Photographic mobile equipment mounting device

By combining the first clamping component and the second clamping component with the reset component, the problem of inconvenient operation of fixing the cable in existing photographic mobile devices is solved, and the cable can be quickly disassembled and conveniently installed.

CN224261284UActive Publication Date: 2026-05-19SHENZHEN LEQI INNOVATION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN LEQI INNOVATION CO LTD
Filing Date
2025-05-06
Publication Date
2026-05-19

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  • Figure CN224261284U_ABST
    Figure CN224261284U_ABST
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Abstract

The utility model discloses a photographic mobile equipment mounting device, which comprises a mounting main body, a first mounting structure and a second mounting structure, and is characterized in that the mounting main body is arranged in a flat plate shape and is provided with a main plane and a side wall connected to the peripheral side of the main plane; the first mounting structure is arranged on the main plane and is used for mounting photographing mobile equipment; the second mounting structure comprises a first clamping component, a second clamping component and a reset component, the first clamping component is arranged on the side wall, the first clamping component is connected with the second clamping component through the reset component, and a line body of the photographing mobile equipment can be accommodated between the second clamping component and the first clamping component; the second clamping component is used for being driven by external force to move towards or away from the first clamping component. The reset component is used for providing acting force for restoring the second clamping component. The photographing mobile equipment is fixed through the mounting main body and the first mounting structure, and the line body is quickly disassembled and assembled through the second mounting structure, so that the disassembly and assembly convenience is improved.
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Description

Technical Field

[0001] This utility model relates to the field of photographic equipment, and in particular to a mounting device for photographic mobile devices. Background Technology

[0002] In everyday photography activities, mobile devices such as mobile phones, tablets, power banks, or external hard drives are typically used for photography or to assist in photography.

[0003] Photography mobile devices are typically mounted and secured to fixed devices such as tripods and gimbals, eliminating the need for manual handling and freeing up the user's hands. Related technologies propose a mounting device for photography mobile devices, used to secure the device itself and to secure data cables, power cables, and other cables connected to it.

[0004] However, the relevant technologies have the following drawbacks: existing fixed data cables, power cables and other cables are usually fixed by clamping the cables with adjustable spacing. It is necessary to turn the knob or drive the clamp to loosen or tighten the cables. The process of loosening and tightening the cables is inconvenient, resulting in poor operation convenience for installing photography mobile devices. Utility Model Content

[0005] The main purpose of this invention is to provide a mounting device for photographic mobile devices, which aims to improve the ease of operation when installing photographic mobile devices.

[0006] To achieve the above objectives, this utility model proposes a mounting device for photographic mobile devices, comprising:

[0007] The mounting body is flat and has a main plane and side walls connected to the periphery of the main plane.

[0008] A first mounting structure is disposed on the main plane for mounting the photographic mobile device;

[0009] The second mounting structure includes a first clamping member, a second clamping member, and a reset member. The first clamping member is disposed on the side wall and is connected to the second clamping member through the reset member. The cable of the photographic mobile device can be accommodated between the second clamping member and the first clamping member.

[0010] The second clamping member is used to be driven by an external force to move toward or away from the first clamping member; the reset member is used to provide a force to restore the second clamping member.

[0011] In some embodiments, the first clamping member has a first inclined surface that is inclined to the side wall, the second clamping member has a second inclined surface that corresponds to the first inclined surface, one of the first inclined surface and the second inclined surface is provided with a guide groove, and the other of the two is provided with a guide post that is slidably inserted in the guide groove;

[0012] The first clamping member further has a first clamping portion disposed on one side of the first inclined surface, and the second clamping member further has a second clamping portion disposed on one side of the second inclined surface, the second clamping portion being disposed at a distance from the first clamping portion.

[0013] In some embodiments, the second clamping member has a mounting notch, and the first clamping member has a protrusion that mates with the mounting notch;

[0014] The first inclined surface is formed on the side of the protrusion facing the second clamping member, and the second inclined surface is formed on the bottom wall of the mounting notch.

[0015] In some embodiments, the first clamping member further has a third inclined surface disposed at an angle to the sidewall; the second clamping member has a fourth inclined surface corresponding to the third inclined surface;

[0016] The third inclined surface is connected to the first inclined surface and is set at an opposite angle, and the fourth inclined surface is connected to the second inclined surface and is set at an opposite angle, so that when the second clamping member is driven by an external force to move toward or away from the first clamping member, the first inclined surface moves toward or away from the second inclined surface, and the fourth inclined surface slides along the third inclined surface.

[0017] In some embodiments, the protrusion portion is recessed into a groove on the side facing the second clamping member, and the first inclined surface and the second inclined surface constitute the bottom wall of the groove;

[0018] The bottom wall of the mounting notch is provided with a sliding platform portion adapted to the sliding groove, and the third inclined surface and the fourth inclined surface are constructed on the side of the sliding platform portion facing the bottom wall of the sliding groove.

[0019] In some embodiments, the reset component includes:

[0020] A first tension spring, one end of which is connected to the second clamping member, and the other end of which is connected to the bottom wall of the guide groove; or

[0021] A first magnetic component and a second magnetic component, wherein the first magnetic component is disposed on the second clamping member and the second magnetic component is disposed on the guide groove.

[0022] In some embodiments, the reset member includes a spring, one end of which abuts against the second clamping member, and the other end of which abuts against the bottom wall of the guide groove; the photographic mobile device mounting device further includes:

[0023] A locking member is provided to configure the first clamping member and the second clamping member into a relatively fixed state or a relatively movable state.

