A camera support assembly
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本实用新型的目的在于克服现有技术中相机支撑组件无法兼容两种不同标准设备的不足,提供一种相机支撑组件,能够兼容两种不同标准的设备
[0019]1、本实用新型的一种相机支撑组件,通过将具有第一滑轨的第一快装板和具有第二滑轨的第二快装板安装在同一安装座上,能够兼容两种不同标准的设备安装;且能够通过第一快拆组件和第二快拆组件快速稳固相机。
Smart Images

Figure CN224622557U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of shooting auxiliary equipment, and more specifically, to a camera support component. Background Technology
[0002] In the field of professional photography and videography, quick-release systems have become a core component connecting cameras to tripods, heads, sliders, stabilizers, and other support equipment. They achieve convenient switching between "quick-mount" and "quick-release" modes through a sliding and locking mechanism between a slider fixed to the support equipment and a quick-release plate fixed to the bottom of the camera. Currently, several quick-release system standards exist on the market, with the Manfrotto quick-release system and the Arca-Swiss quick-release system being the most widely used.
[0003] However, these two mainstream standards are incompatible in terms of mechanical structure, size, and locking method, leading to significant limitations. Users who own equipment based on different standards (e.g., tripods using the Manfrotto standard, while sliders or handheld stabilizers use the Arca standard) must equip the same camera with multiple different quick-release plates or use adapters. Frequent disassembly and replacement of quick-release plates is not only cumbersome and time-consuming, undermining the core advantage of the quick-release system, but also increases the risk of lost accessories. Utility Model Content
[0004] The purpose of this invention is to overcome the shortcomings of existing camera support components that cannot be compatible with two different standard devices, and to provide a camera support component that can be compatible with two different standard devices.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0006] A camera support assembly is provided, including a first quick-release plate, a second quick-release plate, a mounting base, a first quick-release component, and a second quick-release component. The first quick-release plate has first slide rails on both sides, and the first slide rails are slidably connected to the second quick-release plate. The first quick-release plate is detachably connected to the second quick-release plate via the first quick-release component. The second quick-release plate has second slide rails of different specifications on both sides, and the second slide rails are slidably connected to the mounting base. The second quick-release plate is detachably connected to the mounting base via the second quick-release component.
[0007] This utility model's camera support assembly, in use, involves installing the mounting base onto the equipment. Both the first and second quick-release plates can independently support cameras and other photographic / video equipment. The camera is mounted on either the first quick-release plate with a first slide rail or the second quick-release plate with a second slide rail, depending on the standard of the equipment. After installation, the camera's position is adjusted by sliding the first and second quick-release plates. Following adjustment, the first and second quick-release components are used for quick and stable camera mounting. When changing to equipment of different standards, simply disassemble the camera and camera support assembly as a whole, install the entire assembly on the equipment of the other standard, and then mount the camera on the required standard quick-release plate. By mounting the first quick-release plate with the first slide rail and the second quick-release plate with the second slide rail on the same mounting base, it is compatible with the installation of equipment of two different standards; and the first and second quick-release components quickly and securely hold the camera.
[0008] Furthermore, the second quick-release plate is provided with a recessed groove, which includes a mounting groove and a first sliding groove for sliding connection with the first slide rail. The first sliding groove is located on both sides of the mounting groove. The first quick-release plate is located within the mounting groove, and the bottom surface of the first quick-release plate is lower than the top surface of the second quick-release plate. The first quick-release assembly is at least partially located within the mounting groove. By providing a recessed groove on the second quick-release plate, the two quick-release plates are stacked, reducing height and saving space. This also ensures that the lower second quick-release plate maintains a flat upper surface capable of independently supporting the shooting equipment, maximizing the space available for installing and adjusting the shooting equipment.
[0009] Furthermore, the mounting groove and the first sliding groove form a U-shape, and the second quick-release plate is provided with a mounting waist-shaped hole, the center line of the U-shape being collinear with the center line of the mounting waist-shaped hole. This allows the second quick-release plate to be used independently without being affected by the first sliding groove, fully utilizing its own length to mount the camera and adjust its center of gravity via the mounting waist-shaped hole.
