Light shield and remote control assembly
By designing a detachable sunshade and using flip-over connectors and sunshade components, the problem of the sunshade being difficult to store has been solved, achieving convenient storage and multi-functional applicability of the sunshade, and improving the portability and convenience of the drone remote control device.
Patent Information
- Application Number
- CN202423321815.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The sunshades of existing drone remote control devices are not easy to store, resulting in poor portability and convenience.
Design a detachable light shield, including connectors and light shielding components. The light shielding components can be flipped and stacked. The main light shielding panel has a receiving space inside. The secondary light shielding component can be moved and received. The secondary light shielding panel can be stored inside the main body. The secondary light shielding component can be adjusted outside the main body. The secondary component can be detached from the drone remote control device. The secondary light shielding panel can be stored inside the main light shielding panel. The secondary light shielding panel can be unfolded to block light.
The storage volume of the sunshade has been reduced, improving the portability and convenience of the overall equipment. The sunshade can be stored separately or together with the remote control device, and is suitable for different remote control devices.
Smart Images

Figure CN223694092U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present application relate to the technical field of unmanned aerial vehicle system, and particularly relate to a sunshade and a remote control assembly. BACKGROUND
[0002] With the rapid development of unmanned aerial vehicle technology and the continuous expansion of its application scenarios, unmanned aerial vehicle remote control devices have gradually become an important tool for users to control unmanned aerial vehicles. Current unmanned aerial vehicle remote control devices are usually equipped with a screen for displaying real-time flight images and related data of the unmanned aerial vehicle. However, in outdoor strong light environments, the screen is easily disturbed by direct sunlight and ambient light, making it difficult for users to clearly view the screen content. To solve this problem, the prior art proposes a scheme of adding a sunshade to the remote control device. These sunshades can effectively reduce strong light interference and improve screen visibility.
[0003] However, the sunshades in the prior art are usually complex in structure and large in size, and when the unmanned aerial vehicle remote control device is not in use or is stored, these sunshades are not easy to conveniently store, resulting in poor portability and convenience of the overall device. CONTENT OF THE UTILITY MODEL
[0004] An object of an embodiment of the present application is to provide a sunshade and a remote control assembly to solve the technical problem that the sunshade of the unmanned aerial vehicle remote control device provided by the related art is not easy to conveniently store.
[0005] In a first aspect, a sunshade provided by an embodiment of the present application includes:
[0006] A connecting piece, which is capable of being detachably installed on a remote control device with a screen;
[0007] A sunshade assembly, which is connected with the connecting piece, and is capable of being flipped relative to the connecting piece to be superimposed with the connecting piece, and is used for shielding at least part of light irradiated on the screen of the remote control device.
[0008] Optionally, the connecting piece includes:
[0009] A main body part, which is detachably connected with the sunshade assembly, and the sunshade assembly is capable of being flipped relative to the main body part to be superimposed with the main body part; and
[0010] A fixing part, which is connected with the main body part, and is used for connecting the remote control device to fix the main body part on the remote control device.
[0011] Optionally, the fixing part includes:
[0012] A clamping part, which is connected with the main body part, and is used for abutting against the outer contour of the remote control device.
[0013] The abutting fitting part is connected with the main body part, and is used for abutting against the outer contour of the remote control device on one side of the abutting part and mutually fitting with the abutting part to be jointly clamped on the remote control device.
[0014] Optionally, the light shielding assembly comprises:
[0015] The main light shielding panel is connected with the connecting piece, can be flipped to be overlapped with the connecting piece, and is internally provided with a receiving space; and
[0016] The at least one auxiliary light shielding panel is connected with the main light shielding panel, can be movably received in the receiving space when being received, and can be movably unfolded outside the receiving space when being used.
[0017] Optionally, the auxiliary light shielding panel comprises a limiting fitting part, the main light shielding panel comprises a limiting part, the limiting part is arranged on the movable stroke of the auxiliary light shielding panel in the receiving space, and the limiting part is used for abutting against the limiting fitting part of the auxiliary light shielding panel when the auxiliary light shielding panel is moved to the maximum stroke outside the receiving space.
[0018] Optionally, the main light shielding panel further comprises a first connecting part, the first connecting part is arranged on the movable stroke of the auxiliary light shielding panel in the receiving space, the auxiliary light shielding panel further comprises a locking fitting part, and the light shielding assembly further comprises:
[0019] The first elastic part is connected with the auxiliary light shielding panel at one end and connected with the first connecting part at the other end, and is used for applying an elastic force to the auxiliary light shielding panel to move the auxiliary light shielding panel outside the receiving space; and
[0020] The locking part is mounted on the main light shielding panel, is used for connecting the locking fitting part when the auxiliary light shielding panel is moved to the maximum stroke inside the receiving space to lock the auxiliary light shielding panel, and is used for being separated from the locking fitting part when being unlocked to release the auxiliary light shielding panel.
[0021] Optionally, the main light shielding panel further comprises a second connecting part, the locking fitting part further comprises a fitting lock hook, and the locking part comprises:
[0022] a movable part connected with the main light-shielding panel, the movable part comprising a main locking hook, the movable part being able to drive the main locking hook to move relative to the main light-shielding panel, when the auxiliary light-shielding panel moves to the inside of the storage space to the maximum stroke, the main locking hook is able to move to a locking position and is buckled to connect the matching locking hook; and
[0023] a second elastic part, one end of the second elastic part being connected with the movable part, the other end of the second elastic part being connected with the second connecting part, the second elastic part being used to apply an elastic force to the movable part, so that the movable part drives the main locking hook to move to the locking position.