[0024] In some embodiments, the third inclined surface is provided with a first through hole, and the fourth inclined surface is provided with a second through hole corresponding to the first through hole;

[0025] The locking member includes a handle portion and a screw portion that are connected to each other. The handle portion is used to abut against the side of the second clamping member opposite to the first clamping member. The end of the screw portion away from the handle portion passes through the first through hole and the second through hole in sequence to be threadedly connected to the side wall of the mounting body.

[0026] In some embodiments, the side wall of the mounting body is provided with a waist-shaped hole communicating with the interior of the mounting body, and the locking member further includes a nut disposed inside the mounting body. The end of the screw portion away from the handle portion passes through the waist-shaped hole and extends into the interior of the mounting body to thread the nut, and the nut can abut against the inner side of the side wall.

[0027] In some embodiments, the first mounting structure includes two grippers disposed at a relative distance on both sides of the mounting body. The two grippers are slidably connected to the mounting body, and a receiving space for accommodating the photographic mobile device is formed between the two grippers and the main plane. The two grippers can move toward or away from each other to clamp or release the photographic mobile device in the receiving space.

[0028] In some embodiments, the gripper includes a first sliding portion and a second sliding portion spaced apart, and a clamping portion connected to the first sliding portion and the second sliding portion, wherein at least a portion of the first sliding portion and the second sliding portion extends into the interior of the mounting body and is slidable relative to the mounting body; the clamping portion is exposed outside the mounting body.

[0029] The photographic mobile device mounting device also includes two second tension springs, and the first sliding parts of the two grippers are elastically connected to the mounting body through a second tension spring.

[0030] In some embodiments, the mounting body further includes a secondary plane opposite to the primary plane, the sidewalls of the mounting body surround the periphery of the primary plane and the secondary plane, and the secondary plane is provided with a third mounting structure for connecting external photographic equipment.

[0031] This application uses an installation body as a support platform. A first installation structure, in conjunction with a main plane, secures the main body of the photographic mobile device. Simultaneously, a second installation structure secures the cable of the photographic mobile device. The second installation structure includes a first clamping component, a second clamping component, and a reset component. The first clamping component is connected to the installation body, and the second clamping component is connected to the reset component. External forces, such as manual force or motor drive, can move the second clamping component away from or towards the first clamping component, causing the first and second clamping components to release or clamp the cable. After the external force is removed, the reset component provides a force to reset the second clamping component, causing it to move towards or away from the first clamping component. This enables rapid assembly and disassembly of the photographic mobile device's cable, significantly improving the ease of operation during installation. Attached Figure Description

[0032] Figure 1 This is a schematic diagram of the structure of the mounting device for the photographic mobile device of this utility model;

[0033] Figure 2 for Figure 1 A schematic diagram of the second installation structure;

[0034] Figure 3 for Figure 2 A schematic diagram of the structure of the first clamping component of the second mounting structure;

[0035] Figure 4 for Figure 2 A schematic diagram of the structure of the second clamping component of the second mounting structure;

[0036] Figure 5 for Figure 2 Cross-sectional view at point AA;

[0037] Figure 6 for Figure 2 Cross-sectional view at point BB;

[0038] Figure 7 A schematic diagram of the second mounting structure and locking component of the photographic mobile device mounting device of this utility model;

[0039] Figure 8 A schematic diagram of the internal structure of the mounting device for the photographic mobile device of this utility model;

[0040] Figure 9 for Figure 1 A schematic diagram of the mounting device for photographic mobile devices from a rear view perspective.

[0041] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0042] The solutions in the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only the first cosmetic packaging bag embodiment of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0043] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0044] It should also be noted that when a component is described as "fixed to" or "set on" another component, it can be directly on the other component or there may be an intervening component present. When a component is described as "connected to" another component, it can be directly connected to the other component or there may be an intervening component present.

[0045] Furthermore, the use of terms such as "first" and "second" in this utility model is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.

[0046] The photographic mobile device mounting device of this application can be applied to photographic mobile devices including but not limited to mobile phones, tablets, power banks and portable hard drives. For example, when applied to the installation of portable hard drives, this application can also be called a portable hard drive mounting device or a hard drive clip, etc. Similarly, it can be used to install other photographic mobile devices, and there is no limitation here.

[0047] It should be noted that the cable of the photographic mobile device can be a data cable or adapter cable connected to a portable hard drive, etc., which is only used as an example here. Similarly, by way of example, the cable in this application refers to a data cable or power cable used to connect to the interface of the photographic mobile device or a cable connected to the interface, and is not limited here.

[0048] Reference Figures 1 to 7 This application discloses a mounting device for a photographic mobile device, comprising:

[0049] The mounting body 1 is flat and has a main plane 100 and side walls 102 connected to the periphery of the main plane 100.

[0050] The first mounting structure 2 is located on the main plane 100 and is used to mount the photography mobile device;

[0051] The second mounting structure 3 includes a first clamping member 31, a second clamping member 32, and a reset member 33. The first clamping member 31 is disposed on the side wall 102. The first clamping member 31 is connected to the second clamping member 32 through the reset member 33. The cable of the photography mobile device can be accommodated between the second clamping member 32 and the first clamping member 31.

[0052] The second clamping member 32 is driven by an external force to move toward or away from the first clamping member 31; the reset member 33 is used to provide a force to restore the second clamping member 32.

