Remote controller convenient to place

By designing a foldable mounting bracket on the drone remote controller and utilizing a rotating axis and magnetic adsorption technology, the remote controller can be stably placed and its portability improved, solving the portability and handheld comfort issues caused by fixed external brackets.

CN224054533UActive Publication Date: 2026-03-27SHENZHEN ALMU INNOVATION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

While the fixed outrigger design of existing drone remote controllers ensures stability, it sacrifices portability and hand comfort, making it easy for users to feel discomfort in their hands when operating the device.

Method used

The foldable storage unit is connected to the housing via a rotating shaft. When not in use, it is magnetically attached to the connecting surface for storage. When needed, it automatically unfolds under gravity or elasticity to form a stable support surface.

Benefits of technology

It retains the stability of traditional stands while solving the problem of hand discomfort by changing the shape of the placement component, significantly improving portability and operating comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a remote controller convenient to place, which comprises a placing surface serving as a placing position of the remote controller. The shell comprises an operation surface and a connecting surface, the connecting surface deviates from the operation surface, and when the remote controller is placed, the connecting surface is close to the placing surface. One end of the placing piece is rotationally connected with the shell and located close to the connecting face, the other end of the placing piece is attached to the placing face, the placing piece is used for supporting the shell, the placing piece can be folded and attached to the connecting face, and the placing piece is attached to the connecting face in a magnetic attraction mode. Wherein the placing piece is magnetically adsorbed and attached to the connecting surface, and is in a folded storage state. And when the user separates the placing piece from the connecting surface, the placing piece is far away from the connecting surface under the action of the rotating shaft, and at the moment, the placing piece is in an unfolded placing state. Through the structure, the stability of the remote controller is ensured, and the portability of the remote controller is also improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of unmanned aerial vehicle remote controller, and particularly to a remote controller convenient to place. BACKGROUND

[0002] In order to be stably placed on the ground or the desktop, current unmanned aerial vehicle remote controllers generally adopt fixed outwardly extending support design.

[0003] The fixed outwardly extending support design has a support structure formed integrally, and such support cannot be folded or hidden when being stored, so that the support part is always exposed when the remote controller is held, forming a physical protrusion. Although the fixed outwardly extending support can ensure stable placement of the remote controller, it sacrifices portability and hand-holding comfort, and the user is likely to be affected in control experience due to the support pressing the hand when operating.

[0004] Therefore, there is a need for a remote controller convenient to place which can ensure stability and improve portability. CONTENT OF THE INVENTION

[0005] Therefore, it is necessary to provide a remote controller convenient to place which can ensure stability and improve portability to solve the above problems.

[0006] Embodiments of the present application provide a remote controller convenient to place, comprising:

[0007] a placement surface, which is a placement position of the remote controller;

[0008] a housing, comprising an operation surface and a connecting surface, the connecting surface being away from the operation surface, and the connecting surface being close to the placement surface when the remote controller is placed;

[0009] a placement piece, one end of which is rotationally connected to the housing and located close to the connecting surface, and the other end of which is attached to the placement surface, the placement piece being used to support the housing, the placement piece being foldable and attached to the connecting surface, and the placement piece being attached to the connecting surface by magnetic adsorption;

[0010] wherein the placement piece is magnetically adsorbed and attached to the connecting surface, being in a folded storage state;

[0011] a user separates the placement piece from the connecting surface, and the placement piece is away from the connecting surface under the action of a rotation shaft, being in an unfolded placement state.

[0012] In at least one embodiment of the present application, the connecting surface is provided with a storage groove, the storage groove being provided in a direction extending from the operation surface to the connecting surface, and the storage groove being provided in a shape matched with the placement piece.

[0013] In at least one embodiment of the present application, the remote controller comprises a magnetic suction element, which is arranged on the shell and is in contact with the receiving groove.

[0014] In at least one embodiment of the present application, the placing element comprises:

[0015] a rotating ball, which is rotatably connected to the shell;

[0016] a connecting rod, which is integrally formed with the rotating ball and is in contact with the receiving groove.

