Camera handle

DE202025104043U1Active Publication Date: 2025-09-04GUANGDONG SIRUI OPTICAL CO LTD
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Patent Information

Application Number
DE202025104043
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2025-05-27
Filing Date
2025-07-14
Publication Date
2025-09-04
Estimated Expiration
2035-07-31

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Abstract

A camera handle, characterized in that it comprises a handle body (1) for holding in the hand and a mounting bracket for attaching a photographic device; that the mounting bracket is located on one side of the outer peripheral surface of the handle body (1), the mounting bracket is arranged rotatably relative to the handle body (1) via a damping hinge (4) and can float in any position within the rotation range.
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Description

Technical area

[0001] The present application relates to the technical field of photographic equipment and in particular to a camera handle and a photography kit. 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] The vertical shooting handgrip essentially comprises a handgrip body and a mobile phone holder. The mobile phone holder is attached to one side of the handgrip body, allowing the handgrip body to be held in the hand. The mobile phone holder is designed to attach a mobile phone and other photographic devices. After attaching the mobile phone to the mobile phone holder, the handgrip body can be held in the hand for taking photographs.

[0004] In the current technology, the phone holder is inserted into a slot on one side of the handle body to establish the connection. The phone holder cannot be rotated relative to the handle body, which limits the flexibility of the mount. Contents of the invention

[0005] Therefore, the technical problem to be solved by the present application is to solve the deficiencies of the existing vertical shooting handgrip, namely that the mobile phone holder on one side of the handgrip body cannot be rotated relative to the handgrip body and the shooting flexibility is relatively low, thereby providing a camera handgrip.

[0006] In order to solve the above-mentioned technical problems, the technical solutions of the present application are as follows: A camera handgrip is provided, comprising a handgrip body for holding in the hand and a mounting bracket for attaching a photographic device; the mounting bracket is located on one side of the outer peripheral surface of the handgrip body, the mounting bracket is rotatably arranged relative to the handgrip body via a damping hinge and is capable of floating in any position within the rotation range.

[0007] In addition, the mounting bracket is a magnetic bracket and the magnetic bracket includes a magnetic seat with a magnetic suction function, wherein the magnetic seat has a suction surface that is capable of holding the camera device.

[0008] In addition, it further comprises a hinge seat, wherein one end of the hinge seat is connected to the handle body and the other end of the hinge seat is connected to the mounting bracket via the damping hinge, wherein the mounting bracket is connected to the hinge seat by a damping rotation around the axial direction of the damping hinge.

[0009] In addition, the axial direction of the damping hinge is consistent with the axial direction of the handle body or the axial direction of the damping hinge is perpendicular to the axial direction of the handle body.

[0010] Furthermore, a connecting seat is attached to one side of the handle body, the connecting seat at least partially protruding from the outer peripheral surface of the handle body and the hinge seat being detachably connected to the connecting seat.

[0011] Furthermore, the damping hinge comprises a damping rotary shaft and a first shaft sleeve and a second shaft sleeve fitted on the outer periphery of the damping shaft, wherein the first shaft sleeve and the second shaft sleeve are both connected to the damping rotary shaft by a damping rotation around the axial direction of the damping rotary shaft; wherein the mounting bracket is fixedly connected to the first shaft sleeve and the hinge seat is fixedly connected to the second shaft sleeve.

[0012] In addition, the mounting bracket is provided with a hinge end, the hinge seat is provided with a hinge head end corresponding to the position of the hinge end, and the damping rotary shaft runs between the hinge end and the hinge head end; the hinge end is provided with a connecting hole, and the first shaft sleeve is fixed in the connecting hole; the hinge head end is provided with a mounting hole corresponding to the position of the connecting hole, and the second shaft sleeve is fixed in the mounting hole.

[0013] In addition, the cross sections of the first shaft sleeve and the second shaft sleeve are both non-circular area, the shape of the connecting hole corresponds to the shape of the first shaft sleeve, and the shape of the mounting hole corresponds to the shape of the second shaft sleeve.

