Wearable device

By designing a sliding connection for the sound output component and magnetic positioning in the wearable device, convenient switching between speaker and headphone functions and sound leakage prevention are achieved, solving the problem of limited functionality in wearable devices and improving the user experience.

CN116437275BActive Publication Date: 2026-04-21VIVO MOBILE COMM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
VIVO MOBILE COMM CO LTD
Filing Date
2023-04-17
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing wearable devices have limited functionality and cannot meet users' needs in different scenarios, especially when switching between speaker and headphone functions.

Method used

Design a wearable device that uses a sliding connection for the sound output component. By blocking the first sound outlet and opening the second sound outlet in the first position, the device can achieve the external speaker function. When slid to the second position, both the first and second sound outlets can be opened simultaneously to achieve the headphone function. By combining a motion mechanical structure and magnetic positioning, the device can achieve function switching and sound leakage prevention.

Benefits of technology

It enables wearable devices to easily switch between speaker and headphone functions, meeting the needs of different scenarios, improving sound leakage prevention, and simplifying user operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wearable device, comprising a device body, an audio assembly and a sound outlet assembly. The device body is provided with a mounting cavity, a first sound outlet and a second sound outlet, the first sound outlet and the second sound outlet being in communication with the mounting cavity; the audio assembly is connected with the device body and located in the mounting cavity; the sound outlet assembly is slidingly connected with the device body; wherein, in the case that the sound outlet assembly is located at a first position, the sound outlet assembly blocks the first sound outlet, the second sound outlet is in an open state, and the wearable device emits sound through the second sound outlet; in the case that the sound outlet assembly is located at a second position, the sound outlet assembly avoids the first sound outlet, the first sound outlet and the second sound outlet are both in an open state, and the wearable device emits sound through the first sound outlet and the second sound outlet.
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Description

Technical Field

[0001] This application belongs to the field of smart wearable device technology, specifically relating to a wearable device. Background Technology

[0002] As living standards improve, the use of wearable devices is becoming increasingly widespread.

[0003] Current wearable devices typically integrate headphones and VR glasses. Wearable devices can only function as headphones, which is relatively limited. When users need to use the device externally, wearable devices cannot meet their needs, causing inconvenience for users. Summary of the Invention

[0004] This application aims to provide a wearable device that at least addresses the problem of limited functionality in wearable devices.

[0005] To solve the above-mentioned technical problems, this application is implemented as follows:

[0006] This application provides an embodiment of a wearable device, including:

[0007] The main body of the equipment is provided with an installation cavity, a first sound outlet and a second sound outlet, and the first sound outlet and the second sound outlet are connected to the installation cavity.

[0008] The audio component, connected to the main body of the device, is located inside the mounting cavity;

[0009] The sound output component is slidably connected to the main body of the device;

[0010] When the sound-emitting component is in the first position, the sound-emitting component blocks the first sound outlet, and the second sound outlet is in the open state, and the wearable device emits sound through the second sound outlet; when the sound-emitting component is in the second position, the sound-emitting component avoids the first sound outlet, and both the first and second sound outlets are in the open state, and the wearable device emits sound through the first and second sound outlets.

[0011] In the embodiments of this application, the sound-emitting component is slidably connected to the device body. The sound-emitting component can move between a first position and a second position. When the sound-emitting component slides to the first position, it blocks the first sound outlet, thereby closing the first sound outlet. The sound waves generated by the audio component can only be exported through the second sound outlet sequentially. When the sound-emitting component slides to the second position, it moves away from the first sound outlet. At this time, the sound-emitting component avoids the first sound outlet, thereby opening the first sound outlet. The sound waves generated by the audio component can be exported through both the first and second sound outlets.

[0012] Specifically, when the sound output component is in the first position, the wearable device functions as an external speaker because only the second sound outlet is open. When the sound output component is in the second position, the wearable device functions as a headphone because both the first and second sound outlets are open. By using only a single audio component and combining it with a motion mechanism, the external speaker and headphone functions are simply and efficiently integrated into the wearable device. Users can conveniently switch between the external speaker and headphone functions to meet their needs in different scenarios.

