Solar lighting camera device
The combined design of the L-shaped main solar panel and its auxiliary solar panel solves the problem of insufficient energy from the corner solar panels, achieves more efficient energy acquisition and simplified installation, and ensures the normal operation of lighting and camera functions.
Patent Information
- Application Number
- CN202211436960.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-16
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2042-11-16
AI Technical Summary
When existing solar lighting is installed at the corner of a building, the energy obtained by the solar panels in one direction is insufficient, resulting in the inability to simultaneously meet the lighting and camera functions, increasing the cost of equipment installation and debugging.
The combination design of an L-shaped main solar panel and its four auxiliary solar panels increases the installation area and angle arrangement of the solar panels, utilizes space combination lighting, and provides lighting and camera functions in two directions through a battery module, simplifying installation and debugging.
It achieves more energy under the same plane projection area, reduces installation costs, improves the stability and wind resistance of the equipment, and ensures the normal operation of lighting and camera functions in two directions.
Smart Images

Figure CN115681861B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an illumination and imaging device, in particular to a solar-powered illumination and imaging device. Background Art
[0002] Current solar-powered lights often utilize a solar panel mounted above the lamp body to receive sunlight. However, the size of this panel is limited, and it cannot be made too small. This is because the panel only receives sunlight in one direction, resulting in a shorter exposure time and a smaller amount of solar energy, which translates to insufficient electrical energy. To ensure adequate lighting in both directions at building corners, multiple single-directional solar-powered lights are often installed on each wall. This increases installation and commissioning costs. Furthermore, installation at corners can lead to insufficient solar energy conversion from one side of the corner if sunlight is less frequent, resulting in malfunction. This is especially true for solar-powered lights with security cameras, which require even greater energy and therefore require a higher amount of solar energy. Existing solar-powered lighting and video systems cannot meet the needs of both sides of the corner.
[0003] Therefore, there is still room for improvement in the existing technology. Summary of the Invention
[0004] The purpose of the present invention is to provide a solar lighting and imaging device which is suitable for use at building corners and has a smaller plane projection area so that more solar panels can be installed to obtain more energy.
[0005] To achieve the above-mentioned objectives, the technical solution of the present invention is as follows: a solar lighting and camera device comprises an L-shaped main solar panel, wherein a first side sub-solar panel 1 and a first side sub-solar panel 2 are provided on the inner side of the main solar panel, and a second side sub-solar panel 1 and a second side sub-solar panel 2 are provided on the outer side of the main solar panel; an angle between the first side sub-solar panel 1 and the second side sub-solar panel 1 and the main solar panel is equal to or greater than 90 degrees; an angle between the first side sub-solar panel 2 and the second side sub-solar panel 2 and the main solar panel is equal to or greater than 90 degrees; a first lighting lamp, a second lighting lamp and a battery assembly are provided on the back side of the main solar panel; a camera 1 is provided on the first lighting lamp, and a camera 2 is provided on the second lighting lamp; the battery assembly is connected to the first lighting lamp, the second lighting lamp, the camera 1, the camera 2, the main solar panel, the first side sub-solar panel 1, the first side sub-solar panel 2, the second side sub-solar panel 1 and the second side sub-solar panel 2 through a wire group.
[0006] The solar-powered lighting camera device, wherein the battery assembly includes a battery and a charge and discharge control board.
[0007] The solar-powered lighting and imaging device, wherein the main solar panel is a whole piece.
[0008] The solar-powered lighting and video device has a wall-attached mounting bracket located beneath the L-shaped main solar panel. The L-shaped mounting bracket is secured to the main solar panel on one side and to the building wall on the other. The mounting bracket allows the lighting and video device to be quickly and securely fixed to a building corner.
[0009] The solar-powered lighting camera device, wherein the angle between the first side auxiliary solar panel 1, the second side auxiliary solar panel 1 and the main solar panel is 120 degrees.
[0010] The solar-powered lighting camera device, wherein the angle between the first side auxiliary solar panel 2, the second side auxiliary solar panel 2 and the main solar panel is 120 degrees.
[0011] In the solar-powered lighting and imaging device, the longitudinally arranged main solar panel is longer than the transversely arranged main solar panel. This allows the longer side of the main solar panel to be installed on the side with the longest sunlight hours, depending on the building's corner orientation. This allows for more energy to be generated overall.
