Support and photographing device
By designing the bracket's base, snap-fit components, and drive mechanism, the inconvenience of using existing support frames that require rope binding for fixation is solved, enabling quick locking and unlocking of the support frame and improving the user experience.
Patent Information
- Application Number
- CN202210701596.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-20
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2042-06-20
AI Technical Summary
The existing support frame requires ropes to tie and fix it, which is inconvenient to use and results in a poor user experience.
Design a bracket including a base, a snap-fit component, a drive component, and a slider component. The drive component drives the snap-fit component and the slider component to engage and disengage, thereby achieving quick locking and unlocking of the support component. The support component is rotatably connected to the base, and the slider component engages with the snap-fit component to restrict the rotation of the support component.
It enables quick locking and unlocking of the support frame, providing a good user experience and convenient operation.
Smart Images

Figure CN114992466B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of shooting devices, in particular to a support and a shooting device. BACKGROUND
[0002] In our daily life, photography is everywhere. In order to achieve better shooting effect, sometimes it is necessary to install the shooting equipment on the support frame. However, when the support frame is not used, the plurality of supporting legs of the support frame need to be rotated and folded first, and then the plurality of supporting legs are tied with a rope to prevent the supporting legs from opening naturally. Next time when it is used, the rope needs to be untied again, which is inconvenient to use and poor user experience. SUMMARY
[0003] Therefore, it is necessary to provide a support and a shooting device for the problem that the shooting device legs of the support frame need to be tied with a rope for fixation, which is inconvenient to use and poor user experience.
[0004] The present application provides a support, comprising:
[0005] a seat body;
[0006] a clamping piece connected to the seat body in a sliding manner along a first direction;
[0007] a driving piece connected to the clamping piece;
[0008] a sliding piece connected to the seat body in a sliding manner along a second direction, the first direction being perpendicular to the second direction;
[0009] a supporting piece connected to the seat body and the sliding piece in a rotating manner, the supporting piece being capable of rotating relative to the seat body and driving the sliding piece to slide relative to the seat body, so as to make the sliding piece and the clamping piece clamped together to limit the rotation of the supporting piece relative to the seat body; the driving piece is capable of driving the clamping piece to slide relative to the seat body and separate from the sliding piece, so as to unlock the supporting piece, and the supporting piece is capable of rotating relative to the seat body.
[0010] The above support can be used on the support frame, the seat body can be connected to the shooting equipment, and the supporting piece can be used to support on the ground to support the shooting equipment. When the support frame is not used, the supporting piece can be rotated relative to the seat body to drive the sliding piece to be clamped with the clamping piece, so as to limit the rotation of the supporting piece relative to the seat body. When the support frame needs to be used, the driving piece can be operated, the driving piece drives the clamping piece to slide relative to the seat body, so that the clamping piece is separated from the sliding piece, at this time the supporting piece is unlocked, the sliding piece can slide relative to the seat body, and the supporting piece can rotate relative to the seat body and be opened. The support frame is locked or unlocked quickly and conveniently, and the user experience is good.
[0011] In one of the embodiments, the support further comprises a support rod and a linkage rod, the seat body comprises a main body and a guide, the support rod is rotatably connected to the main body, the sliding member is slidably connected to the guide, one end of the linkage rod is rotatably connected to the support rod, and the other end of the linkage rod is rotatably connected to the sliding member, the support rod is rotatable relative to the main body, and the sliding member is driven to slide relative to the guide to be engaged with the clamping member through the linkage rod.
[0012] In one of the embodiments, one of the guide and the sliding member comprises a guide sliding rail, and the other one is provided with a guide sliding groove; or the sliding member is slidably connected to the main body, one of the main body and the sliding member comprises a guide sliding rail, and the other one is provided with a guide sliding groove, and the guide sliding rail and the guide sliding groove are slidably engaged.
[0013] In one of the embodiments, one of the sliding member and the clamping member comprises a clamping flange, and the other one is provided with a clamping groove, and the clamping flange is capable of being engaged with or separated from the clamping groove.
[0014] In one of the embodiments, the support further comprises a linkage mechanism, the linkage mechanism connects the driving member and the clamping member, and the driving member is rotatable relative to the seat body to drive the linkage mechanism to slide the clamping member relative to the seat body to be separated from the sliding member.
