Monitoring device and equipment thereof

By designing a monitoring device for outdoor construction projects, cameras are staggered and placed on installation sections at different heights, and are coplanar with the support components. This solves the problem of blind spots caused by the fixed height of traditional cameras, and achieves all-round coverage and device stability.

CN223872333UActive Publication Date: 2026-02-03SHENZHEN SHENBAO ELECTRONIC METER CO LTD
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Patent Information

Application Number
CN202520398106.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-03
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

In existing technologies, cameras in outdoor construction projects are usually fixed at the same height, which makes it impossible to flexibly meet the monitoring needs at different heights and achieve all-round coverage.

Method used

Design a monitoring device including a housing, a support assembly, and cameras. The cameras are electrically connected to the support assembly and are staggered on mounting sections at different heights. The geometric centers of all cameras are coplanar with the geometric center of the support assembly. The support assembly is provided with a mounting bracket to provide a basis for flexibly adjusting the position and angle of the cameras.

Benefits of technology

It achieves a wider monitoring coverage, reduces blind spots, provides a comprehensive monitoring perspective, enhances the stability and adaptability of the device, and is suitable for various monitoring needs and environmental conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a monitoring device and equipment thereof, and relates to the technical field of monitoring, the monitoring device comprises a box body, a device main body, a support assembly and at least two cameras, the box body is provided with an accommodating cavity; the device main body is arranged in the accommodating cavity; the supporting assembly is arranged on the box body, a mounting frame is arranged at the end, away from the box body, of the supporting assembly, and the mounting frame is at least provided with two mounting sections. The at least two cameras are respectively and electrically connected with the device main body, the at least two cameras are respectively arranged on the mounting sections and are staggered in the height direction of the box body, and the plane where the geometric centers of the at least two cameras are located is coplanar with the plane where the geometric center of the supporting assembly is located; according to the technical scheme provided by the utility model, the problem that monitoring requirements of different heights cannot be flexibly met due to the fact that cameras of a traditional outdoor construction site construction project are fixed at the same height can be solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to monitoring technical field, especially relate to a monitoring device and equipment thereof. BACKGROUND

[0002] In the related art, in the outdoor construction project, there is usually a remote monitoring, video recording and intelligent alarm business demand. The remote monitoring, video recording and intelligent alarm are all realized based on the image of the shooting of the camera on the construction site. In order to be able to monitor the construction site from multiple angles, at least two cameras are usually required to ensure the coverage range. However, the existing arrangement mode is to ensure the installation balance, and these cameras are usually arranged equidistantly at the same height, which leads to the monitoring task of only a specific height, and cannot flexibly meet the monitoring demand of different heights. CONTENT OF UTILITY MODEL

[0003] The main purpose of the utility model is to provide a monitoring device, a monitoring equipment and theme three, which aims at improving the problem that the camera arrangement mode of the traditional outdoor construction project is fixed at the same height, leading to the problem that the monitoring demand of different heights cannot be flexibly met.

[0004] To achieve the above purpose, the monitoring device provided by the utility model comprises:

[0005] A box body is provided with a containing cavity;

[0006] A device main body is arranged in the containing cavity;

[0007] A supporting assembly is arranged in the box body, and one end of the supporting assembly away from the box body is provided with a mounting rack, and the mounting rack is provided with at least two mounting sections;

[0008] At least two cameras are electrically connected with the device main body respectively, the at least two cameras are arranged in a mounting section respectively, and the at least two cameras are arranged staggeredly along the height direction of the box body, and the geometric center of the at least two cameras and the geometric center of the supporting assembly are located on the same plane.

[0009] In an embodiment, the geometric center of the at least two cameras and the geometric center of the supporting assembly are located on the same straight line.

