Unmanned aerial vehicle remote controller
By optimizing the structural design and component layout of the drone remote control, the problems of inflexible use, inaccurate operation, unstable signal and short life of the remote control are solved, and higher operating accuracy, signal stability and service life are achieved.
Patent Information
- Application Number
- CN202422024813.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing drone remote controls have problems such as inflexible use, inaccurate operation, instable signal, and insufficient service life.
A drone remote control is designed, adopting a face cover, bottom cover and motherboard structure, combining forked antenna, controller and rocker components, to improve structural stability and signal stability and extend service life by optimizing the housing design and component layout.
It improves the operating accuracy and flexibility of the remote control, enhances signal stability, extends the service life of the components, and improves the user experience.
Smart Images

Figure CN223155555U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of unmanned aerial vehicles, and more specifically, to an unmanned aerial vehicle remote controller. Background Art
[0002] In order to achieve flexible control of an unmanned aerial vehicle, it is necessary to convert radio waves into digital signals through a remote controller to control the flight state of the unmanned aerial vehicle. The types of remote controllers include traditional remote controllers and mobile phone / tablet remote controllers. Traditional remote controllers generally include basic devices such as a power switch and a remote control antenna. Their signal stability is strong, but the operation is difficult; the operation of mobile phone / tablet remote controllers is relatively simple compared with traditional remote controllers.
[0003] How to combine the two to make the remote controller have strong signal stability, simple operation, good hand feeling when holding, and multiple components on the remote controller can not only increase the flexibility of use, but also improve the operation accuracy of the remote controller. The shape settings of each component can also extend the service life of the remote controller. Content of the Utility Model
[0004] The utility model aims to overcome at least one defect (insufficiency) of the above-mentioned prior art, and provides an unmanned aerial vehicle remote controller for solving the problems of inflexible use, inaccurate operation, unstable signal and short service life of the remote controller.
[0005] The technical solution adopted by the utility model is that an unmanned aerial vehicle remote controller includes: a remote controller main body, which includes a face cover, a bottom cover, a main board and a battery arranged between the two. The face cover is in a horizontal shape, the bottom cover is in a shape with both sides protruding and the middle concave, the battery is arranged on both sides below the main board and matches the protruding parts of the bottom cover; the face cover includes a front end part and a rear end part extending to the front and rear ends, the bottom cover includes a corner part extending to the rear end, and the main board includes a support part extending to the front end; an antenna assembly is arranged on the support part, the front end part includes two through holes, and the antenna assembly includes two, correspondingly passing through outside the two through holes; a controller includes a chassis part and a rocker part. The face cover includes two symmetrically arranged bosses, the main board includes two holes corresponding to the bosses, the chassis part is connected to the main board and passes through the holes, and the edge of the chassis part is flush with the edge of the boss; the rocker part extends out of the boss and is in a drum shape.
[0006] It is beneficial to provide a stable housing for the remote control main body through the front cover and the bottom cover; the middle concave shape of the bottom cover fits the shapes of the components inside the main board to reduce the mass of the housing, thereby improving the use feel and flexibility; the front end part and the rear end part further strengthen the extended stress surface of the front cover, thereby enhancing the structural stability of the remote control main body; the signal stability of the remote control is improved through the antenna assembly; the operation accuracy of the remote control is improved through the chassis part of the controller; the service life of the rocker part is extended through the drum-shaped rocker part of the controller.
[0007] Each antenna assembly includes a bifurcated antenna. The antenna assembly folds or unfolds along the left and right sides of the remote control main body, and the bifurcated antenna bifurcates or converges along the upper and lower sides of the remote control main body.
[0008] It is beneficial to further improve the signal stability through the bifurcated antenna, and reduce the volume of the remote control by the foldability of the antenna assembly, making the remote control easy to carry, so as to increase the flexibility of the usage scenarios.
