Magnetic support and photographic handle

By designing a damped rotation extension foot assembly and a magnetic iron plate structure on the magnetic bracket, reliable support and handheld shooting at different angles are achieved, solving the problem that the magnetic bracket cannot be supported on a table, enhancing the user experience and simplifying the shooting operation.

CN224135528UActive Publication Date: 2026-04-17GUANGDONG SIRUI OPTICAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG SIRUI OPTICAL CO LTD
Filing Date
2025-05-29
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The magnetic mount on existing camera handles cannot be placed directly on a table to support shooting equipment, resulting in a poor user experience.

Method used

A magnetic support bracket was designed, comprising a magnetic base and an extension foot assembly. The extension foot assembly is connected to the side of the magnetic base facing away from the holding plane by a damped rotation. It has multiple usage states, including support, storage and grip functions. The stability is improved by the magnetic attraction between the magnet and the iron sheet, and multi-angle support is achieved by the extension foot.

Benefits of technology

It achieves reliable support for the magnetic holder at different angles and allows for handheld shooting, enriching the usage scenarios and solving the problem that the magnetic holder cannot be supported on a table. It also provides a wireless remote control to simplify shooting operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The magnetic attraction support comprises a magnetic attraction base and an expansion foot assembly, the magnetic attraction base is provided with an attraction plane capable of attracting shooting equipment, and one end of the expansion foot assembly is rotationally connected to the side, opposite to the attraction plane, of the magnetic attraction base in a damping mode; the expansion foot assembly comprises an expansion foot and an extension foot, one end of the expansion foot is rotationally connected to the side, back to the attraction plane, of the magnetic attraction base in a damping mode, and the extension foot is movably connected to the expansion foot in the length extension direction of the expansion foot in a damping mode. The expansion foot assembly is rotationally connected to the magnetic attraction base in a damping mode. When the magnetic attraction base attracts a mobile phone and other shooting equipment, the expanding foot assembly can support the magnetic attraction base and the shooting equipment on the magnetic attraction base after being rotated and unfolded, and due to the fact that the expanding foot assembly can hover at any rotating position, the angle of the magnetic attraction base supported by the expanding foot assembly and the angle of the shooting equipment supported by the expanding foot assembly can be adjusted.
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Description

Technical Field

[0001] This application relates to the field of photographic equipment technology, specifically to a magnetic bracket and a camera handle. Background Technology

[0002] To facilitate mobile phone shooting for photography enthusiasts in specific scenarios, manufacturers have developed various innovative camera grips. Most of these grips incorporate a battery powered by the phone; they are also known as battery grips or vertical shooting grips.

[0003] The camera grip mainly consists of a grip body and a magnetic bracket. The magnetic bracket is attached to one side of the grip body. The grip body is for holding in the hand, while the magnetic bracket is for holding shooting devices such as mobile phones. After the shooting device is mounted on the magnetic bracket, you can hold the grip body to take pictures.

[0004] The existing magnetic mounts for camera handles lack a support structure on the back, preventing the magnetic mounts from being placed directly on a table to support shooting equipment, thus affecting the user experience. Utility Model Content

[0005] Therefore, the technical problem to be solved by this application is to overcome the shortcomings of existing magnetic camera handles, such as the inability to place the magnetic bracket on the table to support the shooting equipment and the poor user experience, thereby providing a magnetic bracket and camera handle.

[0006] To solve the above-mentioned technical problems, the technical solution of this application is as follows:

[0007] A magnetic holder includes a magnetic base and an extension foot assembly. The magnetic base has a holding surface capable of holding a shooting device, and one end of the extension foot assembly is rotatably connected to the side of the magnetic base opposite to the holding surface.

[0008] Furthermore, the extension foot assembly includes an extension foot and an extension foot. One end of the extension foot is rotatably connected to the side of the magnetic base facing away from the holding plane with damping. The extension foot is movably connected to the extension foot with damping along the length extension direction of the extension foot.

[0009] Furthermore, the extension foot assembly has at least a first use state and a second use state during rotation relative to the magnetic base; when the extension foot assembly is in the first use state, the extension foot assembly is attached to the side surface of the magnetic base facing away from the holding plane; when the extension foot assembly is in the second use state, the extension foot assembly is set at an acute angle to the holding plane of the magnetic base to support the magnetic base.

[0010] Furthermore, the magnetic base has a storage groove on the side facing away from the holding plane. When the extension foot assembly is in the first use state, the extension foot assembly is stored in the storage groove.

[0011] Furthermore, the extension foot assembly also has a third use state during the rotation relative to the magnetic base; when the extension foot assembly is in the third use state, the extension foot assembly extends outward from the circumferential outer side of the magnetic base and forms a gripping part that can be held by hand.