[0053] In this embodiment, the mounting body 1 is a flat plate structure, serving as the main support platform. The main plane 100 is the surface plane on the mounting body 1. The first mounting structure 2 is disposed on the main plane 100 to fix the photographic mobile device (such as a mobile phone, external hard drive, etc.). The second mounting structure 3 is disposed on the side wall 102 of the mounting body 1. The side wall 102 is the side wall of the flat mounting body 1, connected to the periphery of the main plane 100. The second mounting structure 3 includes a first clamping member 31, a second clamping member 32, and a reset member 33, used to clamp the cable of the photographic mobile device.

[0054] The operation of the embodiments of this application is explained in the initial state where the first clamping member 31 and the second clamping member 32 are not clamping the wire:

[0055] When a force is applied to the second clamping member 32 by manual or other driving methods (such as electric or elastic element driving) to move the second clamping member 32 away from the first clamping member 31, and then the cable is placed between the two clamping members, after the external force is removed, the reset member 33 applies a restoring force to the second clamping member 32, causing the second clamping member 32 to move towards the first clamping member 31 without being subjected to external force, thereby clamping the cable between the second clamping member 32 and the first clamping member 31. For example, the reset member 33 can be a tension spring, two mutually attracting magnets, or a deformable elastic material; this is only an example illustration.

[0056] It is understandable that when a force is applied to the second clamping member 32 by human drive or other drive methods (such as electric or elastic element drive) to move the second clamping member 32 toward the first clamping member 31, the force applied by the reset member 33 to the second clamping member 32 to restore it can cause the second clamping member 32 to move away from the first clamping member 31. For example, in the initial state, an external force such as a spring is applied to the second clamping member 32 toward the first clamping member 31. The force applied by the external force is greater than the restoring force of the reset member 33. At this time, the first clamping member 31 and the second clamping member 32 are in a state of holding the cable. When the external force is removed or the external force is reduced so that the external force is less than the restoring force of the reset member 33, the second clamping member 32 can move away from the first clamping member 31 under the action of the reset member 33. At this time, the second clamping member 32 and the first clamping member 31 no longer clamp the cable, and the cable can be taken out. This is only an example and not a limitation. The force applied to the second clamping member 32 can also be the force that locks the second clamping member 32 and the first clamping member 31, such as a locking handle, a buckle, etc., which is not limited here.

[0057] This application uses an installation body 1 as a support platform, a first installation structure 2 in conjunction with a main plane 100 to fix the main body of the photographic mobile device, and a second installation structure 3 to fix the cable of the photographic mobile device. The second installation structure 3 includes a first clamping member 31, a second clamping member 32, and a reset member 33. The first clamping member 31 is connected to the installation body 1, and the second clamping member 32 is connected to the first clamping member 31 via the reset member 33. The cable of the photographic mobile device can be accommodated between the second clamping member 32 and the first clamping member 31. When an external force drives the second clamping member 32 to move toward or away from the first clamping member 31, the first clamping member 31 and the second clamping member 32 clamp or release the cable. The reset member 33 provides a force to reset the second clamping member 32. This enables quick assembly and disassembly of the cable of the photographic mobile device, significantly improving the ease of installation.

[0058] Please continue to refer to Figures 1 to 4 In some embodiments, the first clamping member proposed in this application has a first inclined surface 311 that is inclined to the side wall 102, and the second clamping member has a second inclined surface 321 that corresponds to the first inclined surface 311. One of the first inclined surface 311 and the second inclined surface 321 is provided with a guide groove 34, and the other is provided with a guide post 35 that is slidably inserted in the guide groove 34.

[0059] The first clamping member also has a first clamping portion 312 disposed on one side of the first inclined surface 311, and the second clamping member also has a second clamping portion 322 disposed on one side of the second inclined surface 321, with the second clamping portion 322 and the first clamping portion 312 being disposed at a distance from each other.

[0060] In this embodiment, the second mounting structure 3 achieves clamping and releasing of the camera device cable by the opposing or reciprocating movements of the first inclined surface 311 of the first clamping member 31 and the second inclined surface 321 of the second clamping member 32, combined with the clamping functions of the first clamping part 312 and the second clamping part 322, the motion constraints of the guide groove 34 and the guide post 35, and the restoring force of the reset member 33. Its core principle is as follows:

[0061] The first clamping member 31 has a first inclined surface 311 that is inclined to the side wall 102, and the second clamping member 32 has a second inclined surface 321 that corresponds to the first inclined surface 311.

[0062] The first clamping part 312 is disposed on one side of the first inclined surface 311, and the second clamping part 322 is disposed on one side of the second inclined surface 321. The two clamping parts are spaced apart from each other to form a space for clamping the wire.

[0063] One of the first inclined surface 311 or the second inclined surface 321 is provided with a guide groove 34, and the other is provided with a guide post 35 that can slide through the guide groove 34.

[0064] The guide groove 34 and guide post 35 restrict the movement path of the second clamping member 32, ensuring that it moves towards or away from each other in a specific direction (related to the inclination angle of the side wall 102 opposite to the first inclined surface 311), maintaining the stability and accuracy of the movement.

[0065] Please continue to refer to Figures 1 to 4 In some embodiments, the second clamping member proposed in this application has a mounting notch 320, and the first clamping member has a protrusion 310 that can cooperate with the mounting notch 320;

[0066] The first inclined surface 311 is formed on the side of the protrusion 310 facing the second clamping member, and the second inclined surface 321 is formed on the bottom wall of the mounting notch 320.