[0010] Furthermore, the first quick-release assembly includes a first driving member, a first push block, and a first locking block. The first driving member is rotatably connected to the first quick-release plate, the first driving member is threadedly connected to the first push block, the first push block is slidably connected to the first quick-release plate, and both the first push block and the first locking block are located in the mounting groove. The first locking block has an inclined surface, and the first push block has a mating inclined surface that fits against the inclined surface. The first slide rail has a sliding hole, and the first locking block is slidably connected to the sliding hole. Under the action of the first driving member, the first locking block can extend out of the sliding hole and abut against the first slide groove. When installing the first quick-release plate, the first slide rail of the first quick-release plate is slid into the first slide groove. The first drive member is rotated, and the first drive member drives the first push block to slide under the restriction of the first quick-release plate. The inclined surface abuts against the push mating inclined surface, driving the first locking block to move toward the first slide groove, thus fixing the first quick-release plate. When removing the first quick-release plate, the first drive member is rotated in the opposite direction to create space between the inclined surface and the mating inclined surface for the first locking block to move. At this time, when the first quick-release plate is slid, the first locking block will enter the sliding hole and separate from the first slide groove, thereby enabling the first quick-release plate to move.
[0011] Furthermore, the first quick-release assembly also includes a first elastic reset member, the two ends of which are respectively connected to the first locking block and the first quick-release plate. By providing the first elastic reset member, the inclined surface and the mating inclined surface remain in contact under the action of the first elastic reset member.
[0012] Furthermore, the inclined surface is provided with a notch, and the mating inclined surface is provided with a protrusion, with the notch and the protrusion engaging in a snap-fit connection. The protrusion and notch ensure that the inclined surface and the second mating inclined surface remain in contact, facilitating the movement of the first locking block by the second push block.
[0013] Furthermore, the first quick-release assembly also includes an elastic element, the two ends of which are connected to the first push block and the first quick-release plate, respectively. When the first drive component is operated to unlock, the elastic element applies a restoring force to the first push block, maintaining the balance of the first push block and keeping it taut at all times, thus providing a better feel for the user when operating the first quick-release assembly.
[0014] Furthermore, the mounting base has a receiving space with a width not less than the width of the second quick-release plate. A second sliding groove and a locking cavity are respectively provided on both sides of the receiving space. The second slide rail on one side of the second quick-release plate is slidably connected to the second sliding groove, and the second quick-release assembly is located within the locking cavity. By ensuring that the width of the receiving space is not less than the width of the second quick-release plate, the second quick-release plate can be installed and removed in a direction perpendicular to the mounting base without sliding, avoiding the inconvenience of aligning the second slide rail with the second sliding groove during installation, and reducing the space requirements for installation and removal.
[0015] Further, the second quick-release assembly includes a second driving member, a second push block, and a second locking block. The second driving member is rotatably connected to the mounting base, the second push block is threadedly connected to the second driving member, and the second locking block is located within the locking cavity. The second locking block includes a driving part, a rotating shaft, and a locking part connected in sequence. The rotating shaft is rotatably connected to the mounting base, the driving part is connected to the second push block, and the driving part and the locking part have an offset angle. The locking part can extend out of the locking cavity and abut against the second slide rail on the other side of the second quick-release plate. When installing the second quick-release plate, the second quick-release plate is placed in the receiving space. Rotating the second driving member drives the second push block to move, the second push block drives the driving part to move, and under the action of the rotating shaft, it drives the locking part to move. The locking part extends out of the locking cavity and abuts against the second slide rail on the other side, pushing the second quick-release plate towards the second slide groove, allowing the second slide rail on one side of the second quick-release plate to slide into the second slide groove. Further operation of the second driving member drives the second locking block to rotate, fixing the second quick-release plate.
[0016] Furthermore, the second quick-release assembly also includes a second elastic reset member, the two ends of which are respectively connected to the locking part and the mounting base. By providing the second elastic reset member, the elastic force of the second elastic reset member is used to pull the locking part away from the second quick-release plate. That is, when the second push block is in the unlocked position, the locking part can automatically release its contact with the second slide rail on the other side of the second quick-release plate under the action of the elastic force, thereby achieving unlocking.
