Movable video monitoring device and equipment thereof

By integrating a portable video surveillance device with built-in conductive components and magnetic assemblies, the problem of complex power wiring for outdoor construction site cameras has been solved, achieving efficient construction and stable power supply, and improving the protection capability and service life of the monitoring device.

CN223872334UActive Publication Date: 2026-02-03SHENZHEN SHENBAO ELECTRONIC METER CO LTD
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Patent Information

Application Number
CN202520400582.6
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 outdoor construction projects, the installation of power cabling for cameras is complex, labor-intensive, and time-consuming, resulting in low efficiency in the deployment of intelligent monitoring services.

Method used

The device is a portable video surveillance unit. Its integrated design combines the camera, conductive components, and lifting assembly. The conductive components are built into the lifting rod, and the connection points are protected by seals. This simplifies power wiring, and the camera can be quickly installed and removed using a magnetic assembly.

Benefits of technology

It reduces the amount of on-site power wiring work, improves construction efficiency and response speed, ensures stable power supply and data transmission for the camera during lifting and lowering, enhances the device's waterproof and dustproof capabilities, and extends its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a movable video monitoring device and equipment thereof, and relates to the technical field of monitoring, and the movable video monitoring device comprises a movable box body, a device main body, a lifting assembly, a camera and a conductive member. The movable box body is provided with an accommodating cavity; the device main body is arranged in the accommodating cavity; the lifting assembly comprises a lifting rod, a connecting frame and a sealing piece, the lifting rod is arranged on the movable box body, the connecting frame is arranged at the end, away from the movable box body, of the lifting rod, a mounting hole is formed in the connecting frame, and the sealing piece is arranged in the mounting hole; the camera is arranged on the connecting frame; the conductive part is arranged in the lifting rod, one end of the conductive part extends into the accommodating cavity and is electrically connected with the device main body, and the other end penetrates through the mounting hole and is electrically connected with the camera; according to the technical scheme provided by the utility model, the problem of low intelligent monitoring service deployment efficiency caused by complex wiring construction, large workload and long consumed time of the camera power supply in an outdoor construction site can be solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to monitoring technical field, especially a movable video 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, and in order to provide power supply for the camera, complex power wiring construction is needed, and the power wiring construction has large workload and long time consumption, which reduces the efficiency of deploying intelligent monitoring business in the outdoor construction site. CONTENT OF THE UTILITY MODEL

[0003] The utility model discloses a movable video monitoring device and equipment thereof, which aims to solve the problem of low efficiency of deploying intelligent monitoring business due to complex power wiring construction, large workload and long time consumption of the outdoor construction site camera.

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

[0005] The movable box body is provided with a containing cavity.

[0006] The device main body is arranged in the containing cavity.

[0007] The lifting assembly comprises a lifting rod, a connecting frame and a sealing element, the lifting rod is arranged in the movable box body, the connecting frame is arranged at one end of the lifting rod away from the movable box body, the connecting frame is provided with a mounting hole, and the sealing element is arranged in the mounting hole.

[0008] The camera is arranged in the connecting frame.

[0009] The conductive part is arranged in the lifting rod, one end of the conductive part is inserted into the containing cavity and electrically connected with the device main body, and the other end penetrates through the mounting hole and is electrically connected with the camera.

[0010] In an embodiment, the connecting frame comprises a connecting plate, a mounting seat and a plurality of connecting columns, the plurality of connecting columns are arranged between the connecting plate and the mounting seat, a wiring space for the conductive part is left between every two connecting columns, the connecting plate is provided with the mounting hole, and the camera is arranged in the mounting seat.

[0011] In an embodiment, the plurality of connecting columns are equidistantly arranged along the circumference of the connecting plate.

[0012] In an embodiment, the movable video monitoring device further comprises:

[0013] The magnetic assembly has a mounting slot at one end of the mounting base away from the connecting plate, and the camera is detachably fitted and mounted in the mounting slot via the magnetic assembly.