[0067] In this embodiment, the second clamping member 32 has a mounting notch 320, and the first clamping member 31 has a protrusion 310 that can be inserted into the mounting notch 320, forming a fitting structure. The first inclined surface 311 is constructed on the side of the protrusion 310 facing the second clamping member 32 (i.e., the side wall of the protrusion 310), and the second inclined surface 321 is constructed on the bottom wall of the mounting notch 320.

[0068] The first clamping member 31 and the second clamping member 32 are machined together to improve the overall integrity of the first clamping member 31 and the second clamping member 32, and also enhance the connection stability of the first clamping member 31 and the second clamping member 32.

[0069] Please continue to refer to Figures 1 to 4In some embodiments, the first clamping member proposed in this application embodiment further has a third inclined surface 313 that is inclined to the side wall 102; the second clamping member has a fourth inclined surface 323 that corresponds to the third inclined surface 313;

[0070] The third inclined surface 313 is connected to the first inclined surface 311 at opposite angles, and the fourth inclined surface 323 is connected to the second inclined surface 321 at opposite angles, so that when the second clamping member 32 is driven by an external force to move toward or away from the first clamping member 31, the first inclined surface 311 moves toward or away from the second inclined surface 321, and the fourth inclined surface 323 slides along the third inclined surface 313.

[0071] In this embodiment, the second mounting structure 3 adjusts the clamping space between the first clamping part 312 and the second clamping part 322 through the opposing / reverse movement of the first inclined surface 311 and the second inclined surface 321, combined with the sliding contact of the third inclined surface 313 and the fourth inclined surface 323, the engagement of the protrusion part 310 and the mounting notch 320, the movement constraint of the guide groove 34 and the guide post 35, and the restoring force of the reset member 33, thereby realizing the clamping and releasing of the camera mobile device cable.

[0072] The first clamping member 31 has:

[0073] The first inclined surface 311 (located on the side of the protrusion 310 facing the second clamping member 32, inclined to the side wall 102).

[0074] The third inclined surface 313 (inclined to the side wall 102, connected to the first inclined surface 311, with the inclination angle opposite, for example, the first inclined surface 311 inclines upward and the third inclined surface 313 inclines downward).

[0075] The second clamping member 32 has:

[0076] The second inclined surface 321 (located on the bottom wall of the mounting notch 320, corresponding to the first inclined surface 311).

[0077] The fourth inclined plane 323 (connects to the second inclined plane 321, with the opposite inclination angle, and corresponds to the third inclined plane 313).

[0078] A first inclined surface 311 and a second inclined surface 321. The second inclined surface 321 can move towards (closer to) or away from the first inclined surface 311 under external force. When it reaches its extreme position, the surfaces of the first inclined surface 311 and the second inclined surface 321 come into contact, acting as a stop surface to limit the second clamping member 32 from moving further, but the first inclined surface 311 and the second inclined surface 321 do not slide into contact. At this point, the two clamping members can clamp the line.

[0079] The third inclined surface 313 and the fourth inclined surface 323 maintain sliding contact. When an external force drives the second clamping member 32 to move relative to the first clamping member 31, the fourth inclined surface 323 can slide along the third inclined surface 313 to guide the oblique movement trajectory of the second clamping member 32 relative to the first clamping member 31.

[0080] Further, please continue to refer to Figures 1 to 4 In the embodiment of this application, the protrusion 310 is recessed with a groove 3101 on the side facing the second clamping member, and the first inclined surface 311 and the second inclined surface 321 constitute the bottom wall of the groove 3101.

[0081] The bottom wall of the mounting notch 320 has a protruding slide portion 3201 that is adapted to the slide groove 3101. The third inclined surface 313 and the fourth inclined surface 323 are constructed on the side of the slide portion 3201 facing the bottom wall of the slide groove 3101.

[0082] In this embodiment, the second mounting structure 3 adjusts the clamping space between the first clamping part and the second clamping part through the fitting and interlocking of the sliding groove 3101 and the sliding table part 3201, combined with the contact (non-sliding) of the first inclined surface 311 and the second inclined surface 321, the sliding contact of the third inclined surface 313 and the fourth inclined surface 323, the structural cooperation of the protrusion part 310 and the mounting notch 320, the motion constraint of the guide groove 34 and the guide post 35, and the restoring force of the reset member 33, thereby realizing the clamping and releasing of the camera mobile device cable.

[0083] The slide groove 3101 is recessed on the side of the protrusion 310 facing the second clamping member 32, forming a groove structure for accommodating the slide table 3201. The slide table 3201 protrudes from the bottom wall of the mounting notch 320 and is adapted to the slide groove 3101, and at least part of it can move within the slide groove 3101.

[0084] The engagement of the slide groove 3101 and the slide table 3201 enhances the connection stability of the first clamping member 31 and the second clamping member 32, and restricts the degree of freedom of movement of the second clamping member 32, allowing it to move only in a specific direction.

[0085] The bottom wall of the chute 3101 is composed of a first inclined surface 311 and a third inclined surface 313, which are connected and have opposite inclination angles (for example, the first inclined surface 311 is inclined upwards and the third inclined surface 313 is inclined downwards), forming a bottom wall structure similar to a "V", "U", or reverse wedge. It should be noted that there may be a transition surface connecting the first inclined surface 311 and the second inclined surface 321, and the transition surface may be parallel to the side wall 102.

[0086] The side of the slide section 3201 facing the bottom wall of the slide groove 3101 is composed of a second inclined surface 321 and a fourth inclined surface 323. The second inclined surface 321 corresponds to the first inclined surface 311, and the fourth inclined surface 323 corresponds to the third inclined surface 313, and they are also set at opposite angles.

