Unmanned aerial vehicle remote controller hanger
By designing a drone remote controller mount that hangs on a car steering wheel, the problem of physical exertion caused by holding the remote controller for extended periods is solved, enabling stable operation over long periods.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 南县青树嘴明泽电脑销售部
- Filing Date
- 2025-05-15
- Publication Date
- 2026-05-05
AI Technical Summary
The DJI RC Plus drone remote controller requires prolonged handheld operation, which leads to significant physical exertion for the operator and is not suitable for extended use.
A drone remote controller mount has been designed, including a steering wheel suspension part, a remote controller support bracket suspension part, and a remote controller abutment part. By hanging the remote controller on the car steering wheel for operation, the burden of holding the hand is reduced.
It enables the suspension operation of the drone remote controller, reducing operator fatigue and supporting stable operation over long periods of time.
Smart Images

Figure CN224201473U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of drone remote control accessories, specifically relating to a drone remote control holder. Background Technology
[0002] DJI Innovations Technology Co., Ltd. in Shenzhen offers a drone remote controller called the DJI RC Plus, which is primarily compatible with professional drones such as the Inspire 3 and Matrice 350 RTK. This remote controller, without the external battery (model WB37), weighs approximately 1.25 kg, and with the WB37 battery installed, the overall weight is approximately 1.42 kg.
[0003] Since this remote controller is compatible with professional drones, which are mainly used in open outdoor areas such as fields; combined with the weight of the drone, if the operator holds it for a long time, the operator will feel tired, which places high demands on the operator's physical strength and makes it inconvenient for the operator to operate for a long time. Utility Model Content
[0004] The purpose of this invention is to provide a drone remote controller holder to solve the problem that prolonged use of the DJI RC Plus drone remote controller can cause operator fatigue and make it inconvenient for operators to operate for extended periods.
[0005] To solve the above-mentioned technical problems, this utility model provides a drone remote controller mount, including a steering wheel suspension part, which is a crescent-shaped shell. The inwardly concave side of the steering wheel suspension part is the concave side of the suspension part, which is used to contact the car steering wheel. The cross-section of the steering wheel suspension part is arc-shaped. A remote controller support frame suspension part is fixedly connected to one side of the steering wheel suspension part. The steering wheel suspension part has two sides in the axial direction, and the shorter side is fixedly connected to the remote controller support frame suspension part.
[0006] The support frame suspension part is provided with a support frame receiving groove, the opening direction of which is opposite to the opening direction of the steering wheel suspension part; the support frame receiving groove is used to accommodate the remote control bracket.
[0007] A remote control abutment is fixedly connected to the side of the remote control support bracket that is away from the steering wheel suspension part. The remote control abutment is used to abut and fix the drone remote control.
[0008] Furthermore, the remote controller abutment part is L-shaped. The longer part of the remote controller abutment part is the first abutment part, and the part perpendicularly connected to the first abutment part is the second abutment part. One end of the first abutment part is connected to the remote controller support bracket suspension part, and the other end of the first abutment part is connected to the second abutment part. The second abutment part abuts against the drone remote controller.
[0009] Furthermore, the direction of the second abutment from one end connected to the first abutment to the other end is opposite to the direction of the opening of the remote control support bracket suspension part.
[0010] Furthermore, the remote control support bracket has two remote control abutment parts connected to its suspension part, with a gap between the two remote control abutment parts.
[0011] Furthermore, the remote control support bracket suspension part is connected to at least three remote control abutment parts.
[0012] Furthermore, the end of the second part that abuts against the first part has tooth-like protrusions.
[0013] The beneficial effects of the drone remote controller holder provided by this utility model are as follows: By setting up a steering wheel suspension part, a remote controller support bracket suspension part, and a remote controller abutment part, the DJI RC Plus drone remote controller can be lifted by connecting the metal rod on the DJI RC Plus drone remote controller to the remote controller support bracket suspension part and abutting the remote controller abutment part against the heat dissipation holes on the back of the DJI RC Plus drone remote controller. Then, by hanging the steering wheel suspension part onto the car steering wheel, the purpose of hanging the DJI RC Plus drone remote controller is achieved. At this time, the operator can operate the DJI RC Plus drone remote controller without holding it in their hand, thus avoiding fatigue caused by holding the DJI RC Plus drone remote controller for a long time, allowing the operator to operate it for extended periods. Attached Figure Description
[0014] Figure 1 This is a first side view of the drone remote controller mount.
[0015] Figure 2 This is a second side view of the drone remote controller mount.
[0016] Figure 3 This is a rear view diagram of the DJI RC Plus drone remote controller;
[0017] Reference numerals: 100 - Steering wheel suspension part, 110 - Concave side of suspension part, 200 - Remote control support bracket suspension part, 210 - Support bracket receiving groove, 300 - Remote control abutment part, 310 - First abutment part, 320 - Second abutment part. Detailed Implementation
[0018] To better understand the purpose, structure, and function of this utility model, the following description is in conjunction with the appendix. Figures 1 to 3 The present invention provides a more detailed description of a drone remote controller holder.
[0019] like Figures 1 to 2As shown in the figure, a drone remote controller mount according to an embodiment of the present invention includes a steering wheel suspension part 100, which is a crescent-shaped shell. The inwardly recessed side of the steering wheel suspension part 100 is called the concave side 110 of the suspension part, which is used to contact the car steering wheel. The cross-section of the steering wheel suspension part 100 is arc-shaped. A remote controller support frame suspension part 200 is fixedly connected to one side of the steering wheel suspension part 100. The steering wheel suspension part 100 has two sides in the axial direction, and the shorter side is fixedly connected to the remote controller support frame suspension part 200.