[0014] In addition, a limiting end face is provided within the connecting hole, the end of the first shaft sleeve facing the second shaft sleeve abuts against the limiting end face, and a limiting end cover is fastened in the connecting hole, which blocks the end of the first shaft sleeve facing away from the second shaft sleeve.

[0015] In addition, the handle body is also provided with a wireless remote control, the wireless remote control is capable of being wirelessly connected to the photographic device mounted 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.

[0016] Furthermore, a storage magazine for storing an external lens is provided inside the handle body, and the storage magazine has an opening through which the external lens can be inserted into or moved out of the storage magazine; the opening of the storage magazine is detachably connected to a cover plate, and the cover plate is capable of opening and closing the opening of the storage magazine; the external lens is detachably connected to the cover plate.

[0017] In addition, the wireless remote control is detachably connected to the handle body.

[0018] In addition, the circuit board in the wireless remote control is equipped with a Bluetooth or WLAN module.

[0019] In addition, the handle body is also equipped with a cold shoe interface for connecting an external lighting or audio device.

[0020] In addition, the photographic device is a mobile device with a camera function and a wireless communication function, and the mobile device is a mobile phone or a tablet.

[0021] The technical solution of the present application has the following advantages: 1. The camera handle provided in the present application includes a handle body and a mounting holder, wherein the mounting holder is located on one side of the outer circumferential surface of the handle body and is capable of rotating relative to the handle body via a damping hinge and floating in any position within the rotation range; the mounting holder can be rotated when mounting the photographic device on the mounting holder and holding the handle body for photographing, so as to adjust the shooting direction of the photographic device on the mounting holder, thereby solving the problem of the prior art that the mounting holder cannot rotate relative to the handle body and the shooting flexibility is relatively low. 2. In the camera handle provided by the present application, due to the small space requirement of the magnetic seat on one side of the handle body, a magnetic seat with a suction surface for attaching the photographic device is arranged, so that the photographic device magnetically attracted to the suction surface and the handle body are on the same horizontal plane, and the photographic device can be positioned as close as possible to the handle body, which improves the stability of the hand-held camera handle during photography. 3. In the camera handle provided by the present application, the mounting holder enables the comfortable adjustment of a damping hinge between the hinge seat and the mounting holder by connecting the hinge seat to the handle body, thereby realizing a damping rotation of the mounting holder relative to the handle body; furthermore, the hinge seat maintains a certain distance between the mounting holder and the handle body, so that the mounting holder and the handle body do not come too close, which avoids mutual interference between the photographic device sucked on the mounting holder and the handle body. 4. In the camera handle provided by the present application, an axial orientation of the damping hinge coincides with the axial orientation of the handle body, whereby the mounting bracket and the photographic device magnetically attracted thereto can be rotated relative to the axial orientation of the handle body, thereby adjusting their heading angles; the axial orientation of the damping hinge is perpendicular to the axial orientation of the handle body, whereby the mounting bracket and the photographic device magnetically attracted thereto can be rotated relative to the horizontal axis, thereby adjusting their inclination angles. 5. In the camera handle provided by the present application, the hinge seat can be detachably connected to the connection seat on one side of the handle body, whereby the disassembly between the mounting bracket and the handle body can be realized, and the mounting bracket and the handle body can be used separately or combined, which expands the application range of the camera handle. 6. In the camera handgrip provided by the present application, a first shaft sleeve and a second shaft sleeve are fitted on the outer periphery of the damping shaft, and the first shaft sleeve and the second shaft sleeve are both connected to the damping rotary shaft by damping rotation around the axial direction of the damping rotary shaft; the first shaft sleeve is fixedly connected to the mounting bracket, and the second shaft sleeve is fixedly connected to the hinge seat; during use, you can hold the handgrip body with one hand and rotate the mounting bracket with the other hand to adjust the shooting direction; you can also fix the mounting bracket with one hand and rotate the handgrip body with the other hand to adjust the shooting direction, which provides better adjustment flexibility. 7. In the camera handle provided by the present application, the arrangement of the limiting end surface and the limiting end cover in the connecting hole can fix the first shaft sleeve in the hinge end of the magnet seat to prevent the first shaft sleeve and the entire damping hinge from falling off. 8. In the camera grip provided by the present application, the wireless remote control on the grip body is capable of wirelessly connecting to the photographic device mounted on the magnetic seat, and the wireless remote control is provided with at least a shutter button capable of controlling the execution of the shooting function of the photographic device; while holding the camera grip, the photographic device can be directly controlled and the shooting action can be performed by pressing the shutter button on the wireless remote control, which simplifies operation. 9. In the camera handgrip provided by the present application, by disposing a storage magazine for storing an external lens in the handgrip body, the external lens can be conveniently and quickly stored in the storage magazine of the handgrip body when not in use, without having to dispose a separate lens box for storing the external lens, thereby making the handgrip body versatile, saving the overall space of the product, improving the portability of the product, and enhancing the user experience. Figures

