Wearable device and bracelet

The design of wearable devices connected by flexible wearable components solves the problems of appearance impact and inconvenience in taking and placing the headphones after they are stored, achieving the effect of convenient use and beautiful protection.

CN223335689UActive Publication Date: 2025-09-16GUANGDONG XIAOTIANCAI TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422700236.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-16
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The appearance of existing wearable devices is affected after the earphones are stored, which makes it difficult to meet the aesthetic requirements. At the same time, the earphones are inconvenient to take and put away and are easily contaminated by dust, which affects the life of the device.

Method used

The first device body and the second device body are connected by a flexible wearable component. By changing the relative position and matching state, the storage slot is exposed or concealed, providing convenient earphone removal and placement and an aesthetically pleasing appearance design.

Benefits of technology

The earphones can be conveniently placed on and taken out of the wearable device, which improves the appearance and protects the storage slot from dust pollution, thereby extending the service life of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223335689U_ABST
    Figure CN223335689U_ABST
Patent Text Reader

Abstract

The utility model discloses a wearable device and a wristband, and relates to the technical field of electronic equipment.The wearable device comprises a flexible wearable part, a first device body and a second device body, and the first device body and the second device body are respectively connected to the flexible wearable part. According to the wearable device, the first device body and the second device body can be detachably connected through the first storage part and the second storage part to shield the first storage groove and the second storage groove, and the first storage groove and the second storage groove are protected while the aesthetic requirement of a user for the wearable device is met. The first equipment body and the second equipment body can be detachably connected through the first matching part and the second matching part, so that the first accommodating groove and the second accommodating groove are respectively exposed out of the first equipment body and the second equipment body, and the earphone can be conveniently taken and placed on the wearable equipment; and the wearable equipment with the earphone can meet the daily use requirements of the user.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of electronic devices, and in particular to a wearable device and a wristband. Background Art

[0002] Currently, for easier storage, headphones on the market are often stored in headphone cases. This is particularly true for wireless headphones, as these cases not only protect the headphones but also incorporate a charging function. This allows the headphones to be safely stored in the case when not in use, allowing them to be charged at any time, ensuring battery life. However, with headphone cases, the headphones need to be removed from a pocket or bag each time the headphones are ready to be used or after use, making them inconvenient to carry and use.

[0003] Therefore, there is a method of combining headphones with wearable devices and using wearable devices to store the headphones to solve the problem that headphones are inconvenient to carry and put away. However, because of this, every time the headphones are taken out of the wearable device, the appearance of the wearable device will be greatly affected, making it difficult to meet users' demands for the aesthetics of wearable devices. Utility Model Content

[0004] The purpose of the embodiments of the present invention is to provide a wearable device and a wristband that can solve the above-mentioned problems existing in the prior art.

[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0006] In a first aspect, a wearable device is provided, comprising:

[0007] Flexible wearable components;

[0008] a first device body and a second device body, wherein the first device body and the second device body are respectively connected to the flexible wearable component;

[0009] The first device body is formed with a first receiving portion and a first matching portion staggered with the first receiving portion, the second device body is formed with a second receiving portion and a second matching portion staggered with the second receiving portion, the first receiving portion is provided with a first receiving slot, and / or the second receiving portion is provided with a second receiving slot;

[0010] The first device body and the second device body can be detachably connected through the first storage portion and the second storage portion to cover the first storage slot and the second storage slot; and the first device body and the second device body can be detachably connected through the first matching portion and the second matching portion to expose the first storage slot and the second storage slot to the outside of the first device body and the second device body, respectively.

[0011] As an optional embodiment, in a state where the first device body is provided with the first receiving slot, the wearable device further includes:

[0012] a first earphone, the first earphone being provided with a first wearing portion and a first gripping portion, the first earphone being detachably mounted in the first receiving slot via the first wearing portion; a surface of the first gripping portion protruding from a notch of the first receiving slot, or a surface of the first gripping portion being engaged with a surface of the first receiving portion;

[0013] In a state where the second device body is provided with the second receiving slot, the wearable device further includes:

[0014] The second earphone is provided with a second wearing part and a second gripping part. The second earphone is detachably arranged in the second storage slot through the second wearing part; the surface of the second gripping part protrudes from the notch of the second storage slot, or the surface of the second gripping part is engaged with the surface of the second storage part.

[0015] As an optional embodiment, a first positioning structure is provided between the first receiving portion and the second receiving portion, and the first positioning structure is used to constrain the relative position of the first receiving portion and the second receiving portion in an assembled state; and / or

[0016] A second positioning structure is provided between the first matching portion and the second matching portion, and the second positioning structure is used to constrain the relative positions of the first matching portion and the second matching portion in an assembled state.

[0017] As an optional embodiment, the first positioning structure includes a first positioning protrusion and a first positioning concave hole that are structurally adapted to each other, and the first positioning protrusion and the first positioning concave hole are respectively provided in the first receiving portion and the second receiving portion;

[0018] The second positioning structure includes a second positioning protrusion and a second positioning concave hole that are structurally adapted to each other. The second positioning protrusion and the second positioning concave hole are respectively disposed on the first matching portion and the second matching portion.

[0019] As an optional embodiment, the first receiving portion and the first matching portion are respectively formed on opposite sides of the first device body along the width direction thereof, and one end of the flexible wearable component is connected to one end of the first device body along the length direction thereof;

[0020] The second receiving portion and the second matching portion are respectively formed on opposite sides of the second device body along the width direction thereof, and the other end of the flexible wearable component is connected to one end of the second device body along the length direction thereof.

