Holder structure and photographic equipment
By setting a conversion component on the main body of the gimbal and using a cam to drive the conversion component to extend and retract, the problem of limited versatility of the existing gimbal structure is solved, enabling adaptation and rapid adjustment to different quick-release plates, thus improving the applicability and stability of the equipment.
Patent Information
- Application Number
- CN202423306028.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing tripod head structure has limited versatility and applicability, and cannot be adapted to quick-release plates of different sizes and shapes.
A conversion component, including a cam and a conversion element, is set on the main body of the gimbal. The cam drives the conversion element to extend and retract to adapt to the edge position of different quick-release plates, achieving multiple locking states and enhancing applicability.
This improves the versatility of the gimbal structure, enabling rapid adjustments to adapt to different devices and usage scenarios, thus enhancing the device's versatility and stability.
Smart Images

Figure CN223635776U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to photography tripod head technical field, especially a tripod head structure and photographic equipment. BACKGROUND
[0002] In the field of photography and videography, tripod heads serve as an important auxiliary equipment, widely used in various shooting occasions. It not only provides a stable support platform, but also allows the photographer to make precise camera position adjustment. Tripod heads are usually used in conjunction with camera quick mounting plates to achieve quick mounting and adjustment of the camera. In order to prevent the camera from falling accidentally during use, the tripod head is usually designed with a drop-proof structure.
[0003] In the related art, most tripod heads use a latch structure or a screw structure as a drop-proof design. These structures have a latch or a hexagonal screw on the opening side of the tripod head structure mounting surface, which limits the cooperation with the blocking edge of the quick mounting plate, to prevent the camera and quick mounting plate from sliding out of the side of the tripod head structure. Because the position of the latch is fixed, these tripod head structures can only adapt to quick mounting plates of specific size and shape, limiting the versatility and applicability of the tripod head structure. SUMMARY
[0004] The main purpose of the utility model is to provide a tripod head structure and photographic equipment, aiming to solve the technical problem of limited versatility and applicability of the tripod head structure in the related art.
[0005] To achieve the above purpose, the utility model provides a tripod head structure, which comprises:
[0006] A tripod head body, which forms a mounting surface for mounting a quick mounting plate;
[0007] A conversion assembly, which comprises a cam piece and at least two conversion pieces, and the at least two conversion pieces are telescopically mounted on the mounting surface;
[0008] The cam piece is configured to drive any of the conversion pieces to extend out of the mounting surface.
[0009] In an embodiment, the cam piece is movably arranged on the tripod head body, and the cam piece is provided with a protrusion; the tripod head body is provided with a plurality of guide holes communicating with the mounting surface, and each guide hole is arranged in a staggered manner; each conversion piece is telescopically mounted in a guide hole; when the cam piece moves, the protrusion abuts and lifts any conversion piece to extend out of the mounting surface.
[0010] In an embodiment, the cam member comprises a dial, the gimbal body is provided with a limiting groove on one side and a first opening on the edge of the gimbal body, the first opening is communicated with the limiting groove, and the cam member is rotationally installed in the limiting groove and part of the dial is exposed to the first opening.
[0011] In an embodiment, at least the circumferential part of the dial exposed to the first opening is provided with a plurality of teeth.
[0012] In an embodiment, the cam member is installed below the mounting surface, two grooves are spaced apart on the side of the cam member facing the mounting surface, and the protrusion is connected between the two grooves; and the connecting wall of each groove and the protrusion is arc-shaped.
[0013] In an embodiment, the cam member is installed below the mounting surface, two grooves are spaced apart on the side of the cam member facing the mounting surface, and the protrusion is connected between the two grooves; and the connecting wall of each groove and the protrusion is arc-shaped.
[0014] The gimbal body is provided with a limiting groove on one side; the side wall of the limiting groove is recessed inward to form an arc surface on the side of each conversion member, and the arc surface of the limiting groove and the groove form a limiting space for limiting each conversion member.
[0015] In an embodiment, the conversion member further comprises an elastic member, the elastic member is used for pushing the conversion member, so that the conversion member has a retracting tendency.
