Earphone box assembly and earphone system

By designing a headphone box assembly with movable connection and magnetic adsorption connection, the problem of inconvenient access and placement of wireless headphones is solved, and the simple and convenient storage and access of headphones is achieved.

CN222897315UActive Publication Date: 2025-05-23SHENZHEN DASHI FUTURE TECH CO LTD
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Patent Information

Application Number
CN202421429929.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-20
Publication Date
2025-05-23
Estimated Expiration
2034-06-20

AI Technical Summary

Technical Problem

The open-opening form of the existing headphone storage box is relatively single, which makes it inconvenient to pick up and place wireless headphones.

Method used

A headphone box assembly is designed, including two oppositely arranged housings, forming a container through a movable connection, and the headphone body can be stored in the container. The two ends of the second housing can be moved opposite to each other, and are connected by magnetic adsorption to facilitate opening and closing of the cavity.

Benefits of technology

Through the design of the headphone box assembly, users can simply and conveniently remove or put the headphones from the comfort cavity, solving the problem of inconvenient pick-up and placement, and improving the storage safety of the headphones.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an earphone box assembly and an earphone system, and relates to the technical field of sound production. The earphone box assembly comprises a first shell, a second shell, a first handle and a second handle. The first shell and the second shell are oppositely arranged, the first end of the first shell is movably connected with the third end of the second shell, so that the first shell and the second shell can define a containing cavity, and the earphone body is arranged in the containing cavity so that the earphone body can be stored. When the containing cavity is closed, the first handle and the second handle are arranged, so that acting force deviating from the direction of the second shell is applied to the outer wall of the side, close to the second shell, of the first handle, and / or acting force deviating from the direction of the first shell is applied to the outer wall of the side, close to the first shell, of the second handle; the first handle and the second handle can move back to back, so that the second end of the first shell and the fourth end of the second shell can move back to back conveniently, and the containing cavity can be opened conveniently.
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Description

Technical Field

[0001] The present application relates to an earphone box assembly and an earphone system, and belongs to the technical field of sound-generating equipment. Background Art

[0002] Wireless earphones are easy to use because they do not have a connecting wire structure and avoid the problem of wire entanglement. In order to facilitate the storage of wireless earphones, a storage box can be configured for the wireless earphones. When the user does not use the wireless earphones, the wireless earphones can be stored in the storage box to avoid accidental loss of the wireless earphones.

[0003] Currently, the opening forms of the earphone storage box are relatively simple, which makes it inconvenient to take and put the earphones. Utility Model Content

[0004] The present application provides an earphone box assembly and an earphone system, which solves the problem of inconvenience in taking and placing wireless earphones from a storage box in the related art.

[0005] In a first aspect, the present application provides an earphone box assembly, comprising:

[0006] A first housing having a first end and a second end;

[0007] The second shell has a third end and a fourth end, the second shell is arranged opposite to the first shell, the first end is movably connected to the third end, the first shell and the second shell are surrounded to form a cavity for accommodating the earphone, and the second end and the fourth end are configured to move toward or away from each other so as to close or open the cavity;

[0008] a first handle protruding from the second end;

[0009] a second handle protruding from the fourth end;

[0010] Wherein, when the cavity is closed, at least a portion of the first handle and the second handle are arranged in a staggered manner.

[0011] In some embodiments, the first handle is provided with a first concave area and a first convex area in at least one direction among the thickness direction, width direction and length direction of the first handle, and the second handle is provided with a second concave area and a second convex area in at least one direction among the thickness direction, width direction and length direction of the second handle, and when the cavity is closed, the first concave area and the second convex area are opposite to each other, and the first convex area and the second concave area are opposite to each other so that the first handle and the second handle are staggered.

[0012] In some embodiments, when the cavity is closed, the second end is magnetically connected to the fourth end; and / or,

[0013] The first handle is connected to the second handle by magnetic attraction.

[0014] In some embodiments, the earphone box assembly further includes a first magnetic member and a second magnetic member;

[0015] The first magnetic member is disposed at the second end, and the second magnetic member is disposed at the fourth end; and / or,

[0016] The first magnetic member is disposed on the first handle, and the second magnetic member is disposed on the second handle.

[0017] In some embodiments, the earphone box assembly further includes a third shell, and opposite sides of the third shell are respectively connected to the first end of the first shell and to the third end of the second shell via a rotating connection.

[0018] In some embodiments, the rotating connection member includes a deformable structure or a rotating shaft.

[0019] In some embodiments, the deformable structural member includes a polymer elastic structural member; and / or the deformable structural member is connected to the first shell and the third shell in a T-shape.

[0020] In some embodiments, the earphone box assembly also includes a fourth shell, which is fixedly connected to the third shell, and the first shell, the second shell, the third shell and the fourth shell together enclose the cavity; wherein the fourth shell is provided with a port for charging the earphone box assembly and / or an indicator light for displaying the power level of the earphone box assembly.

[0021] In some embodiments, the earphone box assembly also includes a first connecting member, one end of the first connecting member is connected to the first shell, and the other end of the first connecting member is connected to the fourth shell, when the second end of the first shell moves toward or away from the fourth end of the second shell, the straight-line distance between the first connecting member and the first shell decreases or increases accordingly.

[0022] In some embodiments, the earphone box assembly also includes a third connecting member, one side of the third connecting member is connected to an edge of the first shell between the first end and the second end, and the other side of the third connecting member is connected to an edge of the second shell between the third end and the fourth end, and the first shell, the second shell and the third connecting member are arranged to form the cavity, and when the second end and the fourth end move toward each other, the third connecting member is compressed, and when the second end and the fourth end move away from each other, the third connecting member is stretched.

[0023] In some embodiments, the earphone box assembly further includes a first flexible protective layer, which is coated on the outer wall of the first shell and the second shell opposite to each other; and / or, the earphone box assembly further includes a second flexible protective layer, which is coated on the inner wall of the first shell and the second shell facing each other.

[0024] In some embodiments, the first flexible protective layer and the second flexible protective layer are respectively selected from at least one of PU leather, microfiber leather, technical cloth, and PVC leather.

[0025] In some embodiments, the earphone box assembly further includes a charging component, and the charging component is disposed in the cavity.

[0026] In a second aspect, based on the above earphone box assembly, the present application further proposes an earphone system, comprising an earphone body and the above earphone box assembly, wherein the earphone body is detachably disposed in a cavity of the earphone box assembly.