[0022] 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 schematic diagram of the overall structure of a camera handle in an embodiment of the present application; Fig. 2 is a schematic diagram of the structure of the handle body in an embodiment of the present application; Fig. 3 is a schematic diagram showing the connection relationship between the magnet seat, the damping hinge, the hinge seat, and the handle body in an embodiment of the present application; Fig. 4 is a cross-sectional view of the camera handle in one embodiment of the present application; Fig. 5 is a schematic diagram of the structure of the damping hinge in an embodiment of the present application; Fig. 6 is a schematic diagram of a use state in an embodiment of the present application in which the handle body is connected to the magnetic seat, the magnetic seat accommodates the mobile phone case, and the mobile phone case is connected to the external lens.

[0023] Reference numerals in the figures: 1. handle body; 11. connection seat; 12. wireless remote control; 121. release button; 122. adjustment dial; 123. power switch; 124. charging port; 13. cold shoe interface; 14. cover plate; 2. magnetic seat; 21. suction surface; 22. hinge end; 221. connection hole; 222. limit end surface; 3. hinge seat; 31. hinge head end; 311. mounting hole; 32. knob; 4. damping hinge; 41. damping shaft; 42. first shaft sleeve; 43. second shaft sleeve; 44. limit end cover; 5. external lens; 6. phone case; 61. lens case. Specific embodiments

[0024] 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.

[0025] 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.

[0026] 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.

[0027] A camera handle, as in Fig. 1 to 5, comprises a handle body 1 and a mounting bracket. The handle body 1 can be held in the hand, and the mounting bracket is designed for attaching a mobile phone and other photographic devices. The outer peripheral surface of the handle body 1 has a shape that corresponds to the hand-held state. The mounting bracket is located on one side of the outer peripheral surface of the handle body 1. The mounting bracket is rotatably mounted relative to the handle body 1 via a damping hinge 4 and can float in any position within the rotation range.

[0028] Since the mounting bracket of this camera handgrip can rotate relative to the handgrip body 1 via the damping hinge 4 and float in any position within the rotation range, when mounting the photographic device to the mounting bracket and holding the handgrip body 1 for photographing, the mounting bracket can be rotated to adjust the shooting direction of the photographic device on the mounting bracket, thereby solving the problem of the prior art that the mounting bracket cannot rotate relative to the handgrip body 1 and the shooting flexibility is relatively low.

[0029] The photographic devices installed on the mounting bracket include a terminal device such as a mobile phone or tablet that has a camera and wireless communication functions. A wireless remote control 12 is located at an axial end portion of the handle body 1. The wireless remote control 12 can be wirelessly connected to the photographic device. The wireless remote control 12 is provided with at least one shutter button 121 capable of controlling the execution of the shooting function of the photographic device. When the camera handle is held for photography, the photographic device can be controlled by pressing the shutter button 121 on the wireless remote control 12, which simplifies operation.