[0013] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0014] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0015] Figure 1 This is one of the structural schematic diagrams of the sound output component located in the second position according to an embodiment of this application;

[0016] Figure 2 This is a second schematic diagram of the structure of the sound output component located in the second position according to an embodiment of this application;

[0017] Figure 3 This is a schematic diagram of the structure of the sound output component located in the first position according to an embodiment of this application;

[0018] Figure 4 This is an exploded view of a wearable device according to an embodiment of this application;

[0019] Figure 5 This is one of the structural schematic diagrams of a wearable device according to an embodiment of this application without the sound output component installed;

[0020] Figure 6 This is a second schematic diagram of a wearable device without a sound output component according to an embodiment of this application;

[0021] Figure 7 This is a partial schematic diagram of a wearable device according to an embodiment of this application;

[0022] Figure 8 This is a schematic diagram of the structure of the first sealing element, the second sealing element, the sound output assembly, the fourth magnetic element, and the second magnetic element according to an embodiment of this application;

[0023] Figure 9 This is a schematic diagram of the structure of the sound output component according to an embodiment of this application.

[0024] Figure label:

[0025] 100 Main body of the device, 111 First sound outlet, 112 Second sound outlet, 113 Mounting base, 114 Partition, 115 First groove, 116 Second groove, 117 Cover plate, 118 Groove, 200 Audio component, 300 Sound output component, 310 Third sound outlet, 400 First positioning component, 410 First magnetic component, 420 Second magnetic component, 430 First buffer component, 500 Second positioning component, 510 Third magnetic component, 520 Fourth magnetic component, 530 Second buffer component, 610 First sealing component, 620 Second sealing component, 710 First sliding rail, 720 Second sliding rail. Detailed Implementation

[0026] The embodiments of this application will now be described in detail. Examples of these embodiments are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.

[0027] The terms "first" and "second" in the specification and claims of this application may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise stated, "multiple" means two or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0028] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0029] The following is combined Figures 1-9 This application describes a wearable device according to embodiments thereof.

[0030] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, a wearable device according to some embodiments of this application includes: a device body 100, an audio component 200, and a sound output component 300. The device body 100 has a mounting cavity, a first sound outlet 111, and a second sound outlet 112, which are connected to the mounting cavity. The audio component 200 is connected to the device body 100 and is located within the mounting cavity. The sound output component 300 is slidably connected to the device body 100. When the sound-emitting component 300 is in the first position, it blocks the first sound outlet 111, and the second sound outlet 112 is open. The wearable device emits sound through the second sound outlet 112. When the sound-emitting component 300 is in the second position, it avoids the first sound outlet 111, and both the first sound outlet 111 and the second sound outlet 112 are open. The wearable device emits sound through the first sound outlet 111 and the second sound outlet 112.

[0031] The audio component 200 is disposed on the device body 100. For example, the audio component 200 can be assembled on the device body 100 by dispensing adhesive.

[0032] The device body 100 is provided with a first sound outlet 111 and a second sound outlet 112, and the sound waves generated by the audio component 200 can be exported through the first sound outlet 111 and / or the second sound outlet 112.

[0033] The sound output component 300 is slidably connected to the device body 100. The sound output component 300 can move between a first position and a second position. When the sound output component 300 slides to the first position, it blocks the first sound outlet 111, thus closing the first sound outlet 111. The sound waves generated by the audio component 200 can only be exported sequentially through the second sound outlet 112. When the sound output component 300 slides to the second position, it moves away from the first sound outlet 111. At this time, the sound output component 300 avoids the first sound outlet 111, thus opening the first sound outlet 111. The sound waves generated by the audio component 200 can be exported through both the first sound outlet 111 and the second sound outlet 112.

