Magnetic holder and photo handle
Patent Information
- Application Number
- DE202025104042
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-05-29
- Filing Date
- 2025-07-14
- Publication Date
- 2025-09-11
- Estimated Expiration
- 2035-07-31
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
Technical area
[0001] The present application relates to the technical field of photographic equipment and in particular to a magnetic holder and a photographic handle. Background technology
[0002] To make it easier for photography enthusiasts to use their mobile phones for taking photos in certain scenarios, manufacturers have developed various camera grips. Most camera grips have a built-in battery to power the phone. This type of camera grip is also known as a battery-powered grip or a vertical shooting grip.
[0003] A camera grip essentially comprises a grip body and a magnetic mount. The magnetic mount is attached to one side of the grip body, the grip body can be held in the hand, and the magnetic mount is designed to attract a mobile phone or other photographic device. After the mobile phone or other photographic device is attached to the magnetic mount, the grip body can be held in the hand for taking photographs.
[0004] The back of the magnetic mount of the existing photo handle has no support structure, and the magnetic mount cannot be placed directly on the tabletop to support the photo device, which affects the user experience. Contents of the invention
[0005] Therefore, the technical problem to be solved by the present application is to solve the deficiencies that the magnetic holder of the existing photographic handgrip cannot be placed on the tabletop to support the photographic device, which affects the user experience, and to provide a magnetic holder and a photographic handgrip.
[0006] In order to solve the above-mentioned technical problems, the technical solutions of the present application are as follows: A magnetic mount comprising a magnetic seat and an extension foot assembly, wherein the magnetic seat has a suction surface capable of receiving the photographic device, and one end of the extension foot assembly is damped and rotatably connected to the side of the magnetic seat facing away from the suction surface
[0007] Furthermore, the extension foot assembly comprises an extension foot and an extension foot, wherein one end of the extension foot is damped rotatably connected to the side of the magnetic seat facing away from the suction surface and the extension foot is damped movably connected to the extension foot along the longitudinal extension direction of the extension foot.
[0008] Furthermore, the extension foot assembly has at least a first use state and a second use state during rotation relative to the magnetic seat; when the extension foot assembly is in the first use state, the extension foot assembly rests against the side surface of the magnetic seat facing away from the suction surface; when the extension foot assembly is in the second use state, the extension foot assembly and the suction surface of the magnetic seat are arranged at an acute angle to support the magnetic seat.
[0009] In addition, a storage groove is provided on the side of the magnetic seat facing away from the suction surface, wherein, when the extension foot assembly is in the first use state, the extension foot assembly is stored in the storage groove.
[0010] In addition, the extension foot assembly also has a third use state during rotation relative to the magnetic seat; when the extension foot assembly is in the third use state, the extension foot assembly protrudes outward from the peripheral surface of the magnetic seat and forms a grip portion that can be held by hand.
[0011] In addition, the longitudinal direction of the extension foot assembly is coplanar or parallel to the suction surface of the magnetic seat when the extension foot assembly is in the third use state.
[0012] In addition, one end of the extension foot is rotatable relative to the magnetic seat via a damping hinge and is able to float in any position within the rotation range.
[0013] In addition, an iron sheet is attached to the extension foot assembly and the magnetic seat is provided with a magnet, whereby when the extension foot assembly rests on the side of the magnetic seat facing away from the suction surface, the magnetic attraction force of the magnet on the iron sheet ensures that the extension foot assembly is attracted to the magnetic seat.
[0014] Furthermore, the extension foot has a first installation cavity with a first opening at one end, the first opening is located at the end of the extension foot facing away from the magnet seat; one end of the extension foot is capable of protruding from the first opening of the first installation cavity, and the extension foot is damped and slidably connected to the first installation cavity along the longitudinal extension direction of the extension foot.
[0015] Furthermore, a fixing plate is fixed in the first mounting cavity of the extension foot, and a second mounting cavity having a second opening at one end is provided inside the extension foot, the second opening being located at one end of the extension foot near the magnet seat; the fixing plate protrudes into the second mounting cavity, and the extension foot is damped and slidably connected to the fixing plate along the longitudinal extension direction of the extension foot.
[0016] In addition, a convex section is provided between the surface of the mounting plate and the inner wall of the extension foot to dampen friction when the two parts slide against each other.
[0017] Furthermore, a limiting groove is provided in the fastening plate, wherein the guide direction of the limiting groove coincides with the longitudinal extension direction of the extension foot, and the extension foot is fixedly connected to a sliding block, wherein the sliding block is slidably connected to the limiting groove.
[0018] A photographic handle comprising a magnetic holder as described above and a handle body detachably connected to the magnetic holder; the handle body can be held by the hand, and the magnetic holder is located on one side of the circumferential outer surface of the handle body.
