earphone
By incorporating elastic elements in the headphone compartment to create storage space, the problem of easily damaged headphones is solved, achieving better protection and simplified operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG XIAOTIANCAI TECH CO LTD
- Filing Date
- 2025-07-15
- Publication Date
- 2026-07-24
AI Technical Summary
The existing headphone case and storage slot do not provide sufficient protection for the headphone body, making it easy to be damaged by bumps and knocks.
An elastic element is installed on the earphone's housing to form a storage space. The elastic element and the wall of the storage slot together form a protective structure for the earphone body and absorb impact when bumped, simplifying the operation of taking it out and putting it in.
It improves the protection of the earphone body, preventing damage, simplifies the handling, and enhances wearing comfort and visual appeal.
Smart Images

Figure CN224555753U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of headphone technology, specifically to a type of headphone. Background Technology
[0002] Headphones are an important electronic product in daily life, used for playing audio or making voice calls.
[0003] Headphones typically consist of a charging case and the earphones themselves, with the charging case having a storage slot for holding the earphones. When using the headphones, users can remove the earphones from the storage slot and wear them; after use, users can store the earphones back into the storage slot to protect them.
[0004] However, the earphone case and storage slot do not provide sufficient protection for the earphones themselves. If the earphone case is bumped or knocked, the earphones inside the storage slot are easily damaged. Utility Model Content
[0005] This application provides an earphone that can improve the protection of the earphone body.
[0006] This application provides an earphone, including: a housing, an elastic member, and an earphone body. The housing has a storage slot, which is disposed on at least a portion of the circumferential sidewall of the housing and extends circumferentially along the housing. The elastic member is connected to the housing, and the elastic member and the slot wall of the storage slot together form a storage space. At least a portion of the earphone body is located within the storage space.
[0007] With the above design, the elastic element protects the earphones when they are stored in the storage space. For example, when the earphone case is bumped, the elastic element can absorb some or even all of the impact force and cushion the impact to prevent damage to the earphones. Furthermore, the elastic element can deform elastically to facilitate removing the earphones from or storing them in the storage space, simplifying the user's operation of taking and putting away the earphones.
[0008] Optionally, the elastic element includes a first elastic element and a second elastic element. The first elastic element is located on one side of the machine compartment, and the second elastic element is located on the other side of the machine compartment. The storage slot is located between the first elastic element and the second elastic element. The first elastic element, the second elastic element, and the wall of the storage slot together form a storage space. A storage opening communicating with the storage space is formed between the first elastic element and the second elastic element.
[0009] With the above-described design, the first and second elastic elements can simultaneously protect the earphone body from both sides of the housing, helping to prevent damage to the earphone body. Furthermore, the earphone body can be easily inserted into the storage space through the storage port, or easily removed from the storage space through the storage port, simplifying the user's operation of taking and putting away the earphone body.
[0010] Optionally, the distance between the first elastic element and the second elastic element gradually decreases along the direction from the bottom of the storage groove to the storage opening.
[0011] With the above-described design, the first and second elastic elements can cover the earphone body, improving its protection. Furthermore, the small size of the storage opening allows both the first and second elastic elements to elastically engage with the earphone body, preventing it from easily falling out of the storage space due to bumps or other accidental factors.
[0012] Optionally, the edges of the first elastic member and the second elastic member extend beyond the opening of the storage groove, so as to form a storage space together with the groove wall of the storage groove.
[0013] With the above configuration, when the earphone body is stored in the storage space, at least part of the earphone body is located between the first elastic member and the second elastic member, which helps to prevent the earphone body from being damaged.
[0014] Optionally, the nacelle is a rotating body, with a storage slot surrounding the nacelle. The first elastic element and the second elastic element are both disc-shaped, and the first elastic element and the second elastic element are spaced apart along the rotation axis of the nacelle.
[0015] The above-mentioned design allows the shapes of the first and second elastic elements to be adapted to the shapes of the housing and the headphone body, improving the visual effect of the headphones and enhancing the protective effect of the first and second elastic elements on the headphone body.
