Hanging and buckling device for standby battery of unmanned aerial vehicle

By introducing a heat dissipation exhaust tank and a fan into the backup battery buckle device of the drone, the problem of excessive heat during charging is solved, the safety and life of the battery is improved, and the portability is enhanced.

CN223260771UActive Publication Date: 2025-08-22BEIJING OVERLOOK DRONE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422671721.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-08-22
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing drone backup battery buckle device generates too much heat when charging, causing the temperature of the battery storage compartment to rise, affecting the battery life and posing safety hazards.

Method used

A charging assembly including a heat dissipation exhaust tank and a heat dissipation fan is designed to carry hot air upward along the airway and discharge from the exhaust port through the heat dissipation exhaust tank, combining support feet and handles to improve portability and air flowability.

Benefits of technology

It effectively reduces heat dissipation during charging, improves the safety and life of the battery, solves the battery damage caused by high heat, and enhances the portability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of unmanned aerial vehicle standby batteries, in particular to an unmanned aerial vehicle standby battery hanging and buckling device. According to the technical scheme, the unmanned aerial vehicle standby battery hanging and buckling device comprises a standby battery bin assembly and a charging assembly, and further comprises a forward and reverse power supply socket and a touch control assembly; a charging assembly is arranged in the rear end face of the standby battery bin assembly. A forward and reverse power supply socket is arranged on the front end surface of the standby battery compartment assembly; a touch control assembly is arranged on one side of the forward and reverse power supply socket. The standby battery of the unmanned aerial vehicle is charged while being hung and stored through the unmanned aerial vehicle battery hanging and buckling bin of the charging assembly, due to the arrangement of the heat dissipation exhaust groove, air blown upwards by the heat dissipation fan takes away heat of the battery upwards along an air channel of the heat dissipation exhaust groove, and hot air is discharged outwards from the heat dissipation exhaust opening; therefore, heat dissipated in the charging process of the standby battery is effectively reduced, and the safety of the battery is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of backup batteries for unmanned aerial vehicles (UAVs), and in particular relates to a backup battery hanging buckle device for UAVs. Background Art

[0002] The spare battery hanging device came into being to facilitate users to replace and carry spare batteries, and improve the efficiency of drone battery carrying and charging and replacement.

[0003] However, when the existing drone spare battery hook device is charged after the spare battery is hung, a large amount of heat is generated due to the chemical reaction inside the battery. If the heat cannot be dissipated in time, the temperature of the spare battery storage compartment will rise. High temperature environment has a great negative impact on the life of the battery, not only accelerating the aging process of the battery, but also may cause safety problems such as battery bulging and electrolyte leakage.

[0004] Therefore, in view of the problem that the spare batteries in the existing drone battery hanging device generate a lot of heat when charging after being hung, causing high heat in the spare battery storage compartment and damaging the battery life, a drone spare battery hanging device can be designed. Utility Model Content

[0005] In order to overcome the problem that the existing spare battery hanging device of drone generates a lot of heat when charging after hanging, causing high heat in the spare battery storage compartment and damaging the battery life.

[0006] The technical solution of the utility model is as follows: a spare battery hanging device for a drone includes a spare battery compartment assembly, a charging assembly, and also includes forward and reverse power supply sockets and a touch assembly; the charging assembly is arranged inside the rear end surface of the spare battery compartment assembly; the front end surface of the spare battery compartment assembly is provided with forward and reverse power supply sockets; a touch assembly is arranged on one side of the forward and reverse power supply sockets; the charging assembly includes a drone battery hanging compartment, a heat dissipation exhaust groove, a heat dissipation exhaust port, a heat dissipation fan, and a charging status light.

[0007] Preferably, the spare battery of the drone is hung and stored through the drone battery hanging compartment of the charging component and charged at the same time. Due to the setting of the heat dissipation exhaust groove, the air blown upward by the heat dissipation fan takes away the heat of the battery along the air duct of the heat dissipation exhaust groove, and the hot air is discharged to the outside from the heat dissipation exhaust port, thereby effectively reducing the heat emitted during the charging process of the spare battery, improving the battery safety, and solving the problem of the existing drone spare battery hanging device, because the spare battery generates a lot of heat when charging after being hung, causing high heat in the spare battery storage compartment to damage the battery life.