[0019] In addition, the handle body is also provided with a wireless remote control, wherein the wireless remote control is capable of being wirelessly communicatively connected to the photographic device installed on the magnetic seat, and the wireless remote control is provided with at least one shutter button capable of controlling the execution of the recording function of the photographic device.
[0020] The technical solution of the present application has the following advantages: 1. According to the invention, an extension foot assembly is connected to the side of the magnetic seat facing away from the suction surface, and the extension foot assembly is connected to the magnetic seat in a damped, rotatable manner. When a mobile phone or other photographic device is held on the suction surface of the magnetic seat, the extension foot assembly rotates and extends to provide support for the magnetic seat and the photographic device mounted thereon. Since the extension foot assembly can float in any position within the rotation range, the angle of the magnetic seat and the photographic device mounted thereon can be adjusted. 2. According to the invention, the magnetic seat must not be too large, and the associated extension leg must not be too long, in order to realize the miniature design of the magnetic mount of the present application. The extension leg is connected to the extension leg in a damped manner along the longitudinal direction of the extension leg. When the magnetic seat and the photographic device are adjusted to the desired angular position and the length of the extension leg is insufficient to support it on the tabletop, the extension leg can be extended accordingly, so that the extension leg rests on the tabletop. The interaction of the extension leg and the extension leg ensures reliable support of the magnetic seat at various angles. Furthermore, when the extension leg assembly of the magnetic mount is used in handheld photography, it is not comfortable to hold due to the short length of the extension leg itself.At this time, the extension foot will be extended, which makes it easier to use the portable extension foot assembly when taking pictures and expands the range of use of the magnetic mount. 3. According to the invention, when the extension foot assembly is in the first use state, the extension foot assembly rests against the side surface of the magnetic holder facing away from the suction surface and is not too intrusive; when the extension foot assembly is in the second use state, the extension foot assembly and the suction surface of the magnetic seat are arranged at an acute angle, and the extension foot assembly supports the magnetic seat, so that the magnetic holder can be placed on the tabletop for use. 4. According to the invention, the extension foot assembly can be stored in the storage groove of the magnetic seat, so that the extension foot assembly is not too intrusive and is not easy to be accidentally touched. 5. According to the invention, the extension foot assembly can be rotated to protrude outward from the peripheral surface of the magnetic seat. The longitudinal extension direction of the extension foot assembly is coplanar or parallel to the suction surface of the magnetic seat, and the extension foot assembly forms a grip portion designed to allow the extension foot assembly to be held by hand for photographing. The extension foot assembly can be used not only as a support component but also as a handheld component, thereby expanding the application range of the extension foot assembly and increasing its versatility. 6. According to the invention, one end of the extension foot is connected to the magnetic seat via a damping hinge, and its structure is simple and easy to implement and it can float in any position within the rotation range. 7. According to the invention, an iron sheet is arranged in the extension foot assembly, and a magnet is arranged in the magnetic seat. When the extension foot assembly abuts the magnetic seat, the magnetic attraction of the magnet on the iron sheet ensures that the extension foot assembly is attracted to the magnetic seat, thereby preventing the extension foot assembly from easily rotating and unfolding. When the extension foot abuts the magnetic seat and the iron sheet is arranged in the extension foot, the extension foot cannot easily move relative to the extension foot, which improves the stability of the extension foot assembly when abutting the magnetic seat. 8. According to the invention, an extension foot is slidably connected to the first installation cavity of the extension foot, and a fixing plate in the extension foot is slidably connected to the second installation cavity inside the extension foot, wherein this double sliding structure can improve the stability and sliding damping of the extension foot during the sliding process. 9. According to the invention, a convex portion is provided between the surface of the fastening plate and the inner wall of the extension foot, wherein the convex portion increases the frictional damping when the two parts slide against each other and thus improves the damping effect. 10. According to the invention, a limiting groove is provided in the mounting plate, and the sliding block of the extension leg is slidably connected to the limiting groove. A triple sliding structure can be formed between the extension leg and the extension leg, further improving the stability and sliding damping of the extension leg during the sliding process. 11. According to the invention, a magnetic holder is detachably connected to one side of the peripheral outer surface of the handle body. The magnetic holder of the photographic handle can be used individually or attached to one side of the handle body. The handle body can be held for use, which expands the range of use of the photographic handle; when the extension leg is rotated at an acute angle to the suction surface of the magnetic holder, it supports the entirety formed by the magnetic holder and the handle body, so that the photographic handle can be placed on the tabletop for use. This overcomes the technical difficulty encountered in the conventional photographic handle with the handle body and magnetic holder for tabletop use. The interaction of the extension leg and the extension leg can enable reliable support of the photographic handle at various angles. 12. According to the invention, a wireless remote control on the handle body is capable of wirelessly communicating with the photographic device installed on the magnetic seat, and the wireless remote control is provided with at least one shutter button capable of controlling the execution of the shooting function of the photographic device; when holding the photographic handle, you can directly control the photographic device by pressing the shutter button on the wireless remote control and execute the shooting action, which simplifies operation. Figures
