Magnetic support and holder
By designing a convertible support ring, the magnetic bracket can be connected to the gimbal in the stored state and independently support the shooting equipment in the unfolded state, solving the problems of insufficient practicality and convenience in existing technologies and improving the user experience.
Patent Information
- Application Number
- CN202422410905.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing magnetic bracket can only be used for magnetic connection between the shooting device and the stabilizing device. When the connection is not required, it cannot be supported in other positions, and its practicality and convenience are poor.
A magnetic bracket is designed, whose support ring can be converted between a stowed state and an unfolded state. In the stowed state, the support ring is magnetically connected to the gimbal, and in the unfolded state, it can independently support the shooting equipment. The conversion and angle adjustment of the support ring are achieved through a rotating component.
The practicality and convenience of the magnetic bracket in supporting the shooting equipment are improved, which enhances the user experience.
Smart Images

Figure CN223448001U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of mounting devices, in particular to a magnetic support and a gimbal. BACKGROUND
[0002] At present, when a shooting device needs to be connected with a stabilizing device, a magnetic clamping support is usually used to connect the two through magnetic force. However, the clamping support in the related art can only be used for magnetic connection of the shooting device and the stabilizing device. When the shooting device does not need to be connected to the stabilizing device, for example, the user wants to support the shooting device at a position such as a table, the magnetic support cannot support it, and the practicality and use convenience are poor. SUMMARY
[0003] To overcome the problems in the related art, the present application provides a magnetic support and a gimbal.
[0004] According to a first aspect of the embodiments of the present application, a magnetic support is provided, which comprises:
[0005] a body having a first side wall and a second side wall opposite to each other, the first side wall being magnetically connected with a shooting device;
[0006] a support ring rotatably connected to the second side wall, and the support ring being capable of moving relative to the body to switch the support ring between a storage state and a deployment state;
[0007] wherein, in the storage state, the second side wall is magnetically connectable with a gimbal; and in the deployment state, the second side wall forms a support with the support ring to support the shooting device on a support plane.
[0008] In a possible implementation, the magnetic support comprises a first rotating assembly, the first rotating assembly being connected with the body and the support ring respectively, and the support ring being rotatably connected with the body through the first rotating assembly.
[0009] In a possible implementation, the first rotating assembly comprises:
[0010] a rotating shaft rotatably connected to the second side wall of the body, the rotating shaft rotating around its axial direction, and the axial direction of the rotating shaft being parallel to the surface of the second side wall;
[0011] a rotating frame comprising a first connecting portion and a second connecting portion connected with each other, the first connecting portion being connected with the rotating shaft, and the second connecting portion being fixedly connected with the support ring.
[0012] In a possible implementation, the magnetic support further comprises a second rotating assembly, the rotating frame is rotatably connected to the body through the second rotating assembly, and the support ring can be rotated in different directions through the first rotating assembly and / or the second rotating assembly.
[0013] In a possible implementation, the second rotating assembly comprises:
[0014] A rotating installation groove is arranged on the body, and the rotating installation groove penetrates the body;
[0015] A rotating seat is rotatably connected in the rotating installation groove, the rotating seat rotates around an axial direction, the axial direction of the rotating seat is perpendicular to the surface of the second side wall, and the two ends of the rotating shaft are rotatably connected to the rotating seat.
[0016] A first connecting piece is arranged on a side of the rotating installation groove away from the first rotating assembly, the first connecting piece is fixedly connected to the rotating installation groove, and the first connecting piece is provided with a plurality of rotating feedback points arranged uniformly along a circumferential direction of the first connecting piece.
[0017] A second connecting piece is arranged on a side of the first connecting piece away from the first rotating assembly, and the rotating seat passes through the first connecting piece and is fixedly connected to the second connecting piece.
[0018] In a possible implementation, the second side wall of the body is provided with a containing portion.