[0016] Optionally, the headphone body includes a sound-emitting part and a clamping part connected to the sound-emitting part. The sound-emitting part has a sound outlet. The sound-emitting part and at least part of the clamping part are located in a storage space. A portion of the structure of the sound-emitting part is located in the storage groove, and another portion of the structure of the sound-emitting part is located between a first elastic member and a second elastic member.
[0017] With the above-mentioned design, the housing and elastic components provide good protection for the sound-generating part, which helps to prevent damage to the sound-generating part.
[0018] Optionally, the clamping part includes a first clamping part and a second clamping part. The sound-emitting part is disposed at the first end of the first clamping part. The second end of the first clamping part is rotatably connected to the first end of the second clamping part so that the earphone body can switch between a storage state and a wearing state. When the earphone body is in the storage space, the earphone body is in the storage state. The distance between the second end of the second clamping part and the sound-emitting part is a first distance. When the earphone body is in the wearing state, the distance between the second end of the second clamping part and the sound-emitting part is a second distance. The second distance is smaller than the first distance.
[0019] The above configuration helps the first and second clamping parts to hold the user's ear more stably.
[0020] Optionally, the earphone body is provided with a first adsorption magnet and a second adsorption magnet inside the housing. The earphone body includes a first storage magnet and a second storage magnet. The first storage magnet is located in the first clamping part, and the second storage magnet is located in the second clamping part. When the earphone body is located in the storage space, the first storage magnet and the first adsorption magnet are magnetically adsorbed, and the second storage magnet and the second adsorption magnet are magnetically adsorbed.
[0021] With the above design, the earphones can be securely stored in the storage space, making them less likely to fall out due to bumps or other accidental factors.
[0022] Optionally, the sound-emitting part is spherical. This design allows the sound-emitting part to easily adapt to the shape of the user's ear, improving the wearing comfort of the headphones and enhancing the user experience.
[0023] Optionally, both the first clamping part and the second clamping part are arc-shaped. With the above configuration, the shapes of the first clamping part and the second clamping part are easy to adapt to the shape of the user's ear, which helps to improve the comfort of wearing the earphone.
[0024] Optionally, the earphone body includes a first earphone body and a second earphone body, with at least a portion of the first earphone body and at least a portion of the second earphone body located within the storage space.
[0025] With the above settings, one of the first and second earphone bodies can be worn on the user's left ear, and the other can be worn on the user's right ear.
[0026] In this embodiment of the earphone, the earphone housing has a storage slot disposed on at least a portion of the circumferential side wall of the housing and extending circumferentially along the housing. An elastic member is connected to the housing, and the elastic member and the slot wall together form a storage space, within which at least a portion of the earphone body is located. When the earphone body is stored in the storage space, the elastic member can protect the earphone body. For example, when the housing is bumped, the elastic member can absorb part or even all of the impact force and provide cushioning to prevent damage to the earphone body. Furthermore, the elastic member can elastically deform to facilitate the removal of the earphone body from the storage space or to facilitate the storage of the earphone body in the storage space, simplifying the user's operation of taking out and putting away the earphone body. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of the earphone in one embodiment of this application;
[0028] Figure 2 for Figure 1 The diagram shows the structure of the earphone housing and elastic components.
[0029] Figure 3 for Figure 1 The diagram shows the structure of the headphone body. Figure 1 ;
[0030] Figure 4 for Figure 1 The diagram shows the structure of the headphone body. Figure 2 ;
[0031] Figure 5 for Figure 2 The sectional view of the nacelle and the elastic element along the BB direction is shown.
[0032] Figure 6 for Figure 1 The diagram shows the structure of the earphone housing and the earphone body.
[0033] Figure 7 for Figure 1 The image shows a cross-sectional view of the headphones along direction AA.
[0034] Figure 8 for Figure 1 An exploded view of the headphones shown.
[0035] Figure 9 This is a schematic diagram of the headphone structure in another embodiment of this application;
[0036] Figure 10 for Figure 1 A schematic diagram of the headphone's structure from another angle;
[0037] Figure 11 for Figure 10 The image shows a cross-sectional view of the headphones along the CC direction;
[0038] Figure 12 for Figure 10 The image shows a cross-sectional view of the headphones along the DD direction.