[0012] Furthermore, when the extension foot assembly is in the third usage state, the length extension direction of the extension foot assembly is coplanar or parallel to the holding plane of the magnetic base.

[0013] Furthermore, one end of the extension foot rotates relative to the magnetic base via a damping hinge and hovers at any position during rotation.

[0014] Furthermore, the extension foot is fixed with an iron sheet, and the magnetic base is provided with a magnet. When the extension foot assembly is attached to the side of the magnetic base facing away from the holding plane, the magnetic attraction force of the magnet on the iron sheet causes the extension foot assembly to be held on the magnetic base.

[0015] Furthermore, the interior of the extension foot is provided with a first mounting cavity having a first opening at one end, the first opening being located at the end of the extension foot facing away from the magnetic base; one end of the extension foot can extend out of the first opening of the first mounting cavity, and the extension foot is slidably connected to the first mounting cavity with damping along the length extension direction of the extension foot.

[0016] Furthermore, a fixing plate is fixed in the first mounting cavity of the extension foot, and a second mounting cavity with a second opening at one end is provided inside the extension foot. The second opening is located at the end of the extension foot near the magnetic base. The fixing plate extends into the second mounting cavity, and the extension foot is slidably connected to the fixing plate along the length extension direction of the extension foot with damping.

[0017] Furthermore, a protrusion is provided between the surface of the fixing plate and the inner wall surface of the extension foot to generate frictional damping when the two slide against each other.

[0018] Furthermore, the fixing piece is provided with a limiting groove inside, the guiding direction of the limiting groove is the same as the length extension direction of the extension foot, and the extension foot is fixedly connected to a sliding block, which is slidably connected to the limiting groove.

[0019] A camera handle includes a magnetic bracket as described above, and a handle body detachably connected to the magnetic bracket; the handle body is gripped by hand, and the magnetic bracket is located on one side of the circumferential outer surface of the handle body.

[0020] Furthermore, the handle body is also equipped with a wireless remote control, which can wirelessly communicate with the shooting device installed on the magnetic base, and the wireless remote control is equipped with at least a shutter button that can control the shooting device to perform shooting functions.

[0021] The technical solution of this application has the following advantages:

[0022] 1. The magnetic bracket provided in this application has an extension foot assembly connected to the side of the magnetic base facing away from the holding plane, and the extension foot assembly is connected to the magnetic base with damping rotation. When a shooting device such as a mobile phone is held on the holding plane of the magnetic base, the extension foot assembly can provide support for the magnetic base and the shooting device after it is rotated and unfolded. Since the extension foot assembly can be suspended at any position of rotation, the angle of the magnetic base and the shooting device supported by the extension foot assembly can be adjusted.

[0023] 2. In order to achieve a miniaturized design, the magnetic base of the magnetic holder provided in this application cannot be designed to be too large, and the length of the extension leg cannot be designed to be too long. The extension leg is damped and movably connected to the extension leg along the length direction of the extension leg. When the magnetic base and the shooting device are adjusted to the required angle position, if the length of the extension leg is insufficient to support the table, the extension leg can be appropriately extended to support the table. The extension leg and the extension leg work together to achieve reliable support for the magnetic base at different angles. In addition, when shooting by hand holding the extension leg component of the magnetic holder, the extension leg itself is relatively short and inconvenient to hold. At this time, the extension leg extends outward to facilitate hand holding the extension leg component for shooting, thus expanding the application scenarios of the magnetic holder.

[0024] 3. The magnetic bracket provided in this application, when the extension foot assembly is in the first use state, the extension foot assembly is attached to the side surface of the magnetic base facing away from the holding plane, so that the extension foot assembly is not too obtrusive; when the extension foot assembly is in the second use state, the extension foot assembly is set at an acute angle with the holding plane of the magnetic base, and the extension foot assembly provides support for the magnetic base, so that the magnetic bracket can be placed on the table for use.

[0025] 4. The magnetic bracket provided in this application allows the extension foot assembly to be stored in the storage slot of the magnetic base, making the extension foot assembly less obtrusive and less likely to be accidentally touched.

[0026] 5. The magnetic bracket provided in this application has an extension foot assembly that can be rotated to a position where it extends outward from the circumferential outer surface of the magnetic base. At this time, the length extension direction of the extension foot assembly is coplanar or parallel to the holding plane of the magnetic base. The extension foot assembly forms a gripping part that can be held by hand, allowing for shooting by holding the extension foot assembly. The extension foot assembly can not only serve as a support component but also as a handheld component, enriching the usage scenarios of the extension foot assembly and achieving multiple uses in one item.

