Wearing assembly and smart watch
By integrating a detachable power supply module into the wearable device itself, the problem of needing to carry an additional charging cable for smart wearable devices is solved, achieving convenient power supply and efficient battery life, and improving the user experience.
Patent Information
- Application Number
- CN202520779508.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-04-23
AI Technical Summary
Existing smart wearable devices require additional charging components such as charging cables and charging docks when charging, which makes them inconvenient to carry, easy to lose, and affects the user experience.
A detachable power supply module is integrated into the wearable device body. By setting an installation position on the wearable device body and a detachable connection structure for the power supply module, the power supply module can be flexibly installed and removed. The power supply module is connected to the wearable device body by means of snap-fit, magnetic attraction, etc., thus integrating the power supply function into the wearable device.
No need to carry an extra charging cable or dock, improving portability and ease of use. Suitable for sports and travel scenarios, the power supply module can be replaced as needed to improve the device's battery life and user experience.
Smart Images

Figure CN223845098U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wearable device structure, and further relates to a wearing assembly and a smart watch. BACKGROUND
[0002] In the current field of wearable devices, devices such as smart watches are widely welcomed due to their convenience and multifunctionality. However, these devices have some inconveniences in charging. For example, when a user wears a wearable device such as a smart watch, if the device needs to be charged in time, the user still needs to carry additional charging components such as charging wires and charging bases. These charging accessories not only increase the user's carrying burden, but also are prone to be lost or missed, resulting in the user being unable to obtain the adapted charging device in time when needing to charge. Especially in the scenes of user movement and travel, carrying components such as charging wires is not only inconvenient but also unsightly, which seriously affects the user's experience. CONTENT OF THE UTILITY MODEL
[0003] In view of the above technical problems, the purpose of the present application is to provide a wearing assembly and a smart watch, which can solve the problems in the prior art, organically combine the power supply function of the device with the wearing function, and significantly improve the user's experience.
[0004] In order to achieve the above purpose, the present application provides a wearing assembly applied to a wearable device, comprising:
[0005] a wearing part body and a power supply module with an independent power supply, the power supply module being used for supplying power to the wearable device;
[0006] the wearing part body has a first side and a second side opposite to each other, in a use state of the wearing assembly, the first side is close to or attached to a wearing part, and the second side is away from the wearing part;
[0007] wherein the wearing part body is provided with a mounting position on the second side, the contour of the mounting position is at least adapted to part of the contour of the power supply module, and a detachable connection structure is arranged between the mounting position and the power supply module, so that the power supply module can be detachably connected relative to the wearing part body.
[0008] In some embodiments, the detachable connection structure comprises a first docking part and a second docking part, the first docking part and the second docking part are matched and arranged and can form a clamping connection or an embedded connection.
[0009] the first docking part is arranged on the mounting position, and the second docking part is arranged on the power supply module.
[0010] In some embodiments, the number of the first docking portions is at least two, and the mounting position is provided with at least two different side walls provided with the first docking portions.
[0011] The second docking portions are provided corresponding to the first docking portions, so that the detachable connection structure forms at least two fixed contacts.
[0012] In some embodiments, the mounting position is provided as a mounting groove recessed inwardly relative to the second side of the wearing member body, and the first docking portions are respectively arranged on the opposite two inner side walls of the mounting groove along the length direction of the wearing member body, and the number of the first docking portions on the two inner side walls is equal or unequal.
[0013] The power supply module is provided with a docking structure located at the docking side of the power supply module and the mounting position, and the second docking portions are arranged on the outer periphery of the docking structure. When the first docking portions and the second docking portions are connected, at least part of the docking structure is located in the mounting groove.
[0014] In some embodiments, the number of the first docking portions is three, wherein two of the first docking portions are arranged at intervals on one inner side wall of the mounting groove, and the remaining one of the first docking portions is arranged on the other inner side wall of the mounting groove; the second docking portions are arranged corresponding to the first docking portions, and then the second docking portions and the first docking portions form a three-point fixed structure.