[0034] Optionally, when the sound output component 300 is in the first position, since only the second sound outlet 112 is open, the wearable device enables external speaker functionality. When the sound output component 300 is in the second position, since both the first and second sound outlets 111 and 112 are open simultaneously, the wearable device enables headphone functionality. The sound waves emitted from the second sound outlet 112 are directly directed at the ear, enabling headphone listening mode. Simultaneously, the reverse sound waves emitted from the first sound outlet 111 can be transmitted to the outside, eliminating the sound waves diffused by the second sound outlet 112. At this time, the user can hear the sound near their ear, but it is difficult to hear the sound from a position far away from the wearable device, thus achieving the function of preventing sound leakage. By using only a single audio component 200, combined with a motion mechanical structure, the external speaker function and headphone audio playback, headphone listening, and sound leakage prevention functions are simply and efficiently integrated into the wearable device. Users can conveniently switch between the external speaker function and headphone listening function to meet the usage needs of consumers in different scenarios.

[0035] For example, when the sound waves in the mounting cavity are transmitted through the first sound outlet 111 and the second sound outlet 112 respectively, the sound waves transmitted through the first sound outlet 111 and the second sound outlet 112 are opposite sound waves. Therefore, the opposite sound wave emitted by the first sound outlet 111 can eliminate the sound wave diffused by the second sound outlet 112. At this time, the user can hear the sound near the ear, but it is difficult to hear the sound in a position far away from the wearable device. In addition to realizing the headphone function, it can also realize the function of preventing sound leakage.

[0036] In one possible application, the audio component 200 includes a speaker and / or a buzzer.

[0037] In this embodiment, the wearable device can be a smart wearable device, such as a VR wearable device or an AR wearable device.

[0038] In one possible application, the audio component 200 is provided with a third sound outlet 310, which is connected to the second sound outlet 112.

[0039] Combination Figure 2 and Figure 3 As shown, in one possible embodiment, the device body 100 includes a first side and a second side disposed opposite to each other, the first side being used to contact the user's wearing part, and a first sound outlet 111 being disposed on the second side.

[0040] When the user is using the wearable device, the first side of the device body 100 faces the user's head, allowing it to fit snugly against the head. The second side of the device body 100 is located away from the user's head, and the first sound outlet 111 is positioned on this second side. When the user wears the device, their head does not obstruct the first sound outlet 111, thus not affecting the sound wave output. With the sound output component 300 in the second position, the first and second sound outlets 111 and 112 can smoothly output sound waves, allowing the sound waves transmitted from the first and second sound outlets 111 and 112 to cancel each other out, improving the wearable device's sound leakage prevention effect.

[0041] It should be noted that the sound waves that cancel each other out by the first sound outlet 111 and the second sound outlet 112 are sound waves that are far away from the user's head, while sound waves that are close to the user's ear can be heard by the user's ear.

[0042] Combination Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, in one possible embodiment, the device body 100 includes: a mounting base 113, a partition 114, and a cover plate 117. The mounting base 113 has a groove 118. The partition 114 is connected to the mounting base 113 and divides the groove 118 into a first groove 115 and a second groove 116 that are in communication. The cover plate 117 is connected to the mounting base 113 and covers the first groove 115 and the second groove 116. The audio component 200 is located in the first groove 115 or the second groove 116.

[0043] A groove is machined on the mounting base 113, and a partition 114 is installed in the groove 118. The partition 114 divides the groove 118 into two parts, namely the first groove 115 and the second groove 116. A connecting hole is provided on the partition 114, and the first groove 115 and the second groove 116 are connected through the connecting hole.

[0044] In one possible application, the partition 114 and the mounting base 113 can be integrally formed, or the partition 114 can be fixed to the mounting base 113 by dispensing or welding.

