Bone conduction earphone charging clamp wireless charging cabin assembly installation structure
By designing the wireless charging compartment assembly installation structure of the bone conduction headset charging clip, the combination of the charging base, charging module and grooves is used to realize wireless charging of the bone conduction headset, solving the problem of inflexible charging methods and improving charging efficiency and product quality.
Patent Information
- Application Number
- CN202420352393.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-26
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-02-26
AI Technical Summary
The charging methods of existing bone conduction headphones are mostly fixed connections, which limits the flexibility of charging and causes inconvenience to users.
A wireless charging compartment assembly installation structure of the bone conduction headphone charging clip is designed, including a charging base, a charging module and a groove. The charging module is equipped with a charging end exposed in the groove, and wireless charging of the bone conduction headphones is realized through magnets and elastic needles.
The charging coordination between bone conduction headphones and charging compartments is optimized, materials are saved, assembly process is simplified, production costs are reduced, work efficiency is improved, and the quality and waterproofness of the product are improved through glue-filled sealing.
Smart Images

Figure CN222839775U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of component installation structures, and in particular discloses a bone conduction earphone charging clip and wireless charging cabin component installation structure. Background Art
[0002] With the development of science and technology, Bluetooth headsets and bone conduction headsets have entered the lives of ordinary people on a large scale, providing convenience for people to make phone calls and listen to music. Nowadays, most headsets are connected to a fixed power source, which limits the flexibility of headset charging and brings inconvenience to people's experience. Utility Model Content
[0003] In order to overcome the shortcomings and deficiencies in the prior art, the purpose of the utility model is to provide a bone conduction earphone charging clip wireless charging cabin assembly installation structure, comprising a charging seat, a charging module accommodated in the charging seat, and a groove provided on the charging seat and used to accommodate an external bone conduction earphone charging part. The charging module is provided with a charging end exposed in the groove. When the bone conduction earphone charging part is placed in the groove, the charging end and the bone conduction earphone charging part in the groove are connected for charging the bone conduction earphone. This installation structure optimizes the charging coordination between the bone conduction earphone and the charging cabin, saves materials required for the assembly and fastening of the assembly, simplifies the assembly process, saves production costs, and improves work efficiency.
[0004] Furthermore, the charging module includes a circuit board connected to a charging terminal, and the charging terminal is provided with an elastic needle for conducting the charging part of the bone conduction earphone.
[0005] Furthermore, the charging seat is provided with a panel for separating the charging module and the groove, a magnet for holding the external bone conduction earphone charging part and limiting the charging part in the groove, and the panel is provided with a first through hole, which is used to hold the magnet.
[0006] Furthermore, there are two first through holes, which are located at two ends of the panel away from each other, and the first through holes are rectangular; there are two magnets, and the two first through holes are respectively used to accommodate two magnets, and the magnetic poles on the same side of the two magnets have the same polarity.
[0007] Furthermore, a second through hole is provided on the panel between the two first through holes, and the charging end passes through the second through hole to be connected to the external bone conduction earphone charging part.
[0008] Furthermore, there are two charging terminals, which are fixed on a circuit board. The circuit board is also provided with a welding protrusion for conducting a connector socket, and the connector socket is used for conducting an external power supply.
[0009] Furthermore, the charging module also includes an adhesive sticker for sticking one side of the magnet on the panel, and the circuit board is in contact with the other side of the magnet. After the adhesive sticker is hot-melted, the magnet and the charging end are fixed on the panel.
[0010] Furthermore, the charging module also includes a bracket, and the bracket, the charging seat and the panel are arranged to form a cavity for accommodating the magnet and the circuit board. The bracket is provided with a positioning hole, and the space for accommodating the bracket in the charging seat is provided with a positioning column, which is installed in the positioning hole to fix the bracket.
[0011] Furthermore, at least two positioning holes and positioning posts are provided, and the positions of the positioning holes and positioning posts correspond one to one.
[0012] Furthermore, the bracket is provided with a glue injection hole, which is communicated with the cavity, and the cavity is used to accommodate the curing glue part injected into the covering component through the glue injection hole.