[0015] In some embodiments, the first docking portions are clamping protrusions or clamping grooves, the second docking portions are clamping grooves or clamping protrusions arranged corresponding to the first docking portions, and the clamping protrusions and / or the clamping grooves are elastic, so that the clamping protrusions can be clamped into the clamping grooves to realize the clamping connection of the wearing member body and the power supply module.
[0016] In some embodiments, the mounting position is located at the first end of the wearing member body, and the first end is the side end of the wearing member body close to the main machine when the wearing assembly is docked with the main machine of the wearable device.
[0017] In some embodiments, the profile of the side of the power supply module away from the mounting position is an arc profile, and the arc profile is recessed inwardly towards the center of the power supply module.
[0018] Another aspect of the present application also provides an intelligent watch, comprising:
[0019] a watch main machine;
[0020] two connecting ears arranged respectively on the opposite two side surfaces of the watch main machine;
[0021] Two watch straps, one end of each of the two watch straps being connected to a corresponding connecting lug; and, at least one of the two watch straps is configured as a wearing component as described above, wherein the power supply module in the wearing component is used to power the watch host.
[0022] In some embodiments, the watch main unit has a charging port, and the power supply module includes a charging probe and a power source electrically connected to the charging probe; in the power supply module, the charging probe and the detachable connection structure are disposed on different working surfaces, and in the use state, the charging probe and the charging port are connected to each other to supply power to the watch main unit.
[0023] And / or, a magnetic attraction structure is provided between the watch main unit and the power supply module for auxiliary docking during charging.
[0024] In some embodiments, the watch strap and the connecting lug are detachably connected by a buckle structure, and the buckle structure on the wearer body is disposed on the first side.
[0025] Compared with the prior art, the wearable component and smartwatch provided in this application have at least the following beneficial effects:
[0026] In this application, by creating an adapter mounting position on the wearable device body and integrating a detachable power supply module, the power supply method of wearable devices is optimized. The mounting position adapts to the contour of the power supply module, allowing the power supply module to be directly integrated into the wearable device body (such as a watch strap), eliminating the need to carry an additional charging cable or base. This solves the problem of inconvenience in carrying traditional charging accessories, improves portability, and meets the lightweight requirements of scenarios such as sports and travel. In addition, the detachable connection structure allows the power supply module to be independently installed and removed, thus enabling independent replacement of the power supply module. Attached Figure Description
[0027] The preferred embodiments will now be described in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages, and implementation methods of this application.
[0028] Figure 1 This is a partial structural schematic diagram of the wearable component in one embodiment of this application;
[0029] Figure 2 This is a partial structural schematic diagram of the wearable component from another perspective in one embodiment of this application;
[0030] Figure 3 This is a partial exploded view of a smartwatch in one embodiment of this application;
[0031] Figure 4is a partial structure schematic diagram of the smart watch in an embodiment of the present application;
[0032] Figure 5 is a partial detail view of an embodiment of the present application;
[0033] Figure 6 is a structure schematic diagram of the power supply module in an embodiment of the present application;
[0034] Figure 7 is a structure schematic diagram of the power supply module in another view in an embodiment of the present application;
[0035] Figure 8 is a partial exploded structure schematic diagram of the smart watch in an embodiment of the present application;
[0036] Figure 9 is a partial exploded structure schematic diagram of an embodiment of the present application.
[0037] BRIEF DESCRIPTION OF DRAWINGS: watch main machine 1; charging port 10; watchband 2; wearing piece body 3; first side 31; second side 32; mounting position 320; first end 33; power supply module 4; docking structure 41; charging probe 42; first docking part 51; second docking part 52; connecting lug 60; buckle structure 7; buckle part 71; bayonet 72. DETAILED DESCRIPTION
[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the specific embodiments of the present application will be described below with reference to the drawings. Obviously, the drawings in the following description only represent some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.
[0039] In order to make the drawing simple, only the parts related to the application are schematically shown in each drawing, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the components with the same structure or function is schematically shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one".
[0040] It should be further understood that the term "and / or" used in the present application specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations, and includes these combinations.