[0012] Beneficial effects:
[0013] 1. The solar lighting and camera device of the present invention comprises an L-shaped main solar panel, a first side auxiliary solar panel 1, a first side auxiliary solar panel 2, a second side auxiliary solar panel 1 and a second side auxiliary solar panel 2, which fully utilizes the technique of space combination. The arrangement of the main and auxiliary solar panels cleverly utilizes the optimal arrangement of lighting at various angles of a large surface, thereby increasing the energy received in each direction. The same battery is used in two directions at the corner position, and the two directions are different with the seasons, and the differentiated energy received is balanced, and the strengths and weaknesses in different seasons are balanced, thus simplifying the complex. Installing one lamp can achieve lighting and camera security functions in two directions, and the installation and debugging costs are lower. The battery of one lamp supplies lighting and camera in two directions, which can ensure the normal operation of lighting and camera in two directions. Compared with the single-direction solar-powered lighting and camera device due to the influence of sunlight, the lighting and camera device of the present invention is more rational in energy supply.
[0014] Second, a smaller planar projection area allows for the installation of more solar panels, thereby generating more energy and ensuring the normal operation of the lighting and video recording device, thus extending its application range. Furthermore, the present invention generates more energy within the same planar projection area. Thus, while ensuring normal operation of both directional lighting and video recording, the planar projection area of the lighting and video recording device of the present invention can be made even smaller. A smaller planar projection area reduces the area exposed to wind, resulting in greater wind resistance and improved stability.
[0015] Third, the L-shaped main solar panel includes a first lighting lamp and a second lighting lamp, and the first lighting lamp is provided with a first camera, and the second lighting lamp is provided with a second camera. It is more aesthetically concise, combining multiple lights and multiple cameras in two directions into one.
[0016] 4. The human-computer interaction is simple and clear, the installation is convenient, and the adjustment of one device during use is definitely easier than adjusting two sets of devices. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention Figure 1 .
[0018] Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention Figure 2 .
[0019] In the figure: 1 main solar panel, 2 first lighting lamp, 3 second lighting lamp, 4 light-emitting surface, 5 battery assembly, 6 wire group, 7 top solar panel, 8 first side auxiliary solar panel one, 9 first side auxiliary solar panel two, 10 second side auxiliary solar panel one, 11 second side auxiliary solar panel two, 12 camera one, 13 camera two, 14 mounting bracket. DETAILED DESCRIPTION
[0020] In order to make the objectives, technical solutions and advantages of the present invention more clear and explicit, the present invention is further described in detail below with reference to the accompanying drawings and examples.
[0021] like Figure 1-2As shown, the present invention discloses a solar lighting camera device, comprising an L-shaped main solar panel 1, a first side auxiliary solar panel 1 8 and a first side auxiliary solar panel 2 9 are provided on the inner side of the main solar panel 1, and a second side auxiliary solar panel 10 and a second side auxiliary solar panel 2 11 are provided on the outer side of the main solar panel 1; the angle between the first side auxiliary solar panel 1 8, the second side auxiliary solar panel 10 and the main solar panel 1 is equal to or greater than 90 degrees; the angle between the first side auxiliary solar panel 2 9, the second side auxiliary solar panel 2 11 and the main solar panel 1 is equal to or greater than 90 degrees; A first lighting lamp 2, a second lighting lamp 3 and a battery assembly 5 are provided on the back of the solar panel 1. The light-emitting surface 4 of the first lighting lamp 2 faces one side of the corner, and the light-emitting surface 4 of the second lighting lamp 3 faces the other side of the corner; a camera 12 is provided on the first lighting lamp 2, and a camera 2 13 is provided on the second lighting lamp 3; the battery assembly 5 is connected to the first lighting lamp 2, the second lighting lamp 3, the camera 12, the camera 2 13, the main solar panel 1, the first side auxiliary solar panel 1 8, the first side auxiliary solar panel 2 9, the second side auxiliary solar panel 10 and the second side auxiliary solar panel 2 11 through a wire group 6.
[0022] After adopting the above structure, the solar lighting and camera device of the present invention includes an L-shaped main solar panel 1, a first side auxiliary solar panel 1 8, a first side auxiliary solar panel 2 9, a second side auxiliary solar panel 10, and a second side auxiliary solar panel 2 11. By fully utilizing the technique of spatial combination, the arrangement of the main and auxiliary solar panels cleverly utilizes the optimal arrangement of lighting at various angles on a large surface, thereby increasing the energy received in each direction. The same battery is used in both directions at the corner position, and the two directions are different with the seasons, and the differentiated energy received is balanced, and the strength of the different seasons is balanced, simplifying the complex. Installing a lamp can provide lighting and camera security functions in two directions, and the installation and debugging costs are lower. The battery of a lamp supplies lighting and camera in two directions, which can ensure the normal operation of lighting and camera in two directions. Compared with a single-directional solar-powered lighting and camera device, the present invention has a more rational energy supply due to the influence of sunlight. The lighting and camera device of the present invention uses a smaller plane projection area to install more solar panels, thereby obtaining more energy, ensuring the normal use of the lighting and camera device, and thus has a wider range of applications. Moreover, the lighting and camera device of the present invention obtains more energy in the same plane projection area. In this way, while ensuring normal use of lighting and camera in two directions, the plane projection area of the lighting and camera device of the present invention can be made smaller. The smaller the plane projection area, the smaller the wind-exposed area, so that the wind resistance is stronger and the stability is better.
