An anti-skid Bluetooth earphone

CN224610888UActive Publication Date: 2026-08-07KUNMING TANHUA HARDWARE CO LTD
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Patent Information

Application Number
CN202422641242.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2026-08-07
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

[0004]该实用新型能够方便用户取放耳机,但其内部耳机佩戴主体为表面较为光滑的材质及结构,其耳机拿取使用时存在滑动掉落风险,耳机掉落则易影响其内部元件的连接,从而造成损坏,为此,我们提出一种防滑的蓝牙耳机

Benefits of technology

[0021]本实用新型提供了一种防滑的蓝牙耳机,具备以下有益效果:该装置便于提高蓝牙耳机使用时的抓握稳定性,有利于减少耳机摔落可能性,便于提高蓝牙耳机使用时的防滑能力,有利于保障耳机使用的安全性,该装置便于提高设备的充电使用能力,有利于提高设备的续航充电能力,该装置便于提高设备组装的便利性,有利于保障使用时外部对内部蓝牙耳机的保护能力。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of anti-skid bluetooth headset, including earphone outer shell and collar handle, the inside bottom end of earphone outer shell is provided with inner pad bottom mould, and the inside left and right ends of inner pad bottom mould are evenly provided with earphone tube, the top of earphone tube is provided with earphone head, and the front end of earphone head is provided with antiskid pad on both sides, the outside of earphone tube is wrapped with anti-skid sleeve, the collar handle is set to the left and right ends of earphone outer shell.This anti-skid bluetooth headset, when using, the device is convenient to improve the gripping stability of bluetooth headset when using, is conducive to reducing the possibility of earphone falling, is convenient to improve the anti-skid ability of bluetooth headset when using, is conducive to guaranteeing the security of earphone use, the device is convenient to improve the charging use ability of equipment, is conducive to improving the endurance charging capacity of equipment, the device is convenient to improve the convenience of equipment assembly, is conducive to guaranteeing the protection ability of external to internal bluetooth headset when using.
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Description

Technical Field

[0001] This utility model relates to the field of headphone technology, specifically to an anti-slip Bluetooth headphone. Background Technology

[0002] Headphones are a pair of transducers that receive electrical signals from a media player or receiver and convert them into audible sound waves using speakers placed close to the ears. Bluetooth headphones apply Bluetooth technology to hands-free headsets, allowing users to be free from the shackles of annoying wires and make calls easily and freely in various ways.

[0003] For example, patent document CN217216847U discloses a Bluetooth headset, including a battery case, two earphones, and a locking component. The battery case has a mounting surface with two receiving slots, and each earphone is housed in its corresponding receiving slot. The battery case also has a mounting cavity, and the side walls of the two receiving slots are provided with communication ports that communicate with the mounting cavity at positions far apart. The locking component is installed in the mounting cavity and partially exposed on the outside of the battery case. The locking component is used to lock or unlock each earphone simultaneously through the communication ports.

[0004] This utility model allows users to easily pick up and put down the earphones, but the earphone wearing body inside is made of a relatively smooth material and structure, which poses a risk of slipping and falling when the earphones are picked up and used. If the earphones fall, they may affect the connection of the internal components and cause damage. Therefore, we propose an anti-slip Bluetooth earphone. Utility Model Content

[0005] The purpose of this invention is to provide a non-slip Bluetooth headset to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a non-slip Bluetooth headset, comprising a headset outer shell and a loop handle, wherein an inner pad bottom mold is provided at the bottom of the inner shell, and a headset tube is provided at both the left and right ends of the inner pad bottom mold, a headset head is provided at the top of the headset tube, and non-slip pads are provided on the upper and lower sides of the front end of the headset head, a non-slip sleeve is wrapped around the headset tube, and the loop handle is provided at both the left and right ends of the headset outer shell.

[0007] The earphone tube has an anti-slip sleeve embedded in its side wall, and two anti-slip pads are provided on the upper and lower sides of the earphone head near the inside of the ear. Grooves are opened on both sides of the earphone outer shell. The loop handle is composed of two arcs of different sizes and has three holes. The loop handle is installed in the groove. The user can hang the two ends of the anti-loss lanyard in the corresponding through holes in the loop handle as needed. When using the earphone, the user can directly grasp and pinch the opening of the loop handle. When using the earphone, the earphone tube and earphone head are removed. When removing the earphone, the user holds the anti-slip pad and inserts the earphone head into the ear. After it is inserted into the ear, the anti-slip pad rubs against the skin inside the ear, making it difficult to slip out during use.

[0008] Furthermore, a battery storage motherboard is provided at the bottom of the earphone tube, and Bluetooth signal connection components are provided at both ends of the battery storage motherboard.

