Photographing shoulder stand

By employing an angle-adjustable back support assembly and a rotatable connection between the back support assembly and the shoulder support assembly in the photography shoulder mount, the problem of short adjustment stroke of the back support assembly is solved, enabling a wider range of position adjustment and stable support, thus improving the versatility and comfort of the equipment.

CN224315894UActive Publication Date: 2026-06-02SHENZHEN LEQI INNOVATION CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN LEQI INNOVATION CO LTD
Filing Date
2025-06-16
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The existing camera shoulder mount back support components have a short adjustment range, which cannot fully cover various body shape differences, thus limiting their application range and reducing the equipment's versatility.

Method used

The adjustable back support assembly and shoulder support assembly feature a rotatable connection between the back support and shoulder support components, increasing the adjustment range. A locking mechanism ensures stable locking, accommodating the body differences of users with varying heights and back thicknesses.

Benefits of technology

It expands the application range of photography shoulder mounts, improves versatility and user comfort, and ensures stable support for users of different body types and in complex shooting scenarios.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224315894U_ABST
    Figure CN224315894U_ABST
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Abstract

The utility model discloses a photography shoulder carrying frame, this photography shoulder carrying frame includes: shoulder carrying subassembly is equipped with the installation site for detachably installing photographic equipment, one end of shoulder carrying subassembly is equipped with back support connecting piece, angle adjustable back support subassembly is rotatable with back support connecting piece, and angle adjustable back support subassembly is equipped with the back support position for sticking to the user's back. In the utility model photography shoulder carrying frame, angle adjustable back support subassembly and back support connecting piece of shoulder carrying subassembly are rotatable, compared with traditional sliding connection mode, the adjusting stroke of back support subassembly is increased, so that back support subassembly can realize the position adjustment of greater range, and realize the adjustment of support angle, can fully adapt the body size difference of different height, back thickness user, expand the application range of photography shoulder carrying frame, improve the versatility of photography shoulder carrying frame.
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Description

Technical Field

[0001] This utility model relates to the field of photographic equipment technology, and in particular to a photographic shoulder carrier. Background Technology

[0002] In the field of photography, camera tripods are indispensable auxiliary shooting equipment. Their ability to effectively distribute the weight of the camera helps photographers achieve flexible movement and stable shooting in diverse scenarios such as news interviews and film and television shooting. As photographic technology continues to develop towards specialization and refinement, shooting scenarios are gradually expanding from traditional fixed modes to dynamic and complex environments. Users are placing higher demands on the functionality of camera tripods, with comfort and convenience becoming key indicators for evaluating the quality of the equipment.

[0003] Currently, most photographic shoulder mounts employ a design where a back support component is integrated at the end of the shoulder support assembly. During use, the back support component supports the photographer's back, reducing shoulder strain and improving shooting comfort. Furthermore, the connector between the back support and shoulder support components uses a sliding connection, allowing for position adjustment by sliding along the connector to accommodate users of different body types.

[0004] However, this adjustment method has significant limitations. Its adjustment range is short, which cannot fully cover various body shape differences and cannot meet the usage requirements of users with different heights and back thicknesses. This limits the application range of the photography shoulder mount and reduces the versatility of the equipment. Utility Model Content

[0005] The main purpose of this invention is to propose a photographic shoulder carrier that aims to solve the technical problem of short adjustment stroke of the back support component of existing photographic shoulder carriers.

[0006] To achieve the above objectives, this utility model proposes a photographic shoulder mount, which includes:

[0007] The shoulder-mounted assembly has a mounting position for detachably mounting photographic equipment, and one end of the shoulder-mounted assembly has a back support connector;

[0008] An angle-adjustable back support assembly is rotatably connected to the back support connector, and the angle-adjustable back support assembly is provided with a back support position for conforming to the user's back.

[0009] Optionally, the angle-adjustable backrest assembly includes:

[0010] A back support frame is rotatably connected to the back support connector;

[0011] A back support plate is provided on the back support frame and is used to allow the user's back to fit comfortably.

