Open-ear clip-on earbud
By designing earclip headphones with large-size sound generating units and clamping members, the problems of poor sound quality, pain in wearing, sound leakage and easy to fall off of wireless headphones are solved, achieving better sound output and comfortable wearing experience.
Patent Information
- Application Number
- PCT/CN2024/071706
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-11
- Publication Date
- 2025-07-17
AI Technical Summary
Existing wireless headphones have problems such as poor sound quality, pain in wearing, leaking sounds and easy to fall off.
An ear clamp earphone is designed, which adopts a large-size sound generating unit, which is fixed to the ear through a clamping member to avoid deep penetration into the ear canal, and combines functional members to provide energy and information processing to ensure sound output and avoid wearing discomfort.
Improves sound quality, reduces wear pain, avoids sound leakage and fall off, improves user experience, and meets personalized needs.
Smart Images

Figure CN2024071706_17072025_PF_FP_ABST
Abstract
Description
Ear clip earphones Technical Field
[0001] The present invention relates to the field of electroacoustic conversion, and in particular to an ear clip cavity earphone. Background Art
[0002] Over the past decade or so, a wide variety of headphone styles have emerged on the market. As headphone designs evolve, they've gradually broken free from the constraints of wired connections and trended towards smaller sizes. Traditional wireless headphones typically utilize an in-ear design.
[0003] For the large-size in-ear headphones of early wired headphones, manufacturers generally believed that they would cause damage to users' hearing, or the manufacturers themselves abandoned the large-size in-ear headphone structure due to product iteration.
[0004] Existing wireless headphones usually have the following defects:
[0005] First, because wireless headphones use smaller drivers to output sound, small drivers can produce better sound quality in the mid- and high-frequency ranges, but they struggle to deliver good bass. Furthermore, sound quality depends on the size of the speaker's vibrating surface, and their smaller size makes it difficult to achieve optimal sound quality.
[0006] Secondly, because wireless earphones typically use a snap-on elastic opening to clamp directly onto the user's ear, the user's auricle is pinched by an object for a long time, which can easily cause the ear to become squeezed and numb. Consequently, wearing wireless earphones for extended periods of time can significantly reduce the user's wearing experience, causing pain and fatigue in the ear.
[0007] Third, due to their in-ear wearing style, small-sized wireless earphones sit deep in the ear canal, potentially damaging hearing. They can only be secured by extending into the ear canal, which can easily cause them to fall off. Clip-on, small-unit earphones, on the other hand, can experience sound leakage because the speaker is some distance from the ear bones.
[0008] Therefore, there is an urgent need for a wireless headset that can solve the problems of poor sound quality, wearing pain, and sound leakage in existing wireless headsets.
[0009] Summary of the Invention
[0010] One advantage of the present invention is that it provides an ear-clip cavity earphone, which, through the arrangement of a large-sized sound-emitting unit, enables a user to obtain better sound quality when wearing the ear-clip cavity earphone.
[0011] Another advantage of the present invention is that it provides an ear-clip earphone, which, through the provision of a large-sized sound-emitting unit, makes the earphone more suitable for the user's ear-clip cavity when worn, and is tightly worn to avoid falling off.
[0012] Another advantage of the present invention is that it provides an ear-clip earphone. The ear-clip earphone has a bendable structure, which avoids continuous pressure on the user's ears when worn, causing pain to the user's ears, improves the wearing experience of the ear-clip earphone, and does not cause fatigue and discomfort even when worn for a long time.
[0013] Another advantage of the present invention is that it provides an ear-clip cavity earphone. The ear-clip cavity earphone has a larger sound-emitting unit, so that when the earphone is worn on the user's auricle, the sound-emitting position is closer to the user's ear canal, thereby avoiding the occurrence of sound leakage.
[0014] Another advantage of the present invention is that it provides an ear-clip earphone. Compared with existing earphones with small-sized sound units, the ear-clip earphone avoids extending too deep into the user's ear canal when worn. It is worn by partially inserting the end surface into the ear, avoiding the disadvantage of not being able to hear external sounds because the earphone is inserted too deep into the ear.
