Tracking type monitoring device
By using a camera adjustment device driven by a rotary motor and a servo motor, combined with an infrared sensor and a shielding structure, the problems of complex structure and easily damaged lenses in monitoring devices are solved, achieving flexible monitoring and lens protection.
Patent Information
- Application Number
- CN202423286538.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing surveillance devices are complex in structure and difficult to adjust the direction and height of the camera when monitoring moving objects, and the camera is easily damaged by impact.
A rotary motor drives a rotating plate, and a servo motor drives a threaded rod. Combined with an infrared sensor to detect objects, the camera's angle and height can be adjusted, and the lens is protected by a shielding structure.
It enables flexible tracking and monitoring of moving objects by the camera, has a compact and simple structure, and effectively protects the lens from impact damage.
Smart Images

Figure CN223511809U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to monitoring devices, and more particularly to tracking monitoring devices. Background Technology
[0002] Monitoring devices are the most widely used equipment in security systems. Currently, handheld video communication devices are the most suitable for construction site monitoring. Video surveillance is now the mainstream technology. Intelligent video surveillance is a technology that uses computer vision to process, analyze, and understand video signals. It can locate, identify, and track changes in the monitored scene by automatically analyzing sequential images without human intervention, and analyze and judge the behavior of the target based on this.
[0003] While current surveillance devices can generally meet people's needs, some problems still exist, as detailed below:
[0004] 1. When monitoring moving objects, the camera needs to adjust its direction and height according to different situations, and the auxiliary device has a complex structure.
[0005] 2. During the monitoring process, flying or moving objects may collide with the lens of the surveillance camera, causing damage to the lens. Utility Model Content
[0006] The purpose of this invention is to provide a tracking monitoring device to solve the shortcomings of existing monitoring devices, such as complex overall structure for tracking moving objects and difficulty in protecting the device.
[0007] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a tracking monitoring device, including a base;
[0008] A second telescopic rod is installed at the top of the base, and a first telescopic rod is movably connected to the top of the second telescopic rod. A rotary motor is installed at the top of the first telescopic rod.
[0009] A rotating plate is mounted on the top of the rotating motor, an infrared sensor is mounted on one side of the rotating plate, a camera is mounted on the top of the rotating plate, a shielding structure is mounted on one side of the camera, and a lens is mounted on one side of the camera.
[0010] The second telescopic rod is equipped with a lifting mechanism, which includes a servo motor, a threaded rod, a threaded sleeve, and a moving groove. The servo motor is installed at the bottom of the second telescopic rod, and the top of the servo motor is equipped with a threaded rod. The moving groove is located inside the first telescopic rod, and the bottom of the moving groove is equipped with a threaded sleeve.
[0011] In use, the infrared sensor first detects moving objects. Then, during monitoring, the rotary motor drives the rotating plate to rotate, which in turn rotates the camera. The camera's rotation allows for adjustment of the monitoring angle. When the camera height needs to be adjusted, the servo motor drives the threaded rod to rotate. The threaded rod and threaded sleeve form a threaded connection. The rotation of the threaded rod causes the threaded sleeve and the first telescopic rod to rise and fall. The rise and fall of the first telescopic rod adjusts the camera's height, allowing the camera to adapt to different situations and monitor moving objects.
[0012] Furthermore, a protective structure is installed at the bottom of the outer side of the second telescopic rod. The protective structure includes a protective plate, a wear-resistant plate, wear-resistant texture, and a sponge pad. The sponge pad is installed on the outer side of the second telescopic rod, the outer side of the sponge pad is fitted with a protective plate, and the outer side of the protective plate is fitted with a wear-resistant plate. The protective plate can protect the second telescopic rod.
[0013] Furthermore, the wear-resistant plate has wear-resistant patterns on its outer side, and these patterns are arranged at equal intervals on the outer side of the wear-resistant plate, which can enhance the wear resistance of the wear-resistant plate.
[0014] Furthermore, a fixing screw is installed at the top of the base, and the fixing screw is arranged in a ring, so that the rotating shaft can be fixed by the fixing screw.
[0015] Furthermore, the outer side wall of the threaded rod is uniformly provided with external threads, and the inner side wall of the threaded sleeve is uniformly provided with internal threads that cooperate with the external threads. The threaded rod and the threaded sleeve are threadedly connected, and the rotation of the threaded rod can drive the first telescopic rod to rise and fall.
[0016] Furthermore, the shielding structure includes a mounting plate, a rotating shaft, a connecting rod, a baffle, and a buckle. The mounting plate is installed on one side of the camera, and the rotating shaft is movably connected to the inner side of the mounting plate. A connecting rod is installed at the bottom end of the rotating shaft, and a baffle is installed at the bottom end of the connecting rod. The baffle can protect the lens.
[0017] Furthermore, the bottom of the baffle is provided with a buckle, and one side of the camera is provided with a slot. The baffle and the camera form a locking structure, which facilitates disassembly.
