Earphone
By installing the headphone antenna in the mounting sleeve and electrically connecting it to the headphone body, the problem of poor signal transmission quality of the headphones is solved, and the user experience and signal transmission performance of the headphones are improved.
Patent Information
- Application Number
- CN202510263708.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-20
AI Technical Summary
The antenna of the true wireless stereo headphones is located inside the headphones, which is obstructed by the headphone housing, resulting in poor signal transmission quality and affecting the user experience.
A headphone including a headphone body and a headphone kit is designed. The headphone kit includes a mounting sleeve and an antenna. The antenna is arranged on the mounting sleeve. The headphone body is detachably connected to the mounting sleeve and is electrically connected to the antenna. The signal is transmitted through the antenna to alleviate the interference of the headphone body to the antenna.
It effectively improves the transmission quality of headphone signals, enhances the user experience of headphones, and improves battery life and antenna signal performance without increasing the size of headphones.
Smart Images

Figure CN120186520A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of electronic products, and particularly relates to a pair of earphones. Background Art
[0002] In some true wireless stereo earphones in the related art, the antenna is located inside the earphone, so that the signal of the antenna is blocked by the earphone housing, resulting in poor signal transmission quality and affecting the use experience of the earphone. Summary of the Invention
[0003] The purpose of the embodiments of this application is to provide a pair of earphones that can solve problems such as poor earphone signals.
[0004] To solve the above technical problems, this application is implemented as follows: The embodiments of this application provide a pair of earphones, including: an earphone body and an earphone kit; The earphone kit includes an installation sleeve and an antenna, and the antenna is arranged in the installation sleeve; The earphone body is detachably connected to the installation sleeve, and the earphone body is electrically connected to the antenna.
[0005] In the embodiments of this application, the antenna arranged in the installation sleeve is electrically connected to the earphone body, and the signal sent out by the earphone body or the signal sent into the earphone body is transmitted through the antenna, so that the interference problem of the earphone body on the antenna signal transmission can be effectively alleviated, which is beneficial to improving the signal transmission quality and further improving the use experience of the earphone. Description of the Drawings
[0006] Figure 1 It is a disassembled schematic diagram of the earphone body and the earphone kit disclosed in the embodiments of this application; Figure 2 It is a disassembled sectional view of the earphone body and the earphone kit disclosed in the embodiments of this application; Figure 3 It is an assembled schematic diagram of the earphone body and the earphone kit disclosed in the embodiments of this application; Figure 4 It is an assembled sectional view of the earphone body and the earphone kit disclosed in the embodiments of this application; Figure 5 It is a structural schematic diagram of the installation sleeve, the first antenna unit and the second antenna unit disclosed in the embodiments of this application; Figure 6 It is a structural schematic diagram of the first antenna unit and the second antenna unit disclosed in the embodiments of this application; Figure 7 It is a structural schematic diagram of the earphone stem, the first antenna connecting piece and the second antenna connecting piece disclosed in the embodiments of this application; Figure 8Structural schematic diagrams of the first antenna connector and the second antenna connector disclosed in the embodiments of the present application; Figure 9 Structural schematic diagram of the earphone body and the earphone kit without the mounting sleeve disclosed in the embodiments of the present application; Figure 10 Structural schematic diagram of the earphone kit without the mounting sleeve disclosed in the embodiments of the present application; Figure 11 Structural schematic diagram of the earphone body disclosed in the embodiments of the present application; Figure 12 First partial structural schematic diagram of the earphone stem, the first electrical connection component and the second electrical connection component disclosed in the embodiments of the present application; Figure 13 Second partial structural schematic diagram of the earphone stem, the first electrical connection component and the second electrical connection component disclosed in the embodiments of the present application; Figure 14 Structural schematic diagram of the first electrical connection component disclosed in the embodiments of the present application; Figure 15 Structural schematic diagram of the second electrical connection component disclosed in the embodiments of the present application.