[0014] In one embodiment, the accommodating cavity is provided with a receiving groove;

[0015] In its stowed state, the camera is detachably fitted and installed in the storage slot;

[0016] In the assembled state, the camera is detachably fitted and installed in the mounting slot.

[0017] In one embodiment, the conductive element is a telescopic element.

[0018] In one embodiment, the camera includes at least two cameras; the lifting assembly further includes a mounting frame, the mounting frame includes at least two mounting sections, each of the at least two cameras is provided with one of the mounting sections, and they are staggered along the height direction of the movable housing, and the plane where the geometric center of the at least two cameras is located is coplanar with the plane where the geometric center of the lifting rod is located.

[0019] In one embodiment, 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 lifting assembly, the first mounting section extending radially along the movable housing, and the second mounting section extending vertically along the movable 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.

[0020] In one embodiment, the portable video surveillance device further includes:

[0021] A communication module is electrically connected to the camera. The communication module is disposed on the lifting rod and is positioned opposite to the second mounting section.

[0022] In one embodiment, the conductive element is a telescopic element.

[0023] This utility model also proposes a portable video surveillance device, including a terminal and the portable video surveillance device as described above, wherein the portable video surveillance device is communicatively connected to the terminal.

[0024] This invention employs an integrated design, combining the camera, conductive components, and lifting assembly. This reduces the workload of complex power cabling on-site. Furthermore, the device's portability allows for rapid relocation, significantly improving construction efficiency and response speed. The lifting mast allows for adjustment of the camera's height to achieve the optimal monitoring angle, crucial for construction sites with varying height requirements. By embedding the conductive components within the lifting mast, the camera maintains stable power and data transmission even during lifting operations, avoiding the inconvenience and potential risks of traditional external cabling, such as line damage or poor contact. Additionally, sealing at the connection points between the conductive components and the connecting frame significantly enhances the device's waterproof and dustproof capabilities, reducing the impact of external factors on the device, extending its lifespan, and ensuring normal operation in various weather conditions. Attached Figure Description

[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0026] Figure 1 A schematic diagram of the structure of an embodiment of the portable video surveillance device provided by this utility model;

[0027] Figure 2 for Figure 1 Exploded view;

[0028] Figure 3 for Figure 2 A magnified view of a section at point A in the middle;

[0029] Figure 4 A schematic diagram of the circuit functional modules of an embodiment of the portable video surveillance device provided by this utility model;

[0030] Figure 5 This is a schematic diagram of another embodiment of the portable video surveillance device provided by this utility model.

[0031] Explanation of icon numbers:

[0032] 100. Portable video surveillance device; 1. Portable enclosure; 101. Receiving cavity; 102. Opening; 103. Storage slot; 104. Second connection hole; 11. Enclosure body; 12. Cover; 13. Moving part; 2. Device body; 21. Control component; 22. Power supply component; 3. Lifting component; 301. Mounting hole; 302. Wiring space; 303. First connection hole; 31. Lifting rod; 32. Connecting frame; 321. Connecting plate; 322. Mounting base; 3221. Mounting slot; 323. Connecting column; 33. Sealing component; 34. Connecting component; 35. Connecting part; 36. Mounting frame; 361. Mounting section; 3611. First mounting section; 3612. Second mounting section; 4. Magnetic suction component; 41. Second magnetic suction component; 42. Third magnetic suction component; 5. Camera; 6. Conductive component; 7. Communication module.

[0033] 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

[0034] 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.

[0035] It should be noted that if any directional indication (such as up, down, left, right, front, or back) is involved in the embodiments of this utility model, the directional indication is only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indication will also change accordingly.

[0036] 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.

[0037] This utility model proposes a mobile video surveillance device 100.

[0038] Please see Figures 1 to 4 In one embodiment of this utility model, the portable video surveillance device 100 includes:

[0039] The movable housing 1 is provided with a receiving cavity 101;

[0040] The main body 2 of the device is disposed in the accommodating cavity 101;

[0041] The lifting assembly 3 includes a lifting rod 31, a connecting frame 32, and a sealing element 33. The lifting rod 31 is disposed on the movable housing 1, the connecting frame 32 is disposed at the end of the lifting rod 31 away from the movable housing 1, the connecting frame 32 is provided with a mounting hole 301, and the sealing element 33 is disposed on the mounting hole 301.