[0024] Optionally, the auxiliary light-shielding panel comprises:
[0025] a movable panel unit connected with the main light-shielding panel, the movable panel unit being able to move relative to the main light-shielding panel to be stored in the inside of the storage space when being stored, and to be unfolded to the outside of the storage space when being used; and
[0026] a folding panel unit connected with the movable panel unit, the folding panel unit being able to turn over relative to the movable panel unit to be overlapped with the movable panel unit, and to be stored together with the movable panel unit in the storage space.
[0027] Optionally, the folding panel unit comprises at least two panel sub-units, each of the panel sub-units being connected with at least one other corresponding panel sub-unit, one of the two connected panel sub-units being able to turn over relative to the other to be overlapped with the other;
[0028] one of the at least two panel sub-units being connected with the movable panel unit and being able to turn over relative to the movable panel unit to be overlapped with the movable panel unit, the at least two panel sub-units being able to be stored together with the movable panel unit in the storage space after being overlapped with each other.
[0029] In a second aspect, the embodiments of the present application provide a remote control assembly, comprising:
[0030] a remote control device, the remote control device comprising a screen; and
[0031] The light shield cover as any one of the above described, the light shield cover is detachable installed on the remote control device.
[0032] The embodiments of this application achieve the following technical effects: The light shield of this application uses connectors and light shielding components that can be stacked together, reducing the storage volume of the light shield. The light shield can be stored separately or installed on the remote control device and stored together with the remote control device. Due to the reduced storage volume, the portability and convenience of the overall device are improved. Attached Figure Description
[0033] One or more embodiments are illustrated by way of example with reference numerals in the accompanying drawings. These illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are denoted as similar elements. Unless otherwise stated, the figures in the drawings do not constitute a limitation on scale.
[0034] Figure 1 This is a first structural schematic diagram of a remote control component provided in an embodiment of this application;
[0035] Figure 2 This is a first structural schematic diagram of a light shield for a remote control component provided in an embodiment of this application;
[0036] Figure 3 This is a second structural schematic diagram of a light shield for a remote control component provided in an embodiment of this application;
[0037] Figure 4 A third structural schematic diagram of a light shield for a remote control component provided in an embodiment of this application;
[0038] Figure 5 A fourth structural schematic diagram of a light shield for a remote control component provided in an embodiment of this application;
[0039] Figure 6 for Figure 4 Enlarged view of section A;
[0040] Figure 7 for Figure 5 Enlarged view of section B;
[0041] Figure 8 A fifth structural schematic diagram of a light shield for a remote control component provided in an embodiment of this application;
[0042] Figure 9 This is a schematic diagram of a second structure of a remote control component provided in an embodiment of this application;
[0043] Figure 10 This is a third structural schematic diagram of a remote control component provided in an embodiment of this application.
[0044] Label Explanation:
[0045] 100, remote control assembly; 10, light shield; 11, connecting piece; 111, main body part; 1111, auxiliary fixing part; 112, fixing part; 1121, clamping part; 11211, clamping hook; 1122, clamping matching part; 12, light shielding assembly; 121, main light shielding panel; 1211, containing space; 1212, limiting part; 1213, first connecting part; 1214, second connecting part; 122, auxiliary light shielding panel; 1221, limiting matching part; 1222, locking matching part; 12221, matching lock hook; 12222, avoiding groove; 1223, movable panel unit; 12231, ditch; 1224, folding panel unit; 12241, panel subunit; 13, first elastic part; 14, locking part; 141, movable part; 1411, active lock hook; 1412, push button; 142, second elastic part; 20, remote control device; 21, screen; 22, protrusion. DETAILED DESCRIPTION
[0046] In order to facilitate the understanding of the present application, the present application will be described in more detail below in conjunction with the drawings and specific embodiments. It should be noted that when an element is described as being "connected" to another element, it can be directly on the other element or one or more intervening elements can be present therebetween. The terms "upper", "lower", "left", "right", "upper end", "lower end", "top" and "bottom" and the like used in the specification indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", and the like are only for the purpose of description and cannot be understood as indicating or implying relative importance.
[0047] Unless otherwise defined, all technical and scientific terms used in the specification have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing specific embodiments and are not intended to limit the present application.
[0048] During the aerial photography of the unmanned aerial vehicle, especially in the outdoor strong light environment, the user usually needs to check the flight picture in real time through the screen on the unmanned aerial vehicle remote control device. However, due to direct sunlight or environmental light interference, the screen content is often not easy to see, affecting the accuracy of user operation and flight safety. A light shield is provided in the related art, which can be installed on the unmanned aerial vehicle remote control device to shield part of the light irradiating on the screen.
[0049] However, the related art provides a light shield with a large volume, which is not easy to store when the remote control device is not used or stored, resulting in poor portability and convenience of the overall device.
[0050] Please refer to Figure 1 and Figure 2 To solve the above technical problems, the application provides a light shield 10 which can be detachably mounted on a remote control device 20 with a screen 21 to shield at least part of the light irradiated on the remote control device 20. The remote control device 20 can be a remote control device 20 for a drone, or a remote control device 20 for other devices, such as a game console. The remote control device 20 with a screen 21 according to the application can be a remote control device 20 with an inseparable screen 21, or a remote control device 20 which can detachably mount a display device (such as a display screen, a mobile phone or a tablet computer).