[0007] Explanation of reference numerals: 10 - Earphone body; 11 - Circuit board; 111 - First through hole; 121 - First antenna connector; 1211 - First groove; 122 - Second antenna connector; 1221 - Second groove; 13 - Earphone stem; 131 - Counterbore; 141 - First electrical connection component; 1411 - First protrusion; 1412 - Second through hole or groove; 142 - Second electrical connection component; 1421 - Second protrusion; 1422 - End cap; 15 - First magnetic member; 20 - Earphone kit; 21 - Mounting sleeve; 211 - First cavity; 2111 - Mounting hole; 212 - First mounting groove; 213 - Second mounting groove; 214 - Second cavity; 215 - First channel; 216 - Second channel; 22 - Antenna; 221 - First antenna unit; 222 - Second antenna unit; 22a - Antenna panel; 22b - Connection portion; 22c - Insertion portion; 23 - Battery; 241 - First charging post; 242 - Second charging post; 25 - Second magnetic member; M - First sound channel; N - Second sound channel. Detailed implementation manners
[0008] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the protection scope of the present application.
[0009] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are usually of the same category, and do not limit the number of objects. For example, the first object can be one or multiple. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / " generally means an "or" relationship between the associated objects before and after.
[0010] Next, the embodiments of the present application will be described in detail with reference to the accompanying drawings through specific embodiments and their application scenarios.
[0011] True wireless stereo headphones are relatively small headphones. Due to their small size, their battery life, antenna signal, wind noise effect, etc. will all be subject to certain limitations, which is not very friendly to some users, especially game enthusiasts, and affects the use experience. Now, based on a solution, without increasing the volume, the battery life and antenna signal performance are improved, and the wind noise is reduced to improve the user experience.
[0012] Based on the above situation, the embodiments of the present application disclose a headphone, referring to Figures 1 to 15 , the disclosed headphone includes a headphone body 10 and a headphone kit 20. Among them, the headphone body 10 has the basic functions of a headphone, such as functions of sound generation, receiving calls, etc.; the headphone kit 20 is used to cooperate with the headphone body 10 to facilitate the improvement of the performance of the headphone body 10.
[0013] Referring to Figures 1 to 4 , the headphone kit 20 includes a mounting sleeve 21 and an antenna 22, and the antenna 22 is arranged on the mounting sleeve 21. Optionally, the mounting sleeve 21 can provide a receiving space for mounting the headphone body 10 and provide a bearing and mounting basis for the antenna 22; the antenna 22 is a signal receiving and transmitting component, which can enhance the signal.
[0014] The earphone body 10 is detachably connected to the mounting sleeve 21, so that in the case where the earphone kit 20 needs to be installed, the mounting sleeve 21 can be sleeved on the earphone body 10, and in the case where the earphone kit 20 is not needed, the mounting sleeve 21 can be detached from the earphone body 10, thereby meeting the usage requirements under different working conditions.
[0015] To improve the signal transmission performance of the earphone body 10, when the earphone kit 20 is cooperatively installed with the earphone body 10, the earphone body 10 is electrically connected to the antenna 22. In this way, the signal generated by the earphone body 10 can be transmitted outward through the antenna 22, or the external signal can be received by the antenna 22 and transmitted to the earphone body 10, thereby enhancing the signal transmission and reception performance of the earphone body 10. Optionally, the antenna 22 can be in direct contact with the earphone body 10 to achieve direct signal transmission, or the antenna 22 can be connected to the earphone body 10 through other signal transmission components to achieve indirect signal transmission.
[0016] In the embodiment of the present application, the antenna 22 provided on the mounting sleeve 21 is electrically connected to the earphone body 10, and the signal emitted by the earphone body 10 is transmitted out through the antenna 22 or the signal is transmitted into the earphone body 10, thereby effectively alleviating the interference problem of the earphone body 10 on the signal transmission of the antenna 22, being beneficial to improving the signal transmission quality, and further improving the usage experience of the earphone.
[0017] Reference Figure 5 and Figure 6 In some embodiments, the antenna 22 may include a first antenna unit 221 and a second antenna unit 222. The first antenna unit 221 and the second antenna unit 222 can be respectively installed on the mounting sleeve 21, and at least part of each is exposed relative to the mounting sleeve 21 to reduce the blockage and interference of the mounting sleeve 21 on the signal transmission of the first antenna unit 221 and the second antenna unit 222 respectively, being beneficial to improving the signal transmission performance. Of course, the number of antenna units is not limited to two, and can also be one, three, four, etc., and can be specifically set according to actual needs.
