 3 to insert the first insertion piece 212 into the insertion groove 11 to fix the mounting structure 2 and the main machine body 3 to the bracket 1. Then, in order to improve the stability of the predetermined positioning of the mounting component 211 in the mounting groove 17, in some embodiments, one of the inner wall surface of the mounting groove 17 and the outer wall surface of the mounting component 211 is provided with a buckle 171, and the other of the inner wall surface of the mounting groove 17 and the outer wall surface of the mounting component 211 is provided with a clamping groove 215, and the buckle 171 is detachably connected to the clamping groove 215. Through the detachable connection of the buckle 171 and the clamping groove 215, when the mounting component 211 is mounted in the mounting groove 17, the connection between the mounting component 211 and the mounting groove 17 is more stable.

[0093] Further, the buckle 171 comprises a fixing part 1711 and a buckling part 1712, the fixing part 1711 is arranged on the inner wall surface of the mounting groove 17 or the outer wall surface of the mounting component 211, the fixing part 1711 is provided with a hollow part 17a, the buckling part 1712 is arranged on the fixing part 1711 and is arranged corresponding to the hollow part 17a, the hollow part 17a is used to provide a deformation space for the buckling part 1712, the clamping groove 215 has a clamping surface 2151 used to clamp the buckling part 1712, and the clamping surface 2151 is an inclined surface. By arranging the hollow part 17a on the fixing part 1711 of the buckle 171 and arranging the buckling part 1712 on the fixing part 1711 and corresponding to the hollow part 17a, the hollow part 17a can provide a deformation space for the buckling part 1712, that is, the buckling part 1712 can be deformed, so that the mounting component 211 can be inserted into the mounting groove 17 and fixed in the mounting groove 17 by the buckle 171 and the clamping groove 215. At the same time, cooperating with the inclined clamping surface 2151 of the clamping groove 215, when it is necessary to disassemble the mounting component 211, an acting force is applied to the mounting component 211, the mounting component 211 will generate a pressing force on the buckling part 1712, so that the buckling part 1712 is deformed, so that the mounting component 211 can be pulled out of the mounting groove 17. Of course, in other embodiments, the buckling part 1712 can also be made of elastic material, such as silicone material, etc., so that the material of the buckling part 1712 itself can be deformed under a certain external force, so that the mounting component 211 can be inserted into or pulled out of the mounting groove 17, and at the same time, the buckling part 1712 can maintain its shape when it is not subjected to a large acting force, so as to be clamped in the clamping groove 215 to fix the mounting component 211 in the mounting groove 17.

[0094] It can be understood that when the smart host 10 is applied to a smart watch, the support 1 of the smart host 10 needs to be connected with the watchband 21 through the rotating shaft, and then, in order to improve the utilization rate of the mounting space of the support 1, in some embodiments, the bottom wall of the mounting groove 17 is provided with a avoiding hole 172, the inner wall surface of the mounting groove 17 is provided with a bearing part 173 near the avoiding hole 172, the mounting part 211 is provided with an abutting part 216 corresponding to the bearing part 173, and the abutting part 216 is connected with the bearing part 173, so that the bearing part 173 bears the mounting part 211. In this way, the avoiding hole 172 is arranged on the bottom wall of the mounting groove 17, so that the rotating shaft can be arranged at the position of the avoiding hole 172, which is beneficial to improve the integrated design of the plurality of components of the support 1, thereby facilitating the miniaturization and thinning of the smart host 10. At the same time, the bearing part 173 is arranged on the inner wall surface of the mounting groove 17 near the avoiding hole 172, so that the abutting part 216 of the mounting part 211 abuts against the bearing part 173, thereby satisfying the better bearing effect on the mounting part 211, improving the stability of the connection between the mounting part 211 and the support 1, and especially for the smart host 10 in which the host body 3 can rotate relative to the support 1. When the host body 3 rotates, the mounting part 211 will generate a torsional force on the support 1. Therefore, by improving the stability of the connection between the mounting part 211 and the support 1, the structural stability of the host body 3 of the smart host 10 during rotation is improved, thereby improving the service life of the smart host 10.

