Earphone assembly comfortable to wear and ear clip earphone

By incorporating rotatable and swingable movable parts into the headphone assembly, the problem of fixed positions between the ear hook and ear shell components is solved, improving wearing comfort and versatility.

CN224218494UActive Publication Date: 2026-05-08SHENZHEN BASEUS TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN BASEUS TECH CO LTD
Filing Date
2025-04-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The ear hook and ear shell components in the headphone assembly are in a fixed relative position and cannot be adjusted according to the user's ears, resulting in a poor wearing experience and reducing the universality of the headphones.

Method used

A comfortable headphone assembly is designed, wherein the connecting component includes a connecting part and a movable part. The movable part can rotate axially around a through hole and swing radially along the through hole within a receiving cavity. By adjusting the rotation and swing amplitude of the movable part, it can be adapted to the user's ear, thereby improving wearing comfort and versatility.

Benefits of technology

This improves the wearing experience of the headphone components, making them suitable for a wider range of users and enhancing the versatility of the headphones.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224218494U_ABST
    Figure CN224218494U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of earphones, in particular to an earphone assembly comfortable to wear and an ear clip earphone. The earphone comprises an ear hook part, an ear shell part and a connecting part, the ear shell part comprises a shell, the shell comprises a containing cavity, a through hole communicated with the containing cavity is formed in the shell, the connecting part comprises a connecting part and a movable part, the connecting part is connected with the ear hook part, the movable part is movably arranged in the containing cavity, and the connecting part is connected with the ear hook part. The part, located in the through hole, of the connecting part is in clearance fit with the through hole, and the movable part can rotate in the containing cavity in the axial direction of the through hole and swing in the radial direction of the through hole. By applying the technical scheme of the invention, the wearing experience of the earphone can be improved, so that the universality of the earphone is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of headphone technology, and more particularly to a comfortable headphone assembly and clip-on headphones. Background Technology

[0002] In today's society, headphones have become an indispensable electronic product in people's daily lives. Among them, headphones are increasingly favored by users due to their unique wearing method and stylish appearance. The ear hook and ear shell components of headphones interact to fit the user's ears; for example, the ear hook and ear shell components interact to clamp onto the user's ears to adapt to diverse user needs.

[0003] The problem with the aforementioned headphones is that the relative positions of the ear hook and ear shell components in the headphone assembly are fixed and cannot be adjusted according to the user's ears, resulting in a poor wearing experience and reducing the versatility of the headphone assembly. Utility Model Content

[0004] To address the aforementioned issues, this application provides a comfortable headphone assembly and clip-on headphones, which enhance the wearing experience of headphones and improve their versatility.

[0005] In a first aspect, this application provides a comfortable headphone assembly, which includes an ear hook component, an ear shell component, and a connecting component. The ear shell component includes a housing with a receiving cavity and a through hole communicating with the receiving cavity. The connecting component includes a connecting part and a movable part. The connecting part is connected to the ear hook component, and the movable part is movably disposed within the receiving cavity. The portion of the connecting part located within the through hole is clearance-fitted with the through hole, and the movable part is capable of rotating axially around the through hole and swinging radially along the through hole within the receiving cavity.

[0006] The comfortable headphone assembly provided in this application features a connecting component comprising a connecting part and a movable part. The connecting part connects to the ear hook component, while the movable part is movably disposed within the receiving cavity. This allows the connecting part to connect the ear hook component and the ear shell component. Furthermore, the movable part is movably disposed within the receiving cavity, with the portion of the connecting part located at the through-hole fitting with the through-hole. The movable part can rotate axially around the through-hole and swing radially along the through-hole within the receiving cavity. Thus, when a user requires a comfortable headphone assembly, they can adjust the rotation amplitude of the movable part around the through-hole within the receiving cavity and the swing amplitude of the movable part along the through-hole within the receiving cavity to better fit their ears, thereby improving the wearing comfort of the headphone assembly. Additionally, the movable part's ability to rotate axially around the through-hole within the receiving cavity and swing radially along the through-hole accommodates a wider range of wearers, thus improving the versatility of the comfortable headphone assembly. Compared to related technologies, where the relative positions of the ear hook and ear shell components in comfortable headphone assemblies are fixed and cannot be adjusted according to the user's ears, resulting in a poor wearing experience and reduced versatility, this application addresses the technical problem of providing a connecting component that allows the ear hook component to rotate axially around a through hole and swing radially along the through hole within the receiving cavity via a movable part in the connecting component. This enables the ear hook component to rotate axially around the through hole and swing radially along the through hole relative to the ear shell component, thereby providing a comfortable wearing experience and improving the versatility of comfortable headphone assemblies.

[0007] In one possible implementation provided in this application, the movable part is a spherical structure, and the portion of the spherical structure located at the through hole is in clearance fit with the through hole, wherein the diameter of the spherical structure is smaller than the diameter of the through hole.

[0008] In one possible implementation provided in this application, a comfortable headphone assembly includes a first limiting structure disposed on at least one of the movable part and the housing to limit the radial swing amplitude of the movable part within the receiving cavity along the through hole.

[0009] In one possible implementation provided in this application, the first limiting structure includes the outer contour of the movable part located at the through hole and the hole wall of the through hole. When the movable part can swing radially along the through hole within the receiving cavity to a preset swing amplitude, the outer contour of the movable part located at the through hole abuts against the hole wall of the through hole.

[0010] In one possible implementation provided in this application, a comfortable headphone assembly includes a second limiting structure disposed on at least one of the movable part and the housing to limit the axial rotation range of the movable part about the through hole within the receiving cavity.

[0011] In one possible implementation provided in this application, the second limiting structure includes a groove extending circumferentially along the through hole on the movable part along the radial direction of the through hole, and a protrusion provided on the cavity wall of the receiving cavity, the protrusion being located in the groove. When the movable part can rotate around the through hole in the cavity to a preset rotation range, the protrusion abuts against the groove wall along the axial direction of the through hole.

