High-definition video intelligent internet of things device

By using the interlocking structure between the locking component and the fixing plate, along with the motor drive, the cumbersome installation and maintenance of high-definition video smart IoT devices are solved, enabling rapid installation and disassembly and improving the stability and practicality of the equipment.

CN224533982UActive Publication Date: 2026-07-21刘佩钊
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
刘佩钊
Filing Date
2025-06-11
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing high-definition video smart IoT devices are cumbersome and time-consuming to install and maintain, and frequent disassembly of bolts can damage the installation location, affecting the stability and reliability of the equipment.

Method used

The device employs a snap-fit ​​structure between the snap-fit ​​component and the fixing plate, combined with a motor drive component, to achieve rapid installation and disassembly of the equipment, eliminating the traditional bolt fixing method, and monitoring the angle adjustment of the equipment through motor drive.

Benefits of technology

It enables rapid installation and disassembly of equipment, protects the equipment and installation location, extends the service life of the equipment, and improves the stability and practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a based on high -definition video intelligence internet of things equipment, including box, install the adjusting part in the box, install the monitoring equipment on the adjusting part, install the casing on the box, install the clamping piece in the casing, fix the fixed plate on the installation wall body through the bolt. The utility model, can fast when maintaining or replacing equipment, need not use the tool to dismantle a plurality of fixed bolts one by one, the operation process is simple, has greatly improved the equipment maintenance efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of Internet of Things (IoT) device technology, and in particular to a smart IoT device based on high-definition video. Background Technology

[0002] With the rapid development of high-definition video intelligent IoT technology, high-definition video intelligent IoT devices have been widely used in many fields such as urban security monitoring, industrial production monitoring, and traffic management. These devices can collect high-definition video data in real time and realize data transmission and analysis through IoT technology, providing strong support for security assurance and production management.

[0003] However, existing high-definition video smart IoT devices present numerous inconveniences in terms of installation and maintenance. Traditional devices are typically installed in locations such as walls using bolts. During maintenance or replacement, multiple bolts must be removed one by one using tools, a cumbersome and time-consuming process that significantly impacts maintenance efficiency. Frequent bolt removal can also damage the installation location, reducing the stability and reliability of the device. Therefore, there is an urgent need for a high-definition video smart IoT device that enables rapid installation and disassembly, facilitating device maintenance. Utility Model Content

[0004] In view of this, the present invention aims to provide a high-definition video-based smart Internet of Things device to solve or alleviate the technical problems existing in the prior art.

[0005] The technical solution of this utility model embodiment is implemented as follows: Based on a high-definition video intelligent Internet of Things device, it includes a housing, an adjustment component installed inside the housing, a monitoring device installed on the adjustment component, a shell installed on the housing, a locking component installed inside the shell, and a fixing plate fixed to a mounting wall by bolts. The locking component includes a sliding plate that slides inside the shell and a locking block installed on the sliding plate. A spring is installed between the sliding plate and an inner side wall of the shell. The fixing plate is symmetrically installed with locking plates. The locking plates are provided with locking grooves, and the locking blocks are adapted to the locking grooves.

[0006] In the above embodiment: a driving component is also installed inside the housing. The driving component includes a rotating shaft rotatably mounted on the housing, an elliptical disk mounted on the rotating shaft, and a gear. A driving rod is slidably mounted on the front end face of the housing, extending into the housing. A rack is mounted on the driving rod, meshing with the gear. A fixed post is mounted on the rear end face of the housing, and the driving rod slides on the fixed post. A spring is installed between the driving rod and the inner wall of the housing.

[0007] In the above embodiment: the adjusting component includes a motor installed inside the housing, a disc installed on the output shaft of the motor, and a connecting rod rotatably installed on the inner wall of one side of the housing. A protruding column is installed on the disc, and a sliding groove is provided on the connecting rod. The protruding column slides in the sliding groove. A through hole is provided on the housing, and the connecting rod slides in the through hole.

[0008] In the above embodiment: a second sliding groove is provided inside the housing, a slider is slidably installed in the second sliding groove, and the sliding plate is installed on the slider.

[0009] In the above embodiments, one end of the locking block and one end of the locking plate are both inclined.

[0010] In the above embodiment: the skateboard is symmetrically arranged about the elliptical disk.

[0011] In the above embodiment: an opening is provided on the upper end surface of the housing, and the opening is adapted to the locking plate.

[0012] In the above embodiment: Spring 3 is installed on the upper end face of the housing.

[0013] In the above embodiment: the monitoring device is installed on the connecting rod and located outside the box.

[0014] The present invention has the following advantages due to the adoption of the above technical solution:

[0015] This utility model adopts a snap-fit ​​structure between the snap-fit ​​component and the fixing plate, eliminating the traditional bolt fixing method. It eliminates the need for tools, easily achieving quick installation and disassembly of the equipment, greatly saving time and costs, providing comprehensive protection for the equipment and the mounting wall, avoiding wear and tear on the installation position and equipment damage caused by frequent bolt removal, effectively extending the service life of the equipment, and ensuring that the equipment is installed stably and reliably.