[0015] Another advantage of the present invention is that it provides an ear clip earphone, which is less likely to fall off and thus be lost than the existing in-ear earphones.
[0016] Another advantage of the present invention is that it provides an ear clip earphone. When the ear clip earphone is worn, the front end is in an in-ear or hanging structure, and the back end can be combined with a hanging, hook, clip, etc.
[0017] Another advantage of the present invention is that it provides an ear-clip earphone, which is directly inserted obliquely or retained in or above the user's concha cavity due to its large size, thereby improving the sound quality.
[0018] Another advantage of the present invention is to provide an ear-clip earphone, which improves the sound output characteristics of low frequencies by disposing a larger-sized sound unit.
[0019] Another advantage of the present invention is that it provides an ear-clip earphone, which, when worn on the ear of a user, has a certain decorative effect and is used to meet the user's personalized fashion needs.
[0020] According to one aspect of the present invention, there is provided an ear clip chamber earphone.
[0021] The ear clip cavity earphone comprises:
[0022] a sound-generating member, the sound-generating member being maintained in the earcup cavity of the user to output sound effects to the ear canal of the user, the sound-generating member having a size of 10 mm to 16 mm;
[0023] a functional component adapted to provide energy supply and information processing functions; and
[0024] A clamping member, two ends of which are respectively connected to the sound-generating member and the functional member, and the clamping member is suitable for controlling the distance between the sound-generating member and the functional member to maintain the ear-clip chamber earphone worn on the user's ear.
[0025] According to one embodiment of the present invention, when the ear-clip chamber earphone is in a wearing state, the sound-emitting member partially extends into the ear canal of the user and partially is located in the concha cavity of the user.
[0026] According to one embodiment of the present invention, when the ear-clip chamber earphone is in a wearing state, the sound-emitting member is completely maintained in the ear-clip chamber of the user.
[0027] According to one embodiment of the present invention, when the ear-clip chamber earphone is worn, the sound-emitting member is maintained at the auricle of the user.
[0028] According to an embodiment of the present invention, the sound-emitting component includes a housing body and a sound-emitting unit, the housing body provides an installation space, and the sound-emitting unit is adaptively disposed inside the housing body.
[0029] According to one embodiment of the present invention, the shell body includes a warehouse body and a cover body and has a sound-emitting space, the warehouse body is integrally connected to the clamping member, the cover body is detachably connected to the warehouse body, the warehouse body and the cover body surround and form the sound-emitting space, and the sound-emitting unit is arranged in the sound-emitting space and is close to and fits into the cover body.
[0030] According to an embodiment of the present invention, the sound-emitting component further has a plurality of sound-emitting holes, and the sound-emitting holes are provided through the surface of the cover.
[0031] According to one embodiment of the present invention, the functional component includes a shell assembly, a supply unit and a processing unit, the shell assembly is integrally connected to the clamping component, the supply unit and the processing unit are arranged in the shell assembly, and the supply unit is electrically connected to the processing unit.
[0032] According to an embodiment of the present invention, the processing unit is electrically connected to the sound generating unit through the clamping member.
[0033] According to one embodiment of the present invention, the clamping member includes a first connecting segment and a second connecting segment, the first connecting segment is close to the sound-emitting member, the second connecting segment is close to the functional member, and the first connecting segment and the second connecting segment are suitable for being close to each other to be clamped on both sides of the user's earlobe.
[0034] According to one embodiment of the present invention, the clamping member further includes a flexible section, which is located between the first connecting section and the second connecting section. The material of the flexible section is softer than that of the first connecting section and the second connecting section.
[0035] According to an embodiment of the present invention, the clamping member further has a groove, which is provided on the outer surface of the clamping member and communicates with the interior of the housing body and the shell assembly.
[0036] According to one embodiment of the present invention, the shape of the sound-emitting member is selected from any one of a circular shape, an oblate shape, a spindle shape and a chestnut shape. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] FIG1 is an overall schematic diagram of an ear clip chamber earphone according to a preferred embodiment of the present invention.