[0010] In an embodiment, the at least two mounting sections comprise a first mounting section and a second mounting section, the first mounting section is connected with the second mounting section, the first mounting section is arranged in the supporting assembly, the first mounting section is arranged in the radial direction of the box body, and the second mounting section is arranged in the height direction of the box body; the at least two cameras comprise a first camera and a second camera, the first camera is arranged in the first mounting section, and the second camera is arranged in the second mounting section.

[0011] In an embodiment, the first mounting section has a first mounting surface, the second mounting section has a second mounting surface, the first mounting surface and the second mounting surface are arranged away from the support assembly, the first camera is arranged on the first mounting surface, and the second camera is arranged on the second mounting surface.

[0012] In an embodiment, the first mounting surface is arranged along a length direction of the box body.

[0013] The second mounting surface is arranged along a height direction of the box body.

[0014] In an embodiment, the mounting rack further comprises a mounting seat, the mounting seat is protruded on the first mounting surface, the mounting seat is provided with a mounting slot, and the first camera is detachably fitted and mounted in the mounting slot.

[0015] And / or, the second camera is detachably connected with the second mounting section through a connecting piece.

[0016] In an embodiment, the monitoring device further comprises:

[0017] A magnetic assembly, the first camera is fitted and mounted in the mounting slot through the magnetic assembly.

[0018] In an embodiment, the accommodating cavity is provided with at least two receiving slots.

[0019] In a receiving state, each camera is detachably fitted and mounted in a receiving slot.

[0020] In an assembled state, each camera is detachably fitted and mounted in a mounting section.

[0021] In an embodiment, the camera is a surveillance ball.

[0022] And / or, the support assembly is a telescopic assembly.

[0023] The utility model further provides a kind of monitoring equipment, including terminal and as described above monitoring device, and the monitoring device is connected with the terminal communication.

[0024] The technical scheme of the utility model discloses a box body is provided with the accommodation cavity for accommodating the device main body. This design can effectively protect the electronic elements of the device main body from the influence of external environment (such as weather, dust, etc.), improve the durability and reliability of the monitoring device. The support assembly is installed on the box body and is provided with a mounting rack at the end away from the box body. The mounting rack comprises at least two mounting sections. This design not only provides a mounting base for the camera, but also allows the position and angle of the camera to be adjusted flexibly according to needs. The camera is electrically connected to the device main body and is arranged on different height mounting sections in staggered mode. This can ensure a wider monitoring coverage, reduce blind spots, provide a more comprehensive monitoring angle of view, and the plane where the geometric centers of all cameras are located is coplanar with the plane where the geometric center of the support assembly is located. This layout helps to maintain the balance of the entire monitoring device and enhance the stability of the device as a whole, which is particularly important when used outdoors or on the move. That is, the design of the monitoring device of the utility model has the characteristics of integrated protection, flexibility, wide monitoring angle of view and stability, which can significantly improve the monitoring efficiency and the adaptability of the device, and is suitable for various monitoring needs and environmental conditions. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained from the structures shown in these drawings without creative labor for those skilled in the art.

[0026] Figure 1 The structural schematic diagram of the embodiment of the monitoring device provided by the utility model is shown in the figure.

[0027] Figure 2 The exploded view of the utility model is shown in the figure. Figure 1

[0028] Figure 3 The circuit function module schematic diagram of the embodiment of the monitoring device provided by the utility model is shown in the figure.

[0029] Explanation of reference numerals:

[0030] 100, monitoring device; 1, box body; 101, accommodation cavity; 102, opening; 11, box body; 12, cover; 13, moving piece; 2, device main body; 21, control assembly; 22, power supply assembly; 3, support assembly; 4, mounting rack; 41, mounting section; 411, first mounting section; 4111, first mounting surface; 412, second mounting section; 4121, second mounting surface; 42, mounting seat; 402, mounting groove; 5, camera; 51, first camera; 52, second camera. ​

[0031] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0033] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0034] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0035] In related technologies, outdoor construction projects typically require remote monitoring, video recording, and intelligent alarms. These functions all rely on images captured by cameras at the construction site. To monitor the site from multiple angles, at least two cameras are usually needed to ensure coverage. However, existing layouts, to maintain installation balance, often place these cameras at the same height, limiting monitoring to specific heights and failing to flexibly meet monitoring needs at different heights.