[0087] As one of the preferred embodiments of the reset member 33 described above, in some embodiments, the reset member 33 proposed in this application includes:

[0088] A first tension spring 331, one end of which is connected to the bottom wall of the mounting groove 351, and the other end of which is connected to the bottom wall of the guide groove 34; or

[0089] A first magnetic component and a second magnetic component are provided. The first magnetic component is disposed in the mounting groove 351, and the second magnetic component is disposed in the guide groove 34.

[0090] In this embodiment, the reset member 33 can be configured with the following two structures: first, a first tension spring 331; second, a combination of a first magnetic element and a second magnetic element. The working principle of the two forms of the reset member 33, namely the first tension spring 331 and the magnetic element, will be explained in detail below.

[0091] Firstly, the working principle of the reset component 33 when it is the first tension spring 331:

[0092] The first tension spring 331 is housed within the mounting groove 351 of the guide post 35, with one end fixedly connected to the bottom wall of the mounting groove 351 and the other end fixedly connected to the bottom wall of the guide groove 34. The tension spring has a certain initial length in its natural state and generates a restoring force when stretched.

[0093] Initial state: The first tension spring 331 is in a natural, unstretched state, assuming that the first clamping member 31 and the second clamping member 32 are not clamping the line.

[0094] External force drive: When the second clamping member 32 is driven away from the first clamping member 31 by an external force, the guide post 35 slides along the guide groove 34, the distance between the bottom wall of the mounting groove 351 and the bottom wall of the guide groove 34 increases, the first tension spring 331 is stretched, and elastic potential energy is stored. At this time, the wire can be placed between the two clamping members.

[0095] Reset process: After the external force is removed, the first tension spring 331 contracts due to the release of elastic potential energy, generating a pulling force to pull the guide post 35 to slide along the guide groove 34 to the initial position, thereby driving the second clamping member 32 to move toward the first clamping member 31, and finally clamping the line.

[0096] Secondly, the working principle of the reset component 33 when it consists of the first magnetic component and the second magnetic component:

[0097] A first magnetic component is disposed within the mounting groove 351 of the guide post 35, and a second magnetic component is disposed within the guide groove 34. These two magnetic components can be magnets or magnetic materials, possessing magnetic properties of mutual attraction or repulsion. Depending on the design intent, the magnetic components are typically configured to attract each other to provide a restoring force.

[0098] When an external force drives the second clamping member 32 away from the first clamping member 31, the guide post 35 slides along the guide groove 34. The distance between the first magnetic element in the mounting groove 351 and the second magnetic element in the guide groove 34 increases, and the magnetic force weakens, but still maintains a certain attractive force. After the external force is removed, the magnetic attraction between the first and second magnetic elements drives the guide post 35 to slide along the guide groove 34, causing the second clamping member 32 to move towards the first clamping member 31.

[0099] This embodiment achieves effective reset of the second clamping member 32 by specifying the reset component 33 as a first tension spring 331 or a combination of a first magnetic element and a second magnetic element, combined with the structure of the guide post 35 mounting groove 351 and the guide groove 34. This design flexibly adapts to different needs, reflecting the diversity of mechanical and non-contact reset solutions.

[0100] Please continue to refer to Figure 3 As another preferred embodiment of the reset member 33 in the foregoing embodiments, in some embodiments, the reset member 33 proposed in this application includes a spring, one end of which abuts against the bottom wall of the mounting groove 351, and the other end of which abuts against the bottom wall of the guide groove 34; see reference Figure 2 and Figure 4 The camera mobile device mounting device also includes:

[0101] Locking member 4 is used to configure the first clamping member 31 and the second clamping member 32 into a relatively fixed state or a relatively movable state.

[0102] In this embodiment, the spring is housed within the mounting groove 351 of the guide post 35, with one end abutting against the bottom wall of the mounting groove 351 and the other end abutting against the bottom wall of the guide groove 34. The spring acts as an elastic element, providing restoring force.

[0103] The locking member 4 is a switchable mechanism that can configure the first clamping member 31 and the second clamping member 32 to be in a "relatively fixed state" or a "relatively movable state". For example, the locking member 4 can be a buckle, a locking wrench, or a locking rod, etc., and is not limited thereto.

[0104] The locking component 4 achieves adjustability and stability of the clamping state by cooperating with the elastic restoring force of the spring.

[0105] Initial state: The first clamping member 31 and the second clamping member 32 are not clamping the wire, and the clamping space is closed or nearly closed. The spring is in a compressed state. The locking member 4 can be in a relatively fixed state to maintain the closure of the clamping space.

[0106] Unlocking and opening the clamping space: The user operates the locking component 4 to switch it to a relatively movable state, releasing the fixation between the first clamping component 31 and the second clamping component 32. A spring drives the second clamping component 32 away from the first clamping component 31, the guide post 35 slides along the guide groove 34, the spring is released, and the clamping space opens, allowing the line to be placed between the first clamping component 31 and the second clamping component 32. Then, by manual drive or other driving methods, the first clamping component 31 is moved towards the second clamping component 32, compressing the spring. The user can then operate the locking component 4 to configure the two clamping components into a relatively fixed state.

[0107] Reference Figure 3 , Figure 4 and Figure 6 In some embodiments, the third inclined surface 313 proposed in this application embodiment is provided with a first through hole 3130, and the fourth inclined surface 323 is provided with a second through hole 3230 corresponding to the first through hole 3130.

