Stable adjustment camera

By using semi-automatic and fully automatic adjustment structures, combined with multiple cameras and adjustment motors, flexible angle adjustment of the cameras is achieved, solving the problem of inconvenient adjustment of existing cameras, reducing costs and improving stability and flexibility.

CN224319439UActive Publication Date: 2026-06-02SHENZHEN HUACHUANG AGES TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HUACHUANG AGES TECH
Filing Date
2025-07-30
Publication Date
2026-06-02

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  • Figure CN224319439U_ABST
    Figure CN224319439U_ABST
Patent Text Reader

Abstract

This utility model discloses a stabilized and adjustable camera. A first fixing part and a second fixing part are installed on both sides of the camera main unit. A left movable camera is semi-automatically connected to the bottom of the first fixing part, a right movable camera is semi-automatically connected to the bottom of the second fixing part, and a lower movable camera is automatically connected to the bottom of the camera main unit. The left and right movable cameras are symmetrically arranged on both sides of the camera main unit, and a fixed camera is installed in front of the camera main unit. The left, right, lower, and fixed cameras are all electrically connected to the camera main unit. This utility model significantly improves the adjustment flexibility of the camera and has a large adjustable shooting range. The stabilized and adjustable camera of this utility model has a low overall cost and is very convenient to adjust, exhibiting a high level of intelligent control.
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Description

Technical Field

[0001] This utility model relates to the field of camera technology, specifically to a camera with stable adjustment. Background Technology

[0002] With the continuous development of technology, cameras are increasingly widely used in various fields, such as security monitoring, traffic monitoring, and smart homes. In practical use, to meet different shooting needs, it is often necessary to adjust the camera's angle and position. Existing cameras either rely entirely on motor-driven automatic adjustment, which is costly, or they use fixed rotating connections for manual adjustment, which is inconvenient. To solve these problems, this invention provides a camera with stable adjustment, aiming to improve the camera's adjustment efficiency and stability, and meet the shooting needs of different scenarios. Utility Model Content

[0003] The purpose of this utility model is to provide a solution to the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a stable adjustable camera, comprising a camera host, a first fixing part and a second fixing part installed on both sides of the camera host, a left movable camera semi-automatically connected to the bottom of the first fixing part, a right movable camera semi-automatically connected to the bottom of the second fixing part, and a lower movable camera fully automatically connected to the bottom of the camera host, the left and right movable cameras being symmetrically arranged on both sides of the camera host, and a fixed camera installed in front of the camera host, the left movable camera, the right movable camera, the lower movable camera and the fixed camera being electrically connected to the camera host.

[0005] Preferably, the back of the camera host is detachably provided with a mounting plate, the mounting plate is provided with a limiting slot, the back of the camera host is snapped into the limiting slot, and the mounting plate is provided with bolt fixing holes for mounting to a fixed surface.

[0006] Preferably, the left movable camera includes a first camera body, a first U-shaped bracket, and a first adjusting motor. The first adjusting motor is fixedly installed in a first fixed part. The output end of the first adjusting motor is connected to a first drive gear. The two sides of the first camera body are rotatably connected to the first U-shaped bracket through rotating shafts. The top of the first U-shaped bracket is connected to a first transmission gear through a rotating shaft. The first transmission gear meshes with the first drive gear.

[0007] Preferably, the right movable camera includes a second camera body, a second U-shaped bracket, and a second adjusting motor. The second adjusting motor is fixedly installed in the second fixed part. The output end of the second adjusting motor is connected to a second drive gear. The two sides of the second camera body are rotatably connected to the second U-shaped bracket through rotating shafts. The top of the second U-shaped bracket is connected to a second transmission gear through a rotating shaft. The second transmission gear meshes with the second drive gear.

[0008] Preferably, the inner sides of both the first U-shaped bracket and the second U-shaped bracket are provided with a limiting tooth ring around the rotation axis. The teeth of the limiting tooth ring are provided to protrude along the axial direction of the rotation axis, and the outer circumference of the rotation axis is provided with a mating tooth ring that cooperates with the limiting tooth ring.