[0042] Camera 5 is mounted on the connecting frame 32;

[0043] A conductive element 6 is disposed inside the lifting rod 31. One end of the conductive element 6 extends into the accommodating cavity 101 and is electrically connected to the device body 2, and the other end passes through the mounting hole 301 and is electrically connected to the camera 5.

[0044] In this embodiment, the movable housing 1 provides a portable platform, allowing the entire portable video surveillance device 100 to be easily moved between different locations. The movable housing 1 is provided with a receiving cavity 101 to house the device body 2, a design that helps protect the device body 2 from external environmental factors (such as weather, dust, etc.). Optionally, the movable housing 1 may include a housing body 11, a cover 12, and multiple movable components 13. 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, a design that allows users to easily open or close the opening 102 for maintenance and / or replacement of the device body 2 within the receiving cavity 101. The movable components 13 can be casters or directional wheels, and multiple casters or directional wheels can be equidistantly installed at the bottom of the housing body 11. By installing the movable components 13, the entire monitoring device can be easily moved to adapt to the needs of different monitoring points.

[0045] The main body 2 of the device is disposed within the accommodating cavity 101 and may include core components such as a control component 21 and a power supply component 22. It is 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 facilitate the positional arrangement of the control component 21 and the power supply component 22, the movable housing 1 also includes an isolation plate, which is disposed within the accommodating cavity 101 and extends along the length of the housing body 11. The enclosure body 11 has opposing first and second side walls. An isolation plate connects the first and second side walls of the enclosure body 11 and is positioned towards the bottom of the enclosure body 11. The control component 21 and the power component 22 are respectively positioned on both sides of the isolation plate along the height direction of the enclosure body 11. Specifically, the control component 21 can be positioned on the isolation plate, and the power component 22 can be positioned on the bottom of the enclosure body 11 and directly below the control component 21. With this layout, the control component 21 and the power component 22 can be rationally configured, effectively reducing the volume of the movable enclosure 1 and realizing the miniaturization design of the movable video surveillance device 100.

[0046] The lifting assembly 3 may include a lifting rod 31 and a connecting frame 32. The lifting rod 31 is mounted on the movable housing 1, and the connecting frame 32 is located at the end of the lifting rod 31 away from the movable housing 1. The camera 5 is mounted on the connecting frame 32. The lifting rod 31 allows the height of the camera 5 to be adjusted as needed to obtain the optimal monitoring angle. Optionally, the lifting rod 31 can be detachably mounted on the movable housing 1. For example, the end of the lifting rod 31 away from the connecting frame 32 has a protruding connecting portion 35 with a first connecting hole 303. The movable housing 1 has a second connecting hole 104. A connecting piece 34 passes through the first connecting hole 303 and the second connecting hole 104 to mount the lifting rod 31 onto the movable housing 1.

[0047] Understandably, camera 5 requires a continuous power supply to maintain its operation, and it also needs to transmit the captured video data back to the main unit for processing or storage. Since camera 5 is mounted on top of the lifting mast 31, traditional external wiring not only affects aesthetics but may also damage the wiring due to mechanical movement (such as lifting operations). Therefore, a conductive element 6 is installed inside the lifting mast 31. One end of the conductive element 6 extends into the receiving cavity 101 and is electrically connected to the main unit 2, while the other end passes through the mounting hole 301 of the connecting bracket 32 ​​and is electrically connected to camera 5. This ensures continuous power and data transmission without hindering the operational flexibility of the lifting mast 31. Furthermore, this method avoids the inconvenience and safety hazards that external wiring may cause, while also improving the overall aesthetics and practicality of the monitoring device. However, considering that the monitoring device may be deployed in outdoor environments such as construction sites, it will face various harsh weather conditions, such as rain, snow, and dust. In order to protect the electronic components of the main body 2 from external factors, the mounting holes 301 of the connecting frame 32 must be sealed. Specifically, a sealing element 33 is installed at the mounting holes 301, which can effectively prevent external factors such as moisture and dust from entering the equipment and enhance the protection capability of the entire device.