[0021] As an optional embodiment, the first device body further includes a first wearing portion and a first operating portion provided along the thickness direction thereof, and the second device body further includes a second wearing portion and a second operating portion provided along the thickness direction thereof;

[0022] When the first device body and the second device body are matched, the first wearing portion is connected to the surface of the second wearing portion, and the first operating portion is connected to the surface of the second operating portion.

[0023] As an optional implementation manner, the first wearing portion, the first operating portion, the second wearing portion, and the second operating portion are all configured to be flat surfaces.

[0024] As an optional embodiment, the surfaces of the first receiving portion and the second receiving portion are both configured as planes, and the surfaces of the first matching portion and the second matching portion are both configured as planes.

[0025] As an optional embodiment, the first device body is provided with a first magnetic member close to the first receiving portion and the first matching portion, and the second device body is provided with a second magnetic member close to the second receiving portion and the second matching portion;

[0026] The first receiving portion and the second receiving portion may be magnetically engaged with each other through the first magnetic member and the second magnetic member, and the first engaging portion and the second engaging portion may be magnetically engaged with each other through the first magnetic member and the second magnetic member.

[0027] In a second aspect, a wristband is provided, which adopts the wearable device as described in the first aspect.

[0028] The beneficial effects of the present invention are as follows: the wearable device, while providing corresponding storage space for the earphones through the first and second device bodies, utilizes the physical properties of the flexible wearable component to enable the first and second device bodies to change their relative positions and mating states while remaining connected. The first and second device bodies can be connected via the first and second mating portions, exposing the first and second storage slots to the external environment, making it easier to remove and place the earphones on the wearable device, allowing the wearable device with earphones to meet the user's daily needs.

[0029] In addition, the first device and the second device can also be connected through the first storage part and the second storage part, so that the first storage slot for storing the earphones and the second storage slot are cooperatively covered by the first device body and the second device body, so that the overall appearance and aesthetics of the wearable device are improved, meeting the user's aesthetic needs for wearable devices, while also protecting the first storage slot and the second storage slot to prevent the entry of external dust and foreign matter, reducing the risk of poor contact between the earphones and the device, and extending the service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.

[0031] Figure 1 This is one of the structural diagrams of the wearable device described in the embodiment of the present utility model;

[0032] Figure 2 This is the second structural diagram of the wearable device according to the embodiment of the present utility model;

[0033] Figure 3 This is a cross-sectional view of the wearable device according to an embodiment of the present invention (the first earphone and the second earphone are omitted);

[0034] Figure 4 This is the third structural diagram of the wearable device according to the embodiment of the present utility model (the first earphone and the second earphone are omitted);

[0035] Figure 5 This is an exploded view of the wearable device according to an embodiment of the present utility model;

[0036] Figure 6 This is the second cross-sectional view of the wearable device described in the embodiment of the present utility model.

[0037] In the figure: 10, flexible wearable component; 20, first device body; 21, first storage part; 211, first storage groove; 212, first positioning protrusion; 22, first matching part; 221, second positioning protrusion; 23, first wearing part; 24, first operating part; 25, first magnetic member; 26, first magnet; 30, second device body; 31, second storage part; 311, second storage groove; 312, first positioning recessed hole; 32, second matching part; 321, second positioning recessed hole; 33, second wearing part; 34, second operating part; 35, second magnetic member; 36, second magnet; 40, first earphone; 41, first wearing part; 42, first gripping part; 50, second earphone; 51, second wearing part; 52, second gripping part. DETAILED DESCRIPTION

[0038] To make the technical problems solved, the technical solutions adopted, and the technical effects achieved by the present invention more clearly understood, the technical solutions of the embodiments of the present invention are described in further detail below. Obviously, the embodiments described are only a portion of the embodiments of the present invention, not all of them. All other embodiments derived by those skilled in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.

[0039] In the description of this utility model, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0040] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.

[0041] As can be seen from the background technology, in order to facilitate the storage of earphones, a more common method currently on the market is to use an earphone box to store the earphones. Especially for wireless earphones, the earphone box can not only be used to store the earphones, but also has an integrated charging function, so that users can safely place the earphones in the box when not in use and charge the earphones at any time to ensure the battery life of the earphones. However, while using an earphone box to store earphones provides convenience and protection, it also has some potential disadvantages or shortcomings. For example, the earphone box is easy to be lost during movement, especially for users who often go out or need to change their environment frequently. Once the earphone box is lost, not only will the earphones lose protection, but it may also cause financial losses. In addition, when the earphones need to be taken out or put back quickly, the opening and closing of the earphone box may be cumbersome, and the user needs to take the earphone box out of the pocket or bag and put it back into the pocket or bag, which is inconvenient to carry and use.

[0042] Later, some manufacturers adopted the solution of integrating headphones into wearable devices, using the wearable device to store the headphones, so that the headphones can be placed in the wearable device when stored, thus solving the problem of headphones being difficult to carry and put away. However, because of this, every time the headphones are removed from the wearable device, the storage slot on the wearable device that provides the corresponding storage space for the headphones will be exposed, which greatly affects the appearance of the wearable device. With the increasing demand for aesthetics in wearable devices, wearable devices are no longer just carriers of technology, they have become part of fashion accessories, which undoubtedly makes it difficult to meet users' demand for the aesthetics of wearable devices.

[0043] In addition, the exposure of the storage slot will make it easier for external dust, particles and other foreign matter to enter the storage slot and the inside of the wearable device. Long-term accumulation will contaminate the device and affect the service life and performance of the device.