[0017] In at least one embodiment of the present application, the placing element comprises:

[0018] a placing rod, one end of which is integrally formed with one of the connecting rods, and the other end of which is integrally formed with the other connecting rod, and the placing rod is made of metal and is magnetically attached to the magnetic suction element;

[0019] an anti-skid element, which is connected to the placing rod and the connecting rod respectively and is located at the connection between the connecting rod and the placing rod.

[0020] In at least one embodiment of the present application, the anti-skid element is made of rubber.

[0021] In at least one embodiment of the present application, the remote controller comprises a placing element, which is located at any edge of the shell, and the connecting surface and the placing surface form an angle.

[0022] In at least one embodiment of the present application, the remote controller comprises two placing elements, which are respectively arranged at two edges of the shell and are symmetrically arranged.

[0023] In at least one embodiment of the present application, the two placing elements are located between the connecting surface and the placing surface, and the connecting surface and the placing surface are horizontally arranged.

[0024] In at least one embodiment of the present application, the remote controller further comprises:

[0025] a rocker adjusting mechanism, which is connected to the shell and is connected to the operation surface and is placed from inside the shell to outside the shell;

[0026] a display element, which is connected to the shell and is located on the operation surface.

[0027] The remote controller for easy placement provided above is connected with the shell through the rotating shaft through the placing piece, and can be attached to the connecting surface through magnetic attraction when not in use, so as to realize storage and eliminate hand holding interference. When placement is needed, the user only needs to separate the magnetic attraction, and the placing piece is automatically unfolded under the action of gravity or elasticity to form a stable supporting surface, which takes into account the functionality. Both the stability of the traditional support and the shape change of the placing piece solve the problem of hand cramping, and significantly improve the portability of the remote controller of the unmanned aerial vehicle. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 A perspective view of the remote controller for easy placement described in the present application;

[0029] Figure 2 A front view of the remote controller for easy placement described in the present application;

[0030] Figure 3 A Figure 2 A cross-sectional view of the folded storage state at A-A in the above figure;

[0031] Figure 4 A Figure 2 A cross-sectional view of the unfolded placement state at A-A in the above figure;

[0032] Figure 5 A schematic view of the remote controller for easy placement described in the present application including a placing piece;

[0033] Figure 6 A schematic view of the remote controller for easy placement described in the present application including two placing pieces;

[0034] Explanation of main element symbols

[0035] 100, remote controller for easy placement; 10, placing surface; 20, shell; 21, operation surface; 22, connecting surface; 30, placing piece; 40, storage groove; 50, magnetic attraction piece; 31, rotating ball; 32, connecting rod; 33, placing rod; 34, anti-skid piece; 60, rocker adjusting mechanism; 70, display piece. DETAILED DESCRIPTION

[0036] The embodiments of the present application will be described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, not all embodiments.

[0037] It should be noted that when a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components can be present. When a component is referred to as being "positioned" on another component, it can be directly positioned on the other component or intervening components can be present. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and the like as can be used herein are used for illustration only and are merely used for purposes of clarification in understanding the exemplary embodiments.

[0038] Embodiments of the present application provide a remote controller convenient to place, comprising: a placing surface, a shell and a placing piece. The placing surface is a placing position of the remote controller. The shell comprises an operation surface and a connecting surface, the connecting surface being away from the operation surface. When the remote controller is placed, the connecting surface is close to the placing surface.

[0039] One end of the placing piece is rotationally connected with the shell and is located close to the connecting surface. The other end of the placing piece is attached to the placing surface, and the placing piece is used to support the shell. The placing piece can be folded to be attached to the connecting surface, and the placing piece is attached to the connecting surface by magnetic adsorption. In this case, the placing piece is attached to the connecting surface by magnetic adsorption, and is in a folded storage state. A user separates the placing piece from the connecting surface, and the placing piece is away from the connecting surface under the action of a rotating shaft, and in this case, the placing piece is in an unfolded placing state.