[0048] This utility model's technical solution, through an integrated design, combines components such as the camera 5, conductive element 6, and lifting assembly 3, reducing the workload of complex power wiring on-site. Furthermore, because the device is mobile, it can be quickly moved from one location to another for installation, greatly improving construction efficiency and response speed. The lifting rod 31 allows for adjustment of the camera 5's height according to actual needs, thereby obtaining the optimal monitoring angle, which is particularly important for construction sites with varying height requirements. By embedding the conductive element 6 within the lifting rod 31, it ensures that the camera 5 can stably obtain power and transmit data even during lifting operations, thus avoiding the inconvenience and potential risks associated with traditional external wiring, such as line damage or poor contact. In addition, the sealing element 33 at the connection between the conductive element 6 and the connecting frame 32 significantly improves the device's waterproof and dustproof capabilities, reduces the impact of external factors on the main body 2 of the device, extends its service life, and ensures its normal operation under various weather conditions.

[0049] Please see Figures 1 to 4 In one embodiment of this utility model, the conductive element 6 is a telescopic element.

[0050] In this embodiment, because the conductive component 6 is designed as a telescopic component, it can automatically adjust its length as the lifting rod 31 extends and retracts, ensuring that the camera 5 can stably obtain power and transmit data at any height. This design avoids the problems of overstretching or slack that may occur with traditional fixed-length conductive wires, ensuring the stability of the electrical connection. It also reduces the risk of wire wear or breakage caused by lifting operations. During installation and adjustment, there is no need to worry about whether the length of the conductive component 6 is suitable, as it is self-adaptive. This greatly simplifies the operation process, allowing even non-professionals to easily adjust the height and position of the equipment, improving overall work efficiency.

[0051] Please see Figures 1 to 4 In one embodiment of the present invention, the connecting frame 32 includes a connecting plate 321, a mounting base 322 and a plurality of connecting posts 323. The plurality of connecting posts 323 are disposed between the connecting plate 321 and the mounting base 322. A wiring space 302 is left between every two connecting posts 323 for the conductive component 6 to pass through. The connecting plate 321 is provided with the mounting hole 301. The camera 5 is disposed on the mounting base 322.

[0052] In this embodiment, the entire connecting frame 32 consists of a connecting plate 321, a mounting base 322, and multiple connecting posts 323. This provides stronger mechanical support, effectively bearing the weight of the camera 5 and various external forces it may encounter during operation (such as wind and vibration), ensuring the stability of the camera 5 during use and reducing device damage or image quality degradation caused by external factors. The connecting plate 321 has mounting holes 301 for securing the conductive component 6 with the sealing element 33, ensuring electrical connection while preventing moisture and dust from entering, improving the device's protection level, and extending its service life. The mounting base 322 is used to mount the camera 5, making installation easier and faster. Multiple connecting posts 323 are mounted on the surface of the connecting plate 321 and located between the surface of the connecting plate 321 and the bottom surface of the mounting base 322. Between every two connecting posts 323, there is a wiring space 302 for the conductive component 6 to pass through. This means that during the installation of the camera 5, the conductive component 6 can pass through any wiring space 302 to electrically connect with the camera 5, without strictly following a specific path. This simplifies the installation process and reduces installation time and complexity. Installers can choose the optimal wiring path based on actual conditions (such as existing wiring, space constraints, etc.), improving work efficiency. When it is necessary to replace or repair the camera 5, the camera 5 can be easily removed simply by disconnecting the corresponding conductive component 6. Since the conductive component 6 can be arranged through multiple wiring spaces 302, reconnecting the camera 5 also offers high flexibility, convenience, and speed. The wiring spaces 302 not only provide flexible wiring paths but also protect the conductive component 6. They fix the conductive component 6 in a relatively enclosed space, avoiding external physical damage and the influence of environmental factors (such as moisture and dust).

