Multi-function camera module assembly structure
The multi-function camera module assembly with a foldable and rotating design addresses the issue of blind spots in traditional surveillance systems by allowing for adjustable camera positioning, achieving comprehensive omnidirectional surveillance.
Patent Information
- Application Number
- JP2025003356U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-02-16
- Estimated Expiration
- 2035-09-29
AI Technical Summary
Traditional fixed camera modules in surveillance systems often have blind spots and cannot provide comprehensive omnidirectional coverage, especially in complex environments, limiting their surveillance range and real-time feedback capabilities.
A multi-function camera module assembly structure with a foldable and rotating design, incorporating an electric actuator, sliding blocks, and rotating mechanisms, allowing for adjustable camera positioning and omnidirectional surveillance.
The structure effectively eliminates blind spots by enabling the camera to detect multiple directions, providing comprehensive and real-time omnidirectional surveillance coverage.
Smart Images

Figure 0003254731000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to the field of camera module technology, and more particularly to a multi-function camera module assembly structure. [Background technology]
[0002] In modern surveillance systems, camera modules are core devices widely used in various security facilities, including public spaces, commercial buildings, and residential areas. To ensure omnidirectional coverage of the surveillance area, the placement and angle adjustment of camera modules are crucial. However, traditional fixed camera modules can sometimes have "blind spots" and cannot cover certain directions or areas. This creates gaps in surveillance, compromising the system's surveillance effectiveness and safety. Particularly in complex or large-scale environments, fixed camera modules cannot effectively respond to diverse and changing surveillance needs, limiting their surveillance range and real-time feedback capabilities for sensory interaction. Therefore, it is necessary to design a multifunctional camera module assembly structure that can detect the environment comprehensively. Summary of the Invention [Problem to be solved by the invention]
[0003] The present invention aims to provide a multi-function camera module assembly structure that solves the above-mentioned technical problems. [Means for solving the problem]
[0004] The present invention is configured as follows: a multi-function camera module assembly structure includes a lower support plate, a foldable upper support plate attached to the front end of the lower support plate, a flipping mechanism disposed between the lower support plate and the upper support plate for driving the folding movement of the upper support plate, and a rotating camera body mounted on the upper support plate. The flipping mechanism includes an electric actuator mounted on the lower support plate, a first sliding block disposed at the end of the electric actuator, and a first sliding rail disposed on the lower support plate for accommodating the first sliding block, the first sliding block and the first sliding rail forming a first sliding assembly structure. A lower rod is disposed on the side of the first sliding block, a fixed block is disposed on the back of the lower support plate, an upper rod is disposed on the side of the fixed block, and a support connecting plate is disposed between the lower rod and the upper rod, with both ends of the support connecting plate rotatably connected to the corresponding lower rod and upper rod, respectively.
[0005] Furthermore, support pillars are provided at both the front left and right ends of the lower support plate, and cylindrical bearings are provided at the ends of the support pillars, and rotation guide bushings are provided on the upper support plate that are fitted into the cylindrical bearings.
[0006] Furthermore, a front fixed plate and a rear fixed plate are further provided on the lower support plate, the first slide block is positioned between the front fixed plate and the rear fixed plate, and the output end of the electric actuator passes through the front fixed plate and is connected to the first slide block.
[0007] Furthermore, a plurality of guide rods that pass through the first slide block are connected between the front fixed plate and the rear fixed plate.
[0008] Furthermore, a recessed tank portion is provided on the upper surface of the lower support plate, and the reversing mechanism is disposed within the tank portion.
[0009] Furthermore, the rotating camera body comprises a base main body that is assembled to the upper support plate, and a camera that is exteriorly mounted on the base main body, and a rotating mechanism that rotates and drives the camera is provided inside the base main body.
[0010] Furthermore, a vertical mounting piece that can be attached to a wall surface is provided on the side of the lower support plate, and a plurality of mounting holes are provided on the upper surface of the mounting piece.
[0011] Furthermore, a wireless Bluetooth module for communication is also installed inside the main body of the machine. [Effects of the Invention]
[0012] This multi-function camera module assembly structure utilizes two methods: a foldable rotating camera body and a rotating camera itself, which allows the camera's detection direction to be expanded in multiple directions, effectively eliminating the blind spots of traditional surveillance camera designs and achieving omnidirectional surveillance coverage. [Brief explanation of the drawings]
[0013] [Figure 1] This is the structural design of the present invention. [Figure 2] FIG. 2 is an illustration of the front end structure based on FIG. [Figure 3] FIG. 3 is an illustration of a local structure based on FIG. [Figure 4] FIG. 4 shows the assembly of the support link plate. [Figure 5] FIG. 5 shows the structure of the rotating camera body. DETAILED DESCRIPTION OF THE INVENTION
[0014] In the present invention, unless otherwise clearly defined or limited, the terms "attached," "connected," "fixed," etc. should be interpreted broadly. For example, they may be fixedly connected, detachably connected, or integrally formed. They may be mechanically connected or electrically connected. They may be directly connected or indirectly connected via an intermediate medium. They may refer to communication between two elements or an interactive relationship between two elements. Those skilled in the art will be able to understand the specific meanings of the above terms in the present invention according to specific circumstances.