[0016] When the cam member drives any conversion member to protrude from the mounting surface, the conversion member protrudes from the mounting surface against the elastic force; and when the cam member does not drive the conversion member, the conversion member retracts below the mounting surface under the action of the elastic force.
[0017] In an embodiment, each elastic member is sleeved on the conversion member, one end of the elastic member abuts against the mounting surface, and the other end abuts against the conversion member.
[0018] In an embodiment, the gimbal structure further comprises a gimbal pressing block and a gimbal knob, one end of the gimbal body is provided with a second opening, and the gimbal pressing block is exposed to the second opening; the driving end of the gimbal knob is in transmission connection with the gimbal pressing block, and the gimbal knob is rotated to enable the gimbal pressing block to be clamped.
[0019] The utility model also provides a photographic equipment, the photographic equipment includes:
[0020] The gimbal structure described above;
[0021] The quick mounting plate is clamped and fixed with the holder structure.
[0022] The tripod is detachably connected with the holder structure.
[0023] The technical scheme of the utility model discloses a conversion assembly arranged on one side of the holder main body, and any conversion piece is jacked up and ejected from the mounting surface by the cam piece in the conversion assembly; compared with the fixed bolt position or fixed hexagonal screw position of the holder structure in the prior art, the holder structure in the application can provide locking with different stop edge positions of various quick mounting plates in at least two switching states of at least two conversion pieces, can adapt to the sizes of different quick mounting plates, and the universal applicability of the holder structure is enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained from the structures shown in the drawings without creative labor.
[0025] Figure 1 The structure schematic view of the holder structure provided by the utility model is shown in the figure.
[0026] Figure 2 The structure schematic view of the conversion assembly in one embodiment provided by the utility model is shown in the figure.
[0027] Figure 3 The structure schematic view of the conversion assembly in one embodiment provided by the utility model is shown in the figure. Figure 1 The top view structure schematic view of the holder structure in the utility model is shown in the figure.
[0028] Figure 4 The structure schematic view of the conversion assembly in another embodiment provided by the utility model is shown in the figure.
[0029] Figure 5 The exploded view of the holder structure provided by the utility model is shown in the figure.
[0030] Figure 6 The structure schematic view of the cam piece movement in one embodiment provided by the utility model is shown in the figure.
[0031] Figure 7 The structure schematic view of the cam piece movement in another embodiment provided by the utility model is shown in the figure.
[0032] Figure 8 The structure schematic view of the limiting space provided by the utility model is shown in the figure.
[0033] Figure 9 The structure schematic view of the quick mounting plate and the gimbal structure is provided.
[0034] Figure 10 The structure schematic view of the quick mounting plate and the gimbal structure is provided.
[0035] Explanation of the drawings:
[0036] 1000, gimbal structure; 1, gimbal main body; 1a, mounting surface; 1b, guide hole; 11, limiting groove; 11a, limiting space; 11b, arc surface; 12, first opening; 13, second opening; 2, conversion assembly; 21, cam piece; 211, protrusion; 212, groove; 213, handle; 213a, tooth; 22, conversion piece; 23, elastic piece; 3, gimbal pressing block; 31, threaded hole; 4, gimbal knob; 41, knob part; 42, connecting part; 2000, photographic equipment; 2100, quick mounting plate; 2200, tripod.
[0037] The implementation, functional features and advantages of the present application will be further described with reference to the accompanying drawings in conjunction with the embodiments. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0039] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain posture, and if the certain posture changes, the directional indications will also change accordingly.
[0040] In addition, if the description of "first", "second" and the like is involved in the embodiments of the utility model, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, also not within the protection scope required by the utility model.
[0041] The utility model provides a cloud platform structure 1000.
[0042] Please refer to Figures 1 to 10 In an embodiment of the utility model, the cloud platform structure includes cloud platform main body 1 and conversion assembly 2, cloud platform main body 1 is formed with the installation surface 1a for installing quick mounting plate 2100, conversion assembly 2 includes cam piece 21 and at least two conversion pieces 22, at least two conversion pieces 22 are installed in the installation surface 1a in a telescopic manner, cam piece 21 is configured to drive any conversion piece 22 to extend the installation surface 1a.