[0018] Optionally, both the first antenna unit 221 and the second antenna unit 222 can be combined with the mounting sleeve 21 through an in-mold injection process, which can not only ensure the stability of the first antenna unit 221 and the second antenna unit 222, but also reduce the manufacturing difficulty.
[0019] Such as Figure 6As shown, the structures of the first antenna unit 221 and the second antenna unit 222 can be the same, and both can include an antenna panel 22a, a connecting portion 22b, and a plugging portion 22c. The connecting portion 22b is disposed between the antenna panel 22a and the plugging portion 22c. In this way, the antenna panel 22a can increase the signal transmission area and improve the signal transmission performance. The plugging portion 22c can be plugged and matched with the mounting sleeve 21 to ensure the installation stability of the first antenna unit 221 and the second antenna unit 222. The connecting portion 22b connects the antenna panel 22a and the plugging portion 22c together, which can realize both mechanical connection and signal transmission.
[0020] Optionally, the antenna panel 22a, the connecting portion 22b, and the plugging portion 22c can be of an integral structure or fixedly connected in sequence.
[0021] Exemplarily, when the user needs to play games, in order to strengthen the signal of the antenna 22, the headset kit 20 can be installed on the headset body 10. In this way, the circuit board 11 of the headset body 10 can be conducted with the first antenna unit 221 and the second antenna unit 222 through the first antenna connecting member 121 and the second antenna connecting member 122 respectively, so that the headset body 10 can have an additional dual-antenna function, enhancing the transmission quality and speed of the antenna 22 signal, thereby improving the user experience.
[0022] To achieve the electrical connection between the headset body 10 and the antenna 22, the headset body 10 can include a circuit board 11, a first antenna connecting member 121, and a second antenna connecting member 122, as Figure 2 、 Figure 4 、 Figure 7 and Figure 8 , and the circuit board 11, the first antenna connecting member 121, and the second antenna connecting member 122 are all disposed in the headset stem 13 to accommodate and protect the circuit board 11, the first antenna connecting member 121, and the second antenna connecting member 122 through the housing of the headset stem 13. Optionally, the first antenna connecting member 121 and the second antenna connecting member 122 can be combined into the housing of the headset stem 13 through an in-mold injection process, which can not only ensure the stability of the first antenna connecting member 121 and the second antenna connecting member 122, but also reduce the manufacturing difficulty.
[0023] One end of each of the first antenna connector 121 and the second antenna connector 122 is electrically connected to the circuit board 11 respectively. The other end of the first antenna connector 121 is electrically connected to the first antenna unit 221, and the other end of the second antenna connector 122 is electrically connected to the second antenna unit 222. Based on this setting, signal transmission between the circuit board 11 and the first antenna unit 221 can be achieved through the first antenna connector 121, and signal transmission between the circuit board 11 and the second antenna unit 222 can be achieved through the second antenna connector 122, thereby enabling stable signal transmission between the earphone body 10 and the outside world and improving the signal transmission performance of the earphone.
[0024] Optionally, both the first antenna connector 121 and the second antenna connector 122 can be metal parts. Additionally, they can both be elongated members.
[0025] To achieve the mating installation of the earphone body 10 and the mounting sleeve 21, the mounting sleeve 21 can be provided with a first cavity 211, and at least a part of the earphone body 10 can be inserted into the first cavity 211. In this way, the stability and firmness of the cooperation between the earphone body 10 and the mounting sleeve 21 can be ensured to prevent the mounting sleeve 21 from being detached from the earphone body 10 randomly.
[0026] Considering that at least a part of the earphone body 10 is located in the first cavity 211 of the mounting sleeve 21 and the antenna 22 is arranged on the mounting sleeve 21, in order to achieve the electrical connection between the earphone body 10 and the antenna 22, in the embodiment of the present application, the side wall of the first cavity 211 can be provided with a mounting hole 2111 communicating with the first cavity 211, as Figure 2 shown, the insertion parts 22c of each of the first antenna unit 221 and the second antenna unit 222 are inserted into the mounting hole 2111 and are electrically connected to the first antenna connector 121 or the second antenna connector 122. Based on this setting, it can effectively avoid the mounting sleeve 21 from hindering the contact between the first antenna connector 121 and the first antenna unit 221, and the contact between the second antenna connector 122 and the second antenna unit 222, and achieve unobstructed signal transmission.