[0039] Explanation of icon numbers:
[0040] 10-Earphone; 100-Cavity; 110-Storage slot; 110a-First storage slot; 110b-Second storage slot; 111-First slot body; 112-Second slot body; 120-First adsorption magnet; 130-Second adsorption magnet; 200-Elastic element; 210-First elastic element; 220-Second elastic element; 300-Storage space; 310-Storage opening; 400-Earphone body; 400a-First earphone body; 400b-Second earphone body; 410-Sound output part; 411-Sound outlet; 420-Clamping part; 421-First clamping part; 422-Second clamping part; 430-First storage magnet; 440-Second storage magnet. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all possible embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0042] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design that is described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.
[0043] As used herein, terms such as “equal,” “parallel,” and “perpendicular” include the described situation and situations that are similar to the described situation, within an acceptable range of deviation, which is determined by those skilled in the art taking into account the measurement under discussion and the error associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, “equal” includes absolute equality and approximate equality, where an acceptable range of deviation for approximate equality may be, for example, a difference between the two equal items less than or equal to 5% of either one.
[0044] In the embodiments of this application, the directional indications used to explain the structure and movement of different components, such as up, down, left, right, front, and back, are relative. These indications are appropriate when the components are in the positions shown in the figures. However, if the description of the component positions changes, these directional indications will also change accordingly.
[0045] Please refer to Figure 1 and Figure 2This application provides an earphone 10, which includes a housing 100, an elastic element 200, and an earphone body 400. The housing 100 has a storage groove 110, which is disposed on at least a portion of the circumferential sidewall of the housing 100 and extends circumferentially along the housing 100. The elastic element 200 is connected to the housing 100, and the elastic element 200 and the groove wall of the storage groove 110 together form a storage space 300, in which at least a portion of the earphone body 400 is located. When the earphone body 400 is stored in the storage space 300, the elastic element 200 can protect the earphone body 400. For example, when the housing 100 is bumped, the elastic element 200 can absorb part or even all of the impact force and cushion it to prevent damage to the earphone body 400. Furthermore, the elastic element 200 can be elastically deformed to facilitate the removal of the earphone body 400 from the storage space 300, or to facilitate the storage of the earphone body 400 in the storage space 300, thus simplifying the user's operation of taking out and putting in the earphone body 400.
[0046] like Figure 1 and Figure 2 As shown in the figure, this application embodiment provides an earphone 10, which includes a housing 100, an elastic member 200, and an earphone body 400. The elastic member 200 is disposed in the housing 100 and together with the housing 100 forms a storage space 300. The earphone body 400 can be stored in the storage space 300, or the earphone body 400 can be removed from the storage space 300 and worn on the user's ear.
[0047] Please refer to Figure 3 The headphone body 400 includes a sound-emitting part 410 and a clamping part 420 connected to the sound-emitting part 410. The clamping part 420 can clamp onto the user's auricle to wear the headphone body 400 on the user's ear. At the same time, at least a portion of the sound-emitting part 410 can enter the user's ear canal and be used to play audio.
[0048] In one example, the sound-emitting part 410 can be spherical. This allows the sound-emitting part 410 to easily adapt to the shape of the user's ear, improving the wearing comfort of the earphone body 400 and enhancing the user experience. Of course, in other examples, the sound-emitting part 410 can also be at least one of other shapes such as approximately spherical, cylindrical, or approximately cylindrical.
[0049] The sound-emitting part 410 is provided with a sound outlet 411, and a speaker unit for playing audio is provided inside the sound-emitting part 410. The speaker unit can transmit audio to the outside of the sound-emitting part 410 through the sound outlet 411 to realize the audio playback function.
[0050] The present application does not limit the number of sound holes 411. For example, one or more sound holes 411 may be provided. The present application also does not limit the shape of the sound holes 411. For example, the sound holes 411 may be at least one of the following shapes: circular, elliptical, or rectangular.
[0051] This application does not limit the number of speaker units; for example, one or more speaker units may be provided. This application also does not limit the type of speaker units; for example, a speaker unit may include at least one of a moving coil unit, a balanced armature unit, or a piezoelectric unit.