[0043] In the embodiment, the cloud platform structure can be adapted to different quick mounting plates 2100, and the use scene is more. Cloud platform main body 1 is used to support and fix other components of the cloud platform structure, and the installation surface 1a is used to install the quick mounting plate 2100, and the outer wall of the cloud platform main body 1 can also be formed with a device for installing a structure matched with the installation surface 1a, in an embodiment, they can be dovetail groove and dovetail plate matched installation, the installation surface 1a can be the bottom surface or the side surface of the dovetail groove, the utility model adopts the bottom surface as an embodiment, that is, two or more conversion pieces 22 are telescopically installed on the bottom surface of the dovetail groove, and at least one of the two or more conversion pieces 22 can be selected to extend the bottom surface to form a blocking position of a state for blocking the quick mounting plate 2100 of the corresponding specification matched with the position state. Cam piece 21 is used to ensure that the protrusion 211 lifts the conversion piece 22, correspondingly, the mode of lifting the conversion piece 22 by cam piece 21 includes but is not limited to manual, motor drive, cylinder drive and the like. Cam piece 21 includes but is not limited to the form of the straight plate with protrusion 211, which is not limited here. In combination Figure 6 and Figure 7, and the manual lifting mode of the cam member 21 includes but is not limited to rotation, linear movement, etc., and can be set according to requirements. The driving mode between the cam member 21 and the conversion member 22 includes contact driving and non-contact driving, and in the non-contact driving mode, the conversion member 22 and the cam member 21 can drive the cam member 21 to extend out of the mounting surface 1a by magnetic repulsion. The conversion member 22 and the cam member 21 are provided with magnetic members on the corresponding surfaces, and the same type of magnetic members are provided on the end of the conversion member 22 facing the cam member 21 and the end of the cam member 21 facing the conversion member 22. When the conversion member 22 and the cam member 21 are moved to the opposite surfaces of the cam member 21, the conversion member 22 extends out of the mounting surface 1a under the driving of the cam member 21 due to magnetic repulsion.
[0044] The technical scheme of the utility model discloses a conversion assembly 2 is arranged on one side of the holder main body 1, and any conversion member 22 is lifted and ejected from the mounting surface 1a by the cam member 21 in the conversion assembly 2.
[0045] In an embodiment of the utility model, the cam member 21 is movably arranged on the holder main body 1, and the cam member 21 is provided with a protrusion 211. The holder main body 1 is provided with a plurality of guide holes 1b communicating with the mounting surface 1a, and the guide holes 1b are arranged in a staggered manner. Each conversion member 22 is telescopically installed in a guide hole 1b. When the cam member 21 moves, the protrusion 211 abuts against and lifts any conversion member 22 to extend out of the mounting surface 1a.
[0046] In the embodiment, the cam member 21 is movably arranged on the holder main body 1, and is not limited to be arranged below or on the side of the mounting surface 1a. The guide hole 1b is used to realize that the conversion member 22 is lifted by the protrusion 211 and protrudes from the mounting surface 1a. Correspondingly, the guide hole 1b is arranged in a staggered and spaced manner on the mounting surface 1a, and each conversion member 22 corresponds to a guide hole 1b. It can be understood that the guide hole 1b is arranged in a staggered manner, that is, it is not arranged in an overlapping manner or in an interfering manner, and the guide hole 1b is arranged in a staggered and spaced manner along the extension direction perpendicular to the blocking edge of the quick mounting plate. The protrusion 211 protrudes from the surface of the cam member 21, and the connection between the protrusion 211 and the surface of the cam member 21 is arc-shaped, so as to provide smooth conversion of the rotating member between the surface of the cam member 21 and the protrusion 211. Correspondingly, each conversion member 22 is arranged in a guide hole 1b in a lifting manner. It can be understood that when the holder structure is used in cooperation with the quick mounting plate 2100, the quick mounting plate 2100 is mounted on the mounting surface 1a above the holder main body 1, and the protrusion 211 of the cam member 21 is brought into contact with any conversion member 22 by moving the cam member 21, so that any conversion member 22 is lifted out of the guide