Workshop safety video monitoring assembly
By designing a workshop safety video monitoring component that can be installed at multiple angles, and utilizing a combination of a rotating support frame and a locking plate, along with a microcontroller and a WiFi transceiver, the multi-angle installation and remote control of the workshop safety video monitoring component have been achieved. This solves the problems of inflexible installation and small monitoring range in existing technologies, and improves the adaptability and coverage of the monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-10
AI Technical Summary
Existing workshop safety video surveillance components are difficult to install from multiple angles according to the production conditions of different workshops, and the monitoring range is relatively small.
A workshop safety video monitoring component was designed, comprising a connecting frame, a fixing frame, and an angle adjustment mechanism. By combining a rotating support frame and a locking plate, multi-angle installation can be achieved. Combined with a microcontroller and a WiFi transceiver, remote control of the camera lens rotation can be realized, expanding the monitoring range.
It enables flexible installation and remote control based on the workshop environment, expands the monitoring range, adapts to complex workshop environments, and improves the flexibility and coverage of monitoring.
Smart Images

Figure CN223987137U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of workshop management technology, specifically a workshop safety video monitoring component. Background Technology
[0002] Workshop management refers to a series of management tasks involving the planning, organization, command, coordination, and control of various production and operation activities carried out in the workshop. Workshop management requires workshop safety video monitoring components to monitor the internal situation of the workshop.
[0003] Some traditional workshop safety video surveillance systems involve installing cameras on the workshop walls for monitoring.
[0004] Existing workshop safety video monitoring components have the following problems: the production environment and scale of workshops vary, making it difficult to install them at different angles according to the production conditions of different workshops; at the same time, the monitoring range is relatively small. Therefore, we propose a new workshop safety video monitoring component. Utility Model Content
[0005] The technical problem to be solved by this utility model is to overcome the existing defects and provide a workshop safety video monitoring component that can be installed at multiple angles and expands the monitoring range by rotating during use, which can effectively solve the problems in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a workshop safety video monitoring component, comprising a connecting frame, a fixing frame, and an angle adjustment mechanism;
[0007] Connecting frame: It has a rotating shaft inside, and a limit frame is fixedly connected to the lower end of the rotating shaft. The upper surface of the limit frame is in contact with the lower surface of the connecting frame, and a support column is fixedly connected to the lower surface of the limit frame.
[0008] Fixed frame: It is fixedly connected to the lower end of the support column, and the fixed support column is fixedly connected inside the fixed frame;
[0009] Angle adjustment mechanism: It is located at the rear end of the connecting frame;
[0010] It also includes a protective cover, which is fixedly connected to the front end of the fixed support column. A lens protective cover is fixedly connected to the front end of the protective cover, and a camera lens is fixedly connected inside the front end of the lens protective cover.
[0011] The device also includes a motherboard, which is fixedly connected to the front end of the protective cover. A microcontroller is fixedly connected to the center of the front side of the motherboard. The microcontroller is bidirectionally electrically connected to the camera lens, allowing for installation at multiple angles. The device can also be remotely controlled to rotate and expand the monitoring range.
[0012] Furthermore, a WiFi transceiver is fixedly connected to the lower front side of the mounting motherboard. The WiFi transceiver is bidirectionally electrically connected to the microcontroller, which can transmit image information to the remote monitoring terminal and enable remote control via a wireless network.
[0013] Furthermore, a storage battery is fixedly connected to the rear wall of the protective cover, and the output terminal of the storage battery is electrically connected to the input terminal of the microcontroller to provide power for the operation of the device.
[0014] Furthermore, the angle adjustment mechanism includes a mounting bracket and connecting bolts. Bolt connection ports are provided at the four corners of the upper surface of the connecting bracket. The two bolt connection ports on the rear side are connected to the mounting bracket through connecting bolts, which can be quickly connected.
[0015] Furthermore, the angle adjustment mechanism also includes a rotating support shaft and a mounting support frame. The rotating support shaft is rotatably connected to the rear end of the mounting frame, and the mounting support frame is fixedly connected to the middle of the outer surface of the rotating support shaft. Bolt mounting holes are provided at the four corners of the rear side of the mounting support frame, allowing for installation at multiple angles.