[0012] Optionally, the camera shoulder mount also includes:

[0013] A locking assembly is disposed between the back support frame and the back support connector. The locking assembly is used to lock the back support frame to restrict the rotation of the back support frame or to unlock the back support frame to allow the rotation of the back support frame.

[0014] Optionally, the locking assembly includes:

[0015] A toothed disc assembly is located between the back support frame and the back support connector. The toothed disc assembly includes a first toothed disc and a second toothed disc arranged opposite to each other. The first toothed disc is disposed on the back support frame, and the second toothed disc is disposed on the back support connector. The first toothed disc and the second toothed disc are separably engaged through a meshing structure.

[0016] Fasteners, passing through the back support and the first and second toothed discs and threadedly engaged with the back support connector, are configured to change their tightness in response to external operation, such that the first and second toothed discs are tightly engaged to prevent relative rotation between them or that the first and second toothed discs are disengaged to allow relative rotation between them.

[0017] Optionally, the locking assembly further includes:

[0018] A knob is connected to one end of the fastener, and the knob is used to drive the fastener to rotate.

[0019] Optionally, a first connecting portion is provided on the end face of one end of the back support connector, and an accommodating space is formed between the first connecting portion and the end face.

[0020] The back support is provided with a second connecting part adapted to the accommodating space. The second connecting part is located in the accommodating space and is rotatably connected to the first connecting part.

[0021] Optionally, the surface of the second connecting part is provided with a protrusion, which is used to contact the end face of one end of the back support connector to limit the extreme rotation angle of the back support frame.

[0022] Optionally, the back support plate is rotatable.

[0023] Optionally, the back support frame is provided with a hinge seat, and the back support plate is hinged to the hinge seat. The rotation direction of the back support plate is parallel to the rotation direction of the back support frame.

[0024] Optionally, the hinge seat is hinged to the back support, and the rotation direction of the hinge seat is perpendicular to the rotation direction of the back support plate.

[0025] Optionally, the angle-adjustable back support assembly is located at one end of the back support connector, and the other end of the back support connector is rotatably connected to the shoulder support assembly.

[0026] In this utility model of a photography shoulder support, the back support connector between the angle-adjustable back support component and the shoulder support component is set to be rotatable. Compared with the traditional sliding connection method, this increases the adjustment stroke of the angle-adjustable back support component, allowing the angle-adjustable back support component to achieve a wider range of position adjustment and support angle adjustment. This can fully adapt to the body differences of users with different heights and back thicknesses, expand the application range of the photography shoulder support, and improve its versatility. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of a photographic shoulder carrier in one embodiment of the present invention;

[0028] Figure 2 for Figure 1 A schematic diagram of the photographic shoulder mount from another perspective in the embodiment;

[0029] Figure 3 for Figure 2 Cross-sectional view of a Chinese photographic shoulder-mounted frame AA;

[0030] Figure 4 This is an exploded view of a photographic shoulder mount according to one embodiment of the present invention;

[0031] Figure 5 This is an exploded view of a photographic shoulder mount according to another embodiment of the present invention. Detailed Implementation

[0032] 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 a part of the embodiments of this utility model, and not all of them. 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.

[0033] 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.

[0034] 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.

[0035] 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.

[0036] This utility model embodiment proposes a photographic shoulder mount, referring to... Figure 1 The camera rig includes:

[0037] The shoulder-mounted assembly 100 has a mounting position for detachably mounting photographic equipment, and one end of the shoulder-mounted assembly 100 has a back support connector 110;

[0038] An adjustable back support assembly 200 is rotatably connected to a back support connector 110, and the adjustable back support assembly 200 is provided with a back support position for conforming to the user's back.

[0039] In this embodiment, the camera shoulder mount mainly consists of a shoulder mount assembly 100 and an angle-adjustable back support assembly 200. Through structural design and coordinated operation, these components achieve efficient shooting assistance functions. The shoulder mount assembly 100, as the core structure supporting the photographic equipment (such as a camera), can be made of high-strength aerospace-grade aluminum alloy, formed using precision CNC machining. This ensures structural strength while effectively reducing its weight, and the surface is anodized, providing excellent wear resistance and corrosion resistance.