[0009] The rear end part is arc-shaped and forms a closed arc surface with the corner part to maintain the structural stability of the remote control main body; concave positions are respectively provided on the left and right sides of the front cover, and convex parts corresponding to the left and right sides of the bottom cover are provided. The convex parts are snap-connected to the concave positions to maintain the structural stability of the remote control main body.
[0010] It is beneficial that the closed arc surface jointly formed by the corner part and the rear end part increases the structural stability of the remote control main body, improves the feel and increases the buffer, and extends the service life of the remote control; through the snap connection between the convex part and the concave position, an inlaid effect is formed between the front cover and the bottom cover, further enhancing the structural stability of the remote control main body.
[0011] A hollow-out groove and a rocker fixing part arranged in the hollow-out groove are provided in the concave part of the bottom cover. The rocker fixing part is used to connect and fix two chassis parts symmetrically arranged on both sides of the hollow-out groove.
[0012] It is beneficial to fix the rocker fixing part inside the remote control main body through the hollow-out groove and connect it with the chassis parts below the two rocker parts, reducing the volume of the remote control main body and increasing the usage flexibility.
[0013] Two keys are also provided in the concave part of the bottom cover, which are connected below the main board and used for standby setting adjustment.
[0014] It is beneficial to provide user-defined keys through the two keys in the concave part to increase the usage flexibility of the remote control.
[0015] The middle part of the front cover includes a square frame hole for matching the display screen. The display screen is fixed on the square frame hole and connected above the main board to receive the signal from the main board.
[0016] It is beneficial to provide a stable support for the display screen through the square frame holes, and reduce the distance between the main board and the display screen to enhance the stability of signal transmission; increase the convenience of user operation through the display screen.
[0017] Four fine-tuning components are provided at the four corners of the main board. The two fine-tuning components near the rear end are cylindrical gears for standby setting adjustment, and the two fine-tuning components near the support part are fine-tuning rollers, which are arranged below the holes through the corner brackets and are used to adjust the chassis part.
[0018] It is beneficial to provide users with a custom fine-tuning function through the fine-tuning components to increase the flexibility of using the remote control; through the design of the cylindrical gears and fine-tuning rollers, extend the service life of the components.
[0019] The corner bracket includes a support plate and a triangular plate. The support plate is used to fix the fine-tuning roller. The triangular plates are arranged on both sides of the support plate, and the support plate forms an inclined angle with the main board.
[0020] It is beneficial to provide a supporting force for the fine-tuning roller through the support plate, form an inclined angle through the triangular plate, reduce the volume of the main structure of the remote control through the inclined angle, and further compress the volume to increase the flexibility of using the remote control.
[0021] The bottom cover further includes a convex corner part, which protrudes obliquely outside the protruding part and matches the inclined angle formed by the support plate.
[0022] It is beneficial to realize various custom button functions of the remote control through the convex corner part protruding obliquely outside the protruding part to improve the flexibility of using the remote control, and the convex corner part matching the inclined angle can also improve the stability of the bottom cover.
[0023] Two symmetrically arranged heat dissipation windows are also provided in the recessed part of the bottom cover. The two heat dissipation windows are correspondingly arranged below the middle part of the main board, and heat dissipation racks are arranged outside the heat dissipation windows.
[0024] It is beneficial to correspond to the centralized heat dissipation position of the main board through the heat dissipation windows, and strengthen the heat dissipation effect of the heat dissipation windows through the heat dissipation racks.
[0025] Compared with the prior art, the beneficial effects of the present utility model are: provide a stable outer shell through the face cover and the bottom cover; reduce the mass of the outer shell through the shape of the bottom cover, improve the use feel and the flexibility of use; strengthen the extended force-bearing surface of the face cover through the front end part and the rear end part, thereby improving the structural stability of the remote control main body; improve the signal stability through the antenna assembly; improve the operation accuracy of the remote control through the chassis part of the controller; extend the service life of the rocker part through the drum-shaped rocker part of the controller. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is the structural explosion diagram of the present utility model.
[0027] Figure 2 This is the front orthographic view of the structure of the present utility model.
[0028] Figure 3 This is the rear view of the structure of the present utility model.