[0015] In one of the embodiments, the linkage mechanism comprises a linkage gear, the linkage gear is rotatably connected to the seat body, the linkage gear is engaged with the clamping member, and the driving member is capable of driving the linkage gear to rotate to drive the linkage gear to slide the clamping member relative to the seat body to be separated from the sliding member.
[0016] In one of the embodiments, the driving member is slidably connected to the seat body along the first direction, the driving member is capable of sliding relative to the seat body along the first direction to drive the clamping member to slide relative to the seat body; or the driving member is slidably connected to the seat body along the second direction, the driving member comprises a first driving inclined surface, the clamping member comprises a second driving inclined surface, the driving member is capable of sliding relative to the seat body along the second direction to make the first driving inclined surface abut against the second driving inclined surface, and the clamping member slides relative to the seat body.
[0017] In one of the embodiments, the support further comprises a first reset member connecting the clamping member and the seat body, when the clamping member is disengaged from the sliding member, the first reset member accumulates a first reset force, when the driving member cancels the force on the clamping member, the first reset member releases the first reset force to drive the clamping member to reset; and / or the support further comprises a second reset member connecting the sliding member and the seat body, when the sliding member cooperates with the clamping member to clamp, the second reset member accumulates a second reset force, when the sliding member is separated from the clamping member, the second reset member releases the second reset force to drive the sliding member to reset.
[0018] In one of the embodiments, the number of the support members and the clamping members are both plural, the plurality of the support members are rotationally connected along the circumferential direction of the seat body, the plurality of the clamping members are slidingly connected along the circumferential direction of the seat body, the plurality of the support members can be simultaneously rotated to fold to drive the sliding member to slide relative to the seat body, and the sliding member can simultaneously cooperate with the plurality of the clamping members to clamp; the driving member can simultaneously drive the plurality of the clamping members to slide to separate the plurality of the clamping members from the sliding member, and the plurality of the support members are unlocked to be able to rotate relative to the seat body.
[0019] The application further provides a photographing device comprising a photographing apparatus and the support. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 Fig. 1 is a structural schematic diagram of the support in a storage state according to the application;
[0021] Figure 2 Fig. 2 is a structural schematic diagram of the support in an open state according to the application;
[0022] Figure 3 Fig. 3 is a structural schematic diagram of one perspective of the support according to the application;
[0023] Figure 4 Fig. 4 is a sectional structural schematic diagram of the seat body in a locked state according to the application;
[0024] Figure 5 Fig. 5 is a structural schematic diagram of the internal structure of the main body according to the application;
[0025] Figure 6 Fig. 6 is an exploded structural schematic diagram of the support according to the application;
[0026] Figure 7 Fig. 7 is a driving principle schematic diagram of one embodiment of the driving member and the clamping member according to the application;
[0027] Figure 8This is a schematic diagram of the driving principle of another embodiment of the driving component and the card connector of the present invention.
[0028] The attached diagram lists the components represented by each number as follows:
[0029] 1. Bracket;
[0030] 10. Seat; 100. Main body; 101. Clearance cavity; 102. Guide groove; 103. Movable groove; 104. Receiving cavity; 110. Guide component; 111. Limiting flange;
[0031] 20. Snap-fit connector; 200. First snap-fit connector; 210. Second snap-fit connector; 220. Snap-fit flange; 230. Second drive ramp;
[0032] 30. Support component; 300. Support rod; 310. Linkage rod; 320. Self-locking shaft;
[0033] 40. Sliding component; 400. Slot; 410. Guide rail; 420. Guide arc surface;
[0034] 50. Driving component; 500. First driving inclined surface; 510. Mounting screw hole; 520. Limiting component; 530. Adjusting knob;
[0035] 60. Linkage mechanism; 600. Linkage gear; 610. Card holder;
[0036] 70. First reset component; 71. Second reset component. Detailed Implementation
[0037] To make the above-mentioned objects, features, and advantages of the present invention more apparent and understandable, specific embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the specific details described below are only a part of the embodiments of the present invention, and the present invention can be implemented in many other embodiments different from those described herein. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present invention.