[0095] Specifically, the bearing part 173 is a protrusion arranged on the inner wall surface of the mounting groove 17, and the abutting part 216 is a recess structure arranged on the outer wall surface of the second mounting part. The recess structure is connected with the protrusion. Through the connection of the protrusion and the recess structure, the mounting part can be pre-positioned and mounted in the mounting groove, and the stability of the bearing of the mounting groove 17 on the mounting part 211 is improved. Moreover, the structure of the bearing part 173 and the abutting part 216 is simple and easy to process.

[0096] As described above, the mounting assembly 21 can be inserted into the insertion slot 11 of the support 1 through the first insertion part 212, so as to fix the mounting part 211 to the support 1. In order to facilitate the connection of the mounting structure 2 with the support 1, the second insertion part 213 is arranged on the second mounting part 211, and the insertion slot 11 is arranged on the support 1. Figure 10 and Figure 12As shown, in some embodiments, the support 1 is provided with a first magnetic member 13, and the mounting structure 2 is provided with a second magnetic member 23, the first magnetic member 13 and the second magnetic member 23 are magnetically connected, in this way, by setting the first magnetic member 13 and the second magnetic member 23, when the mounting structure 2 is close to the support 1, the second magnetic member 23 is magnetically connected to the first magnetic member 13, thereby improving the stability of the connection between the mounting structure 2 and the support 1. At the same time, for the assembly process of mounting the mounting structure 2 on the support 1, by magnetically connecting the first magnetic member 13 and the second magnetic member 23, the mounting structure 2 can be pre-positioned, and then the main machine body 3 is rotated to make the first plug-in member 212 plug into the plug-in slot 11, thereby realizing the fixation of the main machine body 3 and the mounting structure 2 on the support 1, and the assembly process is more stable and reliable. In addition, since the mounting structure 2 is close to the support 1, under the magnetic attraction of the first magnetic member 13 and the second magnetic member 23, the mounting structure 2 can be guided to be mounted on the position where the plug-in slot 11 is arranged on the support 1. It can be understood that the second magnetic member 23 can be arranged on the mounting component 211 or the rotating component 22 of the mounting structure 2, as long as the mounting structure 2 can be magnetically connected to the support 1.

[0097] Optionally, one of the first magnetic member 13 and the second magnetic member 23 can be a magnet, and the other one of the first magnetic member 13 and the second magnetic member 23 can be a metal member, or both the first magnetic member 13 and the second magnetic member 23 are magnets. Exemplarily, both the first magnetic member 13 and the second magnetic member 23 are magnets. In this way, the magnetic attraction force is stronger, which can enhance the connection stability of the mounting structure 2 magnetically connected to the support 1.

[0098] Further, the bracket 1 has opposite first and second sides 14 and 15, and two first magnetic members 13 are respectively arranged in proximity to the first and second sides 14 and 15 at intervals, the first magnetic member 13 in proximity to the first side 14 and the first magnetic member 13 in proximity to the second side 15 respectively have first and second magnetic pole portions 131 and 132 facing the second magnetic member 23, the first and second magnetic pole portions 131 and 132 have different polarities, the mounting structure 2 includes opposite third and fourth sides 24 and 25, and two second magnetic members 23 are respectively arranged in proximity to the third and fourth sides 24 and 25 at intervals, the second magnetic member 23 in proximity to the third side 24 and the second magnetic member 23 in proximity to the fourth side 25 respectively have third and fourth magnetic pole portions 231 and 232 facing the two first magnetic members 13, the third magnetic pole portion 231 is magnetically attracted to the first magnetic pole portion 131, and the fourth magnetic pole portion 232 is magnetically attracted to the second magnetic pole portion 132. Exemplarily, the first magnetic pole portion 131 has an N polarity, the second magnetic pole portion 132 has an S polarity, the third magnetic pole portion 231 has an S polarity, and the fourth magnetic pole portion 232 has an N polarity, so that when the mounting structure 2 is assembled, only when the third side 24 corresponds to the first side 14 and the fourth side 25 corresponds to the second side 15, the third magnetic pole portion 231 is magnetically connected to the first magnetic pole portion 131, and the fourth magnetic pole portion 232 is magnetically connected to the second magnetic pole portion 132, if the third side 24 corresponds to the second side 15, the third magnetic pole portion 231 arranged on the third side 24 and the second magnetic pole portion 132 arranged on the second side 15 are both S poles, the third magnetic pole portion 231 and the fourth magnetic pole portion 232 repel each other, so that the fool-proof effect can be achieved to avoid the situation of installing in reverse when the mounting structure 2 is assembled.