[0017] Furthermore, the first quick-release plate is connected to a first lens anti-deviation structure and a first connecting bolt. The first lens anti-deviation structure includes a connecting part and an anti-deviation placement part connected in sequence. The connecting part is slidably connected to the first quick-release plate. The first connecting bolt includes a head, a guide rod, and a threaded part connected in sequence. The connecting part is provided with a guide hole, and the guide rod is slidably connected to the guide hole. The first quick-release plate is provided with a through hole for the guide rod to pass through. The outer diameter of the head is larger than the inner diameter of the through hole. The head, the connecting part, the first quick-release plate, and the threaded part are arranged in sequence. By setting the first lens anti-deviation structure, it is convenient to support the lens while installing the camera. By sliding the connecting part to the first quick-release plate, the position of the anti-deviation placement part can be adjusted according to the position of the camera lens, which is convenient for supporting lenses of different camera models. When installing the camera, the camera is initially connected to the threaded part, the sliding connecting part adjusts the anti-deviation placement part to a position that can support the camera lens, and the first connecting bolt is further tightened to fix the camera to the first quick-release plate and fix the first lens anti-deviation structure at the same time.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] 1. A camera support assembly of this utility model, by installing a first quick-release plate with a first slide rail and a second quick-release plate with a second slide rail on the same mounting base, can be compatible with the installation of two different standard equipment; and can quickly and securely stabilize the camera through the first quick-release assembly and the second quick-release assembly.
[0020] 2. The camera support assembly of this utility model, by setting a recessed groove and a receiving space, stacks two quick-release plates and a mounting base, which reduces the height and saves space. It also ensures that the lower second quick-release plate can independently support the flat upper surface of the shooting equipment, thus maximizing the space range for installing and adjusting the shooting equipment.
[0021] 3. A camera support assembly of this utility model, by setting the mounting groove and the first sliding groove into a U-shape, so that the second quick-release plate is not affected by the first sliding groove when used alone, can make full use of the length of the second quick-release plate itself, and install the camera through the mounting waist-shaped hole and adjust the center of gravity of the camera.
[0022] 4. In a camera support assembly of this utility model, the first quick-release assembly uses a protrusion and a recess to ensure that the inclined surface and the second mating inclined surface are always in contact, so that the second push block can drive the first locking block to move.
[0023] 5. A camera support assembly of this utility model, by ensuring that the width of the receiving space is not less than the width of the second quick-release plate, allows the second quick-release plate to be installed and disassembled in a direction perpendicular to the mounting base without sliding, thus avoiding the trouble of aligning the second slide rail with the second slide groove during installation and reducing the requirements for disassembly and assembly space.
[0024] 6. A camera support component of this utility model can support the lens while installing the camera by setting a lens anti-offset structure. Attached Figure Description
[0025] Figure 1 This is a first-view structural diagram of the camera support assembly in Embodiment 1;
[0026] Figure 2 This is a schematic diagram of the second-view structure of the camera support component in Embodiment 1;
[0027] Figure 3 This is a schematic diagram of the structure of the first quick-release component in Embodiment 2;
[0028] Figure 4 This is a schematic diagram of the structure of the first quick-release component in Embodiment 3;
[0029] Figure 5 This is a schematic diagram of the connection structure between the second push block and the first locking block in Embodiment 3.
[0030] Figure 6This is a schematic diagram of the third-view structure of the camera support assembly in Embodiment 4;
[0031] Figure 7 yes Figure 6 Enlarged view of the structure at point A in the middle;
[0032] Figure 8 This is a schematic diagram of the structure of the first quick-release plate in Embodiment 5;
[0033] Figure 9 yes Figure 6 Enlarged view of the structure at point B;
[0034] Figure 10 This is a schematic diagram of the structure of the second quick-release plate in Embodiment 5;
[0035] Figure 11 This is a schematic diagram of the mounting base in Embodiment 5.
[0036] In the attached diagram: 100, first quick-release plate; 110, first slide rail; 111, sliding hole; 120, first lens anti-deviation structure; 121, connecting part; 121a, guide hole; 122, anti-deviation placement part; 130, first connecting bolt; 131, head; 132, optical rod part; 133, threaded part; 140, through hole; 200, second quick-release plate; 210, second slide rail; 220, recessed groove; 221, first sliding groove; 222, mounting groove; 230, second connecting bolt; 240, second lens anti-deviation structure; 250, mounting waist-shaped hole; 300, mounting base; 310, retractable part. 311. Second sliding groove; 312. Locking cavity; 320. First mounting groove; 330. Second mounting groove; 400. First quick-release assembly; 410. First driving member; 420. First push block; 421. Mating inclined surface; 422. Protrusion; 430. First locking block; 431. Inclined surface; 432. Notch; 440. First elastic reset member; 450. Elastic member; 500. Second quick-release assembly; 510. Second driving member; 520. Second push block; 530. Second locking block; 531. Driving part; 532. Rotating shaft; 533. Locking part; 540. Second elastic reset member. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present utility model, and not all of them. The present utility model will be further described below with reference to specific embodiments. The accompanying drawings are only for illustrative purposes and represent only schematic diagrams, not actual pictures, and should not be construed as limiting the present patent. In order to better illustrate the embodiments of the present utility model, some parts in the drawings may be omitted, enlarged or reduced, and do not represent the actual product size. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.