[0012] In one possible implementation provided in this application, the housing includes a limiting ring, the outer ring of which is detachably connected to the cavity wall of the receiving cavity, a movable portion being movably disposed in the inner ring of the limiting ring, and a second limiting structure including a groove on the movable portion and located in the inner ring of the limiting ring extending axially along the through hole, and a protrusion disposed on the inner ring of the limiting ring, the protrusion being located in the groove. When the movable portion can rotate axially around the through hole within the receiving cavity to a preset rotation range, the protrusion abuts against the groove wall of the groove along the axial direction of the through hole.

[0013] In one possible implementation provided in this application, the radial dimension of the inner ring of the limiting ring along the through hole is smaller than the diameter of the spherical structure.

[0014] In one possible implementation provided in this application, the connecting component further includes a transition portion located between the connecting portion and the movable portion. Along the radial direction of the through hole, the size of the transition portion is smaller than the size of the connecting portion and the movable portion.

[0015] In a second aspect, this application provides a comfortable ear clip-on headphone, including a comfortable earphone assembly and a battery component provided in any of the first aspects, wherein the battery component is disposed on at least one of the connecting component, ear hook component and ear shell component in the comfortable earphone assembly; when worn, the ear shell component is used to penetrate into the ear canal.

[0016] Thirdly, this application provides a comfortable ear clip-on earphone, including an ear hook component, an ear shell component, and a connecting component. The ear shell component includes a housing with a receiving cavity and a through hole communicating with the receiving cavity. The connecting component includes a connecting part and a movable part. The connecting part is connected to the ear hook component, and the movable part is movably disposed within the receiving cavity. The portion of the connecting part located at the through hole is clearance-fitted with the through hole. The movable part is capable of rotating axially around the through hole and swinging radially along the through hole within the receiving cavity. A battery component is disposed on at least one of the ear hook component, the ear shell component, and the connecting component. When worn, the ear shell component is used to extend into the ear canal.

[0017] In one possible implementation provided in this application, the housing includes an upper housing and a lower housing, which are fastened together to form a receiving cavity, and the lower housing has a sound outlet; when worn, the portion of the lower housing with at least the sound outlet is used to extend into the ear canal.

[0018] In one possible implementation provided in this application, the ear shell component includes an ear cap, and the shell has a sound outlet. The ear cap is connected to the position on the shell where the sound outlet is located. When worn, the ear cap is used to extend into the ear canal. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of a comfortable headphone assembly provided in an embodiment of this application;

[0020] Figure 2 An exploded view of a comfortable headphone assembly provided in an embodiment of this application;

[0021] Figure 3 This is a schematic diagram of the ear hook component in a headphone assembly for comfortable wear provided in an embodiment of this application;

[0022] Figure 4 A first-view structural schematic diagram of the connecting component in a comfortable headphone assembly provided in an embodiment of this application;

[0023] Figure 5 A second-view structural schematic diagram of the connecting component in a comfortable headphone assembly provided in an embodiment of this application;

[0024] Figure 6 This is a schematic diagram of the ear shell component in a headphone assembly for comfortable wear provided in an embodiment of this application;

[0025] Figure 7 This is a schematic diagram of the structure of the upper shell in the ear shell component provided in the embodiments of this application;

[0026] Figure 8 This is a schematic diagram of the structure of the lower shell in the ear shell component provided in the embodiments of this application;

[0027] Figure 9 This is a schematic diagram of the structure of the limiting ring in the ear shell component provided in the embodiments of this application;

[0028] Figure 10 A schematic diagram of the structure of a movable part in a headphone assembly for comfortable wearing provided in this application, showing the axial rotation of the movable part around the through hole within the receiving cavity by a first angle;

[0029] Figure 11 A schematic diagram of the structure of a movable part in a headphone assembly for comfortable wearing provided in this application, showing the second angle of axial rotation around a through hole within the receiving cavity;

[0030] Figure 12 A schematic diagram of the structure of the movable part of the earphone assembly for comfortable wearing provided in this application, showing the axial rotation of the movable part around the through hole at a third angle within the receiving cavity;

[0031] Figure 13A schematic diagram of the structure of a movable part in a headphone assembly for comfortable wearing provided in this application, showing it swinging radially to a first position within a receiving cavity along a through hole;

[0032] Figure 14 A schematic diagram of the structure of a movable part in a comfortable headphone assembly provided in this application, showing it swinging radially to a second position within a receiving cavity along a through hole;

[0033] Figure 15 A schematic diagram of the structure of a comfortable headphone assembly provided in this application, in which the movable part swings radially along the through hole to a third position within the receiving cavity.

[0034] Figure label:

[0035] 1-Comfortable headphone assembly; 11-Ear hook assembly; 12-Ear shell assembly; 121-Shell; 1211-Upper shell; 1212-Lower shell; 1213-Receiving cavity; 1214-Through hole; 1215-Limiting ring; 12151-Protrusion; 13-Connecting component; 131-Connecting part; 132-Transition part; 133-Moving part; 1331-Groove. Detailed Implementation

[0036] It should be noted that, unless otherwise specified, the embodiments and technical features in the embodiments of this application can be combined with each other, and the detailed descriptions in the specific implementation should be understood as explanations of the purpose of this application and should not be regarded as undue limitations on this application.

[0037] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the specific technical solutions of this application will be further described in detail below with reference to the accompanying drawings of the embodiments of this application. The following embodiments are used to illustrate this application, but are not intended to limit the scope of this application.

[0038] In the embodiments of this application, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first," "second," or "third" may explicitly or implicitly include one or more of that feature. In the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more.

[0039] Furthermore, in the embodiments of this application, directional terms such as "upper," "lower," "left," and "right" are defined relative to the positions in which the components are schematically placed in the accompanying drawings. It should be understood that these directional terms are relative concepts, used for relative description and clarification, and can change accordingly depending on the position of the components in the accompanying drawings.

[0040] In the embodiments of this application, unless otherwise explicitly specified and limited, the term "connection" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral part; it can be a direct connection or an indirect connection through an intermediate medium.