[0051] In some embodiments, the light shield 10 includes a connecting piece 11 and a light shielding assembly 12. The connecting piece 11 can be detachably mounted on the remote control device 20 with a screen 21. The light shielding assembly 12 is connected to the connecting piece 11, and the light shielding assembly 12 can be flipped relative to the connecting piece 11 to be superimposed with the connecting piece 11. The light shielding assembly 12 is used to shield at least part of the light irradiated on the screen 21 of the remote control device 20.
[0052] The structure principle of the light shield 10 according to the application is that the light shield 10 is provided with a connecting piece 11 and a light shielding assembly 12. The light shielding assembly 12 is stably mounted on the remote control device 20 through the connecting piece 11. Meanwhile, the light shielding assembly 12 and the connecting piece 11 can be superimposed relative to each other to reduce the storage volume.
[0053] It can be understood that the light shield 10 according to the application uses the connecting piece 11 and the light shielding assembly 12 which can be superimposed with each other to reduce the storage volume of the light shield 10. The light shield 10 can be stored alone, or mounted on the remote control device 20 and stored together with the remote control device 20. Since the storage volume is reduced, the portability and convenience of the overall device are improved.
[0054] Please refer to Figure 3 In some embodiments, the connecting piece 11 includes a main body part 111 and a fixing part 112. The main body part 111 is connected to the light shielding assembly 12, and the light shielding assembly 12 can be flipped relative to the main body part 111 to be superimposed with the main body part 111. The fixing part 112 is connected to the main body part 111, and the fixing part 112 is used to connect the remote control device 20 to fix the main body part 111 on the remote control device 20.
[0055] It can be understood that the main body part 111 of the connecting part 11 can be overlapped with the light shielding assembly 12 to reduce the storage volume, and the fixing part 112 of the connecting part 11 is connected with the main body part 111 and the remote control device 20 respectively, so that the light shielding cover 10 is stably installed on the remote control device 20 as a whole. Further, the main body part 111 and the light shielding assembly 12 are detachably connected, which can be stored separately on one hand, and the light shielding assembly 12 can be applied to other remote control devices 20 by replacing the main body part 111 adapted to other remote control devices 20 on the other hand, thereby improving the applicability of the light shielding cover 10.
[0056] In some embodiments, the light shielding assembly 12 can also be configured with an angle adjusting structure for adjusting the turning angle of the light shielding assembly 12, so that the light shielding assembly 12 can adjust the shielding angle of light relative to the screen when in use, thereby improving the flexibility of environmental light shielding. Exemplarily, the angle adjusting structure can be a connecting rod, one end of the connecting rod is connected with the light shielding assembly 12, the other end of the connecting rod is connected with the main body part 111 or the remote control device 20, and the length of the connecting rod can be adjusted to realize the shielding angle adjustment of the light shielding assembly 12. Alternatively, at least one end of the connecting rod can change the position on the corresponding connecting part to realize the shielding angle adjustment of the light shielding assembly 12.
[0057] In some embodiments, the main body part 111 and the light shielding assembly 12 are connected through a hinge structure, and the light shielding assembly 12 can be turned relative to the main body part 111 around the first hinge axis to be overlapped with the main body part 111. Exemplarily, the hinge structure between the main body part 111 and the light shielding assembly 12 can adopt a damping hinge, which can also enable the light shielding assembly 12 to adjust the shielding angle of light relative to the screen.
[0058] In some other embodiments, the main body part 111 and the light shielding assembly 12 are connected through a flexible structure, and the light shielding assembly 12 can be turned relative to the main body part 111 around the first turning axis to be overlapped with the main body part 111. Exemplarily, the flexible structure between the main body part 111 and the light shielding assembly 12 can adopt a leather structure, a cloth structure or a rubber structure.
[0059] In some embodiments, the remote control device 20 with a screen is a remote control device 20 capable of detachably installing a display device. The remote control device 20 comprises a mounting platform for installing the display device, and the main body part 111 is a planar structure capable of being attached to the mounting platform and supporting the display device. When the light shielding cover 10 is used, the main body part 111 of the light shielding cover 10 is attached to the mounting platform, the back of the display device abuts on the main body part 111, and the display device is fixed by the remote control device 20. In some embodiments, the main body part 111 further comprises an auxiliary fixing part 1111 capable of assisting the remote control device 20 to fix or position the display device when the display device is installed on the remote control device 20.
[0060] Exemplarily, when the display device is installed on the remote control device 20, the two sides of the display device in the length direction are respectively abutted by the remote control device 20, and the display device is clamped by the remote control device 20. If the abutting force applied by the remote control device 20 is small, the display device is easy to move in the width direction and be separated from the remote control device 20 under a larger shaking. Based on the technical problem, in some embodiments, the auxiliary fixing part 1111 is an L-shaped structure in cross section, which is arranged at one side edge of the main body part 111 and abuts one side of the display device in the width direction when the display device is installed on the remote control device 20. When the outer contour of the display device in the width direction is only abutted by the single auxiliary fixing part 1111, the auxiliary fixing part 1111 plays an auxiliary positioning role for the installation of the display device and limits the movement of the display device to the side where the auxiliary fixing part 1111 is located. When the outer contour of the display device in the width direction is abutted by two auxiliary fixing parts 1111, and the two auxiliary fixing parts 1111 are oppositely arranged in the width direction of the display device, the two auxiliary fixing parts 1111 play an auxiliary fixing role for the installation of the display device, and completely limit the movement of the display device in the width direction.