[0038] In the accompanying drawings of this utility model, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms describing positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. Those skilled in the art can understand the specific meaning of the above terms according to the specific circumstances. Furthermore, if the embodiments of this utility model involve descriptions such as "first" and "second," these descriptions are only for descriptive purposes and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first" and "second" may explicitly or implicitly include at least one of those features. In addition, the meaning of "and / or" in the text is that it includes three parallel options. Taking "A and / or B" as an example, it includes option A, option B, or an option that satisfies both A and B.
[0039] Example 1
[0040] This embodiment is a first embodiment of a camera support component, such as... Figure 1 As shown, it includes a first quick-release plate 100, a second quick-release plate 200, a mounting base 300, a first quick-release assembly 400, and a second quick-release assembly 500. The first quick-release plate 100 is provided with first slide rails 110 on both sides, and the first slide rails 110 are slidably connected to the second quick-release plate 200. The first quick-release plate 100 is detachably connected to the second quick-release plate 200 through the first quick-release assembly 400. The second quick-release plate 200 is provided with second slide rails 210 of different specifications on both sides, and the second slide rails 210 are slidably connected to the mounting base 300. The second quick-release plate 200 is detachably connected to the mounting base 300 through the second quick-release assembly 500.
[0041] In this embodiment, the first slide rail 110 and the second slide rail 210 are arranged parallel to each other. The camera is mounted on the first quick-release plate 100 and the second quick-release plate 200 with the same orientation, facilitating quick changes in the camera's mounting position. Specifically, the first slide rail 110 can be an Arca standard slide rail, and the second slide rail 210 can be a Manfrotto standard slide rail.
[0042] like Figure 2 As shown, the second quick-release plate 200 is provided with a recessed groove 220, which is specifically formed at the rear end of the second quick-release plate 200. The recessed groove 220 includes a mounting groove 222 and a first sliding groove 221 for sliding connection with the first slide rail 110. The first sliding groove 221 is located on both sides of the mounting groove 222. The first quick-release plate 100 is located in the mounting groove 222, and the bottom surface of the first quick-release plate 100 is lower than the top surface of the second quick-release plate 200, i.e. Figure 2 As shown, the lower surface of the first quick-release plate 100 is lower than the upper surface of the second quick-release plate 200; the first quick-release assembly 400 is at least partially located within the mounting groove 222. A recessed groove 220 is provided on the second quick-release plate 200 to stack the two quick-release plates, reducing their height and saving space. This also ensures that the lower second quick-release plate 200 maintains a flat upper surface capable of independently supporting the shooting equipment, maximizing the space available for installing and adjusting the shooting equipment. In this embodiment, as... Figure 10 As shown, the mounting groove 222 and the first sliding groove 221 form a U-shape. The second quick-release plate 200 is provided with a mounting waist-shaped hole 250, and the center line of the U-shape is collinear with the center line of the mounting waist-shaped hole 250. This allows the second quick-release plate 200 to be used alone without being affected by the first sliding groove 221, and to make full use of the length of the second quick-release plate 200 itself. The camera can be mounted and its center of gravity adjusted through the mounting waist-shaped hole 250.
[0043] The mounting base 300 has a receiving space 310 with a width not less than the width of the second quick-release plate 200. The receiving space 310 has a second sliding groove 311 and a locking cavity 312 on each side. A second slide rail 210 on one side of the second quick-release plate 200 is slidably connected to the second sliding groove 311, and the second quick-release assembly 500 is located within the locking cavity 312. By ensuring that the width of the receiving space 310 is not less than the width of the second quick-release plate 200, the second quick-release plate 200 can be installed and removed perpendicular to the mounting base 300 without sliding, avoiding the inconvenience of aligning the second slide rail 210 with the second sliding groove 311 during installation, and reducing the space requirements for installation and removal. For example, when used with a three-axis gimbal, a sliding mounting structure requires sufficient space between the gimbal linkage and the motor for the quick-release plate and the mounted shooting equipment to be moved out. This solution allows for placement and removal perpendicular to the mounting base 300, thus avoiding interference with the motor and linkage, and reducing the space requirements for installation and removal.