[0019] When the support ring is in the containing state, the support ring is contained in the containing portion, the support ring is provided with a avoiding portion, and a gap is formed between the avoiding portion and the containing portion.
[0020] In a possible implementation, the containing portion is provided with a positioning groove, a detection portion is arranged in the positioning groove, and when the second side wall is magnetically connected to the holder, the detection member of the holder is matched with the detection portion to detect the installation position of the magnetic support.
[0021] In a possible implementation, the body comprises:
[0022] A base;
[0023] A cover plate is fixedly connected to the base, and the cover plate is arranged on the first side wall.
[0024] A magnet assembly is arranged in a containing space between the base and the cover plate.
[0025] In a possible implementation, the magnet assembly includes a first magnet assembly and a second magnet assembly, the first magnet assembly is configured to magnetically connect the shooting device with the magnetic support, and the second magnet assembly is configured to magnetically connect the magnetic support with the holder.
[0026] According to a second aspect of the embodiments of the present application, a holder is provided, which includes the magnetic support according to the first aspect of the embodiments of the present application.
[0027] The technical scheme provided by the embodiments of the present application can have the following beneficial effects: the magnetic support provided by the embodiments of the present application is provided with a support ring capable of being switched between a storage state and a deployed state, when the support ring is in the storage state, the magnetic support can connect the shooting device with the holder, and when the support ring is in the deployed state, the magnetic support can support the shooting device alone, thereby improving the practicability and convenience of the magnetic support in supporting the shooting device and improving the user experience.
[0028] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF DRAWINGS
[0029] The accompanying drawings, which are incorporated into and form part of the specification, illustrate embodiments consistent with the present application and, together with the specification, serve to explain the principles of the present application.
[0030] Figure 1 is a front view of the support ring in the storage state according to an exemplary embodiment.
[0031] Figure 2 is a rear view of the support ring in the storage state according to an exemplary embodiment.
[0032] Figure 3 is a structural schematic view of the support ring in the storage state according to an exemplary embodiment.
[0033] Figure 4 is one of the structural schematic views of the support ring in the deployed state according to an exemplary embodiment.
[0034] Figure 5 is another of the structural schematic views of the support ring in the deployed state according to an exemplary embodiment.
[0035] Figure 6 is one of the exploded views of the magnetic support according to an exemplary embodiment.
[0036] Figure 7 is another of the exploded views of the magnetic support according to an exemplary embodiment.
[0037] Reference Signs:
[0038] 10, body; 101, first side wall; 102, second side wall; 1021, accommodating part; 1022, positioning groove; 1023, detection part; 11, first part; 12, second part; 13, base; 131, first mounting groove; 132, second mounting groove; 133, third mounting groove; 14, cover plate; 15, magnet assembly; 151, first magnet; 152, second magnet; 153, third magnet; 20, support ring; 21, first end part; 22, second end part; 221, avoiding part; 30, first rotating assembly; 31, rotating shaft; 32, rotating frame; 321, first connecting part; 322, second connecting part; 40, second rotating assembly; 41, rotating mounting groove; 411, second matching part; 42, rotating seat; 43, first connecting sheet; 431, connecting body; 432, mounting space; 433, first matching part; 434, rotating feedback point; 44, second connecting sheet. DETAILED DESCRIPTION
[0039] The exemplary embodiments will be described in detail hereinbelow with reference to the drawings. In the following description, the same numbers refer to the same or similar elements throughout the drawings. The implementations described in the following exemplary embodiments do not represent all implementations consistent with the present application. Instead, they only describe examples of apparatuses and methods consistent with some aspects of the present application, as detailed in the appended claims.
[0040] At present, when it is needed to connect a shooting device with a stabilizing device, a magnetic support is usually used to connect the two through magnetic force. However, the magnetic support in the related art can only be used for magnetic connection of the shooting device and the stabilizing device. When the shooting device does not need to be connected to the stabilizing device, for example, the user wants to support the shooting device at a position such as a desktop, the magnetic support cannot support the shooting device, and the practicability and convenience of use are poor.