[0027] In the earphone box assembly provided by the present application, the first shell and the second shell are arranged opposite to each other, and the first end of the first shell is movably connected to the third end of the second shell, so that the first shell and the second shell can be surrounded to form a cavity, and the earphone body is arranged in the cavity so that the earphone body can be stored. The other parts of the first shell except the first end and the other parts of the second shell except the third end can move relative to each other, so that the second end of the first shell and the fourth end of the second shell can move toward or away from each other. When the second end and the fourth end move away from each other, the distance between the second end and the fourth end can be increased, so that an opening that connects the cavity with the outside is formed between the second end and the fourth end, so that the earphone body can be taken from the cavity through the opening between the second end and the fourth end. When the second end and the fourth end move toward each other, the distance between the second end and the fourth end can be reduced, so that the opening is closed, so that the cavity can be closed, so that the earphone body can be better stored in the cavity.

[0028] The first handle protrudes from the second end of the first shell, and the second handle protrudes from the fourth end of the second shell. When the cavity is closed, the first handle and the second handle are misaligned, so that the first handle and the second handle can be moved away from each other by applying a force in a direction away from the second shell to an outer wall of a side of the first handle adjacent to the second shell, and / or applying a force in a direction away from the first shell to an outer wall of a side of the second handle adjacent to the first shell, so that the second end of the first shell and the fourth end of the second shell can be moved away from each other conveniently, so that the opening process of the cavity is convenient.

[0029] The earphone system proposed in the present application, because it includes the above-mentioned earphone box assembly, can make the process of taking the earphone body out of the cavity of the earphone box assembly simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The above and other purposes, features and advantages of the embodiments of the present application will become more easily understood through the following detailed description with reference to the accompanying drawings. In the accompanying drawings, multiple embodiments of the present application will be described in an exemplary and non-limiting manner, wherein:

[0031] Figure 1 A schematic diagram of an earphone system according to an embodiment of the present application;

[0032] Figure 2 A schematic diagram of an earphone box assembly according to an embodiment of the present application;

[0033] Figure 3 A schematic diagram of a first handle of an earphone box assembly according to an embodiment of the present application;

[0034] Figure 4 A schematic diagram of a second handle of an earphone box assembly according to an embodiment of the present application;

[0035] Figure 5 A schematic diagram of a third housing of an earphone box assembly according to an embodiment of the present application;

[0036] Figure 6 This is a schematic diagram showing that the rotating connecting member of the earphone box assembly of the embodiment of the present application is in a straight line shape;

[0037] Figure 7 This is a schematic diagram showing that the rotating connecting member of the earphone box assembly of the embodiment of the present application is in a straight line shape;

[0038] Figure 8 It is a schematic diagram of the rotating connecting member of the earphone box assembly and the third shell being integrally formed in one piece in an embodiment of the present application;

[0039] Fig. 9 Schematic diagram of the wrapping structure of the earphone system according to an embodiment of the present application.

[0040] Reference numerals:

[0041] 100 - first shell, 110 - first end, 120 - second end, 130 - first handle, 131 - first convex area, 132 - first concave area, 133 - first magnetic member, 140 - cavity,

[0042] 200 - second housing, 210 - third end, 220 - fourth end, 230 - second handle, 231 - second convex area, 232 - second concave area, 233 - second magnetic member,

[0043] 300-third housing,

[0044] 400-rotating connector,

[0045] 500-fourth housing, 510-first connecting piece, 520-second connecting piece,

[0046] 600-headphone body,

[0047] 700-Charging parts,

[0048] 800-first flexible protective layer,

[0049] 900 - Second flexible protective layer. DETAILED DESCRIPTION

[0050] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present application, and should not be construed as limiting the present application.

[0051] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.

[0052] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of this application, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.

[0053] In this application, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or communication with each other; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0054] In the present application, unless otherwise clearly specified and limited, a first feature being “above” or “below” a second feature may mean that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, a first feature being “above”, “above”, and “above” a second feature may mean that the first feature is directly above or obliquely above the second feature, or simply means that the first feature is higher in level than the second feature. A first feature being “below”, “below”, and “below” a second feature may mean that the first feature is directly below or obliquely below the second feature, or simply means that the first feature is lower in level than the second feature.

[0055] In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of the different embodiments or examples, without contradiction.

[0056] Wireless earphones are easy to use because they do not have a connecting wire structure and avoid the problem of wire entanglement. In order to facilitate the storage of wireless earphones, a storage box can be configured for the wireless earphones. When the user is not using the wireless earphones, the wireless earphones can be stored in the storage box to avoid accidental loss of the wireless earphones.

[0057] Currently, the opening forms of the earphone storage box are relatively simple, which makes it inconvenient to take and put the earphones.

[0058] In the earphone box assembly proposed in the present application, the first shell and the second shell are arranged opposite to each other, and the first end of the first shell and the third end of the second shell are movably connected, so that the first shell and the second shell can be surrounded to form a cavity, and the earphone body is arranged in the cavity so that the earphone body can be stored. The other parts of the first shell except the first end and the other parts of the second shell except the third end can move relative to each other, so that the second end of the first shell and the fourth end of the second shell can move toward or away from each other. When the second end and the fourth end move away from each other, the distance between the second end and the fourth end can be increased, so that an opening that connects the cavity with the outside is formed between the second end and the fourth end, so that the earphone body can be taken from the cavity through the opening between the second end and the fourth end. When the second end and the fourth end move toward each other, the distance between the second end and the fourth end can be reduced, so that the opening is closed, so that the cavity can be closed, so that the earphone body can be better stored in the cavity.

[0059] When the cavity is closed, the first handle is misaligned with the second handle, so that the first handle and the second handle can be moved away from each other by applying a force to the outer wall of the first handle adjacent to the second shell in a direction away from the second shell, and / or applying a force to the outer wall of the second handle adjacent to the first shell in a direction away from the first shell, thereby conveniently moving the second end of the first shell and the fourth end of the second shell away from each other, thereby facilitating the opening process of the cavity.

[0060] The earphone proposed in the present application, since it includes the above-mentioned earphone box assembly, can make the process of taking the earphone body out of the cavity of the earphone box assembly simple and convenient.

[0061] The earphone box assembly provided by the present application is described in detail below in conjunction with specific embodiments.

[0062] The present application embodiment provides an earphone box assembly, referring to Figure 1 to Figure 2 As shown, it includes a first housing 100, a second housing 200, a first handle 130 and a second handle 230. The earphone box assembly can be used to accommodate an earphone body and charge the earphone body.

