Mounting bracket and monitoring equipment

By designing an adjustable connection mechanism between the camera and the solar panel, the problem of limited adjustment range in complex environments is solved, enabling stable installation and efficient adjustment of the equipment in multiple scenarios and reducing production costs.

CN223511877UActive Publication Date: 2025-11-04SHENZHEN BAICHUAN SECURITY TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520019428.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-11-04
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing cameras and solar panels have limited adjustment range in complex environments, and are prone to environmental obstruction or mutual interference, affecting normal operation.

Method used

At least two adjustment mechanisms are used, and the camera and solar panel are independently adjustable and the distance is adjusted by rotating the connecting seat and the connecting rod. This increases the adjustment range and flexibility. A ball head and an arc-shaped opening are used for friction fit to fix the angle, and a damping structure is set at the connection to prevent malfunction.

Benefits of technology

This enables unobstructed and interference-free operation of cameras and solar panels in complex environments, improving the compatibility and stability of the equipment in different scenarios and reducing production costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223511877U_ABST
    Figure CN223511877U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of equipment supports, and discloses a mounting support and monitoring equipment, the mounting support comprises a mounting seat and at least two adjusting mechanisms, and the adjusting mechanisms are fixedly connected to the mounting seat; each adjusting mechanism comprises a connecting seat, a first connecting rod and a second connecting rod, a first steering seat and a second steering seat are arranged at the two ends of the connecting seat respectively, and one end of the first connecting rod is rotationally connected with the first steering seat; and one end of the second connecting rod is rotationally connected with the second steering seat. Through the mode, the mounting bracket provided by the utility model can meet the orientation adjustment requirements of the solar panel and the camera in a complex environment, and better realizes no environmental shielding or no mutual interference between the solar panel and the camera.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of equipment support, in particular to a mounting support and a monitoring device. BACKGROUND

[0002] With the development of new energy technology, in many fields such as security monitoring, more and more cameras begin to use solar power to achieve the purpose of green environmental protection and the use of renewable energy.

[0003] In use, the camera and the solar panel generally need to be fixed on a high position, such as a wall, a ceiling, a tree trunk, etc. In order to facilitate the fixing of the camera and the solar panel, the existing monitoring device generally first installs the camera and the solar panel on the same mounting seat to form a whole, and then performs a climbing operation to fix the whole on the carrier, thereby simplifying the process of climbing operation and facilitating the installation and fixing of the camera and the solar panel at a high position.

[0004] In the existing monitoring device, the camera and the solar panel are generally fixedly connected to the mounting seat through a rod-shaped structure, and the camera and the solar panel are also rotatably connected to the rod-shaped structure through a rotating shaft. Although this way can realize the orientation adjustment of the camera and the solar panel, the adjustment range is limited, and in a complex installation environment such as a dense tree in the wild, the problem of environmental obstruction or mutual interference between the camera and the solar panel is easily formed. CONTENT OF THE INVENTION

[0005] In view of the above problems, the present application provides a mounting support and a monitoring device, which can meet the orientation adjustment requirements of the solar panel and the camera in a complex environment, and better realize no environmental obstruction or no mutual interference between the solar panel and the camera.

[0006] According to an aspect of the present application, a mounting support is provided, comprising: a mounting seat and at least two adjustment mechanisms, the adjustment mechanisms being fixedly connected to the mounting seat; each of the adjustment mechanisms comprises a connecting seat, a first connecting rod and a second connecting rod, the connecting seat being provided with a first turning seat and a second turning seat at two ends respectively; the first turning seat is relatively rotatably connected to one end of the first connecting rod, so as to rotate and fix the first connecting rod relative to the connecting seat, the other end of the first connecting rod being fixedly connected to the mounting seat; the second turning seat is relatively rotatably connected to one end of the second connecting rod, so as to rotate and fix the second connecting rod relative to the connecting seat.

[0007] In an alternative mode, the first steering seat is provided with a first arc-shaped opening, one end of the first connecting rod is provided with a first ball head, and the first ball head is arranged in the first arc-shaped opening and frictionally connected with the inner wall of the first arc-shaped opening; the second steering seat is provided with a second arc-shaped opening, one end of the second connecting rod is provided with a second ball head, and the second ball head is arranged in the second arc-shaped opening and frictionally connected with the inner wall of the second arc-shaped opening.

[0008] In an alternative mode, the width of the first arc-shaped opening formed in the first steering seat is greater than the width of the first connecting rod, and the width of the second arc-shaped opening formed in the second steering seat is greater than the width of the second connecting rod.

[0009] In an alternative mode, the first arc-shaped opening and the second arc-shaped opening can respectively allow the first connecting rod and the second connecting rod to swing at least 180°.

[0010] In an alternative mode, the first arc-shaped opening and the second arc-shaped opening are provided with a clearance gap on the opposite two arc-shaped edges.

[0011] In an alternative mode, the inner wall of the first arc-shaped opening and the inner wall of the second arc-shaped opening are both provided with a damping structure, and the first ball head and the second ball head are both frictionally connected with the damping structure.

[0012] In an alternative mode, the damping structure is a groove pattern, a rubber buffer pad or a wave-shaped gasket.