[0018] The tracking monitoring device provided by this utility model has the following advantages: By installing an infrared sensor on one side of the rotating plate, the infrared sensor can detect moving objects. During monitoring, the rotating motor drives the rotating plate to rotate, which in turn drives the camera to rotate. The camera's rotation can adjust the monitoring angle. When the camera height needs to be adjusted, the servo motor drives the threaded rod to rotate. The threaded rod and the threaded sleeve form a threaded connection. The rotation of the threaded rod can drive the threaded sleeve and the first telescopic rod to rise and fall. The rise and fall of the first telescopic rod can adjust the camera height, allowing the camera to adapt to different situations. This achieves the purpose of the monitoring device tracking moving objects, and the overall structure is compact and simple.
[0019] A mounting plate is installed on one side of the camera. The inner shaft of the mounting plate can rotate, which in turn drives the connecting rod to rotate. The rotating rod then drives the baffle. The buckle at the bottom of the baffle can be inserted into the slot on the camera to fix the baffle in place. The baffle can be made of transparent plastic material and will not affect the lens's shooting. The baffle can cover the lens surface to protect the lens and prevent objects from hitting it, thus achieving the purpose of easily protecting the lens of the monitoring device. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0021] Figure 2 This is a frontal cross-sectional view of the present invention.
[0022] Figure 3 For the present utility model Figure 2 Enlarged cross-sectional view of point A in the middle section;
[0023] Figure 4 This is a partial three-dimensional structural diagram of the shielding structure of this utility model.
[0024] Figure 5 This is a partial cross-sectional view of the lifting mechanism of this utility model.
[0025] The reference numerals in the diagram are as follows: 1. First telescopic rod; 2. Second telescopic rod; 3. Protective structure; 301. Protective plate; 302. Wear-resistant plate; 303. Wear-resistant texture; 304. Sponge pad; 4. Base; 5. Fixing screw; 6. Lifting mechanism; 601. Servo motor; 602. Threaded rod; 603. Threaded sleeve; 604. Moving groove; 7. Rotary motor; 8. Rotating plate; 9. Infrared sensor; 10. Lens; 11. Shielding structure; 1101. Mounting plate; 1102. Rotating shaft; 1103. Connecting rod; 1104. Baffle; 1105. Buckle; 12. Camera. Detailed Implementation
[0026] See Figures 1-5 One embodiment of this utility model is a tracking monitoring device, which includes a base 4, a second telescopic rod 2 installed at the top of the base 4, and fixing screws 5 installed at the top of the base 4, and the fixing screws 5 are distributed in a ring.
[0027] A protective structure 3 is installed at the bottom of the outer side of the second telescopic rod 2. The protective structure 3 includes a protective plate 301, a wear-resistant plate 302, wear-resistant texture 303, and a sponge pad 304. The sponge pad 304 is installed on the outer side of the second telescopic rod 2. The protective plate 301 is installed on the outer side of the sponge pad 304. The wear-resistant plate 302 is installed on the outer side of the protective plate 301. The wear-resistant texture 303 is provided on the outer side of the wear-resistant plate 302, and the wear-resistant texture 303 is arranged at equal intervals on the outer side of the wear-resistant plate 302.
[0028] See attached document Figure 1-2 and attached Figure 4 As shown, the protective plate 301 can be connected to the second telescopic rod 2 via a sponge pad 304. The sponge pad 304 is elastic, and the protective plate 301 can protect the second telescopic rod 2, preventing it from being directly impacted. The elasticity of the sponge pad 304 will buffer the impact force on the second telescopic rod 2. The wear-resistant plate 302 can be made of solid wood and can protect the protective plate 301. The wear-resistant texture 303 is arranged at equal intervals, which can enhance the wear resistance of the wear-resistant plate 302.
[0029] The top end of the second telescopic rod 2 is movably connected to the first telescopic rod 1, and the top end of the first telescopic rod 1 is equipped with a rotary motor 7.
[0030] A rotating plate 8 is mounted on the top of the rotating motor 7. An infrared sensor 9 is mounted on one side of the rotating plate 8. A camera 12 is mounted on the top of the rotating plate 8. A shielding structure 11 is mounted on one side of the camera 12. The shielding structure 11 includes a mounting plate 1101, a rotating shaft 1102, a connecting rod 1103, a baffle 1104, and a buckle 1105. The mounting plate 1101 is mounted on one side of the camera 12. The rotating shaft 1102 is movably connected to the inner side of the mounting plate 1101. A connecting rod 1103 is mounted on the bottom end of the rotating shaft 1102. A baffle 1104 is mounted on the bottom end of the connecting rod 1103. A buckle 1105 is provided on the bottom end of the baffle 1104. A slot is provided on one side of the camera 12. The baffle 1104 and the camera 12 form a locking structure.