[0045] When the cover plate 117 is placed on the first groove 115 and the second groove 116, a first cavity and a second cavity are formed between the cover plate 117, the mounting base 113, and the partition plate 114. The cover plate 117 can be fixed to the mounting base 113 by applying adhesive, and the cover plate 117 and the mounting base 113 are sealed together, so that sound waves can only be emitted through the first sound outlet 111 and the second sound outlet 112.

[0046] The main body 100 is designed as a split structure to facilitate the installation of the audio component 200. During installation, the audio component 200 is first fixed to the first slot 115 or the second slot 116 by applying adhesive, and then the cover plate 117 is fixed to the mounting base 113.

[0047] The device body 100 has a first cavity and a second cavity, which are connected to each other. The audio component 200 is installed in the first cavity or the second cavity, and the sound waves in the first cavity and the second cavity form sound waves that are opposite to each other.

[0048] In one possible embodiment, the wearable device further includes a first positioning component 400 and / or a second positioning component 500. A portion of the first positioning component 400 is disposed on the device body 100, and another portion of the first positioning component 400 is located on the sound output component 300. The first positioning component 400 is used to position the sound output component 300 in a first position. A portion of the second positioning component 500 is disposed on the device body 100, and another portion of the second positioning component 500 is disposed on the sound output component 300. The second positioning component 500 is used to position the sound output component 300 in a second position.

[0049] The sound output component 300 can slide relative to the device body 100 between the first position and the second position. Figure 1 The middle arrow indicates the direction of movement of the sound output component 300. When the sound output component 300 slides to the first position, the first positioning component 400 can fix the sound output component 300 in the first position. Without external force, the sound output component 300 is not easy to leave the first position, so that the sound output component 300 can stably close the first sound outlet 111, ensuring that the wearable device can stably be in the external playback mode. Users do not need to frequently operate the sound output component 300, improving the user's convenience in using the wearable device.

[0050] When the sound output component 300 slides to the second position, the second positioning component 500 can fix the sound output component 300 in the second position. Without external force, the sound output component 300 is not easy to leave the second position, so that the sound output component 300 can stably open the first sound outlet 111, ensuring that the wearable device can stably be in headphone listening mode, which can also improve the user's convenience of using the wearable device.

[0051] In one possible application, the wearable device may be equipped with only the first positioning component or the second positioning component, or it may be equipped with both the first positioning component and the second positioning component.

[0052] Combination Figure 4 , Figure 6 and Figure 9As shown, in one possible embodiment, the first positioning component includes a first magnetic element 410 and a second magnetic element 420. The first magnetic element 410 is connected to the device body 100, and the second magnetic element 420 is connected to the sound output component 300. When the sound output component 300 is in the first position, the first magnetic element 410 and the second magnetic element 420 attract each other.

[0053] The sound output component 300 can slide relative to the device body 100. When the sound output component 300 moves, its first side faces or moves away from the device body 100. A first magnetic element 410 is installed on the device body 100, and a second magnetic element 420 is installed on the first side of the sound output component 300. When the sound output component 300 moves to the first position, the first magnetic element 410 faces the second magnetic element 420, and the first and second magnetic elements 410 attract each other magnetically, thereby fixing the sound output component 300 in the first position. At this time, the sound output component 300 stably closes the first sound outlet 111. When it is necessary to move the sound output component 300, the user pushes or pulls it. The user needs to overcome the attraction between the first and second magnetic elements 410 and 420. The user needs to apply a certain force to move the sound output component 300, which also ensures that the sound output component 300 is stably fixed in the first position.

[0054] The first magnetic component 410 can be fixed to the device body 100 by dispensing glue, and the second magnetic component 420 can be fixed to the sound output component 300 by dispensing glue. By fixing the sound output component 300 in the first position by the first magnetic component 410 and the second magnetic component 420, the structure of the wearable device can be simplified, and there is no need to damage the structure of the device body 100 and the sound output component 300.

[0055] Of course, in other embodiments, the sound output component 300 can also be fixed in the first position in other ways, for example, by using a snap-fit ​​structure to fix the sound output component 300 in the first position.