[0013] In an alternative mode, the mounting seat is provided with a through hole on the opposite two sides, and the through hole is used for passing the binding belt.

[0014] In an alternative mode, the mounting seat is provided with a winding structure.

[0015] In an alternative mode, the winding structure includes a winding column or a storage bin.

[0016] In an alternative mode, the first connecting rod, the connecting seat and the second connecting rod are hollow inside to form a wire channel; one end of the first connecting rod is fixedly connected with the winding structure; and the winding structure is provided with a wire outlet hole connected with the wire channel.

[0017] In an alternative mode, in each of the adjusting mechanisms, the first connecting rod, the connecting seat and the second connecting rod are internally provided with a conductive wire, the first connecting rod is provided with a first conductive connector at one end close to the winding structure, and the conductive wire is electrically connected with the first conductive connector; the winding structure is provided with a plurality of second conductive connectors, and the plurality of second conductive connectors are electrically connected with each other; each of the first connecting rods is fixed and electrically connected with the second conductive connectors through the first conductive connector respectively.

[0018] According to another aspect of the embodiment of the present application, a monitoring device is provided, comprising a camera, a solar panel and the mounting support in any of the above, the camera and the solar panel are fixed on the at least two second connecting rods in the mounting support, and the solar panel is electrically connected with the camera.

[0019] The mounting support provided by the embodiment of the present application can first fix the camera and the solar panel by adopting at least two same adjusting mechanisms, so as to reduce the number of types of parts, improve the reuse rate of the same parts, and thus reduce the overall production cost of the mounting support. Secondly, for the design of the adjusting mechanism, the connecting seat is movably connected with one end of the first connecting rod and one end of the second connecting rod through the first turning seat and the second turning seat at two ends respectively, so that the adjusting mechanism as a whole forms three sections which can move relative to each other, and then the adjustment of the distance between the mounting seat, the camera and the solar panel and the large-range orientation adjustment of the camera and the solar panel are realized through the mutual movement of the three sections, so as to meet the requirements that the camera and the solar panel have no environmental obstruction and no mutual interference in various complex scenes, and the monitoring device using the mounting support has stronger compatibility for different use scenes. BRIEF DESCRIPTION OF DRAWINGS

[0020] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments with reference made to the accompanying drawings. The drawings are for purposes of illustration only and are not considered a limitation of the present application. Further, like reference numerals have been used throughout the several views to designate identical elements. In the drawings:

[0021] Figure 1 a perspective view of the monitoring device with the mounting support according to the embodiment of the present application;

[0022] Figure 2 an exploded view of the monitoring device with the mounting support according to the embodiment of the present application;

[0023] Figure 3 an exploded view of the adjusting mechanism in the mounting support according to the embodiment of the present application;

[0024] Figure 4A perspective view of the adjusting mechanism in the mounting bracket provided by the embodiment of the utility model;

[0025] Figure 5 A side view of the adjusting mechanism in the mounting bracket provided by the embodiment of the utility model;

[0026] Figure 6 An exploded view of the adjusting mechanism in the mounting bracket provided by the embodiment of the utility model;

[0027] Figure 7 A perspective view of the mounting seat in the mounting bracket provided by the embodiment of the utility model;

[0028] Figure 8 A use scene diagram of the monitoring device provided by the embodiment of the utility model;

[0029] Figure 9 An exploded view of the mounting bracket provided by the embodiment of the utility model.

[0030] The specific embodiment is as follows:

[0031] 100, mounting bracket;

[0032] 110, mounting seat; 111, through hole; 112, base; 1121, winding structure; 1122, second conductive connector; 113, protective shell; 114, toothed structure;

[0033] 120, adjusting mechanism;

[0034] 121, connecting seat; 1211, first turning seat; 1212, second turning seat; 1213a, first arc-shaped opening; 1213b, second arc-shaped opening; 12131, arc-shaped edge; 1214, position-avoiding gap; 1215, damping structure; 1216, first shell; 1217, second shell; 1218, adjusting piece; 12181, screw rod; 12182, screwing part; 12183, elastic piece; 12191, guide column; 12192, guide hole;

[0035] 122, first connecting rod; 1221, first ball head; 1222, first conductive connector;

[0036] 123, second connecting rod; 1231, second ball head;

[0037] 200, camera; 300, solar panel; 400, bandage; 500, tree trunk; 1000, monitoring device. Specific embodiment

[0038] The embodiments of the technical solutions of the present application will be described in detail below with reference to the drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, but cannot limit the protection scope of the present application.

[0039] In order to prevent the solar panel and the camera from being blocked or interfering with each other and affecting normal work in a complex environment, the present application considers improving the support on which the solar panel and the camera are installed from two aspects, one is to adopt a mechanism that the distance between the solar panel and the camera is adjustable, and the other is to adopt a mechanism that the respective orientations of the solar panel and the camera are independently adjustable, so as to increase the adjustment range and flexibility of the solar panel and the camera through the independent adjustment of their respective orientations and the adjustment of the distance between them, thereby improving the adaptability in a more complex environment.