hole 1b under the action of the protrusion 211, so as to provide abutting and limiting when the mounting surface 1a is used for mounting the quick mounting plate 2100. The moving mode of the cam member 21 includes but is not limited to manual and electric modes, which are not limited herein and can be set according to actual needs of users. The manual mode is preferred herein, so as to facilitate daily use. Figure 6 For example, in a linear moving mode, the cam member 21 moves left and right to make the protrusion 211 abut against any conversion member 22 and lift it out of the mounting surface 1a. Specifically, the working principle of the present application is that the cam member 21 moves left along the S direction in FIG. 8, and drives the protrusion 211 on the cam member 21 to move, so as to lift the conversion members 22 in the two grooves 212 along the S2 direction in FIG. 8 and make them protrude from the mounting surface 1a, thereby serving as the blocking block in the first state. Meanwhile, the conversion member 22 on the other left side falls back along the S1 direction in FIG. 8 under the action of gravity or under the combined action of gravity and elastic force. Figure 5 Figure 6 Figure 6 Figure 5 Conversely, when the cam member 21 moves right along the S direction in FIG. 8, the conversion member 22 on the opposite left side is lifted and protrudes from the mounting surface 1a, and the conversion member 22 on the opposite right side falls back, thereby forming the blocking block in the other state. Thus, the two specifications of the quick mounting plate 2100 can be adapted, and the positions of the blocking edges arranged at the bottom of each specification of the quick mounting plate 2100 correspond to the positions of the blocking block in the first state and the positions of the blocking block in the second state, respectively. Thus, the two specifications of the quick mounting plate 2100 can be detachably mounted on the holder, and the quick mounting plate 2100 can be prevented from sliding off the holder due to excessive movement in the dovetail groove. The rotating mode is shown in the following embodiments. The above arrangement mode can realize quick mounting and dismounting of the quick mounting plate 2100 by cooperation of the cam member 21 and the conversion member 22, thereby improving the use efficiency.
[0047] In an embodiment of the utility model, the cam member 21 comprises a dial 213, the gimbal body 1 is provided with a limiting groove 11 on one side and a first opening 12 on the edge of the gimbal body 1, the first opening 12 is communicated with the limiting groove 11, and the cam member 21 is rotatably installed in the limiting groove 11 and part of the structure of the dial 213 is exposed to the first opening 12.
[0048] In combination Figure 2 In the embodiment, the dial 213 is manually rotated to abut and lift any conversion member 22 protruding from the mounting surface 1a. The specific working principle is described in the following embodiment. In order to facilitate the user to quickly adjust the cam member 21 during the use of the gimbal structure, the existence of the first opening 12 simplifies the operation process of the user, and the user can quickly find and rotate the dial, so as to realize the adjustment and adaptation of the gimbal structure and the quick mounting plate 2100 and other components. The limiting groove 11 is used to limit the rotation range of the dial 213. Here, in order to facilitate people's daily use, the cam member 21 is manually exposed to the first opening 12, so that people can quickly judge the state of the cam member 21 according to the vision, and the accuracy and convenience of adjustment are improved.
[0049] In an embodiment of the utility model, at least the circumferential part of the dial 213 exposed to the first opening 12 is provided with a plurality of teeth 213a.
[0050] In combination Figure 2 In the embodiment, it can be understood that the teeth 213a can be uniformly distributed along the circumference of the dial 213, or can be distributed only in the area exposed to the first opening 12. The above two setting modes are not limited, and the user can set it by himself. Due to the existence of the teeth 213a, the user can perceive the accuracy of each dialing when the dial rotates. At the same time, it can effectively avoid the dial from slipping or losing control when rotating. The above setting mode increases the contact area, which can better disperse the force.
[0051] In an embodiment of the utility model, the cam member 21 is installed below the mounting surface 1a, two grooves 212 are spaced apart on the side of the cam member 21 facing the mounting surface 1a, and a protrusion 211 is connected between the two grooves 212; the connecting wall of each groove 212 and the protrusion 211 is arc-shaped transition.