[0052] In one embodiment, the earphone body 400 may include a controller and an antenna unit, with the antenna unit electrically connected to the controller. The earphone body 400 can establish a Bluetooth connection with external devices such as mobile phones, computers, or smartwatches through the antenna unit and controller to receive digital audio signals from these external devices. The speaker unit is electrically connected to the controller, which can convert the received digital audio signals from external devices into analog signals and transmit them to the speaker unit. The speaker unit can then convert the analog signals back into audio for output. Based on the above configuration, the earphone 10 in this embodiment is a Bluetooth earphone. For example, the earphone 10 in this embodiment can be a true wireless stereo (TWS) earphone.
[0053] The controller may include at least one of a Central Processing Unit (CPU), a System-on-Chip (SOC), an Application-Specific Integrated Circuit (ASIC), or a Digital Signal Processor (DSP). The antenna unit may include at least one of a Flexible Printed Circuit (FPS) antenna or a Laser-Direct-Structured (LDS) antenna.
[0054] In some implementations, a battery may also be provided within the headphone body 400, which can power electronic components such as the controller and speaker unit. For example, the battery may be located within the sound-generating section 410.
[0055] Please combine Figure 3 and Figure 4The clamping part 420 includes a first clamping part 421 and a second clamping part 422 rotatably connected to the first clamping part 421. For example, the sound-emitting part 410 may be provided at the first end of the first clamping part 421, the second end of the first clamping part 421 may be rotatably connected to the first end of the second clamping part 422, and the second end of the second clamping part 422 may be a free end.
[0056] The second clamping part 422 is used to rotate relative to the first clamping part 421 to clamp the user's ear between the first clamping part 421 and the second clamping part 422, thereby placing the earphone body 400 on the user's ear. At this time, as Figure 4 As shown, the earphone body 400 can be in a wearing state.
[0057] The second clamping part 422 is also used to rotate relative to the first clamping part 421 so that the shape of the earphone body 400 is adapted to the storage space 300 and can be stored in the storage space 300. At this time, as Figure 3 As shown, the earphone body 400 is in a stored state.
[0058] During the rotation of the second clamping part 422 relative to the first clamping part 421, the earphone body 400 switches between a storage state and a wearing state.
[0059] In one embodiment, when the earphone body 400 is in a stored state, the distance between the second end of the second clamping part 422 and the sound-emitting part 410 is a first distance; when the earphone body 400 is in a wearing state, the distance between the second end of the second clamping part 422 and the sound-emitting part 410 is a second distance, and the second distance is smaller than the first distance. This facilitates a more stable clamping of the first clamping part 421 and the second clamping part 422 onto the user's ear.
[0060] In one embodiment, both the first clamping portion 421 and the second clamping portion 422 can be arc-shaped. That is, both the first clamping portion 421 and the second clamping portion 422 can extend along the arc of a perfect circle. The radius of the circle containing the first clamping portion 421 can be equal to the radius of the circle containing the second clamping portion 422. Therefore, the shapes of the first clamping portion 421 and the second clamping portion 422 are easily adapted to the shape of the user's ear, which helps improve the wearing comfort of the earphone body 400.
[0061] In one example, when the earphone body 400 is in a retracted state, the first clamping part 421 and the second clamping part 422 together form a partial arc of a circle. That is, when the earphone body 400 is in a retracted state, the center of the circle containing the first clamping part 421 and the center of the circle containing the second clamping part 422 can coincide.
[0062] In the above embodiments, there may be one earphone body 400, which can be worn on the user's left or right ear. Alternatively, there may be two earphone bodies 400, for example, the earphone body 400 may include a first earphone body 400a and a second earphone body 400b, one of which can be worn on the user's left ear and the other on the user's right ear.
[0063] Please combine Figure 1 , Figure 2 and Figure 5 The housing 100 has a storage slot 110, and an elastic member 200 is disposed on the housing 100. At least a portion of the elastic member 200 and the wall of the storage slot 110 together form a storage space 300, allowing at least a portion of the earphone body 400 to be stored within the storage space 300. When the earphone body 400 is stored within the storage space 300, at least a portion of the earphone body 400 can be accommodated in the storage slot 110. The elastic member 200 can undergo elastic deformation. The storage slot 110 can be disposed on at least a portion of the circumferential side wall of the housing 100 and extends circumferentially along the housing 100.