[0036] This utility model proposes a monitoring device 100.

[0037] Please see Figures 1 to 3In one embodiment of this utility model, the monitoring device 100 includes:

[0038] Box 1 is provided with a receiving cavity 101;

[0039] The main body 2 of the device is disposed in the accommodating cavity 101;

[0040] A support component 3 is disposed on the housing 1. A mounting frame 4 is provided at the end of the support component 3 away from the housing 1. The mounting frame 4 is provided with at least two mounting sections 41.

[0041] At least two cameras 5 are electrically connected to the main body 2 of the device, and each of the at least two cameras 5 is disposed in a mounting section 41 and is staggered along the height direction of the housing 1. The plane in which the geometric center of the at least two cameras 5 is located is coplanar with the plane in which the geometric center of the support component 3 is located.

[0042] In this embodiment, the housing 1 is provided with a receiving cavity 101 for accommodating the device body 2. This design helps protect the electronic components of the device body 2 from external environmental factors (such as weather, dust, etc.). The housing 1 includes a housing body 11 and a cover 12. The housing body 11 is provided with the receiving cavity 101 and an opening 102 communicating with the receiving cavity 101. The cover 12 is movably positioned over the opening 102, allowing the user to easily open or close the opening 102 for maintenance and / or replacement of the device body 2 within the receiving cavity 101. Optionally, the housing 1 may also include a movable component 13. The movable component 13 may be a caster wheel or a directional wheel installed on the bottom of the housing body 11. By installing the movable component 13, the entire monitoring device 100 can be easily moved to adapt to the needs of different monitoring points.

[0043] The main body 2 of the device is disposed within the accommodating cavity 101. It may include core components such as a control component 21 and a power supply component 22, which are responsible for processing data from the camera 5 and may perform functions such as recording, transmission, and intelligent analysis. In this embodiment, the main body 2 of the device includes a control component 21 and a power supply component 22. To realize the positional layout of the control component 21 and the power supply component 22, the housing 1 also includes an isolation plate, which is disposed in the accommodating cavity 101 and extends along the length direction of the housing 1. The housing body 11 has opposing first and second side walls. The isolation plate connects the first and second side walls of the housing body 11. The control component 21 and the power supply component 22 are respectively disposed on both sides of the isolation plate along the height direction of the housing 1. Specifically, the control component 21 can be disposed on the isolation plate, and the power supply component 22 can be disposed on the bottom of the housing body 11 and located directly below the control component 21. Through this layout, the control component 21 and the power supply component 22 can be reasonably configured, effectively reducing the volume of the housing 1 and making the monitoring device 100 convenient to use.

[0044] The support assembly 3 is mounted on the housing 1 and extends along the length of the housing 1. The end of the support assembly 3 furthest from the housing 1 is equipped with a mounting bracket 4. This mounting bracket 4 has at least two mounting sections 41, the number of which corresponds to the number of cameras 5. The mounting sections 41 are used to fix the cameras 5. Optionally, the support assembly 3 is a telescopic assembly. The telescopic assembly allows the user to adjust the height of the camera 5 according to actual needs. This means that the position of the camera 5 can be flexibly adjusted according to different monitoring scenario requirements (such as crowd height, obstacle height, etc.) to obtain the optimal monitoring angle. Furthermore, this design increases the flexibility of the monitoring device 100, enabling the device to quickly adapt to different environments and requirements. For example, in the event of a temporary event or emergency deployment, the height of the camera 5 can be quickly adjusted to meet specific monitoring needs.