[0008] Preferably, the backup battery compartment assembly includes a power supply box, a handle, and support legs; a handle is provided at the upper end of the power supply box; support legs are provided on both sides of the lower end of the power supply box, and the handle, support legs and the power supply box are integrally formed.

[0009] Preferably, a drone battery buckle compartment is provided inside the rear end face of the power supply box, four drone battery buckle compartments are provided, and the drone battery buckle compartments and the power supply box are integrally formed, and the inner wall of the drone battery buckle compartment is provided with a power supply connection electrode; charging status lights are provided on both sides of the drone battery buckle compartment, and the charging status lights are electrically connected to the electronic control unit inside the power supply box.

[0010] Preferably, the lower end and both sides of the inner wall of the drone battery hanging buckle compartment are provided with heat dissipation exhaust grooves, and the heat dissipation exhaust grooves are integrally formed with the inner wall of the drone battery hanging buckle compartment, and the airways between the upper and lower layers of the heat dissipation exhaust grooves on both sides of the inner wall of the drone battery hanging buckle compartment are connected.

[0011] Preferably, a cooling fan is provided inside the lower end surface of the power supply box, and the top of the cooling fan is connected to the air duct of the cooling exhaust groove; a cooling exhaust port is provided above the drone battery hanging compartment, and the cooling exhaust port is connected to the air duct of the cooling exhaust groove on both sides of the inner wall of the drone battery hanging compartment.

[0012] Preferably, the touch assembly includes a touchpad housing, a touch display screen, and a speaker; a touchpad housing is provided on one side of the forward and reverse power supply sockets, and the touchpad housing is fixedly connected to the front end surface of the power supply box; a touch display screen is provided on the front end surface of the touchpad housing.

[0013] Preferably, a speaker is provided below the touch display screen, and the speaker is fixedly connected to the touch panel housing.

[0014] Beneficial effects of the utility model:

[0015] 1. Existing spare battery hanging devices for drones generate a lot of heat when charging after hanging, which causes high heat in the spare battery storage compartment and shortens the battery life. The drone battery hanging compartment of the charging assembly allows the drone spare battery to be hung and stored while charging. Due to the provision of the heat dissipation exhaust slot, the air blown upward by the heat dissipation fan moves upward along the heat dissipation exhaust slot airway to remove the heat from the battery. The hot air is discharged to the outside through the heat dissipation exhaust port, thereby effectively reducing the heat dissipated during the charging process of the spare battery and improving battery safety. This solves the problem of existing spare battery hanging devices for drones, which generates a lot of heat when charging after hanging, causing high heat in the spare battery storage compartment and shortening the battery life.

[0016] 2. The handle and support legs are provided to facilitate the user to carry the power box and improve the portability of the device. The support structure of the support legs allows for a large amount of air circulation space under the cooling fan, facilitating the air intake of the cooling fan and promoting the air circulation and heat dissipation effect of the inner wall of the drone battery hanging compartment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Shown is a schematic diagram of the overall three-dimensional structure of the backup battery hanging device for drones of the present invention;

[0018] Figure 2 Shown is a schematic diagram of the overall upward-looking three-dimensional structure of the backup battery hanging device for a drone of the present invention;

[0019] Figure 3 Shown is a schematic diagram of the overall rear-view stereoscopic structure of the backup battery hanging device for a drone of the present invention;

[0020] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the touch component of the drone backup battery hanging device of the present invention.