[0064] With the above-described design, when the earphone body 400 is stored within the storage space 300, the elastic element 200 can protect the earphone body 400. For example, when the housing 100 is bumped, the elastic element 200 can absorb part or even all of the impact force and provide cushioning to prevent damage to the earphone body 400. Furthermore, the elastic element 200 can elastically deform to facilitate the removal of the earphone body 400 from the storage space 300, or to facilitate the storage of the earphone body 400 within the storage space 300, simplifying the user's operation of taking out and putting away the earphone body 400.
[0065] In one embodiment, the cabin 100 can be a body of revolution. Here, "body of revolution" can be understood as a three-dimensional object formed by rotating a planar shape around its axis of revolution. For example, the cabin 100 can be "flying saucer-shaped" or "disc-shaped." Alternatively, the cabin 100 can also be cylindrical or approximately cylindrical, or other shapes. The storage slot 110 can be arranged around the cabin 100, that is, the storage slot 110 can extend circumferentially along the axis of revolution of the cabin 100. Correspondingly, the storage space 300 can also be arranged around the cabin 100. Therefore, please refer to... Figure 5 and Figure 6 When the earphone body 400 is stored in the storage space 300, the shape of the earphone body 400 can be adapted to the shape of the housing 100, which helps to improve the visual effect of the earphone 10.
[0066] For some implementation methods, please refer to Figure 5 and Figure 7The storage slot 110 may include a first slot 111 and a second slot 112. When the headphone body 400 is stored in the storage space 300, at least part of the sound-emitting part 410 can be stored in the first slot 111 and at least part of the clamping part 420 can be stored in the second slot 112.
[0067] In the example where the headphone body 400 includes a first headphone body 400a and a second headphone body 400b, the storage slot 110 may include a first storage slot 110a and a second storage slot 110b. The first storage slot 110a can be used to store the first headphone body 400a, and the second storage slot 110b can be used to store the second headphone body 400b.
[0068] In one example, the first storage slot 110a and the second storage slot 110b can be arranged symmetrically on both sides of the cabin 100, and the axis of symmetry of the first storage slot 110a and the second storage slot 110b can be perpendicular to the axis of rotation of the cabin 100. Accordingly, in the circumferential direction of the cabin 100, the second slot body 112 of the first storage slot 110a, the first slot body 111 of the first storage slot 110a, the first slot body 111 of the second storage slot 110b, and the second slot body 112 of the second storage slot 110b are arranged sequentially.
[0069] In another example, the first storage slot 110a and the second storage slot 110b can also be centrally symmetrically arranged on both sides of the cabin 100, and the center of symmetry of the first storage slot 110a and the second storage slot 110b can coincide with the axis of rotation of the cabin 100.
[0070] In one embodiment, such as Figure 7 As shown, the earphone body 400 is provided with a first storage magnet 430 and a second storage magnet 440, and the housing 100 is provided with a first adsorption magnet 120 and a second adsorption magnet 130. When the earphone body 400 is located in the storage space 300, the first storage magnet 430 can be magnetically attracted to the first adsorption magnet 120, and the second storage magnet 440 can be magnetically attracted to the second adsorption magnet 130. Therefore, the earphone body 400 can be securely stored in the storage space 300, preventing it from falling out due to accidental bumps or other factors.
[0071] For example, both the first receiving magnet 430 and the second receiving magnet 440 can be disposed within the clamping portion 420. For instance, the first receiving magnet 430 can be disposed within the first clamping portion 421, and the second receiving magnet 440 can be disposed within the second clamping portion 422. Correspondingly, both the first adsorption magnet 120 and the second adsorption magnet 130 within the housing 100 can be disposed close to the bottom wall of the second groove 112 of the storage groove 110.