[0045] At least two cameras 5 are electrically connected to the main body 2 of the device, meaning they can transmit the captured images to the main body 2 for processing. The cameras 5 are mounted on different mounting sections 41 of the mounting bracket 4 and are staggered along the height of the housing 1. This means that when these cameras 5 are mounted on different mounting sections 41, they are arranged along the height (i.e., vertical direction) of the housing 1, rather than on the same horizontal line. By staggering the positions of the cameras 5 in the vertical direction, it is ensured that the field of view of each camera 5 is not obstructed by other cameras 5, thus obtaining a wider monitoring range. Furthermore, different cameras 5 can monitor simultaneously from multiple angles and heights, which helps to capture more details or cover a larger area, increasing the monitoring effect. It is understood that the mounting section 41 can be implemented in many ways. For example, the mounting section 41 can be a groove set in the mounting bracket 4, and the camera 5 can be fixed in the groove by matching sliders. This not only allows for easy adjustment of the vertical position of the camera 5 but also ensures that they are staggered along the height of the housing 1. This design facilitates quick adjustment of the camera 5's position according to the needs of the monitoring range. The plane containing the geometric centers of all cameras 5 is coplanar with the plane containing the geometric center of the support assembly 3. In other words, viewed from the side of the monitoring device 100, the geometric centers of all cameras 5 and the support assembly 3 lie on the same lateral plane. By ensuring that the centers of gravity of all critical components (here referring to cameras 5 and support assembly 3) are on the same plane, the stability of the entire device can be maintained, reducing the risk of tipping over due to imbalance. This is especially important for monitoring devices 100 that may be installed in high positions or are susceptible to external forces (such as wind, collisions, etc.).

[0046] The camera 5 can be implemented using a PTZ camera. In this embodiment, the PTZ camera has 4 megapixels, meaning it can capture images with a resolution of 2688 x 1520 (or other similar ratios). The high pixel count results in clearer and more detailed images, providing more information and making it suitable for scenarios requiring high-definition monitoring. The PTZ camera also features full-color night vision. Night vision typically refers to the camera's ability to function effectively in low-light conditions, while "full-color night vision" further indicates that even at night or in low-light conditions, the camera can capture color images instead of traditional black-and-white images. The PTZ camera can also rotate 360 ​​degrees horizontally, making it ideal for applications requiring large-area monitoring, such as construction sites. Furthermore, the PTZ camera can tilt downwards by 25 degrees and upwards by 90 degrees, providing a wide range of vertical viewing angle adjustments, allowing the camera 5 to flexibly monitor targets at different heights.

[0047] The technical solution of this utility model includes a housing 101 in the housing 1 to accommodate the main body 2 of the device. This design effectively protects the electronic components of the main body 2 from the influence of the external environment (such as weather, dust, etc.), improving the durability and reliability of the monitoring device 100. The support component 3 is mounted on the housing 1, and a mounting bracket 4 is provided at its end away from the housing 1. This bracket includes at least two mounting sections 41. This design not only provides a mounting base for the cameras 5, but also allows for flexible adjustment of the position and angle of the cameras 5 as needed. The cameras 5 are electrically connected to the main body 2 and are staggered on the mounting sections 41 at different heights. This ensures a wider monitoring coverage, reduces blind spots, and provides a more comprehensive monitoring perspective. Furthermore, the plane containing the geometric center of all cameras 5 is coplanar with the plane containing the geometric center of the support component 3. This layout helps maintain the balance of the entire monitoring device 100 and enhances the overall stability of the device, which is especially important when used outdoors or in a mobile setting. In other words, the design of the monitoring device 100 of this utility model, through its integrated protection, flexibility, wide monitoring perspective and stability, can significantly improve monitoring efficiency and device adaptability, and is suitable for various monitoring needs and environmental conditions.

[0048] Please see Figures 1 to 3 In one embodiment of the present invention, the geometric centers of at least two of the cameras 5 are located on the same straight line as the geometric center of the support component 3.