[0052] In combination Figure 2In the embodiment, the cam member 21 is arranged below the mounting surface 1a, and in order to ensure the positioning effect of the cam member 21 after rotation, two grooves 212 are arranged on the surface of the cam member 21, and the two grooves 212 are arranged on both sides of the protrusion 211 and form a concave-convex surface. Correspondingly, when the protrusion 211 abuts against one of the conversion members 22, the other conversion member 22 is limited in the groove 212. Further, in order to smoothly switch the conversion member 22 between the protrusion 211 and the groove 212, the connecting wall of the groove 212 and the protrusion 211 is arranged as an arc surface transition, so that the contact between the cam member 21 and the conversion member 22 is more uniform, the control accuracy of the holder structure in the adjustment process is improved, and the impact resistance and stability of the structure are enhanced. In order to further limit the rotation angle of the cam member 21, the side edge of the groove 212 forms a stop edge limiting the rotation of the cam member 21, and the stop edge is in contact with the outer peripheral wall of the conversion member 22, so that the cam member 21 cannot continue to rotate. This effectively avoids excessive rotation or exceeding the allowed working range of the cam member 21, and at the same time makes the cam member 21 stably rotate within the specified range, so as to ensure that the holder structure remains stable during use. The above arrangement mode realizes smoother rotation transition and improves the stability of the holder structure.
[0053] In an embodiment of the utility model, cam member 21 is installed below mounting surface 1a, and two grooves 212 are arranged on the side of cam member 21 towards mounting surface 1a, and the connecting wall of each groove 212 and protrusion 211 is arc transition; one side of holder main body 1 is provided with limiting groove 11; the side wall of limiting groove 11 is recessed inward to form arc surface 11b on the side towards each conversion member 22, and the arc surface 11b of limiting groove 11 and groove 212 form limiting space 11a limiting each conversion member 22.
[0054] In combination with Figure 2 、 Figure 4 and Figure 8 , in the embodiment, the arc surface 11b is arranged to adapt to the shape of the conversion member 22, and effectively limits the activity range of the conversion member 22, so that the movement path of the conversion member 22 is accurately controlled, and the misoperation or unstable action of the system is avoided. It can be understood that the limiting space 11a and the guide hole 1b are in communication with each other. The existence of the limiting space 11a makes each movement of the conversion member 22 reach the preset angle and position, thereby enhancing the adjustment accuracy of the holder structure.
[0055] In an embodiment of the present application, the conversion piece 22 further comprises an elastic piece 23, which is used to push the conversion piece 22, so that the conversion piece 22 has a retracting tendency; when the cam piece 21 drives any conversion piece 22 to protrude from the mounting surface 1a, the conversion piece 22 protrudes from the mounting surface 1a against the spring force; when the cam piece 21 does not drive the conversion piece 22, the conversion piece 22 retracts below the mounting surface 1a under the action of the elastic force.
[0056] In the embodiment, the elastic piece 23 includes but is not limited to a reed, a spring, etc. In combination with Figure 4 and Figure 5 , the elastic piece 23 is used to provide a positioning force to maintain the normal position of the two conversion pieces 22. Preferably, the elastic piece 23 is in the form of a spring here. It can be understood that when a conversion piece 22 is converted from the protrusion 211 to the groove 212, the elastic piece 23 applies a downward force, so that the conversion piece 22 remains in the initial position and is not lifted up; when a conversion piece 22 is converted from the groove 212 to the protrusion 211, i.e. the conversion piece 22 is about to be located at the highest position of the protrusion 211, the elastic piece 23 overcomes the external cam piece 21 inclined surface force, so that the conversion piece 22 moves upward and switches to a new position. At the same time during the rotation of the cam piece 21, when the conversion piece 22 is at the transition surface of the protrusion 211 and the groove 212, the elastic piece 23 automatically presses the conversion piece 22 downward, so as to ensure that the conversion nail returns to the original position. Further, when the conversion piece 22 is converted between the protrusion 211 and the groove 212, the presence of the elastic piece 23 can ensure that the corresponding conversion nail is lifted up or pressed down, so as to prevent conflict or overlap between the two. The above setting mode enables the conversion piece 22 to automatically reset after the rotation of the cam piece 21, so as to ensure the stability and reliability of the system.
[0057] In an embodiment of the present application, each elastic piece 23 is sleeved on the conversion piece 22, one end of the elastic piece 23 abuts against the mounting surface 1a, and the other end abuts against the conversion piece 22.