[0021] In order to more clearly illustrate the technical solutions in the specific embodiments or prior art of the present application, the accompanying drawings are briefly presented below. These drawings must be used in describing the specific embodiments or prior art. It is obvious that the accompanying drawings in the following description represent some of the embodiments of the present application, and that other drawings can be obtained based on the accompanying drawings for general technical personnel in the field, provided they do not perform creative work. Fig. 1 is a front view of the magnet holder in one embodiment of the present application; Fig. 2 is a schematic representation of the extension foot assembly of the magnetic holder in one embodiment of the present application in the first use state; Fig. 3 is a schematic diagram of the overall structure of the magnetic holder in an embodiment of the present application, with the extension foot assembly in the second use state after rotation and extension; Fig. 4 is a cross-sectional view of the first surface of the magnet holder in one embodiment of the present application; Fig. 5 is a cross-sectional view of the second surface of the magnet holder in one embodiment of the present application; Fig. 6 is an exploded view of the magnet holder in one embodiment of the present application; Fig. 7 is a schematic diagram of the magnet holder mounted on one side of the handle body in one embodiment of the present application; Fig. 8 is a schematic diagram of the magnetic holder attached to one side of the handle body and its magnetic seat with a mobile phone case worn thereon in one embodiment of the present application; Fig. 9 is a schematic diagram of the extension foot assembly of the magnet holder in the embodiment of the present application, rotated to the second use state. Fig. 10 is a schematic representation of the extension foot assembly of the magnetic holder in one embodiment of the present application, rotated to the third use state.
[0022] Reference numerals in the figures: 1. Magnet seat; 11. Suction surface; 12. Storage groove; 13. Magnet; 2. Extension foot assembly; 21. Extension foot; 21a. First installation cavity; 211. Extension foot base; 212. Extension foot cover plate; 22. Extension foot; 22a. Second installation cavity; 221. Extension foot base; 222. Extension foot cover plate; 223. Slide block; 23. Fixing plate; 231. Convex portion; 232. Restriction groove; 24. Screw; 25. Iron sheet; 3. Hinge seat; 4. Damping hinge; 5. Handle body; 51. Connecting seat; 52. Wireless remote control; 521. Release button; 522. Adjustment dial; 523. Power switch; 524. Charging port; 53. Cover plate; 54. Cold shoe interface; 6. External lens; 7. Phone case; 71. Lens cover. Specific embodiments
[0023] In the following, the technical solution of the present application will be described clearly and completely in conjunction with the accompanying drawings. Obviously, the description of the embodiments represents only a part of the embodiments of the present application and not all of the embodiments. Based on the embodiments in the present application, all other embodiments achieved by general technical personnel in the field without any creative work fall within the scope of the present application.
[0024] When describing the embodiment of the present application, it is necessary to point out that an azimuth or positional relationship referring to terms such as "central," "top," "bottom," "left," "right," "vertical," "horizontal," "inside," "outside," and the like, has the azimuth or positional relationship based on the drawing. They are intended to facilitate and simplify the description of the present application, rather than indicating or implying that the said device or component must have a particular orientation, be constructed, and operate in a particular orientation. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be understood to indicate or imply a relative meaning.
[0025] It should be noted that in the description of the present application, the terms "installing," "connecting," and "connecting" are to be understood in a broad sense unless expressly stated or limited otherwise. For example, it may be a fixed connection, a detachable connection, or a one-piece connection; it may be a mechanical connection or an electrical connection; it may be a direct connection, an indirect connection via an intermediate medium, or a connection within the two elements. For general technical personnel in the field, the specific meaning of the above terms in the present application may be understood depending on the specific circumstances.
[0026] A magnetic holder includes, as in Fig. 1 to 3, a magnetic seat 1 and an extension foot assembly 2. The magnetic seat 1 has two opposite sides, one side of which has a suction surface 11 capable of receiving the photographic device, and the extension foot assembly 2 is connected to the other side. One end of the extension foot 2 is damped and rotatably connected to the side of the magnetic seat 1 facing away from the suction surface 11, and the extension foot 2 can float in any position within the rotation range. The magnetic mount also includes a hinge seat 3 connected to one side of the magnetic seat 1.