[0061] Please refer to Figure 3 In some embodiments, the fixing part 112 includes an abutting part 1121 and an abutting matching part 1122. The abutting part 1121 is connected to the main body part 111, and the abutting part 1121 is used to abut the outer contour of the remote control device 20. The abutting matching part 1122 is connected to the main body part 111, and the abutting matching part 1122 is used to abut the outer contour of the remote control device 20 on the side opposite to the side where the abutting part 1121 is located on the remote control device 20, and cooperates with the abutting part 1121 to be clamped on the remote control device 20.
[0062] It can be understood that the fixing part 112 includes the abutting part 1121 and the abutting matching part 1122, and the abutting part 1121 and the abutting matching part 1122 abut the outer contour of the remote control device 20 in opposite directions when installed on the remote control device 20, so as to clamp the remote control device 20, and make the sunshade 10 be stably installed on the remote control device 20 as a whole.
[0063] In some embodiments, at least one of the clamping portion 1121 and the clamping matching portion 1122 is capable of elastic deformation, for example, at least one of the clamping portion 1121 and the clamping matching portion 1122 is a plastic structure capable of elastic deformation. Under the action of the elastic force generated by the elastic deformation, when the clamping portion 1121 and the clamping matching portion 1122 abut the outer contour of the remote control device 20 respectively, they further abut the remote control device 20, so that the light shield 10 is more stably installed on the remote control device 20 as a whole. At least one pair of clamping portions 1121 and clamping matching portions 1122 can be connected to the main body portion 111. For example, the main body portion 111 is substantially rectangular in structure, and a corresponding pair of clamping portions 1121 and clamping matching portions 1122 is connected to each side of the main body portion 111 in the length direction, so that the light shield 10 is more stably connected to the remote control device 20.
[0064] More easily understood, the clamping portion 1121 and the clamping matching portion 1122 abut the outer contour of the remote control device 20 in opposite directions, so that the light shield 10 is stably installed on the remote control device. This structure design can improve the installation stability of the light shield, and its elastic deformation characteristics can adapt to remote control devices of different sizes, improving the versatility and assembly convenience.
[0065] Please refer to Figure 4 and Figure 5 In some embodiments, the light shielding assembly 12 includes a main light shielding panel 121 and at least one auxiliary light shielding panel 122. The main light shielding panel 121 is connected to the connecting piece 11, and the main light shielding panel 121 can be flipped to be superimposed with the connecting piece 11 relative to the connecting piece 11, and the main light shielding panel 121 is internally provided with a storage space 1211. The auxiliary light shielding panel 122 is connected to the main light shielding panel 121, and the auxiliary light shielding panel 122 can be stowed in the interior of the storage space 1211 of the main light shielding panel 121 when stowed, and can be unfolded outside the storage space 1211 of the main light shielding panel 121 when used.
[0066] As can be understood, the light shielding assembly 12 includes the main light shielding panel 121 and the auxiliary light shielding panel 122, and the auxiliary light shielding panel 122 can be stowed in the interior of the storage space 1211 of the main light shielding panel 121 when stowed, so as to reduce the stowed space and improve the portability and convenience of the overall device. The auxiliary light shielding panel 122 can also be unfolded outside the storage space 1211 of the main light shielding panel 121 when used, providing a larger light shielding area to improve the light shielding effect.
[0067] More easily understood, the active design of the auxiliary light shielding panel 122 enables it to greatly increase the light shielding area during use, improving the screen's ability to prevent light interference; and when not in use, it can be stored inside the main light shielding panel 121, reducing the overall volume of the light shield 10, facilitating the storage and carrying of the device, and meeting the user's convenience needs in outdoor and transportation scenarios. When the user actually uses the light shield 10, they can choose whether to use the auxiliary light shielding panel 122 according to the ambient light conditions, improving the flexibility of ambient light shielding.
[0068] Please refer to Figure 6 In some embodiments, the auxiliary light shielding panel 122 includes a limiting fitting part 1221, and the main light shielding panel 121 includes a limiting part 1212, which is arranged on the active stroke of the auxiliary light shielding panel 122 in the storage space 1211. The limiting part 1212 is used to abut against the limiting fitting part 1221 of the auxiliary light shielding panel 122 when the auxiliary light shielding panel 122 is actively moved to the outside of the storage space 1211 to the maximum stroke.
[0069] As can be understood, the cooperation and connection between the main light shielding panel 121 and the auxiliary light shielding panel 122 through the limiting part 1212 and the limiting fitting part 1221 prevent the auxiliary light shielding panel 122 from detaching from the main light shielding panel 121, avoiding the loss of the auxiliary light shielding panel 122. In other embodiments, the auxiliary light shielding panel 122 and the main light shielding panel 121 can also adopt a split design, and both can be stored together or separately.
[0070] In some embodiments, the limiting part 1212 is a stop block arranged at the opening of the storage space 1211 for the auxiliary light shielding panel 122 to enter and exit, and the limiting fitting part 1221 is a protruding structure extending outward on the auxiliary light shielding panel 122. When the auxiliary light shielding panel 122 is actively moved to the outside of the storage space 1211 to the maximum stroke, the protruding structure abuts against the stop block to limit the auxiliary light shielding panel 122 from detaching from the main light shielding panel 121.