[0016] This invention uses the output shaft of a motor to drive a disc to rotate, which in turn drives a protruding column to rotate. The rotation of the protruding column then drives a connecting rod to move, which in turn drives the monitoring equipment. By adjusting the angle of the monitoring equipment, the monitoring range of the equipment can be changed, thus improving its practicality.

[0017] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the present invention will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application 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 application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a schematic diagram of the installation structure of the snap-fit ​​plate of this utility model;

[0021] Figure 3 This is a schematic diagram of the installation structure of the engaging component and the driving component of this utility model;

[0022] Figure 4 This is a schematic diagram of the connection structure between the slider and the slide plate of this utility model;

[0023] Figure 5 This is a schematic diagram of the structure of the driving component of this utility model;

[0024] Figure 6 This is a schematic diagram of the connection structure between the drive rod and the fixed column of this utility model;

[0025] Figure 7 This is a schematic diagram of the structure of the adjusting component of this utility model.

[0026] Figure label:

[0027] 1. Housing; 2. Adjusting component; 201. Motor; 202. Disc; 203. Connecting rod; 204. Protruding column; 3. Monitoring equipment; 4. Housing; 5. Fixing plate; 501. Locking plate; 502. Locking groove; 6. Locking component; 601. Slide plate; 602. Locking block; 603. Spring 1; 604. Slide groove 2; 605. Slider; 7. Driving component; 701. Rotating shaft; 702. Elliptical disc; 703. Gear; 704. Driving rod; 705. Rack; 706. Fixing column; 707. Spring 2; 8. Spring 3. Detailed Implementation

[0028] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this invention. Therefore, the drawings and description are considered exemplary in nature and not restrictive.

[0029] It is important to note that terms such as "first," "second," "symmetric," and "array" are used only to distinguish between descriptive and positional descriptions and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features specified with terms such as "first" or "symmetric" may explicitly or implicitly include one or more of that feature; similarly, when the quantity of certain features is not limited by words such as "two" or "three," it should be noted that such features also explicitly or implicitly include one or more features.

[0030] In this invention, unless otherwise explicitly specified and limited, terms such as "installation," "connection," and "fixation" should be interpreted broadly; for example, they can refer to a fixed connection, a detachable connection, or an integral molding; they can refer to a mechanical connection, a direct connection, a welding connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the accompanying drawings and specific circumstances.

[0031] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0032] like Figure 1-7 As shown, this utility model embodiment provides a high-definition video-based intelligent Internet of Things device, including a housing 1, an adjusting component 2 installed inside the housing 1, a monitoring device 3 installed on the adjusting component 2, a housing 4 installed on the housing 1, a locking component 6 installed inside the housing 4, and a fixing plate 5 fixed to a mounting wall by bolts. The locking component 6 includes a sliding plate 601 that slides inside the housing 4 and a locking block 602 installed on the sliding plate 601. A spring 603 is installed between the sliding plate 601 and an inner side wall of the housing 4. The fixing plate 5 has locking plates 501 symmetrically installed on it, and locking plates 501 have locking grooves 502. The locking blocks 602 are adapted to the locking grooves 502.

[0033] In this embodiment, a driving component 7 is also installed inside the housing 4. The driving component 7 includes a rotating shaft 701 rotatably mounted on the housing 4, an elliptical disk 702 mounted on the rotating shaft 701, and a gear 703. A driving rod 704 is slidably mounted on the front end face of the housing 4 and extends into the housing 4. A rack 705 is mounted on the driving rod 704 and meshes with the gear 703. A fixing post 706 is mounted on the rear end face of the housing 4 and the driving rod 704 slides on the fixing post 706. A spring 707 is installed between the driving rod 704 and the inner wall of the housing 4.

[0034] In this embodiment, the specific adjusting component 2 includes a motor 201 installed inside the housing 1, a disc 202 installed on the output shaft of the motor 201, and a connecting rod 203 rotatably installed on the inner wall of one side of the housing 1. A protruding column 204 is installed on the disc 202, and a sliding groove is provided on the connecting rod 203. The protruding column 204 slides in the sliding groove. A through hole is provided on the housing 1, and the connecting rod 203 slides in the through hole.

[0035] In this embodiment, a second sliding groove 604 is provided inside the housing 4, and a slider 605 is slidably installed in the second sliding groove 604. The slide plate 601 is installed on the slider 605.

[0036] In this embodiment, both one end of the locking block 602 and one end of the locking plate 501 are inclined.

[0037] In this embodiment, the specific sliding plate 601 is symmetrically arranged about the elliptical disk 702.

[0038] In this embodiment, an opening is provided on the upper surface of the housing 4, and the opening is adapted to the locking plate 501.

[0039] In this embodiment, a spring 8 is installed on the upper surface of the housing 4.

[0040] In this embodiment, the specific monitoring device 3 is installed on the connecting rod 203 and located outside the housing 1.