[0049] In this embodiment, when the geometric centers of all cameras 5 are aligned with the geometric center of the support assembly 3, this helps maintain the overall balance of the monitoring device 100. Especially when the support assembly 3 is a telescopic assembly or the housing 1 is a movable housing 1, this arrangement reduces the risk of device tilting and improves the stability of the overall structure.

[0050] Please see Figures 1 to 3 In one embodiment of this utility model, at least two of the mounting segments 41 include a first mounting segment 411 and a second mounting segment 412. The first mounting segment 411 is connected to the second mounting segment 412. The first mounting segment 411 is disposed on the support component 3. The first mounting segment 411 extends radially along the housing 1, and the second mounting segment 412 extends vertically along the housing 1. At least two of the cameras 5 include a first camera 51 and a second camera 52. The first camera 51 is disposed on the first mounting segment 411, and the second camera 52 is disposed on the second mounting segment 412.

[0051] In this embodiment, the first mounting section 411 is directly mounted on the support assembly 3 and extends radially along the housing 1 (i.e., from the center of the housing 1 outwards). This means that the first camera 51 will be positioned laterally extending relative to the housing 1. Since the first mounting section 411 is arranged radially along the housing 1, the first camera 51 mounted on the first mounting section 411 can obtain a relatively wide lateral field of view, suitable for covering a wide horizontal area. The second mounting section 412 is connected to the first mounting section 411 and extends along the height direction (i.e., the vertical direction) of the housing 1. This indicates that the second camera 52 will be placed in a longitudinally distributed position relative to the housing 1. The second camera 52 is located on the second mounting section 412 extending along the height direction of the housing 1, which provides a good field of view in the vertical direction and helps to capture information at different height levels.

[0052] In other words, by placing cameras 5 at different positions in the radial and vertical directions, multi-angle and multi-layered monitoring of the target area can be achieved, reducing blind spots and improving monitoring efficiency. Furthermore, this design makes full use of three-dimensional space, enabling good monitoring results even in limited spaces, while avoiding mutual interference between cameras 5.

[0053] Please see Figures 1 to 3In one embodiment of the present invention, the first mounting segment 411 has a first mounting surface 4111, the second mounting segment 412 has a second mounting surface 4121, the first mounting surface 4111 and the second mounting surface 4121 are disposed away from the support component 3, the first camera 51 is disposed on the first mounting surface 4111, and the second camera 52 is disposed on the second mounting surface 4121.

[0054] In this embodiment, by mounting the first camera 51 on the first mounting surface 4111 and the second camera 52 on the second mounting surface 4121, with both mounting surfaces facing away from the support component 3, a wider and unobstructed field of view for the camera 5 can be ensured. This design helps to avoid visual obstruction caused by the support component 3 or other components, thereby providing a clearer and more comprehensive monitoring image.

[0055] Furthermore, cameras 5 positioned and positioned in different directions can capture images from different angles, which is crucial for meeting diverse monitoring needs. For example, the first camera 51 can monitor a large area from a horizontal angle, while the second camera 52 can provide supplementary monitoring from a vertical angle. The combination of the two can achieve a comprehensive and three-dimensional monitoring effect.

[0056] Furthermore, since the first camera 51 and the second camera 52 are respectively fixed on their corresponding mounting surfaces, and these mounting surfaces are set away from the support component 3, this configuration helps to disperse the overall center of gravity of the device, further enhancing the stability and balance of the device, which is especially important when used outdoors or in a mobile setting.

[0057] Please see Figures 1 to 3 In one embodiment of the present invention, the first mounting surface 4111 extends along the length direction of the housing 1;

[0058] The second mounting surface 4121 extends along the height direction of the housing 1.