[0038] FIG2 is a schematic diagram of the back of the ear clip chamber earphone according to the preferred embodiment of the present invention.
[0039] FIG3 is an exploded schematic diagram of the ear clip chamber earphone according to the preferred embodiment of the present invention.
[0040] FIG4 is a schematic diagram of wearing the ear clip chamber earphone according to the preferred embodiment of the present invention.
[0041] FIG5 is an overall schematic diagram of an ear clip chamber earphone according to a second preferred embodiment of the present invention.
[0042] FIG6 is a first schematic diagram of wearing the ear clip earphone according to the preferred embodiment of the present invention.
[0043] FIG7 is a second schematic diagram of wearing the ear clip earphone according to the preferred embodiment of the present invention. DETAILED DESCRIPTION
[0044] The following description is intended to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are for illustrative purposes only, and those skilled in the art will readily appreciate other obvious variations. The basic principles of the present invention defined in the following description may be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.
[0045] Those skilled in the art should understand that, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be understood as limiting the present invention.
[0046] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the elements may be multiple, and the term "one" should not be understood as a limitation on the quantity.
[0047] As shown in Figures 1 to 4, an ear-clip earphone 1 according to a preferred embodiment of the present invention is schematically illustrated. The ear-clip earphone 1 is adapted to be worn on a user's ear to output sound into the user's ear canal 91. Compared to existing wireless earphones, the ear-clip earphone 1 addresses the drawback of poor sound quality and avoids the loss of ambient sound by inserting the earphone too deeply into the user's ear canal 91.
[0048] For ease of explanation, when the ear-clip earphone 1 is worn, the front of the user's ear canal 91 is defined as the front, and the back of the ear canal 91 is defined as the back. That is, the front and back ends are defined by the user's helix 94. The inner side of the user's ear canal 91 is defined as the inner side, and the outer side of the user's helix 94 is defined as the outer side.
[0049] The ear clip chamber earphone 1 includes a sound-emitting component 10, a clamping component 20, and a functional component 30. The sound-emitting component 10 is connected to the clamping component 20, and the functional component 30 is connected to the clamping component 20. In other words, the sound-emitting component 10 and the functional component 30 are connected to the two ends of the clamping component 20. In other words, one end of the clamping component 20 is connected to the sound-emitting component 10, and the other end is connected to the functional component 30. The sound-emitting component 10 is suitable for providing the function of sound output, and the clamping component 20 is suitable for providing the function of clamping and fixing. The functional component 30 is suitable for providing the function of electroacoustic conversion.
[0050] When the ear-clip chamber earphone 1 is in the wearing state, the sound-emitting component 10 is placed in the user's cavum concha 92. The clamping member 20 spans the front and rear end surfaces of the user's helix. The functional component 30 is located behind the user's ear. In contrast, the sound-emitting component 10 is implemented as a larger-sized shape in this embodiment to output sound effects. When the functional component 30 is against the back of the ear, it is suitable for providing a lever fulcrum, so that the sound-emitting component 40 tends to press outward against the user's antitragus and be retained in the cavum concha 92. Thereby, the sound-emitting component 40 does not need to go deep into the user's ear canal 91, so that the sound-emitting component 40 can have a larger size relative to the earphones of the prior art. In the present invention, the size range of the sound-emitting component 40 is 10mm-16mm.
[0051] On the one hand, the sound-producing component 10 utilizes a larger sound output component to ensure that sound effects are output across the full audio range, from mid-range to high-range. Furthermore, the larger size of the sound-producing component 10 contributes to the sound quality of the sound effects output to the user. Generally, larger sound effects produce better sound quality. Therefore, in this embodiment, the sound-producing component 10 of the ear-clip earphone 1 produces better sound effects and higher quality.
[0052] On the other hand, when the ear-clip cavity earphone 1 is in the wearing state, the sound-emitting component 10 does not extend into the user's ear canal 91 compared to existing wireless earphones. In other words, the ear-clip cavity earphone 1 extends into the user's ear canal 91 at a shorter distance compared to the existing technology. In other words, the ear-clip cavity earphone 1 does not completely extend into the user's ear canal 91. By the wearing position of the sound-emitting component 10, the ear-clip cavity earphone 1 is worn, so as to avoid the situation where the user cannot obtain information from the outside world. In other words, when wearing the ear-clip cavity earphone 1, the user's ear canal is not completely blocked. This avoids potential safety hazards that may exist during the wearing process of the user.