[0038] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0040] like Figure 1 and Figure 2 As shown, this invention provides a stand 1, which can be used to support electronic devices such as mobile phones, cameras, or levels. Taking camera support as an example, the stand 1 supports and fixes the camera in the air, facilitating better image quality. When the stand 1 is not in use, its multiple support members 30 can be rotated and folded together. When folded, the multiple support members 30 automatically lock and will not open spontaneously. When the stand 1 needs to be used again, the drive unit 50 on the stand 1 can be operated. The drive unit 50 can unlock with a single button, simultaneously releasing the restriction on the multiple support members 30, allowing them to rotate and open for use on the ground. Through the above operations, the stand 1 makes folding and unfolding quick and convenient, providing a good user experience.
[0041] like Figure 2 and Figure 4 As shown, in one embodiment, the bracket 1 includes a base 10, a snap-fit member 20, a drive member 50, a slider 40, and a support member 30. Multiple support members 30 can be arranged at intervals along the circumferential direction of the base 10 and rotatably connected to the base 10. Multiple support members 30 can simultaneously rotate relative to the base 10 to open or close, allowing them to lock or unlock simultaneously. The locking and unlocking principle is explained below using one support member 30 as an example:
[0042] like Figure 2 and Figure 4As shown, the first direction is defined as perpendicular to the thickness direction of the base 10, and the second direction is defined as parallel to the thickness direction of the base 10. The first and second directions are perpendicular to each other. The latching member 20 is slidably connected to the base 10 along the first direction, the driving member 50 is connected to the latching member 20, the sliding member 40 is slidably connected to the base 10 along the second direction, and the support member 30 is rotatably connected to the base 10. When the support member 30 needs to be retracted, it can be rotated relative to the base 10. The support member 30 can drive the sliding member 40 to slide relative to the base 10 along the second direction. When the sliding member 40 slides to a certain extent, it will engage with the latching member 20. At this time, the latching member 20 locks the sliding member 40, preventing it from sliding relative to the base 10. The sliding member 40 restricts the support member 30, preventing it from rotating relative to the base 10, thus preventing the support member 30 from opening naturally. When it is necessary to open the support member 30, the drive member 50 can be operated so that the drive member 50 can drive the snap-fit member 20 to slide relative to the seat 10 in the first direction until it is separated from the slider 40. At this time, the slider 40 can slide relative to the seat 10 in the second direction, the support member 30 is unlocked, and the support member 30 can rotate relative to the seat 10 to open.
[0043] In one embodiment, the support member 30 includes a support rod 300 and a linkage rod 310, and the seat 10 includes a main body 100 and a guide member 110 connected to each other, with the extension direction of the guide member 110 parallel to a second direction. One end of the support rod 300 is rotatably connected to the main body 100 to switch between an open state and a retracted state. The slider 40 is slidably connected to the guide member 110. One end of the linkage rod 310 is rotatably connected to the support rod 300, and the other end is rotatably connected to the slider 40. The support rod 300 can rotate relative to the main body 100, and the slider 40 is driven by the linkage rod 310 to slide relative to the guide member 110 and engage with the locking member 20. Specifically, a limiting flange 111 is provided on the side of the guide member 110 away from the main body 100, and the slider 40 can slide along the guide member 110 towards or away from the main body 100. The sliding member 40 can slide away from the main body 100 to abut against the limiting flange 111. At this time, the sliding member 40 is in the extreme position. The angle between the support rod 300 and the linkage rod 310 is R1. When the extension direction of the linkage rod 310 is parallel to the first direction, the angle between the linkage rod 310 and the support rod 300 is R2. R1 should be less than R2 so that when only the support rod 300 is operated, the support rod 300 drives the sliding member 40 to slide closer to the main body 100 through the linkage member, so that the sliding member 40 and the locking member 20 can engage.
[0044] like Figure 3As shown, the linkage rod 310, support rod 300, and sliding member 40 can be rotatably connected by the self-locking shaft 320. The self-locking shaft 320 has its own damping force, so that when the support rod 300 is opened, the self-locking shaft 320 can provide damping force to the support rod 300, preventing the support rod 300 from being easily rotated and retracted relative to the seat 10 by external forces. The bracket 1 can be stably supported on the ground during use.