[0059] In this embodiment, the first mounting surface 4111 extends along the length of the housing 1, meaning that the first camera 51 is mounted on a first mounting surface 4111 extending along the length of the housing 1 (i.e., the longest side). This arrangement allows the first camera 51 to obtain a relatively wide lateral field of view, which is very suitable for monitoring large horizontal areas. For example, in places such as long corridors or large warehouses, this arrangement can ensure that the camera 5 covers the largest possible lateral range. The second mounting surface 4121 extends along the height of the housing 1, meaning that the second camera 52 is located on a second mounting surface 4121 extending along the height of the housing 1 (i.e., the vertical direction). This allows the second camera 52 to focus on vertical monitoring needs, capturing information at different height levels. This is particularly useful for monitoring activities in three-dimensional spaces, such as in multi-story buildings or warehouse environments with high shelves, helping to observe all dynamics from the ground to the ceiling. That is, by arranging the first camera 51 and the second camera 52 in different directions, blind spots can be minimized, providing a more continuous and complete monitoring image.

[0060] Please see Figures 1 to 3 In one embodiment of the present invention, the mounting bracket 4 further includes a mounting base 42, which protrudes from the first mounting surface 4111 and is provided with a mounting groove 402, and the first camera 51 is detachably adapted to be mounted in the mounting groove 402.

[0061] In this embodiment, a mounting base 42 protrudes from the first mounting surface 4111, and the mounting base 42 is provided with a dedicated mounting slot 402. The first camera 51 can be detachably fitted and installed in the mounting slot 402. By using the mounting slot 402, the first camera 51 can be quickly and easily installed or removed, which is very advantageous for situations requiring frequent maintenance or adjustments to the position of the camera 5 according to monitoring needs. Furthermore, the design of the mounting slot 402 helps ensure that the first camera 51 can be accurately installed in the same position each time, guaranteeing consistency in the monitoring perspective.

[0062] Please see Figures 1 to 3 In one embodiment of this utility model, the monitoring device 100 further includes:

[0063] The first camera 51 is fitted into the mounting slot 402 via the magnetic attachment component.

[0064] In this embodiment, the first camera 51 can be easily installed into or removed from the mounting slot 402 using a magnetic assembly. The magnetic feature means that installation and removal can be completed without complex tools or screws, greatly improving ease of operation. It should be noted that while the magnetic assembly provides convenience, it does not mean sacrificing stability. A high-quality magnetic assembly provides sufficient magnetic force to ensure that the first camera 51 is firmly fixed in the predetermined position, maintaining stability even under changes in the external environment (such as slight vibration or wind).

[0065] Understandably, there are many ways to implement magnetic components. For example, strong magnetic materials (such as neodymium iron boron magnets) can be integrated into the bottom or back of the first camera 51. These magnets are embedded in the housing of the camera 5 to ensure a smooth surface and not affect the appearance design of the camera 5. At the same time, metal sheets or magnets of opposite polarity are also embedded in the corresponding positions in the mounting groove 402. In this way, when the camera 5 is close to the mounting groove 402, the two automatically align and firmly attract each other through magnetic force.

[0066] Please see Figures 1 to 3 In one embodiment of the present invention, the second camera 52 is detachably connected to the second mounting section 412 via a connector.

[0067] In this embodiment, the second camera 52 is detachably connected to the second mounting section 412 via a connector. The "connector" here may refer to screws, clips, or other forms of fixing devices, allowing the second camera 52 to be flexibly mounted on the second mounting section 412. This detachable connection allows the second camera 52 to be easily adjusted in position or angle according to actual needs, improving the adaptability of the device. Furthermore, when cleaning, repairing, or replacing the second camera 52 is required, the operation can be quickly completed with simple tools, reducing maintenance time and costs.

[0068] Please see Figures 1 to 3 In one embodiment of the present invention, the accommodating cavity 101 is provided with at least two storage slots;

[0069] In the stored state, each of the cameras 5 is detachably adapted and installed in one of the storage slots;

[0070] In the assembled state, each of the cameras 5 is detachably adapted and installed in one of the mounting sections 41.