[0108] The locking member 4 includes a handle portion 41 and a screw portion 42 connected to each other. The handle portion 41 is used to abut against the side of the second clamping member 32 facing away from the first clamping member 31. The end of the screw portion 42 away from the handle portion 41 passes through the first through hole 3130 and the second through hole 3230 in sequence to be threadedly connected to the side wall 102 of the mounting body 1.

[0109] In this embodiment, the third inclined surface 313 has a first through hole 3130, and the fourth inclined surface 323 has a second through hole 3230 corresponding to the first through hole 3130. These two holes can be aligned when the clamping member moves, providing a path for the locking member 4 to pass through. For example, the first through hole 3130 can be a slotted hole 1020. The locking member 4 consists of a handle portion 41 and a screw portion 42. The handle portion 41 is located on the side of the second clamping member 32 facing away from the first clamping member 31, for user operation; the screw portion 42 is a threaded rod-shaped structure, with its end away from the handle portion 41 passing through the second through hole 3230 and the first through hole 3130 in sequence, and connected to the side wall 102 of the mounting body 1 by threads. This fixes the first clamping member 31 and the second clamping member 32 relative to the side wall 102, i.e., the mounting body 1.

[0110] Furthermore, referring to Figure 1The side wall 102 of the mounting body proposed in this application embodiment has a waist-shaped hole 1020 that communicates with the interior of the mounting body. The locking component also includes a nut 43 disposed inside the mounting body. The end of the screw part away from the handle part 41 passes through the waist-shaped hole 1020 and extends into the interior of the mounting body to thread the nut 43. The nut 43 can abut against the inner side of the side wall 102.

[0111] In this embodiment, when the user rotates the handle 41 to cause the screw 42 to penetrate the side wall 102 of the mounting body 1 along the thread, it can be screwed into the nut 43 inside the mounting body 1 to achieve a threaded connection between the locking member 4 and the side wall 102 of the mounting body 1. Alternatively, the side wall 102 of the mounting body 1 can have a threaded hole, and the screw 42 can be threaded into the threaded hole. When the screw 42 is driven to move axially, the handle 41 presses against the second clamping member 32, and at the same time, the first clamping member 31 is clamped between the second clamping member 32 and the mounting body 1. At this time, the relative positions of the first clamping member 31 and the second clamping member 32 are locked and cannot move. When the user rotates the handle 41 in the opposite direction, causing the screw 42 to loosen and partially exit the side wall 102 of the mounting body 1, the clamping force of the handle 41 on the second clamping member 32 weakens, the constraint between the first clamping member 31 and the second clamping member 32 is released, and the second clamping member 32 can move relative to the first clamping member 31 under the action of the spring or other reset member 33.

[0112] When the nut 43 abuts against the side wall 102, the second mounting structure 3 can slide along the waist-shaped hole 1020 to change the position of the second mounting structure 3 relative to the mounting body 1, thereby adapting to different line positions of different photographic mobile devices.

[0113] Reference Figure 8 In some embodiments, the first mounting structure 2 proposed in this application includes two grippers 11 that are relatively spaced apart on both sides of the mounting body 1. The two grippers 11 are slidably connected to the mounting body 1. A receiving space for accommodating a photographic mobile device is formed between the two grippers 11 and the main plane 100. The two grippers 11 can move towards or away from each other to clamp or release the photographic mobile device in the receiving space.

[0114] In this embodiment, the first mounting structure 2 includes two grippers 11, which are located on both sides of the flat plate structure of the mounting body 1 and are spaced apart from each other along the main plane 100. The grippers 11 are typically components with a certain rigidity and clamping surface, capable of contacting and fixing photographic mobile devices (such as mobile phones, portable hard drives, etc.).

[0115] The two grippers 11 are connected to the mounting body 1 via a sliding mechanism (such as a slide rail, guide groove, or similar structure), allowing them to slide along a specific direction (usually horizontal) on the main plane 100. The two grippers 11 and the main plane 100 of the mounting body 1 enclose a receiving space for accommodating the photographic equipment. The size of the receiving space is determined by the distance between the two grippers 11.

[0116] As the two grippers 11 slide closer to each other along the mounting body 1, the width of the accommodating space decreases, and the gripping surfaces of the grippers 11 gradually contact the side of the photographic mobile device, applying a clamping force to fix the device.

[0117] As the two grippers 11 slide away from each other along the mounting body 1, the width of the accommodating space increases, the grippers 11 release from contact with the photographic device, and the device can be inserted or removed.

[0118] The sliding of the gripper 11 may be controlled by manual external force, spring drive, or locking mechanism, depending on the design of the embodiment.

[0119] Please continue to refer to Figure 8 Specifically, in some embodiments, the gripper 11 proposed in this application includes a first sliding portion 111 and a second sliding portion 112 spaced apart, and a clamping portion 113 connected to the first sliding portion 111 and the second sliding portion 112. At least a portion of the first sliding portion 111 and the second sliding portion 112 extends into the interior of the mounting body 1 and can slide relative to the mounting body 1; the clamping portion 113 is exposed outside the mounting body 1.

[0120] The camera mobile device mounting device also includes two second tension springs 5, and the first sliding part 111 of the two grippers 11 is elastically connected to the mounting body 1 through a second tension spring 5.

[0121] In this embodiment, each gripper 11 includes a first sliding portion 111 and a second sliding portion 112 spaced apart. These two portions are elongated structures that extend at least partially into the mounting body 1 and are connected to the mounting body 1 via a sliding mechanism (such as a groove 3101 or a guide rail). The first sliding portion 111 and the second sliding portion 112 together support the gripper 11, enabling it to slide smoothly on the mounting body 1.