[0040] According to an aspect of an embodiment of the present application, a mounting support is provided, and specific reference can be made to Figure 1 , the structure of the monitoring device with the mounting support is shown in the figure, the mounting support 100 comprises a mounting seat 110 and at least two adjustment mechanisms 120. Among them, the mounting seat 110 can be used to install and fix on a carrier (not shown in the figure, for example, it can be a tree trunk, a telegraph pole, a wall surface, a ceiling, etc.), and different ways of assembling and fixing on the carrier can be adopted according to the type of the carrier, for wall surfaces, ceilings, etc. The carrier, the mounting seat 110 can be fixed by screws or rivets, and for tree trunks, telegraph poles, etc. The carrier can be fixed by binding with a binding belt. The adjustment mechanism 120 is fixedly connected to the mounting seat 110, and the assembly mode of the adjustment mechanism 120 and the mounting seat 110 is introduced and explained below.

[0041] Please further combine the explosion structure of the mounting support 100 as a whole shown in Figure 2 , and the explosion structure of the adjustment mechanism 120 shown in Figure 3 , each adjustment mechanism 120 comprises a connecting seat 121, a first connecting rod 122 and a second connecting rod 123, and the two ends of the connecting seat 121 are respectively provided with a first turning seat 1211 and a second turning seat 1212.

[0042] The first turning seat 1211 is relatively rotatably connected to one end of the first connecting rod 122, and the angle between the connecting seat 121 and the first connecting rod 122 can be adjusted. When adjusted to a specific angle, the first turning seat 1211 is used to relatively fix the first connecting rod 122, so as to fix the angle between the connecting seat 121 and the first connecting rod 122. Among them, the specific angle is any angle that the first connecting rod 122 can rotate within the range allowed by the first turning seat 1211, and the angle range allowed by the first turning seat 1211 is limited by its setting mode, structure shape, etc. In use, it can be set according to needs.

[0043] The second turning seat 1212 is rotationally connected to one end of the second connecting rod 123, and the angle between the connecting seat 121 and the second connecting rod 123 can be rotationally adjusted. When the angle is adjusted to a specific angle, the second turning seat 1212 is used to relatively fix the second connecting rod 123, so as to fix the angle between the connecting seat 121 and the second connecting rod 123. The specific angle is any angle within the range of rotation of the second connecting rod 123 allowed by the second turning seat 1212. The range of rotation of the second turning seat 1212 is limited by the setting mode, structure shape and the like, and can be set according to the needs in use.

[0044] The other end of the at least two second connecting rods 123 can be used to fix the camera 200 and the solar panel 300, respectively. It should be pointed out here that, in the embodiment, the second connecting rod 123 in one adjusting mechanism 120 is used to fix the camera 200, and the second connecting rod 123 in the other adjusting mechanism 120 is used to fix the solar panel 300, which does not constitute a limitation on the specific number of adjusting mechanisms 120. In other embodiments, more adjusting mechanisms 120 can be used to fix multiple cameras 200 or multiple solar panels 300. Figure 1 Figure 2 In the embodiment, two adjusting mechanisms 120 are used, one of which is used to fix the camera 200, and the other of which is used to fix the solar panel 300. This does not constitute a limitation on the specific number of adjusting mechanisms 120. In other embodiments, more adjusting mechanisms 120 can be used to fix multiple cameras 200 or multiple solar panels 300.

[0045] For the assembly between the first connecting rod 122 and the mounting seat 110 and between the second connecting rod 123 and the camera 200 and the solar panel 300, a plug-in combination screw fastening mode can be used for fixation, that is, a plug hole can be formed on the mounting seat 110, the camera 200 and the solar panel 300. The end of the first connecting rod 122 is inserted into the plug hole on the mounting seat 110, and then a screw is screwed from the inside of the mounting seat 110 to lock and fix the mounting seat 110 and the first connecting rod 122. The second connecting rod 123 is inserted into the plug hole on the camera 200 or the solar panel 300, and then a screw is screwed from the inside of the camera 200 or the solar panel 300 to lock and fix them. In this way, the assembly and fixation of the first connecting rod 122 and the mounting seat 110 and the assembly and fixation of the second connecting rod 123 and the camera 200 and the solar panel 300 are achieved. It should be noted that this does not constitute a limitation on the specific connection mode between the first connecting rod 122 and the mounting seat 110 and between the second connecting rod 123 and the camera 200 and the solar panel 300. In other embodiments, a clamping, bonding or other mode can be used for assembly.

[0046] ​On the basis of the movable connection of the first connecting rod 122 with the first turning seat 1211 on the connecting seat 121 and the movable connection of the second connecting rod 123 with the second turning seat 1212 on the connecting seat 121, when the mounting seat 110 is fixed, the camera 200 and the solar panel 300 at least include the following adjustment modes: through the swinging of the connecting seat 121 relative to the first connecting rod 122 along the direction indicated by the double-headed arrow A in the figure, the orientations of the camera 200 and the solar panel 300, the positions of the camera 200 and the solar panel 300 relative to the mounting seat 110, and the relative positions between the camera 200 and the solar panel 300 can be adjusted. Through the rotation of the connecting seat 121 relative to the mounting seat 110, the poses of the camera 200 and the solar panel 300 can be adjusted, for example, the camera 200 and the solar panel 300 can be adjusted to be horizontal, vertical, or inclined, etc. Through the swinging of the second connecting rod 123 relative to the connecting seat 121 along the direction indicated by the double-headed arrow B in the figure, the orientations of the camera 200 and the solar panel 300 can be further adjusted. Through the rotation of the second connecting rod 123 relative to the connecting seat 121, the poses of the camera 200 and the solar panel 300 can be further adjusted. It can be understood that, Figure 1 The state shown is only the most common setting state of the monitoring device using the mounting support 100 in the wall-mounted use scenario. Based on the above description of the adjustable range of the adjustment mechanism 120, in the corresponding use scenario, the camera 200 and the solar panel 300 can be flexibly adjusted according to the specific circumstances of the arrangement scene to achieve the effect of no environmental obstruction and no mutual interference.