[0015] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one skilled in the art to which the invention pertains. Terms used herein are for the purpose of describing specific embodiments and are not intended to limit the invention. As used herein, the term "and / or" includes any and all combinations of any one or more of the associated listed items.
[0016] As shown in Figures 1 to 5 for reference, the following will further explain in combination with the drawings and specific embodiments: The multi-function camera 42 assembly has a lower support plate 1, a foldable upper support plate 2 is provided at the front end of the lower support plate 1, an inversion mechanism 3 for driving the folding operation of the upper support plate 2 is provided between the lower support plate 1 and the upper support plate 2, and a rotating camera body 4 is provided on the upper support plate 2. The inversion mechanism 3 includes an electric actuator 301 assembled on the lower support plate 1, a first slide block 302 provided at the end of the electric actuator 301, and a first slide rail 303 provided on the lower support plate 1 and accommodating the first slide block 302, and the first slide block 302 and the first slide rail 303 form a first slide assembly structure. A lower shaft 304 is provided on the side of the first slide block 302, a fixed block 305 is provided on the back of the lower support plate 1, an upper shaft 306 is provided on the side of the fixed block 305, and a support connecting plate 307 is provided between the lower shaft 304 and the upper shaft 306, and both ends of the support connecting plate 307 are rotatably connected to the corresponding lower shaft 304 and upper shaft 306, respectively.
[0017] The design of this technical solution is primarily aimed at achieving wide-area detection by remote control through the connection of the lower support plate 1 and the upper support plate 2 and the rotation function of the reversing mechanism 3 and the camera 42. Specifically, the lower support plate 1 and the upper support plate 2 are assembled by providing support columns 11 at the front left and right ends of the lower support plate 1, with cylindrical bearings 12 installed on the support columns 11. Meanwhile, rotation guide bushings 21 fitted into the cylindrical bearings 12 are provided on the left and right sides of the front end of the upper support plate 2, thereby forming a rotatable connection at the front ends of the upper support plate 2 and the lower support plate 1. Support on both the left and right sides ensures stable rotation of the upper support plate 2 relative to the lower support plate 1. The rotation of the upper support plate 2 is achieved by the reversing mechanism 3. Specifically, the reversing mechanism 3 includes an electric actuator 301 mounted on the lower support plate 1, a first slide block 302 provided at an end of the electric actuator 301, and a first slide rail 303 provided on the lower support plate 1 to accommodate the first slide block 302. The first slide block 302 and the first slide rail 303 constitute a first slide assembly structure. A lower rod 304 is provided on the side of the first slide block 302, a fixed block 305 is provided on the back surface of the lower support plate 1, and an upper rod 306 is provided on the side of the fixed block 305. A support connecting plate 307 is provided between the lower rod 304 and the upper rod 306, and both ends of the support connecting plate 307 are rotatably connected to the corresponding lower rod 304 and upper rod 306, respectively. The main purpose of this operating principle is to form a triangular support state on a plane by assembling the inversion mechanism 3, lower support plate 1, and upper support plate 2, thereby maintaining the assembly stability of the three. The inversion mechanism 3 makes it possible to invert and rotate the upper support plate 2 relative to the lower support plate 1. As a specific driving method, first, the electric actuator 301 is fixed laterally to the upper end of the lower support plate 1, and the output end of the electric actuator 301 is connected to the first slide block 302 at the right end. At the same time, the first slide block 302 is placed within a first slide rail 303 provided on the lower support plate 1. By operating the electric actuator 301, the first slide block 302 is moved linearly.In addition to this basic structure, lower rods 304 are provided on the left and right sides of the first sliding block 302, a fixed block 305 is provided on the rear surface of the lower support plate 1, and upper rods 306 are provided on the left and right sides of the fixed block 305. A support connecting plate 307 is installed between the lower rod 304 and the upper rod 306, and both ends of the support connecting plate 307 are rotatably connected to the corresponding lower rod 304 and upper rod 306, respectively.
[0018] The principle is that the first sliding block 302 on the upper support plate 2 side is connected to the fixed block 305 on the back of the lower support plate 1 by the support connecting plates 307 on the left and right sides. The upper shaft 306 on the side of the fixed block 305 and the lower shaft 304 on the side of the first sliding block 302 are connected to both connecting ends of the support connecting plate 307 using bearings, so that the two connecting ends can rotate relative to each other. Therefore, the above technical principle can be summarized as follows: when the electric actuator is operated, as the first sliding block 302 moves linearly, the support connecting plate 307 causes the upper support plate 2 to rotate in a reverse direction around its front end, thereby causing the upper support plate 2 to perform a reverse movement and uniformly change the angle of the rotating camera body 4 mounted on the upper support plate 2.