[0063] In order to facilitate a detailed description of the structure of the earphone box assembly, the various directions of the earphone box assembly can be defined. For example, from the axial perspective of the earphone box assembly, the longer side is defined as the length direction of the earphone box assembly, that is, Figure 1 The shorter side is defined as the width direction of the earphone box component, i.e. Figure 1 The direction perpendicular to the front of the earphone box assembly is the thickness direction, that is, Figure 1 In the Z direction. Figures 6 to 8 Taking the placement orientation of the earphone box assembly as an example, the left and right direction of the earphone box assembly represents the thickness direction of the earphone box assembly, the up and down direction of the earphone box assembly represents the width direction of the earphone box assembly, and the direction perpendicular to the paper surface represents the length direction of the earphone box assembly.

[0064] Among them, the first shell 100 and the second shell 200 are the basic components of the earphone box assembly of the present application. The first shell 100 and the second shell 200 can provide a mounting base for at least some of the other components of the earphone box assembly and protect at least some of the other components. The first shell 100 and the second shell 200 can be made of polymer materials, so that the first shell 100 and the second shell 200 have a certain structural strength and are relatively light in weight. Of course, the first shell 100 and the second shell 200 can also be made of metal materials, so that the first shell 100 and the second shell 200 have better structural strength, thereby making the durability and reliability of the first shell 100 and the second shell 200 better.

[0065] The first housing 100 has a first end 110 and a second end 120, which are opposite ends of the first housing 100. The second housing 200 has a third end 210 and a fourth end 220, which are opposite ends of the second housing 200. The first housing 100 and the second housing 200 are arranged opposite to each other, and the first housing 100 and the second housing 200 are distributed on both sides of the thickness direction of the earphone box assembly along the width direction of the earphone box assembly. The first end 110 of the first housing 100 and the third end 210 of the second housing 200 are movably connected, so that the first housing 100 and the second housing 200 can be surrounded to form a cavity 140, and the outer walls of the first housing 100 and the second housing 200 relative to each other can constitute the inner wall of the cavity 140, and the earphone body 600 can be arranged in the cavity 140.

[0066] The first end 110 of the first housing 100 and the third end 210 of the second housing 200 are movably connected, so that the first housing 100 and the second housing 200 can move relative to each other, thereby, the second end 120 of the first housing 100 and the fourth end 220 of the second housing 200 can move toward or away from each other. Specifically, the second end 120 and the fourth end 220 can move toward or away from each other along the thickness direction of the earphone box assembly.

[0067] When the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 move away from each other, the distance between the second end 120 and the fourth end 220 can be increased, so that the second end 120 and the fourth end 220 form a distance, thereby forming an opening that connects the cavity 140 with the outside of the cavity 140, so that the cavity 140 is opened. Accordingly, the thickness of the earphone box assembly can be increased. The earphone body 600 can be placed in the cavity 140 through the opening between the second end 120 and the fourth end 220, or the earphone body 600 in the cavity 140 can be taken out from the opening between the second end 120 and the fourth end 220, so as to achieve the purpose of taking and placing the earphone body 600.

[0068] When the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 move toward each other, the distance between the second end 120 and the fourth end 220 can be reduced until the second end 120 contacts the fourth end 220, so that there is no gap between the second end 120 and the fourth end 220, so that the cavity 140 is closed. Accordingly, the thickness of the earphone box assembly can be reduced. As a result, the earphone body 600 can be enclosed in the cavity 140, and the earphone body 600 will not fall out of the cavity 140 after being placed in the cavity 140, so as to achieve the purpose of protecting the earphone body 600.

[0069] The second end 120 of the first housing 100 and the fourth end 220 of the second housing 200 can move towards or away from each other simultaneously along the thickness direction of the earphone box assembly. This enables the second end 120 and the fourth end 220 to be separated more efficiently, and the distance between the second end 120 and the fourth end 220 is relatively larger, so that the opening formed when the cavity 140 is opened is larger, the cavity 140 is fully opened, and the earphone body 600 can be taken out from and placed into the cavity 140 more conveniently.

[0070] The first handle 130 protrudes from the second end 120 of the first housing 100. Specifically, one end of the first handle 130 is disposed at the second end 120 of the first housing 100, and the other end of the first handle 130 extends in a direction away from the first end 110 of the first housing 100, so that the first handle 130 can protrude from the second end 120 of the first housing 100. The second handle 230 protrudes from the fourth end 220 of the second housing 200. Specifically, one end of the second handle 230 is disposed at the fourth end 220 of the second housing 200, and the other end of the second handle 230 extends in a direction away from the third end 210 of the second housing 200, so that the second handle 230 can protrude from the fourth end 220 of the second housing 200. When the cavity 140 is closed, that is, when the second end 120 of the first housing 100 and the fourth end 220 of the second housing 200 are relatively close to each other until they contact, at least part of the first handle 130 and the second handle 230 are misaligned, so that at least part of the first handle 130 and the second handle 230 do not block each other.

[0071] When the cavity 140 is opened, a force in a direction away from the second housing 200 can be applied to the outer wall of the first handle 130 adjacent to the second housing 200, so that the first handle 130 moves away from the second housing 200, causing the first housing 100 to move away from the second housing 200. In this way, the distance between the second end 120 and the fourth end 220 can be increased to form an opening between the second end 120 and the fourth end 220, and the cavity 140 is opened. When the cavity 140 is closed, a force in a direction towards the second housing 200 can be applied to the outer wall of the first handle 130 away from the second housing 200, so that the first handle 130 moves closer to the second housing 200, causing the first housing 100 to move closer to the second housing 200. In this way, the cavity 140 can be closed.

[0072] When the cavity 140 is opened, a force in a direction away from the first shell 100 may be applied to the outer wall of the second handle 230 adjacent to the first shell 100, so that the second handle 230 is away from the first shell 100, so that the first shell 100 is away from the second shell 200, so that the distance between the second end 120 and the fourth end 220 can be increased so that an opening is formed between the second end 120 and the fourth end 220, and the cavity 140 is opened. When the cavity 140 is closed, a force in a direction toward the first shell 100 may be applied to the outer wall of the second handle 230 away from the first shell 100, so that the second handle 230 is close to the first shell 100, so that the second shell 200 is close to the first shell 100, and the cavity 140 can be closed.