[0029] Figure 4 This is the front-end side view of the present utility model.
[0030] Figure 5 This is the rear-end side view of the present utility model.
[0031] Figure 6 This is the left-end side view of the present utility model.
[0032] Figure 7 This is the right-end side view of the present utility model.
[0033] Explanation of the attached drawing reference numerals: bottom cover 1, custom button 2, rocker fixing part 3, photographing button 4, trimmer assembly 5, antenna assembly 6, video button 7, lamp holder assembly 8, left button 9, three-position switch 10, H key 11, controller 12, power switch 13, right button 14, display screen 15, face cover 16, main board 17, battery 18. Detailed implementation manners
[0034] The attached drawings of the present utility model are only for illustrative purposes and should not be construed as a limitation to the present utility model. For better explaining the following embodiments, some components in the attached drawings will be omitted, enlarged or reduced, which do not represent the dimensions of the actual product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the attached drawings may be omitted.
[0035] Embodiment
[0036] As Figure 1-7As shown in the figure, this embodiment provides a drone remote controller, which includes: a remote controller main body, including a face cover 16, a bottom cover 1, a main board 17 and a battery 18 disposed between the two. The face cover 16 is horizontal, the bottom cover 1 is convex on both sides and concave in the middle, and the battery 18 is disposed on both sides below the main board 17, matching the convex parts of the bottom cover 1; the face cover 16 includes a front end part and a rear end part extending to the front and rear ends, the bottom cover 1 includes a corner part extending to the rear end, and the main board 17 includes a support part extending to the front end; an antenna assembly 6 is disposed on the support part, the front end part includes two through holes, and the antenna assembly 6 includes two, correspondingly passing through outside the two through holes; a controller 12, including a chassis part and a rocker part, the face cover 16 includes two symmetrically arranged bosses, the main board 17 includes two holes corresponding to the bosses, the chassis part is connected to the main board 17 and passes through the holes, and the edge of the chassis part is flush with the edge of the boss; the rocker part extends outside the boss and is drum-shaped.
[0037] In this embodiment, the remote controller main body is divided into a surface layer, an intermediate layer and a bottom layer from top to bottom. The surface layer is the face cover 16. The face cover 16 is provided with a display screen 15, a power switch 13, an H key 11, a left key 9, a right key 14, a three-gear switch 10 and two controllers 12. The face cover 16 extends to the front end part and is snap-connected to the intermediate layer. The front end part is flat. The face cover 16 extends to the rear end part and is snap-connected to the bottom layer. The rear end part is arc-shaped.
[0038] In this embodiment, the bottom layer is the bottom cover 1. The two sides of the bottom cover 1 are convex to adapt to the user's hand grip. Two custom buttons 2 and a rocker fixing member 3 are recessed in the middle of the bottom cover 1. The corner part of the bottom cover 1 is used to connect the face cover 16 and forms a remote controller with good hand feeling and stable structure through the arc-shaped corner part.
[0039] In this embodiment, the middle layer is the main board 17. The main board 17 is used to send signal instructions. A lamp holder assembly 8 is provided on the main board 17, which is used to provide light guidance for the power switch 13, H key 11, right key 14, left key 9, and three - gear switch 10 on the face cover 16. Two corresponding holes are provided on the main board 17 corresponding to the controller 12 on the face cover 16. Batteries 18 are installed on both sides of the main board 17, and the battery cylinders are fixed below the main board 17 by a fixing frame. The support part extending to the front end of the main board 17 overlaps and is snap - connected to the front end part of the face cover 16. A camera button 4 and a video button 7 are respectively provided on both sides of the support part. Two antenna assemblies 6 are provided in the middle of the support part. The two antenna assemblies 6 can be unfolded in a direction perpendicular to the support part, and the unfolding directions of the two antenna assemblies 6 are opposite, so that when the two antenna assemblies 6 are folded along the side, they do not exceed the width of the support part. A trimmer assembly 5 is also provided on the main board 17, and the trimmer assembly 5 is connected to the fixing frame for fixing the battery 18.