[0041] In embodiments of this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[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 design. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0043] Reference Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 This application provides a comfortable headphone assembly 1, which includes an ear hook component 11, an ear shell component 12, and a connecting component 13. The ear shell component 12 includes a housing 121, which includes a receiving cavity 1213. The housing 121 has a through hole 1214 communicating with the receiving cavity 1213. The connecting component 13 includes a connecting part 131 and a movable part 133. The connecting part 131 is connected to the ear hook component 11, and the movable part 133 is movably disposed in the receiving cavity 1213. The portion of the connecting part 13 located in the through hole 1214 is clearance-fitted with the through hole 1214. The movable part 133 can rotate axially around the through hole 1214 and swing radially along the through hole 1214 within the receiving cavity 1213.

[0044] In this embodiment, the comfortable headphone assembly 1 can be a wired comfortable headphone assembly 1; the comfortable headphone assembly 1 provided in this embodiment can be a dynamic driver comfortable headphone assembly 1; the comfortable headphone assembly 1 provided in this embodiment can be a wireless Bluetooth comfortable headphone assembly 1; this embodiment does not limit the scope of the application. In one possible implementation provided in this embodiment, the comfortable headphone assembly 1 provided in this embodiment is a wireless Bluetooth comfortable headphone assembly 1. It should be further noted that the wireless Bluetooth comfortable headphone assembly 1 applies Bluetooth technology to a hands-free comfortable headphone assembly 1, allowing users to be free from the entanglement of annoying wires and freely make calls in various ways. Specifically, the wireless Bluetooth comfortable headphone assembly 1 includes a Bluetooth comfortable headphone assembly 1 and an infrared comfortable headphone assembly 1.

[0045] In this embodiment, the comfortable headphone assembly 1 includes an ear hook component 11, an ear shell component 12, and a connecting component 13. Here, the connecting component 13 is located between the ear hook component 11 and the ear shell component 12, and is used to connect the ear hook component 11 and the ear shell component 12 into a whole. Based on this, the ear hook component 11 and the ear shell component 12 interact to wear the comfortable headphone assembly 1 on the user's ear. Here, the interaction between the ear hook component 11 and the ear shell component 12 can be that the ear hook component 11 and the ear shell component 12 clamp each other on the ear. In other words, the comfortable headphone assembly 1 is an ear clip-on comfortable headphone assembly 1.

[0046] In this embodiment of the application, the comfortable headphone assembly 1 includes an ear hook component 11; here, the ear hook component 11 may include an ear hook; the ear hook component 11 may include an ear hook and a battery; the ear hook component 11 may include an ear hook and a button switch, etc.; in this embodiment of the application, no limitation is imposed.

[0047] Reference Figure 6 , Figure 7 and Figure 8 In this embodiment, the ear shell component 12 includes a housing 121, which includes a receiving cavity 1213. Here, the housing 121 can be formed by connecting an upper housing 1211 and a lower housing 1212; the housing 121 can also be integrally formed; this embodiment does not limit the specific implementation. In one possible implementation provided by this embodiment, the housing 121 includes a back cover and a horn cover, which are connected to form the housing 121. Specifically, the back cover and the horn cover can be glued to form the housing 121; the back cover and the horn cover can be snap-fitted to form the housing 121; the back cover and the horn cover can be threaded together to form the housing 121; this embodiment also does not limit the specific implementation. In one possible implementation provided by this embodiment, the back cover and the horn cover can be snap-fitted to form the housing 121.

[0048] In this embodiment, the ear shell component 12 includes a housing 121, and the housing 121 includes a receiving cavity 1213. Here, the ear shell component 12 may further include a speaker located within the receiving cavity 1213; the ear shell component 12 may also include a circuit board located within the receiving cavity 1213; of course, the ear shell component 12 may also include other parts, and this embodiment does not limit this. In one possible implementation provided by this embodiment, the ear shell component 12 includes a speaker located within the receiving cavity 1213.

[0049] In this embodiment, the ear shell component 12 includes a housing 121, and the housing 121 includes a receiving cavity 1213. Here, the inner contour shape of the receiving cavity 1213 can be a regular shape, for example, the inner contour shape of the receiving cavity 1213 is spherical, or for example, the inner contour shape of the receiving cavity 1213 is a cube or cuboid shape; of course, the inner contour shape of the receiving cavity 1213 can also be an irregular shape, and this embodiment does not limit this. In one possible implementation provided by this embodiment, the inner contour shape of the receiving cavity 1213 is spherical.

[0050] In this embodiment, the connecting component 13 includes a connecting portion 131 and a movable portion 133. The connecting portion 131 is connected to the ear hook component 11. Here, the connection between the connecting portion 131 and the ear hook component 11 can be a non-detachable connection, for example, welding the connecting portion 131 to the ear hook component 11, or bonding the connecting portion 131 to the ear hook component 11. Alternatively, the connection between the connecting portion 131 and the ear hook component 11 can be a detachable connection, for example, threaded connection, or snap-fit ​​connection. Furthermore, the connection between the connecting portion 131 and the ear hook component 11 can include both non-detachable and detachable connections; this embodiment does not limit the specific type of connection. In one possible implementation provided by this embodiment, the connection between the connecting portion 131 and the ear hook component 11 is achieved through a combination of bonding and snap-fit ​​structures.

[0051] In this embodiment, the connecting member 13 includes a connecting portion 131 and a movable portion 133. The outer contour shape of the connecting portion 131 can be a regular shape, for example, a cylinder or a cuboid. Alternatively, the outer contour shape of the connecting portion 131 can be an irregular shape; this embodiment does not limit the specific shape. In one possible implementation of this embodiment, the outer contour shape of the connecting portion 131 is cylindrical. Similarly, the outer contour shape of the movable portion 133 can be a regular shape, for example, a cylinder or a cuboid. Alternatively, the outer contour shape of the movable portion 133 can be an irregular shape; this embodiment does not limit the specific shape. In one possible implementation of this embodiment, the outer contour shape of the movable portion 133 is spherical.

[0052] In this embodiment, the movable part 133 is movably disposed within the receiving cavity 1213. Here, the outer contour shape of the movable part 133 may be the same as the inner contour shape of the receiving cavity 1213. For example, both the outer contour shape of the movable part 133 and the inner contour shape of the receiving cavity 1213 may be spherical. Alternatively, the outer contour shape of the movable part 133 may be different from the inner contour shape of the receiving cavity 1213. For example, the outer contour shape of the movable part 133 may be spherical, while the inner contour shape of the receiving cavity 1213 may be cubic.