[0122] The clamping part 113 is connected to the portion of the first sliding part 111 and the second sliding part 112 that is exposed outside the mounting body 1, and is used to directly contact and clamp the photographic mobile device. The clamping part 113 and the main plane 100 enclose a receiving space, the position of which is determined by the movement of the sliding parts. The first sliding part 111 and the second sliding part 112 extend into the interior of the mounting body 1 and can slide along a preset slide or groove inside the mounting body 1, ensuring that the entire clamp 11 moves along the horizontal direction of the mounting body 1 (parallel to the main plane 100).

[0123] The first sliding part 111 of each gripper 11 is elastically connected to the mounting body 1 via a second tension spring 5. One end of the tension spring is fixed to the first sliding part 111, and the other end is fixed to a point inside the mounting body 1 (e.g., an internal support column).

[0124] In the initial state, the second tension spring 5 has a certain length in its natural state, and its tension tends to pull the first sliding part 111 into the mounting body 1, thereby causing the entire gripper 11 (including the second sliding part 112 and the clamping part 113) to move towards each other. When an external force pulls the gripper 11 to move in opposite directions, the second tension spring 5 is stretched and stores elastic potential energy; after the external force is removed, the tension spring contracts, releases potential energy, and pulls the first sliding part 111 to drive the clamping part 113 connected to it to return to its initial position.

[0125] Reference Figure 9 In some embodiments, the mounting body 1 proposed in this application also includes a secondary plane 101 opposite to the main plane 100. The sidewall 102 of the mounting body 1 surrounds the periphery of the main plane 100 and the secondary plane 101. The secondary plane 101 is provided with a third mounting structure 6 for connecting external photographic equipment.

[0126] In this embodiment, the mounting body 1 is a flat plate structure. The main plane 100 is used to support the photographic mobile device, and the secondary plane 101 is located on the opposite side of the main plane 100, serving as a platform for connecting external photographic equipment. The side walls 102 surround the main plane 100 and the secondary plane 101, forming a stable overall structure. The third mounting structure 6 is disposed on the secondary plane 101, and its function is to mechanically connect the mounting body 1 to the external photographic equipment through a specific connection interface, ensuring that the two are relatively fixed and work together during photographic use.

[0127] The following lists several common camera interface types and analyzes their setup principles on the secondary plane 101:

[0128] Firstly, mounting holes (threaded holes): One or more threaded holes are provided on the secondary plane 101, commonly 1 / 4 inch-20 or 3 / 8 inch-16 (standard threads for photographic equipment). Working principle: The threaded holes match the screws on photographic equipment (such as the screws on tripods and ball heads). Users screw the screws into the threaded holes to achieve a secure connection. The internal thread design of the threaded holes provides high-strength mechanical fixing force. Applicable scenarios: Connecting tripods, stabilizers, extension rods, and other equipment requiring threaded fixing.

[0129] Secondly, the cold shoe interface: A cold shoe groove, typically a U-shaped metal or plastic groove, is provided on the secondary plane 101, conforming to standard cold shoe specifications (approximately 20mm wide), and has no electrical contacts. Working principle: The cold shoe interface allows the cold shoe base of photographic equipment (such as external microphones, LED lights, and monitors) to slide into the groove and be secured by the side wall 102 of the groove. If a fastening screw is provided, the equipment can be further tightened. Applicable scenarios: Connecting lightweight accessories, such as fill lights, microphones, or small monitors.

[0130] Thirdly, the hot shoe interface: A slot similar to the cold shoe is provided on the secondary plane 101, but with added electrical contacts, making it compatible with the camera's hot shoe (depending on whether the design includes contacts). Working principle: The hot shoe interface not only provides a mechanical connection but also transmits power or signals through the contacts. The hot shoe base of the equipment slides into the slot, and the contacts align to achieve functional connection. Applicable scenarios: Connecting devices that support the hot shoe protocol, such as flash units or electronic viewfinders.

[0131] Fourth, snap-fit ​​interface: A quick-release plate interface is provided on the secondary plane 101, such as a rectangular slot or snap-fit ​​structure compatible with the ACA standard. Working principle: The quick-release plate connects to the secondary plane 101 via a snap-fit ​​or sliding mechanism. Users can quickly install or remove it by pressing the release button or turning the knob. A spring or locking mechanism may be present within the slot to ensure stability. Applicable scenarios: Connecting to gimbals, tripods, or other devices that support quick-release systems.

[0132] Fifth, clamping structure: Description: A small clamping device, such as a jaw 11 with an adjustable knob or a spring clip, is installed on the secondary plane 101. Working principle: The clamping structure clamps the rod-shaped part of photographic equipment (such as a magic arm or bracket) by tightening the knob or using spring force, achieving flexible fixation. The clamping range is adjustable to accommodate objects of different thicknesses. Applicable scenarios: Connecting magic arms, brackets, or non-standard shaped photographic accessories.

[0133] Sixth, magnetic interface: A magnet or magnetic material is embedded in the secondary plane 101 to magnetically connect with photographic equipment having a magnetic base. Working principle: Magnetic force attracts the equipment to the secondary plane 101; the magnet strength must be sufficient to support the weight of the equipment. Positioning grooves or protrusions may be provided to prevent slippage. Applicable scenarios: Connecting small, lightweight devices, such as phone holders or mini lights.