[0053] In this embodiment, the sound-producing member 10 can be optionally implemented in a circular, oblate, fusiform, or chestnut shape. When the ear-clip earphone 1 is worn, the sound-producing member 10 can be worn in the ear to fit the shape of the user's ear canal. Therefore, the shape of the sound-producing member 10 is not limited by the present invention.
[0054] Compared with existing wireless headphones, the in-ear wearing style of the ear clip earphone 1 does not completely block the user's ear canal 91, but only partially extends into it. It also avoids hygiene problems in the user's ear canal 91 caused by blockage, and further avoids the phenomenon of bacteria breeding in the user's ear canal 91.
[0055] The material selected for the clamping member 20 in this embodiment is a soft metal material. For example, a metal material with a certain degree of ductility, such as copper, is selected. When the ear-clip chamber earphone 1 is worn, the clamping member 20 extends from the front side of the user's cavum concha 92 to the back side of the user's cavum concha 92. The user can press the two ends of the clamping member 20 to bring the clamping member 20 close to and fit it to the user's ear to achieve fixation on the user's ear. When firmly fixed on the user's ear, the distance between the two ends of the clamping member 20 can be loosened to a certain extent, so that the contact area between the clamping member 20 and the user's ear is reduced while maintaining the ear-clip chamber earphone 1 on the user's ear, thereby ensuring that the ear-clip chamber earphone 1 will not fall off the user and can be worn loosely to avoid pain caused by wearing.
[0056] In this embodiment, the functional component 30 can be symmetrically arranged with respect to the sound-producing component 10. That is, the functional component 30 can also be implemented as a larger unit. The functional component 30 provides energy supply and information processing functions. By implementing a larger power supply, the charging endurance of the ear-clip earphone 1 can be increased. By increasing the size of the functional component 30 without affecting the wearing experience of the ear-clip earphone 1, the performance of the ear-clip earphone 1 can be improved.
[0057] Furthermore, the sound-emitting component 10 includes a housing 11 and a sound-emitting unit 12. The housing 11 is adapted to provide a mounting function. The sound-emitting unit 12 is adapted to provide a sound output function. The sound-emitting unit 12 is disposed within the housing 11. In this embodiment, the sound-emitting unit 12 is implemented as a speaker.
[0058] The shell body 11 includes a chamber body 111 and a cover body 112 and has a sound-emitting space 113. The chamber body 111 and the cover body 112 surround and form the sound-emitting space 113. The chamber body 111 is integrally connected to the clamping member 20. The cover body 112 is detachably connected to the chamber body 111. The sound-emitting unit 12 is arranged inside the chamber body 111. Furthermore, the sound-emitting unit 12 is arranged in the sound-emitting space 113. When the ear-clip chamber earphone 1 is worn, the chamber body 111 is partially located in the user's ear canal 91 and partially located in the user's ear clip cavity 92, and the cover body 112 is close to the user's ear canal 91.
[0059] In this embodiment, the sound unit 12 is adapted to fit within the housing 111. In other words, the sound unit 12 is also implemented as a larger unit. The larger sound unit 12 faces the cover 112 and outputs sound effects through the cover 112 toward the user's ear canal. Compared to smaller sound units, the sound unit 12 can produce sound effects of higher quality.
[0060] The sound-emitting component 10 also has a plurality of sound holes 13. These sound holes 13 are disposed in the cover 112. These sound holes 13 extend through the front and rear ends of the cover 112. These sound holes 13 are adapted to provide noise reduction and other functions. When the ear-clip earphone 1 is worn, the sound-emitting unit 12 is adapted to output sound effects to the user's ear canal 91 through the sound holes 13.