[0040] Each antenna assembly 6 includes a bifurcated antenna. The antenna assembly 6 is folded or unfolded along the left and right sides of the remote control main body, and the bifurcated antenna is bifurcated or retracted along the upper and lower sides of the remote control main body.
[0041] In this embodiment, the antenna assembly 6 includes a bifurcated antenna that bifurcates along the length. After the bifurcated antenna bifurcates, a Y - shaped antenna is formed on the support part.
[0042] The rear end part is arc - shaped, forming a closed arc surface with the corner part, which is used to maintain the stability of the remote control main body structure. Concave positions are respectively provided on the left and right sides of the face cover 16, and convex parts are correspondingly provided on the left and right sides of the bottom cover 1. The convex parts are snap - connected to the concave positions, which is used to maintain the stability of the remote control main body structure.
[0043] In this embodiment, the arc surface of the rear end part and the arc surface of the corner part together form a closed arc surface. When the user holds the remote control, the closed arc surface improves the sealing performance of the remote control while enhancing the structural stability. The convex part of the bottom cover 1 and the concave part of the face cover 16 are mutually engaged to enhance the structural stability of the remote control.
[0044] A hollow groove and a rocker fixing part 3 provided in the hollow groove are provided in the recessed part of the bottom cover 1. The rocker fixing part 3 is used to connect and fix two chassis parts symmetrically arranged on both sides of the hollow groove.
[0045] In this embodiment, the hollow groove opened in the recessed part of the bottom cover 1 is used to place the rocker fixing part 3, thereby fixing the two controllers 12 on the face cover 16 to the bottom cover 1.
[0046] The recessed portion of the bottom cover 1 is also provided with two buttons, which are connected to the lower side of the main board 17 and are used for standby setting adjustment.
[0047] In this embodiment, the recessed portion of the bottom cover 1 is provided with two custom buttons 2, which are respectively located below the rocker fixing member 3.
[0048] The middle part of the face cover 16 includes a square frame hole for matching the display screen 15. The display screen 15 is fixed on the square frame hole and is connected to the upper side of the main board 17 to receive the signal from the main board 17.
[0049] In this embodiment, the square frame hole of the face cover 16 is used to mount the display screen 15, and the display screen 15 can be connected to the main board 17 below.
[0050] Four fine-tuning components are provided at the four corners of the main board 17. The two fine-tuning components near the rear end are cylindrical gears for standby setting adjustment. The two fine-tuning components near the support part are fine-tuning rollers, which are arranged below the hole through the corner bracket and are used to adjust the chassis part.
[0051] In this embodiment, two fine-tuning component assemblies 5 are provided at the two corners of the main board 17 near the support part. The fine-tuning component assemblies 5 are fine-tuning rollers. Cylindrical gears are provided at the two corners away from the support part. The fine-tuning rollers are arranged below the main board 17, and the cylindrical gears are arranged above the main board 17.
[0052] The corner bracket includes a support plate and a triangular plate. The support plate is used to fix the fine-tuning roller. The triangular plates are arranged on both sides of the support plate. The support plate forms an inclined angle with the main board 17.
[0053] In this embodiment, the corner bracket for supporting the fine-tuning component assembly 5 below the main board 17 includes a support plate and a triangular plate. The support plate inclines downward and forms an inclined angle with the main board 17. The triangular plates are arranged on both sides of the support plate.
[0054] The bottom cover 1 further includes a convex corner part, which protrudes obliquely out of the protruding part and matches the inclined angle formed by the support plate.
[0055] In this embodiment, the bottom cover 1 further includes a convex corner part that protrudes obliquely out of the protruding part, so that part of the roller of the fine-tuning component assembly 5 is exposed outside the bottom cover 1, and most of the rollers and the corner bracket are wrapped between the bottom cover 1 and the main board 17, thereby realizing the addition of the fine-tuning function, improving the flexibility of the remote control while maintaining the stability of the main body structure of the remote control.