[0040] The remote controller convenient to place provided above is connected with the shell through a rotating shaft of the placing piece, and can be attached to the back of the remote controller (the connecting surface) by magnetic adsorption when not in use, so as to be stored and eliminate hand holding interference. When the remote controller needs to be placed, the user only needs to separate the magnetic adsorption, and the placing piece is automatically unfolded under the action of gravity or elasticity to form a stable supporting surface, and the functionality is taken into account. The stability of the traditional support is retained, the hand holding problem is solved by the shape changeable placing piece, and the portability of the remote controller of the unmanned aerial vehicle is significantly improved.

[0041] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.

[0042] Please refer to Figures 1-6 Embodiments of the present application provide a remote controller convenient to place 100, comprising: a placing surface 10, a shell 20 and a placing piece 30. The placing surface 10 is a placing position of the remote controller. The shell 20 comprises an operation surface 21 and a connecting surface 22, the connecting surface 22 being away from the operation surface 21. When the remote controller is placed, the connecting surface 22 is close to the placing surface 10.

[0043] The one end of the placing piece 30 is rotationally connected with the shell 20 and is located close to the connecting surface 22. The other end of the placing piece 30 is attached to the placing surface 10. The placing piece 30 is used to support the shell 20. The placing piece 30 can be folded and attached to the connecting surface 22. The attachment of the placing piece 30 to the connecting surface 22 is magnetic. In this case, the placing piece 30 is magnetically attached to and attached to the connecting surface 22, which is in a folded storage state. The user separates the placing piece 30 from the connecting surface 22. The placing piece 30 is away from the connecting surface 22 under the action of the rotating shaft. At this time, it is in an unfolded placing state.

[0044] Specifically, the placing surface 10 is the placing position of the remote controller. The placing surface 10 is the direct interface between the remote controller and the external environment. The placing surface 10 can be a desktop, a ground or any other flat surface, which provides stable support for the remote controller. The user can place it on a flat surface to operate the remote controller stably or store the remote controller.

[0045] The shell 20 includes an operation surface 21 and a connecting surface 22. The connecting surface 22 is away from the operation surface 21. The shell 20 is the main part of the remote controller, which protects the internal electronic components and mechanical structures. The operation surface 21 is used for the user to perform various operations, such as pressing, touching or sliding, etc. The connecting surface 22 is used to contact or connect the placing piece 30 with the placing surface 10.

[0046] This makes the structure of the remote controller clearer and the function division more explicit. At the same time, by designing the connecting surface 22 to be away from the operation surface 21, the keys and display screen on the operation surface 21 can be effectively protected when the remote controller is placed, avoiding being pressed or damaged.

[0047] The placing piece 30 is the support structure of the remote controller, which is used to provide stable support when the remote controller is placed. Through the design of rotational connection and magnetic attraction, the placing piece 30 can realize two states of folding storage and unfolding support.

[0048] When the remote controller needs to be carried or handheld, the placing piece 30 can be folded and attached to the connecting surface 22, and fixed by magnetic attraction. This improves the portability and handheld comfort.

[0049] When the remote controller needs to be placed on a desktop or ground, the user only needs to simply separate the placing piece 30 from the connecting surface 22. The placing piece 30 can automatically unfold under the action of the rotating shaft to form a stable support surface. This design ensures that the remote controller will not slide or tilt when placed, improving the stability.

[0050] The user rotates the placing piece 30 from the unfolded state to the direction of the connecting surface 22 until the placing piece 30 is attached to the connecting surface 22. At this time, the magnetic attraction fixes the placing piece 30 on the connecting surface 22 firmly, completing the folding storage.

[0051] The user separates the placement piece 30 from the connection surface 22, and the placement piece 30 automatically unfolds under the action of the rotating shaft until it is attached to the placement surface 10. At this time, the placement piece 30 provides stable support for the remote controller, completing the unfolding support.

[0052] In a specific embodiment, the connection surface 22 is provided with a receiving groove 40, the opening direction of the receiving groove 40 extends from the operation surface 21 to the connection surface 22, and the shape of the receiving groove 40 matches the placement piece 30.