[0040] The top of the shoulder mount assembly 100 features a mounting position for detachably mounting photographic equipment. This mounting position can employ a common quick-release plate structure, compatible with the photographic equipment or its external accessories, allowing for quick and secure mounting of the equipment onto the shoulder mount assembly 100. For example, the quick-release plate surface has standard 1 / 4-inch and 3 / 8-inch threaded holes, compatible with the bottom screw interfaces of most SLR cameras, mirrorless cameras, and professional camcorders on the market. Additionally, the quick-release plate is equipped with anti-dislodge clips on both sides; once the photographic equipment is in place, the clips automatically lock to prevent accidental detachment. For disassembly, simply press the clip release button to easily remove the equipment, meeting the needs of quick equipment change in different shooting scenarios. Of course, this is merely an example and not a limitation. The end or side of the shoulder mount assembly 100 may also feature multiple 1 / 4-inch, 3 / 8-inch, or other types of expansion interfaces for mounting auxiliary shooting equipment such as follow focus devices, monitors, and microphones, further expanding shooting capabilities.

[0041] like Figure 1 As shown, one end of the shoulder-carrying assembly 100 is provided with a back support connector 110, which is used to connect the angle-adjustable back support assembly 200, thus realizing the setting of the angle-adjustable back support assembly 200. Taking the front-back and left-right directions when the user carries this photography shoulder-carrying rig as a reference direction, the back support connector 110 is located at the rear end of the shoulder-carrying assembly 100, and the angle-adjustable back support assembly 200 is connected to the back support connector 110 and is correspondingly located at the rear end of the shoulder-carrying assembly 100. When the user uses this photography shoulder-carrying rig, the angle-adjustable back support assembly 200 is located behind the user, and the back support position of the angle-adjustable back support assembly 200 corresponds to and fits against the user's back to provide support. The back support position can be composed of a flat support structure equipped with a soft pad to fit against the human back and provide back support. In this embodiment, the structure and shape of the angle-adjustable back support assembly 200 can be varied, as long as it can provide a back support position, which is within the scope of application of this solution, and this embodiment does not limit it.

[0042] The adjustable back support assembly 200 and the back support connector 110 are rotatably connected. As an example, the connection can be configured such that a pivot is provided on the back support connector 110, and the adjustable back support assembly 200 is fitted onto the pivot to form a rotatable engagement, allowing the adjustable back support assembly 200 to rotate relative to the back support connector 110. Other connection structures may also be used, which will be described in subsequent embodiments.

[0043] When using this camera shoulder mount, the shoulder-mounted component 100 is positioned with the adjustable back support component 200 located behind the user. The user can adjust the position of the back support by rotating the adjustable back support component 200 relative to the back support connector 110, according to their height, back thickness, and other body characteristics, ensuring a close fit between the back support and the back. Once adjusted to a suitable position, the adjustable back support component 200 can be locked in place if it has a locking mechanism. During shooting, the adjustable back support component 200 effectively distributes the camera's weight through the back support, reducing shoulder strain.

[0044] The key difference lies in the adjustment mechanism. Sliding adjustment relies on the linear sliding of the angle-adjustable backrest assembly 200 along the connector, with its travel limited by the length of the connector. Once the connector reaches its extreme positions at both ends, further adjustment is impossible. In contrast, rotational adjustment, centered on a pivot axis, allows the angle-adjustable backrest assembly 200 to rotate in a circle or arc around the axis. Unlike sliding adjustment, which has linear distance limitations, rotation angles can be flexibly varied as long as space permits. The adjustment travel is not constrained by the length of the connector in a single direction, thus enabling a wider range of adjustments.

[0045] In other words, sliding adjustment can only be performed on a fixed straight line, and its adjustment range is limited to the area covered by this line. Rotation adjustment, on the other hand, moves along an arc or circle around the axis of rotation. Changing the angle from different directions and angles adjusts the position of the back support component 200. Under the same spatial conditions, rotation adjustment covers a much wider area than sliding adjustment, accommodating the body shape differences of users of different heights and back thicknesses in multiple dimensions such as front-to-back and vertical dimensions, thus offering a longer adjustment range and a greater adjustment distance.