[0030] In some embodiments, the wireless remote control 12 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 designed to supply power to the wireless communication module, and the wireless communication module is designed to realize a wireless communication connection between the wireless remote control 12 and the photographic device. In particular, the wireless communication module may be a Bluetooth module or a WiFi module. As shown in the Fig. 1 and Fig. As shown in Figure 2, the housing body is provided with a shutter button 121, a dial 122, and a power switch 123. The power switch 123 is configured to turn the communication function of the wireless remote control 12 on and off. The shutter button 121 is configured to control the photographic device via the wireless communication module, and the dial 122 is configured to control the photographic device to adjust shooting parameters, such as the aperture, via the wireless communication module. The wireless remote control 12 is also provided with a charging port 124, wherein the charging port 124 is, in particular, a USB charging port. The charging port 124 can be connected to a charger to supply power to the battery in the wireless remote control 12.The wireless remote control 12 may be a module detachably connected to the handle body 1, and the wireless remote control 12 may also share the same housing body with the handle body 1.

[0031] In some embodiments, as in the Fig. 1 and Fig. 2, a cold shoe interface 13 is also provided on the top of the handle body 1, 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 13. In this way, the handle body 1 can provide a mounting bracket for more shooting accessories, making the handle body 1 versatile.

[0032] In some embodiments, as in the Fig. 1, Fig. 3 and Fig. 4, the mounting bracket is specifically a magnetic bracket, and the magnetic bracket includes a magnetic seat 2 with a magnetic suction function, the magnetic seat 2 having a suction surface 21 capable of receiving the photographic device. Due to the small space requirement of the magnetic seat 2, a magnetic seat 2 with a suction surface for attaching the photographic device is arranged on one side of the handle body 1, so that the photographic device magnetically sucked onto the suction surface 21 and the handle body 1 are on the same horizontal plane, and the photographic device can be easily positioned as close as possible to the handle body 1, which improves the stability of the handheld handle body 1 during photography.

[0033] In some embodiments, as in the Fig. 1 to 4, a connecting seat 11 is attached to one side of the handle body 1, the connecting seat 11 at least partially protruding from the outer peripheral surface of the handle body 1. The mounting bracket further includes a hinge seat 3, one end of the hinge seat 3 being connected to the connecting seat 11, and the other end of the hinge seat 3 being connected to the magnetic seat 2 via the damping hinge 4. The hinge seat 3 and the connecting seat 11 are arranged on the same plane, and the magnetic seat 2 is connected to the hinge seat 3 by a damping rotation about the axial direction of the damping hinge 4. The magnetic seat 2, by connecting the hinge seat 3 to the handle body 1, enables convenient adjustment of a damping hinge 4 between the hinge seat 3 and the magnetic seat 2, thereby realizing a damping rotation of the magnetic seat 2 relative to the handle body 1.In addition, the hinge seat 3 maintains a certain distance between the magnetic seat 2 and the handle body 1, so that the magnetic seat 2 and the handle body 1 do not come too close to each other, thus preventing mutual interference between the photographic device sucked onto the magnetic seat 2 and the handle body 1. In some alternative embodiments, the hinge seat 3 may also be omitted, and the magnetic seat 2 is directly connected to the connecting seat 11 on one side of the handle body 1 via the damping hinge 4.

[0034] In some embodiments, the hinge seat 3 can be detachably connected to the connecting seat 11 on one side of the handle body 1, and a button 32 is provided on the hinge seat 3. Pressing the button 32 unlocks the connecting seat 11 of the hinge seat 3. When assembling the hinge seat 3 and the handle body 1, the button 32 on the hinge seat 3 is pressed down, one end of the hinge seat 3 is aligned with the connecting seat 11 on one side of the handle body 1, and then the button 32 is released to fix the hinge seat 3 and the connecting seat 11. Disassembly of the hinge seat 3 from the handle body 1 is performed in the reverse order of the assembly steps. The locking and unlocking method of the hinge seat 3 and the connecting seat 11 by pressing the button 32 belongs to the prior art and does not constitute the main invention of the present application.Therefore, it will not be repeated here. The hinge seat 3 can be detachably connected to the connecting seat 11 on one side of the handle body 1, thereby realizing disassembly between the magnetic seat 2 and the handle body 1, and allowing the magnetic seat 2 and the handle body 1 to be used separately or combined, thus expanding the application possibilities of the camera handle.