[0021] The markings in the accompanying drawings are: 1. Spare battery compartment assembly; 2. Charging assembly; 3. Forward and reverse power supply sockets; 4. Touch assembly; 101. Power supply box; 102. Handle; 103. Support foot; 201. UAV battery hanging buckle compartment; 202. Heat dissipation exhaust slot; 203. Heat dissipation exhaust port; 204. Heat dissipation fan; 205. Charging status light; 401. Touchpad housing; 402. Touch screen; 403. Speaker. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] See also Figures 1-4 The utility model provides an embodiment: a spare battery hanging device for a drone includes a spare battery compartment component 1, a charging component 2, and also includes a forward and reverse power supply socket 3 and a touch component 4; the charging component 2 is arranged inside the rear end surface of the spare battery compartment component 1; the forward and reverse power supply socket 3 is arranged on the front end surface of the spare battery compartment component 1; the touch component 4 is arranged on one side of the forward and reverse power supply socket 3; the charging component 2 includes a drone battery hanging compartment 201, a heat dissipation exhaust groove 202, a heat dissipation exhaust port 203, a heat dissipation fan 204, and a charging status light 205.

[0024] See also Figure 1-Figure 3In this embodiment, the spare battery compartment assembly 1 includes a power supply box 101, a handle 102, and a support leg 103; the upper end of the power supply box 101 is provided with a handle 102; both sides of the lower end of the power supply box 101 are provided with support legs 103, and the handle 102, the support legs 103 and the power supply box 101 are integrally formed; the rear end surface of the power supply box 101 is provided with a drone battery hanging buckle compartment 201, and the drone battery hanging buckle compartment 201 is provided with four drone battery hanging buckle compartments 201, and the drone battery hanging buckle compartment 201 is integrally formed with the power supply box 101, and the inner wall of the drone battery hanging buckle compartment 201 is provided with a power supply connection electrode; charging status lights 205 are provided on both sides of the drone battery hanging buckle compartment 201, and the charging status light 205 is provided. 5 is electrically connected to the electronic control unit inside the power supply box 101; the lower end and both sides of the inner wall of the drone battery hanging buckle compartment 201 are provided with heat dissipation exhaust grooves 202, and the heat dissipation exhaust grooves 202 are integrally formed with the inner wall of the drone battery hanging buckle compartment 201, and the air passages between the upper and lower heat dissipation exhaust grooves 202 on both sides of the inner wall of the drone battery hanging buckle compartment 201 are connected; a heat dissipation fan 204 is provided inside the lower end surface of the power supply box 101, and the upper part of the heat dissipation fan 204 is connected to the air passage of the heat dissipation exhaust grooves 202; a heat dissipation exhaust port 203 is provided above the drone battery hanging buckle compartment 201, and the heat dissipation exhaust port 203 is connected to the air passages of the heat dissipation exhaust grooves 202 on both sides of the inner wall of the drone battery hanging buckle compartment 201.

[0025] See also Figure 1 、 Figure 2 、 Figure 4 In this embodiment, the touch component 4 includes a touchpad housing 401, a touch display screen 402, and a speaker 403; the touchpad housing 401 is provided on one side of the forward and reverse power supply socket 3, and the touchpad housing 401 is fixedly connected to the front end surface of the power supply box 101; the front end surface of the touchpad housing 401 is provided with a touch display screen 402; a speaker 403 is provided below the touch display screen 402, and the speaker 403 is fixedly connected to the touchpad housing 401.

[0026] During operation, the spare battery of the drone is hung and stored through the drone battery hanging buckle compartment 201 of the charging component 2 while being charged. Due to the provision of the heat dissipation exhaust groove 202, the air blown upward by the heat dissipation fan 204 takes away the heat of the battery along the air passage of the heat dissipation exhaust groove 202, and the hot air is discharged to the outside through the heat dissipation exhaust port 203, thereby effectively reducing the heat dissipated during the charging process of the spare battery and improving the battery safety. This solves the problem of the existing drone spare battery hanging buckle device, because the spare battery generates a lot of heat when charging after being hung, causing the spare battery storage compartment to be heated up and damaging the battery life.

[0027] Next, the handle 102 makes it easy for the user to carry the power supply box 101, thereby improving the portability of the device, and the supporting structure of the supporting legs 103 allows a large amount of air circulation space under the cooling fan 204, which facilitates the air intake of the cooling fan 204 and is beneficial to the air circulation and heat dissipation effect of the inner wall of the drone battery hanging compartment 201.