[0031] See attached document Figure 1-3As shown, the pivot 1102 on the inner side of the mounting plate 1101 can rotate. The rotation of the pivot 1102 can drive the connecting rod 1103 to rotate. The rotation of the connecting rod 1103 will drive the baffle 1104. The buckle 1105 at the bottom of the baffle 1104 can be inserted into the slot on the camera 12 to fix the baffle 1104. The baffle 1104 can be made of transparent plastic material and will not affect the shooting of the lens 10. The baffle 1104 can cover the surface of the lens 10 to protect the lens 10 and prevent objects from hitting the lens 10.
[0032] A lens 10 is installed on one side of the camera 12. A lifting mechanism 6 is installed inside the second telescopic rod 2. The lifting mechanism 6 includes a servo motor 601, a threaded rod 602, a threaded sleeve 603, and a moving groove 604. The servo motor 601 is installed at the bottom inside the second telescopic rod 2. The threaded rod 602 is installed at the top of the servo motor 601. External threads are evenly arranged on the outer side wall of the threaded rod 602. Internal threads that cooperate with the external threads are evenly arranged on the inner side wall of the threaded sleeve 603. The threaded rod 602 and the threaded sleeve 603 are threadedly connected.
[0033] The movable groove 604 is located inside the first telescopic rod 1, and a threaded sleeve 603 is installed at the bottom end of the movable groove 604.
[0034] See attached document Figure 2 and attached Figure 5 As shown, the infrared sensor 9 can detect moving objects. During monitoring, the rotary motor 7 drives the rotating plate 8 to rotate, which in turn drives the camera 12 to rotate. The rotation of the camera 12 can adjust the monitoring angle. When the height of the camera 12 needs to be adjusted, the servo motor 601 drives the threaded rod 602 to rotate. The threaded rod 602 and the threaded sleeve 603 form a threaded connection. The rotation of the threaded rod 602 can drive the threaded sleeve 603 and the first telescopic rod 1 to rise and fall. The rise and fall of the first telescopic rod 1 can adjust the height of the camera 12, allowing the camera 12 to adapt to different situations and monitor moving objects.
Claims
1. A tracking monitoring device, including a base (4), characterized in that: A second telescopic rod (2) is installed at the top of the base (4), and a first telescopic rod (1) is movably connected to the top of the second telescopic rod (2). A rotary motor (7) is installed at the top of the first telescopic rod (1). A rotating plate (8) is installed at the top of the rotary motor (7). An infrared sensor (9) is installed on one side of the rotating plate (8). A camera (12) is installed at the top of the rotating plate (8). A shielding structure (11) is installed on one side of the camera (12). A mirror is installed on one side of the camera (12). The head (10) is equipped with a lifting mechanism (6) inside the second telescopic rod (2). The lifting mechanism (6) includes a servo motor (601), a threaded rod (602), a threaded sleeve (603), and a moving groove (604). The servo motor (601) is installed at the bottom inside the second telescopic rod (2). The threaded rod (602) is installed at the top of the servo motor (601). The moving groove (604) is located inside the first telescopic rod (1). The threaded sleeve (603) is installed at the bottom of the moving groove (604).
2. The tracking monitoring device according to claim 1, characterized in that: A protective structure (3) is installed at the bottom of the outer side of the second telescopic rod (2). The protective structure (3) includes a protective plate (301), a wear-resistant plate (302), a wear-resistant texture (303), and a sponge pad (304). The sponge pad (304) is installed on the outer side of the second telescopic rod (2). The protective plate (301) is installed on the outer side of the sponge pad (304), and the wear-resistant plate (302) is installed on the outer side of the protective plate (301).
3. The tracking monitoring device according to claim 2, characterized in that: The wear-resistant plate (302) has wear-resistant textures (303) on its outer side, and the wear-resistant textures (303) are arranged at equal intervals on the outer side of the wear-resistant plate (302).
4. The tracking monitoring device according to claim 1, characterized in that: The top of the base (4) is fitted with fixing screws (5), and the fixing screws (5) are arranged in a ring.
5. The tracking monitoring device according to claim 1, characterized in that: The threaded rod (602) has external threads uniformly arranged on its outer side wall, and the threaded sleeve (603) has internal threads uniformly arranged on its inner side wall that cooperate with the external threads. The threaded rod (602) and the threaded sleeve (603) are threadedly connected.
6. The tracking monitoring device according to claim 1, characterized in that: The shielding structure (11) includes a mounting plate (1101), a rotating shaft (1102), a connecting rod (1103), a baffle (1104), and a buckle (1105). The mounting plate (1101) is installed on one side of the camera (12). The rotating shaft (1102) is movably connected to the inner side of the mounting plate (1101), and the connecting rod (1103) is installed at the bottom end of the rotating shaft (1102). The baffle (1104) is installed at the bottom end of the connecting rod (1103).
7. The tracking monitoring device according to claim 6, characterized in that: The bottom end of the baffle (1104) is provided with a buckle (1105), and the side of the camera (12) is provided with a slot. The baffle (1104) and the camera (12) form a locking structure.