[0041] It should be noted that, in this article, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0042] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0043] In addition, in the description of the present application, the terms "first", "second" and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0044] With the rapid development of smart wear technology, smart watches, smart bracelets and other wearable devices are widely used in daily life for health monitoring, sports recording, information reminding and other functions, greatly improving the convenience of users' life. However, with the continuous enrichment of functions, the dependence of wearable devices on electric energy is also increasing, and the endurance problem has become one of the key factors limiting the use experience.
[0045] At present, smart wearable devices usually use built-in lithium batteries for power supply, and the battery capacity is limited by the device volume, making it difficult to achieve long-time continuous use. Therefore, in the daily use process, users need to charge the device frequently to ensure its normal operation. The existing charging methods mainly include charging through special charging lines or charging bases connected to charging seats or power banks. Taking a smart watch as an example, it usually needs to cooperate with a charging cable of a specific specification (such as a magnetic charging cable) or a charging seat for energy supplement.
[0046] However, such charging methods have certain limitations. First, users need to carry additional components such as charging lines and charging bases when going out, increasing the number of personal items, which is inconvenient to carry, especially in travel or outdoor scenarios; second, although these charging components are small in size, they are easy to lose or forget, resulting in the device being unable to charge in time, which will affect the user experience.
[0047] In one embodiment, referring to the description and drawings Figures 1 to 3 The wearing assembly provided by the present application is described, and the wearing assembly provided by the present application is applied to a wearable device, can integrate a power supply function on a wearing piece without affecting a wearing use state, and improves space utilization and user experience.
[0048] In one embodiment, referring to the description and drawings Figure 1 and Figure 2 The wearing assembly provided by the present application includes a wearing piece body 3 and a power supply module 4 for supplying power to a wearable device. The wearing piece body 3 has opposite first and second sides 31 and 32, wherein the first side 31 faces or is attached to a wearing part, such as a wrist, an arm or the like, in a wearing use state; and the second side 32 is away from the wearing part. The wearing piece body 3 is provided with a mounting position 320 on the second side 32, and the power supply module 4 is detachably mounted in the mounting position 320, so that the power supply function can be realized without affecting the wearing comfort.
[0049] Specifically, the contour of the mounting position 320 is matched with at least part of the outer contour of the power supply module 4, so that at least a part of the limiting cooperation relationship is formed, thereby ensuring the stability and overall aesthetics of the power supply module 4 after installation. At the same time, a detachable connection structure is arranged between the mounting position 320 and the power supply module 4. Through the structure design, the user can flexibly assemble or disassemble the power supply module 4 according to the needs, without the need for tool operation, thereby improving the operation convenience and flexibility in daily use. The detachable connection structure can be a clamping structure, a magnetic attraction structure, a sliding locking structure or other connection modes.
[0050] It can be understood that, through the arrangement of the present embodiment, the power supply module 4 is integrated in the wearing assembly, and the user does not need to carry an independent charging cable or charging base, which fundamentally simplifies the use process of the device, and is particularly suitable for scenes such as going out, exercising, traveling and the like; secondly, since the power supply module 4 is located on the second side 32 of the wearing piece body 3, that is, the side away from the skin, the comfort of the user will not be affected during wearing, and the user will not feel oppressed or foreign.
[0051] At the same time, through the arrangement of the detachable connection structure, the power supply module 4 can be flexibly replaced according to the actual use demand, such as modules with different capacities or different functions (such as wireless charging, solar power supply). These modules can be factory-finished as independent or matched products, so that the assembly has good expansibility and adaptability.
[0052] In addition, in a preferred embodiment of the wearing assembly of the present application, when the wearing device is in an integral state, the power supply module 4 is installed on the wearing part body 3, and then the power supply module 4 and the charging part on the wearing device form an electrical connection, thereby starting to supply power to the wearing device to realize dynamic power supply to the wearing device, that is, the device can be powered in the wearing state, avoiding frequent disassembly of the wearing device, and being beneficial to improving the continuous use experience.
[0053] It should be further explained that the power supply module 4 has an independent power supply and is provided with an electric energy output end (such as a physical contact electrode, a magnetic attraction interface or a wireless electric energy output coil) for electrically connecting with an electric energy receiving end of the wearing device.