[0041] To solve the problems in the related art, the embodiments of the present application provide a magnetic support, which is provided with a support ring capable of being converted between a storage state and an unfolded state. When the support ring is in the storage state, the magnetic support can connect the shooting device to the gimbal. When the support ring is in the unfolded state, the magnetic support can support the shooting device alone, thereby improving the practicability and convenience of the magnetic support in supporting the shooting device and improving the user experience.
[0042] According to one exemplary embodiment, as shown in Figures 1-7 The embodiments of the present application provide a magnetic support, which includes a body 10 and a support ring 20. The support ring 20 has a storage state and an unfolded state, as shown in Figures 1-3As shown, the support ring 20 is in the storage state, and the magnetic support can be used to magnetically connect the shooting device (not shown in the figure) to the holder (not shown in the figure). Figures 4-5 As shown, the support ring 20 is in the unfolded state, and the magnetic support can be used to support the shooting device on the support plane (not shown in the figure). The shooting device may, for example, be a mobile terminal, a tablet computer, a camera, or other electronic device with a shooting function, and the support plane may, for example, be a desktop, a table top, or the like.
[0043] The body 10 has a first side wall 101 opposite a second side wall 102, and the first side wall 101 is used to magnetically connect with the shooting device. The first side wall 101 may, for example, have multiple ways of magnetically connecting with the shooting device. In one example, the first side wall 101 can magnetically connect with the metal back shell of the shooting device. In another example, the first side wall 101 can magnetically connect with the magnetic sheet pasted on the back shell of the shooting device. In yet another example, the first side wall 101 can magnetically connect with the wireless magnet of the shooting device.
[0044] The support ring 20 is rotatably connected to the second side wall 102 and can move relative to the body 10. For example, the support ring 20 can have a first end 21 and a second end 22, the first end 21 and the second end 22 are away from each other, the first end 21 of the support ring 20 is rotatably connected to the second side wall 102, and the second end 22 of the support ring 20 can move relative to the body 10 to switch the support ring 20 between the storage state and the unfolded state. When the support ring 20 is in the storage state, the second side wall 102 magnetically connects with the stabilizing device; when the support ring 20 is in the unfolded state, the second side wall 102 forms a support with the support ring 20 to support the shooting device on the support plane.
[0045] In the embodiments of the present application, the support ring capable of switching between the storage state and the unfolded state is provided, so that when the support ring is in the storage state, the magnetic support can connect the shooting device to the holder, and when the support ring is in the unfolded state, the magnetic support can independently support the shooting device, thereby improving the practicability and convenience of the magnetic support for supporting the shooting device and improving the user experience.
[0046] In some embodiments, the magnetic bracket includes a first rotating component 30 and / or a second rotating component 40. In one example, the magnetic bracket includes a first rotating component 30, and the support ring 20 is rotatably connected to the body 10 through the first rotating component 30, so that the support ring 20 can switch between a stored state and an expanded state. In another example, the magnetic bracket includes a second rotating component 40, and the support ring 20 is rotatably connected to the body 10 through the second rotating component 40 to adjust the orientation of the support ring 20. In another example, the magnetic bracket includes a first rotating component 30 and a second rotating component 40, and the support ring 20 is rotatably connected to the second rotating component 40 through the first rotating component 30, and the second rotating component 40 is rotatably connected to the body 10. The first rotating component 30 and the second rotating component 40 can rotate the support ring 20 in different directions, for example, to open and close relative to the body 10, and to rotate different angles relative to the direction perpendicular to the body 10, so as to adjust the support angle and direction of the support ring 20 and improve the flexibility of use.