[0053] Please see Figures 1 to 4 In one embodiment of the present invention, a plurality of connecting posts 323 are arranged at equal intervals along the circumference of the connecting plate 321.

[0054] In this embodiment, multiple connecting posts 323 are arranged at equal intervals along the circumference of the connecting plate 321, providing uniformly distributed support points for the mounting base 322. This layout ensures that the mounting base 322 and the camera 5 mounted on it receive balanced support throughout the entire operation, reducing the risk of structural deformation or damage caused by uneven local stress. Furthermore, the equally spaced connecting posts 323 naturally form multiple relatively independent and uniformly distributed wiring spaces 302. These wiring spaces 302 not only provide multiple paths for the conductive components 6 but also ensure reasonable spacing between each path, avoiding mutual interference or compression between the conductive components 6, which is beneficial for maintaining good electrical performance. In addition, the uniformly distributed connecting posts 323 help disperse the influence of external forces (such as wind, vibration, etc.) on the device, making the entire connecting frame 32 more stable. This design improves the device's resistance to external interference, ensuring that the camera 5 maintains a stable working state even in harsh environments.

[0055] Please see Figures 1 to 4 In one embodiment of this utility model, the portable video surveillance device 100 further includes:

[0056] The magnetic assembly 4 has a mounting groove 3221 at one end of the mounting base 322 away from the connecting plate 321, and the camera 5 is detachably fitted and mounted in the mounting groove 3221 through the magnetic assembly 4.

[0057] In this embodiment, the magnetic attachment 4 allows the camera 5 to be quickly installed into the mounting slot 3221 through a simple magnetic attraction action, without the need for tools or complex fixing devices. This facilitates the installation and removal of the camera 5, making it particularly suitable for scenarios requiring frequent adjustments to the monitoring position or equipment maintenance. Because the magnetic attachment 4 provides a reliable connection while being easy to detach, users can quickly change the position or angle of the camera 5 according to actual needs, thereby improving operational flexibility and response speed.

[0058] Please see Figures 1 to 4 In one embodiment of the present invention, the accommodating cavity 101 is provided with a storage groove 103;

[0059] In its stored state, the camera 5 is detachably fitted and installed in the storage slot 103;

[0060] In the assembled state, the camera 5 is detachably fitted and installed in the mounting slot 3221.

[0061] In this embodiment, when using the camera 5, it can be installed in the mounting slot 3221 of the mounting base 322 using the magnetic suction component 4. When not using the camera 5, it can be stored in the storage slot 103 provided in the receiving cavity 101 using the magnetic suction component 4, effectively protecting the camera 5 from the influence of the external environment, such as dust, moisture, and extreme temperatures, thereby extending its service life. Alternatively, when handling or transporting the monitoring device, storing the camera 5 safely in the storage slot 103 not only avoids damage caused by accidental collisions but also makes the device more compact, easy to carry, and easy to store. That is, the camera 5 can easily switch between the assembled state and the stored state. This feature simplifies the operation process of the camera 5, reduces preparation time, and allows for rapid completion of corresponding operations, whether for on-site deployment or emergency evacuation. In addition, the storage slot 103 of the accommodating cavity 101 can be set opposite to the main body 2 of the device, so as to make reasonable use of the internal space of the movable box 1 and ensure that even in the case of miniaturization, a dedicated storage location can be provided for the camera 5. This helps to maintain the overall tidiness of the device and makes it convenient for users to quickly find and take out the camera 5 for installation.

[0062] Please see Figures 1 to 4 In one embodiment of this utility model, the magnetic attraction component 4 includes:

[0063] A first magnetic attachment is disposed on the camera 5;

[0064] The second magnetic suction member 41 is disposed in the storage slot 103. The second magnetic suction member 41 and the first magnetic suction member magnetically cooperate to install the camera 5 in the storage slot 103.

