Multi-rotor unmanned aerial vehicle ground training box

The modular design of the multi-rotor UAV ground training box solves the problem of rapid assembly in existing technologies, improves training efficiency and teaching practicality, and simplifies the installation and disassembly process.

CN224581938UActive Publication Date: 2026-07-31ZHEJIANG JIACHUANG AEROSPACE POWER TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG JIACHUANG AEROSPACE POWER TECHNOLOGY CO LTD
Filing Date
2025-08-14
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing UAV ground station system platform teaching kit fails to effectively support rapid insertion operations and simplify the installation and disassembly process for practical training.

Method used

A ground training box for multi-rotor UAVs was designed. It adopts a modular operation panel, which includes multiple interfaces such as motor, ESC, branch switch, reversing switch, safety switch, and power switch. These interfaces are connected by cables, supporting quick assembly. The operation panel is detachably embedded in the box, improving portability and space utilization efficiency.

Benefits of technology

It enables rapid insertion operations, simplifies the installation and disassembly process in practical training, improves training efficiency and teaching practicality, and facilitates intuitive learning of electrical principles.

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Abstract

This utility model discloses a ground training box for multi-rotor UAVs, including a box body and an operation panel, the operation panel being detachably embedded in the box body. The operation panel has four motor connectors, each connected to a motor; four electronic speed controller (ESC) connectors, each connected to an ESC; four branch switch connectors, each connected to a branch switch; four reversing switch connectors, each connected to a reversing switch; a safety switch connector, connected to a safety switch; and a power switch connector, connected to a power switch. The ESCs and reversing switches are electrically connected via cables. The advantages of this multi-rotor UAV ground training box are that the detachable connection between the box body and the operation panel improves portability and space utilization efficiency.
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Description

Technical Field

[0001] This utility model belongs to the field of educational drones, specifically relating to a ground training box for multi-rotor drones. Background Technology

[0002] The patent, with publication number CN217609859U, is entitled "A Utility Model Patent for a Teaching Box for a UAV Ground Station System Platform" and IPC classification number A45C5 / 00. Its technical solution discloses that "a box cover is hinged to one side of the teaching box; the interior of the teaching box is equipped with a touch operation panel, a control switch, and a charging module; a receiving cavity is opened on the side of the teaching box; a limiting groove is opened on the side of the receiving cavity; a movable box is inserted into the receiving cavity; a pull handle is provided between two movable boxes; a fixing component for easy positioning is provided on the movable box; and an abutment component for easy adjustment is provided on the movable box."

[0003] Therefore, the above utility model patents have disclosed one technical solution for a teaching box for a UAV ground station system platform. However, the technical solution disclosed in the above utility model patents focuses on integrating the ground station system platform control equipment built inside the teaching box by adding a touch operation panel, control switch, and charging module. It does not further solve problems such as supporting rapid insertion operations and simplifying the training installation and disassembly process, and needs further improvement. Utility Model Content

[0004] This utility model addresses the shortcomings of the existing technology by providing a ground training box for multi-rotor unmanned aerial vehicles.

[0005] This utility model adopts the following technical solution: a ground training box for multi-rotor UAVs, comprising a box body and an operation panel, wherein the operation panel is detachably embedded in the box body, wherein:

[0006] The control panel has four motor connectors, each of which is connected to a motor.

[0007] The control panel has four ESC connectors, each of which is connected to an ESC.

[0008] The control panel has four branch switch sockets, and each branch switch is connected to a branch switch.

[0009] The control panel has four reversing switch sockets, and each reversing switch is connected to a reversing switch.

[0010] The control panel has a safety switch connector, and a safety switch is plugged into the safety switch connector.

[0011] The control panel has a power switch socket, and a power switch is plugged into the power switch socket.

[0012] The ESC and the commutator are electrically connected via cables.

[0013] As a preferred technical solution to the above technical solutions, the operation panel also has a power module interface, into which a power module is plugged in, and the power module and the power switch are electrically connected via a cable.

[0014] As a preferred technical solution to the above technical solutions, the operation panel also has two flight control module interfaces, with flight control modules plugged into the two flight control module interfaces, and the flight control modules and safety switches are electrically connected via cables.

[0015] As a preferred technical solution to the above technical solutions, the operation panel also has a WIFI data transmission module interface, which is connected to a WIFI data transmission module. The WIFI data transmission module and the flight control module are electrically connected via a cable.

[0016] As a preferred technical solution to the above technical solutions, the housing includes a top cover and a base, the top cover and the base are rotatably connected, and the operation panel is detachably embedded in the base.

[0017] The multi-rotor UAV ground training box disclosed in this utility model has the advantages of detachable connection between the box body and the operation panel, improving portability and space utilization efficiency. Furthermore, the operation panel features multiple modular connectors for electrical appliances, supporting quick insertion and simplifying the installation and disassembly process. In addition, the operation panel integrates functions such as a power distribution board, PWM generator, and buzzer, facilitating intuitive learning of electrical principles for trainees and improving training efficiency and practicality. Attached Figure Description

[0018] Figure 1 This is a perspective view of this application.

[0019] Figure 2 This is a three-dimensional view from another perspective of this application.

[0020] Figure 3 This is the main view of this application.

[0021] Figure 4 This is a side view of this application.

[0022] Figure 5 yes Figure 1 A magnified view of a portion of region A.

[0023] Figure 6 yes Figure 1 A magnified view of a portion of region B.

[0024] Figure 7 yes Figure 1 A magnified view of region C.

[0025] Figure 8 yes Figure 2 A magnified view of a portion of region D.