[0058] In the embodiment, the elastic piece 23 is preferably a spring. It can be understood that, taking the example that the cam piece 21 abuts against and rotates to lift up the conversion piece 22, in combination with Figure 4 and Figure 7 , the push wheel 213 rotates along the push wheel 213 shaft, drives the protrusion 211 on the push wheel 213 to move, so as to lift up the conversion pieces 22 in the two grooves 212 along the direction of S2 in Figure 7 , and protrude from the mounting surface 1a, serving as the blocking block in the first state, and meanwhile the conversion piece 22 on the other left side is lifted up under the action of the gravity and / or the spring force along Figure 7When the dial 213 rotates along the dial 213 axis, the two conversion pieces 22 in the middle S1 direction retract; conversely, when the dial 213 rotates reversely along the dial 213 axis, the conversion piece 22 in the left side of the two conversion pieces 22 is lifted and protrudes from the mounting surface 1a, and the conversion piece 22 in the right side of the two conversion pieces 22 retracts, forming a blocking block in another state, thereby being suitable for two specifications of the quick mounting plate 2100, and the positions of the blocking blocks in the first state and the second state correspond to the positions of the blocking edges of the quick mounting plate 2100 of each specification, respectively, so that the two specifications of the quick mounting plate 2100 can be detachably mounted on the holder, and the quick mounting plate 2100 can be prevented from sliding off the holder due to excessive movement in the dovetail groove.
[0059] In an embodiment of the present application, the holder structure further comprises a holder pressing block 3 and a holder knob 4, one end of the holder main body 1 is provided with a second opening 13, and the holder pressing block 3 is exposed to the second opening 13; the driving end of the holder knob 4 is in transmission connection with the holder pressing block 3, and the holder knob 4 is rotated to enable the holder pressing block 3 to be clamped.
[0060] In the embodiment, the holder pressing block 3 cooperates with the holder structure button to lock other components cooperating with the holder structure. It can be understood that adjusting the holder knob 4 can lock or loosen the holder pressing block 3, and the locking of the components cooperating with the holder structure is achieved by adjusting the pressing block. The above setting mode simplifies the installation operation and realizes quick fixing and releasing. Further, the holder pressing block 3 is provided with a threaded hole, the holder knob 4 comprises a knob part 41 and a connecting part 42, the driving end of the knob part 41 is connected with the connecting part 42, the outer peripheral wall of the connecting part 42 is provided with threads matched with the threaded hole, and the knob part 41 is rotated to enable the connecting part 42 to extend into the threaded hole and control the opening degree of the holder pressing block 3. When the holder knob 4 is rotated, the force transmitted by the threads pushes the holder pressing block 3 to move along the axial direction on its mounting track, so as to change the contact surface between the holder pressing block 3 and the components cooperating with the holder structure. When the knob is rotated, the holder pressing block 3 approaches the components cooperating with the holder structure, so as to increase the fastening force and lock the connection between the holder structure and other components (for example, the connection between the camera and the holder structure). The holder pressing block 3 is away from the components cooperating with the holder structure, so as to loosen the connection and facilitate the adjustment or disassembly of the equipment. The above setting mode enhances the locking capability.
[0061] The utility model also proposes a kind of photographic equipment 2000, the photographic equipment 2000 includes quick mounting plate 2100, tripod and above-mentioned holder structure 1000, the specific structure of the holder structure 1000 refers to above-mentioned embodiment, since the present photographic equipment adopts all technical solutions of above-mentioned all embodiments, at least have all beneficial effects brought by the technical scheme of above-mentioned embodiment, here no longer tediously elaborate one by one. Among them, holder structure 1000 and quick mounting plate 2100 are clamped and fixed;Holder structure 1000 and tripod 2200 are detachably connected.
[0062] in combination with Figure 9 and Figure 10 In the embodiment, the holder structure 1000 is provided with a through slot for limiting the quick mounting plate 2100, and the holder pressing block 3 is used to clamp the edge of the quick mounting plate 2100. The holder structure 1000 can be connected with the tripod 2200 through screwing, clamping or the like. The above setting mode realizes quick and firm connection of the quick mounting plate 2100, adapts to different shooting environments, and meets the requirements in various shooting scenes.