[0053] Specifically, the receiving groove 40 extends from the operation surface 21 to the connection surface 22, which is consistent with the rotating connection direction of the placement piece 30. When folding and storing the placement piece 30, it can naturally fit into the receiving groove 40, avoiding interference or damage caused by mismatched directions when storing the placement piece 30. This improves the smoothness and efficiency of storage, making it easier for users to complete the folding and storage operation of the placement piece 30.

[0054] The shape of the receiving groove 40 matches the placement piece 30, which can completely accommodate the folded placement piece 30. This ensures the stable fixation of the placement piece 30 in the receiving groove 40, avoiding shaking or falling due to shape mismatch.

[0055] This enhances the overall stability of the remote controller, making it safer and more reliable when carrying or storing. At the same time, it also improves the appearance of the remote controller, making it more in line with the aesthetic needs of modern home or office environments.

[0056] The design of the receiving groove 40 allows the placement piece 30 to closely fit on the connection surface 22 after folding, reducing the volume and weight of the remote controller and improving portability. Users can more easily carry the remote controller outside or move it between different rooms. Through the fixation and protection of the placement piece 30 by the receiving groove 40, damage to the placement piece 30 caused by collision or compression during carrying or storage is avoided. This prolongs the service life of the remote controller and reduces the user's maintenance cost. The matching design of the receiving groove 40 and the placement piece 30 makes the operation of the remote controller more smooth and convenient. Users can easily complete the unfolding and storage operation of the placement piece 30 when using the remote controller, without spending too much time and effort.

[0057] The user rotates the placement piece 30 from the unfolded state to the connection surface 22, and the placement piece 30 gradually fits into the receiving groove 40. Since the shape of the receiving groove 40 matches the placement piece 30, the placement piece 30 can be stably fixed in the receiving groove 40, completing the folding and storage. The user separates the placement piece 30 from the receiving groove 40, and the placement piece 30 automatically unfolds under the action of the rotating shaft until it is attached to the placement surface 10. At this time, the placement piece 30 provides stable support for the remote controller, completing the unfolding support.

[0058] In a specific embodiment, the remote controller comprises a magnetic attraction member 50 arranged on the housing 20, which is in contact with the receiving groove 40.

[0059] Specifically, the magnetic attraction member 50 is arranged on the housing 20, and the specific position can be set according to the magnetic attraction position of the placing rod 33, so as to generate a magnetic attraction effect with the placing member 30.

[0060] The magnetic attraction member 50 generates a magnetic field, which interacts with the placing member 30 (which usually also contains magnetic material) to achieve a magnetic attraction effect.

[0061] The magnetic attraction member 50 is in contact with the receiving groove 40, so that when the placing member 30 is folded and stored in the receiving groove 40, it can be simultaneously subjected to the physical restriction of the receiving groove 40 and the magnetic attraction of the magnetic attraction member 50. The stability of the placing member 30 in the receiving groove 40 is enhanced, and falling off due to vibration or external force is avoided.

[0062] The contact design of the magnetic attraction member 50 and the receiving groove 40 makes the placing member 30 more stable in the folded storage state. Even if the placing member 30 encounters vibration or external force during carrying or storage, it is not easy to fall off, ensuring the safety of the remote controller. The magnetic attraction effect makes the folding and unfolding support operation of the placing member 30 more smooth and convenient. The user only needs to gently move the placing member 30 close to or away from the magnetic attraction member 50 to complete the folding or unfolding operation. Through the fixing effect of the magnetic attraction member 50 on the placing member 30, damage of the placing member 30 due to shaking or collision during carrying or storage is avoided. This prolongs the service life of the remote controller and reduces the maintenance cost of the user. The contact design of the magnetic attraction member 50 and the receiving groove 40 makes the appearance of the remote controller more neat and beautiful. Without protruding parts or gaps, the remote controller is more in line with the aesthetic needs of modern home or office environment.

[0063] The user rotates the placing member 30 from the unfolded state to the direction of the receiving groove 40, and when the placing member 30 approaches the magnetic attraction member 50, it is tightly attached in the receiving groove 40 due to the magnetic attraction effect. At this time, the placing member 30 is simultaneously subjected to the physical restriction of the receiving groove 40 and the magnetic attraction of the magnetic attraction member 50, and the folding and storage are completed.

