Support and camera device

By designing a bracket that can adjust the camera angle with a vertically rotatable housing, the existing camera base bracket has solved the problems of large size and complex operation, and achieved simplified structure and multi-angle shooting.

CN120292385APending Publication Date: 2025-07-11BEIJING XIAOMI MOBILE SOFTWARE CO LTD +1
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Patent Information

Application Number
CN202410047450.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-11
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing camera base bracket is large in size and complex in structure. It requires tools to adjust the camera angle. It has high operating cost and poor adjustment feel, and limited adjustment angle.

Method used

A bracket is designed, including a seat body and a housing. The housing can rotate in two vertical directions relative to the seat body. By rotating the housing, the camera shooting angle is adjusted without tools, the structure is simple, the number of parts is small, and the size is small.

Benefits of technology

It reduces operating costs, simplifies the structure, improves space occupancy, and realizes multi-angle shooting of cameras to meet the needs of multi-angle shooting.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120292385A_ABST
Patent Text Reader

Abstract

The invention provides a support and a camera device, and relates to the technical field of camera shooting. The support comprises a seat body and a shell. The seat body is provided with a connecting part. The shell is provided with a matching part and a mounting part, the matching part is rotatably connected to the connecting part, so that the shell can rotate relative to the base body in the first rotating direction and can rotate relative to the base body in the second rotating direction, and the mounting part is used for being connected with a camera. According to the scheme, the shell capable of rotating relative to the base body is arranged, the shooting angle of the camera can be adjusted by rotating the shell, the shooting angle of the camera does not need to be adjusted through a tool, operation cost is reduced, the camera can rotate in the first rotating direction and the second rotating direction through the shell, the structure is simple, and use is convenient. No complex structure is needed, the number of parts is small, the size is small, the space occupancy rate is increased, and cost expenditure is reduced. Meanwhile, the camera can shoot multi-angle images, and the requirement of multi-angle shooting is met.
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Description

Technical Field

[0001] The present disclosure relates to the field of camera technologies, and particularly to a bracket and a camera device. Background Art

[0002] In related technologies, the base bracket of a camera is large in volume and complex in structure, and an auxiliary tool is needed to adjust the shooting angle of the camera, resulting in high user operation costs. Summary of the Invention

[0003] The present disclosure provides a bracket and a camera device.

[0004] According to one aspect of the present disclosure, a bracket is provided, which includes a base body and a housing.

[0005] The base body is provided with a connecting portion.

[0006] The housing is provided with a mating portion and a mounting portion. The mating portion is rotatably connected to the connecting portion so that the housing can rotate relative to the base body along a first rotation direction and can rotate relative to the base body along a second rotation direction. The mounting portion is used for connecting with a camera. Among them, the rotation axis of the first rotation direction is perpendicular to the rotation axis of the second rotation direction.

[0007] In one embodiment, the connecting portion includes an arc-shaped groove and a rotating shaft disposed in the arc-shaped groove, and the inner surface of the arc-shaped groove is a part of a spherical surface.

[0008] The mating portion includes an arc-shaped protrusion that is connected to the arc-shaped groove in a shape-matching manner, and a first elongated hole is provided on the arc-shaped protrusion. The rotating shaft passes through the first elongated hole. The housing can rotate around the rotating shaft along the first rotation direction, and the rotating shaft can move relative to the housing along the extending direction of the first elongated hole in the first elongated hole so that the housing can rotate relative to the base body along the second rotation direction.

[0009] In one embodiment, the bracket further includes a support member. The support member is located at one end of the arc-shaped protrusion away from the base body; and a second elongated hole corresponding to the first elongated hole is provided on the support member, and the rotating shaft passes through the second elongated hole.

[0010] In one embodiment, the support member further includes an annular protrusion that protrudes in the direction towards the base body. The annular protrusion is disposed around the edge of the second elongated hole, and the annular protrusion is inserted into the first elongated hole, and the outer surface of the annular protrusion contacts the inner surface of the first elongated hole.

[0011] In one embodiment, the housing includes a cylindrical body. The mating portion is connected to one end of the cylindrical body. A plurality of first abutting portions extending in a direction parallel to the rotating shaft are provided on the inner surface of the cylindrical body. The edge of the support member has a plurality of abutting positions, and each of the plurality of first abutting portions is used for abutting against one of the plurality of abutting positions.

[0012] In one embodiment, the abutting position includes a first groove arranged on the edge of the support member, and the first abutting portion is engaged in the first groove.

[0013] In one embodiment, the bracket further includes a cover body connected to the inner surface of the cylindrical body, and the cover body abuts against an end of the first abutting portion away from the matching portion.

[0014] In one embodiment, the shell includes a second abutment portion arranged on the inner surface of the arc-shaped protrusion facing away from the seat body, the second abutment portion protrudes from the inner surface of the arc-shaped protrusion, and the second abutment portion is arranged at the edge of the first elongated hole, and the support member abuts against the second abutment portion.

[0015] In one embodiment, the second abutting portion includes a first section and a second section located on both sides of the first elongated hole, and the extension directions of the first section and the second section are both parallel to the extension direction of the first elongated hole.

[0016] In one embodiment, a fixing portion is provided on the inner surface of the arc-shaped protrusion facing away from the seat body, and a through hole is provided on the support member, and the fastener can pass through the through hole and be connected to the fixing portion.

[0017] In one embodiment, the fixing portion protrudes from the inner surface of the arc-shaped protrusion, and a fastening hole for connecting with a fastener is provided on the fixing portion.

[0018] In one embodiment, the support member is formed with a second groove in a direction away from the matching portion, a through hole is provided at the bottom of the second groove, and when the fastener passes through the through hole and is connected with the fastening hole, the fixing portion is inserted into the second groove.

[0019] In one embodiment, one end of the shaft away from the inner surface of the arc-shaped groove has a flange protruding from the shaft along the circumference of the shaft, and the flange is used to apply abutting force to the support member so that the support member presses the arc-shaped protrusion against the arc-shaped groove.

[0020] In one embodiment, the rotating shaft includes a bolt, the seat body is provided with a threaded hole, the screw rod of the bolt is threaded in the threaded hole, and the bolt head of the bolt forms a flange.

[0021] In one embodiment, the bracket further includes an elastic member, and the elastic member is arranged between the flange and the supporting member.

[0022] In one embodiment, the bracket further includes a gasket, which is arranged between the elastic member and the supporting member.