[0061] The functional component 30 includes a housing assembly 31, a supply unit 32 and a processing unit 33. The housing assembly 31 is suitable for providing an installation space. The supply unit 32 is suitable for providing energy supply, and the processing unit 33 is suitable for providing electroacoustic conversion and information processing. The supply unit 32 and the processing unit 33 are arranged in the housing assembly 31. The supply unit 32 is electrically connected to the processing unit 33. The processing unit 33 is also electrically connected to the sound unit 12 to transmit the electrical signal converted into the acoustic signal to the sound unit 12.
[0062] The housing assembly 31 includes a housing unit 311 and at least one cover unit 312 and has a functional space 313. The housing unit 311 and the cover unit 312 surround and form the functional space 313. The housing unit 311 is integrally connected to the clamping member 20, and the housing unit 311 is implemented as an opening on one side. In this embodiment, the cover unit 312 is implemented as one, and the cover unit 312 is detachably mounted on the housing unit 311 to close the functional space 313. In another embodiment, the housing unit 311 is implemented as an opening on both sides, and a pair of the cover units 312 are respectively mounted on the housing unit 311.
[0063] The supply unit 32 and the processing unit 33 are installed inside the housing unit 311 , that is, the supply unit 32 and the processing unit 33 are located in the functional space 313 .
[0064] The clamping member 20 includes a first connecting section 21 and a second connecting section 22. The first connecting section 21 and the second connecting section 22 are integrally connected. The first connecting section 21 is close to the shell body 11, and the second connecting section 22 is close to the shell unit 311. When the ear clip chamber earphone 1 is worn, the first connecting section 21 and the second connecting section 22 are squeezed by the user and approach each other. The first connecting section 21 and the second connecting section 22 drive the sound-emitting member 10 and the functional member 30 to be arranged symmetrically with each other. In this embodiment, the first connecting section 21 spans the user's auricle 93 and the helix 94 from the front side of the user's concha 92.
[0065] The clamping member 20 further has a groove 23, which is provided on the outer surface of the clamping member 20. The groove 23 extends from the first connecting section 21 to the second connecting section 22. The groove 23 connects the sound-emitting space 113 and the functional space 313. In this embodiment, the groove 23 is exposed to the outside, and a wire is adapted to be provided in the groove 23 to connect the sound-emitting space 113 and the functional space 313. Furthermore, the processing unit 33 is adapted to be electrically connected to the sound-emitting unit 12 via the wire.
[0066] In another embodiment of the present invention, the groove 23 is optionally implemented as a channel hidden in the middle of the first connecting segment 21 and the second connecting segment 22. That is, the groove 23 is located in the middle area of the cross section of the first connecting segment 21 and the second connecting segment 22. When the ear clip earphone 1 is worn, the groove 23 is not visible. Therefore, the implementation shape of the groove 23 is not limited by the present invention. When the ear clip earphone 1 is worn, the groove 23 is visible and can provide a certain decorative effect. That is, users can choose their favorite color to customize the color of the wire to meet personalized fashion needs.
[0067] Figures 5 through 7 illustrate a second preferred embodiment of an earcup earphone 1A provided by the present invention. Compared to the previous embodiment, the earcup earphone 1A features a major change in its wearing configuration and gripping mechanism. Compared to traditional wireless earphones, the earcup earphone 1A addresses the pain associated with long-term wear and the potential for sound leakage.
[0068] In the present embodiment, the ear clip chamber earphone 1A includes a sounding member 10A, a clamping member 20A and a functional component 30A, wherein the sounding member 10A is connected to the clamping member 20A, and the functional component 30A is connected to the clamping member 20A. In other words, the sounding member 10A and the functional component 30A are connected to the two ends of the clamping member 20A. In other words, one end of the clamping member 20A is connected to the sounding member 10A, and the other end is connected to the functional component 30A. The sounding member 10A is suitable for providing the function of sound effect output, and the clamping member 20A is suitable for providing the function of clamping and fixing. The functional component 30A is suitable for providing the function of electroacoustic conversion.