[0013] The beneficial effects of the utility model are as follows: a bone conduction earphone charging clip and a wireless charging cabin assembly installation structure, which optimizes the charging coordination between the bone conduction earphone and the charging cabin, saves materials required for the assembly and fastening of the assembly, simplifies the assembly process, saves production costs, and improves work efficiency; multiple components in the charging cabin are sealed with glue in one space, which improves the quality of the product, and general bumps cannot cause damage to the components in the glue-filled space, and the waterproofness of the components in the glue-filled sealed space is greatly improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a three-dimensional schematic diagram of the utility model;
[0015] Figure 2 This is an exploded view of the interior of the accommodation space of the utility model;
[0016] Figure 3 This is a schematic diagram of a charging module of the present utility model;
[0017] Figure 4 It is a three-dimensional schematic diagram from another perspective of the utility model;
[0018] Figure 5 It is a schematic diagram of the bracket of the utility model;
[0019] Figure 6 It is a schematic diagram of the adhesive sticker of the utility model;
[0020] Figure 7 This is a structural diagram of the internal components of the charging module of the present utility model.
[0021] Reference numerals include:
[0022] 1--charging module 2--groove 3--magnet 4--circuit board 5--panel 6--first through hole 7--charging end 71--elastic needle 8--welding protrusion 9--second through hole 10--bracket 11--positioning hole 12--positioning column 15--adhesive sticker 100--charging seat 101--cavity 102--glue filling hole. DETAILED DESCRIPTION
[0023] See also Figures 1 to 7 As shown, a bone conduction earphone charging clip wireless charging cabin assembly mounting structure of the utility model comprises a charging seat 100, a charging module 1 accommodated in the charging seat 100, and a groove 2 provided on the charging seat 100 and used to accommodate an external bone conduction earphone charging part. The charging module 1 is provided with a charging terminal 7 exposed in the groove 2. When the bone conduction earphone charging part is placed in the groove 2, the charging terminal 7 is connected to the bone conduction earphone charging part in the groove 2 for charging the bone conduction earphone. This mounting structure optimizes the charging coordination between the bone conduction earphone and the charging cabin, saves materials required for components and fastening components, simplifies the assembly process, saves production costs, and improves work efficiency.
[0024] The charging module 1 includes a circuit board 4 connected to a charging terminal 7. The charging terminal 7 is provided with an elastic needle 71 for conducting the charging part of the bone conduction earphone. The charging terminal 7 is fixed on the circuit board 4. The circuit board 4 is connected to a connector socket. The connector socket is connected to an external power supply. The elastic needle 71 of the charging terminal 7 is used to conduct the external bone conduction earphone. The power supply charges the external bone conduction earphone through the charging module 1.
[0025] The charging seat 100 is provided with a panel 5 for separating the charging module 1 and the groove 2, and a magnet 3 for holding the external bone conduction earphone charging part and limiting the charging part in the groove 2. The panel 5 is provided with a first through hole 6, and the first through hole 6 is used to hold the magnet 3. The panel 5 is used to separate the charging module 1 and the groove 2, and the magnet 3 held by the first through hole 6 on the panel 5 is used to adsorb the bone conduction earphone charging part.
[0026] There are two first through holes 6, which are located at two ends of the panel 5 away from each other, and the first through holes 6 are rectangular; there are two magnets 3, and the two first through holes 6 are respectively used to accommodate two magnets 3, and the magnetic poles on the same side of the two magnets 3 have the same polarity. The two first through holes 6 are located at two ends of the panel 5 away from each other, and the magnetic poles on the same side of the magnets 3 have the same polarity, which can uniformly hold the magnet 3 on the charging port of the external bone conduction headset. Installing the magnet 3 in the rectangular first through hole 6 can increase the holding surface of the magnet 3, and further increase the holding force of the magnet 3.
[0027] A second through hole 9 is provided on the panel 5 between the two first through holes 6. The charging terminal 7 passes through the second through hole 9 to conduct to the external bone conduction earphone charging part. There are two charging terminals 7. The charging terminal 7 is fixed on the circuit board 4. The circuit board 4 is also provided with a welding protrusion 8 that conducts to the connector socket. The connector socket is used to conduct to the external power supply. The second through hole 9 is located between the two magnets 3 to ensure that the charging terminal 7 installed in the second through hole 9 is evenly stressed, and to ensure that the charging terminal 7 is in contact with the charging port of the external bone conduction earphone and has good conductivity. The charging terminal 7 is conducted to the external power supply through the welding protrusion 8 on the circuit board 4.
[0028] The charging module 1 also includes an adhesive sticker 15 for sticking one side of the magnet 3 on the panel 5, and the circuit board 4 is in contact with the other side of the magnet 3. The adhesive sticker 15 is hot-melted to fix the magnet 3 and the charging terminal 7 on the panel 5. The adhesive sticker 15 is used to fix the magnet 3 and the charging terminal 7 clamped on the panel 5.