[0046] In this embodiment of the photography shoulder support, the back support connector 110 of the angle-adjustable back support component 200 and the shoulder support component 100 is configured to be rotatably connected. Compared with the traditional sliding connection method, this increases the adjustment stroke of the angle-adjustable back support component 200, allowing the angle-adjustable back support component 200 to achieve a wider range of position adjustment and support angle adjustment. This can fully adapt to the body differences of users with different heights and back thicknesses, expand the application range of the photography shoulder support, and improve the versatility of the photography shoulder support.

[0047] In some embodiments, refer to Figure 1 and Figure 2 The angle-adjustable backrest assembly 200 includes:

[0048] The back support 210 is rotatably connected to the back support connector 110;

[0049] Backrest 220 is provided on backrest 210 and is used to provide a backrest for the user to fit against.

[0050] In this embodiment, the angle-adjustable back support assembly 200 includes a back support frame 210 and a back support plate 220. Specifically, one end of the back support is rotatably connected to the back support connector 110, and the other end of the back support is provided with the back support plate 220. The back support frame 210 is rotatably connected to the back support connector 110, providing a rotatable basic structure for the angle-adjustable back support assembly 200, thus maintaining the core characteristic of the overall angle-adjustable back support assembly 200 being rotatable and adjustable. The back support plate 220 is disposed on the back support frame 210, and its surface, as the part that directly contacts the user's back, provides comfortable support for the user's back through a reasonable shape design and material selection.

[0051] The back support 210 is made of a high-strength and lightweight alloy material, such as titanium-aluminum alloy, which reduces the overall weight while ensuring structural strength, thus alleviating the photographer's burden. The shape of the back support 210 is designed according to mechanical principles, which can evenly distribute the pressure transmitted by the back support plate 220 and avoid stress concentration. As an example, a high-precision rotating bushing is provided at the part where the back support 210 connects to the back support connector 110. The bushing is equipped with a ball bearing, which fits tightly with the rotating shaft on the back support connector 110, allowing the back support 210 to rotate flexibly and smoothly around the rotating shaft, and to remain stable and wobble-free during rotation.

[0052] The back support plate 220 features an ergonomically designed curved surface that precisely conforms to the curves of the human back. It is made of highly elastic and breathable sponge material, covered by a skin-friendly, wear-resistant, and breathable fabric, ensuring good back support while effectively preventing stuffiness during prolonged use. As an example, the back support plate 220 is secured to the back support frame 210 via multiple adjustable clips or screws. The position and angle of the back support plate 220 on the back support frame 210 can be fine-tuned according to actual usage needs to accommodate the specific shape and preferences of different users' backs. Furthermore, the back support plate 220 features an anti-slip texture to prevent slippage between the back support plate 220 and the back during shooting due to body movement, thus maintaining support.

[0053] In this embodiment, the structural design of splitting the angle-adjustable back support assembly 200 into a back support frame 210 and a back support plate 220 ensures a wide range of adjustment functions while further enhancing the user's comfort experience through the targeted design of the back support plate 220. It also facilitates the maintenance and replacement of different components of the angle-adjustable back support assembly 200.

[0054] In some embodiments, refer to Figures 1 to 3 The camera rig also includes:

[0055] A locking assembly 300 is disposed between the back support 210 and the back support connector 110. The locking assembly 300 is used to lock the back support 210 to restrict the rotation of the back support 210 or to unlock the back support 210 to allow the back support 210 to rotate.

[0056] In this embodiment, the locking component 300 has a two-way function. First, after the photographer adjusts the back support 210 relative to the back support connector 110 according to their own body shape, so that the back support plate 220 is precisely fitted to the back, the locking component 300 can be used to lock the back support 210, restricting its rotation and ensuring that the angle-adjustable back support component 200 always maintains a stable position during the shooting process, avoiding displacement of the back support plate 220 due to accidental touch or equipment shaking, which would affect the support effect and shooting stability. Second, when it is necessary to readjust the position of the angle-adjustable back support component 200 to adapt to different shooting postures or change users, the locking component 300 can be released from the restriction on the back support 210 by unlocking, allowing the back support 210 to rotate freely and achieve flexible adjustment.