[0027] It should be noted here that each of the first antenna connector 121 and the second antenna connector 122 is arranged inside the earphone body 10, and their respective ends are exposed from the earphone body 10, and the parts of the earphone body 10 exposing the first antenna connector 121 and the second antenna connector 122 are inserted into the first cavity 211; correspondingly, the insertion parts 22c of each of the first antenna unit 221 and the second antenna unit 222 extend into the first cavity 211 through the mounting hole 2111. In this way, the first antenna connector 121 can be in contact with the insertion part 22c of the first antenna unit 221, and the second antenna connector 122 can be in contact with the insertion part 22c of the second antenna unit 222, thereby achieving stable signal transmission.
[0028] To achieve stable installation of the first antenna unit 221 and the second antenna unit 222, the outer wall of the mounting sleeve 21 may be provided with a first mounting groove 212 and a second mounting groove 213. As shown in Figure 5 the figure, the connecting parts 22b of the first antenna unit 221 and the second antenna unit 222 are respectively embedded in the corresponding first mounting grooves 212, and the antenna panels 22a are respectively embedded in the corresponding second mounting grooves 213. Based on this setting, the installation and limitation of the corresponding connecting parts 22b can be achieved through the first mounting grooves 212, and the installation and limitation of the corresponding antenna panels 22a can be achieved through the second mounting grooves 213, so as to ensure the installation stability of the first antenna unit 221 and the second antenna unit 222.
[0029] Considering that the earphone body 10 has a sound transmission function, the earphone body 10 may be provided with a first sound channel M, and sound can be transmitted through the first sound channel M so that the earphone body 10 can emit sound or receive calls.
[0030] Since at least part of the earphone body 10 is arranged in the first cavity 211 of the mounting sleeve 21, to prevent the mounting sleeve 21 from hindering the sound transmission function of the earphone body 10, the first antenna unit 221 and the second antenna unit 222 are arranged at intervals, and the first antenna unit 221, the second antenna unit 222 and the hole wall of the mounting hole 2111 can jointly enclose a second sound channel N, and the second sound channel N communicates with the first sound channel M, as shown in Figures 3 to 5 the figure. Based on this, during the process of the earphone body 10 emitting sound or receiving calls, the sound can be transmitted through the first sound channel M and the second sound channel N, so as to ensure the smooth transmission of the sound without being blocked.
[0031] Optionally, the first sound channel M and the second sound channel N are arranged in a bent form, which can help reduce the wind speed outside and reduce wind noise.
[0032] Optionally, the insertion parts 22c of the first antenna unit 221 and the second antenna unit 222 are arranged at intervals in the circumferential direction of the mounting sleeve 21, and jointly enclose the second sound channel N with the two side walls of the mounting hole 2111 in the axial direction of the mounting sleeve 21. Of course, it can also be that the insertion parts 22c of the first antenna unit 221 and the second antenna unit 222 are arranged at intervals in the axial direction of the mounting sleeve 21, and jointly enclose the second sound channel N with the two side walls of the mounting hole 2111 in the circumferential direction of the mounting sleeve 21.
[0033] To form the first sound channel M, the first antenna connecting piece 121 may be provided with a first groove 1211, the second antenna connecting piece 122 may be provided with a second groove 1221, and the first groove 1211 and the second groove 1221 are buckled to form the first sound channel M, as shown in Figure 7 and Figure 8As shown. Based on this, the first antenna connector 121 and the second antenna connector 122 can not only transmit signals, but also play a guiding role in the transmission of sound, achieving the effect of realizing multiple different functions with the same structure.
[0034] Exemplarily, when the user needs to play games, in order to enhance the sound quality and sound effects, the headphone kit 20 can be installed on the headphone body 10. In this way, the first channel M and the second channel N can be connected, and the first channel M and the second channel N are arranged in a bent form, which is beneficial to reducing the wind speed outside, reducing wind noise and noise, and is beneficial to improving the user experience.