[0073] In addition, when the cavity 140 is opened, a force in a direction away from the second shell 200 may be applied to the outer wall of the first handle 130 adjacent to the second shell 200, and a force in a direction away from the first shell 100 may be applied to the outer wall of the second handle 230 adjacent to the first shell 100, so that the first handle 130 and the second handle 230 move in opposite directions at the same time, so that the cavity 140 is opened. When the cavity 140 is closed, a force in a direction toward the second shell 200 may be applied to the outer wall of the first handle 130 away from the second shell 200, and a force in a direction toward the first shell 100 may be applied to the outer wall of the second handle 230 away from the first shell 100, so that the first handle 130 and the second handle 230 move relative to each other at the same time, so that the cavity 140 is closed.

[0074] Specifically, the user can conveniently open and close the cavity 140 with one hand. The user's thumb and index finger can respectively rest against the first handle 130 and the second handle 230, and the index finger can apply a force to the second handle 230 in a direction away from the first shell 100, so that the second handle 230 moves away from the first handle 130 to open the cavity 140. In this way, during the opening of the cavity 140, only pressing force needs to be applied to the first handle 130 and / or the second handle 230, and there is no need to press the first shell 100 and the second shell 200 to form a friction force to open the cavity 140, thereby making the process of opening and closing the cavity 140 simple and convenient.

[0075] In some embodiments, the first handle 130 of the present application and the first housing 100 may be an integrally formed structural member, so that the connection reliability between the first handle 130 and the first housing 100 is better. The second handle 230 of the present application and the second housing 200 may be an integrally formed structural member, so that the connection reliability between the second handle 230 and the second housing 200 is better.

[0076] The first handle 130 and the first housing 100 of the present application can also be separately manufactured and connected through an assembly process, and the second handle 230 and the second housing 200 can also be separately manufactured and connected through an assembly process, which can reduce the difficulty of the manufacturing process of the first handle 130, the second handle 230, the first housing 100, and the second housing 200. Specifically, the first handle 130 and the first housing 100 can be connected through threads, and the second handle 230 and the second housing 200 can also be connected through threads, so that the first handle 130 and the second handle 230 are easy to disassemble.

[0077] In some embodiments, reference Figure 2 As shown, in at least one direction of the thickness direction, width direction and length direction of the first handle 130 of the present application, the first handle 130 has a first concave area 132 and a first convex area 131. In at least one direction of the thickness direction, width direction and length direction of the second handle 230 of the present application, the second handle 230 has a second concave area 232 and a second convex area 231. When the cavity 140 of the earphone box assembly is closed, the first concave area 132 is opposite to the second convex area 231, and the first convex area 131 is opposite to the second concave area 232.

[0078] Specifically, the first concave area 132 and the first convex area 131 of the first handle 130 may be connected, and the first concave area 132 may be a groove structure on the first handle 130, and correspondingly, the first convex area 131 is a bump structure on the first handle 130. The second concave area 232 and the second convex area 231 of the second handle 230 may be connected, and the second concave area 232 may be a groove structure on the second handle 230, and correspondingly, the second convex area 231 is a bump structure on the first handle 130. When the cavity 140 of the earphone box assembly is closed, the first convex area 131 can be embedded in the second concave area 232, and the second convex area 231 can be embedded in the first concave area 132, so that the first convex area 131 and the second concave area 232 are mutually limited, and the second convex area 231 and the first concave area 132 are relatively limited, so that the first handle 130 and the second handle 230 can be mutually limited and fixed, so that they can be relatively fixed in the length and width direction of the earphone box assembly, so that the first shell 100 and the second shell 200 can also be relatively fixed in the length and width direction of the earphone box assembly, so that when the cavity 140 of the earphone box assembly of the present application is closed, the structure of the earphone box assembly is more stable. In addition, by staggering the first handle 130 and the second handle 230, the first handle 130 and the second handle 230 can be designed to be smaller and lighter, reducing the materials used for the first handle 130 and the second handle 230, which is conducive to the compactness and lightness of the earphone box assembly.

[0079] In some embodiments, reference Figure 1As shown, in order to make the connection between the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 more reliable when the cavity 140 is closed, the second end 120 and the fourth end 220 can be connected by magnetic adsorption. This can prevent the first handle 130 and / or the second handle 230 from being easily separated when subjected to external forces, so that the cavity 140 of the earphone box assembly can be stably maintained in a closed state. When the cavity 140 needs to be opened, a force greater than the magnetic adsorption force between the second end 120 and the fourth end 220 can be applied to the first handle 130 and / or the second handle 230, so that the process of opening the cavity 140 is simple and convenient. In this way, the opening and closing of the cavity 140 can be achieved without additional operation on the first handle 130 and / or the second handle 230.

[0080] In addition, when the cavity 140 of the earphone box assembly is closed, the first handle 130 and the second handle 230 can be connected by magnetic adsorption, so that the first handle 130 and the second handle 230 can be relatively fixed in the thickness direction of the earphone box assembly, so that the cavity 140 of the earphone box assembly can be stably maintained in a closed state.

[0081] In some embodiments, reference Figure 1 , Figure 3 and Figure 4 As shown, in order to enable the second end 120 of the first shell 100 to be connected to the fourth end 220 of the second shell 200 by magnetic adsorption, the earphone box assembly of the present application may also be provided with a first magnetic member 133 and a second magnetic member 233. The first magnetic member 133 is provided at the second end 120 of the first shell 100, and the second magnetic member 233 is provided at the fourth end 220 of the second shell 200. When the second end 120 and the fourth end 220 move toward each other and contact, the first magnetic member 133 and the second magnetic member 233 are opposite to each other to be adsorbed to each other, so that the second end 120 and the fourth end 220 can be relatively fixed.

[0082] The first magnetic component 133 can also be arranged on the first handle 130, and the second magnetic component 233 can also be arranged on the second handle 230. In this way, when the first handle 130 contacts the second handle 230, the first magnetic component 133 and the second magnetic component 233 can also be magnetically adsorbed and connected to make the first handle 130 and the second handle 230 relatively fixed, and the cavity 140 of the earphone box assembly can remain in a closed state.

[0083] Specifically, the first magnetic member 133 and the second magnetic member 233 are both magnetic members, and the polarities of the two are different, so that the first magnetic member 133 and the second magnetic member 233 can be magnetically adsorbed when they are close to each other. The first magnetic member 133 and the second magnetic member 233 both have magnetic force, which can make the magnetic adsorption effect of the first magnetic member 133 and the second magnetic member 233 more reliable, so that the second end 120 and the fourth end 220 are reliably connected. In addition, the first magnetic member 133 can be arranged on the second end 120 of the first shell 100, and a non-magnetic member that can be magnetically adsorbed with the first magnetic member 133 can be arranged on the fourth end 220 of the second shell 200, or the second magnetic member 233 can be arranged on the fourth end 220 of the second shell 200, and a non-magnetic member that can be magnetically adsorbed with the second magnetic member 233 can be arranged on the second end 120 of the first shell 100, so that the second end 120 and the fourth end 220 can be fixed by magnetic adsorption, and the preparation cost of the earphone box assembly of the present application can also be reduced.