[0047] In summary, in the mounting support 100 provided by the embodiment of the present application, first, the camera 200 and the solar panel 300 are fixed by using at least two same adjustment mechanisms 120, which can reduce the number of types of parts, improve the reuse rate of the same parts, and thereby reduce the overall production cost of the mounting support 100. Second, for the design of the adjustment mechanism 120, the first turning seat 1211 and the second turning seat 1212 are respectively movably connected with one end of the first connecting rod 122 and one end of the second connecting rod 123 at two ends of the connecting seat 121, so that the adjustment mechanism 120 as a whole forms three sections that can move relative to each other. Through the mutual adjustment of the three sections, the distance between the mounting seat 110, the camera 200, and the solar panel 300 is adjusted, and the orientations of the camera 200 and the solar panel 300 are adjusted in a large range, so as to meet the requirements of no environmental obstruction and no mutual interference of the camera 200 and the solar panel 300 in various complex scenes, and the compatibility of the monitoring device using the mounting support 100 for different use scenarios is stronger.

[0048] Further, in some embodiments, in order to better adjust the length and angle of the adjusting mechanism 120, the first connecting rod 122 and the second connecting rod 123 can be flexibly adjusted relative to the connecting seat 121 to expand the adjusting range of the camera 200 and the solar panel 300, adapt to more use scenarios, and continue to refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 The first connecting rod 122 is provided with a first ball head 1221 at one end, and the first turning seat 1211 is provided with a first arc-shaped opening 1213a. The first ball head 1221 is accommodated in the first arc-shaped opening 1213a of the first turning seat 1211 and is in frictional fit with the inner wall of the first arc-shaped opening 1213a, so that the first ball head 1221 can be moved relative to the first turning seat 1211 to a certain state and then fixed. The other end of the first connecting rod 122 is fixedly connected to the mounting seat 110.

[0049] The second connecting rod 123 is provided with a second ball head 1231 at one end, and the second turning seat 1212 is provided with a second arc-shaped opening 1213b. The second ball head 1231 is accommodated in the second arc-shaped opening 1213b of the second turning seat 1212 and is in frictional fit with the inner wall of the second turning seat 1212, so that the second ball head 1231 can be moved relative to the second turning seat 1212 to a certain state and then fixed.

[0050] As shown in the perspective structure of the adjusting mechanism 120 in Figure 4 and Figure 5 The first turning seat 1211 is provided with a first arc-shaped opening 1213a, and the second turning seat 1212 is provided with a second arc-shaped opening 1213b. As shown in the structure of the side view of the adjusting mechanism 120 in Figure 5 The width W1 of the arc-shaped opening on the first turning seat 1211 for the swing of the first connecting rod 122 can be greater than the width W2 of the first connecting rod 122 itself. Similarly, the width W3 of the arc-shaped opening on the second turning seat 1212 for the swing of the second connecting rod 123 can be greater than the width W4 of the second connecting rod 123 itself. By such arrangement, the connecting seat 121 can swing relative to the first connecting rod 122 by a certain amplitude along the double-headed arrow C in Figure 5 Similarly, the second connecting rod 123 can swing relative to the connecting seat 121 by a certain amplitude along the double-headed arrow D in the figure, thereby increasing the adjustable directions of the camera 200 and the solar panel 300 and improving the flexibility of their adjustment to meet the layout requirements in complex scenarios.

[0051] Further, as shown in Figure 4As shown, the first arc-shaped opening 1213a and the second arc-shaped opening 1213b can allow the first connecting rod 122 and the second connecting rod 123 to swing at least 180° inwards

[0052] It should be noted that the connection manner of the first connecting rod 122 and the connecting seat 121, and the second connecting rod 123 and the connecting seat 121 can be achieved by the above-mentioned ball head and arc-shaped opening matching manner to realize arbitrary adjustment of the angle, and can also be achieved by using a universal cross joint, a universal pin, etc., which is not limited in the embodiment of the present application.

[0053] In the embodiment, the first arc-shaped opening 1213a and the second arc-shaped opening 1213b are provided on the first steering seat 1211 and the second steering seat 1212 to allow the first connecting rod 122 and the second connecting rod 123 to swing at least 180° inwards during adjustment, so as to maximize the swing range and further realize larger range adjustment of the camera 200 and the solar panel 300, and meet more diversified application scenarios.