[0035] To further improve the battery life of the headphones, the headphone kit 20 can also include a battery 23. The battery 23 is provided in the mounting sleeve 21 and is electrically connected to the headphone body 10, as Figure 2 、 Figure 4 and Figure 9 shown. Based on this, when the headphone kit 20 is matched with the headphone body 10, the headphone body 10 can be electrically connected to the battery 23 to provide electrical energy for the headphone body 10 through the battery 23, so as to increase the overall battery capacity of the headphones, improve the battery life of the headphones, and improve the user experience.
[0036] To realize the installation of the battery 23, on the basis of providing the first cavity 211, the mounting sleeve 21 can also be provided with a second cavity 214. At least part of the headphone body 10 is provided in the first cavity 211, and the battery 23 is provided in the second cavity 214. In this way, the mounting sleeve 21 can be respectively matched and installed with the headphone body 10, and can carry and install the battery 23. Optionally, the first cavity 211 and the second cavity 214 can be arranged along the axial direction of the mounting sleeve 21, which is beneficial to improving the space utilization rate and reducing the overall cross-sectional size of the headphones.
[0037] Considering that at least part of the headphone body 10 is located in the first cavity 211 and the battery 23 is located in the second cavity 214, so that the headphone body 10 and the battery 23 are separated. To realize the electrical connection between the two, the first cavity 211 and the second cavity 214 are connected through a first channel 215 and a second channel 216.
[0038] Furthermore, as Figure 2 、 Figure 4 、 Figure 9 and Figure 10As shown, the headset kit 20 may include a first charging post 241 and a second charging post 242. The first charging post 241 is disposed in the first channel 215, and the second charging post 242 is disposed in the second channel 216. One end of each of the first charging post 241 and the second charging post 242 is electrically connected to the battery 23, and the other end of each is electrically connected to the headset body 10. Based on this setting, the battery 23 and the headset body 10 can be electrically connected through the first charging post 241 and the second charging post 242, so that the battery 23 can supply power to the headset body 10 to improve the battery life of the headset body 10.
[0039] Optionally, both the first charging post 241 and the second charging post 242 can be combined into the mounting sleeve 21 through an in-mold injection process, which can not only ensure the stability of the first charging post 241 and the second charging post 242, but also reduce the manufacturing difficulty.
[0040] Optionally, the ends of the first charging post 241 and the second charging post 242 extend from the first channel 215 and the second channel 216 respectively towards the first cavity 211, and their end faces are flush with the inner wall of the bottom of the first cavity 211. In this way, it can not only ensure that they are in contact with the headset body 10 respectively to achieve electrical connection, but also not limit the headset body 10, so as to ensure that the headset body 10 can be inserted to the bottom of the first cavity 211, making the headset body 10 not easily detached from the mounting sleeve 21.
[0041] Exemplarily, when the user needs to play games, in order to increase the battery life, the headset kit 20 can be installed on the headset body 10. In this way, the headset body 10 and the battery 23 can be electrically connected through the first charging post 241 and the second charging post 242, so as to supply additional power to the headset body 10 through the battery 23, thereby improving the battery life of the headset body 10 and being beneficial to enhancing the user experience.
[0042] Some charging terminals in the related art are made of metal and are fixed to the circuit board 11 by welding. However, the temperature is relatively high during the welding process, and it is easy to transfer heat to the outside of the headset body 10 through the charging terminals, resulting in burns or heat-induced cracks on the outer surface of the headset body 10 around the charging terminals. In addition, the charging terminals made of metal are processed by turning and are relatively regular. It is not easy to weld them after being assembled to the circuit board 11, resulting in a problem of false soldering, affecting the charging efficiency, and the material and processing costs of the charging terminals made of metal are relatively high.
[0043] Based on the above situation, the embodiments of the present application redesigned the charging terminals to solve the above problems.
[0044] Refer to Figures 11 to 15, in some embodiments, the earphone body 10 may include an earphone stem 13, a circuit board 11, a first electrical connector 141, and a second electrical connector 142. Among them, the circuit board 11 is disposed inside the earphone stem 13 to protect the circuit board 11 through the outer shell of the earphone stem 13; both the first electrical connector 141 and the second electrical connector 142 are disposed on the earphone stem 13 to fixedly install the first electrical connector 141 and the second electrical connector 142 through the earphone stem 13, ensuring the installation stability of both.