[0016] Furthermore, the angle adjustment mechanism also includes a locking plate and a locking bolt. The right end of the rotating support shaft passes through the right side of the mounting frame, and the right end of the rotating support shaft is fixedly connected to the locking plate. The left side of the locking plate is connected to the right side of the mounting frame through the locking bolt, which can be quickly locked.
[0017] Furthermore, a motor is fixedly connected to the upper surface of the connecting frame, the lower end of the motor's output shaft is fixedly connected to the upper end of the rotating shaft, and the input end of the motor is electrically connected to the output end of the microcontroller, allowing it to rotate automatically during use.
[0018] Furthermore, a limiting plate is fixedly connected to the rear end of the fixed support column, and the front side of the limiting plate contacts the rear side of the fixed frame to perform a limiting function.
[0019] Furthermore, a charging port is fixedly connected to the lower end of the protective cover, and the output end of the charging port is electrically connected to the input end of the battery for easy charging.
[0020] Compared with the prior art, the beneficial effects of this utility model are as follows: This workshop safety video monitoring component has the following advantages:
[0021] 1. During installation, the staff rotates the mounting support frame. The rotation of the mounting support frame drives the rotating support shaft to rotate inside the mounting frame. The rotation of the rotating support shaft drives the locking plate to rotate. After adjusting to the appropriate rotation angle, the staff installs the locking bolts to lock the locking plate to the mounting frame. The change in the angle between the mounting frame and the mounting support frame causes the angle of the connecting frame to change, thereby adjusting the installation angle of the video surveillance system in the workshop. This adapts to various installation situations of workshop safety video surveillance and is suitable for more complex workshop working environments.
[0022] 2. When the monitoring terminal issues a control command, the WiFi transceiver receives the command and transmits it to the microcontroller. The microcontroller then controls the motor to start, which in turn drives the shaft to rotate. The shaft's rotation drives the limit frame to rotate, which in turn drives the support column to rotate. The support column's rotation drives the fixed frame to rotate, which in turn drives the fixed support column to rotate. The fixed support column's rotation drives the protective cover to rotate, which in turn drives the camera lens to rotate. Thus, the device can be remotely controlled during operation, thereby expanding the range of the workshop's safety video monitoring. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of this utility model;
[0024] Figure 2 This is a partial cross-sectional view of the right end of this utility model.
[0025] In the diagram: 1 Connecting frame, 2 Rotating shaft, 3 Limiting frame, 4 Support column, 5 Fixing frame, 6 Fixed support column, 7 Protective cover, 8 Battery, 9 Mounting motherboard, 10 Microcontroller, 11 Wi-Fi transceiver, 12 Lens protective cover, 13 Camera lens, 14 Angle adjustment mechanism, 141 Mounting bracket, 142 Connecting bolt, 143 Rotating support shaft, 144 Mounting support frame, 145 Locking plate, 146 Locking bolt, 15 Motor, 16 Limiting plate, 17 Charging port, 18 Bolt mounting port, 19 Bolt connection port. Detailed Implementation
[0026] 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 protection scope of the present utility model.
[0027] Please see Figure 1-2 This embodiment provides a technical solution: a workshop safety video monitoring component, including a connecting frame 1, a fixing frame 5, and an angle adjustment mechanism 14;
[0028] Connecting frame 1: It has a rotating shaft 2 rotatably connected inside. The lower end of the rotating shaft 2 is fixedly connected to a limit frame 3. The upper surface of the limit frame 3 is in contact with the lower surface of the connecting frame 1. The lower surface of the limit frame 3 is fixedly connected to a support column 4. The upper surface of the connecting frame 1 is fixedly connected to a motor 15. The lower end of the output shaft of the motor 15 is fixedly connected to the upper end of the rotating shaft 2. The input end of the motor 15 is electrically connected to the output end of the microcontroller 10.
[0029] Fixed frame 5: It is fixedly connected to the lower end of the support column 4. The fixed support column 6 is fixedly connected inside the fixed frame 5. The rear end of the fixed support column 6 is fixedly connected to the limiting plate 16. The front side of the limiting plate 16 contacts the rear side of the fixed frame 5.