[0044] In view of this, the present embodiment provides a wearable device, which connects a first device body and a second device body through a flexible wearable component, so that the device bodies can utilize the physical properties of the flexible wearable component to change the matching relationship with each other, so that the above-mentioned storage slot can be exposed and covered under a specific matching relationship, thereby meeting various needs of the wearable device in the solution combined with headphones.

[0045] It should be understood that wearable devices refer to portable devices that can be worn directly on the human body or integrated into clothing or accessories. Their characteristics generally include lightness, portability, continuous monitoring and instant feedback. These devices can achieve close connection with users through sensors, wireless communication and other technologies, providing users with personalized services while continuously monitoring some of the user's biometrics or environmental information. They also have certain interactive capabilities and can interact with the human body by sensing, transmitting and processing information. Currently, there are many types of wearable devices. According to the form of wearable device products, they can be divided into, but not limited to, head-mounted (such as smart glasses), body-mounted (such as smart clothing), hand-mounted (such as smart watches, bracelets), foot-mounted (such as smart sports shoes), etc.

[0046] Please refer to the instruction manual Figure 1-Figure 4 The wearable device includes a flexible wearable component 10, which is made of a flexible material (including but not limited to rubber, spring steel, stretch fabric, etc.), which can bend freely and adapt to the human body shape, so as to facilitate the application of different types of wearable devices and users with different physical conditions to wear them. In some embodiments, electronic materials and / or electronic devices can be further arranged in the flexible wearable component 10 to improve the user experience of the wearable device, but it should be noted that in order to adapt to the deformation requirements of the flexible wearable component 10 in different usage scenarios, the electronic materials and electronic devices arranged in the flexible wearable component 10 should also be made using flexible manufacturing technology to avoid damage to related materials and devices when the flexible wearable component 10 is deformed.

[0047] It needs to be explained that flexibility is a property of an object relative to rigidity. It mainly refers to the physical property that an object (flexible wearable component 10) can be deformed after being subjected to force and can (or cannot) restore its original shape after the force is lost.

[0048] Please continue to refer to the attached Figure 1-Figure 4 On the basis of the above, the wearable device further includes a first device body 20 and a second device body 30. In one embodiment, at least one of the first device body 20 and the second device body 30 is not limited to being provided with key components such as a processor, a sensor (such as a heart rate sensor, an accelerometer, etc.), a battery, a speaker, and a pickup, and the surface of at least one of the first device body 20 and the second device body 30 is not limited to being provided with a screen (such as a display screen, a touch screen, etc.), buttons (such as physical buttons, touch buttons), etc., so that the wearable device can collect, process and transmit relevant data while being worn by the user, and can interact with the wearable device in real time.

[0049] Specifically, in order for the wearable device to provide corresponding storage space for headphones, at least one of the first device body 20 and the second device body 30 needs to be provided with a storage slot for the headphones to be accommodated and fixed. The storage slot is specifically provided on the first device body 20 or the second device body 30, and can be specifically provided according to the design requirements of the wearable device, the user's usage needs, etc., and the number of storage slots can also be set according to actual conditions. This embodiment does not impose strict restrictions on this.

[0050] Following the above embodiment, in order to facilitate a more comprehensive understanding of this solution, the structures of the first device body 20 and the second device body 30 are briefly described below. The first device body 20 is formed with a first receiving portion 21 and a first matching portion 22 staggered with the first receiving portion 21, and the second device body 30 is formed with a second receiving portion 31 and a second matching portion 32 staggered with the second receiving portion 31. That is, according to the above content, this embodiment can adopt at least the following three ways of arranging the receiving grooves on the first device body 20 and the second device body 30:

[0051] 1. Only the first receiving portion 21 is provided with the first receiving groove 211;

[0052] 2. Only the second receiving portion 31 is provided with the second receiving groove 311;

[0053] 3. The first receiving portion 21 defines a first receiving groove 211 , and the second receiving portion 31 defines a second receiving groove 311 .

[0054] According to the above configuration, under the physical properties of the flexible wearable component 10, the first device body 20 and the second device body 30 can move relative to each other while remaining connected via the flexible wearable component 10, thereby changing their relative positions. Under this premise, the present embodiment configures the first device body 20 and the second device body 30 to be detachably connected via the first receiving portion 21 and the second receiving portion 31, so that the first receiving portion 21 and the second receiving portion 31 of the first device body 20 are in a closed position, thereby achieving the purpose of shielding the notches of the first receiving slot 211 and the second receiving slot 311. In addition, this embodiment also arranges the first device body 20 and the second device body 30 to be detachably connected through the first matching portion 22 and the second matching portion 32, so that the first matching portion 22 and the second matching portion 32 are in a relative position state. Since the first storage portion 21 and the first matching portion 22 are staggered, and the second storage portion 31 and the second matching portion 32 are staggered, when the first matching portion 22 and the second matching portion 32 are in a relative state, the first storage portion 21 and the second storage portion 31 will be exposed to the outside of the first device body 20 and the second device body 30, thereby achieving the purpose of exposing the first storage slot 211 and the second storage slot 311 to the outside of the first device body 20 and the second device body 30 respectively.

[0055] It is worth mentioning that, taking the first device body 20 as an example, the first storage portion 21 and the first matching portion 22 can be formed on the same side of the first device body 20 (such as both formed on the left or right side of the first device body 20), so that the first device body 20 can be connected to the second device body 30 only through this side, and the matching switching of the first storage portion 21 and the second storage portion 31 can be achieved by sliding relative to the second device body 30; and, the first storage portion 21 and the first matching portion 22 of the first device body 20 can also be formed on the opposite or adjacent side portions of the first device body 20, so that the first device body 20 needs to achieve the matching switching of the first storage portion 21 and the first matching portion 22 by rotating relative to the second device body 30, moving around the second device body 30, etc.