[0045] like Figure 3 As shown, there are various ways to slide the slider 40 and the guide 110. In one embodiment, the slider 40 is sleeved on the guide 110, so that the slider 40 slides stably on the guide 110. In order to prevent the slider 40 from rotating in its circumferential direction and affecting the use of the support rod 300, one of the guide 110 and the slider 40 in this embodiment includes a guide rail 410, and the other has a guide groove 102. The guide rail 410 and the guide groove 102 are slidably engaged to restrict the relative rotation of the guide 110 and the slider 40. The support rod 300 will not be subjected to the circumferential force of the slider 40 during the opening or closing process, and the support rod 300 switches stably between the open state and the closed state.
[0046] like Figure 3 As shown, in another embodiment, the main body 100 has a relief cavity 101 facing the slider 40. In addition to the inner side being slidably connected to the guide 110, the outer side of the slider 40 can also be slidably connected to the side wall of the relief cavity 101, so that the slider 40 slides more stably relative to the seat 10. In this embodiment, a guide rail 410 can be provided on one of the guide member 110 and the slider 40, and a guide groove 102 can be provided on the other; or a guide rail 410 can be provided on one of the main body 100 and the slider 40, and a guide groove 102 can be provided on the other; or guide grooves 102 can be provided on both the main body 100 and the guide member 110, and a guide rail 410 can be provided on the slider 40; or guide rails 410 can be provided on both the main body 100 and the guide member 110, and a guide groove 102 can be provided on the slider 40. The guide rail 410 or the guide groove 102 can be arranged along the side wall extension direction of the clearance cavity 101. By sliding and engaging the guide rail 410 and the guide groove 102, all four embodiments described above can restrict the slider 40 from rotating in its circumferential direction.
[0047] like Figure 3 , Figure 4 and Figure 6As shown, in one embodiment, the slider 40 is provided with multiple guide rails 410 along the circumferential direction, and the sidewall of the clearance cavity 101 is provided with multiple guide grooves 102. Each guide rail 410 is slidably engaged with the guide groove 102, which can more stably restrict the slider 40 and prevent the slider 40 from rotating along its circumferential direction. After the slider 40 slides into the clearance cavity 101, it can engage with the locking member 20. One of the slider 40 and the locking member 20 includes a locking flange 220, and the other has a locking groove 400. The locking flange 220 can engage or disengage with the locking groove 400 to lock or unlock the slider 40. In this embodiment, the outer wall of the slider 40 is provided with a groove 400, and the engaging flange 220 of the engaging member 20 extends into the relief cavity 101. Since the slider 40 does not rotate in its circumferential direction, the groove 400 on the slider 40 and the engaging flange 220 of the engaging member 20 can always maintain a corresponding position in the second direction. After the slider 40 slides into the relief cavity 101, it can ensure that it engages with the engaging member 20. The end of the slider 40 facing the engaging member 20 has a guide arc surface 420, which facilitates pressing against the engaging flange 220, so that the groove 400 of the slider 40 and the engaging flange 220 of the engaging member 20 can quickly engage.
[0048] There are many ways in which the drive unit 50 drives the snap-fit 20 to slide relative to the base 10, such as angled drive, gear drive or direct connection drive.
[0049] like Figure 7 As shown, in one embodiment, one end of the driving member 50 is fixedly connected to the latching member 20, and the other end passes through the side of the seat and extends out of the seat. The driving member 50 is slidably connected to the seat in a first direction. The driving member 50 can slide relative to the seat in the first direction, thereby causing the latching member 20 to slide in the first direction as well, thereby driving the latching member 20 to disengage from the slot 400 of the sliding member 40 and unlocking the sliding member 40.
[0050] like Figure 8 As shown, in another embodiment, the driving member 50 is slidably connected to the base body along the second direction. The driving member 50 has a first driving ramp 500 at one end facing the latching member 20, and the other end extends through the top surface of the base body to the outside of the base body for easy manual operation. The latching member 20 has a second driving ramp 230 at one end facing the driving member 50. When it is necessary to drive the latching member 20 out of the slot 400 of the sliding member 40, the driving member 50 can be manually pressed downwards to slide relative to the base body along the second direction, so that the first driving ramp 500 presses against the second driving ramp 230. The second driving ramp 230 drives the latching member 20 to slide relative to the base body along the first direction, thereby disengaging the latching flange 220 of the latching member 20 from the slot 400 of the sliding member 40.