[0030] Angle adjustment mechanism 14: Located at the rear end of connecting frame 1, angle adjustment mechanism 14 includes mounting frame 141 and connecting bolts 142. Bolt connection ports 19 are provided at all four corners of the upper surface of connecting frame 1. The mounting frame 141 is connected to the two rear bolt connection ports 19 via connecting bolts 142. Angle adjustment mechanism 14 also includes a rotating support shaft 143 and a mounting support frame 144. The rotating support shaft 143 is rotatably connected to the rear end of mounting frame 141. The mounting support frame 144 is fixedly connected to the middle of the outer surface of the rotating support shaft 143. Bolt mounting ports 18 are provided at all four corners of the rear side of mounting support frame 144. Angle adjustment mechanism 14 also includes a locking plate 145 and locking bolts 146. The right end of the rotating support shaft 143 passes through mounting frame 141. On the right side of 41, a locking plate 145 is fixedly connected to the right end of the rotating support shaft 143. The left side of the locking plate 145 is connected to the right side of the mounting frame 141 by locking bolts 146. During installation, the operator rotates the mounting support frame 144. The rotation of the mounting support frame 144 causes the rotating support shaft 143 to rotate inside the mounting frame 141. The rotation of the rotating support shaft 143 causes the locking plate 145 to rotate. After adjusting to a suitable rotation angle, the operator installs the locking bolts 146 to lock the locking plate 145 to the mounting frame 141. The change in the angle between the mounting frame 141 and the mounting support frame 144 causes the angle of the connecting frame 1 to change, thereby adjusting the installation angle of the video surveillance system in the workshop to adapt to various installation situations and more complex working environments.
[0031] The protective cover 7 is fixedly connected to the front end of the fixed support column 6. A lens cover 12 is fixedly connected to the front end of the protective cover 7. A camera lens 13 is fixedly connected inside the front end of the lens cover 12. A battery 8 is fixedly connected to the rear wall of the protective cover 7. The output end of the battery 8 is electrically connected to the input end of the microcontroller 10. A charging port 17 is fixedly connected to the lower end of the protective cover 7. The output end of the charging port 17 is electrically connected to the input end of the battery 8.
[0032] The system includes a motherboard 9, which is fixedly connected to the front end of the protective cover 7. A microcontroller 10 is fixedly connected to the middle of the front side of the motherboard 9, and the microcontroller 10 is bidirectionally electrically connected to the camera lens 13. A WiFi transceiver 11 is fixedly connected to the lower end of the front side of the motherboard 9, and the WiFi transceiver 11 is bidirectionally electrically connected to the microcontroller 10. When the monitoring terminal issues a control command, the WiFi transceiver 11 receives the control command and transmits it to the microcontroller 10. Then, the microcontroller 10 controls the motor 15 to start. The motor 15 drives the rotating shaft 2 to rotate, which in turn drives the limit frame 3 to rotate. The limit frame 3 then drives the support column 4 to rotate, which in turn drives the fixed frame 5 to rotate. The fixed frame 5 then drives the fixed support column 6 to rotate, which in turn drives the protective cover 7 to rotate, thereby driving the camera lens 13 to rotate. Thus, the device rotation can be remotely controlled during operation, thereby expanding the monitoring range.
[0033] The working principle of the workshop safety video monitoring component provided by this utility model is as follows: During installation, the operator rotates the mounting support frame 144. The rotation of the mounting support frame 144 drives the rotating support shaft 143 to rotate inside the mounting frame 141. The rotation of the rotating support shaft 143 drives the locking plate 145 to rotate. After adjusting to a suitable rotation angle, the operator installs the locking bolt 146 to lock the locking plate 145 to the mounting frame 141. The change in angle between the mounting frame 141 and the mounting support frame 144 causes the angle of the connecting frame 1 to change, thereby adjusting the installation angle of the video monitoring system in the workshop to adapt to various installation situations and more complex working environments. In use, the camera lens 13 captures image information and transmits the image information to the microcontroller 10. The microcontroller 10 then transmits the image information to the Wi-Fi transceiver 11. With the support of the wireless network, the Wi-Fi transceiver 11 transmits the image information to the monitoring terminal. At the same time, when the monitoring terminal issues a control command, the Wi-Fi transceiver... The transceiver 11 receives the control command and transmits it to the microcontroller 10. The microcontroller 10 then controls the motor 15 to start. The motor 15 drives the rotating shaft 2 to rotate, which in turn drives the limit frame 3 to rotate. The limit frame 3 then drives the support column 4 to rotate, which in turn drives the fixed frame 5 to rotate. The fixed frame 5 then drives the fixed support column 6 to rotate, which in turn drives the protective cover 7 to rotate, thereby causing the camera lens 13 to rotate. Thus, the device can be remotely controlled to rotate during operation, thereby expanding the monitoring range.