[0056] The wearable device provided in this embodiment is provided with a first storage slot 211 and / or a second storage slot 311 to provide corresponding storage space for headphones to achieve the purpose of improving the convenience of taking and placing headphones. On the basis of this, the physical properties of the flexible wearable component 10 are utilized to enable the first device body 20 and the second device body 30 to change their relative position and matching state while remaining connected. According to different usage scenarios and needs, the user can change the matching relationship between the first device body 20 and the second device body 30 to connect through the first matching portion 22 and the second matching portion 32, so that the first storage slot 211 and the second storage slot 311 are exposed to the external environment, so as to facilitate the removal and placement of headphones on the wearable device, allowing the wearable device with headphones to meet the user's daily usage needs. In addition, the first device and the second device are changed to be connected through the first storage portion 21 and the second storage portion 31, so that the first storage slot 211 and the second storage slot 311 for storing the earphones are cooperatively shielded by the first device body 20 and the second device body 30, so as to improve the overall appearance and aesthetics of the wearable device and meet the user's aesthetic needs for wearable devices.

[0057] In addition, after the earphones are taken out from the first storage slot 211 and / or the second storage slot 311, and when the first device body 20 and the second device body 30 cooperate through the first storage portion 21 and the second storage portion 31, the first storage slot 211 and the second storage slot 311 can also be protected accordingly to prevent external dust and foreign matter from entering the storage slots, while also preventing foreign matter from entering the interior of the relevant device body through the gaps in the storage slots, thereby reducing the risk of poor contact between the earphones and the device and extending the service life of the device.

[0058] It should be noted that, in some embodiments, even if the first device body 20 and the second device body 30 are in a state where the earphones are not taken out, that is, when the first storage slot 211 and / or the second storage slot 311 contain earphones, the first device body 20 and the second device body 30 can cooperate with each other through the first storage portion 21 and the second storage portion 31, so that the first device body 20 and the second device body 30 can play the role of the earphone box mentioned in the background technology, thereby improving certain usage scenarios where there are special requirements for the stability of earphone storage.

[0059] Please continue to refer to the attached Figures 1-6, the wearable device also includes a first earphone 40 when the first device body 20 is provided with a first storage slot 211, wherein the first earphone 40 is provided with a first wearing portion 41 and a first gripping portion 42 connected to the first wearing portion 41. As the name implies, the first wearing portion 41 is the portion of the first earphone 40 that is directly worn on the user's head or ear, and is responsible for fixing the first earphone 40 and providing a channel for audio output. The first gripping portion 42 is the portion that the user holds the first earphone 40 when using or carrying the earphones. The first gripping portion 42 is connected to the first wearing portion 41, so that the first earphone 40 as a whole can be put on and taken off by the user through the first gripping portion 42. At the same time, the first gripping portion 42 can also provide relevant operating positions (such as physical buttons, touch buttons, etc.) for the first earphone 40.

[0060] Specifically, the first wearable portion 41 is configured to be located closer to the skin surface of the first earphone 40 when worn on the ear of the user. The first gripping portion 42 is configured to be located farther from the skin surface of the first earphone 40 when worn on the ear of the user.

[0061] When the first earphone 40 is stored in the first device body 20, the first earphone 40 is detachably set in the first storage groove 211 through the first wearable part 41. On the basis of providing sufficient storage space for the first earphone 40, the structure of the first storage groove 211 can be further set to match the structure of the first wearable part 41.

[0062] Moreover, when the first earphone 40 is stored in the first receiving groove 211, the surface of the first gripping portion 42 can be set to a notch protruding from the first receiving groove 211 to facilitate the user to take and put it. Of course, the first gripping portion 42 can also be set to a form in which the surface of the first gripping portion 42 is connected and matched with the surface of the first receiving portion 21 to improve the integrity of the first earphone 40 in the stored state.

[0063] Consistent with the above principle, when the second device body 30 is provided with a second storage slot 311, the wearable device also includes a second earphone 50. Accordingly, the second earphone 50 is also provided with a second wearable portion 51 and a second gripping portion 52. The second earphone 50 is detachably arranged in the second storage slot 311 through the second wearable portion 51, and when the second earphone 50 is received in the second storage slot 311, the surface of the second gripping portion 52 can be set to a notch protruding from the second storage slot 311, or the surface of the second gripping portion 52 can be set to be connected and matched with the surface of the second storage portion 31.

[0064] From the above content, it can be seen that when at least one of the first storage slot 211 and the second storage slot 311 is provided with an earphone (a first earphone 40, a second earphone 50), the first device body 20 and the second device body 30 can still be configured to cooperate with the second storage portion 21 and the second storage portion 31 through the first storage portion 21, so as to achieve the purpose of improving the stability of the earphone on the wearable device. This embodiment can correspond to the above-mentioned manner in which the surfaces of the first grip portion 42 and the second grip portion 52 are connected to the first storage portion 21 and the second storage portion 31 when the first earphone 40 and the second earphone 50 are stored in the first storage slot 211 and the second storage slot 311. In the case that the surfaces of the first grip portion 42 and the second grip portion 52 protrude from the notches of the first receiving groove 211 and the second receiving groove 311, if the first device body 20 and the second device body 30 are still matched through the first receiving portion 21 and the second receiving portion 31, it will cause mutual interference between the first earphone 40 and the second earphone 50 (or the first earphone 40 and the second receiving portion 31, the second earphone 50 and the first receiving portion 21). However, such a setting can also reduce the volume of the first device body 20 and the second device body 30 to a certain extent, which is conducive to the miniaturized design of wearable devices and meets the user's demand for light and smooth use of wearable devices.