[0099] As known from the foregoing, the mounting structure 2 includes a mounting assembly 21 and a rotating member 22 rotatably connected with the mounting assembly 21, and the host body 3 is connected with the rotating member 22, so that the rotating member 22 is rotated relative to the mounting assembly 21 to drive the host body 3 to rotate relative to the bracket 1, and at the same time, the first plug-in member 212 of the mounting assembly 21 can be driven to slide out of the mounting cavity 2a of the mounting member 211 or slide into the mounting cavity 2a through the rotation of the rotating member 22, so as to realize the detachable or fixed connection between the mounting structure 2 and the bracket 1. In order to realize the rotation of the rotating member 22 to drive the host body 3 while realizing the detachability of the mounting structure 2 and the bracket 1, in combination with the above-mentioned magnetic connection between the first and second magnetic members 13 and the second magnetic member 23, Figure 14 and Figure 15As shown, in some embodiments, the rotating component 22 comprises a first rotating shaft 221, one end of the first rotating shaft 221 is connected to the main body 3, the other end of the first rotating shaft 221 is rotatably connected to the mounting component 211, the axis of the first rotating shaft 221 is perpendicular to the surface of the support 1 for mounting the mounting component 211, the first rotating shaft 221 is used to rotate the main body 3 relative to the support 1 around the axis of the main body 3, and / or the rotating component 22 comprises a second rotating shaft 223, the second rotating shaft 223 is rotatably connected to the main body 3, the axis of the second rotating shaft 223 is perpendicular to the axis of the first rotating shaft 221, so that the main body 3 can be flipped relative to the support 1. By arranging the first rotating shaft 221 and the second rotating shaft 223, the main body 3 can be rotated around its own axis direction, and the main body 3 can also be flipped relative to the support 1, thereby meeting the various use requirements of the user. At the same time, the rotation of the first rotating shaft 221 drives the first plug-in part 212 to slide out of or into the mounting cavity 2a of the mounting component 211, so as to realize the fixed connection of the mounting component 211 and the support 1 or the detachable connection of the mounting component 211 relative to the support 1. It can be understood that in other embodiments, one end of the second rotating shaft 223 can be rotatably connected to the mounting component 211, the other end of the second rotating shaft 223 is connected to the main body 3, so as to realize the flipping of the main body 3 relative to the support 1, and the first rotating shaft 221 is rotatably connected to the main body 3, so as to realize the rotation of the main body 3 around its own axis. That is, the second rotating shaft 223 can also be rotatably connected to the mounting component 211, so that the rotation of the second rotating shaft 223 drives (i.e. pushes) the first plug-in part 212 to slide out of or into the mounting cavity 2a of the mounting component 211, so as to realize the fixed connection of the mounting component 211 and the support 1 or the detachable connection of the mounting component 21 relative to the support 1.

[0100] Optionally, when the rotating component 22 comprises the first rotating shaft 221 and the second rotating shaft 223, the rotating component 22 further comprises a connecting seat 224, the connecting seat 224 has opposite first and second faces 2241 and 2242, the first face 2241 is provided with a first shaft hole 2243 penetrating the second face 2242, the first rotating shaft 221 is arranged in the first shaft hole 2243 and is rotatably connected to the mounting assembly 21, the mounting component 211 is arranged on the second face 2242, the first face 2241 is further provided with a boss 2244, the boss 2244 is provided with a second shaft hole 2245 penetrating the boss 2244, the second rotating shaft 223 is arranged in the second shaft hole 2245, and the main body 3 is connected to the boss 2244. In this way, by arranging the mounting assembly 21, the first rotating shaft 221 and the second rotating shaft 223 on the first and second faces 2241 and 2242 of the connecting seat 224 respectively, the structure of the rotating component 22 is compact.