[0051] like Figure 5 andFigure 6 As shown, in another embodiment, the driving member 50 is an adjustment knob 530. The bracket 1 includes a linkage mechanism 60, which connects the adjustment knob 530 and the locking member 20. The adjustment knob 530 can rotate relative to the base body to drive the linkage mechanism 60 to slide the locking member 20 relative to the main body 100 and separate it from the sliding member 40. Specifically, the linkage mechanism 60 can be a linkage gear 600, which is rotatably connected to the main body 100. The linkage gear 600 meshes with the locking member 20. A retainer 610 is provided on the side of the linkage gear 600 facing the adjustment knob 530. The shape of the retainer 610 can be any shape other than a cylinder. The adjustment knob 530 has a connecting groove facing the linkage gear 600. The retainer 610 engages with the connecting groove of the adjustment knob 530, allowing the adjustment knob 530 to drive the linkage gear 600 to rotate. When it is necessary to separate the snap-fit 20 from the sliding member 40, the adjusting knob 530 can be rotated relative to the main body 100. The adjusting knob 530 drives the linkage gear 600 to rotate. The linkage gear 600, through meshing, drives the snap-fit 20 to slide relative to the main body 100 in the first direction and separate it from the sliding member 40.
[0052] like Figure 5 As shown, the main body 100 has multiple movable slots 103 along its circumference, and the adjusting knob 530 has multiple limiting members 520 along its circumference. The multiple limiting members 520 can be installed in the corresponding movable slots 103. The movable slots 103 can limit the limiting members 520 to restrict the adjusting knob 530 from excessive rotation, and prevent the adjusting knob 530 from driving the linkage gear 600 to rotate excessively, which could easily damage the locking member 20.
[0053] It should be noted that the above description only uses three methods of driving the drive component 50 and the snap-fit component 20 through direct connection, inclined top drive and gear linkage as examples. The connection methods of the drive component 50 and the snap-fit component 20 are not exhaustive. Other connection methods not mentioned are all within the protection scope of this application.
[0054] The following description further illustrates the example of the driving component 50 and the snap-fit component 20 being driven by the meshing of the linkage gear 600:
[0055] like Figure 6As shown, the number of the aforementioned latching members 20 is not limited; there can be one, two, or more, all capable of latching and sliding or separating from the sliding member 40. In one embodiment, there are two latching members 20, namely a first latching member 200 and a second latching member 210. The first latching member 200 and the second latching member 210 are arranged opposite to each other in a first direction and simultaneously mesh with the linkage gear 600. The linkage gear 600 can rotate relative to the main body 100, simultaneously driving the first latching member 200 and the second latching member 210 to move closer or further apart. Two latching slots 400 can also be provided on the sliding member 40. The two latching slots 400 are arranged opposite to each other on the sliding member 40, and their positions correspond one-to-one with the latching flanges 220 of the two latching members 20.
[0056] like Figure 4 , Figure 5 and Figure 6 As shown, in one embodiment, the bracket 1 further includes two first reset members 70, which are respectively connected to two snap-fit members 20 and the main body 100. When it is necessary to unlock the slider 40, the drive member 50 is rotated counterclockwise. The drive member 50 drives the linkage gear 600 to rotate, and the linkage gear 600 simultaneously drives the two snap-fit members 20 to slide away from each other. The snap-fit flanges 220 of the two snap-fit members 20 simultaneously disengage from the two slots 400 of the slider 40. At this time, both first reset members 70 accumulate a first reset force. After the slider 40 is unlocked, the support rod 300 can rotate and open relative to the main body 100. The support rod 300 drives the slider 40 to slide out of the relief cavity 101. At this time, after releasing the drive member 50, both first reset members 70 release the first reset force and drive the two snap-fit members 20 to slide towards each other. The two snap-fit flanges 220 slide back to the locking position, which is to prepare for the next locking of the slider 40.