[0065] It is understandable that the first earphone 40 and the second earphone 50 of this embodiment can be configured as, but not limited to, in-ear earphones, open-ear earphones, hanging earphones, and clip-on earphones.

[0066] In addition, the cooperation methods between the above-mentioned first device body 20 and the second device body, as well as between the first earphone 40 and the first storage slot 211, and the second earphone 50 and the second storage slot 311 include but are not limited to magnetic connection, snap connection, slot connection, knob connection, etc., and this embodiment does not make strict limitations and requirements here.

[0067] Please refer to the instruction manual Figure 1-Figure 4In this embodiment, to improve the relative stability of the first device body 20 and the second device body 30 in different mating states, a first positioning structure is provided between the first receiving portion 21 and the second receiving portion 31. The first positioning structure is used to constrain the relative position of the first receiving portion 21 and the second receiving portion 31 in the assembled state. Specifically, when the first device body 20 and the second device body 30 are mated via the first receiving portion 21 and the second receiving portion 31, the first positioning structure limits the first receiving portion 21 and the second receiving portion 31 to relative movement only in the disassembly direction, thereby reducing the relative position of the first device body 20 and the second device body 30 from shifting when worn. In addition, a second positioning structure is provided between the first mating portion 22 and the second mating portion 32. Similarly, the second positioning structure is used to constrain the relative position of the first mating portion 22 and the second mating portion 32 in the assembled state, constraining the first mating portion 22 and the second mating portion 32 to movement only in the disassembly direction, thereby achieving the purpose of constraining the relative position of the first device body 20 and the second device body 30.

[0068] It is understandable that this embodiment does not impose too many constraints and limitations on the first positioning structure and the second positioning structure, and the two structures can be set to be the same or different. In the embodiment in which the first positioning structure and the second positioning structure are set to have the same structure, it can effectively reduce the process difficulty of the wearable device, and at the same time improve the structural consistency of the first device body 20 and the second device body 30. In the embodiment in which the first positioning structure and the second positioning structure are set to have different structures, it can effectively avoid the situation in which the first device body 20 and the second device body 30 have the wrong matching position (such as the first receiving portion 21 matching with the second matching portion 32, or the second receiving portion 31 matching with the first matching portion 22), and play a role in preventing mistakes and other aspects.

[0069] The first positioning structure and the second positioning structure are not limited to a magnetic positioning structure, a slot and slide rail positioning structure, a limit block and limit groove positioning structure, etc.

[0070] As an optional and relatively simple and reliable implementation method, please continue to refer to the attached Figure 1-Figure 4 The first positioning structure includes a first positioning protrusion 212 and a first positioning recessed hole 312 that are adapted to each other. The first positioning protrusion 212 and the first positioning recessed hole 312 are respectively arranged on the first receiving portion 21 and the second receiving portion 31, so that the first receiving portion 21 and the second receiving portion 31 can achieve a mutual limiting effect through the mutual cooperation between the first positioning protrusion 212 and the first positioning recessed hole 312.

[0071] It can be understood that during the assembly and disassembly process of the first positioning protrusion 212 and the first positioning recessed hole 312, the first positioning protrusion 212 needs to be inserted into or pulled out of the first positioning recessed hole 312 through the opening of the first positioning recessed hole 312, that is, the first positioning protrusion 212 and the first positioning recessed hole 312 have the function of constraining the assembly and disassembly direction. Therefore, the first positioning protrusion 212 and the first positioning recessed hole 312 are respectively arranged on the first receiving portion 21 and the second receiving portion 31, and the assembly and disassembly direction of the two is set to the pre-assembly direction of the first receiving portion 21 and the second receiving portion 31. By setting the disassembly and assembly directions to be parallel, the disassembly and assembly directions of the first storage portion 21 and the second storage portion 31 can be effectively constrained, thereby preventing the first device body 20 and the second device body 30 from moving relative to each other in directions other than the disassembly direction when in the mating state. While ensuring the stability of the wearable device, it also ensures that the first storage slot 211 and the second storage slot 311 can be kept continuously covered, ensuring the integrity of the appearance of the wearable device while preventing external dust and foreign matter from entering the first storage slot 211 and the second storage slot 311.

[0072] In this embodiment, the second positioning structure is also configured to include a second positioning protrusion 221 and a second positioning recess 321 that are adapted to each other. The second positioning protrusion 221 and the second positioning recess 321 are respectively provided on the first matching portion 22 and the second matching portion 32 .

[0073] Based on the above, it can be understood that when the first positioning protrusion 212 is set on the first receiving portion 21, the first positioning recessed hole 312 is set on the second receiving portion 31, and when the first positioning protrusion 212 is set on the second receiving portion 31, the first positioning recessed hole 312 is set on the first receiving portion 21. Similarly, when the second positioning protrusion 221 is set on the first matching portion 22, the second positioning recessed hole 321 is set on the second matching portion 32. Conversely, when the second positioning protrusion 221 is set on the second matching portion 32, the second positioning recessed hole 321 is set on the first matching portion 22. In this embodiment, the specific number of the first positioning protrusion 212, the first positioning recessed hole 312, the second positioning protrusion 221 and the second positioning recessed hole 321 is not strictly limited to the requirements for the setting position. When the above parts are set as multiple, the first positioning protrusion 212 can also be placed in the first receiving portion 21 and the second receiving portion 31. Similarly, the first positioning recessed hole 312 can also be set on the first receiving portion 21 and the second receiving portion 31 at the same time, and the second positioning protrusion 221 can be set on the first matching portion 22 and the second matching portion 32 at the same time. Correspondingly, the second positioning recessed hole 321 can be set on the second matching portion 32 and the first matching portion 22 at the same time. It is only necessary to ensure that the first positioning recessed hole 312 corresponding to each first positioning protrusion 212 and the second positioning protrusion 221 correspond to the corresponding second positioning groove position, so that the first device body 20 and the second device body 30 can provide stable positioning functions through the first positioning structure and the second positioning structure in different matching states.