[0027] 6. The magnetic bracket provided in this application has a simple structure and is easy to implement, with one end of the extension foot being rotatably connected to the magnetic base via a damping hinge. It can be suspended at any position during rotation.

[0028] 7. The magnetic bracket provided in this application has an iron sheet inside the extension foot assembly and a magnet inside the magnetic base. When the extension foot assembly is attached to the magnetic base, the magnetic attraction force of the magnet on the iron sheet can hold the extension foot assembly on the magnetic base. On the one hand, the extension foot assembly as a whole cannot easily rotate outward and unfold. On the other hand, when the extension foot is attached to the magnetic base, if the iron sheet is set inside the extension foot, the extension foot cannot easily move relative to the extension foot. This can improve the stability of the extension foot assembly when it is attached to the magnetic base.

[0029] 8. The magnetic bracket provided in this application has an extension foot slidably connected to the first mounting cavity of the extension foot, and a fixing piece inside the extension foot slidably connected to the second mounting cavity inside the extension foot. This dual sliding structure design can improve the stability and sliding damping of the extension foot during the sliding process.

[0030] 9. The magnetic bracket provided in this application has a protrusion between the fixing plate and the extension foot. The protrusion can increase the frictional damping when the two slide against each other, thereby improving the damping effect.

[0031] 10. The magnetic bracket provided in this application has a limiting groove inside the fixing plate, and the sliding block of the extension foot is slidably connected to the limiting groove. A triple sliding structure design can be formed between the extension foot and the extension foot to further improve the stability and sliding damping of the extension foot during the sliding process.

[0032] 11. The camera handle provided in this application has a magnetic bracket that is detachably connected to one side of the outer circumferential surface of the handle body. The magnetic bracket of the camera handle can be used alone or installed on one side of the handle body for handheld use, thus enriching the usage scenarios of the camera handle. Moreover, when the extension foot assembly is rotated to a position that forms an acute angle with the holding plane of the magnetic base, the extension foot assembly provides support for the whole formed by the magnetic base and the handle body, allowing the camera handle to be placed on a table for use. This overcomes the technical difficulty of existing camera handles with handle bodies and magnetic brackets being difficult to place on a table for use. Furthermore, the extension foot and the extension leg can work together to achieve reliable support for the camera handle at different angles.

[0033] 12. The camera handle provided in this application has a wireless remote control on the handle body that can wirelessly communicate with the shooting device fixed on the magnetic base, and the wireless remote control is equipped with a shutter button that can control the shooting device to perform shooting functions; therefore, when holding the camera handle, the shooting device can be directly controlled to perform shooting actions by pressing the shutter button on the wireless remote control, making the operation simpler. Attached Figure Description

[0034] To more clearly illustrate the technical solutions in the specific embodiments of this application or the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0035] Figure 1 This is a front view of the magnetic bracket in an embodiment of this application;

[0036] Figure 2 This is a schematic diagram of the expansion foot assembly in the first usage state of the magnetic bracket in an embodiment of this application;

[0037] Figure 3 This is a schematic diagram of the overall structure of the magnetic bracket in an embodiment of this application, wherein the extension foot assembly is in the second use state after being rotated and unfolded;

[0038] Figure 4 This is a cross-sectional view of the first side of the magnetic bracket in an embodiment of this application;

[0039] Figure 5 This is a cross-sectional view of the second side of the magnetic bracket in an embodiment of this application;

[0040] Figure 6 This is an exploded view of the magnetic support in the embodiments of this application;

[0041] Figure 7 This is a schematic diagram of the magnetic bracket installed on one side of the handle body in an embodiment of this application;

[0042] Figure 8 This is a schematic diagram of the magnetic bracket installed on one side of the handle body and the magnetic base holding the mobile phone case in an embodiment of this application;

[0043] Figure 9 This is a schematic diagram of the extension foot assembly of the magnetic bracket in this embodiment rotating to the second usage state;

[0044] Figure 10 This is a schematic diagram of the extension foot assembly of the magnetic bracket in this embodiment rotating to the third usage state.