[0009] Preferably, the lower movable camera includes a third camera body, a third U-shaped bracket, and a third adjustment motor. The third adjustment motor is fixedly installed inside the camera host. The output end of the third adjustment motor is connected to a third drive gear. The third camera body is installed inside the third U-shaped bracket, and the third camera body and the third U-shaped bracket are connected by a vertical angle adjustment mechanism. The top of the third U-shaped bracket is connected to a third transmission gear through a rotating shaft. The third transmission gear meshes with the third drive gear.

[0010] Preferably, the vertical angle adjustment mechanism includes a fourth adjustment motor, which is fixedly installed inside the third camera body, and the output end of the fourth adjustment motor is fixedly connected to the third U-shaped bracket.

[0011] Preferably, a solar energy system is installed above the camera host, and the solar energy system is electrically connected to the camera host. The solar energy system includes a photovoltaic panel and a mounting bracket, and the photovoltaic panel is detachably installed on the camera host via the mounting bracket.

[0012] Preferably, an adjustment seat is fixedly installed on the back of the photovoltaic panel, and the adjustment seat is movably hinged to the mounting bracket.

[0013] Preferably, the mounting bracket includes a U-shaped connecting part at the bottom, with rotating nuts extending through both sides of the U-shaped connecting part, and one end of the rotating nuts connected to the outer wall of the camera host.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] This invention significantly improves the flexibility and shooting range of the camera. The left and right movable cameras are symmetrically arranged on both sides of the camera main unit. The left movable camera is semi-automatically connected to the bottom of the first fixed part, and the right movable camera is semi-automatically connected to the bottom of the second fixed part. Users can manually adjust the angles of the left and right movable cameras, or adjust them via corresponding adjustment motors, to adapt to different shooting needs. The lower movable camera is an automatic camera, capable of automatically adjusting its shooting angle via a third adjustment motor. This invention's stable adjustable camera has a low overall cost and is very convenient to adjust, exhibiting a high level of intelligent adjustment and control. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the front structure of this utility model;

[0017] Figure 2 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 3 This is a partial structural diagram of the back of the present invention;

[0019] Figure 4 This is a partial structural diagram of the front of this utility model.

[0020] In the diagram: 1. Camera main unit; 2. First fixing part; 3. Second fixing part; 4. Left movable camera; 5. Right movable camera; 6. Lower movable camera; 7. Fixed camera; 8. Mounting plate; 9. Limiting slot; 10. First camera body; 11. First U-shaped bracket; 12. First adjusting motor; 13. First drive gear; 14. First transmission gear; 15. Second camera body; 16. Second U-shaped bracket; 17. Second adjusting motor; 18. Second drive gear; 19. Second transmission gear; 20. Limiting gear ring; 21. Third camera body; 22. Third U-shaped bracket; 23. Third adjusting motor; 24. Third drive gear; 25. Third transmission gear; 26. Fourth adjusting motor; 27. Photovoltaic power generation panel; 28. Mounting bracket; 29. ​​Adjusting seat; 30. Rotating nut. Detailed Implementation

[0021] 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.

[0022] Please see Figure 1-4 This utility model provides a stable adjustment camera technical solution: it includes a camera host 1, a first fixing part 2 and a second fixing part 3 installed on both sides of the camera host 1, a left movable camera 4 semi-automatically connected to the bottom of the first fixing part 2, a right movable camera 5 semi-automatically connected to the bottom of the second fixing part 3, and a lower movable camera 6 fully automatically connected to the bottom of the camera host 1. The left movable camera 4 and the right movable camera 5 are symmetrically arranged on both sides of the camera host 1, and a fixed camera 7 is installed in front of the camera host 1. The left movable camera 4, the right movable camera 5, the lower movable camera 6 and the fixed camera 7 are all electrically connected to the camera host 1.

[0023] Combination Figure 2 As shown, a mounting plate 8 is detachably mounted on the back of the camera host 1. The mounting plate 8 has a limiting slot 9, and the back of the camera host 1 is snapped into the limiting slot 9. The mounting plate 8 has bolt fixing holes for mounting to a fixed surface. The mounting plate 8 allows the camera host 1 to be easily installed and removed. The setting of the limiting slot 9 ensures the stability of the camera host 1 on the mounting plate 8 and avoids displacement caused by accidental collisions or vibrations.