[0084] In some embodiments, reference Figure 3 and Figure 4 As shown, in order to fix the first magnetic member 133 on the second end 120 of the first shell 100, the first magnetic member 133 may be disposed between the second end 120 of the first shell 100 and the first handle 130, so that the first magnetic member 133 is sandwiched between the second end 120 and the first handle 130. Specifically, one end of the first handle 130 may be connected to the side wall of the first shell 100 located at the second end 120, and a first groove for accommodating the first magnetic member 133 may be provided on the first handle 130 and / or the first shell 100, and the first magnetic member 133 may be embedded in the first groove. The opposite sides of the first magnetic member 133 may be respectively against the second end 120 and the first handle 130, so that the first magnetic member 133 is reliably fixed. By providing a first groove in the first shell 100 and / or the first handle 130, the first magnetic member 133 can be fixed between the first shell 100 and the first handle 130 without increasing the thickness of the first shell 100 and the first handle 130, thereby making the structure of the earphone box assembly of the present application more compact.

[0085] In order to fix the second magnetic member 233 on the fourth end 220 of the second housing 200, the second magnetic member 233 may be disposed between the fourth end 220 of the second housing 200 and the second handle 230, so that the second magnetic member 233 is sandwiched between the fourth end 220 and the second handle 230. Specifically, one end of the second handle 230 may be connected to the side wall of the second housing 200 located at the fourth end 220, and a second groove for accommodating the second magnetic member 233 may be provided on the second handle 230 and / or the second housing 200, and the second magnetic member 233 may be embedded in the second groove. The opposite sides of the second magnetic member 233 may be respectively against the fourth end 220 and the second handle 230, so that the second magnetic member 233 is reliably fixed. By providing a second groove in the second shell 200 and / or the second handle 230, the second magnetic member 233 can be fixed between the second shell 200 and the second handle 230 without increasing the thickness of the second shell 200 and the second handle 230, thereby making the structure of the earphone box assembly of the present application more compact.

[0086] Specifically, the first groove can be opened on the side of the first handle 130 facing the first shell 100, and the second groove can be opened on the side of the second handle 230 facing the second shell 200. The first magnetic part 133 can also be bonded to the first groove by adhesive, and the second magnetic part 233 can also be bonded to the second groove by adhesive, so as to better fix the first magnetic part 133 and the second magnetic part 233.

[0087] In addition, the number of the first magnetic parts 133 and the second magnetic parts 233 can be set to multiple, and the multiple first magnetic parts 133 and the multiple second magnetic parts 233 are arranged in a one-to-one correspondence. When the cavity 140 is closed, the multiple first magnetic parts 133 can be respectively opposite to and adsorbed with the multiple second magnetic parts 233, so that the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 are more reliably connected.

[0088] Of course, the number of the first magnetic members 133 and the number of the second magnetic members 233 can also be set to be different, and one first magnetic member 133 can be correspondingly adsorbed on multiple second magnetic members 233; or one second magnetic member 233 can be correspondingly adsorbed on multiple first magnetic members 133. The specific number of the first magnetic members 133 and the second magnetic members 233 is not limited in this application.

[0089] In some embodiments, reference Figure 5As shown, in order to make the first shell 100 and the second shell 200 relatively movable, the earphone box assembly of the present application may also be provided with a rotating connection member 400. The rotating connection member 400 is located between the first shell 100 and the second shell 200, and the first end 110 of the first shell 100 is connected to the third end 210 of the second shell 200 through the rotating connection member 400. The rotating connection member 400 is a deformable structural member, so when the first shell 100 and the second shell 200 are subjected to force to move toward or away from each other, the rotating connection member 400 can be deformed by force, so that the distance between the second end 120 and the fourth end 220 can be reduced or increased, so as to realize the closing and opening of the cavity 140.

[0090] Specifically, when the distance between the second end 120 and the fourth end 220 is reduced, the first housing 100 and the second housing 200 can compress the rotating connector 400, so that the two sides where the rotating connector 400 is connected to the first end 110 and the third end 210 are relatively close. When the distance between the second end 120 and the fourth end 220 is increased, the force acting on the rotating connector 400 by the first housing 100 and the second housing 200 is reduced, so that the two sides where the rotating connector 400 is connected to the first end 110 and the third end 210 are relatively far away.

[0091] In some embodiments, the rotating connecting member 400 may also be a rotating shaft. Specifically, the first housing 100 and the second housing 200 may be rotatably connected to the rotating shaft, so that the first housing 100 and the second housing 200 may rotate relative to the rotating shaft, thereby enabling the first housing 100 and the second housing 200 to rotate relative to each other.

[0092] In some embodiments, reference Figure 5 As shown, when the rotating connector 400 of the present application is a deformable structural member, the rotating connector 400 can adopt a polymer elastic structural member, specifically TPU (thermoplastic polyurethane elastomer). As a result, the rotating connector 400 can have elastic deformation properties and the preparation cost is relatively low, thereby reducing the cost of the earphone box assembly of the present application.

[0093] In some embodiments, reference Figure 5As shown, the earphone box assembly of the present application may also be provided with a third shell 300. Among them, one side of the third shell 300 is movably connected to the first end 110 of the first shell 100 through a rotating connection member 400, and the other side of the third shell 300 is movably connected to the second shell 200 through a rotating connection member 400. The third shell 300 can constitute the base of the earphone box assembly, and the outer wall of the third shell 300 can constitute the bottom wall of the cavity 140. Both the first shell 100 and the second shell 200 can be movable relative to the third shell 300, so that the distance between the first shell 100 and the second shell 200 is reduced or increased, so that the distance between the second end 120 and the fourth end 220 is reduced or increased, so as to realize the closing or opening of the cavity 140.

[0094] By providing the third housing 300, the distance between the first housing 100 and the second housing 200 can be increased, thereby increasing the volume of the cavity 140, so that more components can be placed in the cavity 140, and the volume of the earphone body 600 that can be accommodated in the cavity 140 can also be larger. In addition, it should be understood that other components in the cavity 140 of the earphone box assembly can also be provided on the third housing 300, so that the components in the cavity 140 are more convenient to set. The earphone body 600 can also be provided on the third housing 300, so that the earphone body 600 will not move with the first housing 100 and the second housing 200 during the opening and closing of the cavity 140, thereby making the process of taking the earphone body 600 out of the cavity 140 more convenient.