[0045] Explanation of reference numerals in the attached drawings: 1. Magnetic base; 11. Holding surface; 12. Storage slot; 13. Magnet; 2. Extension foot assembly; 21. Extension foot; 21a. First mounting cavity; 211. Extension foot base; 212. Extension foot cover; 22. Extension foot; 22a. Second mounting cavity; 221. Extension foot base; 222. Extension foot cover; 223. Sliding block; 23. Fixing piece; 231. Protrusion; 232. Limiting groove; 24. Screw; 25. Iron piece; 3. Hinge base; 4. Damping hinge; 5. Handle body; 51. Connecting base; 52. Wireless remote control; 521. Shutter button; 522. Dial; 523. Switch button; 524. Charging interface; 53. Cover plate; 54. Cold shoe interface; 6. External lens; 7. Phone case; 71. Lens cover. Detailed Implementation

[0046] The technical solutions of this application will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0047] In the description of this application, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0048] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0049] like Figure 1 - Figure 3The magnetic holder shown includes a magnetic base 1 and an extension foot assembly 2. The magnetic base 1 has two opposing sides, one of which is a holding surface 11 capable of holding a shooting device. The extension foot assembly 2 is connected to the other side of the magnetic base 1. One end of the extension foot assembly 2 is rotatably connected to the side of the magnetic base 1 facing away from the holding surface 11 with damping, and the extension foot assembly 2 can be suspended at any position during rotation. The magnetic holder also includes a hinge seat 4 connected to one side of the magnetic base 1.

[0050] This magnetic holder features an extension leg assembly 2 that is rotatably connected to the side of the magnetic base 1 facing away from the holding plane 11. When a mobile phone or other shooting device is held on the holding plane 11 of the magnetic base 1, the extension leg assembly 2 can rotate and unfold to provide support for the magnetic base 1 and the shooting device on it, allowing the magnetic holder to be placed on a table for use. Furthermore, since the extension leg assembly 2 can be suspended at any position during rotation, the angle between the extension leg assembly 2 and the holding plane 11 can be adjusted, thereby adjusting the tilt angle of the magnetic base 1 and the supported shooting device relative to the table, improving the flexibility of the magnetic holder's use.

[0051] like Figure 1 - Figure 3 As shown, in some embodiments, the magnetic base 1 is generally disc-shaped, with a holding plane 11 located on one end face of the magnetic base 1, and the holding plane 11 is a circular surface. The diameter of the magnetic base 1 is smaller than the width of the shooting device such as a mobile phone or tablet, and the thickness of the magnetic base 1 in the axial direction is smaller than the diameter of the magnetic base 1. The extension foot assembly 2 is generally cylindrical, and its length in the non-extended state is no greater than the diameter of the magnetic base 1. The thickness direction of the extension foot assembly 2 is perpendicular to the holding plane 11 of the magnetic base 1, and the length and width directions of the extension foot assembly 2 are perpendicular to each other and both perpendicular to the thickness direction of the extension foot assembly 2. The length of the extension foot assembly 2 is greater than its width, which is greater than its thickness. It should be noted that the magnetic base 1 is not limited to a disc shape, but can be any other shape, and the extension foot assembly 2 is not limited to a cylindrical shape.

[0052] In some implementations, such as Figure 2 - Figure 4As shown, the extension leg assembly 2 includes an extension leg 21 and an extension leg 22. One end of the extension leg 21 is rotatably connected to the side of the magnetic base 1 facing away from the holding plane 11 with damping. The extension leg 22 is movably connected to the extension leg 21 with damping along its length. When the magnetic base 1 and the shooting device are adjusted to the required angle position, if the length of the extension leg 21 is insufficient to support the table, the extension leg 22 can be appropriately extended to support the table. The extension leg 21 and the extension leg 22 work together to reliably support the magnetic base 1 at different angles. In addition, the extension leg assembly 2 of the magnetic bracket can also be used for handheld shooting. Since the extension leg 21 itself is relatively short, it is not convenient to hold it. In this case, the extension leg 22 extends outward, making the overall length of the extension leg assembly 2 longer, which facilitates handheld shooting and expands the application scenarios of the magnetic bracket.

[0053] In some implementations, such as Figure 2 - Figure 4 As shown, the magnetic base 1 has a storage groove 12 on the side facing away from the holding plane 11, and the extension foot assembly 2 can be stored in the storage groove 12. The extension foot assembly 2 has a first use state, a second use state, and a third use state during the rotation relative to the magnetic base 1.

[0054] When the extension foot assembly 2 is in the first use state, the extension foot 21 is stored in the storage groove 12 and fits against the bottom of the storage groove 12. The extension foot assembly 2 does not protrude from the surface of the magnetic base 1 and is not easily touched. At the same time, the extension foot 22 is not stretched and most of the extension foot 22 is located inside the extension foot 21.

[0055] When the extension foot assembly 2 is in the second use state, the extension foot assembly 2 is set at an acute angle to the holding plane 11 of the magnetic base 1. At this time, the extension foot assembly 2 provides support for the magnetic base 1. If the length of the extension foot 21 is not enough to support the table, the extension foot 22 can be appropriately extended so that the extension foot 22 supports the table. By adjusting the rotation angle of the extension foot 21 and the extension length of the extension foot 22, reliable support of the magnetic base 1 at different angles can be achieved.