[0054] It should be noted that the size and weight of the power supply module 4 can be optimized according to the structure of the wearing part body 3 to ensure the aesthetic appearance and wearing comfort of the overall structure. In addition, in some embodiments, the power state of the power supply module 4 can also be fed back through an LED indicator light, a touch display and the like, further improving the use interaction experience.
[0055] It should be noted that the type and form of the wearing part body 3 are not limited in the present embodiment, and the wearing part body 3 can be in the form of a wristband, a watchband, a bandage and the like for fixing the wearing device on a human body part.
[0056] In one embodiment (not shown in the drawings), the mounting position 320 can be a structure protruding relative to the second side 32 of the wearing part body 3, that is, the second side 32 of the wearing part body 3 is formed with a protruding part which serves as the mounting position 320 of the power supply module 4. In this way, the protruding part is embedded in the corresponding recessed part on the power supply module 4, and further, the protruding part and the recessed part can be provided with corresponding positioning clamping structures to realize firm connection through buckling, clamping hooks, magnetic attraction and the like.
[0057] In one embodiment, as shown in Figure 5 , the mounting position 320 is located at the first end 33 of the wearing part body 3, wherein the first end 33 is the side end of the wearing part body 3 close to the host when the wearing assembly is docked with the wearing device host. That is, when the wearing assembly is assembled with the wearing device host, the power supply module 4 is arranged at a position closer to the host, which belongs to the front end or proximal end region of the integral structure.
[0058] It can be understood that the power supply module 4 is arranged adjacent to the host, which can realize centralized arrangement of functional components, avoid cross distribution of the power supply module 4 and other structural parts of the wearing assembly, facilitate integrated design and module management of the overall structure in the later stage, not only simplify the internal circuit connection, but also reduce the complexity of the overall structure in the manufacturing and assembly process.
[0059] In addition, the power supply module 4 is arranged close to the main body, which means that the wearable device is less likely to cause foreign body sensation or discomfort in the wearing state, and helps to improve the overall wearing naturalness and comfort.
[0060] In one embodiment, based on the above, reference is made to the description Figures 5 to 7 The detachable connection structure includes a first connecting part 51 and a second connecting part 52, which are arranged in matching and can form a snap connection or a fitting connection. Specifically, the first connecting part 51 is arranged in the mounting position 320, and the second connecting part 52 is arranged in the power supply module 4, so as to realize reliable installation and quick disassembly between the power supply module 4 and the wearable device body 3.
[0061] It can be understood that the matching arrangement of the first connecting part 51 and the second connecting part 52 can realize stable and reliable mechanical connection, prevent the power supply module 4 from loosening or deviating during wearing or moving, and ensure the stability and safety of the power supply process; in addition, through the snap or fitting connection mode, the user can easily complete the installation and disassembly of the power supply module 4 without using additional tools.
[0062] It should be noted that in the specific design, the related structure of the connecting part can also be combined with a magnetic adsorption structure to assist the connection through magnetic force to ensure that the power supply module 4 can be accurately positioned during installation.
[0063] For example, the first connecting part 51 can be a circle of grooves or limiting holes arranged on the circumference of the mounting position 320, and the second connecting part 52 is a protruding structure or a clamping tongue structure corresponding to the position. The power supply module 4 is inserted or pressed into the mounting position 320 in a predetermined direction during installation to realize the relative connection of the two.
[0064] In one embodiment, the number of first connecting parts 51 is at least two, and at least two different side walls of the mounting position 320; the second connecting part 52 is arranged on the power supply module 4 and respectively corresponds to the plurality of first connecting parts 51 for cooperation connection. Through the above arrangement, the detachable connection structure forms at least two fixed contacts when the wearable assembly is assembled, which significantly improves the connection strength and stability and reliability.
[0065] Specifically, a plurality of first connecting parts 51 are arranged in the mounting position 320 along the circumference or multiple surfaces, which can be arranged on adjacent two side walls, opposite side walls, or combined structures including bottom and side walls in different directions. For example, in a rectangular mounting position 320, two first connecting parts 51 can be arranged on the opposite long side walls, or can be arranged on two adjacent side walls (L-shaped arrangement) or form a multidirectional limiting structure on the bottom wall and the side wall, thereby forming a stable clamping effect in space.