[0069] When the ear-cup earphone 1A is in the wearing state, the sound-emitting member 10A is completely located in the user's cavum concha 92. The clamping member 20A spans the front and rear end surfaces of the user's helix. The functional component 30A is located behind the user's ear. Differentiate, the sound-emitting member 10A is implemented as a larger size to output sound effects in this embodiment. At the same time, the sound-emitting member 10A is adapted to the shape of the user's cavum concha 92 to be hung in the user's cavum concha 92.
[0070] It is worth mentioning that in this embodiment, the clamping member 20A is made of a material that is harder at both ends and softer in the middle. When the concha earphone 1A is worn, the user presses the sound-producing member 10A and the functional member 30A to maintain the concha earphone 1A against the user's ear. Because the sound-producing member 10A adapts to the shape of the user's concha 92, the sound-producing member 10A can be completely located and maintained in the concha 92.
[0071] The sound-producing component 10A utilizes a larger sound output component to ensure sound output across the full range of mid-, low-, and high-frequency frequencies. Furthermore, the larger size of the sound-producing component 10A contributes to the sound quality of the sound output to the user. Generally, larger sound outputs produce better sound quality. Therefore, in this embodiment, the sound-producing component 10A of the ear-clip earphone 1A delivers superior sound quality and quality. Compared to existing wireless earphones, the sound-producing component 10A is not in-ear when worn. Instead, it resides within the user's ear-clip cavity 92. The larger size of the sound-producing component 10A places it closer to the user's ear canal, minimizing sound loss while ensuring sound output. This also prevents the user from being unable to access external information when wearing the ear-clip earphone 1A. In other words, the user's ear canal is not completely blocked when wearing the ear-clip earphone 1A, thereby avoiding potential safety hazards during wear.
[0072] In this embodiment, the clamping member 20A includes a first connecting section 21A and a second connecting section 22A. The first connecting section 21A and the second connecting section 22A are spaced apart and connected to each other. The first connecting section 21A is integrally connected to the sound-emitting member 10A, and the second connecting section 22A is integrally connected to the functional component 30A.
[0073] Furthermore, the clamping member 20A includes a flexible segment 24A located between the first connecting segment 21A and the second connecting segment 22A. That is, one end of the flexible segment 24A is connected to the first connecting segment 21A, and the other end is connected to the second connecting segment 22A. In this embodiment, the material of the flexible segment 24A is softer than that of the first connecting segment 21A and the second connecting segment 22A. The first connecting segment 21A and the second connecting segment 22A can be made of a metal or other material, while the flexible segment 24A can be made of a plastic material with a certain degree of ductility.
[0074] When the ear clip chamber earphone 1A is worn, the user presses the sound-generating member 10A and the functional member 30A to bend the flexible section 24A. Thus, the sound-generating member 10A and the functional member 30A are symmetrically distributed around the user's ear.
[0075] FIG6 is a schematic diagram illustrating the ear-clip earphone 1A of this embodiment when worn. In this state, the sound-producing member 10A remains suspended within the user's cavum concha 92 and is restrained by the user's tragus. The clamping member 20A spans the front and rear ends of the user's helix, and the functional member 30A remains behind the user's ear.
[0076] In the present embodiment, the ear clip chamber earphone 1A realizes overall bending by the hardness difference between the flexible section 24A and the first connecting section 21A and the second connecting section 22A. In another embodiment, the ear clip chamber earphone 1A optionally adopts auxiliary magnetic adsorption to realize adsorption fixation. Specifically, the corresponding side end surfaces of the sound-emitting member 10A and the functional component 30A are provided with magnetic components to realize attraction fixation during the wearing process of the ear clip chamber earphone 1A, and finally maintain the sound-emitting member 10A in the user's cavum concha 92, and the functional component 30A is maintained behind the user's ear.
[0077] Optionally, in order to maintain the user's comfort when wearing the ear-cup earphone 1A, the end surface of the sound-emitting member 10 close to the user's concha cavity 92 can be provided with a flexible end surface to avoid pain and discomfort caused by prolonged compression with the user's ear.