[0023] According to another aspect of the present disclosure, there is provided a camera device, comprising the bracket of any one of the above embodiments and a camera, wherein the camera is used to capture images, and the camera is connected to a mounting portion of the bracket.

[0024] According to the solution of the present disclosure, a housing that can rotate relative to the base is provided. By rotating the housing, the shooting angle of the camera can be adjusted without using tools to adjust the shooting angle of the camera, reducing the operation cost. Moreover, the rotation of the camera in the first rotation direction and the second rotation direction can be achieved through the housing. Its structure is simple, without complex structures, with a small number of parts and a small volume, improving the space occupancy rate and reducing the cost expenditure. At the same time, the camera can rotate in the first rotation direction and the second rotation direction, enabling the camera to capture images from multiple angles and meeting the need for multi-angle shooting.

[0025] It should be understood that the content described in the summary of the invention section is not intended to limit the key or important features of the embodiments of the present disclosure, nor is it used to limit the scope of the present disclosure. Other features of the present disclosure will become easily understood through the following description. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Combined with the drawings and referring to the following detailed description, the above and other features, advantages, and aspects of the embodiments of the present disclosure will become more apparent. In the drawings, the same or similar reference numerals represent the same or similar elements, where:

[0027] Figure 1 is an exploded view of the bracket of an embodiment of the present disclosure;

[0028] Figure 2 is Figure 1 a cross-sectional view of the bracket in the assembled state;

[0029] Figure 3 is Figure 1 a top view of the housing in ;

[0030] Figure 4 is Figure 1 a cross-section of the housing in ; Figure 1 ;

[0031] Figure 5 is Figure 1 a bottom view of the housing in ;

[0032] Figure 6 is Figure 1 a front view of the housing in ;

[0033] Figure 7 is Figure 1 a cross-section of the housing in ; Figure 2 ;

[0034] Figure 8 is Figure 1 a left view of the housing in ;

[0035] Figure 9 is Figure 1 a left view of the support member in ;

[0036] Figure 10 is Figure 1 the front view of the support member in

[0037] Figure 11 is Figure 1 the sectional view of the support member in

[0038] Figure 12 is Figure 1 the top view of the support member in

[0039] Figure 13 is Figure 1 the sectional view of the seat body in Figure 1 ;

[0040] Figure 14 is Figure 1 the left view of the seat body in

[0041] Figure 15 is Figure 1 the sectional view of the seat body in Figure 2 ;

[0042] Figure 16 is Figure 1 the top view of the seat body in

[0043] Figure 17 is Figure 1 the top view of the gasket in

[0044] Figure 18 is Figure 1 the front view of the gasket in

[0045] Figure 19 is the exploded view of the bracket of another embodiment of the present disclosure;

[0046] Figure 20 is Figure 19 the sectional view of the bracket in the assembled state of

[0047] Figure 21 is Figure 19 the front view of the housing in

[0048] Figure 22 is Figure 19 the sectional view of the housing in Figure 1 ;

[0049] Figure 23 is Figure 19 the top view of the housing in

[0050] Figure 24 is Figure 19 the sectional view of the housing in Figure 2 ;

[0051] Figure 25 is Figure 19 the bottom view of the housing in

[0052] Figure 26 is Figure 19 the left view of the housing in

[0053] Figure 27 is Figure 19 the bottom view of the support member in

[0054] Figure 28 is Figure 19 the front view of the support member in

[0055] Figure 29 is Figure 19 the left view of the support member in

[0056] Figure 30 is Figure 19 the top view of the base in

[0057] Figure 31 is Figure 19 the front view of the base in

[0058] Figure 32 is Figure 19 the sectional view of the base in

[0059] Figure 33 is the structural schematic diagram of the imaging device according to the embodiments of the present disclosure.

[0060] Explanation of reference numerals:

[0061] 1: base; 11: connecting part; 111: rotating shaft; 2: housing; 21: mating part; 211: first elongated hole; 22: mounting part; 23: first abutting part; 24: second abutting part; 25: fixing part; 3: support member; 31: second elongated hole; 32: annular protrusion; 33: abutting position; 4: through hole; 35: second groove; 4: cover; 5: elastic member; 6: gasket; 7: camera. Detailed embodiments

[0062] The following describes exemplary embodiments of the present disclosure with reference to the accompanying drawings. Various details of the embodiments of the present disclosure are included to facilitate understanding, and they should be considered merely exemplary. Therefore, those of ordinary skill in the art should recognize that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the present disclosure. Similarly, for clarity and conciseness, descriptions of well-known functions and structures are omitted in the following description.

[0063] In related technologies, monitoring products such as cameras are provided with a base bracket. Users can fix the camera on a wall through the base bracket and adjust the shooting angle of the camera by adjusting the angle of the base bracket with tools to achieve the effect of precise monitoring. At present, the structures of base brackets on the market are relatively complex and large in size. Each time the camera angle is adjusted, various auxiliary tools are required to adjust the base bracket (such as adjusting the screws of the base bracket with a wrench, etc.), which correspondingly increases the operation cost for users, and the adjustment feel is not good, and the adjustable angle is limited.

[0064] To solve at least one of the above technical problems, the present disclosure provides a bracket and a camera. The bracket includes a seat body and a housing. One end of the seat body is provided with a connecting portion. The housing is provided with a mating portion and a mounting portion. The mating portion is rotatably connected to the connecting portion so that the housing can rotate relative to the seat body along a first rotation direction and the housing can rotate relative to the seat body along a second rotation direction. The mounting portion is used to connect with the camera, wherein the rotation axis of the first rotation direction is perpendicular to the rotation axis of the second rotation direction. Through the solution of the present disclosure, a housing that can rotate relative to the seat body is provided. By rotating the housing, the shooting angle of the camera can be adjusted without using tools to adjust the shooting angle of the camera, reducing the operation cost. And the rotation of the camera along the first rotation direction and the second rotation direction can be realized through the housing. Its structure is simple, without a complex structure, with a small number of parts and a small volume, improving the space occupancy rate and reducing the cost expenditure. At the same time, the camera can rotate along the first rotation direction and the second rotation direction, enabling the camera to capture images from multiple angles.

[0065] According to one aspect of the present disclosure, as Figures 1 to 18 shown, an embodiment of a bracket is provided, including a seat body 1 and a housing 2.

[0066] The seat body 1 is provided with a connecting portion 11.