[0064] The user overcomes the magnetic attraction effect and separates the placing member 30 from the receiving groove 40. The placing member 30 is automatically unfolded under the action of the rotating shaft until it is in contact with the placing surface 10. At this time, the placing member 30 provides a stable support force for the remote controller, and the unfolding support is completed.

[0065] In a specific embodiment, the placing part 30 comprises a rotating ball 31 and a connecting rod 32. The rotating ball 31 is rotationally connected with the shell 20. The connecting rod 32 is integrally formed with the rotating ball 31, and the connecting rod 32 is connected with the receiving groove 40.

[0066] Specifically, the rotating ball 31 is the part of the placing part 30 that is rotationally connected with the shell 20, and is usually designed as a spherical or spherical-like shape to achieve multi-directional rotation. The rotating ball 31 enables the placing part 30 to rotate relative to the shell 20, thereby achieving switching between the folded storage and unfolded support states. The design of the rotating ball 31 makes the rotating operation of the placing part 30 more smooth and flexible, improving the user's experience.

[0067] The connecting rod 32 is integrally formed with the rotating ball 31, forming the main support structure of the placing part 30. One end of the connecting rod 32 is connected with the rotating ball 31, and the other end is used to abut against the placing surface 10. The connecting rod 32 provides stable support when the placing part 30 is unfolded, ensuring that the remote controller can be stably placed on the placing surface 10. At the same time, when folded and stored, the connecting rod 32 can be fitted into the receiving groove 40, maintaining the compactness of the placing part 30. The integrally formed design of the connecting rod 32 and the rotating ball 31 enhances the overall structural strength of the placing part 30, making the placing part 30 more durable. At the same time, the abutting connection of the connecting rod 32 and the receiving groove 40 also improves the stability and aesthetics of the placing part 30 when stored.

[0068] The design of the rotating ball 31 and the connecting rod 32 enables the placing part 30 to form a stable support structure when unfolded, ensuring that the remote controller will not be knocked over or slide due to external forces.

[0069] The design of the rotating ball 31 makes the folding and unfolding operation of the placing part 30 more simple and fast. The user only needs to rotate the placing part 30 to achieve switching between the two states without additional operation steps.

[0070] The integrally formed design of the rotating ball 31 and the connecting rod 32 enhances the overall structural strength of the placing part 30, making the placing part 30 more durable and reliable. Even after long-term use or external force, the placing part 30 is not easily damaged or deformed.

[0071] The abutting connection of the connecting rod 32 and the receiving groove 40 enables the placing part 30 to be more compactly abutted on the shell 20 when folded and stored, reducing the volume and space occupied by the remote controller. At the same time, it also improves the appearance aesthetics of the remote controller.

[0072] The user rotates the placing piece 30 from the unfolded state to the direction of the storage slot 40, and the rotating ball 31 rotates the connecting rod 32 under the rotating connection of the shell 20. When the connecting rod 32 approaches the storage slot 40, it is limited by the shape of the storage slot 40 and magnetically attracted by the magnetic attraction piece 50, and is fitted into the storage slot 40, completing the folding and storage.

[0073] The user overcomes the magnetic attraction and rotates the placing piece 30 out of the storage slot 40. The rotating ball 31 rotates the connecting rod 32 together until the connecting rod 32 is fitted with the placing surface 10. At this time, the placing piece 30 provides stable support force for the remote controller, completing the unfolding and support.

[0074] In a specific embodiment, the placing piece 30 includes a placing rod 33 and an anti-skid piece 34. One end of the placing rod 33 is integrally formed with one of the connecting rods 32, and the other end of the placing rod 33 is integrally formed with the other connecting rod 32. The placing rod 33 is made of metal and is magnetically attracted and connected with the magnetic attraction piece 50. The anti-skid piece 34 is connected with the placing rod 33 and the connecting rod 32 respectively, and is located at the connection between the connecting rod 32 and the placing rod 33.