[0053] In this embodiment, the clearance fit between the portion of the connecting member 13 located in the through hole 1214 and the through hole 1214 means that there is a gap between the portion of the connecting member 13 located in the through hole 1214 and the inner wall of the through hole 1214. This clearance fit can be a portion of the connecting part 131, a portion of the movable part 133, or a portion of the connecting member 13 excluding the connecting part 131 and the movable part 133. This embodiment does not limit the specific implementation of this method. In one possible implementation provided by this embodiment, a portion of the movable part 133 is in clearance fit with the through hole 1214.

[0054] In this embodiment, the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213 and swing radially along the through hole 1214. Here, the rotation range of the movable part 133 within the receiving cavity 1213 around the through hole 1214 can be ±180 degrees, ±90 degrees, or ±26 degrees. It should be noted that this embodiment does not limit the specific rotation range of the movable part 133 within the receiving cavity 1213 around the through hole 1214. In one possible implementation of this application embodiment, the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213 by an amplitude of ±26 degrees; similarly, the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 by an amplitude of 0 to 90 degrees; it can also be 0 to 30 degrees; or it can be 0 to 18 degrees. It should be noted that this application embodiment does not limit the specific radial amplitude of the movable part 133 swinging radially along the through hole 1214 within the receiving cavity 1213. In one possible implementation of this application embodiment, the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 by an amplitude of 0 to 18 degrees.

[0055] The comfortable headphone assembly 1 provided in this embodiment of the application has a connecting member 13 including a connecting part 131 and a movable part 133. The connecting part 131 is connected to the ear hook part 11, and the movable part 133 is movably disposed within the receiving cavity 1213. In this way, the connecting member 13 connects the ear hook part 11 and the ear shell part 12. Based on this, the movable part 133 is movably disposed within the receiving cavity 1213. The portion of the connecting member 13 located at the through hole 1214 is clearance-fitted with the through hole 1214. The movable part 133 can rotate around the axial direction of the through hole 1214 and swing radially along the through hole 1214 within the receiving cavity 1213. Thus, when the comfortable headphone assembly 1 is not worn, in other words, when the comfortable headphone assembly 1 is in its natural state, the connecting part 131 and the movable part 133 are coaxial along the axial direction of the through hole 1214. The centerline of the ear hook component 11 and the radial direction of the ear shell component 12 along the through hole 1214 are on the same plane. When the user needs to wear the headphone assembly 1 comfortably and finds that it does not fit the ear or is uncomfortable, the user can adjust the rotation amplitude of the movable part 133 in the accommodating cavity 1213 around the through hole 1214 axially and the swing amplitude of the movable part 133 in the accommodating cavity 1213 along the through hole 1214 radially. For example, the user can manually adjust the rotation amplitude of the movable part 133 in the accommodating cavity 1213 around the through hole 1214 axially and the swing amplitude of the movable part 133 in the accommodating cavity 1213 along the through hole 1214 radially to change the position of the ear hook component 11 relative to the ear shell component 12, thereby better fitting the user's ear and improving the wearing comfort of the headphone assembly 1. Furthermore, the movable part 133 can rotate axially around the through hole 1214 and swing radially along the through hole 1214 within the receiving cavity 1213 to accommodate a wider range of wearers, thereby improving the versatility of the headphone assembly 1 for comfortable wear. Compared to related technologies, where the relative positions of the ear hook component 11 and the ear shell component 12 in the headphone assembly are fixed and cannot be adjusted according to the user's ears, resulting in a poor wearing experience and reduced versatility of the headphone assembly, this application addresses the technical problem by providing a connecting component 13. This allows the ear hook component 11 to rotate axially around the through hole 1214 and swing radially along the through hole 1214 within the receiving cavity 1213 via the movable part 133. This enables the ear hook component 11 to rotate axially around the through hole 1214 and swing radially along the through hole 1214 relative to the ear shell component 12, thereby improving the wearing experience of the headphone assembly 1 for comfortable wear and enhancing its versatility.

[0056] Reference Figure 1 , Figure 2 , Figure 4 and Figure 5This application provides a comfortable headphone assembly 1, in which the movable part 133 is a spherical structure, and the part of the spherical structure located at the through hole 1214 is in clearance fit with the through hole 1214, and the diameter of the spherical structure is smaller than the diameter of the through hole 1214.

[0057] In this embodiment, the movable part 133 is a spherical structure, and both the connecting part 131 and the movable part 133 belong to the connecting component 13. Here, the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213. In this case, the axial direction of the spherical structure is parallel to, or collinear with, the axial direction of the connecting part 131. In one possible implementation provided in this embodiment, the movable part 133 is a spherical structure, and the connecting part 131 is a cylindrical structure. The axis of the spherical structure is collinear with the axis of the cylindrical structure.

[0058] The comfortable headphone assembly 1 provided in this application embodiment has a spherical structure for the movable part 133, which facilitates manufacturing. The axial rotation of the movable part 133 within the receiving cavity 1213 around the through hole 1214 refers to the entire sphere rotating axially within the receiving cavity 1213 around the through hole 1214. The radial oscillation of the movable part 133 within the receiving cavity 1213 along the through hole 1214 refers to the oscillation with the center of the spherical structure as the pivot point. The portion of the spherical structure located at the through hole 1214 is in clearance fit with the through hole 1214, and the diameter of the spherical structure is smaller than the diameter of the through hole 1214. This reduces the likelihood of the ear shell body detaching from the movable part 133.

[0059] Reference Figure 13 , Figure 14 and Figure 15 This application provides a comfortable headphone assembly 1, which includes a first limiting structure disposed on at least one of the movable part 133 and the housing 121 to limit the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214.