[0035] In some embodiments, as in Fig. 3, an axial orientation of the damping hinge 4 coincides with the axial orientation of the handle body 1; this arrangement allows the magnetic seat 2 and the photographic device magnetically attracted thereto to be rotated relative to the axial orientation of the handle body 1, thus allowing their heading angles to be adjusted. In some alternative embodiments, the axial orientation of the damping hinge 4 is perpendicular to the axial orientation of the handle body 1; this arrangement allows the magnetic seat 2 and the photographic device magnetically attracted thereto to be rotated relative to the horizontal axis, thus allowing their inclination angles to be adjusted.

[0036] In some embodiments, as in the Fig. 3 to 5, the damper hinge 4 includes a damper rotary shaft 41, and a first shaft sleeve 42 and a second shaft sleeve 43 fitted on the outer periphery of the damper shaft 41. The first shaft sleeve 42 and the second shaft sleeve 43 are both connected to the damper rotary shaft 41 through damper rotation around the axial direction of the damper rotary shaft 41. The magnetic seat 2 is fixedly connected to the first shaft sleeve 42, and the hinge seat 3 is fixedly connected to the second shaft sleeve 43. The damper hinge 4 composed of the damper shaft 41, the first shaft sleeve 42, and the second shaft sleeve 43 has a simple structure and can provide a stable damping force, allowing the magnetic seat 2 to float at any position within the rotation range.During use, you can hold the handle body 1 with one hand and rotate the magnetic seat 2 with the other hand to adjust the pickup direction; you can also fix the magnetic seat 2 with one hand and rotate the handle body 1 with the other hand to adjust the pickup direction, which provides better adjustment flexibility. In an alternative embodiment, the damping hinge 4 only includes a damping rotary shaft 41 and a first shaft sleeve 42 fitted on the outer circumference of the damping shaft 41. The magnetic seat 2 is fixedly connected to the first shaft sleeve 42, and the other end of the damping rotary shaft 41 is directly fixedly connected to the hinge seat 3. The damping hinge 4 has a simpler structure, where you can hold the handle body 1 with one hand and rotate the magnetic seat 2 with the other hand to adjust the pickup direction.

[0037] In some embodiments, as in Fig. 3 to 5, the magnetic seat 2 is provided with a pair of hinge ends 22 on a side facing the handle body 1, and the hinge seat 3 is provided with a hinge head end 31 on a side facing the magnetic seat 2, which corresponds to the position of the pair of hinge ends 22, with the hinge head end 31 being located between the pair of hinge ends 22. There are two damper hinges 4, and each hinge end 22 is connected to the hinge head end 31 via a damper hinge 4, and the damper shaft 41 of the damper hinge 4 passes through the pair of hinge ends 22 and the hinge head end 31. The hinge end 22 is provided with a connecting hole 221, and the first shaft sleeve 42 is fixed in the connecting hole 221; the hinge head end 31 is provided with a mounting hole 311 corresponding to the position of the connecting hole 221, and the second shaft sleeve 43 is fixed in the mounting hole 311.The two second shaft sleeves 43 of the two groups of damping hinges 4 each protrude from opposite sides of the hinge head end 31 into the mounting hole 311. This mounting method of the damping hinge 4 is simple in design, easy to implement, and highly reliable. In an alternative embodiment, the number of damping hinges 4 can also be one, with one damping shaft 41 extending simultaneously through a pair of hinge ends 22 and one hinge head end 31.