[0047] In some embodiments, the magnetic bracket includes a first rotating component 30. Figures 1-7 As shown, the first rotating assembly 30 is connected to the main body 10 and the support ring 20 respectively, and the support ring 20 is rotatably connected to the main body 10 via the first rotating assembly 30. For example, since a stop limit is generated between the edge of the main body 10 and the edge of the support ring 20, the opening and closing angle range between the support ring 20 and the main body 10 can be set to 0 to 114°. Of course, it is understandable that the angle range can also be designed and adjusted by those skilled in the art according to actual needs, and the embodiments of the present application do not impose excessive restrictions on this.
[0048] In one example, the first rotating assembly 30 includes a rotating shaft 31 and a rotating frame 32. Figures 1-7 As shown, the rotating shaft 31 is rotatably connected to the second side wall 102 of the main body 10. The rotating shaft 31 rotates around its axial direction. The axial direction of the rotating shaft 31 is parallel to the surface of the second side wall 102. The rotating frame 32 includes a first connecting portion 321 and a second connecting portion 322 connected to each other. The first connecting portion 321 is fixedly connected to the rotating shaft 31, for example, by being sleeved on the rotating shaft 31 or being fixed to the rotating shaft 31 through an interference fit. The second connecting portion 322 is fixedly connected to the support ring 20. The rotation of the rotating shaft 31 drives the rotating frame 32 to rotate, thereby enabling the second end portion 22 of the support ring 20 to move relative to the main body 10, thereby enabling the support ring 20 to open and close relative to the main body 10, thereby realizing the conversion of the support ring 20 between the deployed state and the stored state.
[0049] It can be understood that, in the embodiment of the present application, the rotating frame 32 is fixed on the rotating shaft 31 as an example for explanation. In actual production and design, the rotating shaft 31 can also be fixed to the main body 10, and the rotating frame 32 can rotate relative to the rotating shaft 31. The embodiment of the present application does not impose too many restrictions on the specific setting method of the rotating shaft 31 and the rotating frame 32, as long as the rotating frame 32 can drive the support ring 20 to rotate to switch between the expanded state and the stored state.
[0050] In some embodiments, the magnetic bracket further includes a second rotating component 40. Figures 1-7 As shown, the second rotating assembly 40 is connected to the first connecting portion 321 of the rotating frame 32, and the rotating frame 32 is rotatably connected to the main body 10 through the second rotating assembly 40, and the first rotating assembly 30 and the second rotating assembly 40 rotate the support ring 20 in different directions. One of the first rotating assembly 30 and the second rotating assembly 40 can enable the support ring 20 to open and close relative to the main body 10, and the other can enable the support ring 20 to rotate with a direction perpendicular to the main body 10 as the rotation axis. By setting the first rotating assembly 30 and the second rotating assembly 40, the rotation and opening and closing of the support ring 20 can be achieved, which facilitates the adjustment of the support angle and direction, and improves the flexibility of the magnetic bracket to support the shooting equipment. Among them, the rotation angle of the support ring 20 relative to the direction perpendicular to the main body 10 is 0~360°, which can be rotated and adjusted by the user according to usage requirements.
[0051] In some embodiments, the second rotating assembly 40 includes a rotating mounting groove 41, a rotating seat 42, a first connecting piece 43, and a second connecting piece 44. The rotating mounting groove 41 is provided on the body 10 and extends through the body 10. For example, the rotating mounting groove 41 is a circular groove, and the projections of the rotating seat 42 and the second connecting piece 44 on the second sidewall 102 of the body 10 are both circular, so as to enable the rotating seat 42 to rotate relative to the rotating mounting groove 41. The rotating seat 42 is rotatably connected to the rotating mounting groove 41 and rotates about its axis. The axis of the rotating seat 42 is perpendicular to the surface of the second sidewall 102. Both ends of the rotating shaft 31 are rotatably connected to the rotating seat 42, so that the rotating shaft 31 can drive the support ring 20 to rotate about the axis of the rotating shaft 31. That is, the support ring 20 can open and close relative to the body 10. The rotating seat 42 can drive the rotating shaft 31 to rotate about the axis of the rotating seat 42, thereby driving the support ring 20 to rotate relative to the body 10.