[0019] Furthermore, a concave groove 13 is formed in the lower support plate 1, and the reversing mechanism 3 is disposed in this groove 13. The main purpose of this design is to shield the reversing mechanism 3. Specifically, by storing the electric actuator 301 and the first slide block 302 in the groove 13, the overall structure is simplified. At the same time, a front fixed plate 308 and a rear fixed plate 309 are further provided on the lower support plate 1, and the first slide block 302 is positioned between the front fixed plate 308 and the rear fixed plate 309. The output end of the electric actuator 301 passes through the front fixed plate 308 and is connected to the first slide block 302, and a plurality of guide rods 310 that pass through the first slide block 302 are connected between the front fixed plate 308 and the rear fixed plate 309. The front fixed plate 308 and the rear fixed plate 309 are primarily responsible for restricting the forward and backward movement limits of the first slide block 302, and the multiple guide rods 310 are intended to ensure stable sliding movement of the first slide block 302.
[0020] Furthermore, the installation of the rotating camera main body 4 includes a machine base main body 41 attached to the upper support plate 2 and a camera 42 mounted on the machine base main body 41. A rotating mechanism that rotates and drives the camera 42 is provided inside the machine base main body 41, and a wireless Bluetooth module for communication is also mounted inside the machine base main body 41. This allows the monitoring control system to monitor and change the monitoring range of the camera 42 in real time.
[0021] In addition, a vertical mounting piece 14 that can be attached to a wall surface is provided on the side of the lower support plate 1, and a plurality of mounting holes 15 are provided on the upper surface of the mounting piece 14. This makes it easy to assemble the component of this design.
[0022] The above is merely a preferred embodiment of the present invention and does not limit the present invention. Those skilled in the art may make various changes and modifications to the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall all be included in the protection scope of the present invention. [Explanation of symbols]
[0023] The reference numbers in the figures are as follows: JPEG0003254731000002.jpg2982
Claims
1. The multi-function camera module assembly structure comprises a lower support plate (1), a foldable upper support plate (2) provided at the front end of the lower support plate (1), a reversing mechanism (3) provided between the lower support plate (1) and the upper support plate (2) for driving the folding operation of the upper support plate (2), and a rotating camera body (4) installed on the upper support plate (2), characterized by: The inversion mechanism (3) comprises an electric actuator (301) assembled on the lower support plate (1), a first slide block (302) provided at an end of the electric actuator (301), and a first slide rail (303) provided on the lower support plate (1) and accommodating the first slide block (302), the first slide block (302) and the first slide rail (303) constituting a first slide assembly structure; A lower rod (304) is provided on the side of the first slide block (302), a fixed block (305) is provided on the back of the lower support plate (1), an upper rod (306) is provided on the side of the fixed block (305), and a support connecting plate (307) is provided between the lower rod (304) and the upper rod (306), and both ends of the support connecting plate (307) are rotatably connected to the corresponding lower rod (304) and upper rod (306), respectively.
2. 2. The multi-function camera module assembly structure according to claim 1, characterized in that support columns (11) are provided at both the front left and right ends of the lower support plate (1), cylindrical bearings (12) are provided at the ends of the support columns (11), and the upper support plate (2) is provided with a rotation guide bushing (21) that is inserted into the cylindrical bearing (12).
3. 2. The multi-function camera module assembly structure according to claim 1, wherein a front fixed plate (308) and a rear fixed plate (309) are further provided on the lower support plate (1), the first slide block (302) is located between the front fixed plate (308) and the rear fixed plate (309), and the output end of the electric actuator (301) passes through the front fixed plate (308) and is connected to the first slide block (302).
4. 2. The multi-function camera module assembly structure according to claim 1, characterized in that a plurality of guide rods (310) penetrating the first slide block (302) are connected between the front fixed plate (308) and the rear fixed plate (309).
5. 2. The multi-function camera module assembly structure according to claim 1, wherein a concave tank portion (13) is provided on the upper surface of the lower support plate (1), and the reversing mechanism (3) is arranged within the tank portion (13).
6. In the multi-function camera module assembly structure described in claim 1, the rotating camera body (4) comprises a base main body (41) assembled to the upper support plate (2) and a camera (42) exteriorly mounted on the base main body (41), and a rotating mechanism (43) for rotating and driving the camera (42) is provided inside the base main body (41), characterized in that
7. 2. The multi-function camera module assembly structure according to claim 1, characterized in that a vertically shaped mounting piece (14) capable of being attached to a wall surface is provided on the side of the lower support plate (1), and a plurality of mounting holes (15) are provided on the upper surface of the mounting piece (14).
8. 2. The multi-function camera module assembly structure according to claim 1, wherein the main body (41) further includes a wireless Bluetooth module for communication.