[0056] When the extension foot assembly 2 is in the third usage state, it extends outward from the circumferential outer surface of the magnetic base 1. The extension direction of the extension foot assembly 2 is the same as the radial direction of the magnetic base 1, that is, the extension direction of the extension foot assembly 2 is coplanar or parallel to the holding plane 11 of the magnetic base 1. At the same time, the extension foot 22 extends outward, increasing the overall length of the extension foot assembly 2. At this time, the extension foot assembly 2 forms a grip that can be held by hand, allowing for shooting while holding the extension foot assembly 2, thus enriching the usage scenarios of the extension foot assembly 2 and realizing multiple uses for one item.

[0057] In some implementations, such as Figure 4 As shown, one end of the extension foot 21 rotates relative to the magnetic base 1 via a pair of damping hinges 4 and hovers at any position of rotation. One end of the damping hinge 4 is fixed to the magnetic base 1, and the flat part of the other end of the damping hinge 4 is fixed in the flat part mounting holes on both sides of the extension foot 21. In an alternative embodiment, only one damping hinge 4 may be provided.

[0058] In some implementations, such as Figure 4 - Figure 6 As shown, the magnetic base 1 contains a magnet 13, and the extension foot 21 contains a metal plate 25. When the extension foot assembly 2 is in the first use state of being attached to the magnetic base 1, the magnetic attraction force of the magnet 13 on the metal plate 25 causes the extension foot assembly 2 to be held on the magnetic base 1. While the magnetic attraction force of the magnet on the metal plate 25 allows the extension foot assembly 2 to be held on the magnetic base 1, the extension foot assembly 2 is not easily able to rotate outwards under a small external force. A larger external force is required for the extension foot assembly 2 to overcome the magnetic attraction force and rotational damping to rotate outwards and expand, thus improving the stability of the extension foot assembly 2 when attached to the magnetic base 1. In an alternative embodiment, the iron plate 25 can also be disposed within the extension foot 22. When the extension foot assembly 2 is in the first use state of being attached to the magnetic base 1, the magnetic attraction force of the magnet 13 on the iron plate 25 prevents the extension foot 22 from easily extending or retracting relative to the extension foot 21, further improving the stability of the extension foot assembly 2 in the state of being attached to the magnetic base 1. In other alternative embodiments, the positions of the magnet and the iron plate 25 can be interchanged.

[0059] In some implementations, such as Figure 4 - Figure 6 As shown, the extension foot 21 includes an extension foot base 211 and an extension foot cover plate 212. The extension foot base 211 has two open cavities on its sides. The extension foot cover plate 212 covers one open side of the extension foot base 211. An iron sheet 25 is fixed to the extension foot cover plate 212. The extension foot cover plate 212 is a plastic cover. The extension foot base 211 and the extension foot cover plate 212 are assembled to form the extension foot 21. The extension foot 21 has a first mounting cavity 21a inside. One end of the first mounting cavity 21a has a first opening, and the first opening is located at the end of the extension foot 21 that faces away from the magnetic base 1.

[0060] The extension foot 22 is slidably connected to the first mounting cavity 21a along the length of the extension foot 21 with damping, and one end of the extension foot 22 can extend out of the first opening of the first mounting cavity 21a. The extension foot 22 includes an extension foot base 221 and an extension foot cover plate 222. The extension foot cover plate 222 covers one side of the extension foot base 221. The interior of the extension foot base 221 has a second mounting cavity 22a with a second opening at one end, located at the end of the extension foot 22 near the magnetic base 1. A fixing piece 23 is provided in the first mounting cavity 21a of the extension foot 21, and the fixing piece 23 is fixed to the extension foot base 221 by screws 24. One end of the fixing piece 23 extends into the second mounting cavity 22a of the extension foot 22 through the second opening, and the extension foot 22 is slidably connected to the fixing piece 23 along the length of the extension foot 21 with damping. The extended foot 21 and extended foot 22 of this structural design can realize a dual sliding structure design, which improves the stability and sliding damping of the extended foot 22 during the sliding process; moreover, the overall structure is simple, easy to assemble, and has low production cost.

[0061] In some implementations, such as Figure 6 As shown, the surface of the fixing plate 23 is provided with a pair of protrusions 231 that contact the inner wall surface of the extension foot 22. The pair of protrusions 231 are used to increase the frictional damping when the extension foot 22 and the fixing plate 23 slide against each other, and further improve the damping effect when the extension foot 22 extends and retracts.