[0052] The first connecting sheet 43 is arranged at a side of the rotating installation groove 41 away from the first rotating assembly 30, and the first connecting sheet 43 is fixedly connected with the rotating installation groove 41. The second connecting sheet 44 is arranged at a side of the first connecting sheet 43 away from the first rotating assembly 30, and a part of the rotating seat 42 passes through the first connecting sheet 43 and is fixedly connected with the second connecting sheet 44, and the second connecting sheet 44 is rotatably connected with the first connecting sheet 43. The second connecting sheet 44 is used for rotatably connecting the rotating seat 42 to the first connecting sheet 43, and the first connecting sheet 43 is fixedly connected with the rotating installation groove 41, so that the rotating seat 42 is rotatably connected to the rotating installation groove 41.
[0053] Of course, it can be understood that when the second connecting sheet 44 is fixedly connected with the rotating seat 42, a part of the second connecting sheet 44 can also pass through the first connecting sheet 43 and be fixedly connected with the rotating seat 42, and a plurality of clamping portions and a plurality of clamping matching portions can be respectively arranged on the second connecting sheet 44 and the rotating seat 42, or the second connecting sheet 44 and the rotating seat 42 are connected through fasteners, so as to improve the tightness of the connection between the second connecting sheet 44 and the rotating seat 42. The specific mode of fixed connection between the second connecting sheet 44 and the rotating seat 42 is not limited too much in the embodiment of the application, and a person skilled in the art can set it according to actual needs.
[0054] In one example, as shown in Figure 6 The first connecting sheet 43 includes a connecting body 431, the connecting body 431 is a hollow structure, and the connecting body 431 is a circular ring in an example. The center of the connecting body 431 has an installation space 432, and a part of the second connecting sheet 44 passes through the installation space 432 and is fixedly connected with the rotating seat 42, or a part of the rotating seat 42 passes through the installation space 432 and is fixedly connected with the second connecting sheet 44, so as to rotatably connect the rotating seat 42 to the first connecting sheet 43.
[0055] The edge of the connecting body 431 is provided with a plurality of first matching portions 433, the plurality of first matching portions 433 are uniformly arranged along the circumference of the connecting body 431, the rotating installation groove 41 is provided with a second matching portion 411 matched with the first matching portion 433, one of the first matching portion 433 and the second matching portion 411 is a clamping groove, and the other is a clamping block, so as to clampingly connect the connecting body 431 and the rotating installation groove 41. Of course, it can be understood that the first matching portion 433 and the second matching portion 411 can also adopt other connection modes, for example, connection through fasteners, adhesion, welding and the like, and the number and arrangement position of the first matching portion 433 can be set by a person skilled in the art according to actual needs, and the embodiment of the application does not specially limit this.
[0056] In one example, the first connecting sheet 43 is also provided with a plurality of rotating feedback points 434 uniformly arranged along the circumference thereof. As shown in Figure 6As shown, the rotation feedback points 434 are arranged on the connecting body 431. In the embodiment of the present application, the first connecting piece 43 is provided with eight rotation feedback points 434, that is, the rotation passes through a rotation feedback point 434 every 45°, and when passing through the rotation feedback point 434, the rotation will produce a slight jam, realizing the rotation tactile feedback, or when passing through the rotation feedback point 434, the rotation seat 42 can be stopped at the position through the limiting cooperation, realizing the gear adjustment of the rotation. It can be understood that the number of rotation feedback points 434 can also be increased or reduced in actual design and production, and the embodiment of the present application does not specially limit this, and it can be set according to actual needs by those skilled in the art.
