Monitoring video 360-degree sliding structure
By using a sliding motor and gear transmission system, the problem of easy damage and immobility of the mechanical rotation mechanism of traditional 360-degree cameras has been solved, enabling flexible adjustment of the monitoring area and a longer service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-03-24
AI Technical Summary
Existing 360-degree cameras have complex and easily damaged mechanical rotating mechanisms that cannot be moved, resulting in short service life and limited monitoring range.
The system employs a sliding motor and gear transmission system. The sliding motor drives the threaded block to move the monitoring camera, and the combination of the rotating motor and gear system enables the camera to slide and rotate, simplifying the mechanical structure and reducing wear.
It enables flexible camera movement and 360-degree monitoring, expands the monitoring range, reduces mechanical wear, and increases service life.
Smart Images

Figure CN224033529U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to camera technical field, concretely is a kind of monitoring video 360 degree sliding structure. BACKGROUND
[0002] 360-degree camera is a kind of through special lens or mechanical rotation realizes all-around monitoring equipment without blind area, widely used in family security, traffic driving, commercial monitoring and other fields.
[0003] The mechanical rotating mechanism of existing 360-degree camera is relatively complex, and the mechanical rotating mechanism is prone to damage due to wear between various parts during work, reducing the service life of the 360-degree camera. In addition, the 360-degree camera is usually fixed on a mounting seat, and the mounting seat cannot be moved, so the 360-degree camera cannot monitor different areas in 360 degrees. Therefore, a monitoring video 360-degree sliding structure is proposed. UTILITY MODEL CONTENT
[0004] The utility model aims to provide a monitoring video 360-degree sliding structure, which can solve the problems of complex and easily damaged mechanical rotating mechanism of traditional 360-degree camera and inability to move.
[0005] To achieve the above-mentioned purpose, a monitoring video 360-degree sliding structure is provided, which comprises a first device housing. A threaded groove is formed in the lower end of the first device housing. A sliding device is fixedly connected inside the threaded groove. The sliding device comprises a first bearing, a threaded rod, a threaded block, a transmission rod, a first driven gear, a sliding motor, and a first driving gear.
[0006] The lower end of the threaded block is fixedly connected with a connecting column. The front surface of the connecting column is fixedly connected with a second device housing. The lower end of the second device housing is fixedly connected with a second bearing inside. The inner ring of the second bearing is fixedly connected with a rotating bent plate. The first rotating rod is rotatably connected inside the rotating bent plate. The other end of the first rotating rod is fixedly connected with a mounting housing. The monitoring camera is installed inside the mounting housing. The upper end of the second device housing is fixedly connected with a third bearing inside. The inner part of the third bearing is fixedly connected with a first connecting rod. The upper end of the first connecting rod is fixedly connected with a second driven gear. A rotating motor is installed inside the upper end of the second device housing. The output shaft of the rotating motor is fixedly connected with a second driving gear.
[0007] According to the monitoring video 360-degree sliding structure, the inner rings of the two first bearings are fixedly connected with the threaded rod. The surface of the threaded rod is threadedly connected with the inner part of the threaded block. The inner ring of the right first bearing is fixedly connected with the transmission rod. The other end of the transmission rod is fixedly connected with the first driven gear. The output shaft of the sliding motor is fixedly connected with the first driving gear.
[0008] According to the monitoring video 360-degree sliding structure, the outer rings of the two first bearings are fixedly connected with the inside of the first device shell, the surface of the threaded block is slidingly connected with the inside of the threaded groove, the surface of the sliding motor is mounted with the right side of the first device shell, and the surface of the first driving gear is meshedly connected with the first driven gear.
[0009] According to the monitoring video 360-degree sliding structure, the surface of the second driving gear is screwedly connected with the second driven gear.
[0010] According to the monitoring video 360-degree sliding structure, the two sides of the second bearing are provided with L-shaped frames, the two inside rotating connections of the two sides of the L-shaped frames are provided with second rotating rods, the other ends of the two second rotating rods are fixedly connected with a square frame, the two inside rotating connections of the square frame are provided with third rotating rods, and the other ends of the two third rotating rods are fixedly connected with the mounting shell.
[0011] Compared with the prior art, the monitoring video 360-degree sliding structure has the beneficial effects that:
[0012] The monitoring video 360-degree sliding structure is provided with a sliding motor, a first driving gear and a threaded block, the sliding motor is started to drive the first driving gear to rotate and indirectly drive the threaded block to move, the monitoring camera is moved, the monitoring area of the 360-degree camera is changed, and the monitoring range of the 360-degree camera is enlarged.