[0065] The third magnetic suction member 42 is disposed in the mounting groove 3221. The third magnetic suction member 42 magnetically engages with the first magnetic suction member to mount the camera 5 in the mounting groove 3221.

[0066] In this embodiment, because the second magnetic component 41 and the third magnetic component 42 are respectively provided in the storage slot 103 and the mounting slot 3221, the camera 5 can easily switch between a stored state and an assembled state via the first magnetic component. That is, by using the magnetic component 4 instead of traditional screws or other fixing methods, the installation and removal process of the camera 5 can be greatly simplified. Users can complete the position change or replacement of the camera 5 without any tools, improving operational efficiency and user experience. Furthermore, the magnetic engagement method can automatically align and fit tightly to a certain extent, providing a reliable fixing effect even on slightly vibrating or uneven surfaces. In addition, this method can effectively reduce maintenance needs caused by mechanical wear and extend the service life of the equipment.

[0067] Please seeFigures 1 to 5 In one embodiment of this utility model, the camera 5 includes at least two cameras; the lifting assembly 3 also includes a mounting frame 36, the mounting frame 36 includes at least two mounting sections 361, each of the at least two cameras 5 is provided with a mounting section 361, and they are staggered along the height direction of the movable box 1, and the plane where the geometric center of the at least two cameras 5 is located is coplanar with the plane where the geometric center of the lifting rod 31 is located.

[0068] In this embodiment, 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 361 of the mounting bracket 36 and are staggered along the height of the movable housing 1. This means that when these cameras 5 are mounted on different mounting sections 361, they are arranged along the height (i.e., vertical direction) of the movable housing 1, rather than on the same horizontal line. By staggering the positions of the cameras 5 in the vertical direction, it can be ensured that the field of view of each camera 5 is not obstructed by other cameras 5, thereby 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. The plane containing the geometric center of all cameras 5 is coplanar with the plane containing the geometric center of the lifting rod 31. In other words, viewed from the side of the movable video monitoring device 100, the geometric centers of all cameras 5 and the geometric center of the lifting rod 31 lie on the same side plane. By ensuring that the centers of gravity of all critical components (here referring to camera 5 and lifting mast 31) 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 portable video surveillance devices 100 that may be installed in high positions or are susceptible to external forces (such as wind, collisions, etc.).

[0069] 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.

[0070] Please see Figures 1 to 5 In one embodiment of this utility model, at least two mounting sections 361 include a first mounting section 3611 and a second mounting section 3612. The first mounting section 3611 is connected to the second mounting section 3612. The first mounting section 3611 is disposed on the lifting assembly 3. The first mounting section 3611 extends radially along the movable housing 1, and the second mounting section 3612 extends along the height direction of the movable housing 1. At least two cameras 5 include a first camera 5 and a second camera 5. The first camera 5 is disposed on the first mounting section 3611, and the second camera 5 is disposed on the second mounting section 3612.

[0071] In this embodiment, the first mounting section 3611 extends radially along the movable housing 1, while the second mounting section 3612 extends vertically along the movable housing 1. This fully utilizes the space of the monitoring device, allowing multiple cameras 5 to be rationally arranged even in limited space, avoiding blind spots caused by space constraints. The first camera 5 is mounted on the first mounting section 3611, and the second camera 5 is mounted on the second mounting section 3612, meaning the two cameras 5 can capture images from different angles. The first camera 5 provides a wide horizontal field of view, while the second camera 5 captures details vertically, achieving more comprehensive monitoring coverage. Since the first mounting section 3611 and the second mounting section 3612 extend in different directions (radial and vertical), this allows the cameras 5 to adjust their optimal monitoring positions according to actual needs. For example, when focusing on monitoring a specific area, the position of the camera 5 can be adjusted to obtain the best viewing angle, improving the flexibility of the monitoring device. Furthermore, positioning the first mounting section 3611 on the lifting rod 31 and extending it radially along the movable housing 1 helps to distribute weight and maintain the stability of the overall structure. Meanwhile, since the plane containing the geometric centers of the first camera 5 and the second camera 5 is coplanar with the plane containing the geometric center of the lifting rod 31, the center of gravity of the entire device can be stabilized, reducing the risk of tipping over.