[0056] Combination Figure 4 and Figure 6 As shown, in one possible embodiment, the first positioning component further includes a first buffer 430, which is connected to the first magnetic component 410. When the sound output component 300 is in the first position, the first buffer 430 is located between the first magnetic component 410 and the second magnetic component 420.

[0057] A first buffer 430 is installed on the first magnetic component 410. When the sound output component 300 moves to the first position, the second magnetic component 420 comes into contact with the first buffer 430, that is, the first buffer 430 is located between the first magnetic component 410 and the second magnetic component 420.

[0058] When the sound output component 300 approaches the first position, the attraction between the first magnetic element 410 and the second magnetic element 420 can accelerate the movement speed of the sound output component 300, enabling the sound output component 300 to move quickly to the first position. When the first magnetic element 410 and the second magnetic element 420 collide, it is easy to cause damage to the first magnetic element 410 and the second magnetic element 420. In addition, the vibration generated by the collision of the first magnetic element 410 and the second magnetic element 420 can easily damage other components or cause components on the wearable device to fall off.

[0059] By installing a first buffer 430 on the first magnetic component 410, when the sound output component 300 quickly approaches the first position, the second magnetic component 420 comes into contact with the first buffer 430. The first buffer 430 is soft, so it can buffer the second magnetic component 420, preventing the first magnetic component 410 and the second magnetic component 420 from colliding. This reduces or eliminates the vibration generated when the sound output component 300 moves to the first position, improving the structural stability of the wearable device.

[0060] In one possible application, to improve the cooperation effect of the first magnetic element 410 and the second magnetic element 420, the first magnetic element 410 and the second magnetic element 420 are designed to have the same shape. For example, in this embodiment, the first magnetic element 410 is U-shaped, and the U-shaped first magnetic element 410 is inserted into both sides of the device body 100. Therefore, the second magnetic element 420 is also set to U-shape. In order to effectively buffer the second magnetic element 420, in this embodiment, the first buffer element 430 is also set to U-shape.

[0061] For example, the first buffer 430 can be fixed to the first magnetic component 410 by dispensing adhesive.

[0062] Combination Figure 4 , Figure 6 , Figure 8 and Figure 9 As shown, in one possible embodiment, the second positioning component includes a third magnetic element 510 and a fourth magnetic element 520. The third magnetic element 510 is connected to the device body 100, and the fourth magnetic element 520 is connected to the sound output component 300. When the sound output component 300 is in the second position, the third magnetic element 510 and the fourth magnetic element 520 attract each other.

[0063] When the sound output component 300 moves to the second position, the third magnetic element 510 and the fourth magnetic element 520 attract each other, thereby fixing the sound output component 300 in the second position. At this time, the sound output component 300 stably opens the first sound outlet 111. When it is necessary to move the sound output component 300, the user pushes or pulls the sound output component 300. The user needs to overcome the attraction between the third magnetic element 510 and the fourth magnetic element 520. The user needs to apply a certain force to move the sound output component 300, which also ensures that the sound output component 300 is stably fixed in the second position.

[0064] The third magnetic component 510 can be fixed to the device body 100 by dispensing glue, and the fourth magnetic component 520 can be fixed to the sound output component 300 by dispensing glue. By fixing the sound output component 300 in the second position with the third magnetic component 510 and the fourth magnetic component 520, the structure of the wearable device can be simplified, and there is no need to damage the structure of the device body 100 and the sound output component 300.

[0065] Of course, in other embodiments, the sound output component 300 can also be fixed to the second position in other ways, for example, by using a snap-fit ​​structure to fix the sound output component 300 to the second position.

[0066] In one possible embodiment, the second positioning component further includes a second buffer 530, which is connected to the third magnetic component 510. When the sound output component 300 is in the second position, the second buffer 530 is located between the third magnetic component 510 and the fourth magnetic component 520.