[0027] Since the extension foot assembly 2 of this magnetic mount is connected to the side of the magnetic seat 1 opposite the suction surface 11 in a damped, pivotable manner, when a mobile phone or other photographic device is attracted to the suction surface 11 of the magnetic seat 1, the extension foot assembly 2 rotates and extends to support the magnetic seat 1 and the photographic device mounted thereon, allowing the magnetic mount to be placed on the tabletop for use. Furthermore, since the extension foot assembly 2 can float in any position within the rotation range, the angle between the extension foot assembly 2 and the suction surface 11 can be adjusted, and then the inclination angle of the magnetic seat 1 and the photographic device supported by it can be adjusted relative to the tabletop, thereby improving the flexibility of using the magnetic mount.
[0028] As in the Fig. 1 to 3, in some embodiments, the magnetic seat 1 is disc-shaped as a whole. The suction surface 11 is located on an end surface of the magnetic seat 1, and the suction surface 11 is circular. The diameter of the magnetic seat 1 is smaller than the width of a photographic device such as a cell phone or tablet, and the thickness of the magnetic seat 1 in the axial direction is smaller than the diameter of the magnetic seat 1. The extension foot assembly 2 has the shape of a long column as a whole, and the length of the extension foot assembly 2 in the non-extended state is not greater than the diameter of the magnetic seat 1. The thickness direction of the extension foot assembly 2 is perpendicular to the suction surface 11 of the magnetic seat 1, the length and width directions of the extension foot assembly 2 are perpendicular to each other and perpendicular to the thickness direction of the extension foot assembly 2, and the length of the extension foot assembly 2 is greater than its width and thickness.It should be noted that the magnet seat 1 is not limited to a disc shape but can have any other shape, and that the extension foot assembly 2 is not limited to the shape of a long column.
[0029] In some embodiments, as shown in the Fig. 2 to 4, the extension foot assembly 2 comprises an extension foot 21 and an extension foot 22, one end of the extension foot 21 being connected to the side of the magnetic seat 1 facing away from the suction surface 11 in a damped manner, and the extension foot 22 being connected to the extension foot 21 in a damped manner for movement along the longitudinal direction of the extension foot 21. When the magnetic seat 1 and the photographic device are set at the desired angular position and the length of the extension foot 21 is insufficient for support on the tabletop, the extension foot 22 can be extended accordingly so that the extension foot 22 rests on the tabletop, and the interaction of the extension foot 21 and the extension foot 22 enables reliable support of the magnetic seat 1 at various angles. In addition, the extension foot assembly 2 of the magnetic holder can also be held in the hand for photography.Since the extension foot 21 itself is short and cumbersome, the extension foot 22 protrudes outward, increasing the overall length of the extension foot assembly 2, making it easier to hold the extension foot assembly 2 for photography and thus expanding the range of use of the magnetic mount.
[0030] In some embodiments, as shown in the Fig. 2 to 4, a storage groove 12 is provided on the side of the magnetic seat 1 facing away from the suction surface 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 process relative to the magnetic seat 1.
[0031] When the extension foot assembly 2 is in the initial use state, the extension foot 21 is stored in the storage groove 12, and the extension foot 21 rests against the groove bottom of the storage groove 12. The extension foot assembly 2 as a whole does not protrude beyond the surface of the magnet seat 1, and the extension foot assembly 2 is not easily touched accidentally; at the same time, the extension foot 22 is not extended, and most of the extension foot 22 is located within the extension foot 21.
[0032] When the extension foot assembly 2 is in the second use state, the extension foot assembly 2 and the suction surface 11 of the magnetic seat 1 are arranged at an acute angle, and the extension foot assembly 2 supports the magnetic seat 1 at this time; when the length of the extension foot 21 is insufficient to support the tabletop, the extension foot 22 can be extended accordingly, so that the extension foot 22 rests on the tabletop, and by adjusting the rotation angle of the extension foot 21 and the extension length of the extension foot 22, reliable support of the magnetic seat 1 at various angles is ensured.
[0033] When the extension foot assembly 2 is in the third use state, the extension foot assembly 2 protrudes outward from the peripheral surface of the magnetic seat 1, and the longitudinal extension direction of the extension foot assembly 2 corresponds to the radial direction of the magnetic seat 1, that is, the longitudinal extension direction of the extension foot assembly 2 is coplanar or parallel to the suction surface 11 of the magnetic seat 1. At the same time, the extension foot 22 extends outward to increase the overall length of the extension foot assembly 2, and the extension foot assembly 2 forms a grip portion configured to hold the extension foot assembly 2 by hand for photographing, thereby expanding the range of use of the extension foot assembly 2 and making it versatile.