[0028] Through the above steps, the spare battery of the drone is hung and stored through the drone battery hanging compartment 201 of the charging component 2 while being charged. Due to the setting of the heat dissipation exhaust groove 202, the air blown upward by the heat dissipation fan 204 takes away the heat of the battery upward along the air duct of the heat dissipation exhaust groove 202, and the hot air is discharged to the outside from the heat dissipation exhaust port 203, thereby effectively reducing the heat emitted during the charging process of the spare battery, improving the battery safety, and avoiding the problem of the existing drone spare battery hanging device, because the spare battery generates a lot of heat when charging after being hung, causing high heat in the spare battery storage compartment to damage the battery life.

[0029] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A spare battery hanging device for a drone, comprising a spare battery compartment assembly (1) and a charging assembly (2), characterized in that: The battery compartment assembly (1) further comprises a forward and reverse power supply socket (3) and a touch control component (4); a charging component (2) is provided inside the rear end face of the spare battery compartment assembly (1); a forward and reverse power supply socket (3) is provided on the front end face of the spare battery compartment assembly (1); a touch control component (4) is provided on one side of the forward and reverse power supply socket (3); and the charging component (2) comprises a drone battery hanging buckle compartment (201), a heat dissipation exhaust slot (202), a heat dissipation exhaust port (203), a heat dissipation fan (204), and a charging status light (205).

2. The drone backup battery hanging device according to claim 1, characterized in that: The backup battery compartment assembly (1) comprises a power supply box (101), a handle (102), and support legs (103); the upper end of the power supply box (101) is provided with the handle (102); both sides of the lower end of the power supply box (101) are provided with support legs (103), and the handle (102), the support legs (103) and the power supply box (101) are integrally formed.

3. The drone backup battery hanging device according to claim 2, characterized in that: A drone battery buckle compartment (201) is provided inside the rear end surface of the power supply box (101), four drone battery buckle compartments (201) are provided, and the drone battery buckle compartments (201) and the power supply box (101) are integrally formed, and power supply connection electrodes are provided on the inner walls of the drone battery buckle compartments (201); charging status lights (205) are provided on both sides of the drone battery buckle compartments (201), and the charging status lights (205) are electrically connected to an electric control unit inside the power supply box (101).

4. The drone backup battery hanging device according to claim 3, characterized in that: The lower end and both sides of the inner wall of the drone battery hanging buckle compartment (201) are provided with heat dissipation exhaust grooves (202), and the heat dissipation exhaust grooves (202) are integrally formed with the inner wall of the drone battery hanging buckle compartment (201), and air passages are connected between the upper and lower heat dissipation exhaust grooves (202) on both sides of the inner wall of the drone battery hanging buckle compartment (201).

5. The drone spare battery hanging buckle device according to claim 2, characterized in that: A heat dissipation fan (204) is provided inside the lower end surface of the power supply box (101), and the upper portion of the heat dissipation fan (204) is connected to the air passage of the heat dissipation exhaust groove (202); a heat dissipation exhaust port (203) is provided above the drone battery hanging buckle compartment (201), and the heat dissipation exhaust port (203) is connected to the air passages of the heat dissipation exhaust groove (202) on both sides of the inner wall of the drone battery hanging buckle compartment (201).

6. The drone backup battery hanging device according to claim 1, characterized in that: The touch control assembly (4) comprises a touch panel housing (401), a touch display screen (402), and a speaker (403); the touch panel housing (401) is provided on one side of the forward and reverse power supply socket (3), and the touch panel housing (401) is fixedly connected to the front end surface of the power supply box (101); the touch display screen (402) is provided on the front end surface of the touch panel housing (401).

7. The drone spare battery hanging buckle device according to claim 6, characterized in that: A speaker (403) is provided below the touch display screen (402), and the speaker (403) is fixedly connected to the touch panel housing (401).