[0075] Specifically, one end of the placing rod 33 is integrally formed with one connecting rod 32, and the other end is integrally formed with the other connecting rod 32, forming a stable support structure. The placing rod 33 is made of metal, which enables it to generate magnetic attraction with the magnetic attraction piece 50.

[0076] The placing rod 33 provides stable support force when unfolded, ensuring that the remote controller can be stably placed on the placing surface 10. At the same time, when folded and stored, the placing rod 33 can be closely fitted on the shell 20 or in the storage slot 40 due to the magnetic attraction.

[0077] The metal material of the placing rod 33 enhances the structural strength of the placing piece 30, making it more durable. The magnetic attraction improves the stability and convenience of the placing piece 30 when stored.

[0078] The anti-skid piece 34 is connected with the placing rod 33 and the connecting rod 32 respectively, and is located near the connecting rod 32 (or understood as the connection between the placing rod 33 and the placing rod 33 or the connecting rod 32).

[0079] The anti-skid piece 34 increases the friction between the remote controller and the placing surface 10, preventing the remote controller from sliding or falling when placed.

[0080] The design of the anti-skid piece 34 improves the stability of the remote controller, ensuring the safe use of the remote controller on various placing surfaces 10.

[0081] The design of the placement rod 33 and the anti-slip piece 34 works together to enable the remote controller to be placed more stably on the placement surface 10 when unfolded, and not to be easily slipped or toppled. The magnetic attraction between the metal material of the placement rod 33 and the magnetic attraction piece 50 makes the folding and unfolding operations of the placement piece 30 more simple and fast. The user only needs to gently move the placement piece 30 closer to or farther away from the magnetic attraction piece 50 to complete the folding or unfolding operation. The design of the anti-slip piece 34 increases the safety of the remote controller during use, especially on an inclined or smooth placement surface 10, which can effectively prevent the remote controller from slipping or falling. The design of the metal material of the placement rod 33 and the anti-slip piece 34 also makes the appearance of the remote controller more modern and beautiful, meeting the aesthetic needs of modern home or office environments.

[0082] The user rotates or folds the placement piece 30 from the unfolded state to the storage direction, and the placement rod 33 is tightly attached to the shell 20 or stored in the storage slot 40 due to the magnetic attraction between the metal material and the magnetic attraction piece 50. At the same time, the anti-slip piece 34 is also folded or stored with the placement piece 30, without occupying additional space.

[0083] The user overcomes the magnetic attraction and rotates or unfolds the placement piece 30 from the storage state. The placement rod 33 provides stable support after unfolding, and the anti-slip piece 34 ensures the stability of the remote controller on the placement surface 10.

[0084] In a specific embodiment, the anti-slip piece 34 is made of rubber.

[0085] Specifically, the anti-slip piece 34 is made of rubber. Rubber has excellent elasticity and friction, which can provide good anti-slip effect. At the same time, rubber also has certain wear resistance and anti-aging performance, which can maintain its anti-slip properties for a long time.

[0086] The rubber anti-slip piece 34 increases the friction between the remote controller and the placement surface 10, effectively preventing the remote controller from slipping or toppling when placed. The rubber material has a certain elasticity, which can act as a buffer when the remote controller is slightly hit or falls, protecting the remote controller from damage.

[0087] The design of the rubber anti-slip piece 34 enables the remote controller to be placed more stably on various placement surfaces 10 when unfolded, even on inclined or smooth surfaces. The rubber anti-slip piece 34 increases the safety of the remote controller during use, especially when there are children or pets in the home environment, which can effectively prevent the remote controller from being accidentally knocked down or falling. The rubber material has good wear resistance and anti-aging performance, which can maintain its anti-slip properties for a long time, prolonging the service life of the remote controller. The rubber material has a comfortable feel, which will not give the user a sharp or uncomfortable feeling, improving the user's experience.

[0088] When the remote control is unfolded and placed on the placement surface 10, the rubber anti-slip piece 34 is in close contact with the placement surface 10, providing stable friction to ensure that the remote control does not slide or fall over. When the remote control is subjected to a slight impact or falls, the rubber anti-slip piece 34 acts as a buffer, absorbing part of the impact force and protecting the remote control body from damage.