[0057] The locking component 300 can be implemented in various ways, such as:

[0058] In some embodiments, refer to Figure 3 and Figure 4 The locking assembly 300 includes:

[0059] The gear assembly 310 is located between the back support frame 210 and the back support connector 110. The gear assembly 310 includes a first gear 311 and a second gear 312 disposed opposite to each other. The first gear 311 is disposed on the back support frame 210 and the second gear 312 is disposed on the back support connector 110. The first gear 311 and the second gear 312 can be separably engaged through a meshing structure.

[0060] Fastener 320 passes through the back support 210 and the first gear 311 and the second gear 312, and is threadedly engaged with the back support connector 110. Fastener 320 is configured to change its tightness in response to external operation, such that the first gear 311 and the second gear 312 are tightly engaged to prevent relative rotation, or that the first gear 311 and the second gear 312 are disengaged to allow relative rotation. Fastener 320 may be a fastening screw, inserted into a threaded hole in the back support connector 110 to form a threaded engagement.

[0061] When using a camera shoulder mount, the fastener 320 is initially loose, and the first gear 311 and the second gear 312 are not tightly engaged. At this time, the back support 210 can rotate freely relative to the back support connector 110. The photographer can manually rotate the back support 210 according to their height, shooting posture, and other needs, thereby adjusting the back support plate 220 to a suitable position and angle so that the back support plate 220 fits snugly against the back.

[0062] After the position of the angle-adjustable back support assembly 200 is adjusted, use a tool or manually tighten the fastener 320. As the fastener 320 is tightened, the pressure it applies to the first toothed disc 311 and the second toothed disc 312 gradually increases, forcing the two discs to mesh tightly. Due to the interlocking action between the teeth, the first toothed disc 311 and the second toothed disc 312 cannot rotate relative to each other, thus firmly locking the back support 210 and ensuring that the angle-adjustable back support assembly 200 remains stable during shooting and will not shift position due to equipment vibration, photographer movement, or other factors.

[0063] When the shooting scene changes or the user changes and the position of the adjustable back support assembly 200 needs to be readjusted, the fastener 320 is loosened in the reverse direction. As the fastener 320 loosens, its pressure on the two toothed discs decreases, and the meshing state of the first toothed disc 311 and the second toothed disc 312 gradually disengages, allowing the back support 210 to return to a free-rotating state. The photographer can then flexibly adjust the adjustable back support assembly 200 again to adapt to new usage needs.

[0064] In this embodiment, the strong resistance generated by the tight meshing between the gears effectively resists various external forces during shooting, ensuring the adjustable back support component 200 remains stable and does not shift. This provides stable back support for the photographer, especially in long-duration or complex shooting scenarios, effectively guaranteeing the stability of the captured image and improving shooting quality. Furthermore, switching between locked and unlocked states is quick and easy with a simple operation of the fastener 320. Compared to traditional locking methods, no complicated steps are required, allowing the photographer to adjust the position of the adjustable back support component 200 in a short time, greatly improving shooting efficiency, meeting the need for rapid equipment changes in different shooting scenarios, and enhancing the versatility of the camera shoulder mount.

[0065] In addition to the aforementioned implementation structure, the locking assembly 300 can also adopt other forms. For example, as an example, the locking assembly 300 can consist of a locking knob, a linkage rod, a wedge-shaped block, and a slot. The locking knob is located on the outside of the back support 210 for easy one-handed operation by the photographer, and its surface is designed with an anti-slip texture to ensure a stable grip during operation.

[0066] The locking knob is threaded to the back support 210 and has a through hole inside. One end of the linkage rod passes through this through hole and is fixedly connected to it. The wedge-shaped locking block is located at the rotatable connection between the back support 210 and the back support connector 110, and is fixedly connected to the other end of the linkage rod. Its wedge-shaped inclined surface faces the back support connector 110. The back support connector 110 has an annular groove corresponding to the position of the wedge-shaped locking block. The shape of the groove is adapted to the wedge-shaped locking block, and the inner wall of the groove is finely polished to ensure smooth insertion and disengagement of the locking block. When the locking knob is rotated, the linkage rod can be moved axially, thereby pushing or pulling the wedge-shaped locking block in and out of the groove.