[0074] Specifically, the first positioning protrusion 212 and the second positioning protrusion 221 of this embodiment can be set as a convex point structure protruding from the first device body 20 and / or the second device body 30, and the end of the protrusion can be set to be spherical so that it can be inserted into the first positioning recessed hole 312 and the second positioning recessed hole 321 respectively.

[0075] In this embodiment, the structure of the unified positioning protrusion and positioning recess can facilitate the production of the first device body 20 and the second device body 30 using an integrated molding process such as injection molding and 3D printing, so that the first positioning structure and the second positioning structure are formed at corresponding positions during the production of the first device body 20 and the second device body 30, eliminating the need for subsequent secondary processing and assembly, which can greatly improve the structural integrity and production efficiency of the wearable device.

[0076] In one embodiment, please refer to the attached Figure 3 、 Figure 6The first receiving portion 21 and the first matching portion 22 are respectively formed on opposite sides of the first device body 20 along its width direction, and one end of the flexible wearable component 10 is connected to one end of the first device body 20 along its length direction; correspondingly, the second receiving portion 31 and the second matching portion 32 are respectively formed on opposite sides of the second device body 30 along its width direction, and the other end of the flexible wearable component 10 is connected to one end of the second device body 30 along its length direction.

[0077] Through the above-mentioned arrangement, no matter what assembly state the first device body 20 and the second device body 30 are in, the first matching portion 22, the second matching portion 32, the first storage portion 21 and the second storage portion 31 will all be on a unified straight line, so that the first device body 20 and the second device body 30 can be arranged along the surface of the wearer's skin in any matching state. The first device body 20 and the second device body 30 can also be arranged in the longitudinal or transverse direction to avoid occupying too much thickness space, reduce interference with the outside in the wearing state, reduce the risk of bumps and damage, and effectively reduce the torque exerted by the first device body 20 and the second device body 30 on the user's limbs, thereby reducing the user's wearing burden.

[0078] Moreover, in the above embodiment, if the first device body 20 and the second device body 30 need to switch the matching state, it is only necessary to separate the first device body 20 and the second device body 30, and adjust the position of one device body from one side of the other device body to the other side to achieve the change of the relative position of the two, and then let the two device bodies match. The whole switching process is simple and fast. The first device body 20 and the second folding body are connected by the flexible wearable component 10 throughout the whole process, so that the user does not have to worry about the wearable device falling off the corresponding limb even if it is operated with one hand. Figure 3 、 Figure 6 To assist in understanding, the relative positions of the first device body 20 and the second device body 30 are simply swapped from one on the left and the other on the right, which greatly reduces the difficulty of operation and facilitates application and use by different wearable devices and users.

[0079] On the basis of the above structure, please further refer to the accompanying drawings. The first device body 20 also includes a first wearing portion 23 and a first operating portion 24 arranged along its thickness direction, and the second device body 30 also includes a second wearing portion 33 and a second operating portion 34 arranged along its thickness direction. The first wearing portion 23 and the second wearing portion 33 are used to contact the user's skin surface when the first device body 20 and the second device body 30 are matched and worn by the user, or are located on the side of the first device body 20 and the second device body 30 that is relatively close to the user's skin surface. On the contrary, the first operating portion 24 and the second operating portion 34 are located on the side of the first device body 20 and the second device body 30 that are away from the user's skin surface. In some embodiments, the first operating portion 24 and the second operating portion 34 can be provided with component structures that can be used for the user to interact with the wearable device, such as a screen, a button, a sound outlet connected to an internal speaker, a sound receiving hole connected to an internal sound pickup component, etc.

[0080] According to the above embodiment, taking the first device body 20 as an example, the first operating part 24, the first matching part 22, the first wearing part 23 and the first storage part 21 are formed in sequence around the first device body 20, and any two parts can be transitionally matched through an arc surface structure or a right-angle structure.

[0081] On the basis of the above, when the first device body 20 and the second device body 30 are in the mating state, the first wearing portion 23 and the second wearing portion 33 are connected on the surface, and the first operating portion 24 and the second operating portion 34 are connected on the surface. It can be understood that in order to allow the first operating portion 24 to be connected on the surface with the second operating portion 34, and to allow the first wearing portion 23 to be connected on the surface with the second wearing portion 33, the cross-sectional shape of the first device body 20 and the second device body 30 can be set to a rectangular shape to reduce the interference between the first receiving portion 21 and the second receiving portion 31, and the interference between the first matching portion 22 and the second matching portion 32. The mutually connected first wearing portion 23 and the second wearing portion 33 can reduce the foreign body sensation when the wearable device contacts the user's skin surface, thereby improving the user's wearing comfort. In addition to improving the structural integrity and aesthetics of the wearable device, the mutually connected first operating portion 24 and the second operating portion 34 can also provide a larger setting position for the relevant components of the wearable device, provide the user with a larger operating space, and provide more possibilities for the functional selection of the wearable device.

[0082] Of course, it is understandable that the surfaces of the first operating portion 24 and the second operating portion 34 connected to each other can be but are not limited to forming a plane or a curved surface. Similarly, the surfaces of the first wearing portion 23 and the second wearing portion 33 connected to each other can also be but are not limited to forming a plane or a curved surface.