[0045] Further, the first electrical connector 141 may be electrically connected to the circuit board 11, the second electrical connector 142 is electrically connected to the first electrical connector 141, and a part of the second electrical connector 142 is exposed outside the earphone stem 13 for electrical connection with a corresponding charging post. In this way, the electrical energy transmitted by the charging post can be transmitted to the circuit board 11 through the second electrical connector 142 and the first electrical connector 141, so as to supply power to the earphone body 10 through the battery 23.
[0046] Optionally, the first electrical connector 141 may include a first body made of a non-metallic material and a first metal layer covering the outer surface of the first body, and the first metal layer is electrically connected to the circuit board 11; one end of the second electrical connector 142 is electrically connected to the first metal layer, and the other end is electrically connected to a corresponding charging post. Based on this, electrical energy transmission can be achieved through the first metal layer of the first electrical connector 141 and the second electrical connector 142, and moreover, the metal usage of the first electrical connector 141 can be reduced, which is beneficial to weight reduction and cost reduction; in addition, compared with pure metal, the non-metallic material has relatively weak thermal conductivity, so that the heat during the welding process can be reduced from being transmitted from the first electrical connector 141 to the outside of the earphone body 10, thereby effectively alleviating the problem of scalding or heat-induced cracking on the appearance surface of the earphone body 10. In addition, compared with metal turning parts, the shape of the first electrical connector 141 in the embodiments of the present application is relatively free, and a more convenient welding structure can be made, thereby alleviating the problem of poor welding.
[0047] In some more specific embodiments, the first body may be a plastic part, and the first metal layer may be covered on the outer surface of the first body by electroplating. With the first electrical connector 141 in this form, when welding with the circuit board 11, the welding structure can be made better, making the welding operation more convenient and alleviating the problem of poor welding. Exemplarily, the first body may be made of ABS material. It should be noted here that the first metal layer is relatively thick to enable the first metal layer to meet the conductive function.
[0048] Optionally, through a two-color injection molding process of the mold, a first electro-connecting member 141 with electroplating can be separated out inside the housing of the earphone body 10, and other areas of the housing use plastic materials that are not easily electroplated, such as PC or other modified materials. It should be noted here that since the first electro-connecting member 141 is directly combined with the housing of the earphone body 10 through the two-color injection molding process, thus, the first electro-connecting member 141 and the housing of the earphone body 10 can be formed into an integral body. During the assembly process, only the circuit board 11 needs to be assembled into the housing and then directly welded.
[0049] In addition, the second electro-connecting member 142 can include a second body made of a non-metallic material and a second metal layer covering the outer surface of the second body, and the second metal layer is connected to the first metal layer. In this way, stable electrical energy transmission can be achieved between the first electro-connecting member 141 and the second electro-connecting member 142, and moreover, the metal usage of the second electro-connecting member 142 can be reduced, which is beneficial to weight reduction and cost reduction.
[0050] In some more specific embodiments, the second body can be a plastic part, and the second metal layer can be covered on the outer surface of the second body by electroplating. By adopting the second electro-connecting member 142 in this form, heat transfer to the outside can be reduced, and its good electrical conductivity can be ensured. Moreover, it can also solve the problem of using metal materials and reduce the processing cost. Exemplarily, the second body can adopt an ABS material. It should be noted here that the second metal layer is relatively thick so that the second metal layer can meet the conductive function.
[0051] In other embodiments, the second electro-connecting member 142 can also be a metal part, which has good electrical conductivity and relatively high strength and is not easily damaged.
[0052] To realize the connection between the first electro-connecting member 141 and the circuit board 11, the first electro-connecting member 141 can be provided with a first protrusion 1411, and the circuit board 11 can be provided with a first through hole 111. The first protrusion 1411 is inserted into the first through hole 111, and the connection between the first protrusion 1411 and the first through hole 111 is fixed by welding, as Figure 2 and Figure 14 shown. Based on this setting, both the connection stability and reliability between the first electro-connecting member 141 and the circuit board 11 can be ensured, so as to ensure stable electrical energy transmission between the two.