[0060] In this embodiment, the comfortable headphone assembly 1 includes a first limiting structure, which is disposed on at least one of the movable part 133 and the housing 121. Here, the first limiting structure may be disposed only on the movable part 133; the first limiting structure may be disposed only on the housing 121; the first limiting structure may be partially disposed on the movable part 133 and partially disposed on the housing 121. This embodiment does not impose any limitations on this. In one possible implementation provided by this embodiment, a portion of the first limiting structure is disposed on the movable part 133 and a portion is disposed on the housing 121.

[0061] In this embodiment, the comfortable headphone assembly 1 includes a first limiting structure, which is disposed on at least one of the movable part 133 and the housing 121. Here, when all or part of the first limiting structure is disposed on the housing 121, this part can be the wall of the through hole 1214; this part can also be the wall of the receiving cavity 1213; this part can also be other parts of the housing 121, etc.; this embodiment does not limit this. In one possible implementation provided by this embodiment, a portion of the first limiting structure is disposed on the housing 121, and this portion is the wall of the through hole 1214.

[0062] In this embodiment, the comfortable headphone assembly 1 includes a first limiting structure to restrict the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214. Here, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by directly having the outer contour of the movable part 133 located at the through hole 1214 abut against the wall of the through hole 1214. Alternatively, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by having a snap-fit ​​groove 1331 and a snap-fit ​​protrusion 12151 provided between the outer contour of the movable part 133 located at the through hole 1214 and the wall of the through hole 1214. Of course, the first limiting structure can also have other limiting methods, which are not limited in this embodiment. In one possible implementation provided in this application embodiment, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by having the outer contour of the movable part 133 located at the through hole 1214 abut against the through hole 1214.

[0063] The comfortable headphone assembly 1 provided in this application embodiment limits the radial swing amplitude of the movable part 133 along the through hole 1214 within the receiving cavity 1213 by providing a first limiting structure on at least one of the movable part 133 and the housing 121. This reduces the phenomenon of the movable part 133 getting stuck in the receiving cavity 1213 due to excessive radial swing of the movable part 133 along the through hole 1214 within the receiving cavity 1213.

[0064] This application provides a comfortable headphone assembly 1. The first limiting structure includes the outer contour of the movable part 133 located at the through hole 1214 and the hole wall of the through hole 1214. When the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 to a preset swing amplitude, the outer contour of the movable part 133 located at the through hole 1214 abuts against the hole wall of the through hole 1214.

[0065] In this embodiment, when the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 to a preset swing amplitude, the outer contour of the movable part 133 located at the through hole 1214 abuts against the hole wall of the through hole 1214. Here, one of the sizes of the preset swing amplitude depends on the size of the gap between the outer contour of the movable part 133 located at the through hole 1214 and the hole wall of the through hole 1214. The larger the preset swing amplitude, the larger the gap between the outer contour of the movable part 133 located at the through hole 1214 and the hole wall of the through hole 1214. Correspondingly, the smaller the preset swing amplitude, the smaller the gap between the outer contour of the movable part 133 located at the through hole 1214 and the hole wall of the through hole 1214.

[0066] In this embodiment, when the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 to a preset swing amplitude, the outer contour of the movable part 133 located at the through hole 1214 abuts against the hole wall of the through hole 1214. Here, the preset swing amplitude can be 0 degrees to 90 degrees; the preset swing amplitude can be 0 degrees to 30 degrees; the preset swing amplitude can be 0 degrees to 18 degrees; this embodiment does not limit this. In one possible implementation provided by this embodiment, the preset swing amplitude is 0 degrees to 18 degrees.

[0067] The comfortable headphone assembly 1 provided in this application embodiment has a first limiting structure including the outer contour of the movable part 133 located at the through hole 1214 and the hole wall of the through hole 1214. When the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 to reach a preset swing amplitude, the outer contour of the movable part 133 located at the through hole 1214 abuts against the hole wall of the through hole 1214, thus completing the limiting. It has the technical effect of simple structure and easy implementation.

[0068] Reference Figure 10 , Figure 11 and Figure 12 This application provides a comfortable headphone assembly 1, which includes a second limiting structure disposed on at least one of the movable part 133 and the housing 121 to limit the axial rotation range of the movable part 133 around the through hole 1214 within the receiving cavity 1213.

[0069] In this embodiment, the comfortable headphone assembly 1 includes a second limiting structure, which is disposed on at least one of the movable part 133 and the housing 121. Here, the second limiting structure may be disposed only on the movable part 133; the second limiting structure may be disposed only on the housing 121; the second limiting structure may be partially disposed on the movable part 133 and partially disposed on the housing 121. This embodiment does not limit the specific implementation of the second limiting structure. In one possible implementation provided by this embodiment, a portion of the second limiting structure is disposed on the movable part 133 and a portion is disposed on the housing 121.

[0070] In this embodiment, the comfortable headphone assembly 1 includes a second limiting structure, which is disposed on at least one of the movable part 133 and the housing 121. Here, when the second limiting structure is disposed entirely or partially on the housing 121, the portion may be the wall of the through hole 1214, or the wall of the receiving cavity 1213; the portion may also be other parts of the housing 121, etc. This embodiment does not limit the scope of the application.

[0071] In this embodiment, the comfortable headphone assembly 1 includes a second limiting structure to restrict the axial rotation range of the movable part 133 around the through hole 1214 within the receiving cavity 1213. Here, the second limiting structure restricts the axial rotation range of the movable part 133 around the through hole 1214 within the receiving cavity 1213 by having a groove 1331 formed on the movable part 133 abut against a protrusion 12151 provided on the cavity wall of the receiving cavity 1213. Alternatively, the second limiting structure may restrict the axial rotation range of the movable part 133 around the through hole 1214 within the receiving cavity 1213 by having a groove 1331 formed on the movable part 133 abut against a protrusion 12151 of a limiting ring 1215 installed on the cavity wall of the receiving cavity 1213. Of course, the second limiting structure may have other limiting methods, which are not limited in this embodiment.