[0072] Please see Figures 1 to 5 In one embodiment of this utility model, the portable video surveillance device 100 further includes:

[0073] The communication module 7 is electrically connected to the camera 5. The communication module 7 is disposed on the lifting rod 31 and is disposed opposite to the second mounting section 3612.

[0074] In this embodiment, the communication module 7 supports multiple communication methods (such as Wi-Fi, 4G / 5G, etc.) to ensure good connectivity in different environments. The communication module 7 is directly electrically connected to the camera 5 and is positioned outside the lifting rod 31, ensuring that video data can be directly transmitted from the camera 5 to the communication module 7 for processing or forwarding. Furthermore, its proximity to the camera 5 reduces signal attenuation and latency, ensuring efficient and stable data transmission. The communication module 7 is positioned opposite the second mounting section 3612 to maintain the stability of the entire device's center of gravity. A reasonable weight distribution helps prevent the risk of tipping due to imbalance, especially when the device is placed in a high position or is susceptible to external forces.

[0075] This utility model also proposes a portable video surveillance device, which includes a terminal and a portable video surveillance unit 100. The specific structure of the portable video surveillance unit 100 is as described in the above embodiments. Since this portable video surveillance 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 portable video surveillance 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 portable video surveillance unit 100 and provide a user interface for viewing real-time video streams, playing back recordings, adjusting camera settings, and other operations.

[0076] 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 portable video surveillance device, characterized in that, include: The movable housing is equipped with a receiving cavity; The main body of the device is disposed in the accommodating cavity; A lifting assembly includes a lifting rod, a connecting frame, and a seal. The lifting rod is disposed on the movable housing. The connecting frame is disposed at the end of the lifting rod away from the movable housing. The connecting frame is provided with a mounting hole. The seal is disposed on the mounting hole. The camera is mounted on the connecting frame; A conductive element is disposed inside the lifting rod. One end of the conductive element extends into the receiving cavity and is electrically connected to the main body of the device, and the other end passes through the mounting hole and is electrically connected to the camera.

2. The portable video surveillance device as described in claim 1, characterized in that, The connecting frame includes a connecting plate, a mounting base, and multiple connecting posts. The multiple connecting posts are disposed between the connecting plate and the mounting base. A wiring space is left between every two connecting posts for the conductive component to pass through. The connecting plate is provided with the mounting hole, and the camera is disposed on the mounting base.

3. The portable video surveillance device as described in claim 2, characterized in that, The plurality of connecting columns are arranged at equal intervals along the circumference of the connecting plate.

4. The portable video surveillance device as described in claim 2, characterized in that, The portable video surveillance device also includes: The magnetic assembly has a mounting slot at one end of the mounting base away from the connecting plate, and the camera is detachably fitted and mounted in the mounting slot via the magnetic assembly.

5. The portable video surveillance device as described in claim 4, characterized in that, The accommodating cavity is provided with a storage slot; In its stowed state, the camera is detachably fitted and installed in the storage slot; In the assembled state, the camera is detachably fitted and installed in the mounting slot.

6. The portable video surveillance device as described in claim 1, characterized in that, The conductive component is a telescopic component.

7. The portable video surveillance device as described in claim 1, characterized in that, The camera includes at least two cameras; the lifting assembly also includes a mounting frame, the mounting frame includes at least two mounting sections, each of the at least two cameras is provided with one of the mounting sections, and they are staggered along the height direction of the movable housing, and the plane where the geometric center of the at least two cameras is located is coplanar with the plane where the geometric center of the lifting rod is located.

8. The portable video surveillance device as described in claim 7, 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 lifting assembly, the first mounting section extending radially along the movable housing, and the second mounting section extending vertically along the movable 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.

9. The portable video surveillance device as described in claim 8, characterized in that, The portable video surveillance device also includes: A communication module is electrically connected to the camera. The communication module is disposed on the lifting rod and is positioned opposite to the second mounting section.

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