[0034] It is worth noting that the microcontroller 10 disclosed in the above embodiments can be an STM32F103C8T6, the motor 15 can be a ZF26C_1624671876948, the camera lens 13 can be an OV2640 camera module, and the Wi-Fi transceiver 11 can be an ESP8266. The microcontroller 10 controls the motor 15 using common methods in the prior art.
[0035] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A plant safety video monitoring assembly, characterized by: It include connecting frame (1), fixed frame (5) and angle adjusting mechanism (14); The connecting frame (1) is internally rotatably connected with a rotating shaft (2), the lower end of the rotating shaft (2) is fixedly connected with a limiting frame (3), the upper surface of the limiting frame (3) is in contact with the lower surface of the connecting frame (1), and the lower surface of the limiting frame (3) is fixedly connected with a supporting column (4); The fixed frame (5) is fixedly connected to the lower end of the supporting column (4), and the fixed frame (5) is internally fixedly connected with a fixed supporting column (6); The angle adjusting mechanism (14) is arranged at the rear end of the connecting frame (1); Wherein: it further includes a protective cover (7), the protective cover (7) is fixedly connected to the front end of the fixed supporting column (6), the front end of the protective cover (7) is fixedly connected with a lens protection cover (12), the front end of the lens protection cover (12) is internally fixedly connected with a camera lens (13); Wherein: it further includes a mounting mainboard (9), the mounting mainboard (9) is fixedly connected to the front end of the protective cover (7), the front side of the mounting mainboard (9) is fixedly connected with a single-chip microcomputer (10), and the single-chip microcomputer (10) is bidirectionally electrically connected with the camera lens (13).
2. A plant safety video monitoring assembly according to claim 1, wherein: The front side of the mounting mainboard (9) is fixedly connected with a WiFi transceiver (11), and the WiFi transceiver (11) is bidirectionally electrically connected with the single-chip microcomputer (10).
3. A plant safety video monitoring assembly according to claim 1, wherein: The rear wall of the protective cover (7) is fixedly connected with a storage battery (8), and the output end of the storage battery (8) is electrically connected with the input end of the single-chip microcomputer (10).
4. A plant safety video monitoring assembly according to claim 1, wherein: The angle adjusting mechanism (14) includes a mounting frame (141) and a connecting bolt (142), and the upper surface of the connecting frame (1) is provided with bolt connection ports (19) at four corners, and the rear two bolt connection ports (19) are connected with the mounting frame (141) through the connecting bolt (142).
5. A shop floor safety video monitoring assembly according to claim 4, wherein: The angle adjusting mechanism (14) further includes a rotating support shaft (143) and a mounting support frame (144), the rear end of the mounting frame (141) is rotatably connected with the rotating support shaft (143), the outer surface of the rotating support shaft (143) is fixedly connected with the mounting support frame (144), and the rear side of the mounting support frame (144) is provided with bolt mounting ports (18) at four corners.
6. A shop floor safety video monitoring assembly according to claim 5, wherein: The angle adjusting mechanism (14) further includes a locking plate (145) and a locking bolt (146), the right end of the rotating support shaft (143) penetrates the right side of the mounting frame (141), the right end of the rotating support shaft (143) is fixedly connected with the locking plate (145), and the left side of the locking plate (145) is connected with the right side of the mounting frame (141) through the locking bolt (146).
7. A shop floor safety video monitoring assembly according to claim 1, wherein: The upper surface of the connecting frame (1) is fixedly connected with a motor (15), the lower end of the output shaft of the motor (15) is fixedly connected with the upper end of the rotating shaft (2), and the input end of the motor (15) is electrically connected with the output end of the single-chip microcomputer (10).
8. A plant safety video monitoring assembly according to claim 1, wherein: The rear end of the fixed supporting column (6) is fixedly connected with a limiting plate (16), and the front side of the limiting plate (16) is in contact with the rear side of the fixed frame (5).
9. A shop floor safety video monitoring assembly according to claim 3, wherein: The lower end of the protective cover (7) is fixedly connected with a charging port (17), and the output end of the charging port (17) is electrically connected with the input end of the storage battery (8).