[0041] The steps for using this utility model in operation are as follows:

[0042] Use bolts to fix the fixing plate 5 to the target installation wall, ensuring that the fixing plate 5 is vertical and flat, the snap plate 501 faces upward and the spacing is compatible with the snap part 6 of the housing 4.

[0043] Align the upper opening of the housing 4 with the locking plate 501 of the fixing plate 5, and move the housing 4 along the direction of the locking plate 501. The inclined surface of the front end of the locking block 602 contacts the inclined surface of the locking plate 501. As the housing 4 moves, the locking plate 501 squeezes the locking block 602, pushing the slide plate 601 to slide into the housing 4 against the elastic force of the spring 603. When the locking block 602 moves to be aligned with the locking groove 502, the spring 603 resets and pushes the locking block 602 into the locking groove 502, thus completing the mechanical locking.

[0044] When maintenance of the monitoring device 3 requires separating the housing 4 locking block 602 from the locking groove 502, pressing the drive rod 704 causes the rack 705 to move. The rack 705 then rotates the gear 703, which in turn rotates the shaft 701. The shaft 701 then rotates the elliptical disk 702, which in turn drives the sliding plates 601 on both sides. The sliding plates 601 move, causing the locking block 602 to move from the locking groove 502. Under the action of the spring 707 and its own gravity, the fixing plate 5 separates from the housing 4, allowing the monitoring device 3 to be removed for maintenance. This enables the monitoring device 3 to be removed quickly, avoiding the need to disassemble multiple fixing bolts.

[0045] When it is necessary to adjust the angle of monitoring device 3, thereby changing the monitoring range of monitoring device 3, motor 201201 is started. The output shaft of motor 201 drives disk 202 to rotate. The rotation of disk 202 drives the protruding column 204 to rotate. The rotation of protruding column 204 drives the connecting rod 203 to move. The movement of connecting rod 203 drives monitoring device 3. When the angle of monitoring device 3 is adjusted, the monitoring range of monitoring device 3 is changed, thus improving its practicality.

[0046] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in this utility model, and these should all be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.

Claims

1. A high-definition video-based intelligent Internet of Things (IoT) device, comprising a housing (1), an adjusting component (2) installed inside the housing (1), a monitoring device (3) installed on the adjusting component (2), a housing (4) installed on the housing (1), a locking component (6) installed inside the housing (4), and a fixing plate (5) fixed to a mounting wall by bolts, characterized in that, The engaging component (6) includes a sliding plate (601) that slides inside the housing (4) and an engaging block (602) mounted on the sliding plate (601). A spring (603) is installed between the sliding plate (601) and an inner sidewall of the housing (4). Engaging plates (501) are symmetrically mounted on the fixing plate (5). Engaging grooves (502) are provided on the engaging plates (501). The engaging block (602) is adapted to the engaging grooves (502).

2. The high-definition video-based intelligent IoT device according to claim 1, characterized in that: A drive unit (7) is also installed inside the housing (4). The drive unit (7) includes a rotating shaft (701) rotatably mounted on the housing (4), an elliptical disk (702) mounted on the rotating shaft (701), and a gear (703). A drive rod (704) is slidably mounted on the front end face of the housing (4). The drive rod (704) extends into the housing (4). A rack (705) is mounted on the drive rod (704). The rack (705) meshes with the gear (703). A fixing post (706) is mounted on the rear end face of the housing (4). The drive rod (704) slides on the fixing post (706). A spring (707) is installed between the drive rod (704) and the inner wall of the housing (4).

3. The high-definition video-based intelligent IoT device according to claim 1, characterized in that: The adjusting component (2) includes a motor (201) installed inside the housing (1), a disc (202) installed on the output shaft of the motor (201), and a connecting rod (203) rotatably installed on the inner wall of one side of the housing (1). A protruding column (204) is installed on the disc (202), and a sliding groove is provided on the connecting rod (203). The protruding column (204) slides in the sliding groove. A through hole is provided on the housing (1), and the connecting rod (203) slides in the through hole.

4. The high-definition video-based intelligent Internet of Things device according to claim 1, characterized in that: The housing (4) has a second sliding groove (604) inside, and a slider (605) is slidably installed in the second sliding groove (604). The slide plate (601) is installed on the slider (605).

5. The high-definition video-based intelligent Internet of Things device according to claim 1, characterized in that: Both the locking block (602) and the locking plate (501) are inclined.

6. The high-definition video-based intelligent Internet of Things device according to claim 1, characterized in that: The slide plate (601) is symmetrically arranged about the elliptical disk (702).

7. The high-definition video-based intelligent IoT device according to claim 1, characterized in that: An opening is provided on the upper surface of the housing (4), and the opening is adapted to the locking plate (501).

8. The high-definition video-based intelligent Internet of Things device according to claim 1, characterized in that: Spring 3 (8) is installed on the upper end face of the housing (4).

9. The high-definition video-based intelligent Internet of Things device according to claim 1, characterized in that: The monitoring device (3) is installed on the connecting rod (203) and located outside the box (1).