[0067] A second buffer 530 is installed on the third magnetic component 510. When the sound output assembly 300 moves to the second position, the fourth magnetic component 520 comes into contact with the second buffer 530. That is, the second buffer 530 is located between the third magnetic component 510 and the fourth magnetic component 520.

[0068] When the sound output component 300 approaches the second position, the attraction between the third magnetic element 510 and the fourth magnetic element 520 can accelerate the movement speed of the sound output component 300, enabling the sound output component 300 to move quickly to the second position. When the third magnetic element 510 and the fourth magnetic element 520 collide, it is easy to cause damage to the third magnetic element 510 and the fourth magnetic element 520. In addition, the vibration generated by the collision between the third magnetic element 510 and the fourth magnetic element can easily damage other components or cause components on the wearable device to fall off.

[0069] By installing a second buffer 530 on the third magnetic component 510, when the sound output component 300 quickly approaches the second position, the fourth magnetic component 520 comes into contact with the second buffer 530. The second buffer 530 is soft, so it can cushion the fourth magnetic component 520, preventing the third magnetic component 510 and the fourth magnetic component 520 from colliding. This reduces or eliminates the vibration generated when the sound output component 300 moves to the second position, improving the structural stability of the wearable device.

[0070] In one possible application, the first magnetic element 410, the second magnetic element 420, the third magnetic element 510, and the fourth magnetic element 520 can be magnets, and the first buffer element 430 and the second buffer element 530 can be buffer silicone.

[0071] In one possible embodiment, the sound output assembly 300 is provided with a sliding cavity, a portion of the device body 100 is located in the sliding cavity, a fourth magnetic element 520 is located in the sliding cavity, and a third magnetic element 510 is located in the extension direction of the moving path of the fourth magnetic element 520, for limiting the separation of the sound output assembly 300 from the device body 100.

[0072] The sound output component 300 has a cavity structure. A sliding cavity is machined and formed inside the sound output component 300. As the sound output component 300 moves relative to the main body 100, a part of the main body 100 extends into or out of the sliding cavity.

[0073] The fourth magnetic component 520 is installed in the sliding cavity. When the sound output component 300 moves to the second position, the fourth magnetic component 520 moves to a position close to the third magnetic component 510. The third magnetic component 510 is located in the extension direction of the moving path of the fourth magnetic component 520. Therefore, the third magnetic component 510 can limit the fourth magnetic component 520, so that the sound output component 300 can be limited to the second position, preventing the sound output component 300 from separating from the device body 100 and improving the structural fit stability of the wearable device.

[0074] Combination Figure 4 , Figure 8 and Figure 9 As shown, in one possible embodiment, the wearable device further includes: a first seal 610, which is connected to a second magnetic element 420, and when the sound output component 300 is in the first position, the first seal 610 is in contact with the first buffer element 430.

[0075] A first sealing element 610 is mounted on the second magnetic element 420. When the sound output assembly 300 moves to the first position, the first sealing element 610 comes into contact with the first buffer element 430. The first sealing element 610 is relatively soft. When the first sealing element 610 contacts the first buffer element 430, the first sealing element 610 and the first buffer element 430 seal the space between the sound output assembly 300 and the device body 100. If only the first magnetic element 410 and the second magnetic element 420 are in contact, there may be a small gap between them, leading to sound wave leakage. The sealing by the first sealing element 610 and the first buffer element 430 improves the stability of sound wave transmission through the first sound outlet 111 and the third sound outlet 310, thereby improving the sound effect of the wearable device.

[0076] In one possible embodiment, the wearable device further includes a second seal 620, which is connected to the sound output assembly 300. When the sound output assembly 300 is in the first position, the second seal 620 is located between the sound output assembly 300 and the device body 100.

[0077] In this embodiment, the first side and top surface of the sound output component 300 have openings. Therefore, it is also necessary to seal the sound output component 300 and the device body 100 with the second sealing member 620. When the sound output component 300 is in the first position, it ensures that the sound waves are not easily leaked through the gap between the sound output component 300 and the device body 100.