[0067] The housing 2 is provided with a mating portion 21 and a mounting portion 22. The mating portion 21 is rotatably connected to the connecting portion 11 so that the housing 2 can rotate relative to the seat body 1 along a first rotation direction and the housing 2 can rotate relative to the seat body 1 along a second rotation direction. The mounting portion 22 is used to connect with the camera, wherein the rotation axis of the first rotation direction is perpendicular to the rotation axis of the second rotation direction.

[0068] According to the embodiment of the present disclosure, it should be noted that:

[0069] The base body 1 can be set in multiple scenarios such as on a wall surface, a desktop, a vertical rod, etc. Further, the base body 1 can be provided with screw holes. By passing screws through the screw holes and connecting them to the wall surface, the desktop, the vertical rod, etc., the head of the screw abuts against the base body 1, so that the base body 1 is firmly connected to the wall surface, the desktop, the vertical rod, etc. Among them, multiple screw holes can be evenly arranged. For example, 2 screw holes are evenly arranged along the circumference of the base body 1 (as shown in Figure 1 , Figures 13 to 16 ), 3 screw holes (as shown in Figure 19 , Figures 30 to 32 ), etc., to reinforce the connection between the base body 1 and the wall surface, the desktop, the vertical rod, etc. In one example, the base body 1 can be an integrally formed plastic part or metal part, and its integrally formed design can improve the stress-bearing capacity of the base body 1. The shape of the base body 1 can be various, such as sheet-shaped, block-shaped or frame-shaped, etc.

[0070] The housing 2 is a structure for connecting the camera to the base body 1. It includes a mating part 21 and a mounting part 22. The mating part 21 is rotatably connected to the connecting part 11 of the base body 1, that is, the mating part 21 is the structure for connecting the housing 2 and the base body 1. It is rotatably connected to the connecting part 11, so that the housing 2 can rotate relative to the base body 1 along a first rotation direction, and the housing 2 can also rotate relative to the base body 1 along a second rotation direction. Among them, the rotation axis of the first rotation direction is perpendicular to the rotation axis of the second rotation direction, which is equivalent to the plane where the first rotation direction is located being perpendicular to the plane where the second rotation direction is located, that is, the camera can rotate on two mutually perpendicular planes. For example, the first rotation direction can be understood as the rotation direction in the horizontal plane (such as the circumferential direction of the housing 2 in Figure 1 ), and the rotation axis of the first rotation direction can be the up-down direction in Figure 1 . As the housing 2 rotates along the first rotation direction, the camera rotates synchronously along the first rotation direction, thereby adjusting the shooting angle of the camera in the horizontal plane. The second rotation direction can be understood as the rotation direction in the vertical plane, and the rotation axis of the second rotation direction can be the left-right direction in Figure 1 . As the housing 2 rotates along the second rotation direction, the camera rotates synchronously along the second rotation direction, thereby adjusting the shooting angle of the camera in the vertical plane. The mounting part 22 is the structure for the housing 2 to connect to the camera. It can select different connection structures according to the structure of the connecting part on the camera. For example, if the connecting part on the camera uses a card slot, then the mounting part 22 can use a buckle, and the buckle is snap-fitted with the card slot to connect the camera to the housing 2. Further, the mounting part 22 can use multiple buckles. For example, 2 buckles are evenly arranged along the circumference of the mounting part 22 (as shown in Figures 1 to 8 , Figures 19 to 26 ), 3 buckles, etc., to improve the connection stability between the camera and the housing 2. As shown in Figure 2 , the camera can be fixed on the top of the housing 2 by screws or bolts, etc.

[0071] The rotation sequence of the first rotation direction and the second rotation direction can be adjusted. For example, the housing 2 can first rotate in the first rotation direction and then rotate in the second rotation direction. It can also first rotate in the second rotation direction and then rotate in the first rotation direction. Further, the housing 2 can also rotate in the first rotation direction and the second rotation direction simultaneously. That is to say, the first rotation direction and the second rotation direction do not affect each other.

[0072] The connection structure between the housing 2 and the base 1 can be adjusted. For example, the mating part 21 is an arc-shaped protrusion, and the connecting part 11 is an arc-shaped groove, and their radian are adapted. The arc-shaped protrusion is inserted into the arc-shaped groove. Or the mating part 21 is an arc-shaped groove, and the connecting part 11 is an arc-shaped protrusion, and their radian are adapted. The arc-shaped protrusion is inserted into the arc-shaped groove. Or, the housing 2 includes two parts, one part is a structure that can rotate in the first rotation direction, and the other part is a structure that can rotate in the second rotation direction (such as a structure composed of two bearings).

[0073] When applying this bracket, connect the camera to the mounting part 22, and place the base 1 in scenarios such as on a wall, a tabletop, or a vertical pole. By rotating the housing 2 in the first rotation direction, the housing 2 synchronously drives the camera to rotate in the first rotation direction, so that the camera can collect images at different angles in the first rotation direction. After the housing 2 rotates to a certain angle in the first rotation direction, the housing 2 can continue to rotate in the second rotation direction, and the housing 2 synchronously drives the camera to rotate in the second rotation direction, so that the camera can collect images at different angles in the second rotation direction.

[0074] According to an embodiment of the present disclosure, a housing 2 that can rotate relative to the base 1 is provided. By rotating the housing 2, the shooting angle of the camera can be adjusted without using tools to adjust the shooting angle of the camera, reducing the operation cost. And the rotation of the camera in the first rotation direction and the second rotation direction can be realized through the housing 2. Its structure is simple, without complex structures, with fewer parts, small volume, improving the space occupancy rate and reducing cost expenditure. At the same time, the camera can rotate in the first rotation direction and the second rotation direction, enabling the camera to capture images at multiple angles and meeting the requirements of multi-angle shooting.

[0075] In one embodiment, the connecting part 11 includes an arc-shaped groove and a rotating shaft 111 disposed in the arc-shaped groove, and the inner surface of the arc-shaped groove is a part of a spherical surface.

[0076] The mating part 21 includes an arc-shaped protrusion that is matingly connected to the arc-shaped groove, and a first elongated hole 211 is provided on the arc-shaped protrusion. The rotating shaft 111 passes through the first elongated hole 211. The housing 2 can rotate around the rotating shaft 111 in the first rotation direction, and the rotating shaft 111 can move relative to the housing 2 in the extending direction of the first elongated hole 211 in the first elongated hole 211, so that the housing 2 can rotate relative to the base 1 in the second rotation direction (as Figures 1 to 8 , Figures 13 to 16 , Figures 19 to 26 , Figures 30 to 32 shown).