[0066] Correspondingly, the second docking portions 52 on the power supply module 4 are arranged according to the positions of the first docking portions 51 in the mounting positions 320, so as to ensure that the docking portions can be aligned and matched and form effective clamping or embedding connection during assembly.
[0067] Through the arrangement of the embodiment, a multi-point contact and multi-directional limiting mounting mode can be provided, which can effectively prevent the power supply module 4 from loosening, deviating or accidentally falling off when subjected to external force interference (such as shaking, collision or long-term wearing), thereby greatly enhancing the stability of the whole machine operation and the safety of the user.
[0068] Further, in some embodiments, a structure with direction guiding or foolproof design (such as asymmetric positioning column, wedge-shaped guide groove, etc.) can be arranged between the plurality of first docking portions 51 and the second docking portions 52, which is used to guide the power supply module 4 to be assembled in only one correct direction, prevent misplug and misuse, and improve the overall use experience of the product.
[0069] In this way, through the multi-point connection scheme formed by the plurality of docking portions arranged in the embodiment, not only the mechanical stability of the detachable connection structure is improved, but also the vibration resistance of the power supply module 4 is enhanced, so that the wearable device can be applied to long-term wearing, motion scene, high-intensity use and other working scenes.
[0070] In one embodiment, based on the above, further, the mounting position 320 is arranged as a mounting groove recessed in the second side 32 of the wearable body 3, that is, the wearable body 3 forms a cavity structure inwardly recessed on the side (second side 32) away from the human body, which serves as a containing and connecting area of the power supply module 4.
[0071] It can be understood that the design of the mounting groove not only provides a limited mounting space for the power supply module 4, but also provides a more definite assembly direction and depth reference, which facilitates the automatic alignment, guidance and limiting of the power supply module 4 during the mounting process, and helps to improve the reliability and consistency of the assembly.
[0072] Among them, the first docking portions 51 are respectively arranged on the opposite two inner side walls of the mounting groove along the length direction of the wearable body 3, that is, at least one first docking portion 51 is arranged on each of the two opposite inner side walls. In this embodiment, the specific form of the first docking portion 51 is not limited, and the first docking portion 51 can be a clamping groove, a limiting step, a jack and other structure units with connection function, which is used to form mechanical connection with the power supply module 4.
[0073] It should be noted that the number of first docking portions 51 provided on the two inner side walls can be equal or not equal, in order to adapt to the needs of different forms and different functional modules, and increase the flexibility of the scheme. For example, two first docking portions 51 are provided on one side, and one first docking portion 51 is provided on the other side, so as to form an asymmetric clamping structure, which is convenient for the user to insert and prevent the user from making mistakes in a single direction.
[0074] In addition, please refer to the drawings of the specification Figure 6 and Figure 7 The power supply module 4 is provided with a docking structure 41 located on the docking side between the power supply module 4 and the body 3 of the wearing piece, which mainly plays the role of structural support, connection transition and function interface bearing.
[0075] Specifically, the contour shape of the docking structure 41 is matched with the opening contour of the mounting groove, and the outer periphery of the docking structure 41 is provided with a second docking portion 52 matched with the first docking portion 51. When the power supply module 4 is inserted into the mounting groove, the second docking portion 52 and the first docking portion 51 form a clamping connection in structure.
[0076] At the same time, after the power supply module 4 is installed, at least part of the docking structure 41 is located in the mounting groove, that is, its structure extends into the body 3 of the wearing piece, forming partial embedding. This partial embedding type connection not only improves the anti-pulling performance and anti-twisting ability of the connection, but also effectively limits the lateral shaking or tilting of the power supply module 4 during use, which is beneficial to ensure the power supply stability and wearing comfort.
[0077] It should be noted that the above-mentioned docking structure 41 can be a single-layer or multi-layer structure. In the single-layer structure form, the docking structure 41 is a plate-shaped member, and all the second docking portions 52 are provided on different side walls thereof, for example, can be arranged on the opposite two side walls.