[0054] Further, please refer to Figure 4 , the two arc-shaped edges 12131 of the second arc-shaped opening 1213b are provided with an avoidance gap 1214, and similarly, due to the limitation of the display angle, Figure 4 only the avoidance gap 1214 at the second steering seat 1212 is shown in FIG. 12B, and the first arc-shaped opening 1213a on the first steering seat 1211 has the same structure.

[0055] In Figure 4 the specific embodiment shown in FIG. 12B, the avoidance gap 1214 is provided at the end of the first steering seat 1211 and the second steering seat 1212, when the connecting seat 121 swings to be in a same straight line with the first connecting rod 122, the connecting seat 121 can swing into the avoidance gap 1214 relative to the first connecting rod 122 along the direction indicated by the double-headed arrow C in Figure 5 , thereby realizing larger swing of the connecting seat 121. Similarly, when the second connecting rod 123 swings to be in a same straight line with the connecting seat 121, the second connecting rod 123 can swing a larger range relative to the connecting seat 121 along the direction indicated by the double-headed arrow D in Figure 5 , thereby realizing larger swing of the second connecting rod 123. Based on this, the adjustment range of the connecting seat 121 along the double-headed arrow C and the second connecting rod 123 along the double-headed arrow D can be improved.

[0056] In addition to Figure 4In addition to the illustrated manner, in other embodiments, the avoidance gap 1214 can be arranged at any position on the arc-shaped edge 12131 according to the specific arrangement scene requirements, or a plurality of avoidance gaps 1214 can be arranged directly on the arc-shaped edge 12131, so that the connecting seat 121 can be along the direction of the double-headed arrow A, the double-headed arrow B, the double-headed arrow C, the double-headed arrow D, or the double-headed arrow E to swing in a large amplitude in multiple states. Figure 5 In the middle, the second connecting rod 123 can swing in a large amplitude along the direction of the double-headed arrow C, and the connecting seat 121 can swing in a large amplitude along the direction of the double-headed arrow D in multiple states. Figure 5 In the middle, the second connecting rod 123 can swing in a large amplitude along the direction of the double-headed arrow C, and the connecting seat 121 can swing in a large amplitude along the direction of the double-headed arrow D in multiple states.

[0057] Considering that the mounting bracket 100 needs to fix the camera 200 and the solar panel 300 for a long time, and under the gravity of the camera 200 and the solar panel 300 itself and the influence of complex external environment (for example, strong wind, heavy rain and other weather), the position of the cooperation between the ball head and the turning seat on the adjusting mechanism 120 is prone to misoperation, which will cause the position and orientation of the camera 200 and the solar panel 300 to be wrong, affecting their normal work. In the embodiment of the present application, the inner wall of the first arc-shaped opening 1213a of the first turning seat 1211 and the inner wall of the second arc-shaped opening 1213b of the second turning seat 1212 are provided with a damping structure 1215, and the first ball head 1221 and the second ball head 1231 are frictionally connected with the damping structure 1215. As shown in Figure 3 Due to the limitation of the angle of view, only the damping structure 1215 arranged on the inner wall of the first arc-shaped opening 1213a of the first turning seat 1211 is shown. The damping structure 1215 is used to increase the friction between the ball head and the inner wall of the arc-shaped opening, so that the relative position between the first connecting rod 122, the second connecting rod 123 and the connecting seat 121 can be better fixed.

[0058] The arrangement of the damping structure 1215 can increase the roughness of the inner wall of the arc-shaped opening, thereby increasing the friction between the outer surface of the ball head and the inner wall of the arc-shaped opening, and ensuring that the ball head cannot easily move in the turning seat after installation. Based on this, after the camera and the solar panel are installed and fixed by the mounting bracket, the position and orientation of the camera and the solar panel are not easy to change, and they can work stably and reliably for a long time. The damping structure 1215 can be a groove pattern, a rubber buffer pad or a wave-shaped gasket, etc. The groove pattern can be a concave-convex interlaced pattern formed on the inner surface of the arc-shaped opening. By means of concave-convex interlacing, the friction between the ball head and the inner surface of the arc-shaped opening can be increased. The rubber buffer pad can increase the friction between the ball head and the inner surface of the arc-shaped opening by adding a layer of rubber gasket. Wave-shaped gaskets and other ways can also be used, which are not limited in the embodiment of the present application.

[0059] Further, considering that the mounting bracket 100 is generally in an outdoor environment for a long time, and the camera 200 and the solar panel 300 fixed thereon are heavy, in order to improve the structural strength of the mounting bracket 100 and ensure the stability of the installation of the camera 200 and the solar panel 300, the adjusting mechanism 120 can be made of a metal material with high strength, or the mounting bracket 100 as a whole can be made of a metal material.

[0060] For the convenience of assembly between the ball head and the steering seat, please refer to Figure 6 , which shows the structure of the adjusting mechanism 120 in the overall exploded state, the connecting seat 121 includes a first shell 1216 and a second shell 1217, and the first shell 1216 and the second shell 1217 are opposite to each other, forming a first steering seat 1211 and a second steering seat 1212 respectively located at both ends of the connecting seat 121.