[0071] Please refer to Figure 4 , Figure 6 and Figure 7 In some embodiments, the main light shielding panel 121 further includes a first connecting part 1213 arranged on the active stroke of the auxiliary light shielding panel 122 in the storage space 1211, and the auxiliary light shielding panel 122 further includes a locking fitting part 1222.
[0072] The light shielding assembly 12 further comprises a first elastic part 13 and a locking part 14. One end of the first elastic part 13 is connected to the secondary light shielding panel 122, and the other end of the first elastic part 13 is connected to the first connecting part 1213. The first elastic part 13 is used to apply an elastic force to the secondary light shielding panel 122, so as to make the secondary light shielding panel 122 move outwardly to the outside of the accommodating space 1211. The locking part 14 is installed on the primary light shielding panel 121. When the secondary light shielding panel 122 moves inwardly to the inside of the accommodating space 1211 to the maximum stroke, the locking part 14 is used to connect the locking matching part 1222, so as to lock the secondary light shielding panel 122. When the locking part 14 is unlocked, the locking part 14 is separated from the locking matching part 1222, so as to release the secondary light shielding panel 122.
[0073] It can be understood that the light shielding assembly 12 of the embodiment of the present application is configured with the first elastic part 13 and the locking part 14. When the secondary light shielding panel 122 is used, the secondary light shielding panel 122 is driven by the first elastic part 13 to expand outwardly actively without the need of applying an external force, so as to simplify the operation steps of expanding the secondary light shielding panel 122. When the secondary light shielding panel 122 is accommodated in the inside of the accommodating space 1211 of the primary light shielding panel 121, the locking matching part 1222 on the secondary light shielding panel 122 is connected with the locking part 14, so as to lock the secondary light shielding panel 122. Further, when the locking part 14 is unlocked, the locking part 14 is separated from the locking matching part 1222, so as to release the secondary light shielding panel 122, which is expanded to the outside of the accommodating space 1211 again under the elastic force of the first elastic part 13.
[0074] In some embodiments, the secondary light shielding panel 122 and the primary light shielding panel 121 are slidingly connected, and the secondary light shielding panel 122 can be slidingly accommodated in the inside of the accommodating space 1211 relative to the primary light shielding panel 121. The first elastic part 13 is a spring, and the first connecting part 1213 is a blocking structure. For example, the first connecting part 1213 is a rib, and the length direction of the rib is perpendicular to the moving direction of the secondary light shielding panel 122. One end of the spring abuts against the secondary light shielding panel 122, and the other end of the spring abuts against the first connecting part 1213. When the secondary light shielding panel 122 is expanded to the outside of the accommodating space 1211, the spring pushes the secondary light shielding panel 122, so as to make the secondary light shielding panel 122 slide out of the accommodating space 1211 of the primary light shielding panel 121. When the secondary light shielding panel 122 is accommodated in the inside of the accommodating space 1211, the spring is compressed under the extrusion of the secondary light shielding panel 122. For example, the spring can be installed in the accommodating space 1211 of the primary light shielding panel 121 in a manner of being accommodated in a groove or sleeved on a columnar structure.
[0075] In some other embodiments, the auxiliary light-shielding panel 122 and the main light-shielding panel 121 are slidingly connected, and the auxiliary light-shielding panel 122 can be slidingly accommodated inside the accommodating space 1211 relative to the main light-shielding panel 121. The first elastic part 13 is a tension spring, and the first connecting part 1213 is a fixed structure. One end of the tension spring is fixed to the auxiliary light-shielding panel 122, and the other end of the tension spring is fixed to the first connecting part 1213. When the auxiliary light-shielding panel 122 is unfolded to the outside of the accommodating space 1211, the tension spring pulls the auxiliary light-shielding panel 122 to make the auxiliary light-shielding panel 122 slide out of the accommodating space 1211 of the main light-shielding panel 121. When the auxiliary light-shielding panel 122 is accommodated inside the accommodating space 1211, the tension spring is elongated under the driving of the auxiliary light-shielding panel 122.
[0076] In some other embodiments, the auxiliary light-shielding panel 122 and the main light-shielding panel 121 are hingedly connected, and the auxiliary light-shielding panel 122 can be rotated to be accommodated inside the accommodating space 1211 relative to the main light-shielding panel 121, and the rotation axis is perpendicular to the auxiliary light-shielding panel 122. The first elastic part 13 is a torsion spring, and the first connecting part 1213 is a blocking structure. For example, the first connecting part 1213 is a stopper, which is arranged on the torsion stroke of the torsion spring. One end of the torsion spring abuts against the auxiliary light-shielding panel 122, and the other end of the torsion spring abuts against the first connecting part 1213. When the auxiliary light-shielding panel 122 is unfolded to the outside of the accommodating space 1211, the torsion spring pushes the auxiliary light-shielding panel 122 to make the auxiliary light-shielding panel 122 rotate to be accommodated inside the accommodating space 1211 of the main light-shielding panel 121. When the auxiliary light-shielding panel 122 is accommodated inside the accommodating space 1211, the torsion spring is torsionally compressed under the extrusion of the auxiliary light-shielding panel 122. For example, the torsion spring can be installed in the accommodating space 1211 of the main light-shielding panel 121 in a sleeved manner on the columnar structure.
[0077] For better understanding, the light-shielding cover 10 provided by the embodiments of the present application can provide a large enough light-shielding area, the auxiliary light-shielding panel 122 can be accommodated in the main light-shielding panel 121 to realize small volume storage, and the structure between the auxiliary light-shielding panel 122 and the main light-shielding panel 121 can make the auxiliary light-shielding panel 122 actively unfold and lock, which avoids complicated use operation of the light-shielding cover 10, improves the carrying convenience of the light-shielding cover 10, and reduces the use operation difficulty of the light-shielding cover 10.