[0078] Of course, the docking structure 41 can also be a multi-layer structure, that is, two or more plate-shaped structures are provided on the power supply module 4, and one or more second docking portions 52 are respectively provided on each layer of plate-shaped structures. For example, referring to the drawings of the present application, referring to the drawings Figure 6 and Figure 7 The docking structure 41 in the power supply module 4 includes a first layer plate-shaped structure and a second layer plate-shaped structure, wherein one second docking portion 52 is provided on the first layer plate-shaped structure, and two second docking portions 52 are provided on the second layer plate-shaped structure, which correspond to the three first docking portions 51 respectively provided on different inner side walls of the mounting groove in the body 3 of the wearing piece, so as to form a three-point fixed connection with stable structure and high docking precision under three-point cooperation.
[0079] More specifically, the size of each plate-shaped structure can gradually increase, and the mounting groove also has a stepped profile, so that the butt joint structure 41 and the mounting groove form a stepped fitting, the structure is more stable, and the stepped structure provides guidance for the installation process and improves the user's operation experience.
[0080] Based on the above embodiment, more specifically, the number of first butt joints 51 is three, of which two first butt joints 51 are arranged at intervals on one inner side wall of the mounting groove, and the other first butt joint 51 is arranged on the other opposite inner side wall of the mounting groove, forming a set of asymmetrically distributed three-point connection structure.
[0081] As can be understood, the two first butt joints 51 arranged at intervals on one inner side wall can provide preliminary limiting to limit the deviation of the power supply module 4, and the single first butt joint 51 arranged on the other side further serves as auxiliary support and locking. Compared with the traditional two-point symmetric clamping, this scheme can form a three-point spatial support relationship, effectively avoiding the shaking, warping or micro-displacement of the power supply module 4 during wearing, and improving the long-term use stability of the wearable device.
[0082] Correspondingly, the second butt joint 52 on the power supply module 4 is arranged according to the positions of the above-mentioned three first butt joints 51 and cooperates with them to form a three-point fixed connection structure. Through this fixed structure, a support plane is formed in space, thereby enhancing the torsional resistance of the power supply module 4, and even when affected by external force, the positioning stability and connection reliability of the module can be maintained.
[0083] In one embodiment, more specifically, the first butt joint 51 is a clamping protrusion, and the second butt joint 52 is a clamping groove arranged correspondingly to the first butt joint 51. Correspondingly, the first butt joint 51 can also be a clamping groove, and the second butt joint 52 is a clamping protrusion arranged correspondingly to the first butt joint 51.
[0084] The clamping protrusion and the clamping groove have elasticity, or one of them has elasticity, so that the clamping protrusion can be clamped into the clamping groove to achieve the clamping connection of the wearable device body 3 and the power supply module 4.
[0085] In this way, the elastic cooperation of the clamping protrusion and the clamping groove can form a mechanical locking structure to avoid accidental separation of the wearable device body 3 and the power supply module 4 due to vibration, shaking or external force impact in daily use. For example, when the clamping protrusion has elasticity, after being clamped into the clamping groove, the elastic restoring force will make the clamping protrusion tightly fit the groove wall of the clamping groove, forming an interference fit and significantly improving the connection strength.
[0086] In addition, the elastic clamping structure only needs to apply a moderate external force (such as pressing or pulling, etc.) to deform the clamping protrusion out of the clamping groove, without the need for tools, meeting the user's demand for "easy disassembly and assembly". For example, when replacing the power supply module 4, the user can separate the power supply module 4 through simple operation, improving the convenience of use.
[0087] In one embodiment, the side of the power supply module 4 away from the mounting position 320 has an arc-shaped profile, which is concave towards the center of the power supply module 4, forming a curved surface structure converging inward.
[0088] In this way, through this curved surface structure, a good streamline and aesthetic characteristics are generated, which can make the overall wearing assembly more visually natural and beautiful; in addition, the concave curved surface structure can also be adapted to the user's hand holding position when installing or disassembling, for example, when installing the power supply module 4, the user's fingers can rest on the recess, so that the hand can be lifted to a certain extent.