[0077] According to an embodiment of the present disclosure, it should be noted that:

[0078] It can be understood that the connecting part 11 is a groove structure with a spherical arc surface (i.e., an arc-shaped groove), and the mating part 21 is a protrusion structure with a spherical arc surface (i.e., an arc-shaped protrusion), wherein the size of the protrusion structure with the spherical arc surface is adapted to the groove structure with the spherical arc surface, so that the arc-shaped protrusion can be inserted into the arc-shaped groove structure to improve the experience of the rotation of the housing 2.

[0079] The rotating shaft 111 can be a structure integrally formed with the arc-shaped groove, or a detachable split structure with the arc-shaped groove (as Figure 1 , Figure 2 , Figure 19 , Figure 20 shown). Further, it can be understood that a part of the rotating shaft 111 is connected to the arc-shaped groove, and the other part of the rotating shaft 111 is inserted into the arc-shaped protrusion. The arc-shaped protrusion rotates around the other part of the rotating shaft 111, and the rotation direction is the first rotation direction, and the angle rotated in the first rotation direction can be adjusted, for example, it can be 360 degrees, or it can be 180 degrees, etc. Furthermore, the arc-shaped protrusion is provided with a first elongated hole 211 (as Figures 3 to 8 , Figures 20 to 26 shown), the other part of the rotating shaft 111 is inserted into the first elongated hole 211, and can move in the extending direction of the first elongated hole 211. That is to say, when the rotating shaft 111 is fixed, the arc-shaped protrusion can move relative to the rotating shaft 111 in the extending direction of the first elongated hole 211, which is equivalent to the housing 2 moving relative to the rotating shaft 111 in the extending direction of the first elongated hole 211. It can be understood that since the first elongated hole 211 is provided on the arc-shaped protrusion, and the arc-shaped protrusion has a spherical surface, the extending direction of the first elongated hole 211 is an arc on the spherical surface. In the cross-sectional view, as Figure 7 it can be seen in that it is an arc. The connection between the first elongated hole 211 and the rotating shaft 111 can limit the rotation of the arc-shaped protrusion relative to the arc-shaped groove in the second rotation direction to Figure 7within the vertical plane shown (i.e., the vertical plane passing through the extending direction of the first elongated hole 211). It can also be understood that the extending direction of the first elongated hole 211 is the second rotation direction, and the angle rotated in the second rotation direction is proportional to the extending length of the first elongated hole 211, that is, the longer the first elongated hole 211, the larger the angle rotated in the second rotation direction.

[0080] According to an embodiment of the present disclosure, by setting the connection manner between the arc-shaped protrusion and the arc-shaped groove, the contact area between the connection portion 11 and the mating portion 21 can be increased, the friction force between the two can be increased, the damping effect can be improved, and thus the experience of the rotation of the housing 2 can be improved. By setting the connection manner between the rotating shaft 111 and the first elongated hole 211, while simplifying the structure, the housing 2 can be rotated around the rotating shaft 111 in the first rotation direction and rotated along the extending direction of the first elongated hole 211, which helps to reduce the complexity of the bracket.

[0081] In addition, in other embodiments, the connection portion 11 may be provided with an arc-shaped protrusion, the housing 2 may be provided with an arc-shaped groove, the rotating shaft 111 may be connected in the arc-shaped groove, the first elongated hole 211 may be provided in the arc-shaped protrusion, and the rotation of the housing 2 relative to the base 1 in the first rotation direction and the second rotation direction can also be realized through a simple structure of the housing 2.

[0082] In one embodiment, the bracket further includes a support member 3 (as Figures 9 to 12 、 Figures 27 to 29 shown), the support member 3 is located at one end of the arc-shaped protrusion away from the base 1; and the support member 3 has a second elongated hole 31 corresponding to the first elongated hole 211, and the rotating shaft 111 passes through the second elongated hole 31.

[0083] According to an embodiment of the present disclosure, it should be noted that:

[0084] It can be understood that the support member 3 is disposed on the inner sidewall of the arc-shaped protrusion, that is, on the end face of the arc-shaped protrusion facing away from the base body 1. In one example, the support member 3 is an arc-shaped structure, which is adapted to the radian of the inner sidewall of the arc-shaped protrusion or the radian of the extending direction of the first long hole 211. Further, the second long hole 31 on the support member 3 has the same extending direction as the first long hole 211, so that the rotating shaft 111 can smoothly pass through the second long hole 31 after passing through the first long hole 211. That is to say, the rotating shaft 111 is inserted into both the first long hole 211 and the second long hole 31, and can move in the extending direction of the first long hole 211 and the second long hole 31. That is, when the rotating shaft 111 is fixed, the support member 3 can move relative to the rotating shaft 111 in the extending direction of the second long hole 31. The extending length and width of the second long hole 31 can be the same as the extending length and width of the first long hole 211 respectively, or can be slightly different. In one example, the extending length of the second long hole 31 is not less than the extending length of the first long hole 211 to prevent the second long hole 31 from affecting the movement of the rotating shaft 111 in the first long hole 211. In one example, the width of the second long hole 31 (i.e., the distance between the left and right sides of the second long hole 31) is not less than the width of the first long hole 211 (i.e., the distance between the left and right sides of the first long hole 211), further preventing the second long hole 31 from affecting the movement of the rotating shaft 111 in the first long hole 211.

[0085] According to an embodiment of the present disclosure, by providing the support member 3 having the second long hole 31 corresponding to the first long hole 211, damage to the housing 2 caused by the long-term rotation of the rotating shaft 111 can be avoided, and the service life of the bracket can be improved.

[0086] In one embodiment, as Figures 9 to 12 shown, the support member 3 further includes an annular protrusion 32 protruding in the direction towards the base body 1. The annular protrusion 32 is disposed around the edge of the second long hole 31, and the annular protrusion 32 is inserted into the first long hole 211, and the outer surface of the annular protrusion 32 contacts the inner surface of the first long hole 211.

[0087] According to an embodiment of the present disclosure, it should be noted that:

[0088] It can be understood that an annular protrusion 32 is provided along the edge of the second long hole 31 of the support member 3 in the direction towards the first opening. When the support member 3 is cooperatively connected with the housing 2, the annular protrusion 32 is inserted into the first long hole 211, and the outer surface of the annular protrusion 32 contacts the inner surface of the first long hole 211, that is, the annular protrusion 32 abuts against the inner wall of the first long hole 211.