[0078] FIG7 is a schematic diagram of another wearing state of the ear-clip earphone 1A according to this embodiment. In this state, the sound-producing member 10A remains suspended from the user's auricle 93. In other words, the sound-producing member 10A remains above the user's cavum concha 92. The clamping member 20A spans the front and rear ends of the user's helix to clamp and secure the ear. The functional member 30A is located behind the user's ear.
[0079] In this embodiment, the ear-clip earphone 1A is secured by the material differences of the clamping member 20A. Due to the hardness differences between the first connecting section 21A, the second connecting section 22A, and the flexible section 24A, the user can squeeze the clamping member 20 to secure it tightly to the user's ear.
[0080] In contrast, the concha earphone 1A has a larger sound-producing member 10A than conventional wireless earphones. When the concha earphone 1A is worn, the sound-producing member 10A is located at the user's auricle 93. The larger sound-producing member 10A brings the sound-producing member 10A, which is used to output sound effects, closer to the user's ear canal 91, making sound leakage less likely to occur during wear compared to conventional wireless earphones.
[0081] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are intended to be illustrative only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.
Claims
1. An earclip cavity earphone, characterized in that, Comprising: A sound - generating member that is maintained within the user's ear - clip cavity to output sound effects to the user's ear canal, and the sound - generating member has a size of 10 mm - 16 mm; A functional member that is adapted to provide functions of energy supply and information processing; And A clamping member, with both ends of the clamping member respectively connected to the sound - generating member and the functional member, and the clamping member is adapted to control the distance between the sound - generating member and the functional member to maintain the ear - clip cavity earphone worn on the user's ear.
2. The ear - clip cavity earphone according to claim 1, wherein the sound - generating member is adapted to press against the user's antitragus.
3. The ear - clip cavity earphone according to claim 2, wherein when the ear - clip cavity earphone is in a worn state, the sound - generating member partially extends into the user's ear canal and partially lies within the user's concha.
4. The ear - clip cavity earphone according to claim 2, wherein when the ear - clip cavity earphone is in a worn state, the sound - generating member is completely maintained within the user's ear - clip cavity.
5. The ear - clip cavity earphone according to claim 2, wherein when the ear - clip cavity earphone is in a worn state, the sound - generating member is maintained at the user's auricle.
6. The ear - clip cavity earphone according to any one of claims 3 to 5, wherein the sound - generating member comprises a housing main body and a sound - generating unit, the housing main body provides an installation space, and the sound - generating unit is adaptively arranged inside the housing main body.
7. The ear - clip cavity earphone according to claim 6, wherein the housing main body comprises a bin body and a cover body and has a sound - generating space, the bin body is integrally connected to the clamping member, the cover body is detachably connected to the bin body, the bin body and the cover body enclose to form the sound - generating space, and the sound - generating unit is arranged in the sound - generating space and is close to and attached to the cover body.
8. The ear - clip cavity earphone according to claim 7, wherein the sound - generating member further has a plurality of sound - emitting holes, and the sound - emitting holes are arranged to penetrate through the surface of the cover body.
9. The ear - clip cavity earphone according to claim 8, wherein the functional member comprises a housing assembly, a supply unit and a processing unit, the housing assembly is integrally connected to the clamping member, the supply unit and the processing unit are arranged inside the housing assembly, and the supply unit is electrically connected to the processing unit.
10. The ear - clip cavity earphone according to claim 9, wherein the processing unit is electrically connected to the sound - generating unit through the clamping member.
11. The ear - clip cavity earphone according to claim 10, wherein the clamping member comprises a first connection section and a second connection section, the first connection section is close to the sound - generating member, the second connection section is close to the functional member, and the first connection section and the second connection section are adapted to approach each other to clamp both sides of the user's helix.
12. The ear - clip cavity earphone according to claim 11, wherein the clamping member further comprises a flexible section, the flexible section is located between the first connection section and the second connection section, and the material of the flexible section is softer than the materials of the first connection section and the second connection section.
13. The earclip cavity earphone according to claim 11, wherein the clamping member further has a groove, the groove is provided on the outer surface of the clamping member, and the groove communicates with the inside of the housing main body and the housing assembly.
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