[0038] In some embodiments, as in Fig. 3 to 5, the cross sections of the first shaft sleeve 42 and the second shaft sleeve 43 are both non-circular surfaces, and the outer diameter of the first shaft sleeve 42 is larger than the outer diameter of the second shaft sleeve 43. The shape of the connecting hole 221 corresponds to the shape of the first shaft sleeve 42, and the shape of the mounting hole 311 corresponds to the shape of the second shaft sleeve 43. For example, the outer wall surfaces of the first shaft sleeve 42 and the second shaft sleeve 43 each have a pair of opposed arc surfaces and a pair of opposed planes. Note that the cross sections of the first shaft sleeve 42 and the second shaft sleeve 43 can have any non-circular shapes as long as the first shaft sleeve 42 cannot rotate in the connecting hole 221 and the second shaft sleeve 43 cannot rotate in the mounting hole 311.

[0039] In some embodiments, as in Fig. 3 to 5, a limiting end surface 222 is provided within the connecting hole 221. The end of the first shaft sleeve 42 facing the second shaft sleeve 43 abuts the limiting end surface 222. A limiting end cover 44 is fixed in the connecting hole 221 and blocks the end of the first shaft sleeve 42 facing away from the second shaft sleeve 43. The arrangement of the limiting end surface 222 and the limiting end cover 44 in the connecting hole 221 can fix the first shaft sleeve 42 in the hinge end 22 of the magnet seat 2 to prevent the first shaft sleeve 42 and the entire damping hinge 4 from falling off.

[0040] In some embodiments, as in the Fig. 4 and Fig. As shown in Figure 6, a storage magazine for storing an external lens 5 is provided inside the handle body 1. The storage magazine has an opening through which the external lens 5 can be inserted into or removed from the storage magazine. The opening of the storage magazine is detachably connected to a cover plate 14, and the cover plate 14 is capable of opening and closing the opening of the storage magazine.By providing a storage magazine for storing the external lens 5 in the handle body 1, the external lens 5 can be stored in the storage magazine inside the handle body 1 when not in use, without having to provide a separate lens box for storing the external lens 5, and the handle body 1 can be used as a holding component of the auxiliary shooting device and also as a storage component for the external lens 5, thereby making the handle body 1 versatile, saving the overall space of the product, improving the portability of the product, and enhancing the user experience.

[0041] In some embodiments, as in the Fig. 4 and Fig.6, the cover plate 14 is detachably connected to the handle body 1, and the external lens 5 is detachably connected to the cover plate 14. The detachable connection method of the cover plate 14 and the handle body 1 includes, but is not limited to, a snap connection, a threaded connection, and a magnetic connection; the detachable connection method of the external lens 5 and the cover plate 14 includes, but is not limited to, a snap connection and a magnetic connection. To store the external lens 5, the external lens 5 is first attached to the cover plate 14 and then mounted to the handle body 1 together with the cover plate 14. To remove the external lens 5, first remove the cover plate 14 from the bottom of the handle body 1, and then remove the external lens 5 together with the cover plate 14.The external lens 5 can then be removed from the cover plate 14 and attached to the mobile phone case 6 fastened to the magnetic seat 2 for use. The mobile phone case 6 is designed to house a mobile phone, and the mobile phone case 6 includes a lens cover 61 for housing the naive mobile phone lens, wherein the lens cover 61 is provided with a lens opening for exposing the naive mobile phone lens. The external lens 5 is detachably connected to the lens cover 61 by a snap connection or a magnetic connection, and after the external lens 5 is installed in the lens cover 61, it can be aligned with a lens opening on the lens cover 61. The external lens 5 can be, for example, an ultra-wide-angle lens, a telephoto lens, a macro lens, or an anamorphic lens.When the external lens 5 is connected to the mobile phone case 6, the external lens 5 can cooperate with the naive mobile phone lens to take pictures, and the external lens 5 can overcome the optical performance limitations of the naive mobile phone lens to meet the user's demands for more professional shooting effects.