[0089] According to the embodiment of the present disclosure, the support member 3 can be fixed by inserting the annular protrusion 32 in the first elongated hole 211. By setting the outer surface of the annular protrusion 32 in contact with the inner surface of the first elongated hole 211, the contact area between the support member 3 and the housing 2 can be increased, the friction between the two can be increased, and the stability of the support member 3 in the housing 2 can be improved.

[0090] In one embodiment, Figure 1 , Figures 3 to 8 As shown, the housing 2 includes a cylindrical body, the matching portion 21 is connected to one end of the cylindrical body, the inner surface of the cylindrical body is provided with a plurality of first abutment portions 23 extending in a direction parallel to the rotation axis 111, and the edge of the support member 3 has a plurality of abutment positions 33 (such as Figures 9 to 12 As shown), each of the plurality of first abutting portions 23 is used to abut against one of the plurality of abutting positions 33 .

[0091] According to the embodiments of the present disclosure, it should be noted that:

[0092] It can be understood that a plurality of first abutment portions 23 are provided along the circumferential protrusion of the inner surface of the cylindrical body, and the plurality of first abutment portions 23 extend in a direction parallel to the rotating shaft 111. For example, 4 or 6 first abutment portions 23 are provided, wherein the heights of the plurality of first abutment portions 23 protruding from the inner surface of the shell 2 can be respectively the same or respectively different, as long as they do not affect the rotation of the rotating shaft 111 in the first elongated hole 211. In one example, the plurality of first abutment portions 23 are uniformly provided on the inner surface of the cylindrical body. Furthermore, the outer edge of the support member 3 has a plurality of abutment positions 33, and when the support member 3 is connected with the shell 2 in a mating manner, the plurality of first abutment portions 23 are connected in abutment with the plurality of abutment positions 33 in a one-to-one correspondence. Among them, the abutment position 33 can include a plurality of structures, such as a groove, a boss, a bevel structure, and the like.

[0093] The matching portion 21 is disposed at one end of the cylindrical body, and the mounting portion 22 can be disposed on the side wall of the cylindrical body or on the other end of the cylindrical body away from the matching portion 21. According to an embodiment of the present disclosure, by disposing a plurality of first abutting portions 23 against the support member 3, the stability of the support member 3 in the housing 2 is further improved.

[0094] In one embodiment, Figures 9 to 12 As shown, the abutting position 33 includes a first groove arranged at the edge of the support member 3, and the first abutting portion 23 is engaged in the first groove.

[0095] According to the embodiments of the present disclosure, it should be noted that:

[0096] The depth of the first groove can be adjusted to ensure that it does not affect the rotation of the shaft 111 in the second elongated hole 31. In other words, the bottom of the first groove is not connected to the second elongated hole 31. Further, multiple first grooves can be evenly arranged on the edge of the support member 3, for example, two first grooves are arranged on the edge of the support member 3 on the left side of the second elongated hole 31, and two first grooves are arranged on the edge of the support member 3 on the right side of the second elongated hole 31.

[0097] like Figure 12 As shown, the abutment position 33 may include four first grooves (abutment positions 33) arranged on the outer edge of the support member 3, each of which may engage with a first abutment portion 23. Of course, the abutment position 33 may also include Figure 12 The highest point of the upper arc edge and the lowest point of the lower arc edge of the middle support member 3 , the two abutment positions 33 , can also abut against a first abutment portion 23 respectively, thereby achieving the positioning of the support member 3 and the shell 2 .

[0098] According to the embodiment of the present disclosure, the support member 3 is provided with a first groove, and the firmness of the connection between the first abutting portion 23 and the first groove is improved, further improving the stability of the support member 3 in the housing 2 .

[0099] In one embodiment, Figure 1 , Figure 2 As shown, the bracket further includes a cover body 4 connected to the inner surface of the cylindrical body, and the cover body 4 abuts against an end of the first abutting portion 23 away from the matching portion 21 .

[0100] According to the embodiments of the present disclosure, it should be noted that:

[0101] It can be understood that the cover body 4 is detachably disposed inside the cylindrical body. When the cover body 4 is disposed in the cylindrical body, the outer wall of the cover body 4 is connected to the inner surface of the cylindrical body, and the cover body 4 also abuts against the end of the first abutting portion 23 away from the matching portion 21. Further, the size of the cover body 4 can be the same as the size of the inner wall of the cylindrical body, so that the cover body 4 can be better connected to the cylindrical body. Alternatively, the size of the cover body 4 is larger than the size of the inner wall of the cylindrical body, that is, the cover body 4 is connected to the inner wall of the barrel-shaped body by interference fit (such as Figure 2 As shown), the connection effect is more stable. Alternatively, the cover body 4 and the inner side wall of the cylindrical body can be connected by a snap-fit ​​connection.

[0102] According to the embodiment of the present disclosure, by setting the cover body 4 to be connected with the cylindrical body, the internal space of the cylindrical body and the external space of the cylindrical body can be blocked to prevent dust from entering the internal space and affecting the rotation of the housing 2. By setting the cover body 4 to be in abutment with the first abutment portion 23, the cover body 4 can be prevented from being displaced in the direction of the matching portion 21.

[0103] likeFigures 19 to 32 As shown, the present disclosure provides another embodiment of a bracket, wherein the housing 2 includes a second abutting portion 24 provided on the inner surface of the arc-shaped protrusion facing away from the base 1. The second abutting portion 24 protrudes from the inner surface of the arc-shaped protrusion, and the second abutting portion 24 is provided at the edge of the first elongated hole 211, and the support member 3 abuts against the second abutting portion 24.

[0104] According to an embodiment of the present disclosure, it should be noted that:

[0105] In this embodiment, some structures are the same as those in Figures 1 to 18 the embodiment, for example, the base 1, the housing 2, the mounting portion 22, the mating portion 21, the connecting portion 11, the rotating shaft 111, the first rotation direction, the second rotation direction, the arc-shaped protrusion, the arc-shaped groove, etc. Specifically, reference can be made to the above embodiment and will not be elaborated here.