[0062] In some implementations, such as Figure 4 - Figure 6 As shown, the fixed piece 23 has a limiting groove 232 inside, and the guiding direction of the limiting groove 232 is the same as the length extension direction of the extension foot 21; a sliding block 223 is fixedly connected to one end of the extension foot base 221, and the sliding block 223 is slidably connected to the limiting groove 232. This arrangement forms a triple sliding structure between the extension foot 21 and the extension foot 22, further improving the stability and sliding damping of the extension foot 22 during the sliding process.

[0063] like Figure 7 - Figure 10 As shown, this application embodiment also provides a camera handle, which includes a magnetic bracket and a handle body 5 as described above. Wherein, Figure 7 and Figure 8 This is a schematic diagram showing the magnetic bracket installed on one side of the handle body 5 and the extension foot assembly 2 in its first usage state. Figure 8 The magnetic holder 1 in the middle holds the phone case. Figure 9 This is a schematic diagram of the magnetic bracket installed on one side of the handle body 5 and the extension foot assembly 2 in the second use state. At this time, the end of the extension foot assembly 2 away from the magnetic base 1 is supported on the table. The extension foot assembly 2 provides support for the magnetic base 1 and the handle body 5 so that the magnetic base 1 and the shooting equipment on it can maintain the required angle. Figure 9 An external lens 6 is detachably connected to the lens cover 71 of the mobile phone case 7. Figure 10 This is a schematic diagram of the magnetic bracket installed on one side of the handle body 5 and the extension foot assembly 2 in the third use state. At this time, the extension foot assembly 2 and the magnetic base 1 are set on the same plane, and the extension foot 22 extends out of the extension foot 21. When using, you can hold the handle body 5 with your right hand and the extension foot assembly 2 with your left hand to improve the stability when shooting; or you can hold the extension foot assembly 2 with one hand to shoot.

[0064] like Figure 7 and Figure 8 As shown, the circumferential outer surface of the handle body 5 forms a shape suitable for hand gripping. A connecting seat 51 is integrally connected to one side of the handle body 5, with a portion of the connecting seat 51 protruding from the outer circumferential surface of the handle body 5. The hinge seat 4 of the magnetic bracket is detachably connected to the connecting seat 51, and the hinge seat 4 and the connecting seat 51 are coplanar. The other end of the hinge seat 4 is connected to the magnetic seat 1 via a damping pivot. The magnetic seat 1 is damped and rotatably connected to the hinge seat 4 around the axis of the damping pivot, which is the same as the axis of the handle body 5. The hinge seat 4 occupies a certain distance between the magnetic seat 1 and the handle body 5, allowing the magnetic seat 1 to be designed to be relatively small without causing the distance between the magnetic seat 1 and the handle body 5 to be too close, thus preventing interference between the shooting device held on the magnetic seat 1 and the handle body 5. In some alternative embodiments, the hinge seat 4 can be omitted, and the magnetic seat 1 can be directly hinged to the connecting seat 51 on one side of the handle body 5 via the damping pivot.

[0065] This type of camera grip has a magnetic bracket on one side that is detachably connected to a connecting seat 51 on the outer circumferential surface of the grip body 5 via a hinge seat 4. The magnetic bracket can be used alone or mounted on one side of the grip body 5 in combination with it, thus enriching the usage scenarios of the camera grip. When the magnetic bracket and grip body 5 are used together, if the extension foot assembly 2 is rotated to a position forming an acute angle with the holding plane 11 of the magnetic seat 1 (… Figure 9 The position of the extension foot assembly 2) can provide support for the whole formed by the magnetic base 1 and the handle body 5, so that the camera handle can be placed on the table for use, solving the technical problem that the existing camera handle with handle body 5 is difficult to place on the table for use. Moreover, the extension foot 21 and the extension foot 22 can work together to achieve reliable support for the camera handle at different angles.

[0066] In some implementations, such as Figure 7As shown, the handle body 5 is equipped with a wireless remote control 52. The wireless remote control 52 can wirelessly communicate with the shooting device mounted on the magnetic base 1, and the wireless remote control 52 has at least a shutter button 521 that can control the shooting device to perform shooting functions. Since the wireless remote control 52 on the handle body 5 can wirelessly communicate with the shooting device fixed on the magnetic base 1, and the wireless remote control 52 has a shutter button 521 that can control the shooting device to perform shooting functions, when holding the camera handle, the shooting device can be directly controlled to perform shooting actions by pressing the shutter button 521 on the wireless remote control 52, making operation simpler.