[0061] Specifically, as Figure 6 shown, the first shell 1216 and the second shell 1217 are in a mutually engaged state, the first steering seat 1211 is formed by the mutual engagement of one end of the first shell 1216 and one end of the second shell 1217, and the second steering seat 1212 is formed by the mutual engagement of the other end of the first shell 1216 and the other end of the second shell 1217.

[0062] During assembly, the first ball head 1221 and the second ball head 1231 can be placed in the partial first steering seat 1211 and the partial second steering seat 1212 formed at both ends of the first shell 1216 respectively, and then the second shell 1217 is engaged on the first shell 1216 and assembled and fixed with the first shell 1216, so that the first ball head 1221 and the second ball head 1231 are movably fixed in the first steering seat 1211 and the second steering seat 1212 respectively. Specifically, the first shell 1216 and the second shell 1217 can be assembled and fixed by screws, clamps or the like.

[0063] In order to facilitate the movable adjustment operation between the ball head and the ball head seat during installation and the reliable fixation after installation, the tightness between the ball head seat and the ball head is also adjustably set. Please continue to refer to Figure 6 , the first shell 1216 and the second shell 1217 are opposite to each other through the adjusting piece 1218, and the adjusting piece 1218 is used to move the first shell 1216 and the second shell 1217 away from or towards each other, so that the first ball head 1221 and the second ball head 1231 are clamped or loosened.

[0064] The adjusting member 1218 can adopt any mechanism capable of pressing or releasing two components, such as a bolt pressed on the first shell 1216 and screwed with the second shell 1217 after penetrating the first shell 1216, or a buckle that pulls the first shell 1216 and the second shell 1217 on both sides.

[0065] In this embodiment, the first shell 1216 and the second shell 1217 are connected by the adjusting member 1218, so that when the positions or orientations of the camera 200 and the solar panel 300 need to be adjusted, the first shell 1216 and the second shell 1217 can be moved away from each other by operating the adjusting member 1218 to loosen the first ball head 1221 and the second ball head 1231, and then the first shell 1216 and the second shell 1217 can be moved towards each other by operating the adjusting member 1218 to tighten and fix the first ball head 1221 and the second ball head 1231, so as to ensure that they cannot be easily moved and guarantee the accurate and reliable positions of the camera 200 and the solar panel 300 after adjustment.

[0066] In Figure 6 In the specific embodiment shown, the adjusting member 1218 includes a screw rod 12181 and a screwing part 12182, the screw rod 12181 penetrates the second shell 1217 and the first shell 1216 and is screwed with the screwing part 12182, so that when the screwing part 12182 is rotated, the screwing part 12182 will move on the screw rod 12181, and then push the first shell 1216 to move towards the second shell 1217 or release the first shell 1216 to move away from the second shell 1217.

[0067] Further, in order to enhance the damping effect when the screwing part 12182 is operated, as shown in Figure 6 The screw rod 12181 is further sleeved with an elastic member 12183, the two ends of the elastic member 12183 abut against the inner walls of the first shell 1216 and the second shell 1217 respectively, and the elastic member 12183 is in a compressed state, which provides elastic force to the first shell 1216 and the second shell 1217 to move away from each other. This makes it necessary to overcome a certain elastic force when the first shell 1216 and the second shell 1217 are moved towards each other by rotating the screwing part 12182, thereby achieving the damping effect when the screwing part 12182 is rotated, and under the action of the elastic force of the elastic member 12183, the first shell 1216 and the second shell 1217 can move away from each other more quickly when the first shell 1216 and the second shell 1217 are moved away from each other by rotating the screwing part 12182.

[0068] In order to achieve basically the same loosening or tightening effect on the first ball head 1221 and the second ball head 1231 when the screwing part 12182 is operated, the screw rod 12181 can beFigure 6 The midpoint between the first steering seat 1211 and the second steering seat 1212 is set to ensure the same compression and release effect on the first steering seat 1211 and the second steering seat 1212. In addition, when the distance between the first steering seat 1211 and the second steering seat 1212 is far, an adjusting member 1218 can be respectively arranged near the first steering seat 1211 and the second steering seat 1212 to respectively adjust the clamping force of the first steering seat 1211 and the second steering seat 1212.

[0069] In addition, in order to ensure the accurate and reliable direction of the movement of the first shell 1216 and the second shell 1217 relative to each other, as shown in Figure 6 The first shell 1216 and the second shell 1217 can also be respectively provided with a guide column 12191 and a guide hole 12192, and the guide column 12191 can be slidably inserted into the guide hole 12192 to guide the relative movement between the first shell 1216 and the second shell 1217. Figure 6 In the specific embodiment shown, in order to prevent the first shell 1216 and the second shell 1217 from rotating relative to each other, two-point guidance is adopted, that is, the first shell 1216 and the second shell 1217 are guided at two positions by the guide column 12191 and the guide hole 12192.