[0034] In some embodiments, as in Fig. As shown in Figure 4, one end of the extension foot 21 rotates relative to the magnetic seat 1 via a pair of damping hinges 4 and floats in any position within the rotation range. One end of the damping hinge 4 is fixed to the magnetic seat 1, while the flat body of the other end of the damping hinge 4 is fixed in the flat body mounting holes on both sides of the extension foot 21. In an alternative embodiment, only one damping hinge 4 may be provided.
[0035] In some embodiments, as in Fig. 4 to 6, a magnet 13 is disposed in the magnetic seat 1, and an iron sheet 25 is fixed in the extension foot 21. When the extension foot assembly 2 is fixed to the magnetic seat 1 in the initial use state, the magnetic attraction force of the magnet 13 on the iron sheet 25 causes the extension foot assembly 2 to be attracted to the magnetic seat 1. The magnetic attraction force of the magnet on the iron sheet 25 can attract the extension foot assembly 2 to the magnetic seat 1. The extension foot assembly 2 is not easily rotated and extended under a small external force. A large external force must be applied to the extension foot assembly 2 for it to overcome the magnetic attraction force and rotation damping and rotate outward, thereby improving the stability of the extension foot assembly 2 when fixed to the magnetic seat 1.In alternative embodiments, the iron sheet 25 can also be used in the extension foot 22. When the extension foot assembly 2 is attached to the magnetic seat 1 in the first use state, the magnetic attraction of the magnet 13 on the iron sheet 25 prevents simple telescopic movement of the extension foot 22 relative to the extension foot 21, thereby further improving the stability of the extension foot assembly 2 when attached to the magnetic seat 1. In other alternative embodiments, the positions of the magnet and the iron sheet 25 can be interchangeably adjusted.
[0036] In some embodiments, as in Fig. As shown in Figures 4 to 6, the extension foot 21 comprises an extension foot base 211 and an extension foot cover plate 212. The extension foot base 211 is provided with two concave, laterally open cavities, the extension foot cover plate 212 is arranged on an open side of the extension foot base 211, the iron sheet 25 is fastened to the extension foot cover plate 212, and the extension foot cover plate 212 is a cover plate made of plastic. The extension foot base 211 and the extension foot cover plate 212 are assembled to form the extension foot 21, and a first mounting cavity 21a is arranged within the extension foot 21. 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 facing away from the magnet seat 1.
[0037] The extension foot 22 is damped and slidably connected to the first installation cavity 21a along the longitudinal extension direction of the extension foot 21. One end of the extension foot 22 is capable of protruding from the first opening of the first installation cavity 21a. The extension foot 22 comprises an extension foot base 221 and an extension foot cover plate 222. The extension foot cover plate 222 is arranged to cover one side of the extension foot base 221. The extension foot base 221 has a second installation cavity 22a with a second opening at one end, and the second opening is located at the end of the extension foot 22 near the magnet seat 1. A fastening plate 23 is provided in the first installation cavity 21a of the extension foot 21, and the fastening plate 23 is fastened to the extension foot base 221 with a screw 24.One end of the mounting plate 23 protrudes from the second opening into the second installation cavity 22a of the extension leg 22. The extension leg 22 is connected to the mounting plate 23 in a damped, slidable manner along the longitudinal direction of the extension leg 21. This structural arrangement with the extension leg 21 and the extension leg 22 enables a dual sliding structure, which improves the stability and sliding damping of the extension leg 22 during the sliding process. Furthermore, the overall structure is simple, easy to assemble, and has low production costs.
[0038] In some embodiments, as in Fig. 6, a pair of convex portions 231 are provided on the surface of the fixing plate 23 to contact the inner wall surface of the extension leg 22, and these convex portions 231 are designed to increase the friction damping when the extension leg 22 and the fixing plate 23 slide against each other and to further improve the damping effect when the extension leg 22 extends and retracts.
[0039] In some embodiments, as in Fig. As shown in Figures 4 to 6, a limiting groove 232 is provided in the mounting plate 23, and the guiding direction of the limiting groove 232 corresponds to the longitudinal extension direction of the extension leg 21; a sliding block 223 is fixedly connected to one end of the extension leg base 221, and the sliding block 223 is slidably connected to the limiting groove 232. With such an arrangement, a triple sliding structure is formed between the extension leg 21 and the extension leg 22, thereby further improving the stability and sliding damping of the extension leg 22 during the sliding operation.
[0040] As in Fig. 7 to 10, the embodiment of the present application also includes a photographic handle, and the photographic handle includes the magnetic holder and the handle body 5 as described above. Fig. 7 and Fig. 8 are schematic representations when the magnet holder is attached to one side of the handle body 5 and the extension foot assembly 2 is in the first use state, and the magnet seat 1 in Fig. 8 puts on the phone case.