[0009] Furthermore, the Bluetooth signal connection component includes a transmission block and a conductive plate, and the conductive plate is provided at the end of the transmission block away from the central axis of the battery motherboard.

[0010] The headphone tube contains a power storage motherboard, Bluetooth signal connection components, a transmission block, and a conductive plate to meet the power storage and transmission capabilities of the headphone.

[0011] Furthermore, the bottom of the battery motherboard is provided with an earphone charging port, and the bottom of the earphone charging port is provided with a limiting charging base.

[0012] When the earphones are placed inside the inner pad mold for charging, the bottom of the earphone charging port fits against the inside of the limiting charging base. During charging, the protrusion at the bottom of the limiting charging base matches the three protrusions of the earphone charging port.

[0013] Furthermore, the bottom end of the limiting charging base is provided with a mounting base, and the mounting base is provided with an energy storage component.

[0014] Insert the battery casing into the mounting bracket, and connect the other end of the mounting bracket to two limit charging bases.

[0015] Furthermore, the energy storage component includes a housing charging port and a housing battery, with the housing battery disposed at the top of the housing charging port.

[0016] Connect one side of the battery casing to the charging port on the casing, and then invert the mounting bracket and insert it into the bottom of the inner pad mold.

[0017] Furthermore, the top of the battery casing is provided with a conductive path, and there are two conductive paths.

[0018] The limiting charging base and the outer casing battery are connected by a conductive path. The electricity in the outer casing battery is input into the battery motherboard through the conductive path, the limiting charging base and the headphone charging port, thereby replenishing the battery in the battery motherboard.

[0019] Furthermore, an inner top mold is provided at the top of the inner casing of the earphone, and a limit cover is provided at the bottom of the inner top mold.

[0020] Insert the bottom end of the inner pad mold into the outer shell of the earphone. Install the inner pad top mold inside the cover plate at the top inside the outer shell of the earphone. A softer, cushioned limiting cover is provided on the inner side of the inner pad top mold. When the earphone is placed inside the outer shell of the earphone for charging and storage, close the top of the outer shell of the earphone. When closed, the earphone is protected by both the top and bottom.

[0021] This utility model provides an anti-slip Bluetooth headset with the following advantages: the device facilitates improved grip stability during use, reducing the possibility of the headset falling, enhances anti-slip capability, ensures headset safety, improves charging capability, extends battery life, facilitates assembly, and provides external protection for the internal Bluetooth headset during use.

[0022] 1. This utility model features an anti-slip sleeve embedded in the side wall of the earphone tube, and two anti-slip pads on the upper and lower sides of the earphone head near the inner ear. Grooves are also provided on both sides of the earphone outer shell. The loop handle is composed of two arcs of different sizes and has three holes. The loop handle is installed in the groove. The user can attach the two ends of the anti-loss lanyard to the corresponding holes in the loop handle as needed. When using the earphone, the user can directly grasp and pinch the holes of the loop handle. When using the earphone, the earphone tube and earphone head are removed. When removing the earphone, the user holds the anti-slip pad and inserts the earphone head into the ear. After entering the ear, the anti-slip pad rubs against the skin inside the ear, making it difficult for the earphone to slip out. This device improves the grip stability of the Bluetooth earphone during use, reduces the possibility of the earphone falling, enhances the anti-slip ability of the Bluetooth earphone during use, and helps ensure the safety of the earphone during use.

[0023] 2. This utility model inserts the outer casing battery into the mounting base, connects the other end of the mounting base to two limiting charging bases, and connects the limiting charging bases and the outer casing battery through a conductive path. Then, one side of the outer casing battery is connected to the outer casing charging port. The mounting base is then inverted and inserted into the bottom end of the inner pad bottom mold. The bottom end of the inner pad bottom mold is then fitted into the outer casing of the earphone. An inner pad top mold is installed inside the cover plate at the top inside the outer casing of the earphone, and a relatively soft and buffered limiting pressure cover is provided on the inner side of the inner pad top mold. When the earphone is placed inside the outer casing of the earphone for charging and storage, the top of the outer casing of the earphone is closed. When closed, the earphone is protected by both the top and bottom. This device facilitates the assembly of the equipment and helps to ensure the external protection of the internal Bluetooth earphone during use. Attached Figure Description

[0024] Figure 1 This is a front cross-sectional view of the anti-slip Bluetooth headset of this utility model.

[0025] Figure 2 This utility model relates to an anti-slip Bluetooth headset. Figure 1 Enlarged structural diagram at point A in the middle;

[0026] Figure 3 This is a three-dimensional structural diagram of the earphone tube of an anti-slip Bluetooth earphone according to the present invention;

[0027] Figure 4 This utility model relates to an anti-slip Bluetooth headset. Figure 1 Enlarged structural diagram at point B.