[0078] For better understanding, the light-shielding cover 10 provided by the embodiments of the present application can provide a large enough light-shielding area, the auxiliary light-shielding panel 122 can be accommodated in the main light-shielding panel 121 to realize small volume storage, and the structure between the auxiliary light-shielding panel 122 and the main light-shielding panel 121 can make the auxiliary light-shielding panel 122 actively unfold and lock, which avoids complicated use operation of the light-shielding cover 10, improves the carrying convenience of the light-shielding cover 10, and reduces the use operation difficulty of the light-shielding cover 10. Figure 7In some embodiments, the main light-shielding panel 121 further comprises a second connecting portion 1214, the locking portion 1222 further comprises a locking hook 12221, and the locking portion 14 comprises a movable portion 141 and a second elastic portion 142. The movable portion 141 is connected to the main light-shielding panel 121, and the movable portion 141 comprises a driving hook 1411. The movable portion 141 can drive the driving hook 1411 to move relative to the main light-shielding panel 121. When the auxiliary light-shielding panel 122 moves to the maximum stroke inside the accommodating space 1211, the driving hook 1411 can move to a locking position and be buckled with the locking hook 12221. One end of the second elastic portion 142 is connected to the movable portion 141, and the other end of the second elastic portion 142 is connected to the second connecting portion 1214. The second elastic portion 142 is used to apply an elastic force to the movable portion 141, so that the movable portion 141 drives the driving hook 1411 to move to the locking position.
[0079] It can be understood that the cooperating hook 12221 and the driving hook 1411 are connected in the embodiments of the present application, so as to lock the auxiliary light-shielding panel 122. Further, the second connecting portion 1214 and the second elastic portion 142 are also used in the embodiments of the present application. The elastic force is used to drive the movable portion 141 to reset the driving hook 1411 to the locking position, so as to avoid dislocation of the driving hook 1411 and the cooperating hook 12221 during the storage process. Further, the movable portion 141 further comprises a push button 1412 extending outside the accommodating space 1211. In actual use, the user can push the push button 1412 to drive the movable portion 141, so that the movable portion 141 is away from the locking position, the driving hook 1411 is separated from the cooperating hook 12221, and the auxiliary light-shielding panel 122 is moved to the outside of the accommodating space 1211 and unfolded under the elastic force of the first elastic portion 13.
[0080] In some embodiments, the first connecting part 1213 is a rib, and the length direction of the rib is perpendicular to the moving direction of the auxiliary sunshade panel 122. The movable part 141 is connected to the main sunshade panel 121 in a sliding manner, and the movable part 141 is capable of sliding relative to the main sunshade panel 121. Specifically, the movable part 141 is arranged on the rib of the main sunshade panel 121 and is capable of sliding along the length direction of the rib. The movable part 141 is a sliding block, and the active locking hook 1411 is a protrusion extending upward from the sliding block. The second elastic part 142 is a spring, and the second connecting part 1214 is a blocking structure. Specifically, the second connecting part 1214 is a blocking piece connected to the first connecting part 1213 perpendicularly. The locking matching part 1222 is provided with an avoiding slot 12222, and the matching locking hook 12221 is a protrusion extending downward from the opening of the avoiding slot 12222. When the auxiliary sunshade panel 122 is accommodated in the inside of the accommodation space, the avoiding slot 12222 accommodates the part of the structure including the active locking hook 1411 and the second connecting part 1214 on the sliding block, and the matching locking hook 12221 at the opening of the avoiding slot 12222 and the active locking hook 1411 are buckled with each other, thereby locking the auxiliary sunshade panel 122.
[0081] One end of the spring abuts against the movable part 141, and the other end of the spring abuts against the second connecting part 1214. When the auxiliary sunshade panel 122 is locked, the spring pushes the movable part 141 to make the movable part 141 slide to the locking position, so that the active locking hook 1411 is connected to the matching locking hook 12221. When the auxiliary sunshade panel 122 is released, the movable part 141 leaves the locking position under the action of external force, so that the active locking hook 1411 is separated from the matching locking hook 12221, and the spring is compressed under the extrusion of the movable part 141. In other embodiments, the specific structure of the second elastic part 142 and the second connecting part 1214 can be set according to actual needs, which is not limited here.
[0082] Please refer to Figure 8 In some embodiments, the auxiliary sunshade panel 122 includes a movable panel unit 1223 and a folding panel unit 1224. The movable panel unit 1223 is connected to the main sunshade panel 121, and the movable panel unit 1223 is capable of being accommodated in the inside of the accommodation space 1211 relative to the main sunshade panel 121 when being accommodated, and is capable of being unfolded to the outside of the accommodation space 1211 relative to the main sunshade panel 121 when being used.
[0083] The folding panel unit 1224 is connected to the movable panel unit 1223, and the folding panel unit 1224 is capable of being flipped to be overlapped with the movable panel unit 1223 relative to the movable panel unit 1223, and is capable of being accommodated in the accommodation space 1211 together with the movable panel unit 1223.
[0084] Understandably, the secondary light-shielding panel 122 adopts a movable panel unit 1223 and a folding panel unit 1224, and the movable panel unit 1223 and the folding panel unit 1224 can be stacked together, further increasing the light-shielding area of the light-shielding component 12 within the original storage volume.