[0106] It can be understood that the inner surface of the arc-shaped protrusion is provided with a protruding second abutting portion 24, and the second abutting portion 24 is located at the edge of the first elongated hole 211 and along the extending direction of the first elongated hole 211. The second abutting portion 24 can extend into an annular second abutting portion 24, that is, surrounding the first elongated hole 211 in a ring shape, or can be a strip-shaped second abutting portion 24 extending along a direction parallel to the extending direction of the first elongated hole 211.

[0107] In one embodiment, as Figure 23 shown, the second abutting portion 24 includes a first section (the second abutting portion 24 on the left) and a second section (the second abutting portion 24 on the right) located on both sides of the first elongated hole 211, and the extending directions of the first section and the second section are both parallel to the extending direction of the first elongated hole 211.

[0108] According to an embodiment of the present disclosure, by providing two sections for abutting against the support member 3, the stability of the support member 3 in the housing 2 can be further improved, and setting two parallel second abutting portions 24 can simplify the structure and processing difficulty of the second abutting portion 24.

[0109] It can be understood that due to the influence of processing errors and process levels, etc., the inner surface of the housing 2 may have an uneven structure. If the support member 3 is provided thereon, the support member 3 may shake and its stability is poor.

[0110] According to an embodiment of the present disclosure, by providing the second abutting portion 24 to abut against the support member 3, the situation where the support member 3 is displaced and shaken in the housing 2 due to insufficient housing 2 processing technology can be avoided, and the stability of the support member 3 in the housing 2 can be improved.

[0111] In one embodiment, as Figures 20 to 26As shown, a fixing portion 25 is provided on the inner surface of the arc-shaped protrusion facing away from the seat body 1, a through hole 34 is provided on the support member 3, and a fastening member can pass through the through hole 34 and be connected to the fixing portion 25.

[0112] According to an embodiment of the present disclosure, it should be noted that:

[0113] The position of the fixing portion 25 corresponds to that of the through hole 34. After the fastening member passes through the through hole 34, it can be connected to the fixing portion 25. Among them, the connection method between the fixing portion 25 and the fastening member can be various, such as snap connection, bolt connection, etc. The fixing portion 25 can be a structure on the inner surface of the arc-shaped protrusion or a structure protruding from the inner surface of the arc-shaped protrusion.

[0114] In one embodiment, as Figures 20 to 26 shown, the fixing portion 25 protrudes from the inner surface of the arc-shaped protrusion, and a fastening hole for connecting with the fastening member is provided on the fixing portion 25. So that the fastening member passes through the through hole 34 and is connected to the fastening hole. For example, the fastening hole includes threads, the fastening member includes a screw, the screw passes through the through hole 34 and is inserted into the fastening hole to be connected with the threads, and the head of the screw abuts against the support member 3 and applies a force to fix the support member 3 on the housing 2, so that the support member 3 is stably connected to the housing 2. At the same time, the fixing portion 25 protruding from the inner surface of the arc-shaped protrusion can prevent the support member 3 from being displaced or shaken in the housing 2 due to insufficient processing technology of the housing 2, and improve the stability of the support member 3 in the housing 2.

[0115] Furthermore, the through hole 34 on the support member 3 can be a hole directly opened on the support member 3 or a hole provided on some structures of the support member 3. In one embodiment, as Figure 19 、 Figures 27 to 29 shown, the support member 3 forms a second groove 35 along the direction away from the mating portion 21, the through hole 34 is provided in the second groove 35, and when the fastening member passes through the through hole 34 and is connected to the fastening hole of the fixing portion 25, the fixing portion 25 is inserted into the second groove 35. According to an embodiment of the present disclosure, the situation that the support member 3 is displaced or shaken in the housing 2 can be further avoided, and the stability of the support member 3 in the housing 2 is improved.

[0116] According to an embodiment of the present disclosure, the stability of the support member 3 can be improved through the cooperative connection of the fastening member and the fixing portion 25.

[0117] In one embodiment, as Figure 1 、 Figure 2 、 Figure 19 、 Figure 20 shown, one end of the rotating shaft 111 facing away from the inner surface of the arc-shaped groove has a flange protruding along the circumferential direction of the rotating shaft 111, and the flange is used to apply a abutting force to the support member 3 so that the support member 3 abuts the arc-shaped protrusion against the arc-shaped groove.

[0118] According to an embodiment of the present disclosure, it should be noted that:

[0119] The flange can be understood as a structure provided at one end of the rotating shaft 111 away from the arc-shaped groove, and the size of the structure is larger than that of the rotating shaft 111. When the arc-shaped protrusion is connected to the arc-shaped groove, the flange abuts against the support member 3 and applies a force towards the arc-shaped groove, so that the support member 3, the housing 2, and the base 1 are connected through the rotating shaft 111, and the connection stability of the support member 3, the housing 2, and the base 1 is improved. Further, it can be understood that the rotating shaft 111 and the arc-shaped groove are separate structures. During the assembly of the bracket, the housing 2 and the base 1 can be connected, that is, the arc-shaped groove and the arc-shaped protrusion are connected, and then the second elongated hole 31 of the support member 3 is aligned with the first elongated hole 211 of the housing 2, and the support member 3 is connected to the inner side wall of the arc-shaped protrusion. One end of the rotating shaft 111 sequentially passes through the second elongated hole 31, the first elongated hole 211 and is connected to the arc-shaped groove, and the flange of the rotating shaft 111 abuts against the support member 3 and applies a abutting force to complete the assembly.

[0120] The abutting force applied by the flange can increase the friction force of the housing 2 rotating relative to the base 1, but does not hinder the relative rotation between the two. At the same time, the abutting force can also keep the relative fixation of the housing 2 and the base 1 when the rotation stops, so that the imaging device can be installed on various structures such as the ceiling, vertical or inclined. By adjusting the abutting force of the flange on the support member 3, the friction force between the arc-shaped protrusion and the arc-shaped groove and the friction force between the flange and the support member 3 are adjusted. For example, in order to improve the damping effect of the rotation of the housing 2, the abutting force of the flange on the support member 3 is increased, and then the friction force between the arc-shaped protrusion and the arc-shaped groove and the friction force between the flange and the support member 3 can be increased. In order to reduce the damping effect of the rotation of the housing 2, the abutting force of the flange on the support member 3 is reduced, and then the friction force between the arc-shaped protrusion and the arc-shaped groove and the friction force between the flange and the support member 3 can be reduced.