[0067] In some embodiments, the wireless remote controller 52 includes a housing, a circuit board and a battery disposed within the housing, and the circuit board has at least a wireless communication module, a power module, and a battery. The power module and battery supply power to the wireless communication module, which enables wireless communication between the wireless remote controller 52 and the shooting device. Specifically, the wireless communication module can be a Bluetooth module or a Wi-Fi module. Figure 7 and Figure 9 As shown, the outer casing is equipped with a shutter button 521, a dial 522, and a power button 523. The power button 523 is used to control the wireless remote controller 52's communication function to be turned on and off. The shutter button 521 is used to control the shooting device to perform shooting actions via the wireless communication module. The dial 522 is used to control the shooting device to adjust shooting parameters, such as the aperture value, via the wireless communication module. The wireless remote controller 52 also has a charging port 524, which is specifically a USB charging port. The charging port 524 can be connected to a charger to power the battery inside the wireless remote controller 52. The wireless remote controller 52 can be a module detachably connected to the handle body 5, or it can share the same outer casing as the handle body 5.

[0068] In some implementations, such as Figure 7 As shown, the top of the handle body 5 is also equipped with a cold shoe mount 54, on which external lighting equipment (such as fill lights) or audio equipment (such as microphones) can be connected. This configuration allows the handle body 5 to provide mounting support for more shooting accessories, realizing the multi-purpose functionality of the handle body 5.

[0069] In some embodiments, the handle body 5 has a storage compartment for storing an external lens 6. The storage compartment has an opening for the external lens 6 to enter or exit. The opening of the storage compartment is located at the bottom of the handle body 5, and a cover plate 53 is connected to the opening of the storage compartment. The cover plate 53 can open and close the opening of the storage compartment. By providing a storage compartment for storing the external lens 6 inside the handle body 5, the external lens 6 can be stored in the storage compartment inside the handle body 5 when not in use. There is no need to set up a separate lens box for storing the external lens 6. The handle body 5 can serve as both a grip component for the auxiliary shooting device and a storage component for the external lens 6, realizing the multi-purpose function of the handle body 5. This helps to save the overall space occupied by the product, improve the portability of the product, and enhance the user experience.

[0070] In some embodiments, the cover plate 53 is detachably connected to the handle body 5, and the external lens 6 is detachably connected to the cover plate 53. The detachment and connection methods of the cover plate 53 and the handle body 5 include, but are not limited to, snap-fit ​​connection, threaded connection, and magnetic connection; the connection methods of the external lens 6 and the cover plate 53 include, but are not limited to, snap-fit ​​connection and magnetic connection. When storing the external lens 6, the external lens 6 is first installed on the cover plate 53, and then assembled onto the handle body 5 together with the cover plate 53. When removing the external lens 6, the external lens 6 is removed along with the cover plate 53 when the cover plate 53 is first removed from the bottom of the handle body 5. The external lens 6 can then be detached from the cover plate 53, and the detached external lens 6 can be installed on the phone case 7 fixed to the magnetic base 1. The phone case 7 is used to mount the phone. The phone case 7 includes a lens cover 71 for mounting the phone's native camera lens. An external lens 6 is detachably connected to the lens cover 71 via a snap-fit ​​or magnetic attachment, and the external lens 6, after being mounted on the lens cover 71, can be aligned with a lens aperture on the lens cover 71. The external lens 6 can be an ultra-wide-angle lens, telephoto lens, macro lens, anamorphic lens, etc. When the external lens 6 is attached to the phone case 7, it can work in conjunction with the phone's native camera lens for shooting. The external lens 6 can overcome the optical performance limitations of the phone's native camera lens, meeting users' needs for more professional shooting effects.

[0071] In summary, this application provides a magnetic holder and a camera handle. An extension leg 21 is rotatably connected to the side of the magnetic base 1 facing away from the holding plane 11 with damping. An extension leg 22, which is damped and movably connected to the extension leg 21 along its own length, is disposed within the extension leg 21. When the main body 5 of the camera handle is held for shooting, the extension leg assembly 2 can be stored in the storage slot 12 of the magnetic base 1. When the entire camera handle needs to be placed on a table for use, the extension leg 21 rotates outward and unfolds. When the magnetic base 1 and the shooting device are adjusted to the desired angle position, if the length of the extension leg 21 is insufficient to support the table, the extension leg 22 can be appropriately extended so that the extension leg 22 supports the table. The cooperation of the extension leg 21 and the extension leg 22 can achieve reliable support for the camera handle at different angles. When shooting with the main body 5 of the handheld handle, the extension foot 21 can be rotated to a position coplanar with the magnetic base 1, and the extension foot 22 extends outward to increase the overall length of the extension foot assembly 2. The extension foot assembly 2 forms a grip that can be held by hand. At this time, the right hand can hold the main body 5 of the handheld handle and the left hand can hold the extension foot assembly 2 for shooting. This kind of handheld camera handle can improve the stability during shooting, and the position of the hands will not obstruct the display screen or touch screen of the shooting device.