[0028] In the diagram: 1. Earphone outer shell; 2. Inner pad bottom mold; 3. Earphone tube; 4. Earphone head; 5. Anti-slip pad; 6. Anti-slip sleeve; 7. Ring grip; 8. Battery main board; 9. Bluetooth signal connection component; 901. Transmission block; 902. Conductive plate; 10. Earphone charging port; 11. Limiting charging base; 12. Mounting base; 13. Battery storage component; 1301. Outer shell charging port; 1302. Outer shell battery; 14. Conductive path; 15. Inner pad top mold; 16. Limiting pressure cover. Detailed Implementation

[0029] like Figures 1-3 As shown, a non-slip Bluetooth headset includes an outer shell 1 and a loop handle 7. The inner bottom of the outer shell 1 has an inner pad mold 2, and earphone tubes 3 are located at both ends of the inner bottom mold 2. An earphone head 4 is located at the top of the earphone tube 3, and anti-slip pads 5 are provided on the upper and lower sides of the front end of the earphone head 4. The earphone tube 3 is covered with an anti-slip sleeve 6. The loop handle 7 is located at both ends of the outer shell 1, embedding the anti-slip sleeve 6 into the sidewalls of the earphone tube 3. Two anti-slip pads 5 are provided on the upper and lower sides of the earphone head 4 near the inner ear. Grooves are formed on both sides of the outer shell 1. Composed of two arcs of different sizes, it has three holes. The loop handle 7 is installed in the groove. The user can attach the two ends of the anti-loss lanyard to the corresponding through holes in the loop handle 7 as needed. When using it outdoors, the user can directly grasp and pinch the opening of the loop handle 7. When using the earphone, the earphone tube 3 and earphone head 4 are taken out. When taking them out, the user holds the anti-slip pad 5 and inserts the earphone head 4 into the ear. After entering the ear, the anti-slip pad 5 rubs against the skin inside the ear, making it difficult to slip out during use. This device can improve the grip stability of the Bluetooth earphone during use, reduce the possibility of the earphone falling, improve the anti-slip ability of the Bluetooth earphone during use, and help ensure the safety of the earphone during use.

[0030] like Figures 1-4As shown, a power storage motherboard 8 is provided at the bottom of the earphone tube 3, and Bluetooth signal connection components 9 are provided at both ends of the power storage motherboard 8. The Bluetooth signal connection component 9 includes a transmission block 901 and a conductive plate 902, and the conductive plate 902 is provided at the end of the transmission block 901 away from the central axis of the power storage motherboard 8. The key feature is that an earphone charging port 10 is provided at the bottom of the power storage motherboard 8, and a limiting charging base 11 is provided at the bottom of the earphone charging port 10. A mounting base 12 is provided at the bottom of the limiting charging base 11, and a power storage component 13 is provided inside the mounting base 12. The power storage component 13 includes a shell charging port 130. The earphone tube 3 contains a battery 1302 and a charging port 1301. The top of the charging port 1301 is equipped with the battery 1302, which has two conductive paths 14. The earphone tube 3 contains a mainboard 8, a Bluetooth signal connection component 9, a transmission block 901, and a conductive sheet 902 to ensure sufficient power transmission within the earphone. When the earphone is placed inside the inner mold 2 for charging, the bottom of the earphone charging port 10 is in contact with the inner side of the limiting charging base 11. The electricity from the battery 1302 is transmitted through the conductive paths 14, the limiting charging base 11, and the earphone charging port 10. The current flows into the battery motherboard 8, thereby replenishing the battery inside the battery motherboard 8. During charging, the inner bottom protrusion of the limiting charging base 11 matches the three protrusions of the headphone charging port 10. This device facilitates the improvement of the device's charging capability and helps to improve the device's charging endurance. The inner top of the headphone outer shell 1 is provided with an inner pad top mold 15, and the bottom of the inner pad top mold 15 is provided with a limiting pressure cover 16. The outer shell battery 1302 is inserted into the mounting base 12, and the other end of the mounting base 12 is connected to the two limiting charging bases 11. The limiting charging bases 11 and the outer shell battery 1302 are connected through a conductive path 14. Then, connect one side of the outer casing battery 1302 to the outer casing charging port 1301, then invert the mounting base 12 and insert it into the bottom end of the inner pad bottom mold 2, then fit the bottom end of the inner pad bottom mold 2 into the outer casing 1 of the earphone. Install the inner pad top mold 15 inside the cover plate at the top of the inner top of the outer casing 1 of the earphone, and provide a softer buffer limiting pressure cover 16 on the inner side of the inner pad top mold 15. When the earphone is placed inside the outer casing 1 of the earphone for charging and storage, close the top of the outer casing 1 of the earphone. When closed, the earphone is protected by both the top and bottom. This device facilitates the convenience of equipment assembly and helps to ensure the external protection capability of the internal Bluetooth earphone during use.