[0085] In the above embodiment, the limiting engagement part 1221 and the locking engagement part 1222 can be disposed on the movable panel unit 1223. The movable panel unit 1223 and the folding panel unit 1224 can be connected by a hinge structure or a flexible structure. Furthermore, the movable panel unit 1223 and the folding panel unit 1224 can be coplanar or intersecting when unfolded, which is not limited here.
[0086] A limiting structure can be provided between the folding panel unit 1224 and the movable panel unit 1223, so that the maximum angle at which the folding panel unit 1224 can be rotated relative to the movable panel unit 1223 is 90°. For example, as... Figure 8 The movable panel unit 1223 and the folding panel unit 1224 are perpendicular to each other. When the movable panel unit 1223 is unfolded, it is coplanar with the main light-shielding panel 121 and together they are used to block the light in front of the screen. The folding panel unit 1224 is located on both sides of the screen and is used to block the light on the left and right sides of the screen.
[0087] Please see Figure 9 In some embodiments, multiple grooves 12231 are provided on the contact surface where the movable panel unit 1223 contacts the inner wall surface of the receiving space 1211. It can be understood that by providing multiple grooves 12231 on the contact surface, the contact area between the movable panel unit 1223 and the inner wall surface of the receiving space is reduced, thereby reducing friction with the main light-shielding panel 121 during relative movement and reducing jamming during relative movement.
[0088] In some embodiments, the folding panel unit 1224 includes at least two panel sub-units 12241, each panel sub-unit 12241 being connected to at least one other panel sub-unit 12241, and in the two interconnected panel sub-units 12241, one of them can be flipped relative to the other to overlap with the other.
[0089] At least one of the two panel sub-units 12241 is connected to the movable panel unit 1223 and can be flipped relative to the movable panel unit 1223 to overlap with the movable panel unit 1223. After the at least two panel sub-units 12241 overlap with each other, they can be housed together with the movable panel unit 1223 in the housing space 1211.
[0090] It can be understood that the folding panel unit 1224 includes at least two panel sub-units 12241, the panel sub-units 12241 are connected to each other and can be unfolded and stacked with each other, thereby further increasing the light shielding area of the light shielding assembly 12 under the original storage volume.
[0091] Exemplarily, as shown in Figure 10 , the number of the auxiliary light shielding panel 122 is two, and the auxiliary light shielding panel 122 is symmetrically arranged on the main light shielding panel 121, and the folding panel unit 1224 in each auxiliary light shielding panel 122 includes two panel sub-units 12241. In actual unfolding, the left side and the right side of the screen (not shown in the figure) are shielded from ambient light by the corresponding folding panel unit 1224; in actual storage, the two panel sub-units 12241 of each folding panel unit 1224 are first stacked, and then are stacked with the movable panel unit 1223, and are collectively pushed into the storage space 1211 of the main light shielding panel 121.
[0092] In some embodiments, the panel sub-units 12241 can be connected by a hinged structure or can be connected by a flexible structure, which is not limited here. The flipping directions of different panel sub-units 12241 can be the same or different. The inside of the movable panel unit 1223 and each panel sub-unit 12241 can be provided with a magnetic attraction member, and the movable panel unit 1223 and each panel sub-unit 12241 can be attracted to each other by the magnetic attraction member when being stacked with each other, so that the whole after being stacked is more stable, and is more easily stored in the storage space 1211 of the main light shielding panel 121.
[0093] Please refer to Figure 1 , in another aspect, the embodiment of the present application also provides a remote control assembly 100, which includes a remote control device 20 and a light shielding cover 10 as described above, and the remote control device 20 includes a screen 21, and the light shielding cover 10 is detachably mounted on the remote control device 20.
[0094] In some embodiments, the remote control device 20 is a remote control device 20 of a drone.
[0095] It can be understood that the remote control assembly 100 of the embodiment of the present application shields light by the light shielding cover 10, and the light shielding cover 10 adopts the connecting member 11 and the light shielding assembly 12 which can be stacked with each other, thereby reducing the storage volume of the light shielding cover 10. The light shielding cover 10 can be stored alone or can be mounted on the remote control device 20 and stored together with the remote control device 20. Since the storage volume is reduced, the portability and convenience of the whole device are improved.
[0096] Please refer to Figure 9 and Figure 10In some embodiments, the remote control device 20 is provided with a protrusion 22 extending outwardly at one side edge in the width direction D, the main body portion 111 is substantially rectangular in structure, and a pair of clamping portions 1121 and a clamping matching portion 1122 are connected to each side of the main body portion 111 in the length direction L, and the protrusion 22 is located between the two clamping portions 1121. The clamping portions 1121 further include a clamping hook 11211, and the clamping hooks 11211 on the two clamping portions 1121 are oppositely arranged and extend towards each other, each clamping hook 11211 is partially located below the protrusion 22, and the clamping portions 1121 including the clamping hook 11211 can be elastically deformed. When the sunshade 10 is mounted on the remote control device 20, the clamping portions 11211 first abut against the outer contour of the remote control device 20, the clamping hook 11211 can also be easily mounted partially below the protrusion 22 under elastic deformation, and then the clamping matching portion 1122 abuts against the outer contour of the remote control device 20 on the opposite side of the clamping portion 1121. When the sunshade 10 is detached from the remote control device 20, the clamping matching portion 1122 is first detached from the remote control device 20, and then the clamping portion 1121 is detached from the remote control device 20, and the clamping hook 11211 can also be easily detached from the protrusion 22 under elastic deformation.