[0072] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this application.

Claims

1. A magnetic support, characterized by, It includes a magnetic base (1) and an extension foot assembly (2). The magnetic base (1) has a holding surface (11) capable of holding a shooting device. One end of the extension foot assembly (2) is rotatably connected to the side of the magnetic base (1) facing away from the holding surface (11).

2. The magnetic suction support of claim 1, wherein, The extension foot assembly (2) includes an extension foot (21) and an extension foot (22). One end of the extension foot (21) is rotatably connected to the side of the magnetic base (1) facing away from the holding plane (11) with damping. The extension foot (22) is movably connected to the extension foot (21) with damping along the length extension direction of the extension foot (21).

3. The magnetic support of claim 1 or 2, wherein, The extension foot assembly (2) has at least a first use state and a second use state during rotation relative to the magnetic base (1); when the extension foot assembly (2) is in the first use state, the extension foot assembly (2) is attached to the side surface of the magnetic base (1) facing away from the holding plane (11); when the extension foot assembly (2) is in the second use state, the extension foot assembly (2) is set at an acute angle to the holding plane (11) of the magnetic base (1) to support the magnetic base (1).

4. The magnetic support of claim 3, wherein, The magnetic base (1) has a storage groove (12) on the side facing away from the holding plane (11). When the extension foot assembly (2) is in the first use state, the extension foot assembly (2) is stored in the storage groove (12).

5. The magnetic support of claim 3, wherein, The extension foot assembly (2) also has a third use state during the rotation relative to the magnetic base (1); when the extension foot assembly (2) is in the third use state, the extension foot assembly (2) extends outward from the circumferential outer side of the magnetic base (1) and forms a gripping part that can be held by hand.

6. The magnetic suction stand according to claim 5, characterized in that, When the extension foot assembly (2) is in the third use state, the length extension direction of the extension foot assembly (2) is coplanar or parallel to the holding plane (11) of the magnetic base (1).

7. The magnetic suction support of claim 2, wherein, One end of the extension foot (21) rotates relative to the magnetic base (1) via a damping hinge (4) and can be suspended at any position of rotation. 8.The magnetic suction support according to claim 2, characterized in that, The extension foot assembly (2) is fixed with an iron sheet (25), and the magnetic base (1) is provided with a magnet (13). When the extension foot assembly (2) is attached to the side of the magnetic base (1) facing away from the holding plane (11), the magnetic attraction force of the magnet (13) on the iron sheet (25) causes the extension foot assembly (2) to be held on the magnetic base (1).

9. The magnetic suction stand according to claim 2, characterized in that, The interior of the extension foot (21) is provided with a first mounting cavity (21a) having a first opening at one end, the first opening being located at the end of the extension foot (21) facing away from the magnetic base (1); the extension foot (22) is slidably connected to the first mounting cavity (21a) with damping along the length extension direction of the extension foot (21), and one end of the extension foot (22) can extend out of the first opening of the first mounting cavity (21a).

10. The magnetic suction stand according to claim 9, characterized in that, A fixing plate (23) is fixed in the first mounting cavity (21a) of the extension foot (21). The interior of the extension foot (22) is provided with a second mounting cavity (22a) with a second opening at one end. The second opening is located at one end of the extension foot (22) near the magnetic base (1). The fixing plate (23) extends into the second mounting cavity (22a). The extension foot (22) is slidably connected to the fixing plate (23) along the length extension direction of the extension foot (21).

11. The magnetic suction stand of claim 10, wherein, A protrusion (231) is provided between the surface of the fixing plate (23) and the inner wall surface of the extension foot (22) for generating frictional damping when the two slide against each other.

12. The magnetic suction stand of claim 10, wherein, The fixed piece (23) is provided with a limiting groove (232) inside. The guiding direction of the limiting groove (232) is the same as the length extension direction of the extension foot (21). The extension foot (22) is fixedly connected to a sliding block (223), and the sliding block (223) is slidably connected to the limiting groove (232).

13. A photographic handle characterized by It includes a magnetic bracket as described in any one of claims 1-12 above, and a handle body (5) detachably connected to the magnetic bracket; the handle body (5) is available for hand gripping, and the magnetic bracket is located on one side of the circumferential outer surface of the handle body (5).

14. The photographic handle of claim 13, wherein, The handle body (5) is also provided with a wireless remote controller (52), which can wirelessly communicate with the shooting device installed on the magnetic base (1), and the wireless remote controller (52) is provided with at least a shutter button (521) that can control the shooting device to perform shooting functions.