[0029] The charging module 1 also includes a bracket 10, and the bracket 10, the charging seat 100 and the panel 5 are arranged to form a cavity 101 for accommodating the magnet 3 and the circuit board 4. The bracket 10 is provided with a positioning hole 11, and the space for accommodating the bracket 10 in the charging seat 100 is provided with a positioning column 12. The positioning column 12 is inserted into the positioning hole 11 to fix the bracket 10. There are at least two positioning holes 11 and positioning columns 12, and the positions of the positioning holes 11 and the positioning columns 12 correspond one to one. The bracket 10 is used to form a cavity 101 that defines the charging module 1 together with the charging seat 100 and the panel 5. Two or more positioning columns 12 and the positioning hole 11 are used to define the position of the cavity 101.
[0030] The bracket 10 is provided with a glue injection hole 102, which is communicated with the cavity 101. The cavity 101 is used to accommodate the curing glue part injected into the covering component through the glue injection hole 102. The glue injection hole 102 is used to inject glue into the cavity 101, and the liquid glue is injected into the accommodating space 101 for curing. The magnet 3, the circuit board 4 and the charging terminal 7 are installed more firmly and have better waterproof performance.
[0031] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there will be changes in the specific implementation methods and application scopes. The contents of this specification should not be understood as limiting the present invention.
Claims
1. A bone conduction headset charging clip wireless charging compartment assembly mounting structure, comprising a charging seat (100), a charging module (1) accommodated in the charging seat (100), and a groove (2) arranged on the charging seat (100) and used to accommodate an external bone conduction headset charging portion, characterized in that: The charging module (1) is provided with a charging terminal (7) exposed in the groove (2); when the charging portion of the bone conduction earphone is placed in the groove (2), the charging terminal (7) and the charging portion of the bone conduction earphone in the groove (2) are connected to charge the bone conduction earphone; The charging seat (100) is provided with a panel (5) for separating the charging module (1) and the groove (2), and a magnet (3) for holding the external bone conduction earphone charging part and for limiting the charging part in the groove (2); the panel (5) is provided with a first through hole (6), and the first through hole (6) is used to hold the magnet (3); The charging module (1) further comprises a bracket (10), wherein the bracket (10), the charging seat (100) and the panel (5) enclose a cavity (101) for accommodating the magnet (3) and the circuit board (4), the bracket (10) being provided with a positioning hole (11), and a positioning column (12) being provided in a space for accommodating the bracket (10) in the charging seat (100), and the positioning column (12) being inserted into the positioning hole (11) for fixing the bracket (10); The support (10) is provided with a glue injection hole (102), the glue injection hole (102) is communicated with the receiving cavity (101), and the receiving cavity (101) is used to receive a cured glue piece injected into the covering component through the glue injection hole (102).
2. According to claim 1, a bone conduction headset charging clip wireless charging compartment assembly installation structure, characterized in that: The charging module (1) comprises a circuit board (4) connected to a charging terminal (7), wherein the charging terminal (7) is provided with an elastic needle (71) for conducting the charging part of the bone conduction earphone.
3. According to claim 1, a bone conduction headset charging clip wireless charging compartment assembly installation structure is characterized by: There are two first through holes (6), the two first through holes (6) are located at two ends of the panel (5) away from each other, and the first through holes (6) are rectangular; there are two magnets (3), the two first through holes (6) are respectively used to accommodate two magnets (3), and the magnetic poles on the same side of the two magnets (3) have the same polarity.
4. According to claim 3, a bone conduction headset charging clip wireless charging compartment assembly installation structure, characterized in that: A second through hole (9) is provided on the panel (5) between the two first through holes (6), and the charging end (7) passes through the second through hole (9) to be connected to an external bone conduction earphone charging part.
5. According to claim 2, a bone conduction headset charging clip wireless charging compartment assembly installation structure, characterized in that: The number of the charging terminals (7) is two, and the charging terminals (7) are fixed on the circuit board (4). The circuit board (4) is also provided with a welding protrusion (8) for conducting to a connector socket, and the connector socket is used for conducting to an external power supply.
6. According to claim 1, a bone conduction headset charging clip wireless charging compartment assembly installation structure, characterized in that: The charging module (1) further comprises an adhesive tape (15) for attaching one side of the magnet (3) to the panel (5), the circuit board (4) abuts against the other side of the magnet (3), and the adhesive tape (15) is hot-melted to fix the magnet (3) and the charging terminal (7) to the panel (5).
7. According to claim 1, a bone conduction headset charging clip wireless charging compartment assembly installation structure, characterized in that: At least two positioning holes (11) and positioning columns (12) are provided, and the positions of the positioning holes (11) and the positioning columns (12) correspond one to one.