[0083] In one embodiment, the first wearing portion 23 , the first operating portion 24 , the second wearing portion 33 and the second operating portion 34 are all configured as planes, thereby maximizing the versatility of the wearable device and making it suitable for a wider range of users.

[0084] In one embodiment, the surfaces of the first receiving portion 21 and the second receiving portion 31 are both set to be planes, and the surfaces of the first matching portion 22 and the second matching portion 32 are both set to be planes. As can be understood from the above, by setting the above-mentioned parts to be planes, in addition to reducing the process difficulty of the first device body 20 and the second device body 30, it can also achieve the effect of increasing the contact surface between the first receiving portion 21 and the second receiving portion 31, and the first matching portion 22 and the second matching portion 32, so that the first device body 20 and the second device body 30 can reach a mutually stable state in different matching states, thereby reducing the risk of the wearable device falling off.

[0085] Of course, in some other embodiments, the first receiving portion 21 and the first matching portion 22, as well as the second receiving portion 31 and the second matching portion 32 can also be set as curved surfaces or other irregular surfaces, as long as it is ensured that the first receiving portion 21 and the second receiving portion 31 can be stably matched, and the first matching portion 22 and the second matching portion 32 can be stably matched.

[0086] It can be understood that in the embodiment in which the first positioning protrusion 212, the second positioning protrusion 221, the first positioning recess 312 and the second positioning recess 321 are also provided between the first device body 20 and the second device body 30, the first positioning protrusion 212 and the second positioning protrusion 221 are correspondingly protruded on the surface formed by the receiving portion and / or the matching portion, and the first positioning recess 312 and the second positioning recess 321 are correspondingly opened on the surface formed by the receiving portion and / or the matching portion.

[0087] Please refer to the attached Figure 3 、 Figure 6 In order to facilitate the disassembly and assembly operations between the first device body 20 and the second device body 30, the present embodiment adopts the above-mentioned magnetic matching method between the first device body 20 and the second device body 30. Specifically, the first device body 20 is provided with a first magnetic component 25 close to the first storage portion 21 and the first matching portion 22, and the second device body 30 is provided with a second magnetic component 35 close to the second storage portion 31 and the second matching portion 32. The first storage portion 21 and the second storage portion 31 can be magnetically matched through the first magnetic component 25 and the second magnetic component 35, and the first matching portion 22 and the second matching portion 32 can be magnetically matched through the first magnetic component 25 and the second magnetic component 35.

[0088] In the above solution, a magnetic attraction force can be generated between the first magnetic member 25 and the second magnetic member 35, so that when the first receiving portion 21 and the second receiving portion 31 are close to each other, or when the first matching portion 22 and the second matching portion 32 are close to each other, a magnetic attraction tendency can be generated, thereby maintaining a stable magnetic attraction state between the two in the absence of other external forces. The following provides several ways for the first magnetic member 25 and the second magnetic member 35 to match:

[0089] (1) Both the first magnetic member 25 and the second magnetic member 35 are magnets. In this matching arrangement, the end of the first magnetic member 25 close to the first matching portion 22 and the end of the second magnetic member 35 close to the second matching portion 32, as well as the end of the first magnetic member 25 close to the first receiving portion 21 and the end of the second magnetic member 35 close to the second receiving portion 31 have opposite magnetic poles.

[0090] (2) The first magnetic member 25 is a magnet, and the second magnetic member 35 is a magnetic material;

[0091] (3) The second magnetic member 35 is a magnet, and the first magnetic member 25 is a magnetic material.

[0092] The magnetic materials mentioned above refer to materials that can respond to magnetic fields in some way. In this embodiment, the magnetic materials specifically refer to ferromagnetic materials and ferrimagnetic materials, which are strong magnetic materials that can respond to and be attracted by the magnetic field of a magnet.

[0093] It should be understood that, in order to provide the magnetic attraction force required for the first receiving portion 21 and the first matching portion 22 to match, the first magnetic part 25 can be set as two independent magnetic bodies or as an integral part. Similarly, the second magnetic part 35 can also be two independent magnetic bodies or an integral part. This embodiment does not impose strict limitations and requirements on this. It is only necessary to ensure that the first device body 20 and the second device body 30 can generate a magnetic attraction force between the two when the first receiving portion 21 is close to the second receiving portion 31, and the first matching portion 22 is close to the second matching portion 32, so that the first device body 20 and the second device body 30 can be stably magnetically attracted.

[0094] It can be understood that when the first magnetic part 25 and the second magnetic part 35 are magnets, in order to avoid incorrect matching between the first storage part 21 and the second matching part 32, or the second storage part 31 and the first matching part 22, the magnetic pole of one end of the first magnetic part 25 close to the first storage part 21 is the same as the magnetic pole of one end of the second magnetic part 35 close to the second matching part 32, so that a magnetic repulsion force is generated between the first storage part 21 when it is close to the second matching part 32, and the second storage part 31 when it is close to the first matching part 22, thereby avoiding the first device body 20 and the second device body 30 from forming a match in the above manner.

[0095] In one embodiment, please refer to the attached Figure 3 、 Figure 6 A first magnet 26 and a second magnet 36 are further provided in the first device body 20 and the second device body 30 at positions close to the first receiving groove 211 and the second receiving groove 311. When the first earphone 40 and the second earphone 50 are both placed in the first receiving groove 211 and the second receiving groove 311, the first magnet 26 and the second magnet 36 can respectively generate magnetic attraction force on the electronic components inside the first earphone 40 and the electronic components inside the second earphone 50, so as to stably store the first earphone 40 and the second earphone 50 in the first receiving groove 211 and the second receiving groove 311.