[0097] It can be understood that, in the embodiments of the present application, the two clamping portions 1121 are provided with the clamping hook 11211 partially located below the protrusion 22, so that even if a greater external force is applied to the sunshade 10 in the height direction H of the remote control device 20 in actual use, the protrusion 20 will abut against the clamping hook 11211 to prevent the sunshade 10 from being directly detached from the remote control device 20, thereby making the connection between the sunshade 10 and the remote control device 20 more stable. Moreover, the clamping portions 1121 including the clamping hook 11211 can be elastically deformed, so that the entire sunshade 10 can be detached only by first releasing the abutment between the clamping matching portion 1122 and the remote control device 20, without substantially increasing the difficulty of detaching the sunshade 10.
[0098] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; under the idea of the present application, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the present application as described above, which are not provided in details for the sake of simplicity; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A light shield, characterized in that, The application relates to a light-shielding assembly for a remote control device with a screen. The light-shielding assembly comprises: a connecting piece which is detachably mounted on the remote control device; and 2. The optical shade of claim 1, wherein, a light-shielding assembly which is connected to the connecting piece and can be flipped relative to the connecting piece to be superimposed on the connecting piece, and is used for shielding at least part of light irradiated on the screen of the remote control device. The connecting piece comprises: a main body part which is detachably connected to the light-shielding assembly and can be flipped relative to the main body part to be superimposed on the main body part; and 3. The optical shade of claim 2, wherein, a fixing part which is connected to the main body part and is used for connecting the remote control device so that the main body part is fixed on the remote control device. The fixing part comprises: a clamping part which is connected to the main body part and is used for abutting against the outer contour of the remote control device; and 4. The optical shade of claim 1, wherein, a clamping matching part which is connected to the main body part and is used for abutting against the outer contour of the remote control device on the side opposite to the clamping part on the remote control device, and is matched with the clamping part to be clamped on the remote control device. The light-shielding assembly comprises: a main light-shielding panel which is connected to the connecting piece and can be flipped relative to the connecting piece to be superimposed on the connecting piece, and is internally provided with a receiving space; and 5. The optical shade of claim 4, wherein, at least one auxiliary light-shielding panel which is connected to the main light-shielding panel and can be movably received in the receiving space of the main light-shielding panel when being received, and can be movably unfolded outside the receiving space of the main light-shielding panel when being used.
6. The optical shade of claim 4, wherein, The auxiliary light-shielding panel comprises a limiting matching part, the main light-shielding panel comprises a limiting part which is arranged on the movable stroke of the auxiliary light-shielding panel in the receiving space, and the limiting part is used for abutting against the limiting matching part of the auxiliary light-shielding panel when the auxiliary light-shielding panel is moved to the maximum stroke outside the receiving space. The main light-shielding panel further comprises a first connecting part which is arranged on the movable stroke of the auxiliary light-shielding panel in the receiving space, the auxiliary light-shielding panel further comprises a locking matching part, and the light-shielding assembly further comprises: a first elastic part which is connected to the auxiliary light-shielding panel at one end and is connected to the first connecting part at the other end, and is used for applying an elastic force to the auxiliary light-shielding panel so that the auxiliary light-shielding panel is moved outside the receiving space; and 7. The optical shade of claim 6, wherein, a locking part which is mounted on the main light-shielding panel and is used for connecting the locking matching part when the auxiliary light-shielding panel is moved to the maximum stroke inside the receiving space, so as to lock the auxiliary light-shielding panel, and is used for being separated from the locking matching part when being unlocked, so as to release the auxiliary light-shielding panel. The main light-shielding panel further comprises a second connecting part, the locking matching part further comprises a matching locking hook, and the locking part comprises: a movable part connected with the main light-shielding panel, the movable part comprising a main locking hook, the movable part being able to drive the main locking hook to move relative to the main light-shielding panel, when the auxiliary light-shielding panel moves to the inside of the storage space to the maximum stroke, the main locking hook is able to move to a locking position and is buckled to connect the matching locking hook; and a second elastic part, one end of the second elastic part being connected with the movable part, the other end of the second elastic part being connected with the second connecting part, the second elastic part being used to apply an elastic force to the movable part, so that the movable part drives the main locking hook to move to the locking position.
8. The optical shade of claim 4, wherein, The auxiliary light-shielding panel comprises: a movable panel unit connected with the main light-shielding panel, the movable panel unit being able to move relative to the main light-shielding panel to be stored in the inside of the storage space when being stored, and to be unfolded outside the storage space when being used; and a folding panel unit connected with the movable panel unit, the folding panel unit being able to turn relative to the movable panel unit to be overlapped with the movable panel unit, and to be stored together with the movable panel unit in the storage space.
9. The optical shade of claim 8, wherein, The folding panel unit comprises at least two panel sub-units, each of the panel sub-units being connected with at least one other corresponding panel sub-unit, one of the two connected panel sub-units being able to turn relative to the other to be overlapped with the other; one of the at least two panel sub-units being connected with the movable panel unit and being able to turn relative to the movable panel unit to be overlapped with the movable panel unit, the at least two panel sub-units being able to be stored together with the movable panel unit in the storage space after being overlapped with each other.
10. A remote control assembly characterized by, comprises: a remote control device, the remote control device comprising a screen; and The light-shielding cover according to any one of claims 1-9, the light-shielding cover being detachably installed on the remote control device.