[0024] Combination Figure 3 As shown, the left movable camera 4 includes a first camera body 10, a first U-shaped bracket 11, and a first adjustment motor 12. The first adjustment motor 12 is fixedly installed in the first fixed part 2. The output end of the first adjustment motor 12 is connected to a first drive gear 13. The two sides of the first camera body 10 are rotatably connected to the first U-shaped bracket 11 through rotating shafts. The top of the first U-shaped bracket 11 is connected to a first transmission gear 14 through a rotating shaft. The first transmission gear 14 meshes with the first drive gear 13. The first adjustment motor 12 drives the first drive gear 13 to rotate, which in turn drives the meshing first transmission gear 14 to rotate. Since the first transmission gear 14 is connected to the first U-shaped bracket 11 through a rotating shaft, the rotation of the first transmission gear 14 will drive the first U-shaped bracket 11 and the first camera body 10 installed therein to adjust their angles, thereby realizing the adjustment of the shooting angle of the left movable camera 4.

[0025] Combination Figure 3As shown, the right movable camera 5 includes a second camera body 15, a second U-shaped bracket 16, and a second adjustment motor 17. The second adjustment motor 17 is fixedly installed inside the second fixed part 3. The output end of the second adjustment motor 17 is connected to a second drive gear 18. The two sides of the second camera body 15 are rotatably connected to the second U-shaped bracket 16 via rotating shafts. The top of the second U-shaped bracket 16 is connected to a second transmission gear 19 via a rotating shaft. The second transmission gear 19 meshes with the second drive gear 18. The second adjustment motor 17 drives the second drive gear 18 to rotate, which in turn drives the meshing second transmission gear 19 to rotate. Since the second transmission gear 19 is connected to the second U-shaped bracket 16 via a rotating shaft, the rotation of the second transmission gear 19 will drive the second U-shaped bracket 16 and the second camera body 15 installed therein to adjust their angles, thereby realizing the adjustment of the shooting angle of the right movable camera 5. This design allows the right movable camera 5 to flexibly adjust its shooting angle to meet the monitoring needs of different scenarios.

[0026] Combination Figure 4 As shown, a limiting toothed ring 20 is provided on the inner side of the first U-shaped bracket 11 and the second U-shaped bracket 16 around the rotation axis. The teeth of the limiting toothed ring 20 are raised along the axial direction of the rotation axis, and a mating toothed ring that cooperates with the limiting toothed ring 20 is provided on the outer circumference of the rotation axis.

[0027] The mating gear ring can be engaged with the limiting gear ring 20. Both the limiting gear ring 20 and the mating gear ring have teeth that protrude axially along the rotation axis. When a certain external force is applied to the left movable camera 4 and the right movable camera 5, the first U-shaped bracket 11 and the second U-shaped bracket 16 have an outward expansion capability, allowing the limiting gear ring 20 and the mating gear ring to press against each other and gradually switch to different tooth positions, thereby adjusting the shooting angles of the left movable camera 4 and the right movable camera 5. When the external force on the left movable camera 4 and the right movable camera 5 is removed, the first U-shaped bracket 11 and the second U-shaped bracket 16 retract, and the teeth of the limiting gear ring 20 and the mating gear ring form a stable engagement, creating significant resistance to the rotation of the left movable camera 4 and the right movable camera 5, preventing the first camera body 10 and the second camera body 15 from rotating arbitrarily. This not only greatly facilitates the angle adjustment of the left movable camera 4 and the right movable camera 5, but also ensures high stability during use.

[0028] The left movable camera 4 and the right movable camera 5 are supported by the first U-shaped bracket 11 and the second U-shaped bracket 16, and the limiting tooth ring 20 set on the inner side cooperates with the matching tooth ring on the camera body, which effectively prevents the camera from loosening or shifting during the adjustment process. The overall adjustment is convenient and highly stable.