[0089] In a specific embodiment, the remote control includes a placement piece 30. The placement piece 30 is located at any edge of the shell 20, and the connecting surface 22 and the placement surface 10 form an included angle.

[0090] Specifically, the connecting surface 22 of the placement piece 30 and the placement surface 10 form an included angle. The design of the included angle allows the remote control to form a more stable support when placed, especially on an inclined or uneven placement surface 10. The included angle can provide additional support to prevent the remote control from sliding off.

[0091] The design of the included angle makes the remote control more stable when placed, and it can maintain balance even on an inclined or uneven surface, reducing the risk of sliding.

[0092] The placement of the placement piece 30 at the edge of the shell 20 allows the remote control to adapt to more types of placement scenarios, meeting the user's needs in different environments.

[0093] Stable placement and flexible adaptability together improve the user's experience, making the remote control easier to use and store.

[0094] In a specific embodiment, the remote control includes two placement pieces 30, and the two placement pieces 30 are respectively arranged at the two edge positions of the shell 20, and the two placement pieces 30 are symmetrically arranged.

[0095] Specifically, the remote control is equipped with two placement pieces 30. Compared with the design of a single placement piece 30, it provides more support points and stability.

[0096] The design of the two placement pieces 30 also has a certain redundancy. Even if one of the placement pieces 30 cannot be used normally due to some reason, the other placement piece 30 can still provide sufficient support.

[0097] The two placement pieces 30 are respectively arranged at the two edge positions of the shell 20 and are symmetrically arranged. This symmetrical layout not only makes the remote control more visually appealing, but also ensures its balance when placed.

[0098] Symmetrical arrangement means that the two placement pieces 30 are more evenly distributed on the shell 20, which helps to disperse the pressure when the remote control is placed and improves stability.

[0099] The two symmetrically arranged placement pieces 30 provide more support points for the remote controller, making it more stable when placed and less likely to tip over or slide. The symmetric design allows the remote controller to maintain balance when placed, even on uneven surfaces. The symmetric design conforms to people's aesthetic habits, making the remote controller more aesthetically pleasing and harmonious in appearance. The design of the two placement pieces 30 allows the remote controller to adapt to a wider variety of placement scenarios and postures, meeting the user's needs in different environments.

[0100] Users can choose to place any edge position of the remote controller (i.e., any position of the placement piece 30) on the target placement surface 10 according to actual needs. Since the two placement pieces 30 are symmetrically arranged, the remote controller can maintain balance and stability regardless of which edge position is chosen for placement. During use, if the user needs to adjust the placement position or angle of the remote controller, they can easily pick it up and move it to a new position without worrying about it tipping over or sliding.

[0101] In a specific embodiment, the two placement pieces 30 are located between the connecting surface 22 and the placement surface 10, and the connecting surface 22 and the placement surface 10 are horizontally arranged.

[0102] Specifically, the placement piece 30 is designed between the connecting surface 22 and the placement surface 10, serving as a bridge and support to ensure that the remote controller can be stably placed on the placement surface 10. The presence of the placement piece 30 provides additional support points for the remote controller, making it more stable when placed and less susceptible to external disturbances that could cause it to tip over or slide.

[0103] The connecting surface 22 and the placement surface 10 remain horizontal, meaning that the remote controller can maintain a horizontal posture when placed and will not tilt or skew. Horizontal arrangement makes the remote controller more stable when placed, as the horizontal state is one of the most stable placement postures and can resist slight external vibrations or collisions.

[0104] In a specific embodiment, the remote controller further includes a joystick adjustment mechanism 60 and a display piece 70. The joystick adjustment mechanism 60 is connected to the housing 20, and the joystick adjustment mechanism 60 is connected to the operating surface 21 and placed inside the housing 20 to the outside of the housing 20. The display piece 70 is connected to the housing 20, and the display piece 70 is located on the operating surface 21.