[0095] refer to Figure 6 As shown, the rotating connecting member 400 can be connected between the first shell 100 and the third shell 300 and between the second shell 200 and the third shell 300 in a T-shape, so that the rotating connecting member 400 can be bent and deformed conveniently.

[0096] refer to Figure 7 As shown, the rotating connecting member 400 can also be in a straight line shape.

[0097] refer to Figure 8 As shown, the rotating connecting member 40 can be integrally formed with the third shell 300, and the movable connecting member 400 can also be provided with one or more grooves in the length direction thereof to facilitate the bending of the rotating connecting member 400.

[0098] In some embodiments, reference Figure 2 As shown, the earphone box assembly of the present application may also be provided with a fourth shell 500, the fourth shell 500 is connected to the third shell 300, and the first shell 100, the second shell 200, the third shell 300 and the fourth shell 500 are jointly arranged to form a cavity 140 of the earphone box assembly.

[0099] Specifically, the fourth housing 500 may be disposed on both sides of the third housing 300 along the length direction of the earphone box assembly, and the fourth housing 500 may constitute the outer wall of the earphone box assembly in the length direction. When the second end 120 of the first housing 100 and the fourth end 220 of the second housing 200 move toward each other until the cavity 140 is closed, the first housing 100 and the second housing 200 may contact and fit with both sides of the fourth housing 500 to fully close the cavity 140.

[0100] The fourth shell 500 may be provided with a port for charging the earphone box assembly and / or an indicator light for displaying the power level of the earphone box assembly. Specifically, the port for charging the earphone box assembly and the indicator light for displaying the power level of the earphone box assembly are both provided on the outer wall of the fourth shell 500 facing away from the cavity 140. During the opening and closing process of the cavity 140 of the earphone box assembly, the fourth shell 500 is relatively fixed to the third shell 300 and will not move with the first shell 100 and the second shell 200, thereby facilitating the circuit structure of the charging port and the indicator light being provided on the fourth shell 500.

[0101] In some embodiments, reference Figure 2 As shown, the earphone box assembly of the present application may also be provided with a first connecting member 510, one end of the first connecting member 510 is connected to the first shell 100, and the other end of the first connecting member 510 is connected to the fourth shell 500. When the second end 120 of the first shell 100 moves toward or away from the fourth end 220 of the second shell 200, the straight-line distance between the first connecting member 510 and the fourth shell 500 is correspondingly reduced or increased.

[0102] Specifically, the first connecting member 510 may also constitute a part of the cavity 140 that surrounds the earphone box assembly. The first connecting member 510 is a deformable structural member, so that the straight-line distance between the first shell 100 and the fourth shell 500 is correspondingly reduced or increased. In this way, the side of the cavity 140 of the earphone box assembly can always remain in a closed state, preventing dust and impurities from entering the cavity 140 from the side of the earphone box assembly.

[0103] The first connecting member 510 may be a foldable structural member. When the second end 120 and the fourth end 220 move toward each other, at least a portion of the first connecting member 510 may be folded, so that the length of the first connecting member 510 between the fourth housing 500 and the first housing 100 is reduced to accommodate the reduced distance between the first housing 100 and the fourth housing 500. When the second end 120 and the fourth end 220 move away from each other, at least a portion of the first connecting member 510 may be unfolded from a folded state, so that the length of the first connecting member 510 between the fourth housing 500 and the first housing 100 is increased to accommodate the increased distance between the first housing 100 and the fourth housing 500.

[0104] The first connecting member 510 may also be a retractable structural member or a flexible deformable structural member, thereby enabling the length of the first connecting member 510 between the first shell 100 and the second shell 200 to be adaptively increased or decreased when subjected to external force.

[0105] In some embodiments, reference Figure 2 As shown, the earphone box assembly of the present application may also be provided with a second connecting member 520, one end of the second connecting member 520 is connected to the second shell 200, and the other end of the second connecting member 520 is connected to the fourth shell 500. When the second end 120 of the second shell 200 moves toward or away from the fourth end 220 of the second shell 200, the straight-line distance between the second connecting member 520 and the fourth shell 500 is correspondingly reduced or increased.

[0106] Specifically, the second connecting member 520 may also constitute a part of the cavity 140 that surrounds the earphone box assembly. The second connecting member 520 is a deformable structural member, so that the straight-line distance between the second shell 200 and the fourth shell 500 is correspondingly reduced or increased. In this way, the side of the cavity 140 of the earphone box assembly can always remain closed, preventing dust and impurities from entering the cavity 140 from the side of the earphone box assembly.

[0107] The second connecting member 520 may be a foldable structural member. When the second end 120 and the fourth end 220 move toward each other, at least a portion of the second connecting member 520 may be folded, so that the length of the second connecting member 520 between the fourth housing 500 and the second housing 200 is reduced to accommodate the reduced distance between the second housing 200 and the fourth housing 500. When the second end 120 and the fourth end 220 move away from each other, at least a portion of the second connecting member 520 may be unfolded from a folded state, so that the length of the second connecting member 520 between the fourth housing 500 and the second housing 200 is increased to accommodate the increased distance between the second housing 200 and the fourth housing 500.

[0108] The second connecting member 520 may also be a retractable structural member or a flexible deformable structural member, thereby enabling the length of the second connecting member 520 between the first shell 100 and the second shell 200 to be adaptively increased or decreased when subjected to external force.

[0109] When the first connecting member 510 and the second connecting member 520 are retractable structural members, a receiving groove structure for the user to receive the first connecting member 510 and the second connecting member 520 can be opened in the fourth shell 500. When the receiving cavity 140 is closed, the first connecting member 510 and the second connecting member 520 can be embedded in the receiving groove of the fourth shell 500. When the receiving cavity 140 is opened, the first connecting member 510 and the second connecting member 520 can extend from the receiving groove of the fourth shell 500.

[0110] In some embodiments, when the earphone box assembly of the present application is not provided with the fourth shell 500, the earphone box assembly of the present application may also be provided with a third connector (not shown in the figure), one side of the third connector is connected to the edge of the first shell 100 located between the first end 110 and the second end 120, and the other side of the third connector is connected to the edge of the second shell 200 located between the third end 210 and the fourth end 220, so that the first shell 100 and the second shell 200 are connected through the third connector. The first shell 100, the second shell 200, the third shell 300 and the third connector can be surrounded to form the above-mentioned cavity 140, and the outer wall of the third connector facing the side of the cavity 140 can also constitute the inner wall of the cavity 140, thereby, when the cavity 140 is opened, it can communicate with the outside only through the opening formed by the gap between the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200, and the size of the opening of the cavity 140 communicating with the outside is reduced, so as to prevent external dust and impurities from entering the cavity 140 to a certain extent.