[0070] For the application scenario that the mounting bracket 100 is fixed to the carrier such as a tree trunk or a telegraph pole, in order to facilitate the fixing operation of the mounting bracket 100 on the carrier, the mounting seat 110 is also designed accordingly, please refer to Figure 7 and Figure 8 , Figure 7 The perspective structure of the mounting seat 110 is shown in Figure 8 The use scenario of the monitoring device fixed to the tree trunk is shown in Figure 8 The through hole 111 is provided on the opposite sides of the mounting seat 110, and the through hole 111 is used for the strap 400 to pass through, so that the mounting seat 110 can be fixed to the carrier (for example, the tree trunk 500 shown in

[0071] Regarding the structure of the mounting seat 110, the present application further proposes an implementation manner, please refer to Figure 9The mounting bracket 100 as a whole in the exploded state, the mounting base 110 can include a base 112 and a protective shell 113, the base 112 is provided with a winding structure 1121, in the laying process, the excess wire harness in the mounting base 110 can be wound on the winding structure 1121, to achieve the effect of neatly storing the wire harness. The protective shell 113 is buckled on the base 112 and covers the outer periphery of the winding structure 1121, so as to cover and protect the wire harness wound on the winding structure 1121. Among them, the winding structure 1121 can adopt various structures, such as winding column or storage bin, etc. to store the excess wire harness. One end of the first connecting rod 122 penetrates the protective shell 113 and is fixedly connected to the winding structure 1121, which can be fixedly connected to the winding structure 1121 by Figure 9 The plug-in connection is locked by screws, or other fixing methods such as clamping and riveting.

[0072] When the mounting bracket is applied to install the camera and the solar panel, it is often located in the outdoor scene. In the outdoor scene, the mounting bracket is often affected by wind, rain and sunlight. When the conductive wire connected to the solar panel and the camera is exposed to the outdoor environment, it is very easy to age, thereby affecting its service life. In view of this, the first connecting rod 122, the connecting seat 121 and the second connecting rod 123 are hollowed to form a wire channel, one end of the first connecting rod 122 is fixedly connected to the winding structure 1121, and the winding structure 1121 is provided with a wire outlet hole communicating with the wire channel. In the installation process, one end of the adjusting mechanism is connected to the camera, and the other end is connected to the mounting base 110; the other end of the adjusting mechanism is connected to the solar panel, and the other end is also connected to the mounting base 110. In the wiring process, one end of the conductive wire extends out of one end of the second connecting rod connected to the camera and is electrically connected to the camera, the other end extends to the winding structure 1121 of the mounting base 110 through the wire channel formed in the adjusting mechanism 120 connected to the camera, and extends out of the winding structure 1121 through the wire outlet hole provided on the winding structure 1121. The other wire outlet hole provided on the winding structure 1121 enters the wire channel in the adjusting mechanism 120 connected to the solar panel, and extends out of the second connecting rod and is electrically connected to the solar panel. The excess part of the wire can be stored by the winding structure 1121. In this way, only the wires at both ends of the mounting bracket 100 are exposed to connect the camera and the solar panel, and the other parts are all stored in the mounting bracket, avoiding the exposure of the connecting wires to the external environment, thereby prolonging the service life.

[0073] Further, the adjusting mechanism 120 in the mounting bracket 100 and the mounting seat 110 need to be provided with conductive wires connected with the camera and the solar panel when assembled, and the conductive wires are often troublesome to set up. In some embodiments of the present application, as shown in Figure 9 , the first connecting rod 122 in each adjusting mechanism is provided with a conductive wire inside the connecting seat 121 and the second connecting rod 123, the first connecting rod 122 is provided with a first conductive connector 1222 near one end of the wire winding structure 1121, and the conductive wire is electrically connected with the first conductive connector 1222; the wire winding structure 1121 is provided with a plurality of second conductive connectors 1122, and the plurality of second conductive connectors 1122 are electrically connected with each other; each first connecting rod 122 is fixed and electrically connected with the second conductive connector 1122 through the first conductive connector 1222.

[0074] By pre-providing the conductive wire inside the adjusting mechanism and providing an external interface through the conductive connector, a plurality of wire connectors are arranged on the wire winding structure 1121 of the mounting seat 110, and the user only needs to plug the conductive connectors when assembling to realize the connection between the conductive wires, without the user to arrange the conductive wires, and the conductive wires will not be exposed to the external environment, which greatly facilitates the use and installation of the mounting bracket and improves the service life.

[0075] For the use scenarios that the mounting seat 110 is fixed on trees, rough walls and the like, in order to improve the stability after the mounting seat 110 is installed and fixed, as shown in Figure 7 and Figure 9 , at least part of the edge of the side of the mounting seat 110 away from the adjusting mechanism 120 is provided with a toothed structure 114, and the toothed structure 114 can increase the interaction force between the mounting seat 110 and the carrier such as trees, rough walls and the like, so as to prevent the displacement of the mounting seat 110 after being installed and fixed on the carrier such as trees, rough walls and the like due to gravity and other factors.

[0076] According to another aspect of the embodiments of the present application, a monitoring device is provided, and specific reference can be made to Figure 1 and Figure 2 , the monitoring device 1000 includes a camera 200, a solar panel 300 and the mounting bracket 100 in any of the above embodiments, the camera 200 and the solar panel 300 are fixed on at least two second connecting rods 123 of the mounting bracket 100, and the solar panel 300 is electrically connected with the camera 200 to convert solar energy into electric energy and provide the electric energy to the camera 200.