[0020] The support frame suspension part is provided with a support frame receiving groove 210, and the opening direction of the support frame receiving groove 210 is opposite to the opening direction of the steering wheel suspension part 100; the support frame receiving groove 210 is used to receive the support frame of the remote control.
[0021] A remote control abutment 300 is fixedly connected to the side of the remote control support bracket suspension part 200 away from the steering wheel suspension part 100. The remote control abutment 300 is used to abut and fix with the drone remote control.
[0022] This drone remote controller mount is primarily compatible with the DJI RC Plus drone remote controller (hereinafter referred to as the drone remote controller), but it can also be used with drone remote controllers with similar structures.
[0023] like Figure 3 As shown, the drone remote controller has a U-shaped support bracket 400 on its back. This bracket can also serve as a handle or suspension component to lift or hang the drone remote controller. A heat dissipation vent 500 is also designed on the back of the drone remote controller, primarily for internal heat dissipation. The front of the drone remote controller is mainly a touchscreen.
[0024] Operating a drone remote controller requires holding it by hand, but the controller is heavy and inconvenient to hold for extended periods. Furthermore, the drones themselves are relatively large, typically requiring transportation by car for outdoor use. Therefore, this drone remote controller mount allows you to attach the remote controller to the steering wheel of your vehicle for operation.
[0025] In use, first place the remote control abutment 300 against the heat dissipation vent 500, then place the support bracket 400 into the support bracket receiving slot 210. Once the heat dissipation vent 500 of the drone remote control is securely abutted against the remote control abutment 300, and the support bracket 400 is securely connected to the support bracket receiving slot 210, the operator can then lift the drone remote control bracket and drone remote control assembly. Next, align the concave side 110 of the suspension part towards the upper arc of the car steering wheel. Because the steering wheel suspension part 100 is a crescent-shaped shell and concave inwards, it can fit snugly against the car steering wheel. This completes the purpose of suspending the drone remote control bracket and drone remote control assembly onto the car steering wheel. After suspension, the upper end of the drone remote control is connected to the drone remote control bracket, and the lower end abuts against the center trim cover of the steering wheel, thus preventing the drone remote control from accidentally pressing buttons on the car steering wheel.
[0026] In some embodiments, the remote control abutment portion 300 is L-shaped. The longer portion of the remote control abutment portion 300 is the first abutment portion 310, and the portion perpendicularly connected to the first abutment portion 310 is the second abutment portion 320. One end of the first abutment portion 310 is connected to the remote control support frame suspension portion 200, and the other end of the first abutment portion 310 is connected to the second abutment portion 320. The second abutment portion 320 abuts against the drone remote control. The direction of the second abutment portion 320 from its end connected to the first abutment portion 310 to its other end is opposite to the opening direction of the remote control support frame suspension portion 200. The remote control support frame suspension portion 200 is connected to two remote control abutment portions 300, with a gap between the two remote control abutment portions 300. This design not only allows the remote control abutment 300 to fit more tightly, but also allows the operator to easily lift the combination of the controller bracket and the drone remote control by placing their thumb in the gap between the two remote control abutment parts 300 and their other four fingers on the steering wheel suspension part 100.
[0027] Understandably. The remote control support bracket suspension part 200 is connected to at least three remote control abutment parts 300.
[0028] Since the heat dissipation vent 500 has several vertical strips, a toothed protrusion is provided at the end of the second part 320 away from the first part 310 for a more stable contact. During the contact process between the second part 320 and the heat dissipation vent 500, the toothed protrusion can be engaged between the two vertical strips, making the contact more stable.
[0029] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A drone remote controller mount, characterized in that, The system includes a steering wheel suspension unit (100), which is a crescent-shaped shell. The inwardly recessed side of the steering wheel suspension unit (100) is called the concave side (110), which is used to contact the car steering wheel. The cross-section of the steering wheel suspension unit (100) is arc-shaped. A remote control support bracket suspension unit (200) is fixedly connected to one side of the steering wheel suspension unit (100). The steering wheel suspension unit (100) has two sides in the axial direction, and the shorter side is fixedly connected to the remote control support bracket suspension unit (200). The support frame suspension part is provided with a support frame receiving groove (210), and the opening direction of the support frame receiving groove (210) is opposite to the opening direction of the steering wheel suspension part (100); the support frame receiving groove (210) is used to accommodate the remote control bracket. The remote control support bracket suspension part (200) is fixedly connected to a remote control abutment part (300) on the side away from the steering wheel suspension part (100). The remote control abutment part (300) is used to abut and fix with the drone remote control.
2. The drone remote controller mount according to claim 1, characterized in that, The remote control abutment part (300) is L-shaped. The longer part of the remote control abutment part (300) is the first abutment part (310), and the part perpendicularly connected to the first abutment part (310) is the second abutment part (320). One end of the first abutment part (310) is connected to the remote control support frame suspension part (200), and the other end of the first abutment part (310) is connected to the second abutment part (320). The second abutment part (320) abuts against the drone remote control.
3. The drone remote controller mount according to claim 2, characterized in that, The direction of the second abutment (320) from one end connected to the first abutment (310) to the other end is opposite to the direction of the opening of the remote control support bracket suspension part (200).
4. The drone remote controller mount according to claim 3, characterized in that, The remote control support bracket suspension part (200) is connected to two remote control abutment parts (300), and there is a gap between the two remote control abutment parts (300).
5. The drone remote controller mount according to claim 4, characterized in that, The remote control support bracket suspension part (200) is connected to at least three remote control abutment parts (300).
6. The drone remote controller mount according to claim 4, characterized in that, The end of the second abutting part (320) away from the first abutting part (310) has a tooth-like protrusion.