[0111] Specifically, the third connecting member can be arranged on both sides of the earphone box assembly along the length direction of the earphone box assembly, and the two third connecting members are respectively arranged on both sides of the first shell 100, so that the two third connecting members are respectively located on the two side parts of the cavity 140, and the two third connecting members are also arranged opposite to each other, so that the first shell 100, the second shell 200, the third shell 300 and the two third connecting members can be jointly arranged to form the cavity 140.

[0112] The third connecting member is a deformable structural member that can be compressed or stretched. When the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 move away from each other to open the cavity 140, the distance between the area between the first end 110 and the second end 120 of the first shell 100 and the area between the third end 210 and the fourth end 220 of the second shell 200 increases, and the third connecting member can be stretched. When the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200 move toward each other to open the cavity 140, the distance between the area between the first end 110 and the second end 120 of the first shell 100 and the area between the third end 210 and the fourth end 220 of the second shell 200 decreases, and the third connecting member can be compressed. As a result, the third connecting member can always block both sides of the cavity 140 to prevent dust and impurities from entering the cavity 140 through both sides of the cavity 140.

[0113] In some embodiments, reference Figure 5As shown, the earphone box assembly of the present application may also be provided with a first flexible protective layer 800. The first flexible protective layer 800 is coated on the side walls of the first shell 100 and the second shell 200 that are opposite to each other. Specifically, part of the first flexible protective layer 800 is coated on the outer wall of the first shell 100 that is opposite to the second shell 200, and the other part of the first flexible protective layer 800 is coated on the outer wall of the second shell 200 that is opposite to the first shell 100. The first flexible protective layer 800 is a flexible structural member, and therefore, the texture of the first flexible protective layer 800 is relatively soft, so that the user is more comfortable when holding the earphone box assembly of the present application. In addition, when the outer wall of the first shell 100 and the outer wall of the second shell 200 are in contact with other objects, the first shell 100 and the second shell 200 can also be prevented from wearing each other with other components.

[0114] refer to Figure 5 As shown, the earphone box assembly of the present application may also be provided with a second flexible protective layer 900. The second flexible protective layer 900 is coated on the side walls facing the first shell 100 and the second shell 200. Specifically, part of the second flexible protective layer 900 is coated on the side wall of the first shell 100 facing the second shell 200, and the other part of the second flexible protective layer 900 is coated on the side wall of the second shell 200 facing the first shell 100. The second flexible protective layer 900 is a flexible structural member, and therefore, the texture of the second flexible protective layer 900 is relatively soft, so that when other components in the cavity 140 such as the earphone body 600 contact the side walls opposite to the first shell 100 and the second shell 200, it can avoid the earphone body 600 and other components from wearing each other with the side walls opposite to the first shell 100 and the second shell 200, so as to protect the earphone body 600 and other components.

[0115] In some embodiments, the first flexible protective layer 800 and the second flexible protective layer 900 may be respectively selected from at least one of PU (polyurethane) leather, microfiber leather, technical cloth, and PVC (polyvinyl chloride) leather.

[0116] In some embodiments, in order to allow both sides of the first connector 510 and the second connector 520 to be connected to the first housing 100 and the second housing 200, both sides of the first connector 510 and the second connector 520 may be arranged to be sandwiched by the first flexible protective layer 800 and the second flexible protective layer 900. The first connector 510 and the second connector 520 may be sandwiched by the first flexible protective layer 800 and the second flexible protective layer 900 on the first housing 100 to fix the first connector 510 and the second connector 520 to the first housing 100. The first connector 510 and the second connector 520 may be sandwiched by the first flexible protective layer 800 and the second flexible protective layer 900 on the second housing 200 to fix the third connector to the second housing 200.

[0117] The first flexible protective layer 800 and the second flexible protective layer 900 can also be arranged on opposite sides of the fourth shell 500, so that one side where the first connecting member 510 and the second connecting member 520 are connected to the fourth shell 500 can be sandwiched by the first flexible protective layer 800 and the second flexible protective layer 900 on the fourth shell 500.

[0118] Specifically, the first flexible protective layer 800 and the second flexible protective layer 900 on the first shell 100 may protrude from the edge of the first shell 100, and the first connector 510 and the second connector 520 may be sandwiched by the portion of the first flexible protective layer 800 and the second flexible protective layer 900 protruding from the edge of the first shell 100, so that the first connector 510 and the second connector 520 are prevented from being stacked on the first shell 100, thereby preventing the first connector 510 and the second connector 520 from having additional protruding structures on the opposite sides of the first shell 100. The first flexible protective layer 800 and the second flexible protective layer 900 on the second shell 200 may protrude from the edge of the second shell 200, and the first connector 510 and the second connector 520 may be sandwiched by the portion of the first flexible protective layer 800 and the second flexible protective layer 900 protruding from the edge of the second shell 200, thereby preventing the third connector from being stacked on the second shell 200, thereby preventing the side walls of the opposite sides of the second shell 200 from having additional protruding structures.

[0119] In some embodiments, the first connector 510, the second connector 520, the third connector, the first flexible protective layer 800, and the second flexible protective layer 900 in the present application can all be made of cloth wrapping, which has the characteristics of being retractable and deformable and relatively soft, and the cost of the cloth wrapping is relatively low. Of course, the first connector 510, the second connector 520, the third connector, the first flexible protective layer 800, and the second flexible protective layer 900 can also be made of other flexible structural parts such as polymer materials, and the present application does not limit this.

[0120] In addition, the first connector 510, the second connector 520 and the third connector may also be elastically structured. Specifically, when the cavity 140 is closed, the first connector 510, the second connector 520 and the third connector may be compressed and have elastic restoring force, and the elastic restoring force of the first connector 510, the second connector 520 and the third connector is smaller than the magnetic adsorption force between the second end 120 of the first shell 100 and the fourth end 220 of the second shell 200, so that the second ends 120 are reliably connected to the second ends 120 and the cavity 140 is reliably closed. When the user presses the first handle 130 and the second handle 230 to separate the second end 120 from the fourth end 220, the magnetic adsorption force between the second end 120 and the fourth end 220 is reduced to a level less than the elastic recovery force of the first connecting member 510, the second connecting member 520 and the third connecting member. In this way, the elastic recovery force of the flexible elastic member can act on the first shell 100 and the second shell 200, so that the second end 120 and the fourth end 220 can move away from each other more efficiently and separate, thereby making the opening process of the cavity 140 simpler and more efficient.