[0121] According to an embodiment of the present disclosure, by providing the rotating shaft 111 with a flange to abut and connect with the support member 3, the damping effect of the bracket can be adjusted by adjusting the applied force of the flange.

[0122] In one embodiment, the rotating shaft 111 includes a bolt, the base 1 is provided with a threaded hole, the screw rod of the bolt is screwed into the threaded hole, and the bolt head of the bolt constitutes a flange.

[0123] According to an embodiment of the present disclosure, it should be noted that:

[0124] The threaded holes provided in the seat body 1 can be those set during the machining of the seat body 1, or can be certain structures with threaded holes provided in the seat body 1, such as embedded nuts. The number of turns of the thread on the screw can be adjusted. For example, when the connection between the housing 2 and the support member 3 is such that the annular protrusion 32 of the support member 3 is inserted into the first elongated hole 211 of the seat body 1, it may reduce the aperture of the first elongated hole 211. Therefore, a screw with fewer turns of thread can be selected so that all the threads are connected to the threaded holes of the seat body 1, and the area of the screw without thread is located inside the annular protrusion (i.e., in the holes of the first elongated hole 211 and the second elongated hole 31). Another example is that when the connection between the housing 2 and the support member 3 is such that the support member 3 abuts against the second abutting portion 24 of the housing 2, a screw with fewer turns of thread can be selected or a screw with more turns of thread can also be used.

[0125] In one example, the seat body 1 includes a nut, and the inner wall of the nut is formed as a threaded hole. Further, the nut and the seat body 1 are integrally cast to improve the stress-bearing capacity of the seat body 1.

[0126] In one example, anti-loosening glue is provided on the thread of the screw to stably connect the screw in the threaded hole.

[0127] According to an embodiment of the present disclosure, by adopting a rotating shaft 111 in the form of a bolt, its structure is simple, facilitating the installation and later maintenance of the bracket.

[0128] In one embodiment, as Figure 1 、 Figure 2 、 Figure 19 、 Figure 20 shown, the bracket further includes an elastic member 5, and the elastic member 5 is provided between the flange and the support member 3.

[0129] The elastic member 5 can include various structures such as a spring or an elastic block. It can be sleeved outside the rotating shaft 111.

[0130] According to an embodiment of the present disclosure, by providing the elastic member 5, in the case where the bolts become loose during the long-term rotation of the bracket, the elastic member 5 can release its elastic force to keep the bracket in good damping effect.

[0131] In one embodiment, as Figure 1 、 Figure 2 、 Figures 17 to 19 、 Figure 20 shown, the bracket further includes a gasket 6, and the gasket 6 is provided between the elastic member 5 and the support member 3.

[0132] According to an embodiment of the present disclosure, it should be noted that:

[0133] The spacer 6 is a structure for increasing the contact area between the elastic member 5 and the support member 3. Further, it can be understood that the size of the spacer 6 is larger than the aperture diameter of the second elongated hole 31. Among them, the structure of the spacer 6 can be an arc-shaped surface structure, that is, the outer edge to the center of it is a concave structure, or it can be understood that the outer edge of the spacer 6 is slightly upturned. To prevent the outer edge of the spacer 6 from getting stuck with the support member 3 when the spacer 6 moves relative to the support member 3.

[0134] According to an embodiment of the present disclosure, by providing the spacer 6, the contact area with the support member 3 is increased, the frictional force is increased, the damping effect when rotating the rotating housing 2 is improved, and the rotation feel is increased. At the same time, the durability of the bracket is improved, and it is convenient for later replacement.

[0135] In one example, the elastic member 5 includes a spring. The diameter of the spring is slightly larger than the diameter of the screw and smaller than the outer diameter of the spacer 6. The pitch and wire diameter of the spring can be adjusted according to the rotational damping force of the housing 2.

[0136] In one embodiment, the housing 2 is an integrally formed plastic part, and the base body 1 is an integrally formed plastic part. To avoid damage to the inner side wall of the arc-shaped protrusion by the head of the bolt, the support member 3 made of a metal material and the spacer 6 made of a metal material are used to improve the service life of the bracket.

[0137] In the above Figures 1 to 18 Some structures in the bracket of the embodiment and some structures in the bracket of the above Figures 19 to 32 embodiment can be the same structure, that is, Figures 1 to 18 Some structures in the embodiment can be interchanged with some structures in the Figures 19 to 32 embodiment. For example, Figure 1 the base body 1 in Figure 19 is the same structure as the base body 1 in Figure 1 or the rotating shaft 111, the spacer 6 and the elastic member 5 in Figure 19 are respectively the same structures as the rotating shaft 111, the spacer 6 and the elastic member 5 in Figures 1 to 18 The specific structures can refer to the above embodiments and will not be elaborated here. Further, in one embodiment, the mounting portion 22 of the housing 2 and the first elongated hole 211 in the above Figures 19 to 32 embodiment are respectively the same structures as the mounting portion 22 of the housing 2 and the first elongated hole 211 in the above

[0138] According to another aspect of the present disclosure, a camera device is provided, as Figure 33 shown, including the bracket of any one of the above embodiments and a camera 7 for collecting images, and the camera 7 is connected to the mounting portion 22 of the bracket.

[0139] According to the embodiments of the present disclosure, it should be noted that:

[0140] The structure and function of the bracket are the same as those of the above embodiments, and for details, reference may be made to the above embodiments and will not be elaborated here.

[0141] The camera 7 may adopt any image collection device in the prior art, for example, a bullet camera 7, a dome camera 7, an all-in-one camera 7, an infrared camera 7, an IP camera 7, and so on.

[0142] When applying this camera device, connect the base 1 to a wall, a desktop, a vertical rod, etc., then place the support member 3 in the housing 2 and connect it to the inner side wall of the arc-shaped groove, and make the second elongated hole 31 correspond to the first elongated hole 211. After the screw of the bolt passes through the elastic member 5 and the gasket 6 in sequence, then passes through the second elongated hole 31 and the first elongated hole 211 to connect with the arc-shaped groove of the base 1, then connect the cover body 4 to the inner side wall of the housing 2, and install the camera 7 on the mounting portion 22 of the housing 2 to complete the installation of the camera device. By rotating the housing 2 in the first rotation direction, the housing 2 synchronously drives the camera 7 to rotate in the first rotation direction, so that the camera 7 collects images at different angles in the first rotation direction. After the housing 2 rotates to a certain angle in the first rotation direction, the housing 2 can continue to rotate in the second rotation direction, and the housing 2 synchronously drives the camera 7 to rotate in the second rotation direction, so that the camera 7 collects images at different angles in the second rotation direction.