[0057] like Figure 5 and Figure 6 As shown, the first reset member 70 can be a spring, and the first reset force can be an elastic force. When both the first latching member 200 and the second latching member 210 are separated from the sliding member 40, the two springs accumulate elastic force. When the driving member 50 does not apply force to the driving gear, the two springs release the elastic force, causing the first latching member 200 and the second latching member 210 to slide towards each other and reset, thus preparing for the next locking of the sliding member 40.
[0058] The first reset member 70 can also be two magnetic attractors (not shown in the figure), namely a first magnetic attractor and a second magnetic attractor. In this embodiment, two sets of first magnetic attractors and second magnetic attractors are provided. The two first magnetic attractors are connected to the main body 100, and the two second magnetic attractors are respectively connected to the first latching member 200 and the second latching member 210. When both the first latching member 200 and the second latching member 210 are separated from the sliding member 40, the two sets of first magnetic attractors and second magnetic attractors are relatively close to each other and accumulate magnetic repulsion. When the driving member 50 does not apply force to the driving gear, the two sets of first magnetic attractors and second magnetic attractors release the magnetic repulsion, driving the first latching member 200 and the second latching member 210 to slide towards each other and reset, which facilitates the preparation work for locking the sliding member 40 next time.
[0059] In one embodiment, the bracket 1 further includes a second reset member 71 (not shown in the figure). The second reset member 71 is connected to the slider 40 and the main body 100. When the slider 40 engages with the two locking members 20, the second reset member 71 accumulates a second reset force. When the slider 40 separates from the two locking members 20, the second reset member 71 releases the second reset force, causing the slider 40 to reset. During the process of separating from the two locking members 20 and resetting, the slider 40 slides away from the main body 100, causing the support rod 300 to open. This eliminates the need to apply additional force to the support rod 300 to open it, making it convenient to use.
[0060] The second reset element 71 can be a spring, with one end connected to the limiting flange 111 on the guide 110 and the other end connected to the slider 40. During the sliding of the slider 40 toward the latching element 20, the spring is stretched and accumulates elastic force. The accumulated elastic force is at its maximum when the slider 40 is latched with the latching element 20. When the slider 40 separates from the latching element 20, the spring gradually shortens, releasing the elastic force and driving the slider 40 away from the main body 100. The slider 40 then drives the support rod 300 to open via the linkage rod 310. Alternatively, the spring can be configured such that one end is connected to the main body 100 and the other end is connected to the slider 40. During the sliding of the slider 40 toward the latching element 20, the spring is compressed and accumulates elastic force. The accumulated elastic force is at its maximum when the slider 40 is latched with the latching element 20. When the slider 40 separates from the snap-fit 20, the spring gradually extends and releases elastic force, causing the slider 40 to slide away from the main body 100. The slider 40 drives the support rod 300 to open through the linkage rod 310.
[0061] like Figure 3As shown, in one embodiment, a receiving cavity 104 is provided at the connection position between the main body 100 and the support member 30. A rotating shaft is provided inside the receiving cavity 104, and the support member 30 is rotatably connected to the rotating shaft. When the support member 30 is in the storage state, the part of the support member 30 connected to the main body 100 can be completely located within the receiving cavity 104, occupying little space and facilitating storage.
[0062] It should be noted that, in another feasible embodiment, when the support member 30 drives the slider 40 to slide until the locking member 20 restricts the rotation of the support member 30 relative to the seat 10, the support member 30 can be in an open state. The support member 30 will not be subjected to external force and will not rotate relative to the seat 10, thus being stably supported on the ground. When it is necessary to retract the bracket 1, the drive member 50 can be rotated to cause the locking member 20 to separate from the slider 40, thereby unlocking the support member 30. At this time, the support member 30 can rotate relative to the seat 10 to switch to the retracted state.
[0063] The present invention also proposes a shooting device, including a shooting device and the aforementioned bracket 1, wherein the shooting device is connected to the base 10, so that the shooting device can be mounted on the bracket 1 for shooting.