[0044] In this embodiment, by setting the sink trough 220 and the receiving space 310, the two quick-release plates and the mounting base are stacked and installed, which reduces the height and saves space.
[0045] The working principle of a camera support component in this embodiment is as follows:
[0046] In use, the mounting base 300 is installed on the equipment. Both the first quick-release plate 100 and the second quick-release plate 200 can independently support cameras and other photographic and video equipment. The camera is mounted on either the first quick-release plate 100 with the first slide rail 110 or the second quick-release plate 200 with the second slide rail 210, depending on the standard of the equipment. After installation, the camera position is adjusted by sliding the first quick-release plate 100 and the second quick-release plate 200. After adjustment, the camera is quickly and stably secured using the first quick-release assembly 400 and the second quick-release assembly 500. When changing to equipment of a different standard, simply disassemble the camera and camera support assembly as a whole, install the entire assembly on the other standard equipment, and then mount the camera on the required standard quick-release plate. By mounting the first quick-release plate 100 with the first slide rail 110 and the second quick-release plate 200 with the second slide rail 210 on the same mounting base 300, it is compatible with the installation of two different standard equipment; and the camera is quickly and securely secured using the first quick-release assembly 400 and the second quick-release assembly 500.
[0047] Example 2
[0048] This embodiment is a second embodiment of the camera support assembly. This embodiment is similar to the first embodiment, except that, as shown in the following... Figure 3As shown, the first quick-release assembly 400 includes a first driving member 410, a first push block 420, a first locking block 430, a first elastic reset member 440, and an elastic member 450. The first driving member 410 is rotatably connected to the first quick-release plate 100. The first driving member 410 is provided with a handle for the user to rotate. The first driving member 410 is threadedly connected to the first push block 420. The first push block 420 is slidably connected to the first quick-release plate 100. The first push block 420 and the first locking block 430 are both located in the mounting groove 222. The first locking block 430 is provided with an inclined surface 431, and the first push block 420 is provided with a surface that is parallel to the inclined surface 431. In this embodiment, the sliding direction of the first push block 420 is perpendicular to the sliding direction of the first locking block 430. Both the inclined surface 431 and the mating inclined surface 421 gradually slope towards the first push block 420 from bottom to top. The first slide rail 110 is provided with a sliding hole 111. The first locking block 430 is slidably connected to the sliding hole 111. Under the action of the first driving member 410, the first locking block 430 can extend out of the sliding hole 111 and abut against the first slide groove 221. The part of the first locking block 430 located outside the sliding hole 111 has a locking surface with an inclination that matches the first slide groove 221. An anti-disengagement member can also be connected between the first locking block 430 and the sliding hole 111 to maintain the connection between the first locking block 430 and the first quick-release plate 100 and prevent the first locking block 430 from completely disengaging from the sliding hole 111. The two ends of the first elastic reset member 440 are respectively connected to the first locking block 430 and the first quick-release plate 100.
[0049] When the first quick-release plate 100 is installed, the first slide rail 110 of the first quick-release plate 100 is slid into the first slide groove 221. The first drive member 410 is rotated, and the first drive member 410 drives the first push block 420 to slide under the restriction of the first quick-release plate 100. The inclined surface 431 abuts against the push-fit inclined surface 421, driving the first locking block 430 to move toward the first slide groove 221, thus fixing the first quick-release plate 100. When the first quick-release plate 100 is removed, the first drive member 410 is rotated in the opposite direction. Under the action of the first elastic reset member 440, the first locking block 430 enters the sliding hole 111. At this time, the first quick-release plate 100 can slide relative to the second quick-release plate 200. At the same time, the elastic member 450 applies a restoring force to the first push block 420 to maintain the balance of the first push block 420 and keep the first push block 420 taut at all times, providing a better feel for the user to operate the first quick-release assembly 400.