[0063] The above merely describes the exemplary embodiments of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation, direct / indirect application in other related technical fields under the technical concept of the utility model, and the contents of the utility model specification and drawings are included in the patent protection range of the utility model.
Claims
1. A gimbal structure, characterized by, The gimbal structure comprises: a gimbal body (1) formed with a mounting surface (1a) for mounting a quick mounting plate; a conversion assembly (2) comprising a cam member (21) and at least two conversion members (22), the at least two conversion members (22) being telescopically mounted on the mounting surface (1a); the cam member (21) is configured to drive any of the conversion members (22) to extend out of the mounting surface (1a).
2. The head structure of claim 1, wherein The cam member (21) is movably arranged on the gimbal body (1), and the cam member (21) is provided with a protrusion (211); the gimbal body (1) is provided with a plurality of guide holes (1b) communicating with the mounting surface (1a), and each of the guide holes (1b) is arranged in a staggered manner; each of the conversion members (22) is telescopically mounted on one of the guide holes (1b); when the cam member (21) moves, the protrusion (211) is brought into abutment with and lifts any of the conversion members (22) to extend out of the mounting surface (1a).
3. The head structure of claim 2, wherein The cam member (21) comprises a dial (213), one side of the gimbal body (1) is provided with a limiting groove (11) and a first opening (12) located at the edge of the gimbal body, the first opening (12) communicates with the limiting groove (11), the cam member (21) is rotatably arranged in the limiting groove (11), and part of the structure of the dial (213) is exposed to the first opening (12).
4. The head structure of claim 3, wherein At least the circumferential part of the dial (213) exposed to the first opening (12) is provided with a plurality of teeth (213a).
5. The head structure of claim 2, wherein The cam member (21) is mounted below the mounting surface (1a), and two grooves (212) are spaced apart on one side of the cam member (21) facing the mounting surface (1a), and the protrusion (211) is connected between the two grooves (212); the connecting wall of each of the grooves (212) and the protrusion (211) is arc-shaped.
6. The head structure of claim 2, wherein The cam member (21) is mounted below the mounting surface (1a), and two grooves (212) are spaced apart on one side of the cam member (21) facing the mounting surface (1a), and the protrusion (211) is connected between the two grooves (212); the connecting wall of each of the grooves (212) and the protrusion (211) is arc-shaped. One side of the gimbal body (1) is provided with a limiting groove (11); the side wall of the limiting groove (11) is recessed inward to form an arc surface (11b) facing one side of each of the conversion members (22), and the arc surface (11b) of the limiting groove (11) and the groove (212) together form a limiting space (11a) for limiting each of the conversion members (22).
7. The gimbal structure of any one of claims 1 to 2, wherein, The conversion member further comprises an elastic member (23) for pushing the conversion member (22) to make the conversion member (22) have a tendency to retract; When the cam member (21) drives any of the conversion members (22) to extend out of the mounting surface (1a), the conversion member (22) extends out of the mounting surface (1a) against the elastic force, and when the cam member (21) does not drive the conversion member (22), the conversion member (22) is retracted under the action of the elastic force.
8. The head structure of claim 7, wherein, Each of the elastic members (23) is sleeved on the conversion member (22), one end of the elastic member (23) abuts against the mounting surface (1a), and the other end abuts against the conversion member (22).
9. The gimbal structure of any one of claims 1 to 2, wherein, The holder structure further comprises a holder pressing block (3) and a holder knob (4), one end of the holder main body (1) is provided with a second opening (13), and the holder pressing block (3) is exposed to the second opening (13); the driving end of the holder knob (4) is in transmission connection with the holder pressing block (3), and the holder knob (4) is rotated to make the holder pressing block (3) realize clamping.
10. A photographic apparatus characterized by comprising: The photographic equipment comprises: The holder structure according to any one of claims 1 to 9; A quick mounting plate (2100), the holder structure is clamped and fixed with the quick mounting plate (2100); A tripod (2200), the holder structure is detachably connected with the tripod (2200).