[0134] The above description is only a part or preferred embodiment of this utility model. Neither the text nor the drawings should limit the scope of protection of this utility model. All equivalent structural transformations made using the content of this utility model specification and drawings under the overall concept of this utility model, or direct / indirect applications in other related technical fields, are included within the scope of protection of this utility model.

Claims

1. A mounting device for a photographic mobile device, characterized in that, include: The mounting body is flat and has a main plane and side walls connected to the periphery of the main plane. A first mounting structure is disposed on the main plane for mounting the photographic mobile device; The second mounting structure includes a first clamping member, a second clamping member, and a reset member. The first clamping member is disposed on the side wall and is connected to the second clamping member through the reset member. The cable of the photographic mobile device can be accommodated between the second clamping member and the first clamping member. The second clamping member is used to be driven by an external force to move toward or away from the first clamping member; the reset member is used to provide a force to restore the second clamping member.

2. The mounting device for photographic mobile equipment according to claim 1, characterized in that, The first clamping member has a first inclined surface that is inclined to the side wall, and the second clamping member has a second inclined surface that corresponds to the first inclined surface. One of the first inclined surface and the second inclined surface is provided with a guide groove, and the other of the two is provided with a guide post that is slidably inserted in the guide groove. The first clamping member further has a first clamping portion disposed on one side of the first inclined surface, and the second clamping member further has a second clamping portion disposed on one side of the second inclined surface, the second clamping portion being disposed at a distance from the first clamping portion.

3. The mounting device for photographic mobile equipment according to claim 2, characterized in that, The second clamping member has a mounting notch, and the first clamping member has a protrusion that mates with the mounting notch; The first inclined surface is formed on the side of the protrusion facing the second clamping member, and the second inclined surface is formed on the bottom wall of the mounting notch.

4. The mounting device for photographic mobile equipment according to claim 3, characterized in that, The first clamping member further has a third inclined surface that is inclined to the side wall; the second clamping member has a fourth inclined surface that corresponds to the third inclined surface; The third inclined surface is connected to the first inclined surface and is set at an opposite angle, and the fourth inclined surface is connected to the second inclined surface and is set at an opposite angle, so that when the second clamping member is driven by an external force to move toward or away from the first clamping member, the first inclined surface moves toward or away from the second inclined surface, and the fourth inclined surface slides along the third inclined surface.

5. The mounting device for photographic mobile equipment according to claim 4, characterized in that, The protrusion portion is recessed into a groove on the side facing the second clamping member, and the first inclined surface and the second inclined surface constitute the bottom wall of the groove; The bottom wall of the mounting notch is provided with a sliding platform portion adapted to the sliding groove, and the third inclined surface and the fourth inclined surface are constructed on the side of the sliding platform portion facing the bottom wall of the sliding groove.

6. The mounting device for photographic mobile equipment according to claim 4, characterized in that, The reset component includes: A first tension spring, one end of which is connected to the second clamping member, and the other end of which is connected to the bottom wall of the guide groove; or A first magnetic component and a second magnetic component, wherein the first magnetic component is disposed on the second clamping member and the second magnetic component is disposed on the guide groove.

7. The mounting device for photographic mobile equipment according to claim 4, characterized in that, The reset component includes a spring, one end of which abuts against the second clamping component, and the other end of which abuts against the bottom wall of the guide groove; The photographic mobile device mounting device also includes: A locking member is provided to configure the first clamping member and the second clamping member into a relatively fixed state or a relatively movable state.

8. The mounting device for photographic mobile equipment according to claim 7, characterized in that, The third inclined surface is provided with a first through hole, and the fourth inclined surface is provided with a second through hole corresponding to the first through hole; The locking member includes a handle portion and a screw portion that are connected to each other. The handle portion is used to abut against the side of the second clamping member opposite to the first clamping member. The end of the screw portion away from the handle portion passes through the first through hole and the second through hole in sequence to be threadedly connected to the side wall of the mounting body.

9. The mounting device for photographic mobile equipment according to claim 8, characterized in that, The side wall of the mounting body has a waist-shaped hole that communicates with the interior of the mounting body. The locking component also includes a nut disposed inside the mounting body. The end of the screw portion away from the handle portion passes through the waist-shaped hole and extends into the interior of the mounting body to thread the nut. The nut can abut against the inner side of the side wall.

10. The mounting device for photographic mobile equipment according to claim 1, characterized in that, The first mounting structure includes two grippers that are spaced apart on both sides of the mounting body. The two grippers are slidably connected to the mounting body. A receiving space for accommodating the photographic mobile device is formed between the two grippers and the main plane. The two grippers can move towards or away from each other to clamp or release the photographic mobile device in the receiving space.

11. The mounting device for photographic mobile equipment according to claim 10, characterized in that, The gripper includes a first sliding portion and a second sliding portion spaced apart, and a clamping portion connected to the first sliding portion and the second sliding portion. At least a portion of the first sliding portion and the second sliding portion extends into the interior of the mounting body and can slide relative to the mounting body; the clamping portion is exposed outside the mounting body. The photographic mobile device mounting device also includes two second tension springs, and the first sliding parts of the two grippers are elastically connected to the mounting body through a second tension spring.

12. The mounting device for photographic mobile equipment according to claim 1, characterized in that, The mounting body also includes a secondary plane opposite to the main plane. The sidewalls of the mounting body surround the periphery of the main plane and the secondary plane. The secondary plane is provided with a third mounting structure for connecting external photographic equipment.