[0143] According to the embodiments of the present disclosure, there is no need to use tools to adjust the shooting angle of the camera 7, which reduces the operation cost, and the structure of the bracket is simple and small in size, improving the space occupancy rate and reducing the cost expenditure. At the same time, by rotating the housing 2, the camera 7 can be synchronously driven to rotate in the first rotation direction and the second rotation direction, so that the camera 7 can shoot images at multiple angles to meet the requirements of multi-angle shooting.

[0144] In the description of this specification, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. are based on the orientation or positional relationships shown in the drawings. These are only for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present disclosure.

[0145] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present disclosure, the meaning of "a plurality" is two or more, unless otherwise specifically defined.

[0146] In the present disclosure, unless otherwise clearly specified and limited, the terms "mounted", "connected", "coupled", "fixed", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection, an electrical connection, or a communication connection; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present disclosure can be understood according to specific circumstances.

[0147] In the present disclosure, unless otherwise clearly specified and limited, the first feature being "on" or "under" the second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but being in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the first feature has a lower horizontal height than the second feature.

[0148] The foregoing disclosure provides many different embodiments or examples for implementing different structures of the present disclosure. To simplify the disclosure of the present disclosure, components and settings of specific examples are described above. Of course, they are merely examples and are not intended to limit the present disclosure. In addition, the present disclosure may repeat reference numerals and / or reference letters in different examples, and this repetition is for the purpose of simplicity and clarity and does not in itself indicate the relationship between the various embodiments and / or settings discussed.

[0149] The above specific embodiments do not constitute a limitation on the protection scope of the present disclosure. Those skilled in the art should understand that various modifications, combinations, sub - combinations and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present disclosure shall be included within the protection scope of the present disclosure.

Claims

1. A bracket, characterized in that, include: A seat body, wherein the seat body is provided with a connecting portion; A shell, wherein the shell is provided with a matching portion and a mounting portion, wherein the matching portion is rotatably connected to the connecting portion so that the shell can rotate relative to the base body along a first rotation direction, and the shell can rotate relative to the base body along a second rotation direction, and the mounting portion is used to connect with a camera, wherein the rotation axis of the first rotation direction and the rotation axis of the second rotation direction are perpendicular to each other.

2. The bracket according to claim 1, characterized in that: The connecting portion includes an arc-shaped groove and a rotating shaft arranged in the arc-shaped groove, and the inner surface of the arc-shaped groove is a part of a spherical surface; The mating portion includes an arc-shaped protrusion that is matingly connected to the arc-shaped groove, and a first elongated hole is provided on the arc-shaped protrusion, and the rotating shaft passes through the first elongated hole. The shell can rotate around the rotating shaft along the first rotation direction, and the rotating shaft can move relative to the shell in the first elongated hole along the extension direction of the first elongated hole, so that the shell can rotate relative to the seat body along the second rotation direction.

3. The bracket according to claim 2, characterized in that, Also includes: A support member is located at one end of the arc-shaped protrusion away from the seat body; and the support member has a second elongated hole corresponding to the first elongated hole, and the rotating shaft passes through the second elongated hole.

4. The bracket according to claim 3, characterized in that: The support member also includes an annular protrusion protruding in a direction toward the seat body, the annular protrusion is arranged around the edge of the second elongated hole, and the annular protrusion is inserted into the first elongated hole, and the outer surface of the annular protrusion contacts the inner surface of the first elongated hole.

5. The bracket according to claim 3, characterized in that: The shell includes a cylindrical body, the matching portion is connected to one end of the cylindrical body, the inner surface of the cylindrical body is provided with a plurality of first abutment portions extending in a direction parallel to the rotating axis, the edge of the support member has a plurality of abutment positions, and each of the plurality of first abutment portions is used to abut against one of the plurality of abutment positions.

6. The bracket according to claim 5, characterized in that, The abutting position comprises a first groove arranged at the edge of the supporting member, and the first abutting portion is engaged in the first groove.

7. The bracket according to claim 6, wherein Also includes: The cover body is connected to the inner surface of the cylindrical body, and the cover body abuts against an end of the first abutting portion away from the matching portion.

8. The bracket according to claim 3, characterized in that: The shell includes a second abutment portion arranged on the inner surface of the arc-shaped protrusion away from the seat body, the second abutment portion protrudes from the inner surface of the arc-shaped protrusion, and the second abutment portion is arranged at the edge of the first elongated hole, and the support member abuts against the second abutment portion.

9. The bracket according to claim 8, characterized in that: The second abutting portion includes a first section and a second section located at two sides of the first elongated hole, and the extending directions of the first section and the second section are both parallel to the extending direction of the first elongated hole.

10. The bracket according to claim 3, characterized in that: The inner surface of the arc-shaped protrusion facing away from the seat body is provided with a fixing portion, and the support member is provided with a through hole, and a fastening member can pass through the through hole and be connected to the fixing portion.

11. The bracket according to claim 10, wherein The fixing portion protrudes from the inner surface of the arc-shaped protrusion, and the fixing portion is provided with a fastening hole for connecting with the fastening member.

12. The bracket according to claim 10, wherein The support member forms a second groove in a direction away from the mating portion, the through hole is provided at the bottom of the second groove, and when the fastening member passes through the through hole and is connected to the fastening hole, the fixing portion is inserted into the second groove.

13. The bracket according to any one of claims 3 to 12, wherein One end of the rotating shaft facing away from the inner surface of the arc-shaped groove has a flange protruding from the rotating shaft along the circumferential direction of the rotating shaft, and the flange is used to apply a pressing force to the support member so that the support member presses the arc-shaped protrusion against the arc-shaped groove.

14. The bracket according to claim 13, wherein The rotating shaft includes a bolt, the seat body is provided with a threaded hole, the screw of the bolt is screwed into the threaded hole, and the bolt head of the bolt constitutes the flange.

15. The bracket according to claim 13, characterized in that, Further comprising: An elastic member, the elastic member is arranged between the flange and the support member.

16. The bracket according to claim 15, wherein, Further comprising: A gasket, the gasket is arranged between the elastic member and the support member.

17. An imaging device, characterized in that, Comprising The bracket according to any one of claims 1 to 16; A camera for collecting images, the camera is connected to the mounting portion of the bracket.