[0101] It can be understood that, in order to stably connect the main body 3 with the second rotating shaft 223, the second rotating shaft 223 can be provided as two, and the boss 2244 is also provided as two, two bosses 2244 are respectively arranged on the two opposite sides of the first shaft hole 2243, and the two bosses 2244 are respectively provided with the second shaft hole 2245, so that the two second rotating shafts 223 are respectively arranged in the two second shaft holes 2245 and connected to the two ends of the main body 3, thereby improving the stability of the connection between the main body 3 and the second rotating shaft 223, and ensuring the stability of the overturning movement of the main body 3 relative to the support 1.

[0102] In some embodiments, the second surface 2242 is provided with a first gear portion 2246, and the side of the mounting component 211 facing the second surface 2242 is provided with a second gear portion 217, which is used to connect with the first gear portion 2246 when the main body 3 is rotated to a predetermined angle relative to the support 1. By providing the first gear portion 2246 and the second gear portion 217, when the main body 3 is rotated to a predetermined angle relative to the support 1, the first gear portion 2246 and the second gear portion 217 abut, thereby being able to block the rotating movement of the main body 3 relative to the mounting assembly 21, and the user can feel a jamming feeling, on the one hand, it is convenient for the user to know the angle of rotation, on the other hand, it can also improve the user's rotating feeling. In addition, by providing the first gear portion 2246 and the second gear portion 217, the friction between the connecting seat body 224 and the mounting component 211 can be increased, and damping is provided for the rotation of the first rotating shaft 221 relative to the mounting component 211, so that the main body 3 can maintain the state after rotating a certain angle.

[0103] Alternatively, one of the first gear portion 2246 and the second gear portion 217 is a convex portion, and the other of the first gear portion 2246 and the second gear portion 217 is a concave portion, so that when the convex portion is embedded in the concave portion and then the convex portion is rotated out of the concave portion, a blocking force is generated, thereby providing a gear effect. Exemplarily, the first gear portion 2246 is a convex portion, and the second gear portion 217 is a concave portion.

[0104] Specifically, the first gear portion 2246 can be provided as two, and the two first gear portions 2246 are oppositely arranged, and the second gear portion 217 is provided as two, and the two second gear portions 217 are oppositely arranged, so that when the connecting seat body 224 is driven by the first rotating shaft 221 to rotate relative to the mounting component 211 to 0° or 180°, the two first gear portions 2246 are respectively connected with the two first gear portions 2246, thereby generating a jamming feeling when the first rotating shaft 221 is rotated.

[0105] It can be understood that, in order to enable the host body 3 to maintain the angle state after rotating by a certain angle, in some embodiments, the mounting structure 2 further comprises a second elastic member 26, which is arranged between the first rotating shaft 221 and the connecting seat body 224, so as to press the connecting seat body 224 against the mounting component 211 through the elastic action of the second elastic member 26, increase the damping of the connecting seat body 224 and the mounting component 211, and enable the host body 3 to maintain the angle state after rotating by a certain angle.

[0106] Exemplarily, the second elastic member 26 can be a spring or a spring sheet, etc. Similarly, the second rotating shaft 223 can also be provided with a damping member, so that the host body 3 can also maintain the angle state after being flipped to a certain angle relative to the support 1. The damping member can be a spring sheet, etc.

[0107] Optionally, the rotating component 22 further comprises a protective cover 27, which covers the first rotating shaft 221 and the second rotating shaft 223 and covers the first surface 2241 of the connecting seat body 224, so as to protect the first rotating shaft 221 and the second rotating shaft 223.

[0108] Embodiment two

[0109] Please refer to Figure 16 Embodiment two of the present application discloses a smart wearable device 20, which comprises a smart host 10 and a wearable component 201. The smart host 10 is the smart host 10 as described in the above-mentioned embodiment one.