[0042] In summary, the camera grip provided in the present application includes a grip body 1 and a magnetic seat 2, wherein the magnetic seat 2 is located on one side of the outer peripheral surface of the grip body 1 and is capable of rotating relative to the grip body 1 via a damping hinge 4 and floating at any position within the rotation range; the magnetic seat 2 can be rotated when mounting the photographing device to the magnetic seat 2 and holding the grip body 1 for photographing, so as to adjust the shooting direction of the photographing device to the magnetic seat 2, thereby solving the problem of the prior art that the magnetic seat 2 cannot rotate relative to the grip body 1 and the shooting flexibility is relatively low.

[0043] 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] Camera handle, characterized by that it comprises a handle body (1) for holding in the hand and a mounting bracket for attaching a photographic device; that the mounting bracket is located on one side of the outer peripheral surface of the handle body (1), the mounting bracket is arranged rotatably relative to the handle body (1) via a damping hinge (4) and can float in any position within the rotation range. [2] Camera handle according to claim 1, characterized by that the mounting bracket is a magnetic bracket and the magnetic bracket comprises a magnetic seat (2) with a magnetic suction function, wherein the magnetic seat (2) has a holding surface (21) which is capable of receiving the photographic device. [3] Camera handle according to claim 1 or 2, characterized byin that it further comprises a hinge seat (3), one end of the hinge seat (3) being connected to the handle body (1) and the other end of the hinge seat (3) being connected to the mounting bracket via the damping hinge (4), the mounting bracket being connected to the hinge seat (3) by a damping rotation about the axial direction of the damping hinge (4). [4] Camera handle according to claim 1, characterized by that the axial direction of the damping hinge (4) coincides with the axial direction of the handle body (1) or the axial direction of the damping hinge (4) is perpendicular to the axial direction of the handle body (1). [5] Camera handle according to claim 3, characterized byin that a connecting seat (11) is attached to one side of the handle body (1), wherein the connecting seat (11) protrudes at least partially from the outer peripheral surface of the handle body (1) and the hinge seat (3) is detachably connected to the connecting seat (11). [6] Camera handle according to claim 3 is characterized by in that the damping hinge (4) comprises a damping rotary shaft (41) and a first shaft sleeve (42) and a second shaft sleeve (43) which are fitted onto the outer circumference of the damping shaft (41), wherein the first shaft sleeve (42) and the second shaft sleeve (43) are both connected to the damping rotary shaft (41) by a damping rotation around the axial direction of the damping rotary shaft (41); wherein the mounting bracket is fixedly connected to the first shaft sleeve (42) and the hinge seat (3) is fixedly connected to the second shaft sleeve (43). [7] Camera handle according to claim 6, characterized byin that the mounting bracket is provided with a hinge end (22), the hinge seat (3) is provided with a hinge head end (31) corresponding to the position of the hinge end (22), and the damping rotary shaft (41) runs between the hinge end (22) and the hinge head end (31); the hinge end (22) is provided with a connecting hole (221), and the first shaft sleeve (42) is fastened in the connecting hole (221); the hinge head end (31) is provided with a mounting hole (311) corresponding to the position of the connecting hole (221), and the second shaft sleeve (43) is fastened in the mounting hole (311). [8] Camera handle according to claim 7, characterized by that the cross sections of the first shaft sleeve (42) and the second shaft sleeve (43) are both non-circular surfaces, the shape of the connecting opening (221) corresponds to the shape of the first shaft sleeve (42) and the shape of the mounting hole (311) corresponds to the shape of the second shaft sleeve (43). [9] Camera handle according to claim 7, characterized by that a limiting end face (222) is provided within the connecting hole (221), the end of the first shaft sleeve (42) facing the second shaft sleeve (43) bears against the limiting end face (222), and a limiting end cover (44) is fastened in the connecting hole (221), which block the end of the first shaft sleeve (42) facing away from the second shaft sleeve (43). [10] Camera handle according to claim 2, characterized by that the handle body (1) is further provided with a wireless remote control (12), the wireless remote control (12) is capable of being connected wirelessly to the photographic device mounted on the magnetic seat (2), and the wireless remote control (12) is provided with at least one shutter button (121) capable of controlling the execution of the recording function of the photographic device.