[0041] Fig. Figure 9 is a schematic diagram when the magnetic holder is attached to one side of the handle body 5 and the extension foot assembly 2 is in the second use state. At this time, the end of the extension foot assembly 2 facing away from the magnetic seat 1 rests on the tabletop, and the extension foot assembly 2 supports the magnetic seat 1 and the handle body 5, so that the magnetic seat 1 and the photographic device mounted thereon maintain the desired angle. The lens cover 71 of the mobile phone case 7 in Fig. 9 is detachably connected to the external lens 6. Fig. 10 is a schematic diagram when the magnetic holder is attached to one side of the handle body 5 and the extension foot assembly 2 is in the third use state, wherein the extension foot assembly 2 and the magnetic holder 1 are arranged coplanarly, and the extension foot 22 protrudes from the extension foot 21. For better stability during photography, the handle body 5 can be held with the right hand and the extension foot assembly 2 with the left hand; alternatively, the extension foot assembly 2 can also be held with one hand for photography.
[0042] As in Fig. 7 and Fig. 8, the circumferential outer surface of the handle body 5 has a shape corresponding to the hand holding state. A connection seat 51 is integrally connected to one side of the handle body 5, with a part of the connection seat 51 protruding from the outer surface of the handle body 5. The hinge seat 3 of the magnet holder is detachably connected to the connection seat 51, with the hinge seat 3 and the connection seat 51 being arranged coplanarly. The other end of the hinge seat 3 is connected to the magnet seat 1 via a damper rotary shaft, and the magnet seat 1 is damply rotatably connected to the hinge seat 3 about the axial direction of the damper rotary shaft, the axial direction of the damper rotary shaft coinciding with the axial direction of the handle body 5.The hinge seat 3 occupies a certain distance between the magnetic seat 1 and the handle body 5, so that the magnetic seat 1 itself can be designed to be relatively small, and the distance between the magnetic seat 1 and the handle body 5 is not too small, which prevents interference between the photographic device attracted to the magnetic seat 1 and the handle body 5. In some alternative embodiments, the hinge seat 3 can also be omitted, and the magnetic seat 1 is then directly connected to the connecting seat 51 on one side of the handle body 5 via the damping rotary shaft.
[0043] In this photographic handgrip, one side of the magnetic holder is detachably connected to the connecting seat 51 on the outer peripheral surface of the handgrip body 5 via the hinge seat 3. The magnetic holder can be attached individually or to one side of the handgrip body 5 and used in combination with the handgrip body 5, which expands the application range of the photographic handgrip. When the magnetic holder and the handgrip body 5 are used in combination, the extension foot assembly 2 can be rotated at an acute angle to the suction surface 11 of the magnetic seat 1 (position of the extension foot assembly 2 in Fig. 9) support the unit formed by the magnetic seat 1 and the handle body 5, allowing the camera handle to be placed on the tabletop for use, thus solving the technical problem that existing camera handles with the handle body 5 are difficult to place on the tabletop for use. The interaction of the extension foot 21 and the extension foot 22 enables reliable support of the camera handle at various angles.
[0044] In some embodiments, as in Fig. 7, the handle body 5 is further provided with a wireless remote control 52. The wireless remote control 52 is capable of wirelessly communicating with the photographic device mounted on the magnetic seat 1, and the wireless remote control 52 is provided with at least one shutter button 521 capable of controlling the execution of the shooting function of the photographic device. The wireless remote control 52 on the handle body 5 is capable of wirelessly communicating with the photographic device mounted on the magnetic seat 1, and the wireless remote control 52 is provided with at least one shutter button 521 capable of controlling the execution of the shooting function of the photographic device. While holding the photographic handle, the photographic device can be directly controlled and the shooting action can be performed by pressing the shutter button 521 on the wireless remote control 52, which simplifies operation.
[0045] In some embodiments, the wireless remote control 52 comprises an outer housing body and a circuit board and a battery provided in the body of the housing body, and the circuit board is provided with at least a wireless communication module, a power supply module, and a battery. The power supply module and the battery are configured to supply power to the wireless communication module, and the wireless communication module is configured to implement a wireless communication connection between the wireless remote control 52 and the photographic device. In particular, the wireless communication module may be a Bluetooth module or a WiFi module. As shown in the Fig. 7 and Fig. As shown in Figure 9, the housing body is provided with a shutter button 521, a dial 522, and a power switch 523. The power switch 523 is configured to turn the communication function of the wireless remote control 52 on and off. The shutter button 521 is configured to control the photographic device via the wireless communication module, and the dial 522 is configured to control the photographic device to adjust shooting parameters, such as the aperture, via the wireless communication module. The wireless remote control 52 is also provided with a charging port 524. In particular, the charging port 524 is a USB charging port. The charging port 524 can be connected to a charger to supply power to the battery in the wireless remote control 52.The wireless remote control 52 may be a module detachably connected to the handle body 5, and the wireless remote control 52 may also share the same housing with the handle body 5.