[0031] In summary, when using this anti-slip Bluetooth headset, firstly, the earphone tube 3 contains a battery mainboard 8, a Bluetooth signal connection component 9, a transmission block 901, and a conductive plate 902 to meet the internal power transmission capacity of the headset. Then, the outer casing battery 1302 is inserted into the mounting base 12, and the other end of the mounting base 12 is connected to two limiting charging bases 11. The limiting charging bases 11 and the outer casing battery 1302 are connected through a conductive path 14. Finally, one side of the outer casing battery 1302 is connected to the outer casing charging port 1. 301. Then, the mounting base 12 is inverted and inserted into the bottom end of the inner pad bottom mold 2. Then, the bottom end of the inner pad bottom mold 2 is fitted into the outer shell of the earphone 1. The inner pad top mold 15 is installed inside the cover plate at the top of the inner end of the outer shell of the earphone 1. A softer, cushioning limiting pressure cover 16 is provided on the inner side of the inner pad top mold 15. The side wall of the earphone tube 3 is embedded with an anti-slip sleeve 6. Two anti-slip pads 5 are provided on the upper and lower sides of the earphone head 4 near the inner side of the ear. Grooves are opened on both sides of the outer shell of the earphone 1. The collar handle 7 is two circles of different sizes. The device is composed of an arc and has three holes. The loop handle 7 is installed in the groove. The user can attach the two ends of the anti-loss lanyard to the corresponding through holes in the loop handle 7 as needed. When used outdoors, the user can directly grasp and pinch the opening of the loop handle 7. When the earphone is placed inside the inner pad bottom mold 2 for charging, the bottom end of the earphone charging port 10 is in contact with the inner side of the limiting charging base 11. The electricity in the outer casing battery 1302 is input into the battery motherboard 8 through the conductive path 14, the limiting charging base 11 and the earphone charging port 10, thereby charging the battery. The battery inside the mainboard 8 is recharged. During charging, the protrusion at the bottom of the limiting charging base 11 matches the three protrusions of the headphone charging port 10. When the headphones are placed inside the headphone outer shell 1 for charging and storage, the top of the headphone outer shell 1 is closed. When closed, the top and bottom protect the headphones together. When using the headphones, the headphone tube 3 and the headphone head 4 are taken out. When taking them out, hold the anti-slip pad 5 and insert the headphone head 4 into the ear. After entering the ear, the anti-slip pad 5 rubs against the skin inside the ear, making it difficult to slip out during use. This is the working principle of the anti-slip Bluetooth headphones.

Claims

1. A non-slip Bluetooth headset, comprising an outer shell (1) and a loop grip (7), characterized in that, The inner bottom of the earphone outer shell (1) is provided with an inner pad bottom mold (2), and earphone tubes (3) are provided on both the left and right sides of the inner pad bottom mold (2). The top of the earphone tube (3) is provided with an earphone head (4), and anti-slip pads (5) are provided on both the upper and lower sides of the front end of the earphone head (4). The earphone tube (3) is wrapped with an anti-slip sleeve (6), and the collar handle (7) is provided on both the left and right sides of the earphone outer shell (1).

2. The anti-slip Bluetooth headset according to claim 1, characterized in that, The bottom of the earphone tube (3) is provided with a power storage motherboard (8), and both the left and right ends of the power storage motherboard (8) are provided with Bluetooth signal connection components (9).

3. The anti-slip Bluetooth headset according to claim 2, characterized in that, The Bluetooth signal connection component (9) includes a transmission block (901) and a conductive plate (902), and the conductive plate (902) is provided at one end of the transmission block (901) away from the central axis of the battery motherboard (8).

4. The anti-slip Bluetooth headset according to claim 2, characterized in that, The bottom of the battery motherboard (8) is provided with an earphone charging port (10), and the bottom of the earphone charging port (10) is provided with a limit charging base (11).

5. The anti-slip Bluetooth headset according to claim 4, characterized in that, The bottom end of the limiting charging base (11) is provided with a mounting base (12), and the mounting base (12) is provided with an energy storage component (13).

6. The anti-slip Bluetooth headset according to claim 5, characterized in that, The energy storage component (13) includes a casing charging port (1301) and a casing battery (1302), and the casing battery (1302) is provided at the top of the casing charging port (1301).

7. The anti-slip Bluetooth headset according to claim 6, characterized in that, The top of the outer casing battery (1302) is provided with a conductive path (14), and there are two conductive paths (14).

8. The anti-slip Bluetooth headset according to claim 1, characterized in that, The earphone outer shell (1) has an inner top mold (15) at its inner top, and a limit cover (16) is provided at the bottom of the inner top mold (15).

Citation Information

Patent Citations

  • Bluetooth earphone

    CN217216847U