[0096] Please refer to the accompanying drawings. This embodiment also provides a wristband, which adopts the wearable device described in any of the above embodiments to form the wristband into a smart wristband. The flexible wearable component 10 can be set to a belt-shaped structure to be worn around the user's wrist when the first device body 20 and the second device body 30 cooperate with each other.

[0097] In the description herein, it should be understood that the terms "upper," "lower," "left," "right," and other positions or relationships are used solely for ease of description and simplified operation, and are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meaning.

[0098] Throughout this specification, references to terms such as "one embodiment" and "example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example.

[0099] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

[0100] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and should not be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific implementations of the present invention without inventive effort, and such implementations will fall within the scope of protection of the present invention.

Claims

1. A wearable device, characterized in that: include: Flexible wearable component (10); A first device body (20) and a second device body (30), wherein the first device body (20) and the second device body (30) are respectively connected to the flexible wearable component (10); The first device body (20) is formed with a first receiving portion (21) and a first matching portion (22) staggered with the first receiving portion (21); the second device body (30) is formed with a second receiving portion (31) and a second matching portion (32) staggered with the second receiving portion (31); the first receiving portion (21) is provided with a first receiving groove (211), and / or the second receiving portion (31) is provided with a second receiving groove (311); The first device body (20) and the second device body (30) can be detachably connected through the first receiving portion (21) and the second receiving portion (31) to cover the first receiving groove (211) and the second receiving groove (311); and the first device body (20) and the second device body (30) can be detachably connected through the first matching portion (22) and the second matching portion (32) to expose the first receiving groove (211) and the second receiving groove (311) to the outside of the first device body (20) and the second device body (30), respectively.

2. The wearable device according to claim 1, wherein: In a state where the first device body (20) is provided with the first receiving slot (211), the wearable device further comprises: A first earphone (40), the first earphone (40) is provided with a first wearing portion (41) and a first gripping portion (42), the first earphone (40) is detachably arranged in the first receiving groove (211) through the first wearing portion (41); the surface of the first gripping portion (42) protrudes from the notch of the first receiving groove (211), or the surface of the first gripping portion (42) is engaged with the surface of the first receiving portion (21); In a state where the second device body (30) is provided with the second receiving slot (311), the wearable device further comprises: The second earphone (50) is provided with a second wearing portion (51) and a second gripping portion (52), and the second earphone (50) is detachably arranged in the second receiving groove (311) through the second wearing portion (51); the surface of the second gripping portion (52) protrudes from the notch of the second receiving groove (311), or the surface of the second gripping portion (52) is engaged with the surface of the second receiving portion (31).

3. The wearable device according to claim 1, wherein: A first positioning structure is provided between the first receiving portion (21) and the second receiving portion (31), the first positioning structure being used to constrain the relative positions of the first receiving portion (21) and the second receiving portion (31) in an assembled state; and / or A second positioning structure is provided between the first matching portion (22) and the second matching portion (32), and the second positioning structure is used to constrain the relative positions of the first matching portion (22) and the second matching portion (32) in an assembled state.

4. The wearable device according to claim 3, wherein: The first positioning structure comprises a first positioning protrusion (212) and a first positioning recess (312) that are adapted to each other; the first positioning protrusion (212) and the first positioning recess (312) are respectively arranged on the first receiving portion (21) and the second receiving portion (31); The second positioning structure comprises a second positioning protrusion (221) and a second positioning recess (321) that are structurally adapted to each other. The second positioning protrusion (221) and the second positioning recess (321) are respectively arranged on the first matching portion (22) and the second matching portion (32).

5. The wearable device according to claim 1, wherein: The first receiving portion (21) and the first matching portion (22) are respectively formed on opposite sides of the first device body (20) along its width direction, and one end of the flexible wearable component (10) is connected to one end of the first device body (20) along its length direction; The second receiving portion (31) and the second matching portion (32) are respectively formed on opposite sides of the second device body (30) along its width direction, and the other end of the flexible wearable component (10) is connected to one end of the second device body (30) along its length direction.

6. The wearable device according to claim 5, wherein: The first device body (20) further includes a first wearing portion (23) and a first operating portion (24) arranged along the thickness direction thereof, and the second device body (30) further includes a second wearing portion (33) and a second operating portion (34) arranged along the thickness direction thereof; When the first device body (20) and the second device body (30) are in a mating state, the surfaces of the first wearing portion (23) and the second wearing portion (33) are connected, and the surfaces of the first operating portion (24) and the second operating portion (34) are connected.

7. The wearable device according to claim 6, wherein: The first wearing portion (23), the first operating portion (24), the second wearing portion (33) and the second operating portion (34) are all arranged to be planes.

8. The wearable device according to any one of claims 1, 5-7, characterized in that: The surfaces of the first receiving portion (21) and the second receiving portion (31) are both set to be planes, and the surfaces of the first matching portion (22) and the second matching portion (32) are both set to be planes.

9. The wearable device according to any one of claims 1 to 7, wherein: The first device body (20) is provided with a first magnetic member (25) close to the first receiving portion (21) and the first matching portion (22), and the second device body (30) is provided with a second magnetic member (35) close to the second receiving portion (31) and the second matching portion (32); The first receiving portion (21) and the second receiving portion (31) can be magnetically coupled via the first magnetic member (25) and the second magnetic member (35), and the first coupling portion (22) and the second coupling portion (32) can be magnetically coupled via the first magnetic member (25) and the second magnetic member (35).

10. A bracelet, characterized in that: A wearable device as described in any one of claims 1 to 9 is used.