[0050] Example 3
[0051] This embodiment is the third embodiment of the camera support assembly. This embodiment is similar to Embodiment 1, except that, as Figure 4 and Figure 5As shown, the first quick-release assembly 400 includes a first driving member 410, a first push block 420, a first locking block 430, and an elastic member 450. The first driving member 410 is rotatably connected to the first quick-release plate 100. The first driving member 410 is provided with a handle for the user to rotate. The first driving member 410 is threadedly connected to the first push block 420. The first push block 420 is slidably connected to the first quick-release plate 100. The first locking block 430 is provided with an inclined surface 431. The first push block 420 is provided with a mating inclined surface 421 that fits against the inclined surface 431. In this embodiment, the first... The sliding direction of the push block 420 is perpendicular to the sliding direction of the first locking block 430. Both the inclined surface 431 and the mating inclined surface 421 gradually slope towards the first push block 420 from bottom to top. The inclined surface 431 has a notch 432, and the mating inclined surface 421 has a protrusion 422. The notch 432 and the protrusion 422 are snap-fitted together. The first slide rail 110 has a sliding hole 111, and the first locking block 430 is slidably connected to the sliding hole 111. Under the action of the first driving member 410, the first locking block 430 can extend out of the sliding hole 111 and abut against the first sliding groove 221. The two ends of the elastic member 450 are respectively connected to the first push block 420 and the first quick-release plate 100.
[0052] When installing the first quick-release plate 100, the first slide rail 110 of the first quick-release plate 100 is slid into the first slide groove 221. The first driving member 410 is rotated, causing the first push block 420 to slide under the constraint of the first quick-release plate 100. The inclined surface 431 abuts against the pushing engagement inclined surface 421, causing the first locking block 430 to move towards the first slide groove 221, thus fixing the first quick-release plate 100. When removing the first quick-release plate 100, the first... The driving component 410, through the setting of the protrusion 422 and the recess 432, ensures that the inclined surface 431 and the second mating inclined surface 414a are always in contact. The first locking block 430 will enter the sliding hole 111 and separate from the first sliding groove 221, thereby enabling the movement of the first quick-release plate 100. At the same time, the elastic component 450 applies a restoring force to the first push block 420, maintaining the balance of the first push block 420 and keeping the first push block 420 taut at all times, providing a better feel for the user to operate the first quick-release assembly 400. In this embodiment, the use of a concave-convex mating structure reduces the use of the first elastic reset component 440, making the structure simpler, more reliable, and easier to assemble.
[0053] Example 4
[0054] This embodiment is the fourth embodiment of the camera support assembly. This embodiment is similar to Embodiment 1, except that, as Figure 6 and Figure 7As shown, the second quick-release assembly 500 includes a second drive member 510, a second push block 520, a second locking block 530, and a second elastic reset member 540. The second drive member 510 is rotatably connected to the mounting base 300, the second push block 520 is threadedly connected to the second drive member 510, and the second locking block 530 is located in the locking cavity 312. The second locking block 530 includes a drive part 531, a rotating shaft 532, and a locking part 533 connected in sequence. The rotating shaft 532 is rotatably connected to the mounting base 300, the drive part 531 is connected to the second push block 520, and the drive part 531 and the locking part 533 have an offset angle, that is, the second locking block 530 is V-shaped as a whole. The rotating shaft 532 is located at the connection point, and the locking part 533 can extend out of the locking cavity 312 and abut against the second slide rail 210 on the other side of the second quick-release plate 200. The two ends of the second elastic reset member 540 are respectively connected to the locking part 533 and the mounting base 300.
[0055] When installing the second quick-release plate 200, the second quick-release plate 200 is placed in the receiving space 310. The second drive member 510 is rotated to drive the second push block 520 to move. The second push block 520 drives the drive part 531 to move. Under the action of the rotating shaft 532, the locking part 533 moves. The locking part 533 extends out of the locking cavity 312 and abuts against the second slide rail 210 on the other side, and pushes the second quick-release plate 200 toward the second slide groove 311, so that the second slide rail 210 on one side of the second quick-release plate 200 is slidably connected with the second slide groove 311. The second drive member 510 is further operated to drive the second locking block 530 to rotate, thereby fixing the second quick-release plate 200. The elastic force of the second elastic reset member 540 is used to pull the locking part 533 away from the second quick-release plate 200. When the second push block 520 is in the unlocked position, the locking part 533 can automatically release its contact with the second slide rail 210 on the other side of the second quick-release plate 200 under the action of the elastic force, thereby realizing unlocking.