[0057] The rotation feedback points 434 can be arranged on the side of the first connecting piece 43 close to the rotation seat 42, or on the side of the first connecting piece 43 close to the second connecting piece 44. When the rotation feedback points 434 are arranged on the side close to the rotation seat 42, the side of the rotation seat 42 close to the first connecting piece 43 can be provided with a rotation limiting portion (not shown in the figure), and the rotation limiting portion cooperates with the rotation feedback points 434 to limit the rotation seat 42 when the rotation seat 42 rotates to different angles, realizing the adjustment of different rotation gears. One of the rotation limiting portion and the rotation feedback points 434 is a clamping groove, and the other is a clamping block, and the rotation angle of the rotation seat 42 is limited through clamping cooperation. When the rotation feedback points 434 are arranged on the side close to the second connecting piece 44, the side of the second connecting piece 44 close to the first connecting piece 43 can be provided with a rotation limiting portion, and the rotation limiting portion and the rotation feedback points 434 are clamped and cooperated in the same way as described above, and details are not described here.
[0058] In some embodiments, the second side wall 102 of the body 10 is provided with a containing portion 1021 for containing the support ring 20. As shown, the containing portion 1021 is an annular groove, and when the support ring 20 is in the containing state, the support ring 20 is contained in the containing portion 1021, so as to avoid the support ring 20 protruding from the second side wall 102 of the body 10, facilitating the magnetic connection of the body 10 and the stabilizing device. Figures 2-5
[0059] In one example, the second end portion 22 of the support ring 20 is provided with a clearance portion 221. The clearance portion 221 has a gap with the containing portion 1021, facilitating the user to pull and unfold the support ring 20 from the position of the clearance portion 221, and also playing a role of indicating the operation direction.
[0060] In one example, the accommodating portion 1021 is further provided with a positioning groove 1022, and a detection portion 1023 is arranged in the positioning groove 1022. The positioning groove 1022 is used for clamping positioning with the stabilizing device, and when the second side wall 102 is magnetically connected with the stabilizing device, a detection piece (not shown in the figure) of the stabilizing device cooperates with the detection portion 1023 to detect the installation position of the magnetic support. The detection piece can be a switch, a sensor or the like. When the second side wall 102 is magnetically connected with the stabilizing device, the detection piece detects the detection portion 1023 in the positioning groove 1022, and through tactile feedback, control circuit feedback or the like, it is indicated whether the magnetic support and the stabilizing device are installed in place.
[0061] In some embodiments, the body 10 includes a base 13, a cover plate 14 and a magnet assembly 15. As shown, the cover plate 14 is arranged on the first side wall 101, and the cover plate 14 is fixedly connected with the base 13, and there is an accommodating space between the base 13 and the cover plate 14, and the magnet assembly 15 is arranged in the accommodating space between the base 13 and the cover plate 14, for realizing magnetic connection. Figure 7
[0062] In some embodiments, the magnet assembly 15 includes a first magnet assembly and a second magnet assembly. The first magnet assembly is used for magnetically connecting the shooting device with the magnetic support, and the second magnet assembly is used for magnetically connecting the magnetic support with the stabilizing device.
[0063] In some embodiments, the body 10 includes a first part 11 and a second part 12 connected with each other. As shown, the first rotating assembly 30 and the second rotating assembly 40 are located in the second part 12, that is, the first end portion 21 of the support ring 20 is located in the second part 12, and the accommodating portion 1021 is located in the first part 11, that is, when the support ring 20 is in the storage state, the second end portion 22 of the support ring 20 is located in the first part 11. Figures 1-7
[0064] In some embodiments, the first magnet assembly includes a first magnet 151 and a second magnet 152. As shown, the first magnet 151 is located in the first part 11, and the second magnet 152 is located in the second part 12. Exemplarily, the first magnet 151 is a ring-shaped magnet, and the second magnet 152 is a square magnet. The first magnet assembly can be magnetically connected with a wireless charging magnet (not shown in the figure) of the shooting device. The wireless charging magnet usually includes a ring-shaped main body and a tail arranged at one end of the main body. The first magnet 151 is arranged corresponding to the main body of the wireless charging magnet, and the second magnet 152 is arranged corresponding to the tail of the wireless charging magnet. Figures 1-7
[0065] In some embodiments, the second magnet assembly includes a third magnet 153. As shown, Figures 1-7 As shown, the third magnet 153 is arranged on the first part 11, and the first magnet 151 is arranged around the third magnet 153, and the third magnet 153 is arranged to be magnetically connected with the stabilizing device, so that the magnetic support is connected to the stabilizing device.