[0077] The monitoring device 1000 can be as shown in Figure 8The camera 200 and the solar panel 300 are fixed on the tree trunk 500 or a telegraph pole by the binding belt 400, and can also be fixed on a wall, a ceiling or other carriers by other mounting manners, which is not limited here.

[0078] The mounting bracket 100 is used to fix the camera 200 and the solar panel 300 in the monitoring device 1000 provided by the embodiments of the present application, so that the distance between the mounting seat 110, the camera 200 and the solar panel 300 can be adjusted, and the camera 200 and the solar panel 300 can be adjusted in a large range, respectively, to meet the requirements that the camera 200 and the solar panel 300 are not blocked by the environment and do not interfere with each other in various complex scenes, so that the monitoring device 1000 has stronger compatibility for different use scenes.

[0079] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application. Especially, as long as there is no structural conflict, each technical feature mentioned in each embodiment can be combined in any way.

Claims

1. A mounting bracket (100), characterized in that, include: The mounting base (110) and at least two adjustment mechanisms (120) are fixedly connected to the mounting base (110). Each of the adjustment mechanisms (120) includes a connecting seat (121), a first connecting rod (122), and a second connecting rod (123). The two ends of the connecting seat (121) are respectively provided with a first steering seat (1211) and a second steering seat (1212). The first steering seat (1211) is rotatably connected to one end of the first connecting rod (122) to fix the first connecting rod (122) after it is rotated relative to the connecting seat (121), and the other end of the first connecting rod (122) is fixedly connected to the mounting seat (110). The second steering seat (1212) is rotatably connected to one end of the second connecting rod (123) to fix the second connecting rod (123) after it is rotated relative to the connecting seat (121).

2. The mounting bracket (100) according to claim 1, characterized in that, The first steering seat (1211) is provided with a first arc-shaped opening (1213a), and one end of the first connecting rod (122) is provided with a first ball head (1221). The first ball head (1221) is located inside the first arc-shaped opening (1213a) and is in frictional connection with the inner wall of the first arc-shaped opening (1213a). The second steering seat (1212) is provided with a second arc-shaped opening (1213b), and one end of the second connecting rod (123) is provided with a second ball head (1231). The second ball head (1231) is located inside the second arc-shaped opening (1213b) and is in frictional connection with the inner wall of the second arc-shaped opening (1213b).

3. The mounting bracket (100) according to claim 2, characterized in that, The width of the first arc-shaped opening (1213a) on the first steering seat (1211) is greater than the width of the first connecting rod (122), and the width of the second arc-shaped opening (1213b) on the second steering seat (1212) is greater than the width of the second connecting rod (123).

4. The mounting bracket (100) according to claim 3, characterized in that, The first arc-shaped opening (1213a) and the second arc-shaped opening (1213b) allow the first connecting rod (122) and the second connecting rod (123) to swing inwards by at least 180°, respectively.

5. The mounting bracket (100) according to claim 4, characterized in that, A clearance notch (1214) is provided on the two opposite arc-shaped edges (12131) of the first arc-shaped opening (1213a) or the second arc-shaped opening (1213b).

6. The mounting bracket (100) according to claim 2, characterized in that, The inner walls of the first arc-shaped opening (1213a) and the second arc-shaped opening (1213b) are both provided with damping structures (1215), and the first ball head (1221) and the second ball head (1231) are both connected to the damping structures (1215) through frictional engagement.

7. The mounting bracket (100) according to claim 6, characterized in that, The damping structure (1215) is a grooved pattern, a rubber buffer pad, or a corrugated pad.

8. The mounting bracket (100) according to any one of claims 1-7, characterized in that, The mounting base (110) has through holes (111) on opposite sides, and the through holes (111) are used for the straps (400) to pass through.

9. The mounting bracket (100) according to any one of claims 1-7, characterized in that, The mounting base (110) is provided with a winding structure (1121).

10. The mounting bracket (100) according to claim 9, characterized in that, The winding structure (1121) includes a winding post or a storage compartment.

11. The mounting bracket (100) according to claim 9, characterized in that, The first connecting rod (122), the connecting seat (121), and the second connecting rod (123) are hollow inside to form a wiring channel; One end of the first connecting rod (122) is fixedly connected to the winding structure (1121); The winding structure (1121) is provided with an outlet hole that communicates with the wiring channel.

12. The mounting bracket (100) according to claim 9, characterized in that, In each of the adjustment mechanisms (120), the first connecting rod (122), the connecting seat (121), and the second connecting rod (123) are provided with conductive wires. The first connecting rod (122) is provided with a first conductive connector (1222) at one end near the winding structure (1121), and the conductive wire is electrically connected to the first conductive connector (1222). The winding structure (1121) is provided with a plurality of second conductive connectors (1122), and the plurality of second conductive connectors (1122) are electrically connected to each other; Each of the first connecting rods (122) is fixed to the second conductive connector (1122) through the first conductive connector (1222) and forms an electrical connection.

13. A monitoring device (1000), characterized in that, The device includes a camera (200), a solar panel (300), and a mounting bracket (100) according to any one of claims 1-12, wherein the camera (200) and the solar panel (300) are fixed to at least two of the second connecting rods (123) in the mounting bracket (100), and the solar panel (300) is electrically connected to the camera (200).