[0089] In one embodiment, referring to the description accompanying Figure 3 , Figure 4 and Figure 8 , according to another aspect of the present application, the present application further provides a smart watch, comprising a watch host 1, two connecting ears 60 and two watch bands 2. The two connecting ears 60 are respectively arranged on the opposite sides of the watch host 1, and one end of the two watch bands 2 is respectively connected to the corresponding connecting ear 60, and at least one of the two watch bands 2 is the wearing assembly in the previous embodiment, so that the power supply module 4 in the wearing assembly can supply power to the watch host 1 when the user wears the smart watch.
[0090] It can be understood that in the present embodiment, by embedding the power supply module 4 in the watch band 2, the user can realize continuous power supply without disturbing the wearing experience, especially in outdoor or fixed power supply environment, without the need to frequently disassemble the host for charging, improving the use continuity and convenience.
[0091] In one case, the power supply module 4 is arranged near one end of the watch host 1, which can realize direct electrical connection with the watch host 1 after installation, thereby realizing continuous power supply; on the contrary, in another case, the power supply module 4 can also be installed only on the wearing piece body 3, and when charging is needed, the power supply module 4 is disassembled and electrically connected with the watch host 1.
[0092] Further, as shown in Figure 5 , the watch host 1 is provided with a charging port 10, and the power supply module 4 includes a charging probe 42 and a power supply (not shown in the figure) electrically connected with the charging probe 42. The power supply can include a storage battery, a secondary battery or other chargeable energy storage module, for storing energy and outputting power to the watch host 1 through the charging probe 42.
[0093] In this solution, the charging probe 42 and the detachable connection structure (corresponding to the second docking portion 52 in the above) in the power supply module 4 are arranged on different functional surfaces of the power supply module 4, i.e., they do not interfere with each other in the spatial structure. Specifically, the charging probe 42 is arranged on the side for facing the watch host 1, while the detachable connection structure is arranged on the other side for docking with the wearable body 3, so as to ensure that the power supply module 4 is stably connected to the wearable body 3, while the charging probe 42 can be accurately docked with the charging port 10 of the watch host 1, thereby completing the power supply process.
[0094] Optionally, a magnetic attraction structure is further arranged between the watch host 1 and the power supply module 4. (Not shown in the drawings) The magnetic attraction structure can include a magnetic member (such as a magnet or a magnet piece) arranged adjacent to the charging probe 42 and a magnetic material or a corresponding magnetic attraction member arranged around the charging port 10 of the watch host 1.
[0095] In actual use, when the power supply module 4 approaches the watch host 1, the magnetic attraction structure can generate an attractive force to automatically guide the power supply module 4 to the correct docking position, ensuring that the charging probe 42 accurately contacts the charging port 10, thereby improving the convenience and reliability of the charging operation.
[0096] In one embodiment, as shown in Figure 9 The buckle structure 7 between the watchband 2 and the connecting lug 60 is detachably connected. Moreover, the buckle structure 7 on the wearable body 3 is arranged on the first side 31, i.e., the side away from the power supply module 4, thereby effectively avoiding interference between the arrangement areas of the power supply module 4 and the buckle structure 7.
[0097] The buckle structure 7 can adopt a cooperating structure of a buckle member 71 and a buckle hole 72. For example, the buckle hole 72 is arranged on the connecting lug 60, and the buckle member 71 that can be inserted into the buckle hole 72 is arranged on the first side 31 of the wearable body 3, so that the wearable assembly can be quickly fixed by buckling during installation, and the buckling state can be released by pressing or pulling during disassembly.
[0098] Further, the buckle structure 7 can also form a structure of bidirectional buckling, for example, the buckle member 71 has two, which are arranged in the form of hooks, wherein the two hooks are arranged at intervals, and the hook heads of the two hooks face opposite directions and cooperate with different sides of the buckle hole 72. Such a structure can provide a bidirectional limiting effect during insertion, avoiding the watchband 2 from being separated when subjected to external force, thereby improving the overall assembly firmness and wearing safety.