[0072] In some implementations, the material used to make the elastic element 200 may include at least one of the following materials capable of elastic deformation: thermoplastic polyurethane (TPU), thermoplastic elastomer (TPE), or silicone. The elastic element 200 can be manufactured by at least one of the following methods: injection molding or melt deposition modeling. In examples where the material used to make the elastic element 200 is thermoplastic polyurethane, the elastic element 200 has better elasticity, better cushioning effect against external forces, and better protection of the earphone body 400, thus helping to prevent damage to the earphone body 400. In some examples, the elastic element 200 can be installed on the housing 100 by at least one of the following methods: adhesive bonding or snap-fit.
[0073] In the above embodiments, there may be one elastic element 200. Alternatively, there may be two or more elastic elements 200.
[0074] In one embodiment, please combine Figure 1 and Figure 8 Two elastic elements 200 are provided, including a first elastic element 210 and a second elastic element 220 spaced apart from each other. For example, the first elastic element 210 and the second elastic element 220 can be spaced apart along the rotation axis of the housing 100. The first elastic element 210 can be located on one side of the housing 100, and the second elastic element 220 can be located on the other side of the housing 100 opposite to the first elastic element 210. Correspondingly, the housing 100 and the storage slot 110 can be located between the first elastic element 210 and the second elastic element 220. The first elastic element 210, the second elastic element 220, and the wall of the storage slot 110 can together form a storage space 300, and a storage opening 310 communicating with the storage space 300 can be formed between the first elastic element 210 and the second elastic element 220.
[0075] With the above-described configuration, the first elastic element 210 and the second elastic element 220 can simultaneously protect the earphone body 400 from both sides of the housing 100, which helps to prevent damage to the earphone body 400. Furthermore, the earphone body 400 can be easily inserted into the storage space 300 through the storage port 310, or easily removed from the storage space 300 through the storage port 310, simplifying the user's operation of taking out and putting in the earphone body 400.
[0076] In some implementations, both the first elastic element 210 and the second elastic element 220 can be "disc-shaped" and cover the two sides of the housing 100. The first elastic element 210 and the second elastic element 220 can be arranged along the rotation axis of the housing 100, and the recessed portion of the first elastic element 210 and the recessed portion of the second elastic element 220 are arranged opposite each other to form a "clam-shaped" structure. Through the above arrangement, the shapes of the first elastic element 210 and the second elastic element 220 can be adapted to the shapes of the housing 100 and the earphone body 400, improving the visual effect of the earphone 10.
[0077] In the above example, the first elastic element 210 and the second elastic element 220 can also be rotating bodies, and the rotation axis of the first elastic element 210, the rotation axis of the second elastic element 220 and the rotation axis of the cabin 100 can all be collinear.
[0078] In one embodiment, please combine Figure 2 and Figure 5 Along the direction from the bottom of the storage groove 110 towards the storage opening 310, the edges of the first elastic member 210 and the second elastic member 220 extend beyond the opening of the storage groove 110, forming a storage space 300 together with the groove wall of the storage groove 110. That is, the edges of the first elastic member 210 and the second elastic member 220 are further away from the bottom of the storage groove 110 than the opening. Therefore, when the earphone body 400 is stored in the storage space 300, at least a portion of the earphone body 400 is located between the first elastic member 210 and the second elastic member 220, which helps to prevent damage to the earphone body 400.
[0079] In the example above, such as Figure 9 As shown, the user can flip open at least one of the first elastic member 210 and the second elastic member 220 to remove the earphone body 400 from the storage space 300. Alternatively, the user can squeeze the edges of the first elastic member 210 and the second elastic member 220 to push the earphone body 400 out of the storage space 300.
[0080] The above design avoids the need for a flip cover or clips to store the earphone body 400, simplifying the user's operation of taking out and putting in the earphone body 400. Furthermore, compared to flip covers or clips, the first elastic element 210, the second elastic element 220, and the housing 100 have simpler structures and are easier to manufacture, reducing production costs while improving production efficiency.
[0081] In one embodiment, please combine Figure 5 , Figure 10 as well as Figure 11Along the bottom of the storage groove 110 towards the storage opening 310, the distance between the first elastic element 210 and the second elastic element 220 gradually decreases. Therefore, the first elastic element 210 and the second elastic element 220 can cover the earphone body 400, improving the protection of the earphone body 400. Furthermore, the storage opening 310 is relatively small, allowing both the first elastic element 210 and the second elastic element 220 to elastically abut against the earphone body 400, preventing the earphone body 400 from falling out of the storage space 300 due to bumps or other accidental factors.