[0013] The monitoring video 360-degree sliding structure is provided with a rotating motor, a second driving gear and a first rotating rod, the rotating motor is started to drive the second driving gear to rotate and indirectly drive the first rotating rod to rotate around the center position of the second bearing, the 360-degree camera is rotated by 360 degrees, compared with a traditional mechanical rotating mechanism, the structure is simple, the abrasion is reduced, and the service life of the 360-degree camera is prolonged.
[0014] Additional aspects and advantages of the present application will be further described in the following description, some of which will be apparent to those skilled in the art from the description or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0015] The present application will be further described below in combination with the drawings and embodiments.
[0016] Figure 1 It is a perspective view of the monitoring video 360-degree sliding structure of the present application.
[0017] Figure 2 It is an inside structure schematic view of the first device shell of the monitoring video 360-degree sliding structure of the present application.
[0018] Figure 3 For the utility model Figure 1 Amplification schematic view at A in the middle;
[0019] Figure 4 For the utility model a monitoring video 360 degree sliding structure's second device shell and the connection structure between the mounting shell are the perspective view.
[0020] In the drawing: 1, first device shell;2, threaded groove;3, sliding device;301, first bearing;302, threaded rod;303, threaded block;304, transmission rod;305, first driven gear;306, sliding motor;307, first driving gear;4, connecting column;5, second device shell;6, second bearing;7, rotating elbow plate;8, first rotating rod;9, mounting shell;10, monitoring camera;11, third bearing;12, first connecting rod;13, second driven gear;14, rotating motor;15, second driving gear;16, L-shaped frame;17, second rotating rod;18, square frame;19, third rotating rod. Specific implementation
[0021] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0022] Please refer to Figures 1-4 The utility model embodiment provides a technical scheme: a monitoring video 360 degree sliding structure, including first device shell 1, the lower end inside first device shell 1 is opened with threaded groove 2, threaded groove 2 is fixedly connected with sliding device 3 in the inside, sliding device 3 includes first bearing 301, threaded rod 302, threaded block 303, transmission rod 304, first driven gear 305, sliding motor 306, first driving gear 307, by setting sliding motor 306, first driving gear 307, threaded block 303, by starting sliding motor 306 and indirectly driving threaded block 303 moves with the rotation of first driving gear 307, so that monitoring camera 10 moves, changes the monitoring area of 360 degree camera, expands the monitoring range of 360 degree camera.
[0023] The lower end of the threaded block 303 is fixedly connected with a connecting column 4, the front surface of the connecting column 4 is fixedly connected with a second device shell 5, the lower end of the second device shell 5 is fixedly connected with a second bearing 6 in the inside, the inner ring of the second bearing 6 is fixedly connected with a rotating bent plate 7, the inside of the rotating bent plate 7 is rotatably connected with a first rotating rod 8, the other end of the first rotating rod 8 is fixedly connected with a mounting shell 9, the inside of the mounting shell 9 is mounted with a monitoring camera 10, the upper end of the second device shell 5 is fixedly connected with a third bearing 11 in the inside, the inside of the third bearing 11 is fixedly connected with a first connecting rod 12, the upper end of the first connecting rod 12 is fixedly connected with a second driven gear 13, the upper end of the second device shell 5 is mounted with a rotating motor 14 in the inside, the output shaft of the rotating motor 14 is fixedly connected with a second driving gear 15, by arranging the rotating motor 14, the second driving gear 15 and the first rotating rod 8, the rotating motor 14 is started to drive the second driving gear 15 to rotate and indirectly drive the first rotating rod 8 to rotate around the center position of the second bearing 6, so that the 360-degree camera rotates by 360 degrees, compared with the traditional mechanical rotating mechanism, the structure is simple, the wear is reduced, and the service life of the 360-degree camera is improved.
[0024] The inner rings of the two first bearings 301 are fixedly connected with a threaded rod 302, the surface of the threaded rod 302 is threadedly connected with the inside of a threaded block 303, the inner ring of the right first bearing 301 is fixedly connected with a transmission rod 304, the other end of the transmission rod 304 is fixedly connected with a first driven gear 305, the output shaft of a sliding motor 306 is fixedly connected with a first driving gear 307, the outer rings of the two first bearings 301 are fixedly connected with the inside of a first device shell 1, the surface of the threaded block 303 is slidingly connected with the inside of a threaded groove 2, the surface of the sliding motor 306 is mounted and connected with the right inside of the first device shell 1, the surface of the first driving gear 307 is meshedly connected with the first driven gear 305, and the surface of the second driving gear 15 is threadedly connected with the second driven gear 13.
[0025] L-shaped frames 16 are mounted on the two sides of the second bearing 6, second rotating rods 17 are rotatably connected with the two sides of the L-shaped frames 16 in the inside, a square frame 18 is fixedly connected with the other ends of the two second rotating rods 17, third rotating rods 19 are rotatably connected with the two sides of the square frame 18 in the inside, the other ends of the two third rotating rods 19 are fixedly connected with the mounting shell 9, and a connecting rod is fixedly connected between the inner ring of the third bearing 11 and the inner ring of the second bearing 6.