[0099] Of course, in other embodiments, the watchband 2 and the connecting ears 60 can also be connected to each other in other detachable or non-detachable ways, and the conventional adjustment or replacement of such connections should also be included in the protection scope of the present application.
[0100] It should be noted that the above embodiments can be freely combined as needed. The above is only a preferred embodiment of the present application, and it should be pointed out that those skilled in the art can make several improvements and refinements without departing from the principles of the present application, and these improvements and refinements should also be considered within the protection scope of the present application.
Claims
1. A wearing assembly, characterized by, The application is applied to a wearable device, comprising a wearing body and a power supply module with an independent power supply, the power supply module is used for powering the wearable device; The wearing body has a first side and a second side opposite to each other, the first side is close to or adheres to a wearing part in a use state, and the second side is away from the wearing part; The wearing body is provided with a mounting position on the second side, the contour of the mounting position is adapted to at least part of the contour of the power supply module, and a detachable connection structure is arranged between the mounting position and the power supply module, so that the power supply module can be detachably connected relative to the wearing body.
2. The wearing assembly according to claim 1, wherein The detachable connection structure comprises a first docking part and a second docking part, the first docking part and the second docking part are matched and can form a clamping connection or an embedded connection; The first docking part is arranged on the mounting position, and the second docking part is arranged on the power supply module.
3. The wearing assembly according to claim 2, wherein The number of the first docking part is at least two, and at least two different side walls of the mounting position are provided with the first docking part; The second docking part is arranged corresponding to the first docking part, so that the detachable connection structure forms at least two fixed contacts.
4. The wearing assembly according to claim 3, wherein The mounting position is arranged as a mounting groove recessed relative to the second side of the wearing body, the first docking part is arranged on the opposite two inner side walls of the mounting groove along the length direction of the wearing body, and the number of the first docking part on the two inner side walls is equal or unequal; The power supply module is provided with a docking structure located on the docking side of the power supply module and the mounting position, the second docking part is arranged on the outer periphery of the docking structure, and when the first docking part and the second docking part are connected, at least part of the docking structure is located in the mounting groove.
5. The wearing assembly according to claim 4, wherein The number of the first docking part is three, two of the first docking parts are arranged at intervals on one inner side wall of the mounting groove, and the remaining one of the first docking parts is arranged on the other inner side wall of the mounting groove; the second docking part is arranged corresponding to the first docking part, and then the second docking part and the first docking part form a three-point fixed structure.
6. The wearing assembly according to any one of claims 2-5, wherein The first docking part is a clamping protrusion or a clamping groove, the second docking part is a clamping groove or a clamping protrusion arranged corresponding to the first docking part, and the clamping protrusion and / or the clamping groove has elasticity, so that the clamping protrusion can be clamped into the clamping groove to realize the clamping connection of the wearing body and the power supply module.
7. The wearing assembly according to any one of claims 1-5, wherein The mounting position is at a first end of the wearing member body, and the first end is a side end close to a main machine of the wearing assembly when the wearing assembly is docked with the main machine of the wearable device. And / or, The power supply module is recessed towards the center of the power supply module.
8. A smart watch, characterized by Comprise: A watch main machine; Two connecting ears, which are respectively arranged on opposite sides of the watch main machine; Two watch bands, one end of each of the two watch bands is connected to a corresponding connecting ear; and, among the two watch bands, at least one watch band is configured as the wearing assembly of any one of claims 1-7, and the power supply module in the wearing assembly is used to power the watch main machine.
9. The smart watch of claim 8, wherein, The watch main machine has a charging port, the power supply module includes a charging probe and a power supply electrically connected to the charging probe; in the power supply module, the charging probe and the detachable connecting structure are arranged on different acting surfaces, and in a use state, the charging probe and the charging port are in opposite connection to power the watch main machine; And / or, A magnetic attraction structure is arranged between the watch main machine and the power supply module, and is used to assist in docking during charging through the magnetic attraction structure.
10. The smart watch of claim 8 or 9, wherein, The watch band and the connecting ear are detachably connected through a buckle structure, and the buckle structure on the wearing member body is arranged on the first side.