[0082] In the above embodiments, please refer to Figure 5 , Figure 10 as well as Figure 12 The sound-emitting part 410 and at least part of the clamping part 420 are located within the storage space 300. Specifically, a portion of the structure of the sound-emitting part 410 is located within the storage slot 110, while another portion is located between the first elastic member 210 and the second elastic member 220. That is, the entire structure of the sound-emitting part 410 is located within the storage space 300. Therefore, the housing 100 and the elastic member 200 provide good protection for the sound-emitting part 410, helping to prevent damage to it. Please refer to... Figure 5 , Figure 11 as well as Figure 12 At least part of the clamping part 420 can extend out of the storage space 300 from the storage opening 310, so that the user can take the earphone body 400 out of the storage space 300.
[0083] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of this application, and are not intended to limit them; although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some or as many of the technical features as possible; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. An earphone, characterized in that, include: The aircraft bay has a storage slot disposed on at least a portion of the circumferential sidewall of the aircraft bay and extending circumferentially along the aircraft bay; An elastic element is connected to the machine compartment, and the elastic element and the wall of the storage slot together form a storage space; The earphone body, at least a portion of which is located within the storage space.
2. The earphone according to claim 1, characterized in that, The elastic element includes a first elastic element and a second elastic element, wherein the first elastic element is disposed on one side of the cabin and the second elastic element is disposed on the other side of the cabin; The storage slot is located between the first elastic member and the second elastic member. The first elastic member, the second elastic member, and the wall of the storage slot together form the storage space. A storage opening communicating with the storage space is formed between the first elastic member and the second elastic member.
3. The earphone according to claim 2, characterized in that, Along the direction from the bottom of the storage groove towards the storage opening, the distance between the first elastic element and the second elastic element gradually decreases.
4. The headphones according to claim 2 or 3, characterized in that, The edges of the first elastic member and the second elastic member extend beyond the opening of the storage groove, so as to form the storage space together with the groove wall of the storage groove.
5. The headphones according to claim 2 or 3, characterized in that, The engine compartment is a rotating body, and the storage slot is arranged around the engine compartment; Both the first elastic element and the second elastic element are disc-shaped, and the first elastic element and the second elastic element are spaced apart along the rotation axis of the machine compartment.
6. The headphones according to claim 2 or 3, characterized in that, The earphone body includes a sound-emitting part and a clamping part connected to the sound-emitting part, the sound-emitting part having a sound outlet hole; The sound-emitting part and at least a portion of the clamping part are located within the storage space, wherein a portion of the structure of the sound-emitting part is located within the storage groove, and another portion of the structure of the sound-emitting part is located between the first elastic member and the second elastic member.
7. The earphone according to claim 6, characterized in that, The clamping part includes a first clamping part and a second clamping part. The sound-emitting part is disposed at the first end of the first clamping part. The second end of the first clamping part is rotatably connected to the first end of the second clamping part so that the earphone body can switch between a storage state and a wearing state. When the earphone body is located within the storage space, the earphone body is in the storage state, and the distance between the second end of the second clamping part and the sound-emitting part is the first distance; when the earphone body is in the wearing state, the distance between the second end of the second clamping part and the sound-emitting part is the second distance. The second spacing is smaller than the first spacing.
8. The earphone according to claim 7, characterized in that, The cabin is equipped with a first adsorption magnet and a second adsorption magnet; The earphone body includes a first storage magnet and a second storage magnet, the first storage magnet being disposed in the first clamping part, and the second storage magnet being disposed in the second clamping part; When the earphone body is located in the storage space, the first storage magnet and the first adsorption magnet are magnetically attracted to each other, and the second storage magnet and the second adsorption magnet are magnetically attracted to each other.
9. The earphone according to claim 7, characterized in that, The sound-emitting part is spherical; and / or, both the first clamping part and the second clamping part are arc-shaped.
10. The earphone according to claim 1, characterized in that, The earphone body includes a first earphone body and a second earphone body, with at least a portion of the first earphone body and at least a portion of the second earphone body located within the storage space.