[0026] Working principle: in use, turn on the power, in realizing the sliding of 360-degree camera, start the sliding motor 306, the output shaft of the sliding motor 306 drives the first driving gear 307 to rotate, the surface of the first driving gear 307 drives the first driven gear 305 to rotate, the side of the first driven gear 305 drives the transmission rod 304 to rotate, the other end of the transmission rod 304 indirectly drives the threaded rod 302 to rotate, the surface of the threaded rod 302 indirectly drives the threaded block 303 to move, the lower end of the threaded block 303 indirectly drives the monitoring camera 10 to move, through the above mechanism, the sliding of 360-degree camera is realized;
[0027] In realizing the 360-degree rotation of 360-degree camera, start the rotating motor 14, the output shaft of the rotating motor 14 drives the second driving gear 15 to rotate, the surface of the second driving gear 15 drives the second driven gear 13 to rotate, the lower end of the second driven gear 13 drives the first connecting rod 12 to rotate, the lower end of the first connecting rod 12 indirectly drives the connecting rod to rotate, the lower end of the connecting rod indirectly drives the rotating bent plate 7 to rotate, the inside of the rotating bent plate 7 drives the first rotating rod 8 to rotate, the other end of the first rotating rod 8 drives the mounting shell 9 to rotate, so that the monitoring camera 10 rotates 360 degrees around the other end connection of the first rotating rod 8, the 360-degree rotation of 360-degree camera is realized.
[0028] The above embodiment of the utility model is described in detail in combination with the drawings, but the utility model is not limited to the above embodiment, within the knowledge range of ordinary skill in the art, various changes can be made without departing from the purpose of the utility model.
Claims
1. A 360-degree sliding structure for video surveillance, comprising a first device housing (1), characterized in that, The lower end of the housing (1) of the first device is provided with a threaded groove (2), and a sliding device (3) is fixedly connected inside the threaded groove (2). The sliding device (3) includes a first bearing (301), a threaded rod (302), a threaded block (303), a transmission rod (304), a first driven gear (305), a sliding motor (306), and a first driving gear (307). The lower end of the threaded block (303) is fixedly connected to a connecting column (4), the front of the connecting column (4) is fixedly connected to a second device housing (5), the lower end of the second device housing (5) is fixedly connected to a second bearing (6), the inner ring of the second bearing (6) is fixedly connected to a rotating bending plate (7), the inside of the rotating bending plate (7) is rotatably connected to a first rotating rod (8), the other end of the first rotating rod (8) is fixedly connected to a mounting housing (9), the inside of the mounting housing (9) is equipped with a monitoring camera (10), the upper end of the second device housing (5) is fixedly connected to a third bearing (11), the inside of the third bearing (11) is fixedly connected to a first connecting rod (12), the upper end of the first connecting rod (12) is fixedly connected to a second driven gear (13), the upper end of the second device housing (5) is equipped with a rotating motor (14), the output shaft of the rotating motor (14) is fixedly connected to a second driving gear (15).
2. The 360-degree sliding structure for monitoring video as described in claim 1, characterized in that: The inner rings of the two first bearings (301) are fixedly connected to the threaded rod (302), the surface of the threaded rod (302) is connected to the internal thread of the threaded block (303), the inner ring of the right first bearing (301) is fixedly connected to the transmission rod (304), the other end of the transmission rod (304) is fixedly connected to the first driven gear (305), and the output shaft of the sliding motor (306) is fixedly connected to the first driving gear (307).
3. The 360-degree sliding structure for monitoring video as described in claim 1, characterized in that: The outer rings of the two first bearings (301) are fixedly connected to the interior of the first device housing (1), the surface of the threaded block (303) is slidably connected to the interior of the threaded groove (2), the surface of the sliding motor (306) is installed and connected to the interior of the right side of the first device housing (1), and the surface of the first driving gear (307) is meshed with the first driven gear (305).
4. The 360-degree sliding structure for monitoring video as described in claim 1, characterized in that: The surface of the second driving gear (15) is threadedly connected to the second driven gear (13).
5. The 360-degree sliding structure for monitoring video as described in claim 1, characterized in that: The second bearing (6) is equipped with an L-shaped frame (16) on both sides. The two sides of the L-shaped frame (16) are rotatably connected to a second rotating rod (17). The other ends of the two second rotating rods (17) are fixedly connected to a square frame (18). The two sides of the square frame (18) are rotatably connected to a third rotating rod (19). The other ends of the two third rotating rods (19) are fixedly connected to the mounting housing (9).