[0110] It can be understood that, when the smart wearable device 20 is a smart watch or a smart bracelet, the wearable component 201 can be a watchband. The smart wearable device 20 with the smart host 10 of the first aspect has all the technical effects of the smart host 10 of the first aspect, that is, the user can detach the host body 3 from the support 1 through the mounting structure 2, so as to meet the needs of the user for answering the phone or taking pictures, etc. In addition, since the host body 3 is rotatably connected to the mounting structure 2, when the host body 3 is rotated to a predetermined angle, the mounting structure 2 can be detached relative to the support 1, that is, when the user needs to detach the host body 3 from the support 1, the host body 3 can be detached from the support 1 by rotating the host body 3, and the disassembly method is convenient. In addition, since the host body 3 is connected to the mounting structure 2, the host body 3 and the support 1 are detachable through the mounting structure 2. Compared with the case that the detachable structure is arranged on the host body 3, the host body 3 will not be too large in size due to the arrangement of the detachable structure, so that the host body 3 can have more space to arrange the screen or other components.

[0111] The intelligent host and the intelligent wearable device disclosed in the embodiments of the present application are described in detail, the principles and implementation manners of the present application are described by applying specific examples, the above description of the embodiments is only used to help understand the intelligent host and the intelligent wearable device of the present application and the core idea thereof; meanwhile, for the general technical personnel in the art, the specific implementation manners and application ranges will be changed according to the idea of the present application, and in conclusion, the content of the specification should not be understood as the limitation of the present application.

Claims

1. An intelligent host, characterized in that, The application relates to a mounting structure of a host computer, which comprises a support, a mounting structure and a host computer body. The mounting structure comprises a mounting assembly and a rotating part rotatably connected with the mounting assembly, and the mounting assembly is detachably connected with the support. The mounting assembly comprises a mounting part and a first plug-in part, the mounting part is provided with a mounting cavity, the mounting cavity is communicated with the plug-in slot, and the first plug-in part is slidably arranged in the mounting cavity. The rotating part is used for rotating to drive the first plug-in part to slide relative to the mounting cavity and be inserted into the plug-in slot, so that the mounting structure is connected with the support, and the host computer body is connected with the support. The rotating part is also used for rotating to drive the first plug-in part to slide relative to the mounting cavity and be separated from the plug-in slot when the host computer body is rotated to a predetermined angle relative to the support, so that the mounting structure is detachable from the support, and the host computer body is detachable from the support. The plug-in slot has a first opening, and the opening direction of the first opening is parallel to the surface of the support provided with the plug-in slot. One of the first plug-in part and the rotating part has a protruding part, and the other of the first plug-in part and the rotating part is provided with a groove. When the rotating part rotates to drive the host computer body to rotate to the predetermined angle relative to the support, the protruding part is located in the groove, so that the first plug-in part slides relative to the mounting cavity and is separated from the plug-in slot.

2. The intelligent host of claim 1, wherein, When the rotating part rotates to make the protruding part be located outside the groove, the rotating part drives the first plug-in part to slide relative to the mounting cavity and be inserted into the plug-in slot.

3. The intelligent host of claim 1, wherein, The protruding part has a first guide surface matched with the groove, and / or the groove has a second guide surface matched with the protruding part. The first guide surface and the second guide surface are inclined surfaces or arc surfaces. The first plug-in part comprises a plug-in part and the protruding part connected with the plug-in part, and the rotating part is provided with the groove.

4. The intelligent host of claim 3, wherein, The length of the plug-in part along the second opening direction of the mounting cavity is L, 0.3mm<=L<=1mm, and / or the protruding part has the first guide surface, the groove has the second guide surface, and when the first guide surface and the second guide surface are inclined surfaces, the inclination angle of the first guide surface and the second guide surface is theta, 15<=theta<=90, so that 5<=beta<=90, wherein beta is the deviation angle of the predetermined angle. The first plug-in part is provided with two protruding parts, and the rotating part is provided with two grooves.