[0072] In this embodiment, the comfortable headphone assembly 1 includes a first limiting structure to restrict the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214. Here, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by directly having the outer contour of the movable part 133 located at the through hole 1214 abut against the wall of the through hole 1214. Alternatively, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by having a snap-fit ​​groove 1331 and a snap-fit ​​protrusion 12151 provided between the outer contour of the movable part 133 located at the through hole 1214 and the wall of the through hole 1214. Of course, the first limiting structure can also have other limiting methods, which are not limited in this embodiment. In one possible implementation provided in this application embodiment, the first limiting structure restricts the radial swing amplitude of the movable part 133 within the receiving cavity 1213 along the through hole 1214 by having the outer contour of the movable part 133 located at the through hole 1214 abut against the through hole 1214.

[0073] The comfortable headphone assembly 1 provided in this application embodiment limits the axial rotation of the movable part 133 around the through hole 1214 within the receiving cavity 1213 by providing a second limiting structure on at least one of the movable part 133 and the housing 121. This reduces the phenomenon of the movable part 133 getting stuck within the receiving cavity 1213 due to excessive axial rotation of the movable part 133 around the through hole 1214 within the receiving cavity 1213.

[0074] Reference Figure 4 , Figure 5 and Figure 9 This application provides a comfortable headphone assembly 1. The second limiting structure includes a groove 1331 extending circumferentially along the through hole 1214 on the movable part 133 along the radial direction of the through hole 1214, and a protrusion 12151 provided on the cavity wall of the receiving cavity 1213. The protrusion 12151 is located in the groove 1331. When the movable part 133 can rotate around the through hole 1214 within the receiving cavity 1213 to a preset rotation range, the protrusion 12151 abuts against the groove wall of the groove 1331 along the axial direction of the through hole 1214.

[0075] In this embodiment, when the movable part 133 can rotate within the receiving cavity 1213 around the through hole 1214 to a preset rotation range, the protrusion 12151 abuts against the groove wall of the groove 1331 along the axial direction of the through hole 1214. Here, one of the magnitudes of the preset rotation range depends on the extension length of the groove 1331 extending along the axial direction of the through hole 1214 on the movable part 133. The larger the preset rotation range, the longer the extension length of the groove 1331 extending along the axial direction of the through hole 1214 on the movable part 133. Correspondingly, the smaller the preset rotation range, the shorter the extension length of the groove 1331 extending along the axial direction of the through hole 1214 on the movable part 133.

[0076] In this embodiment, when the movable part 133 can rotate within the receiving cavity 1213 around the through hole 1214 to a preset rotation range, the protrusion 12151 abuts against the groove wall of the groove 1331 along the axial direction of the through hole 1214. Here, the preset rotation range can be ±180 degrees, ±90 degrees, or ±26 degrees; this embodiment does not limit this. In one possible implementation provided by this embodiment, the preset rotation range is ±26 degrees.

[0077] The comfortable headphone assembly 1 provided in this application embodiment has a second limiting structure including a groove 1331 extending axially along the through hole 1214 on the movable part 133 along the radial direction of the through hole 1214, and a protrusion 12151 provided on the cavity wall of the receiving cavity 1213. When the movable part 133 can rotate around the through hole 1214 within the receiving cavity 1213 to a preset rotation range, the protrusion 12151 and the groove 1331 abut against the groove wall along the axial direction of the through hole 1214, thus completing the limiting. It has the technical effect of simple structure and easy implementation.

[0078] Reference Figure 4 , Figure 5 and Figure 6 This application provides a comfortable headphone assembly 1. The housing 121 includes a limiting ring 1215. The outer ring of the limiting ring 1215 is detachably connected to the cavity wall of the receiving cavity 1213. A portion of the movable part 133 is movably disposed in the inner ring of the limiting ring 1215. The second limiting structure includes a groove 1331 on the movable part 133 and located in the inner ring of the limiting ring 1215, extending axially along the through hole 1214. A protrusion 12151 is provided on the inner ring of the limiting ring 1215. The protrusion 12151 is located in the groove 1331. When the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213 to a preset rotation range, the protrusion 12151 abuts against the groove wall of the groove 1331 along the axial direction of the through hole 1214.

[0079] In this embodiment, the housing 121 includes a limiting ring 1215, the outer ring of which is detachably connected to the cavity wall of the receiving cavity 1213. Here, the outer ring of the limiting ring 1215 and the cavity wall of the receiving cavity 1213 can be detachably connected via a snap-fit ​​structure; or via a threaded connection structure. Of course, the outer ring of the limiting ring 1215 and the cavity wall of the receiving cavity 1213 can also be connected via other detachable structures, and this embodiment does not impose any limitations on this. In the feasible implementation provided by this embodiment, the outer ring of the limiting ring 1215 and the cavity wall of the receiving cavity 1213 are detachably connected via a snap-fit ​​structure.

[0080] The comfortable headphone assembly 1 provided in this application embodiment is detachably connected to the cavity wall of the receiving cavity 1213 via the outer ring of the limiting ring 1215. The second limiting structure is set on at least one of the inner ring of the limiting ring 1215 and the movable part 133. Thus, in the later maintenance, only the limiting ring 1215 needs to be repaired, without the need to repair the entire shell 121, which has the technical effect of saving maintenance costs.

[0081] Reference Figure 4 , Figure 5 and Figure 6 This application provides a comfortable headphone assembly 1, wherein the radial dimension of the inner ring of the limiting ring 1215 along the through hole 1214 is smaller than the diameter of the spherical structure.

[0082] The comfortable headphone assembly 1 provided in this application embodiment can prevent the spherical structure from detaching from the inner ring of the limiting ring 1215 because the radial dimension of the inner ring of the limiting ring 1215 along the through hole 1214 is smaller than the diameter of the spherical structure.

[0083] Reference Figure 4 and Figure 5 This application provides a comfortable headphone assembly 1. The connecting component 13 further includes a transition portion 132, which is located between the connecting portion 131 and the movable portion 133. Along the radial direction of the through hole 1214, the size of the transition portion 132 is smaller than the size of the connecting portion 131 and the movable portion 133.