[0053] To achieve the connection between the first electrical connection member 141 and the second electrical connection member 142, one of the first electrical connection member 141 and the second electrical connection member 142 may be provided with a second protrusion 1421, and the other may be provided with a second through hole or groove 1412, and the second protrusion 1421 is in plug-in fit with the second through hole, or the second protrusion 1421 is in plug-in fit with the groove. Based on this setting, the reliability and stability of the connection between the first electrical connection member 141 and the second electrical connection member 142 can be ensured to ensure stable power transmission between the two. In addition, since an interference fit is formed between the first electrical connection member 141 and the second electrical connection member 142, it can not only block the hole leading to the appearance and play a waterproof role, but also ensure stable contact conduction between the first electrical connection member 141 and the second electrical connection member 142.
[0054] Further, a sunk groove 131 may be provided on the outer wall of the earphone stem 13. As Figure 12 shown, at least part of the first electrical connection member 141 may be disposed at the bottom of the sunk groove 131 to accommodate at least part of the first electrical connection member 141 through the sunk groove 131 and prevent the first electrical connection member 141 from protruding from the earphone stem 13.
[0055] In addition, the second electrical connection member 142 may further include an end cap 1422 provided at one end of the second protrusion 1421. The end cap 1422 is disposed in the sunk groove 131 and contacts the first electrical connection member 141, and the side of the end cap 1422 facing away from the second protrusion 1421 is used to contact the charging post. Based on this, it can not only ensure that the second protrusion 1421 is exposed to contact the charging post, but also prevent the second protrusion 1421 from protruding from the earphone stem 13.
[0056] Based on the first electrical connection member 141 and the second electrical connection member 142 in the above form, the problems of scalding on the appearance surface of the earphone body 10 and poor soldering are effectively solved, and the use of metal materials can also be reduced, the cost of turning metal materials can be reduced, and the quality of the earphone body 10 can be reduced, thereby improving the product competitiveness.
[0057] Considering that at least part of the earphone body 10 is inserted into the mounting sleeve 21, and the two are locked mainly under the action of frictional resistance. To prevent the earphone body 10 from being separated from the earphone kit 20 at will, in the embodiment of the present application, the earphone body 10 may include a first magnetic member 15. Correspondingly, the earphone kit 20 may include a second magnetic member 25. When the earphone body 10 and the earphone kit 20 are cooperatively installed, the first magnetic member 15 and the second magnetic member 25 can be coupled and connected. As Figure 2 、 Figure 4 and Figure 9 shown, in this way, under the magnetic action, the earphone body 10 can be effectively prevented from being separated from the earphone kit 20 at will, and the reliability of the cooperative installation between the two can be ensured.
[0058] When it is necessary to cooperate with the installation of the earphone body 10 and the earphone kit 20, bring the earphone stem 13 of the earphone body 10 close to the first cavity 211 of the mounting sleeve 21. Under the magnetic force of the first magnetic member 15 and the second magnetic member 25, the earphone stem 13 of the earphone body 10 can be inserted into the first cavity 211, so that the cooperative installation of the earphone body 10 and the earphone kit 20 can be more convenient; when it is necessary to disassemble the earphone body 10 and the earphone kit 20, it is necessary to manually apply a force greater than the magnetic force to separate the earphone body 10 from the earphone kit 20.
[0059] Optionally, the first magnetic member 15 can be arranged inside the earphone stem 13 of the earphone body 10, and the second magnetic member 25 can be arranged inside the second cavity 214 of the mounting sleeve 21. Of course, other arrangement methods can also be adopted, and specific limitations are not made here.
[0060] In other embodiments, the earphone body 10 and the earphone kit 20 can also be locked by a snap connection method to prevent the two from separating randomly.
[0061] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims, and all belong to the protection scope of the present application.
Claims
1. A headset, characterized in that: include: Headphones and earphone kits; The earphone kit comprises a mounting sleeve and an antenna, wherein the antenna is arranged on the mounting sleeve; The earphone body is detachably connected to the mounting sleeve, and the earphone body is electrically connected to the antenna.