[0046] In some embodiments, as in Fig. 7, a cold shoe interface 54 is also provided on the top of the handle body 5, and an external lighting device (e.g., a fill light) or an audio device (e.g., a microphone) can be connected to the cold shoe interface 54. With such an arrangement, the handle body 5 can provide a mounting bracket for more shooting accessories, making the handle body 5 versatile.
[0047] In some embodiments, a storage magazine for storing an external lens 6 is provided inside the handle body 5. The storage magazine has an opening through which the external lens 6 can be inserted into or removed from the storage magazine. The opening of the storage magazine is located at the bottom of the handle body 5, and the opening of the storage magazine is detachably connected to a cover plate 53. The cover plate 53 is capable of opening and closing the opening of the storage magazine.By providing a storage magazine for storing the external lens 6 in the handle body 5, the external lens 6 can be stored in the storage magazine inside the handle body 5 when not in use, without having to provide a separate lens box for storing the external lens 6, and the handle body 5 can be used as a holding component of the auxiliary shooting device and also as a storage component for the external lens 6, thereby making the handle body 5 versatile, saving the overall space of the product, improving the portability of the product, and enhancing the user experience.
[0048] 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 detachable connection method of the cover plate 53 and the handle body 5 includes, but is not limited to, a snap connection, a threaded connection, and a magnetic connection; the detachable connection method of the external lens 6 and the cover plate 53 includes, but is not limited to, a snap connection and a magnetic connection. To store the external lens 6, the external lens 6 is first attached to the cover plate 53 and then mounted together with the cover plate 53 to the handle body 5. To remove the external lens 6, the cover plate 53 is first removed from the bottom of the handle body 5, and the external lens 6 is removed together with the cover plate 53.The external lens 6 can then be removed from the cover plate 53 and attached to the mobile phone case 7 secured to the magnetic seat 1 for use. The mobile phone case 7 is designed to house a mobile phone, and the mobile phone case 7 includes a lens cover 71 for housing the naive mobile phone lens. The external lens 6 is detachably connected to the lens cover 71 by a snap connection or a magnetic connection, and after the external lens 6 is installed in the lens cover 71, it can be aligned with a lens opening on the lens cover 71. The external lens 6 can be, for example, an ultra-wide-angle lens, a telephoto lens, a macro lens, or an anamorphic lens.When the external lens 6 is connected to the mobile phone case 7, the external lens 6 can cooperate with the naive mobile phone lens to take pictures, and the external lens 6 can overcome the optical performance limitations of the naive mobile phone lens to meet the user's demands for more professional shooting effects.
[0049] In summary, the embodiments of the present application provide a magnetic holder and a photographic handgrip, wherein an extension foot 21 is connected to the side of the magnetic seat 1 facing away from the suction surface 11 in a damped manner, and an extension foot 22 is arranged within the extension foot 21, which is connected to the extension foot 21 in a damped manner and movable along its own longitudinal direction. When the handgrip body 5 is held for photography, the extension foot assembly 2 can be stored in the storage groove 12 of the magnetic seat 1. If the photographic handgrip is to be placed completely on the desk, the extension foot 21 can be rotated outward and folded out.If the magnetic holder 1 and the support device are adjusted to the desired angle and the length of the extension leg 21 is insufficient to support the desk, the extension leg 22 can be extended accordingly so that it rests on the desk. The two extension legs 21 and 22 together ensure reliable support of the camera handle at various angles. When holding the handle body 5 for photography, the extension leg 21 can also be rotated into a coplanar position with the magnetic seat 1, and the extension leg 22 can be simultaneously extended outward to extend the overall length of the extension leg assembly 2.The extension foot assembly 2 forms a grip portion that can be held by hand, and at this time, the handle body 5 can be held with the right hand and the extension foot assembly 2 with the left hand, whereby this photographic handle that can be held with both hands improves the stability during shooting and does not block the display screen or the touch screen of the photographic device due to the holding position with both hands.
[0050] Obviously, the above embodiments are merely examples for clarity of description and do not represent limitations of the embodiments. Other various forms of changes or modifications can be made by ordinary technical personnel based on the above description. An exhaustive list of all embodiments is neither necessary nor possible here. The obvious changes or modifications derived therefrom remain within the scope of the present application.