[0084] The comfortable headphone assembly 1 provided in this application embodiment has a transition portion 132 whose dimensions are smaller than those of the connecting portion 131 and the movable portion 133 along the radial direction of the through hole 1214. This causes the transition portion 132 located between the connecting portion 131 and the movable portion 133 to form a necking. On the one hand, this can reduce the overall weight of the comfortable headphone assembly 1, which is beneficial to the lightweight structural design of the comfortable headphone assembly 1; on the other hand, it can make it easier for the user to hold.

[0085] Reference Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 This application provides a comfortable ear clip-on headphone, including a comfortable headphone assembly 1 and a battery component. The battery component is disposed on at least one of the connecting component 13, the ear hook component 11 and the ear shell component 12 in the comfortable headphone assembly 1. When worn, the ear shell component 12 is used to penetrate into the ear canal.

[0086] In this embodiment, the battery component refers to a component that provides power to the comfortably worn clip-on headphones, enabling the comfortable clip-on headphones to function properly; the battery component may include a battery; the battery component may include a cable connected to the ear shell component 12 and the ear hook component 11; of course, the battery component may also include other parts, which are not limited in this embodiment.

[0087] In this embodiment, the battery component is disposed on at least one of the connecting component 13, the ear hook component 11, and the ear shell component 12 in the earphone assembly 1 for comfortable wearing. It should be explained that the battery component can be disposed entirely on the connecting component 13; the battery component can also be disposed entirely on the ear hook component 11; or the battery component can also be disposed entirely on the ear shell component 12; of course, a portion of the battery component can be disposed on the ear shell component 12, a portion on the ear hook component 11, and a portion on the connecting component 13. This embodiment does not limit the scope of the battery component.

[0088] In this embodiment, when worn, the ear shell component 12 is inserted into the ear canal. This can be done entirely by inserting the entire ear shell component 12 into the ear canal, or only a portion of the ear shell component 12 may be inserted into the ear canal, with the remaining portion located outside the ear canal. This embodiment does not limit the specific application. In one possible implementation provided by this embodiment, a portion of the ear component is inserted into the ear canal, with the remaining portion located outside the ear canal. In one embodiment, the housing 121 includes an upper housing 1211 and a lower housing 1212, which are fastened together to form a receiving cavity 1213. The lower housing 1212 has a sound outlet. When worn, at least a portion of the lower housing 1212 with the sound outlet is inserted into the ear canal, thus reducing sound loss and allowing the user to clearly obtain sound from the comfortably worn clip-on headphones. In another embodiment, the ear shell component 12 includes an ear cap, and the housing 121 has a sound outlet. The ear cap is connected to the position on the housing 121 where the sound outlet is located. When worn, the ear cap is inserted into the ear canal, thus reducing sound loss and allowing the user to clearly obtain sound from the comfortable clip-on headphones, while also ensuring a better fit between the ear cap and the ear canal. It should be noted that the ear cap can be made of hard plastic material; it can also be made of soft plastic material. This embodiment does not limit the choice in this application.

[0089] In addition, embodiments of this application provide a comfortable clip-on earphone, and refer to... Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 The device includes an ear hook component 11, an ear shell component 12, and a connecting component 13. The ear shell component 12 includes a housing 121, which has a receiving cavity 1213. The housing 121 has a through hole 1214 communicating with the receiving cavity 1213. The connecting component 13 includes a connecting part 131 and a movable part 133. The connecting part 131 is connected to the ear hook component 11, and the movable part 133 is movably disposed in the receiving cavity 1213. The portion of the connecting component 13 located in the through hole 1214 is clearance-fitted with the through hole 1214. The movable part 133 can rotate axially around the through hole 1214 and swing radially along the through hole 1214 within the receiving cavity 1213. A battery component is disposed on at least one of the ear hook component 11, the ear shell component 12, and the connecting component 13. When worn, the ear shell component 12 is used to extend into the ear canal.

[0090] In this embodiment, the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213 and swing radially along the through hole 1214. Here, the rotation range of the movable part 133 within the receiving cavity 1213 around the through hole 1214 can be ±180 degrees, ±90 degrees, or ±26 degrees. It should be noted that this embodiment does not limit the specific rotation range of the movable part 133 within the receiving cavity 1213 around the through hole 1214. In one possible implementation of this application embodiment, the movable part 133 can rotate axially around the through hole 1214 within the receiving cavity 1213 by an amplitude of ±26 degrees; similarly, the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 by an amplitude of 0 to 90 degrees; it can also be 0 to 30 degrees; or it can be 0 to 18 degrees. It should be noted that this application embodiment does not limit the specific radial amplitude of the movable part 133 swinging radially along the through hole 1214 within the receiving cavity 1213. In one possible implementation of this application embodiment, the movable part 133 can swing radially along the through hole 1214 within the receiving cavity 1213 by an amplitude of 0 to 18 degrees.

[0091] In this embodiment, the battery component refers to a component that provides power to the comfortably worn clip-on headphones, enabling the comfortable clip-on headphones to function properly; the battery component may include a battery; the battery component may include a cable connected to the ear shell component 12 and the ear hook component 11; of course, the battery component may also include other parts, which are not limited in this embodiment.

[0092] In this embodiment, the battery component is disposed on at least one of the connecting component 13, the ear hook component 11, and the ear shell component 12 in the earphone assembly 1 for comfortable wearing. It should be explained that the battery component can be disposed entirely on the connecting component 13; the battery component can also be disposed entirely on the ear hook component 11; or the battery component can also be disposed entirely on the ear shell component 12; of course, a portion of the battery component can be disposed on the ear shell component 12, a portion on the ear hook component 11, and a portion on the connecting component 13. This embodiment does not limit the scope of the battery component.

[0093] Reference Figure 2 This application provides a comfortable ear clip earphone. The housing 121 includes an upper housing 1211 and a lower housing 1212. The upper housing 1211 and the lower housing 1212 are fastened together to form a receiving cavity 1213. The lower housing 1212 has a sound outlet. When worn, at least the part of the lower housing 1212 with the sound outlet is used to extend into the ear canal.