2. The earphone according to claim 1, characterized in that The antenna comprises a first antenna unit and a second antenna unit, wherein the first antenna unit and the second antenna unit each comprise an antenna panel, a connecting portion and a plug-in portion, wherein the connecting portion is arranged between the antenna panel and the plug-in portion; The earphone body includes a circuit board, a first antenna connector and a second antenna connector, all of which are arranged in the earphone handle. One end of the first antenna connector and the second antenna connector are respectively electrically connected to the circuit board, the other end of the first antenna connector is electrically connected to the first antenna unit, and the other end of the second antenna connector is electrically connected to the second antenna unit.
3. The earphone according to claim 2, characterized in that The mounting sleeve is provided with a first cavity, a side wall of the first cavity is provided with a mounting hole communicating with the first cavity, at least a portion of the earphone body is inserted into the first cavity, the plug-in portion is inserted into the mounting hole, and is electrically connected to the first antenna connector or the second antenna connector; The outer wall of the mounting sleeve is provided with a first mounting groove and a second mounting groove, the connecting portion is embedded in the first mounting groove, and the antenna panel is embedded in the second mounting groove; The first antenna unit and the second antenna unit are arranged at intervals, and the first antenna unit, the second antenna unit and the hole wall of the mounting hole together form a second sound channel; The earphone body is provided with a first sound channel, and the first sound channel is communicated with the second sound channel.
4. The earphone according to claim 3, characterized in that: The first antenna connector is provided with a first groove, and the second antenna connector is provided with a second groove; The first groove and the second groove are buckled to form the first sound channel.
5. The earphone according to claim 1, characterized in that The earphone kit further comprises a battery, and the battery is arranged in the mounting sleeve; The battery is electrically connected to the earphone body.
6. The earphone according to claim 5, characterized in that The mounting sleeve is provided with a first cavity and a second cavity, at least a portion of the earphone body is provided in the first cavity, the battery is provided in the second cavity, and the first cavity and the second cavity are connected through a first channel and a second channel; The earphone kit also includes a first charging post and a second charging post, the first charging post is arranged in the first channel, and the second charging post is arranged in the second channel, one end of the first charging post and the second charging post are respectively electrically connected to the battery, and the other end of each is respectively electrically connected to the earphone body.
7. The earphone according to claim 1, characterized in that The earphone body comprises an earphone handle, a circuit board, a first electrical connector and a second electrical connector; The circuit board is arranged in the earphone handle; The first electrical connector is disposed on the earphone handle, and includes a first body made of non-metallic material and a first metal layer covering the outer surface of the first body, and the first metal layer is electrically connected to the circuit board; The second electrical connector is disposed on the earphone handle, one end of the second electrical connector is electrically connected to the first metal layer, and the other end is used to be electrically connected to the corresponding charging column.
8. The earphone according to claim 7, characterized in that: The second electrical connector includes a second body made of non-metallic material and a second metal layer covering the outer surface of the second body, and the second metal layer is connected to the first metal layer; Alternatively, the second electrical connector is a metal component.
9. The earphone according to claim 7, characterized in that: The first electrical connector is provided with a first protrusion, the circuit board is provided with a first through hole, the first protrusion is inserted into the first through hole, and the connection between the first protrusion and the first through hole is welded and fixed.
10. The earphone according to claim 7, characterized in that One of the first electrical connector and the second electrical connector is provided with a second protrusion, and the other is provided with a second through hole or a groove; The second protrusion is plug-fitted with the second through hole, or the second protrusion is plug-fitted with the groove.
11. The earphone according to claim 10, characterized in that The outer wall of the earphone handle is provided with a recessed groove, and at least a portion of the first electrical connector is provided at the bottom of the recessed groove; The second electrical connector is also provided with an end cap disposed at one end of the second protrusion, the end cap is disposed in the recess and contacts the first electrical connector, and the side of the end cap facing away from the second protrusion is used to contact the charging column.
12. The headset according to any one of claims 1 to 11, characterized in that: The earphone body includes a first magnetic member, the earphone set includes a second magnetic member, and the second magnetic member is arranged on the mounting sleeve; The first magnetic component is coupled to the second magnetic component.