[0121] In some embodiments, reference Figure 5 and Fig. 9 As shown, the earphone box assembly of the present application may also include a charging component 700, which is disposed in the cavity 140 and can be used to charge the earphone body 600. The charging component 700 may be disposed in the third housing 300, and when the earphone body 600 is placed in the cavity 140, the earphone body 600 may be electrically connected to the charging component 700 to charge the earphone body 600.

[0122] A limiting groove for accommodating the earphone body 600 may also be provided on the charging component 700. At least a portion of the earphone body 600 may be embedded in the limiting groove. Corresponding metal contacts may be provided in the limiting groove and on the earphone body 600. When the earphone body 600 is embedded in the limiting groove, the earphone body 600 contacts the metal contacts in the limiting groove to charge the earphone body 600.

[0123] Based on the above earphone box assembly, an embodiment of the present application also proposes an earphone system, including the above earphone box assembly and an earphone body 600, wherein the earphone body 600 can be detachably installed in the cavity 140, and the earphone body 600 can be taken out and placed in the cavity 140 by opening and closing the cavity 140.

[0124] Finally, it should be noted that the above implementation modes are only used to illustrate the technical solutions of the present application, rather than to limit it. Although the present application has been described in detail with reference to the aforementioned implementation modes, a person of ordinary skill in the art should understand that the technical solutions described in the aforementioned implementation modes can still be modified, or some or all of the technical features therein can be replaced by equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the implementation modes of the present application.

Claims

1. An earphone box assembly, characterized in that: include: A first housing (100) having a first end (110) and a second end (120); The second shell (200) has a third end (210) and a fourth end (220), the second shell (200) is arranged opposite to the first shell (100), the first end (110) is movably connected to the third end (210), the first shell (100) and the second shell (200) are arranged to form a cavity (140) for accommodating earphones, and the second end (120) and the fourth end (220) are configured to be movable toward or away from each other so that the cavity (140) is closed or opened; a first handle (130) protruding from the second end (120); A second handle (230) protruding from the fourth end (220); Wherein, when the receiving cavity (140) is closed, at least a portion of the first handle (130) and the second handle (230) are arranged in a staggered manner.

2. The earphone box assembly according to claim 1, characterized in that: In at least one direction among the thickness direction, the width direction and the length direction of the first handle (130), the first handle (130) is provided with a first concave area (132) and a first convex area (131); in at least one direction among the thickness direction, the width direction and the length direction of the second handle (230), the second handle (230) is provided with a second concave area (232) and a second convex area (231); when the housing cavity (140) is closed, the first concave area (132) and the second convex area (231) are opposite to each other, and the first convex area (131) and the second concave area (232) are opposite to each other so that the first handle (130) and the second handle (230) are arranged in a staggered manner.

3. The earphone box assembly according to claim 1, characterized in that: When the cavity (140) is closed, the second end (120) is magnetically connected to the fourth end (220); and / or, The first handle (130) is connected to the second handle (230) by magnetic attraction.

4. The earphone box assembly according to claim 2, characterized in that: The earphone box assembly also includes a first magnetic member (133) and a second magnetic member (233); The first magnetic member (133) is disposed at the second end (120), and the second magnetic member (233) is disposed at the fourth end (220); and / or, The first magnetic member (133) is arranged on the first handle (130), and the second magnetic member (233) is arranged on the second handle (230).

5. The earphone box assembly according to claim 1, characterized in that: The earphone box assembly also includes a third shell (300), and opposite sides of the third shell (300) are respectively connected to the first end (110) of the first shell (100) and the third end (210) of the second shell (200) through a rotating connecting piece (400).

6. The earphone box assembly according to claim 5, characterized in that: The rotating connection member (400) comprises a deformable structural member or a rotating shaft.

7. The earphone box assembly according to claim 6, characterized in that: The deformable structural component comprises a polymer elastic structural component; and / or the deformable structural component is connected to the first shell (100) and the third shell (300) in a T-shape.

8. The earphone box assembly according to claim 5, characterized in that: The earphone box assembly further comprises a fourth shell (500), wherein the fourth shell (500) is fixedly connected to the third shell (300), and the first shell (100), the second shell (200), the third shell (300) and the fourth shell (500) are jointly arranged to form the cavity (140); wherein the fourth shell (500) is provided with a port for charging the earphone box assembly and / or an indicator light for displaying the power level of the earphone box assembly.

9. The earphone box assembly according to claim 8, characterized in that: The earphone box assembly also includes a first connecting member (510), one end of the first connecting member (510) is connected to the first shell (100), and the other end of the first connecting member (510) is connected to the fourth shell (500), when the second end (120) of the first shell (100) moves toward or away from the fourth end (220) of the second shell (200), the straight-line distance between the first connecting member (510) and the fourth shell (500) decreases or increases accordingly.

10. The earphone box assembly according to claim 1, characterized in that: The earphone box assembly also includes a third connecting member, one side of the third connecting member is connected to the edge of the first shell (100) between the first end (110) and the second end (120), and the other side of the third connecting member is connected to the edge of the second shell (200) between the third end (210) and the fourth end (220). The first shell (100), the second shell (200) and the third connecting member are arranged to form the cavity (140). When the second end (120) and the fourth end (220) move toward each other, the third connecting member is compressed, and when the second end (120) and the fourth end (220) move away from each other, the third connecting member is stretched.

11. The earphone box assembly according to claim 5, characterized in that: The earphone box assembly further comprises a first flexible protective layer (800), which is coated on the outer wall of the first shell (100) and the second shell (200) opposite to each other; and / or the earphone box assembly further comprises a second flexible protective layer (900), which is coated on the inner wall of the first shell (100) and the second shell (200) facing each other.

12. The earphone box assembly according to claim 11, characterized in that: The first flexible protective layer (800) and the second flexible protective layer (900) are respectively selected from at least one of PU leather, microfiber leather, technical cloth, and PVC leather.

13. The earphone box assembly according to claim 1, characterized in that: The earphone box assembly further comprises a charging component (700), and the charging component (700) is arranged in the housing cavity (140).

14. An earphone system, characterized in that: It comprises an earphone body (600) and an earphone box assembly as claimed in any one of claims 1 to 13, wherein the earphone body (600) is detachably arranged in a cavity (140) of the earphone box assembly.

Citation Information

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