[0056] Example 5
[0057] This embodiment is the fifth embodiment of the camera support assembly. This embodiment is similar to Embodiment 1, except that, as Figure 8 and Figure 9As shown, a first lens anti-misalignment structure 120 and a first connecting bolt 130 are connected to the first quick-release plate 100. The first lens anti-misalignment structure 120 includes a connecting part 121 and an anti-misalignment placement part 122 connected in sequence. The anti-misalignment placement part 122 can be made of materials such as silicone and is set to conform to the arc shape of the camera lens to support the lens and prevent lens deflection. The connecting part 121 is slidably connected to the first quick-release plate 100, specifically, the upper surface of the first quick-release plate 100 is higher than the upper surface of the second quick-release plate 200, and the connecting part 121 is located at the first Between the upper surface of the quick-release plate 100 and the upper surface of the second quick-release plate 200, the first connecting bolt 130 includes a head 131, a smooth rod portion 132 and a threaded portion 133 connected in sequence. The connecting portion 121 is provided with a guide hole 121a. The smooth rod portion 132 is slidably connected to the guide hole 121a. The first quick-release plate 100 is provided with a through hole 140 through which the smooth rod portion 132 passes. The outer diameter of the head 131 is larger than the inner diameter of the through hole 140. The head 131, the connecting portion 121, the first quick-release plate 100 and the threaded portion 133 are arranged in sequence. By setting up the first lens anti-misalignment structure 120, the lens can be supported simultaneously with the camera installation. The connecting part 121 is slidably connected to the first quick-release plate 100, allowing the position of the anti-misalignment placement part 122 to be adjusted according to the camera lens position, facilitating support for lenses of different camera models. During camera installation, the camera is initially connected to the threaded part 133, the sliding connecting part 121 adjusts the anti-misalignment placement part 122 to a position that supports the camera lens, and the first connecting bolt 130 is further tightened, fixing the camera to the first quick-release plate 100 while simultaneously fixing the first lens anti-misalignment structure 120. Thus, the fixing of the first lens anti-misalignment structure 120 and the camera is completed in one step, resulting in a simple structure and convenient operation. Furthermore, the first lens anti-misalignment structure 120 is connected to the inner space of the first quick-release plate, making it less prone to detachment.
[0058] like Figure 10 As shown, the second quick-release plate 200 is connected to a second connecting bolt 230 for mounting the camera and a second lens anti-deviation structure 240. The second quick-release plate 200 has a mounting slot 250, and the second connecting bolt 230 is slidably connected to the mounting slot 250. The camera is fixed by the second connecting bolt 230, and before locking, the lens is placed on the second lens anti-deviation structure 240 by sliding the second connecting bolt 230 in the mounting slot 250. Specifically, the length direction of the mounting slot 250 is parallel to the length direction of the first slide groove 221, and the mounting slot 250 can partially overlap with the first slide groove 221 in the length direction, that is, as shown... Figure 10As shown, the first groove 221 is located on both sides of the mounting waist-shaped hole 250. The projection portions of the mounting waist-shaped hole 250 and the first groove 221 coincide along the width direction of the mounting waist-shaped hole 250, so that the second quick-release plate 200 is not affected by the first groove 221 when used alone. The length of the second quick-release plate 200 itself can be fully utilized to mount the camera and adjust the camera's center of gravity. The second lens anti-deviation structure 240 is located at the front end of the second quick-release plate 200, that is, the end away from the first quick-release plate 100. The second lens anti-deviation structure 240 can be made of materials such as silicone and set to conform to the arc shape of the camera lens to support the lens and prevent the lens from deflecting; the second lens anti-deviation structure 240 can also use an existing lens bracket.
[0059] Since the first quick-release plate 100 is connected to the first connecting bolt 130 for connecting with the camera, and the second quick-release plate 200 is also connected to the second connecting bolt 230 for mounting the camera, the first quick-release plate 100 and the second quick-release plate 200 can be used independently after being disconnected, and the camera can be fixed by their respective connecting bolts.
[0060] like Figure 11 As shown, the mounting base 300 has a first mounting groove 320 along a first direction and a second mounting groove 330 along a second direction, with the first direction and the second direction forming an angle. The mounting grooves in different directions can be used to connect to the gimbal linkage, thereby enabling switching between shooting directions of the shooting equipment. In this embodiment, the first direction and the second direction are perpendicular, thus enabling switching between horizontal and vertical shooting modes.
[0061] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0062] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A camera support assembly, characterized in that, The device includes a first quick-release plate (100), a second quick-release plate (200), a mounting base (300), a first quick-release assembly (400), and a second quick-release assembly (500). The first quick-release plate (100) has first slide rails (110) on both sides, and the first slide rails (110) are slidably connected to the second quick-release plate (200). The first quick-release plate (100) is detachably connected to the second quick-release plate (200) through the first quick-release assembly (400). The second quick-release plate (200) has second slide rails (210) of different specifications on both sides, and the second slide rails (210) are slidably connected to the mounting base (300). The second quick-release plate (200) is detachably connected to the mounting base (300) through the second quick-release assembly (500).