[0029] Combination Figure 3As shown, the lower movable camera 6 includes a third camera body 21, a third U-shaped bracket 22, and a third adjustment motor 23. The third adjustment motor 23 is fixedly installed inside the camera host 1. The output end of the third adjustment motor 23 is connected to a third drive gear 24. The third camera body 21 is installed inside the third U-shaped bracket 22, and the third camera body 21 and the third U-shaped bracket 22 are connected by a vertical angle adjustment mechanism. The top of the third U-shaped bracket 22 is connected to a third transmission gear 25 through a rotating shaft. The third transmission gear 25 meshes with the third drive gear 24. The third adjustment motor 23 drives the third drive gear 24 to rotate, which in turn drives the third transmission gear 25 to rotate on the rotating shaft. Since the third transmission gear 25 is connected to the top of the third U-shaped bracket 22, the third U-shaped bracket 22 will rotate with the rotation of the third transmission gear 25, thereby driving the third camera body 21 and the lower movable camera 6 to adjust their horizontal angles. The adjustment is very convenient.

[0030] Combination Figure 4 As shown, the vertical angle adjustment mechanism includes a fourth adjustment motor 26, which is fixedly installed inside the third camera body 21. The output end of the fourth adjustment motor 26 is engaged with the third U-shaped bracket 22. The rotation of the fourth adjustment motor 26 drives the third camera body 21 to adjust its angle relative to the third U-shaped bracket 22, allowing the lower movable camera 6 to rotate flexibly not only horizontally but also to achieve precise angle adjustment in the vertical direction, thus greatly enhancing the camera's shooting flexibility and applicability. By combining horizontal and vertical angle adjustments, users can easily adjust the camera to any desired shooting angle, ensuring the clarity and accuracy of the captured image.

[0031] Combination Figure 2 As shown, a solar energy system is installed on top of the camera host 1. The solar energy system is electrically connected to the camera host 1. The solar energy system includes a photovoltaic panel 27 and a mounting bracket 28. The photovoltaic panel 27 is detachably mounted on the camera host 1 via the mounting bracket 28. An adjustment seat 29 is fixedly installed on the back of the photovoltaic panel 27, and the adjustment seat 29 is movably hinged to the mounting bracket 28. A battery is installed inside the camera host 1, and the photovoltaic panel 27 is electrically connected to the battery. The battery can power the various cameras and motors to support their operation.

[0032] The mounting bracket 28 includes a U-shaped connecting part at the bottom, with rotating nuts 30 threaded through both sides of the U-shaped connecting part. One end of the rotating nuts 30 is connected to the outer wall of the camera host 1. The mounting bracket 28 allows adjustment of the tilt angle of the photovoltaic panel 27 relative to the camera host 1, thereby optimizing the angle at which the photovoltaic panel 27 receives sunlight and improving the solar energy conversion efficiency. Furthermore, the U-shaped structure of the mounting bracket 28 not only provides stable support but also facilitates installation and disassembly, making it convenient for users to maintain and replace components.

[0033] Working Principle: During use, users can adjust the vertical shooting angles of the left and right movable cameras 4 and 5 by applying external force according to actual needs. During operation, the first and second adjustment motors 12 and 17 can be controlled to drive the left and right movable cameras 4 and 5 respectively, thereby adjusting their horizontal shooting angles and achieving flexible adjustment of the shooting range at a low overall cost. Simultaneously, the lower movable camera 6, driven by the third and fourth adjustment motors 23 and 26, can perform precise angle adjustments in both the horizontal and vertical directions, further improving the overall adjustable shooting range of the camera system. Furthermore, the fixed camera 7, as an auxiliary camera, provides stable monitoring images, ensuring no blind spots. The solar energy system provides a green and sustainable energy supply for the entire camera system, reducing operating costs while improving system stability and reliability.

[0034] The stable adjustment camera in this embodiment uses multiple cameras with differentiated adjustment structures, resulting in lower overall cost, higher adjustment convenience, a larger adjustable shooting range, and a higher level of intelligent control.