[0067] In some embodiments, refer to Figure 3 and Figure 4 The locking assembly 300 also includes:

[0068] Knob 330 is connected to one end of fastener 320 and is used to drive fastener 320 to rotate.

[0069] In this embodiment, the locking assembly 300 is equipped with a knob 330 to further improve the ease of operation of the locking assembly 300 based on the original structure. Specifically, the knob 330 is connected to one end of the fastener 320. Through linkage with the fastener 320, external operation on the knob 330 is converted into rotation of the fastener 320, thereby controlling the tightness of the fastener 320. Specifically, when the photographer rotates the knob 330, the knob 330 drives the fastener 320 to rotate synchronously, realizing the operation of tightening or loosening the fastener 320, thereby causing the first gear 311 and the second gear 312 to engage or disengage, completing the locking and unlocking of the back support 210. This design transforms the original method of operating the fasteners 320, which required tools such as wrenches and screwdrivers, into directly rotating the knob 330 manually. This simplifies the operation process and allows photographers to switch between locking and adjusting the angle-adjustable back support component 200 more quickly and conveniently during shooting. This further optimizes the user experience of the photography shoulder mount and meets the needs of efficient and flexible photography work.

[0070] In this technical solution, the locking component 300 significantly improves the performance of the camera shoulder mount. For example, from a stability perspective, the locking function effectively prevents accidental displacement of the angle-adjustable back support component 200 during shooting, ensuring that the back support plate 220 always provides stable support for the photographer. Especially during dynamic or complex shooting environments, this greatly reduces the instability of the shooting image caused by the camera shoulder mount's swaying, thus improving shooting quality. In terms of flexibility, unlocking allows the back support 210 to rotate freely, making it convenient for photographers to quickly adjust the position of the angle-adjustable back support component 200 according to different shooting postures, scene requirements, and user body size differences, meeting diverse usage scenarios and improving the versatility of the camera shoulder mount.

[0071] In some embodiments, refer to Figure 1 and Figure 4 The end face of one end of the back support connector 110 is provided with a first connecting part 111, and an accommodating space 112 is formed between the first connecting part 111 and the end face.

[0072] The back support 210 is provided with a second connecting part 211 adapted to the accommodating space 112. The second connecting part 211 is located in the accommodating space 112 and is rotatably connected to the first connecting part 111.

[0073] In this embodiment, a first connecting portion 111 protrudes from one end face of the back support connector 110, and an accommodating space 112 is cleverly constructed between the first connecting portion 111 and the end face. In the lateral direction of the first connecting portion 111, the accommodating space 112 is located on one side of the first connecting portion 111. One end of the back support frame 210 (specifically, the top of the back support frame 210) is provided with a second connecting portion 211 that is adapted to the shape, size and height of the accommodating space 112. During assembly, the second connecting portion 211 is precisely embedded into the accommodating space 112 and forms a rotatable connection with the first connecting portion 111.

[0074] This structural design integrates the rotating connection of the angle-adjustable back support assembly 200 within the accommodating space 112. Through the tight fit between the first connecting part 111 and the second connecting part 211, the back support connector 110 and the back support frame 210 achieve a rotatable connection while effectively reducing external protruding structures and avoiding space occupation issues caused by component expansion. Compared to traditional connection methods, this design eliminates the need for a complex external rotating mechanism, making the connection between the angle-adjustable back support assembly 200 and the shoulder-mount assembly 100 more compact. This reduces the overall size of the photography shoulder-mount, facilitating equipment storage and carrying, and also lowers the risk of damage from exposed components during use, thus improving the practicality and reliability of the photography shoulder-mount.

[0075] In some embodiments, refer to Figure 1The surface of the second connecting part 211 is provided with a protrusion 2111, which is used to contact the end face of one end of the back support connector 110 to limit the extreme rotation angle of the back support 210.