[0066] In some embodiments, the accommodating space of the base 13 is provided with a mounting groove for mounting the magnet assembly 15, and the shape of the mounting groove is adapted to the shape of the magnet assembly 15. As shown, Figure 7 As shown, the base 13 is provided with a first mounting groove 131 for mounting the first magnet 151, a second mounting groove 132 for mounting the second magnet 152, and a third mounting groove 133 for mounting the third magnet 153.
[0067] Of course, it can be understood that the number and shape of each magnet in the magnet assembly 15 can be adjusted by those skilled in the art according to actual needs, and each magnet can be mounted on the base 13 by bonding, fastener connection, etc., and the present application does not make too many limitations.
[0068] In some embodiments, different materials and / or different processes are used to process each part of the magnetic support, and each part of the magnetic support can be assembled by bonding, clamping, fastener connection, etc., and the present application does not make too many limitations.
[0069] Among them, the base 13, the support ring 20, the shaft 31, the rotating frame 32, the rotating seat 42, the first connecting piece 43 and the second connecting piece 44 can adopt metal or alloy materials to ensure sufficient rigidity and strength and ensure reliable support. Exemplarily, the base 13, the support ring 20 and the rotating seat 42 can adopt AL6061 aluminum alloy material, and the surface can be treated by sandblasting and anode treatment to improve wear resistance, corrosion resistance, heat resistance, hardness and other mechanical properties. The surface of the base 13 can also be printed with patterns through the engraving process to improve the appearance. The shaft 31 can adopt 1144 medium carbon free-cutting steel, which has the advantages of high purity, excellent material quality and stable processing, and can also form a protective film on the surface through the natural color purification treatment to improve wear resistance and corrosion resistance. The rotating frame 32, the first connecting piece 43 and the second connecting piece 44 can adopt ASE1085 carbon steel, and the wear resistance, corrosion resistance, hardness and other mechanical properties can be improved through natural color purification and heat treatment.
[0070] The first magnet assembly can adopt N52 magnet and SPCC cold-rolled carbon steel, and through nickel plating and zinc plating treatment, a nickel plating layer and a zinc plating layer with stable chemical properties are formed on the surface. The second magnet assembly can adopt N52 magnet, and the corrosion resistance can be improved by nickel plating treatment.
[0071] The cover plate 14 can be made of silica gel, and patterns or designs can be printed on the cover plate 14 by silk screen printing, so as to improve the aesthetic appearance of the cover plate 14.
[0072] Of course, it can be understood that the specific materials and processing methods used in each part of the magnetic bracket are not limited to the methods listed in the embodiments of the present application, and those skilled in the art can select according to actual needs.
[0073] According to an exemplary embodiment, still referring to Figures 1-7 The present application provides a gimbal (not shown in the figure) for mounting and supporting a shooting device (not shown in the figure) to ensure shooting stability and improve the clarity of the shooting image. The gimbal includes a magnetic bracket as described in the above embodiments, wherein the magnetic bracket includes a body 10 and a support ring 20, the support ring 20 is rotatably connected to the second side wall 102 and can move relative to the body 10 to switch the support ring 20 between the storage state and the unfolded state. The support ring 20 has a storage state and an unfolded state, when the support ring 20 is in the storage state, the magnetic bracket can magnetically connect the shooting device to the gimbal; when the support ring 20 is in the unfolded state, the magnetic bracket can be used to support the shooting device on the support plane.