[0035] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0036] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A stabilized camera, comprising a camera host (1), characterized in that: The camera host (1) is equipped with a first fixing part (2) and a second fixing part (3) on both sides. The bottom of the first fixing part (2) is semi-automatically connected to a left movable camera (4). The bottom of the second fixing part (3) is semi-automatically connected to a right movable camera (5). The bottom of the camera host (1) is fully automatically connected to a lower movable camera (6). The left movable camera (4) and the right movable camera (5) are symmetrically arranged on both sides of the camera host (1). A fixed camera (7) is installed in front of the camera host (1). The left movable camera (4), the right movable camera (5), the lower movable camera (6), and the fixed camera (7) are all electrically connected to the camera host (1).

2. The camera with stable adjustment according to claim 1, characterized in that, The back of the camera host (1) is detachably provided with a mounting plate (8). The mounting plate (8) is provided with a limiting slot (9). The back of the camera host (1) is snapped into the limiting slot (9). The mounting plate (8) is provided with bolt fixing holes for mounting to a fixed surface.

3. The camera with stable adjustment according to claim 1, characterized in that, The left movable camera (4) includes a first camera body (10), a first U-shaped bracket (11) and a first adjusting motor (12). The first adjusting motor (12) is fixedly installed in the first fixing part (2). The output end of the first adjusting motor (12) is connected to a first driving gear (13). The two sides of the first camera body (10) are rotatably connected to the first U-shaped bracket (11) through a rotating shaft. The top of the first U-shaped bracket (11) is connected to a first transmission gear (14) through a rotating shaft. The first transmission gear (14) meshes with the first driving gear (13).

4. The camera with stable adjustment according to claim 3, characterized in that, The right movable camera (5) includes a second camera body (15), a second U-shaped bracket (16), and a second adjustment motor (17). The second adjustment motor (17) is fixedly installed in the second fixed part (3). The output end of the second adjustment motor (17) is connected to a second drive gear (18). The two sides of the second camera body (15) are rotatably connected to the second U-shaped bracket (16) through a rotating shaft. The top of the second U-shaped bracket (16) is connected to a second transmission gear (19) through a rotating shaft. The second transmission gear (19) meshes with the second drive gear (18).

5. The camera with stable adjustment according to claim 4, characterized in that, The inner sides of the first U-shaped bracket (11) and the second U-shaped bracket (16) are provided with a limiting tooth ring (20) around the rotating shaft. The teeth of the limiting tooth ring (20) are convex along the axial direction of the rotating shaft. The outer circumference of the rotating shaft is provided with a mating tooth ring that cooperates with the limiting tooth ring (20).

6. The camera with stable adjustment according to claim 1, characterized in that, The lower movable camera (6) includes a third camera body (21), a third U-shaped bracket (22), and a third adjustment motor (23). The third adjustment motor (23) is fixedly installed inside the camera host (1). The output end of the third adjustment motor (23) is connected to a third drive gear (24). The third camera body (21) is installed inside the third U-shaped bracket (22), and the third camera body (21) and the third U-shaped bracket (22) are connected by a vertical angle adjustment mechanism. The top of the third U-shaped bracket (22) is connected to a third transmission gear (25) through a rotating shaft. The third transmission gear (25) meshes with the third drive gear (24).

7. The camera with stable adjustment according to claim 6, characterized in that, The vertical angle adjustment mechanism includes a fourth adjustment motor (26), which is fixedly installed inside the third camera body (21), and the output end of the fourth adjustment motor (26) is fixedly connected to the third U-shaped bracket (22).

8. The camera with stable adjustment according to claim 1, characterized in that, A solar energy system is installed above the camera host (1). The solar energy system is electrically connected to the camera host (1). The solar energy system includes a photovoltaic power generation panel (27) and a mounting bracket (28). The photovoltaic power generation panel (27) is detachably installed on the camera host (1) via the mounting bracket (28).

9. The camera with stable adjustment according to claim 8, characterized in that, An adjustment seat (29) is fixedly installed on the back of the photovoltaic panel (27), and the adjustment seat (29) is movably hinged to the mounting bracket (28).

10. The camera with stable adjustment according to claim 9, characterized in that, The mounting bracket (28) includes a U-shaped connecting part at the bottom, and rotating nuts (30) are connected through both sides of the U-shaped connecting part. One end of the rotating nuts (30) is connected to the outer wall of the camera host (1).