[0105] Specifically, the joystick adjustment mechanism 60 is closely connected to the housing 20 and extends through the housing 20 to the operating surface 21, allowing users to directly operate the joystick on the operating surface 21. The joystick adjustment mechanism 60 is used to adjust certain functions or parameters of the remote controller, such as volume, channel, cursor position, etc. Through the operation of the joystick, users can more intuitively and quickly complete the required adjustments, improving operational efficiency.

[0106] The display 70 is connected with the shell 20 and is located on the operation surface 21, so that the user can clearly see the display content. The display 70 is used to show the relevant information or state of the remote controller, such as the current volume, channel number, battery power and the like. Through the display 70, the user can know the current state of the remote controller at any time, and it is convenient for subsequent operation.

[0107] Therefore, the remote controller 100 provided by the above is convenient to place. The placing part 30 is connected with the shell 20 through a rotating shaft. When not in use, the placing part 30 can be attached to the connecting surface 22 through magnetic attraction, so as to realize storage and eliminate the interference of hand holding. When needing to be placed, the user only needs to separate the magnetic attraction. The placing part 30 is automatically unfolded under the action of gravity or elasticity to form a stable supporting surface, which is functional. The stability of the traditional support is retained, and the hand holding problem is solved through the variable form of the placing part 30, so that the portability of the remote controller of the unmanned aerial vehicle is significantly improved.

[0108] The above is only an embodiment of the present application, and it should be pointed out that those skilled in the art can make improvements without departing from the creative concept of the present application, but these all belong to the protection scope of the present application.

Claims

1. A remote control for ease of placement, characterized in that The remote controller comprises: a placement surface, which is a placement position of the remote controller; a housing, which comprises an operation surface and a connecting surface, the connecting surface being away from the operation surface, and the connecting surface being close to the placement surface when the remote controller is placed; a placement piece, one end of which is rotationally connected with the housing and located close to the connecting surface, and the other end of which is attached to the placement surface, the placement piece being used to support the housing, the placement piece being foldable and attached to the connecting surface, and the placement piece being attached to the connecting surface by magnetic adsorption; wherein the placement piece is magnetically adsorbed and attached to the connecting surface, and is in a folded storage state; a user separates the placement piece from the connecting surface, and the placement piece is away from the connecting surface under the action of a rotating shaft, and at this time, the remote controller is in an unfolded placement state.

2. A remote control for ease of placement according to claim 1, wherein, The connecting surface is provided with a storage groove, the opening direction of the storage groove extending from the operation surface to the connecting surface, and the opening shape of the storage groove being matched with the placement piece.

3. A conveniently placeable remote control according to claim 2, characterized in that The remote controller comprises a magnetic adsorption piece, which is arranged on the housing and attached to the storage groove.

4. A conveniently placeable remote control according to claim 3, characterized in that The placement piece comprises: a rotating ball, which is rotationally connected with the housing; a connecting rod, which is integrally formed with the rotating ball and attached to the storage groove.

5. A conveniently placeable remote control according to claim 4, characterized in that The placement piece comprises: a placement rod, one end of which is integrally formed with one connecting rod, and the other end of which is integrally formed with the other connecting rod, and the placement rod being made of metal and magnetically adsorbed and connected with the magnetic adsorption piece; an anti-skid piece, which is connected with the placement rod and the connecting rod respectively and located at the connection between the connecting rod and the placement rod.

6. A conveniently placeable remote control according to claim 5, characterized in that The anti-skid piece is made of rubber.

7. The easily positionable remote control of claim 1, wherein, The remote controller comprises one placement piece, which is located at any edge of the housing, and the connecting surface and the placement surface form an included angle.

8. The easily positionable remote control of claim 1, wherein, The remote controller comprises two placement pieces, which are symmetrically arranged at two edges of the housing.

9. A conveniently placeable remote control according to claim 8, characterized in that The two placement pieces are located between the connecting surface and the placement surface, and the connecting surface and the placement surface are horizontally arranged.

10. The easily positionable remote control of claim 1, wherein The remote controller further comprises: a rocker adjusting mechanism, which is connected with the housing and the operation surface and placed in the housing and outside the housing; a display piece, which is connected with the housing and located on the operation surface.