[0074] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope and spirit of the application being indicated by the following claims.
[0075] It should be understood that the application is not limited to the precise construction that has been described above and shown in the accompanying drawings, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The scope of the application is limited only by the appended claims.
Claims
1. A magnetic bracket, characterized in that: The magnetic bracket includes: The main body has a first side wall and a second side wall opposite to each other, wherein the first side wall is magnetically connected to the shooting device; a support ring, the support ring being rotatably connected to the second side wall and being capable of moving relative to the body so as to switch the support ring between a stowed state and an expanded state; Wherein, when the support ring is in the retracted state, the second side wall can be magnetically connected to the gimbal; when the support ring is in the unfolded state, the second side wall and the support ring can form a bracket to support the shooting device on the support plane; The magnetic bracket includes a first rotating component and a second rotating component, and the support ring can be rotated in different directions by the first rotating component and / or the second rotating component; The second rotating component includes a rotating mounting groove and a rotating seat arranged on the main body. The rotating seat can be rotatably connected to the rotating mounting groove through a first connecting piece and a second connecting piece. The first connecting piece is provided with a plurality of rotating feedback points evenly arranged along its circumference, and the second connecting piece is provided with a rotating limit portion that cooperates with the rotating feedback point.
2. The magnetic bracket according to claim 1, characterized in that: The first rotating assembly is connected to the body and the support ring respectively, and the support ring is rotatably connected to the body through the first rotating assembly.
3. The magnetic bracket according to claim 2, characterized in that: The first rotating assembly includes: a rotating shaft rotatably connected to the second side wall of the body, the rotating shaft rotating around its axial direction, the axial direction of the rotating shaft being parallel to the surface of the second side wall; The rotating frame includes a first connecting portion and a second connecting portion connected to each other, wherein the first connecting portion is connected to the rotating shaft, and the second connecting portion is fixedly connected to the supporting ring.
4. The magnetic bracket according to claim 3, characterized in that: The rotating frame is rotatably connected to the main body through the second rotating assembly.
5. The magnetic bracket according to claim 4, characterized in that: The rotating mounting groove passes through the body; The rotating seat rotates around its axial direction, the axial direction of the rotating seat is perpendicular to the surface of the second side wall, and both ends of the rotating shaft are rotatably connected to the rotating seat; The first connecting piece is arranged on a side of the rotating installation slot away from the first rotating assembly, and the first connecting piece is fixedly connected to the rotating installation slot; The second connecting piece is arranged on a side of the first connecting piece away from the first rotating assembly, and a portion of the rotating seat passes through the first connecting piece and is fixedly connected to the second connecting piece.
6. The magnetic bracket according to claim 1, characterized in that: The second side wall of the body is provided with a receiving portion; The support ring is in a stored state, and is accommodated in the accommodation portion. The support ring is provided with an escape portion, and a gap is provided between the escape portion and the accommodation portion.
7. The magnetic bracket according to claim 6, characterized in that: The accommodating portion is provided with a positioning groove, and a detection portion is provided in the positioning groove. When the second side wall is magnetically connected to the gimbal, the detection member of the gimbal cooperates with the detection portion to detect the installation position of the magnetic bracket.
8. The magnetic bracket according to claim 1, characterized in that: The body comprises: base; a cover plate, fixedly connected to the base, and disposed on the first side wall; The magnet assembly is arranged in the accommodation space between the base and the cover.
9. The magnetic bracket according to claim 8, characterized in that: The magnet assembly includes a first magnet assembly and a second magnet assembly. The first magnet assembly is used to magnetically connect the shooting device to the magnetic bracket, and the second magnet assembly is used to magnetically connect the magnetic bracket to the gimbal.
10. A pan / tilt head, characterized in that: The gimbal comprises the magnetic bracket according to any one of claims 1 to 9.