[0064] like Figure 1 As shown, in one embodiment, the base 10 is connected to the shooting device via a drive member 50. Specifically, the drive member 50 has multiple mounting screw holes 510 on the side facing away from the base 10. The multiple mounting screw holes 510 are arranged along the circumferential direction of the drive member 50. The multiple mounting screw holes 510 can be directly threaded to the shooting device, or they can be first threaded to a quick-release piece, and then connected to the shooting device through the quick-release piece. Both methods enable the shooting device to be mounted on the bracket 1.
[0065] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0066] The above embodiments merely illustrate several implementation methods of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications, substitutions, and improvements without departing from the concept of the present invention, and these should all be covered within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the claims.
Claims
1. A support, characterized in that, include: The base includes the connected main body and guide components; A snap-fit component is slidably connected to the main body along a first direction; The driving component is connected to the snap-fit component; A slider is slidably connected to the guide member along a second direction, wherein the first direction and the second direction are perpendicular to each other; Multiple support members are arranged circumferentially along the base. Each support member includes a support rod and a linkage rod. One end of the support rod is rotatably connected to the side of the main body, and one end of the linkage rod is rotatably connected to the support rod away from the main body. The other end of the linkage rod is rotatably connected to the sliding member. The multiple support rods can simultaneously rotate and retract relative to the main body, and the linkage rod drives the sliding member to slide relative to the guide member and approach the main body, so that the sliding member engages with the locking member, restricting the rotation of the support rod relative to the main body. The driving member can drive the locking member to slide relative to the base and separate from the sliding member, so that the support member is unlocked. The multiple support rods can rotate outward relative to the main body to support the support surface. The main body also has a clearance cavity facing the slider, and the outer side of the slider can be slidably connected to the side wall of the clearance cavity.
2. The bracket according to claim 1, characterized in that, One of the guide member and the sliding member includes a guide rail, and the other has a guide groove; or, the sliding member is slidably connected to the side wall of the clearance cavity, and the side wall of the clearance cavity and one of the sliding members including a guide rail and the other having a guide groove are slidably engaged.
3. The bracket according to claim 1, characterized in that, One of the sliding member and the snap-fit member includes a snap-fit flange, and the other has a snap-fit groove. The snap-fit flange can engage or disengage with the snap-fit groove.
4. The bracket according to claim 1, characterized in that, The bracket also includes a linkage mechanism, which connects the drive member and the locking member. The drive member is rotatable relative to the base body to drive the linkage mechanism to slide the locking member relative to the base body and separate it from the sliding member.
5. The bracket according to claim 4, characterized in that, The linkage mechanism includes a linkage gear, which is rotatably connected to the base. The linkage gear meshes with the locking member. The driving member can drive the linkage gear to rotate, thereby causing the linkage gear to slide relative to the base and separate from the sliding member.
6. The bracket according to claim 1, characterized in that, The driving member is slidably connected to the base body along the first direction, and the driving member can slide relative to the base body along the first direction to drive the snap-fit member to slide relative to the base body; or... The driving member is slidably connected to the base body along the second direction. The driving member includes a first driving slope, and the snap-fit member includes a second driving slope. The driving member is capable of sliding relative to the base body along the second direction, so that the first driving slope abuts against the second driving slope, and the snap-fit member slides relative to the base body.
7. The bracket according to claim 1, characterized in that, The bracket further includes a first reset member, which is connected to the latching member and the base. When the latching member disengages from the sliding member, the first reset member accumulates a first reset force. When the driving member cancels the force applied to the latching member, the first reset member releases the first reset force to drive the latching member to reset. And / or the bracket further includes a second reset member, which is connected to the sliding member and the base. When the sliding member engages with the latching member, the second reset member accumulates a second reset force. When the sliding member separates from the latching member, the second reset member releases the second reset force to drive the sliding member to reset.
8. The bracket according to claim 1, characterized in that, The number of the snap-fit components is multiple, and the multiple snap-fit components are slidably connected along the circumferential direction of the main body. The sliding component can simultaneously engage with the multiple snap-fit components. The driving component can simultaneously drive the multiple snap-fit components to slide, so that the multiple snap-fit components are separated from the sliding component.
9. A shooting device, characterized in that, It includes a shooting device and a bracket as described in any one of claims 1-8, wherein the shooting device is connected to the base.
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