[0026] Figure 9 This is the wiring diagram of the operation panel of this application.

[0027] Figure 10 This is a perspective view of the operation panel of this application.

[0028] Figure 11 This is a top view of the operation panel of this application.

[0029] The attached diagram includes the following reference numerals: 100 - housing; 110 - top cover; 120 - base; 200 - operation panel; 210 - motor connector; 220 - ESC connector; 230 - branch switch connector; 240 - reversing switch connector; 250 - safety switch connector; 260 - power switch connector; 270 - power module connector; 280 - flight control module connector; 290 - WIFI data transmission module connector; 310 - motor; 320 - ESC; 330 - branch switch; 340 - reversing switch; 350 - safety switch; 360 - power switch; 370 - power module; 380 - flight control module; 390 - WIFI data transmission module. Detailed Implementation

[0030] This utility model discloses a ground training box for multi-rotor unmanned aerial vehicles (UAVs). The following description, in conjunction with a preferred embodiment (Embodiment 1), is shown in the accompanying drawings. Figures 1 to 11 The specific embodiments of this utility model will be further described below.

[0031] See attached diagram. Figures 1 to 11 , Figures 1 to 4 The ground training box for multi-rotor UAVs is shown from different perspectives. Figures 5 to 8 The partial structures of the multi-rotor UAV ground training box are shown below. Figure 9 The wiring method for the control panel is shown. Figure 10 and Figure 11 The operation panel is shown from different perspectives.

[0032] Example 1.

[0033] Preferably, the multi-rotor UAV ground training box includes a box body 100 and an operation panel 200, wherein the operation panel 200 is detachably embedded in the box body 100, wherein:

[0034] The control panel 200 has four motor connectors 210, each of which is connected to a motor 310;

[0035] The operation panel 200 has four ESC connectors 220, each ESC connector 220 being connected to an ESC 320;

[0036] The control panel 200 has four branch switch sockets 230, and each branch switch socket 230 is connected to a branch switch 330.

[0037] The operation panel 200 has four reversing switch sockets 240, and each reversing switch socket 240 is connected to a reversing switch 340.

[0038] The control panel 200 has a safety switch connector 250, and a safety switch 350 is plugged into the safety switch connector 250.

[0039] The control panel 200 has a power switch interface 260, and a power switch 360 is plugged into the power switch interface 260.

[0040] The ESC 320 and the reversing switch 340 are electrically connected by a cable. It should be noted that "the ESC 320 and the reversing switch 340 are electrically connected by a cable" is only an example. Cables are provided between the reversing switch 340 and the motor 310 and other electrical appliances, and all electrical appliances are electrically connected by cables.

[0041] The operation panel 200 also has a power module interface 270, to which a power module 370 is plugged. The power module 370 and the power switch 360 are electrically connected via a cable.

[0042] The operation panel 200 also has two flight control module interfaces 280, and flight control modules 380 are plugged into the two flight control module interfaces 280. The flight control modules 380 and the safety switch 350 are electrically connected by cables.

[0043] The operation panel 200 also has a WIFI data transmission module interface 290, which is connected to a WIFI data transmission module 390. The WIFI data transmission module 390 and the flight control module 380 are electrically connected by a cable.

[0044] The control panel 200 is equipped with electrical components such as a power distribution board, a PWM generator, and a buzzer. Cables are provided between each electrical component, and all electrical components are electrically connected through the cables. This allows trainees to improve their ground operation skills for multi-rotor UAVs by operating the WIFI data transmission module 290 and other electrical components on the control panel 200.

[0045] The housing 100 includes a top cover 110 and a base 120, with the top cover 110 rotatably connected to the base 120, and the operation panel 200 is detachably embedded in the base 120, so that the operation panel 200 is detachably embedded in the housing 100.

[0046] It is worth mentioning that the specific model and other technical features of the power module 370 involved in this utility model patent application should be regarded as prior art. The specific structure, working principle and possible control method and spatial arrangement of these technical features can be conventionally selected in the field and should not be regarded as the inventive point of this utility model patent. This utility model patent will not be further elaborated in detail.

[0047] For those skilled in the art, modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A multi-rotor unmanned aerial vehicle ground training box, characterized in that, Includes a housing and an operation panel, the operation panel being detachably embedded within the housing, wherein: The control panel has four motor connectors, each of which is connected to a motor. The control panel has four ESC connectors, each of which is connected to an ESC. The control panel has four branch switch sockets, and each branch switch is connected to a branch switch. The control panel has four reversing switch sockets, and each reversing switch is connected to a reversing switch. The control panel has a safety switch connector, and a safety switch is plugged into the safety switch connector. The control panel has a power switch socket, and a power switch is plugged into the power switch socket. The ESC and the commutator are electrically connected via cables.

2. The multi-copter unmanned aircraft ground training box of claim 1, wherein, The control panel also has a power module interface, into which a power module is plugged in. The power module and the power switch are electrically connected via a cable.

3. The multi-copter unmanned aircraft ground training box of claim 1, wherein, The control panel also has two flight control module connectors, which are connected to flight control modules. The flight control modules are electrically connected to the safety switch via cables.

4. The multi-copter unmanned aircraft ground training box of claim 3, wherein, The control panel also has a WIFI data transmission module interface, which is connected to a WIFI data transmission module. The WIFI data transmission module is electrically connected to the flight control module via a cable.

5. The multi-copter unmanned aircraft ground training box of claim 1, wherein, The enclosure includes a top cover and a base, with the top cover rotatably connected to the base, and the control panel is detachably embedded in the base.