[0071] In this embodiment, at least two storage slots are provided in the accommodating cavity 101, which are designed to securely store the cameras 5. Each storage slot may have a specific shape or interface to ensure that the cameras 5 can be placed securely and will not be damaged by vibration or other reasons during transportation or storage. In the stored state, each camera 5 can be easily detached and installed into its corresponding storage slot. This means that users can easily remove the cameras 5 from the mounting section 41 and store them in the storage slots within the accommodating cavity 101, facilitating carrying, storage, and protection of the cameras 5 from external environmental influences (such as dust, moisture, etc.). When monitoring is required, each camera 5 can be removed from its storage slot and detachably fitted and installed on the mounting section 41.

[0072] In other words, the ability of camera 5 to flexibly switch between the storage slot and the mounting section 41 provides users with great flexibility. For example, in some situations, users may only need some of the cameras 5 to work, while the rest can be safely stored in the storage slot for later use; and when it is necessary to expand the monitoring range or change the focus of monitoring, the deployment of camera 5 can be quickly adjusted.

[0073] This utility model also proposes a monitoring device, which includes a terminal and a monitoring unit 100. The specific structure of the monitoring unit 100 is as described in the above embodiments. Since this monitoring device adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, and will not be described in detail here. The terminal can be any device capable of communicating with the monitoring unit 100, such as a computer, smartphone, tablet computer, or dedicated monitoring console. The main function of the terminal is to receive data from the monitoring unit 100 and provide a user interface for viewing real-time video streams, playing back recordings, adjusting camera 5 settings, and other operations.

[0074] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A monitoring device, characterized in that, include: The housing is equipped with a receiving cavity; The main body of the device is disposed in the accommodating cavity; A support assembly is disposed on the housing, and a mounting bracket is provided at the end of the support assembly away from the housing, and the mounting bracket is provided with at least two mounting sections; At least two cameras are electrically connected to the main body of the device. Each of the at least two cameras is disposed in one of the mounting sections and is staggered along the height direction of the housing. The plane containing the geometric center of the at least two cameras is coplanar with the plane containing the geometric center of the support component.

2. The monitoring device as described in claim 1, characterized in that, The geometric centers of at least two of the cameras are on the same straight line as the geometric center of the support assembly.

3. The monitoring device as described in claim 1, characterized in that, At least two of the mounting sections include a first mounting section and a second mounting section, the first mounting section being connected to the second mounting section, the first mounting section being disposed on the support assembly, the first mounting section extending radially along the housing, and the second mounting section extending vertically along the housing; at least two of the cameras include a first camera and a second camera, the first camera being disposed on the first mounting section, and the second camera being disposed on the second mounting section.

4. The monitoring device as described in claim 3, characterized in that, The first mounting segment has a first mounting surface, the second mounting segment has a second mounting surface, the first mounting surface and the second mounting surface are disposed away from the support component, the first camera is disposed on the first mounting surface, and the second camera is disposed on the second mounting surface.

5. The monitoring device as described in claim 4, characterized in that, The first mounting surface extends along the length of the housing; The second mounting surface extends along the height direction of the housing.

6. The monitoring device as described in claim 4, characterized in that, The mounting bracket also includes a mounting base, which protrudes from the first mounting surface and has a mounting groove, into which the first camera is detachably fitted and mounted. And / or, the second camera is detachably connected to the second mounting segment via a connector.

7. The monitoring device as described in claim 6, characterized in that, The monitoring device also includes: A magnetic attachment assembly is used to mount the first camera into the mounting slot.

8. The monitoring device as described in claim 1, characterized in that, The accommodating cavity is provided with at least two storage slots; In the stored state, each of the cameras is detachably fitted and installed in one of the storage slots; In the assembled state, each of the cameras is detachably fitted and installed in one of the mounting sections.

9. The monitoring device as described in any one of claims 1 to 8, characterized in that, The camera is a PTZ camera; And / or, the support component is a telescopic component.

10. A monitoring device, characterized in that, It includes a terminal and a monitoring device as described in any one of claims 1 to 9, wherein the monitoring device is communicatively connected to the terminal.