Claims
[1] A magnetic holder, characterized by in that it comprises a magnetic seat (1) and an extension foot assembly (2), wherein the magnetic seat (1) has a suction surface (11) for receiving a photographic device, one end of the extension foot assembly (2) is damped and rotatably connected to the side of the magnetic seat (1) facing away from the suction surface (11). [2] Magnetic holder according to claim 1, characterized by in that the extension foot assembly (2) comprises an extension foot (21) and an extension foot (22), wherein one end of the extension foot (21) is connected in a damped manner to the side of the magnetic seat (1) facing away from the suction surface (11), and the extension foot (22) is connected in a damped manner to the extension foot (21) in a movable manner along the longitudinal direction of the extension foot (21). [3] Magnetic holder according to claim 1 or 2, characterized byin that the extension foot assembly (2) has at least a first use state and a second use state during rotation relative to the magnetic seat (1); wherein, when the extension foot assembly (2) is in the first use state, the extension foot assembly (2) bears against the side surface of the magnetic seat (1) facing away from the suction surface (11); wherein, when the extension foot assembly (2) is in the second use state, the extension foot assembly (2) and the suction surface (11) of the magnetic seat (1) are arranged at an acute angle in order to support the magnetic seat (1). [4] Magnetic holder according to claim 3, characterized by that a storage groove (12) is provided on the side of the magnetic seat (1) facing away from the suction surface (11), wherein, 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] Magnetic holder according to claim 3, characterized by that the extension foot assembly (2) also has a third use state during rotation relative to the magnetic seat (1); wherein, when the extension foot assembly (2) is in the third use state, the extension foot assembly (2) projects outwardly from the peripheral surface of the magnetic seat (1) and forms a grip portion that can be held by hand. [6] Magnetic holder according to claim 5, characterized by that, when the extension foot assembly (2) is in the third use state, the longitudinal extension direction of the extension foot assembly (2) is coplanar or parallel to the suction surface (11) of the magnetic seat (1). [7] Magnetic holder according to claim 2, characterized by that one end of the extension foot (21) is rotatable relative to the magnetic seat (1) via a damping hinge (4) and is capable of floating in any position within the rotation range. [8] Magnetic holder according to claim 2, characterized by that an iron sheet (25) is fastened to the extension foot assembly (2) and the magnetic seat (1) is provided with a magnet (13), wherein, when the extension foot assembly (2) rests on the side of the magnetic seat (1) facing away from the suction surface (11), the magnetic attraction force of the magnet (13) on the iron sheet (25) ensures that the extension foot assembly (2) is attracted to the magnetic seat (1). [9] Magnetic holder according to claim 2, characterized byin that the extension foot (21) has a first installation cavity (21a) with a first opening at one end, the first opening being located at the end of the extension foot (21) facing away from the magnet seat (1); wherein the extension foot (22) is connected to the first installation cavity (21a) in a damped, slidable manner along the longitudinal direction of the extension foot (21), and one end of the extension foot (22) is capable of protruding from the first opening of the first installation cavity (21a). [10] Magnetic holder according to claim 9, characterized byin that a fastening plate (23) is fastened in the first installation cavity (21a) of the extension foot (21), and a second installation cavity (22a) with a second opening at one end is provided inside the extension foot (22), the second opening being located at one end of the extension foot (22) near the magnet seat (1); wherein the fastening plate (23) projects into the second installation cavity (22a) and the extension foot (22) is connected to the fastening plate (23) in a damped, slidable manner along the longitudinal direction of the extension foot (21). [11] Magnetic holder according to claim 10, characterized by that a convex section (231) is provided between the surface of the fastening plate (23) and the inner wall of the extension foot (22) to dampen friction when the two parts slide against each other. [12] Magnetic holder according to claim 10 is characterized byin that a limiting groove (232) is provided in the fastening plate (23), wherein the guide direction of the limiting groove (232) corresponds to the longitudinal extension direction of the extension foot (21), and the extension foot (22) is fixedly connected to a sliding block (223), wherein the sliding block (223) is slidably connected to the limiting groove (232). [13] A photo handle, characterized by that it comprises a magnetic holder according to one of claims 1 to 12 and a handle body (5) detachably connected to the magnetic holder; that the handle body (5) can be held by hand, and the magnetic holder is located on one side of the circumferential outer surface of the handle body (5). [14] Photo handle according to claim 13, characterized byin that the handle body (5) is further provided with a wireless remote control (52), wherein the wireless remote control (52) is capable of being wirelessly connected to the photographic device installed on the magnetic seat (1), and the wireless remote control (52) is provided with at least one shutter button (521) capable of controlling the execution of the recording function of the photographic device.