[0078] In one possible application, the first seal 610 and the second seal 620 are an integral structure, and the overall structure formed by the first seal 610 and the second seal 620 is L-shaped. The first seal 610 and the second seal 620 can be rubber gaskets.

[0079] Combination Figure 6 and Figure 8 As shown, in one possible embodiment, the wearable device further includes: a first sliding rail 710 and a second sliding rail 720, the first sliding rail 710 being connected to the sound output component 300, the second sliding rail 720 being connected to the device body 100, and the first sliding rail 710 being able to slide along the second sliding rail 720.

[0080] A first sliding rail 710 is provided on the sound output component 300, and a second sliding rail 720 is provided on the device body 100. The first sliding rail 710 can slide relative to the second sliding rail 720, so that the sound output component 300 can slide stably relative to the device body 100.

[0081] In one possible application, both the first sliding rail 710 and the second sliding rail 720 are L-shaped grooves, and the opening directions of the first sliding rail 710 and the second sliding rail 720 are opposite. For example, the first sliding rail 710 opens downward and the second sliding rail 720 opens upward, so that the first sliding rail 710 can be inserted into the second sliding rail 720.

[0082] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0083] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.

Claims

1. A wearable device, characterized in that, include: The device body is provided with a mounting cavity, a first sound outlet and a second sound outlet, and the first sound outlet and the second sound outlet are connected to the mounting cavity; An audio component, connected to the main body of the device, is located within the mounting cavity; The sound output component is slidably connected to the main body of the device; Wherein, when the sound-emitting component is in the first position, the sound-emitting component blocks the first sound outlet, and the second sound outlet is in an open state, and the wearable device emits sound through the second sound outlet; when the sound-emitting component is in the second position, the sound-emitting component avoids the first sound outlet, and both the first and second sound outlets are in an open state, and the wearable device emits sound through the first and second sound outlets. A first positioning component, a portion of which is disposed on the device body and another portion of which is located on the sound output component, the first positioning component being used to position the sound output component at the first position; and / or The second positioning component has a portion disposed on the device body and another portion disposed on the sound output component. The second positioning component is used to position the sound output component at the second position. The first positioning component includes a first magnetic element, a second magnetic element, and a first buffer element; The first magnetic component is connected to the main body of the device; The second magnetic element is connected to the sound output component. When the sound output component is in the first position, the first magnetic element and the second magnetic element attract each other. The first buffer is connected to the first magnetic component. When the sound output component is in the first position, the first buffer is located between the first magnetic component and the second magnetic component. The wearable device further includes a first seal, which is connected to the second magnetic component. When the sound output component is in the first position, the first seal is in contact with the first buffer component.

2. The wearable device according to claim 1, characterized in that, The main body of the device includes: The first side and the second side are arranged opposite to each other, the first side is used to contact the user's wearing part, and the first sound outlet is located on the second side.

3. The wearable device according to claim 1, characterized in that, The main body of the device includes: The mounting base has a groove. A partition plate, connected to the mounting base, divides the groove into a first groove and a second groove that are connected to each other; A cover plate, connected to the mounting base, covers the first and second slots, and the audio component is located in the first or second slot.

4. The wearable device according to any one of claims 1 to 3, characterized in that, The second positioning component includes: The third magnetic component is connected to the main body of the device; The fourth magnetic component is connected to the sound output component. When the sound output component is in the second position, the third magnetic component and the fourth magnetic component are attracted to each other.

5. The wearable device according to claim 4, characterized in that, The second positioning component also includes: The second buffer is connected to the third magnetic component. When the sound output component is in the second position, the second buffer is located between the third magnetic component and the fourth magnetic component.

6. The wearable device according to any one of claims 1 to 3, characterized in that, The wearable device also includes: The second seal is connected to the sound output assembly. When the sound output assembly is in the first position, the second seal is located between the sound output assembly and the device body.

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