2. The camera support assembly according to claim 1, characterized in that, The second quick-release plate (200) is provided with a recessed groove (220), the recessed groove (220) includes a mounting groove (222) and a first sliding groove (221) for sliding connection with the first slide rail (110), the first sliding groove (221) is located on both sides of the mounting groove (222); the first quick-release plate (100) is located in the mounting groove (222), the bottom surface of the first quick-release plate (100) is lower than the top surface of the second quick-release plate (200); the first quick-release assembly (400) is at least partially located in the mounting groove (222).
3. The camera support assembly according to claim 2, characterized in that, The mounting groove (222) and the first sliding groove (221) form a U-shape, and the second quick-release plate (200) is provided with a mounting waist-shaped hole (250). The center line of the U-shape is collinear with the center line of the mounting waist-shaped hole (250).
4. The camera support assembly according to claim 2, characterized in that, The first quick-release assembly (400) includes a first drive member (410), a first push block (420), and a first locking block (430). The first drive member (410) is rotatably connected to the first quick-release plate (100), the first drive member (410) is threadedly connected to the first push block (420), and the first push block (420) is slidably connected to the first quick-release plate (100). Both the first push block (420) and the first locking block (430) are located in the mounting groove (22). 2) Inside, the first locking block (430) is provided with an inclined surface (431), the first push block (420) is provided with a mating inclined surface (421) that fits against the inclined surface (431), the first slide rail (110) is provided with a sliding hole (111), the first locking block (430) is slidably connected to the sliding hole (111), and the first locking block (430) can extend out of the sliding hole (111) and abut against the first slide groove (221) under the action of the first driving member (410).
5. The camera support assembly according to claim 4, characterized in that, The first quick-release assembly (400) further includes a first elastic reset member (440), the two ends of which are connected to the first locking block (430) and the first quick-release plate (100), respectively.
6. The camera support assembly according to claim 4, characterized in that, The inclined surface (431) is provided with a notch (432), and the mating inclined surface (421) is provided with a protrusion (422). The notch (432) and the protrusion (422) are snapped together.
7. The camera support assembly according to any one of claims 1 to 6, characterized in that, The mounting base (300) is provided with a receiving space (310) with a width not less than the width of the second quick-release plate (200). The receiving space (310) is provided with a second slide groove (311) and a locking cavity (312) on both sides respectively. The second slide rail (210) on one side of the second quick-release plate (200) is slidably connected to the second slide groove (311). The second quick-release assembly (500) is located in the locking cavity (312).
8. The camera support assembly according to claim 7, characterized in that, The second quick-release assembly (500) includes a second drive member (510), a second push block (520), and a second locking block (530). The second drive member (510) is rotatably connected to the mounting base (300), and the second push block (520) is threadedly connected to the second drive member (510). The second locking block (530) is located in the locking cavity (312). The second locking block (530) includes a drive part (531), a rotating shaft (532), and a locking part (533) connected in sequence. The rotating shaft (532) is rotatably connected to the mounting base (300), and the drive part (531) is connected to the second push block (520). The drive part (531) and the locking part (533) have an offset angle. The locking part (533) can extend out of the locking cavity (312) and abut against the second slide rail (210) on the other side of the second quick-release plate (200).
9. The camera support assembly according to claim 8, characterized in that, The second quick-release assembly (500) also includes a second elastic reset member (540), the two ends of which are connected to the locking part (533) and the mounting base (300) respectively.
10. The camera support assembly according to any one of claims 1 to 6, characterized in that, The first quick-release plate (100) is connected to a first lens anti-deviation structure (120) and a first connecting bolt (130). The first lens anti-deviation structure (120) includes a connecting part (121) and an anti-deviation placement part (122) connected in sequence. The connecting part (121) is slidably connected to the first quick-release plate (100). The first connecting bolt (130) includes a head (131), a beam part (132), and a threaded part (133) connected in sequence. The connecting part (121) is provided with a guide hole (121a). The beam part (132) is slidably connected to the guide hole (121a). The first quick-release plate (100) is provided with a through hole (140) through which the beam part (132) passes. The outer diameter of the head (131) is larger than the inner diameter of the through hole (140). The head (131), the connecting part (121), the first quick-release plate (100), and the threaded part (133) are arranged in sequence.