[0076] In this embodiment, a protrusion 2111 is added to the surface of the second connecting portion 211 of the back support 210. This protrusion 2111 corresponds to the end face of one end of the back support connector 110. When the back support 210 is rotated, the protrusion 2111 rotates synchronously. When the back support 210 rotates to its limit angle (which can be the limit angle in the rearward rotation direction), the protrusion 2111 contacts the end face of the back support connector 110 and abuts against it, thus precisely limiting the rotation angle range of the back support 210 through mechanical limiting.

[0077] This technical solution, through a simple and ingenious structural design, effectively avoids problems such as decreased shooting stability caused by excessive rotation of the back support 210 without changing the original core structure of the rotatable connection between the back support connector 110 and the back support frame 210. It not only ensures the flexible adjustment of the angle-adjustable back support component 200, but also provides it with a reliable angle limiting protection mechanism, further improving the rationality, safety and controllability of the overall structure of the camera shoulder mount, and meeting the needs for precise adjustment of the angle-adjustable back support component 200 in different shooting scenarios.

[0078] In some embodiments, refer to Figure 2 The back support plate 220 is rotatable. In this embodiment, making the back support plate 220 rotatable further enhances the adaptability and comfort of the angle-adjustable back support assembly 200. Specifically, the back support plate 220 is connected to the back support frame 210 via a specific rotating connection structure, allowing it to be angled relative to the back support frame 210. When a user uses a camera shoulder mount, they can flexibly rotate the back support plate 220 according to their back shape, shooting posture, and the needs of different shooting scenarios. Alternatively, the back support plate 220 can rotate and adjust itself according to the user's back shape and shooting posture, changing the angle of contact with the back, thereby allowing the back support plate 220 to better conform to the back curve and distribute the pressure on the back.

[0079] This embodiment, without changing the overall structure of the angle-adjustable back support component 200, increases the freedom of angle adjustment of the back support plate 220, effectively solving the problem of poor fit caused by differences in human back shape and changes in shooting posture, further optimizing the support effect of the angle-adjustable back support component 200, improving the versatility and comfort of the photography shoulder carrier, and meeting the diverse shooting needs of photographers.

[0080] In some embodiments, refer to Figure 2 and Figure 5The back support frame 210 is equipped with a hinge seat 212, and the back support plate 220 is hingedly connected to the hinge seat 212. The rotation direction of the back support plate 220 is parallel to the rotation direction of the back support frame 210. In this embodiment, the hinge seat 212 is provided on the back support frame 210, and the back support plate 220 is connected to the hinge seat 212 through a hinge structure, limiting the rotation direction of the back support plate 220 to be parallel to the rotation direction of the back support frame 210. This design allows the back support plate 220 and the back support frame 210 to cooperate during adjustment. When the back support frame 210 rotates relative to the back support connector 110 to adapt to different user body shapes, the back support plate 220 can simultaneously rotate in the parallel direction for adjustment. Based on the actual shape of the user's back and shooting posture, the fitting angle with the back can be further fine-tuned to achieve a more precise support effect.

[0081] In some embodiments, refer to Figure 5 The hinge seat 212 is hinged to the back support 210, and the rotation direction of the hinge seat 212 is perpendicular to the rotation direction of the back support plate 220.

[0082] In this embodiment, the hinge seat 212 and the back support 210 are hinged together, and the rotation direction of the hinge seat 212 is perpendicular to the rotation direction of the back support plate 220. This structural design creates a two-dimensional adjustment system: when the back support 210 rotates relative to the back support connector 110 in the first direction to adapt to different user body shapes, the hinge seat 212 can rotate independently in the second direction (perpendicular to the first direction), driving the back support plate 220 to achieve horizontal angle adjustment; at the same time, the back support plate 220 itself can also be finely adjusted in the second direction, so that the back support plate 220 can conform to the complex physiological curves of the user's back and the back shape under different shooting postures from multiple dimensions.

[0083] Among them, such as Figure 5 As shown, two return springs 213 can also be provided on the back support 210. The two return springs 213 are located on opposite sides of the hinge position between the hinge seat 212 and the back support 210, and act on the hinge seat 212. The two return springs 213 are used to provide an elastic force to the hinge seat 212 to return it to its original position. When the hinge seat 212 rotates to change its angle to adapt to the back shape or shooting posture, the return springs 213 will undergo elastic deformation and store elastic potential energy. When the adjustment operation is completed and no external force continues to act on the hinge seat 212, the return springs 213 release the elastic potential energy, pushing the hinge seat 212 to automatically return to the initial preset angle or intermediate balance position, which facilitates the next quick adjustment or ensures the regularity of the angle-adjustable back support assembly 200 in the non-use state.