5. The intelligent host of claim 4, wherein, The rotating part comprises a first rotating shaft and a cam sleeved with the first rotating shaft, the outer periphery of the cam is provided with two grooves, the two grooves are located on the two sides of the cam relative to the center of the first rotating shaft, and the two grooves are staggered along the axis direction of the first rotating shaft. ​ 6. The intelligent host of claim 3, wherein, ​ 7. The intelligent host of claim 6, wherein, ​ 8. The intelligent host of claim 7, wherein, The first plug-in part comprises a plug-in portion and a receiving portion connected to the plug-in portion, a recess is arranged on a side of the receiving portion away from the plug-in portion, the protruding portion is arranged in the recess, and the recess has a wall surface for connecting with the outer circumferential surface of the cam, the wall surface being an arc surface.

9. The intelligent host of claim 1, wherein, The mounting assembly further comprises a first elastic member arranged between the inner wall surface of the mounting cavity and the first plug-in part, and the first elastic member is used to provide an acting force for pressing the first plug-in part against the rotating component.

10. The intelligent host of any of claims 1-9, wherein, The bracket is provided with a mounting groove, the plug-in groove is arranged in the mounting groove and communicates with the mounting groove, and the mounting component is mounted in the mounting groove. The opening direction of the plug-in groove is perpendicular to the opening direction of the mounting groove.

11. The intelligent host of claim 10, wherein, One of the inner wall surface of the mounting groove and the outer wall surface of the mounting component is provided with a buckle, and the other of the inner wall surface of the mounting groove and the outer wall surface of the mounting component is provided with a clamping groove, and the buckle is detachably connected to the clamping groove.

12. The intelligent host of claim 11, wherein, The buckle comprises a fixing portion and a buckling portion, the fixing portion is arranged on the inner wall surface of the mounting groove or the outer wall surface of the mounting component, the fixing portion is provided with a hollow portion, the buckling portion is arranged on the fixing portion and corresponds to the hollow portion, and the hollow portion is used to provide a deformation space for the buckling portion. The clamping groove has a clamping surface for clamping the buckling portion, and the clamping surface is an inclined surface.

13. The intelligent host of claim 10, wherein, The bottom wall of the mounting groove is provided with a clearance hole, the inner wall surface of the mounting groove is provided with a bearing portion near the clearance hole, the mounting component is provided with an abutting portion corresponding to the bearing portion, the abutting portion is connected with the bearing portion, so that the bearing portion bears the mounting component.

14. The intelligent host of any of claims 1-9, wherein, The rotating component comprises a first rotating shaft, one end of the first rotating shaft is connected to the main machine body, the other end of the first rotating shaft is rotatably connected to the mounting assembly, the axis of the first rotating shaft is perpendicular to the surface of the bracket for mounting the mounting assembly, and the first rotating shaft is used to rotate the main machine body relative to the bracket about the axis of the main machine body; and / or, The rotating component comprises a second rotating shaft, the second rotating shaft is rotatably connected to the main machine body, and the axis of the second rotating shaft is perpendicular to the axis of the first rotating shaft, so that the main machine body can be flipped relative to the bracket.

15. The intelligent host of claim 14, wherein, When the rotating component comprises the first rotating shaft and the second rotating shaft, the rotating component further comprises a connecting seat body, the connecting seat body has opposite first and second faces, the first face is provided with a first shaft hole penetrating the second face, the first rotating shaft is arranged in the first shaft hole and rotatably connected to the mounting assembly, and the mounting assembly is arranged on the second face. The first face is further provided with a boss, the boss is provided with a second shaft hole penetrating the boss, the second rotating shaft is arranged in the second shaft hole, and the main machine body is connected to the boss.

16. The intelligent host of claim 15, wherein, The second face is provided with a first gear portion, and a second gear portion is arranged on a side of the mounting assembly facing the second face, the second gear portion is used to connect with the first gear portion when the main machine body is rotated to the predetermined angle relative to the bracket.

17. The intelligent host of any of claims 1-9, wherein, The support is provided with a first magnetic attraction member, and the mounting structure is provided with a second magnetic attraction member, and the first magnetic attraction member and the second magnetic attraction member are magnetically connected.

18. A smart wearable device, comprising: Comprising: a smart host, the smart host being as claimed in any of claims 1-17; and a wearing component, the wearing component being connected to the support of the smart host.

Citation Information

Patent Citations

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