[0023] The first lighting fixture 2 is equipped with a camera 12, and the second lighting fixture 3 is equipped with a camera 2 13. This creates a more aesthetically pleasing design, combining multiple lighting fixtures and cameras in two locations into one. Human-computer interaction is straightforward, installation is convenient, and adjusting one device during use is significantly easier than adjusting two.
[0024] In this embodiment, the angle between the first side auxiliary solar panel 8, the second side auxiliary solar panel 10 and the main solar panel 1 is 120 degrees, which is the best angle for obtaining sunlight and obtaining more solar energy.
[0025] In this embodiment, the angle between the first side auxiliary solar panel 2 9, the second side auxiliary solar panel 2 11 and the main solar panel 1 is 120 degrees, so as to obtain the best sunlight and obtain more solar energy.
[0026] The battery assembly 5 includes batteries, and the battery assembly 5 is connected to the first lighting lamp 2, the second lighting lamp 3, the camera 1 12, the camera 2 13 and each solar panel through a charge and discharge control board and a wire group 6.
[0027] In this embodiment, the main solar panel 1 is an integral piece and is L-shaped.
[0028] The main solar panel 1 of the present invention may be shaped in addition to an L-shape, a 7-shape or similar shape, mainly to fit the corner of the building.
[0029] The bottom surface of the L-shaped main solar panel 1 is provided with a wall-attached mounting bracket 14. This L-shaped bracket 14 is secured to the main solar panel 1 on one side and has mounting holes on the other side for secure connection to the building wall via screws. This bracket 14 allows the solar-powered lighting and camera device of the present invention to be quickly and securely fixed to a building corner.
[0030] The lighting camera device of the present invention has a lighting function in addition to being used for video recording, security monitoring, and the like.
[0031] The above is only a preferred embodiment of the present invention, which certainly cannot be used to limit the scope of rights of the present invention. It should be pointed out that for technicians in this technical field, any modification or equivalent replacement of the technical solution of the present invention without creative work does not depart from the scope of protection of the technical solution of the present invention.
Claims
1. A solar lighting camera device, characterized in that: The invention comprises an L-shaped main solar panel (1), wherein a first side auxiliary solar panel (8) and a first side auxiliary solar panel (9) are provided on the inner side of the main solar panel (1) and are upwardly provided, and a second side auxiliary solar panel (10) and a second side auxiliary solar panel (11) are provided on the outer side of the main solar panel (1) and are downwardly provided; the angle between the first side auxiliary solar panel (8), the second side auxiliary solar panel (10) and the main solar panel (1) is equal to or greater than 90 degrees; the angle between the first side auxiliary solar panel (9), the second side auxiliary solar panel (11) and the main solar panel (1) is equal to or greater than 90 degrees. degree; a first lighting lamp (2), a second lighting lamp (3) and a battery assembly (5) are provided on the back of the main solar panel (1); a camera 1 (12) is provided on the first lighting lamp (2), and a camera 2 (13) is provided on the second lighting lamp (3); the battery assembly (5) is connected to the first lighting lamp (2), the second lighting lamp (3), the camera 1 (12), the camera 2 (13), the main solar panel (1), the first side auxiliary solar panel 1 (8), the first side auxiliary solar panel 2 (9), the second side auxiliary solar panel 1 (10) and the second side auxiliary solar panel 2 (11) through a wire group (6).
2. A solar lighting camera device according to claim 1, characterized in that: The battery assembly (5) includes a battery and a charge and discharge control board.
3. A solar lighting camera device according to claim 1, characterized in that: The L-shaped main solar panel (1) is a whole piece.
4. The solar lighting camera device according to claim 1, characterized in that: A mounting bracket (14) connected to the wall is provided below the main solar panel (1). The mounting bracket (14) is L-shaped, with one side being fixed to the main solar panel (1) and the other side being fixedly connected to the building wall.
5. The solar lighting camera device according to claim 1, characterized in that: The included angle between the first side auxiliary solar panel 1 (8), the second side auxiliary solar panel 1 (10) and the main solar panel (1) is 120 degrees.
6. The solar lighting camera device according to claim 1, characterized in that: The angle between the first side auxiliary solar panel 2 (9), the second side auxiliary solar panel 2 (11) and the main solar panel (1) is 120 degrees.
7. The solar lighting camera device according to claim 1, characterized in that: The main solar panel (1) arranged longitudinally is longer than the main solar panel (1) arranged transversely.
Citation Information
Patent Citations
Solar lighting camera device
CN219346273U