[0094] In this embodiment, the upper housing 1211 and the lower housing 1212 are fastened together to form a receiving cavity 1213. Here, a snap-fit ​​structure can be provided between the upper housing 1211 and the lower housing 1212. For example, the upper housing 1211 is provided with a snap-fit ​​groove, and the lower housing 1212 is provided with a snap-fit ​​protrusion. During the fastening process of the upper housing 1211 and the lower housing 1212, the snap-fit ​​protrusion extends into the snap-fit ​​groove to snap the upper housing 1211 and the lower housing 1212 together. For another example, the upper housing 1211 is provided with a first threaded hole, and the lower housing 1212 is provided with a second threaded hole. The ear clip headphones that are comfortable to wear also include a threaded connector. During the fastening process of the upper housing 1211 and the lower housing 1212, the threaded connector passes through the first threaded hole and the second threaded hole in sequence to thread the upper housing 1211 and the lower housing 1212 together.

[0095] The clip-on earphones provided in this application embodiment have a sound outlet on the lower housing 1212 for inserting into the ear canal when worn. This reduces sound loss and allows the user to clearly obtain sound from the clip-on earphones.

[0096] Reference Figure 2 This application provides a comfortable ear clip earphone. The ear shell component 12 includes an ear cap, and the shell 121 has a sound outlet. The ear cap is connected to the position on the shell 121 where the sound outlet is located. When worn, the ear cap is used to extend into the ear canal.

[0097] In this embodiment, the ear caps can be made of hard rubber material; the ear caps can also be made of soft rubber material, and this embodiment does not limit the choice.

[0098] The clip-on headphones provided in this application embodiment are designed to fit comfortably in the ear canal. When worn, the ear cap is inserted into the ear canal, which reduces sound loss and allows the user to clearly hear the sound from the comfortable clip-on headphones, while also ensuring a better fit between the ear cap and the ear canal.

[0099] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments. The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made based on the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.

Claims

1. A comfortable headphone assembly, characterized in that, include: Ear hook components; The ear shell component includes a housing, the housing includes a receiving cavity, and the housing has a through hole communicating with the receiving cavity; A connecting component, comprising a connecting part and a movable part, wherein the connecting part is connected to the ear hook component, and the movable part is movably disposed within the receiving cavity, wherein the portion of the connecting component located at the through hole is clearance-fitted with the through hole, and the movable part is capable of rotating axially around the through hole and swinging radially along the through hole within the receiving cavity.

2. The comfortable headphone assembly according to claim 1, characterized in that, The movable part is a spherical structure, and the portion of the spherical structure located at the through hole is in clearance fit with the through hole. The diameter of the spherical structure is smaller than the diameter of the through hole.

3. The comfortable headphone assembly according to claim 2, characterized in that, The earphone includes a first limiting structure disposed on at least one of the movable part and the housing to limit the radial swing amplitude of the movable part within the receiving cavity along the through hole.

4. The comfortable headphone assembly according to claim 3, characterized in that, The first limiting structure includes the outer contour of the movable part located at the through hole and the hole wall of the through hole. When the movable part is able to swing radially along the through hole within the receiving cavity to a preset swing amplitude, the outer contour of the movable part located at the through hole abuts against the hole wall of the through hole.

5. The comfortable headphone assembly according to claim 2, characterized in that, The earphone includes a second limiting structure disposed on at least one of the movable part and the housing to limit the axial rotation range of the movable part about the through hole within the receiving cavity.

6. The comfortable headphone assembly according to claim 5, characterized in that, The second limiting structure includes a groove extending circumferentially along the through hole on the movable part along the radial direction of the through hole, and a protrusion provided on the cavity wall of the receiving cavity. The protrusion is located in the groove. When the movable part can rotate around the through hole in the cavity to a preset rotation range, the protrusion abuts against the groove wall along the axial direction of the through hole.

7. The comfortable headphone assembly according to claim 5, characterized in that, The housing includes a limiting ring, the outer ring of which is detachably connected to the cavity wall of the receiving cavity. A portion of the movable part is movably disposed within the inner ring of the limiting ring. The second limiting structure includes a groove on the movable part and located within the inner ring of the limiting ring, extending axially along the through hole. A protrusion is disposed on the inner ring of the limiting ring, the protrusion being located within the groove. When the movable part can rotate axially around the through hole within the receiving cavity to a preset rotation range, the protrusion abuts against the groove wall along the axial direction of the through hole.

8. The comfortable headphone assembly according to claim 7, characterized in that, The radial dimension of the inner ring of the limiting ring along the through hole is smaller than the diameter of the spherical structure.

9. The comfortable headphone assembly according to any one of claims 1 to 8, characterized in that, The connecting component further includes a transition portion located between the connecting portion and the movable portion. Along the radial direction of the through hole, the size of the transition portion is smaller than the size of the connecting portion and the movable portion.

10. A comfortable clip-on earphone, characterized in that, include: The comfortable headphone assembly according to any one of claims 1 to 9; A battery component, wherein the battery component is disposed on at least one of the connecting component, ear hook component, and ear shell component in the comfortable-to-wear headphone assembly; When worn, the ear shell component is inserted deep into the ear canal.

11. A comfortable-to-wear clip-on earphone, characterized in that, include: Ear hook components; The ear shell component includes a housing, the housing includes a receiving cavity, and the housing has a through hole communicating with the receiving cavity; A connecting component, comprising a connecting part and a movable part, wherein the connecting part is connected to the ear hook component, and the movable part is movably disposed within the receiving cavity; the portion of the connecting component located at the through hole is clearance-fitted with the through hole; and the movable part is capable of rotating axially around the through hole and swinging radially along the through hole within the receiving cavity. A battery component, the battery component being disposed on at least one of the ear hook component, ear shell component, and connecting component; When worn, the ear shell component is used to extend into the ear canal.

12. The comfortable clip-on earphone according to claim 11, characterized in that, The housing includes an upper housing and a lower housing, which are fastened together to form the receiving cavity, and the lower housing has a sound outlet. When worn, the lower housing has at least one portion with a sound outlet for insertion into the ear canal.

13. The comfortable clip-on earphone according to claim 11, characterized in that, The ear shell component includes an ear cap, and the shell has a sound outlet. The ear cap is connected to the position on the shell where the sound outlet is located. When worn, the ear cap is inserted into the ear canal.