[0056] The recessed portion of the bottom cover 1 is also provided with two symmetrically arranged heat dissipation windows. The two heat dissipation windows are correspondingly arranged below the middle part of the main board 17, and heat dissipation racks are arranged outside the heat dissipation windows.
[0057] In this embodiment, two heat dissipation windows are provided in the recessed part of the bottom cover 1. The heat dissipation windows are located below the rocker fixing member 3 and are directly opposite to the center below the main board 17. The heat dissipation rack is in a vertical strip shape.
[0058] Obviously, the above embodiments of the present utility model are merely examples for clearly explaining the technical solutions of the present utility model, rather than limitations on the specific implementation manners of the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the claims of the present utility model shall be included within the protection scope of the claims of the present utility model.
Claims
1. A drone remote controller, characterized in that, Comprising: The remote control main body includes a front cover, a bottom cover, a main board and a battery disposed between the two. The front cover is horizontal, the bottom cover is convex on both sides and concave in the middle, and the battery is disposed on both sides below the main board, matching the convex parts of the bottom cover; The front cover includes a front end part and a rear end part extending to the front and rear ends, the bottom cover includes a corner part extending to the rear end, and the main board includes a support part extending to the front end; An antenna assembly is disposed on the support part. The front end part includes two through holes, and the antenna assembly includes two, correspondingly passing through outside the two through holes; The controller includes a chassis part and a rocker part. The front cover includes two symmetrically arranged bosses, the main board includes two holes corresponding to the bosses, the chassis part is connected to the main board and passes through the holes, and the edge of the chassis part is flush with the edge of the boss; The rocker part extends out of the boss and is drum-shaped.
2. The drone remote controller according to claim 1, wherein Each antenna assembly includes a bifurcated antenna. The antenna assembly folds or unfolds along the left and right sides of the remote control main body, and the bifurcated antenna bifurcates or converges along the upper and lower sides of the remote control main body.
3. The drone remote controller according to claim 1, characterized in that The rear end part is arc-shaped, forming a closed arc surface with the corner part to maintain the structural stability of the remote control main body; Concave positions are respectively provided on the left and right sides of the front cover, and convex parts are correspondingly provided on the left and right sides of the bottom cover. The convex parts are snap-connected to the concave positions to maintain the structural stability of the remote control main body.
4. The drone remote controller according to claim 1, wherein A hollow-out groove and a rocker fixing part disposed in the hollow-out groove are provided in the concave part of the bottom cover. The rocker fixing part is used to connect and fix two chassis parts symmetrically disposed on both sides of the hollow-out groove.
5. The drone remote controller according to claim 1, wherein Two buttons are further provided in the concave part of the bottom cover, connected below the main board for standby setting adjustment.
6. The drone remote controller according to claim 1, wherein The middle part of the front cover includes a square frame hole for matching a display screen. The display screen is fixed on the square frame hole and connected above the main board for receiving signals from the main board.
7. The drone remote controller according to claim 1, characterized in that Four fine-tuning parts are provided at the four corners of the main board. The two fine-tuning parts near the rear end part are cylindrical gears for standby setting adjustment. The two fine-tuning parts near the support part are fine-tuning rollers, which are disposed below the holes through an angle bracket for adjusting the chassis part.
8. The drone remote controller according to claim 7, wherein The angle bracket includes a support plate and a triangular plate. The support plate is used to fix the fine-tuning roller, the triangular plate is disposed on both sides of the support plate, and the support plate forms an inclination angle with the main board.
9. The drone remote controller according to claim 8, characterized in that, The bottom cover further includes a convex corner part, which protrudes obliquely out of the convex part and matches the inclination angle formed by the support plate.
10. The drone remote controller according to any one of claims 1-9, characterized in that, Two symmetrically arranged heat dissipation windows are further provided in the concave part of the bottom cover. The two heat dissipation windows are correspondingly disposed below the middle part of the main board, and heat dissipation racks are provided outside the heat dissipation windows.