[0084] In some embodiments, refer to Figure 1 and Figure 2An angle-adjustable back support assembly 200 is located at one end of the back support connector 110, and the other end of the back support connector 110 is rotatably connected to the shoulder support assembly 100.

[0085] In this embodiment, the rotatable connection structure between the back support connector 110 and the shoulder carry assembly 100 can be a rotating shaft structure, etc., and this embodiment is not limited to this. The back support connector 110, through its rotatable connection with the shoulder carry assembly 100, can rotate relative to the shoulder carry assembly 100. When the camera shoulder carry is not in use, the back support connector 110 can be rotated to cause the angle-adjustable back support assembly 200 to fold relative to the shoulder carry assembly 100, thus achieving storage of the camera shoulder carry and effectively reducing the overall space occupied by the camera shoulder carry.

[0086] 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 photographic shoulder mount, characterized in that, include: The shoulder-mounted assembly has a mounting position for detachably mounting photographic equipment, and one end of the shoulder-mounted assembly has a back support connector; An angle-adjustable back support assembly is rotatably connected to the back support connector, and the angle-adjustable back support assembly is provided with a back support position for conforming to the user's back.

2. The photographic shoulder mount according to claim 1, characterized in that, The angle-adjustable back support assembly includes: A back support frame is rotatably connected to the back support connector; A back support plate is provided on the back support frame and is used to allow the user's back to fit comfortably.

3. The photographic shoulder mount according to claim 2, characterized in that, Also includes: A locking assembly is disposed between the back support frame and the back support connector. The locking assembly is used to lock the back support frame to restrict the rotation of the back support frame or to unlock the back support frame to allow the rotation of the back support frame.

4. The photographic shoulder mount according to claim 3, characterized in that, The locking assembly includes: A toothed disc assembly is located between the back support frame and the back support connector. The toothed disc assembly includes a first toothed disc and a second toothed disc arranged opposite to each other. The first toothed disc is disposed on the back support frame, and the second toothed disc is disposed on the back support connector. The first toothed disc and the second toothed disc are separably engaged through a meshing structure. Fasteners, passing through the back support and the first and second toothed discs and threadedly engaged with the back support connector, are configured to change their tightness in response to external operation, such that the first and second toothed discs are tightly engaged to prevent relative rotation between them or that the first and second toothed discs are disengaged to allow relative rotation between them.

5. The photographic shoulder mount according to claim 4, characterized in that, The locking assembly further includes: A knob is connected to one end of the fastener, and the knob is used to drive the fastener to rotate.

6. The photographic shoulder mount according to any one of claims 2 to 5, characterized in that, The end face of one end of the back support connector is provided with a first connecting part, and an accommodating space is formed between the first connecting part and the end face. The back support is provided with a second connecting part adapted to the accommodating space. The second connecting part is located in the accommodating space and is rotatably connected to the first connecting part.

7. The photographic shoulder mount according to claim 6, characterized in that, The surface of the second connecting part is provided with a protrusion, which is used to contact the end face of one end of the back support connector to limit the extreme rotation angle of the back support frame.

8. The photographic shoulder mount according to any one of claims 2 to 5, characterized in that, The back support plate is rotatable.

9. The photographic shoulder mount according to claim 8, characterized in that, The back support frame is provided with a hinge seat, and the back support plate is hinged to the hinge seat. The rotation direction of the back support plate is parallel to the rotation direction of the back support frame.

10. The photographic shoulder mount according to claim 9, characterized in that, The hinge seat is hinged to the back support, and the rotation direction of the hinge seat is perpendicular to the rotation direction of the back support plate.

11. The photographic shoulder mount according to any one of claims 1 to 5, characterized in that, The angle-adjustable back support assembly is located at one end of the back support connector, and the other end of the back support connector is rotatably connected to the shoulder support assembly.