Low-power-consumption camera based on solar power supply
By designing a low-power camera including an L-shaped plate, mounting bracket and solar panel, using an adsorption plate and limiting cylinder to achieve stable installation, and using a flexibly adjusting the camera through adjustment components, the complex and inconvenient camera installation in the prior art is solved, and a fast and simple one-hand installation is achieved.
Patent Information
- Application Number
- CN202411923367.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing low-power cameras powered by solar power require both hands to be operated during installation, and the device is easy to fall from a high place, making the operation complicated and inconvenient.
A low-power camera including L-shaped panels, mounting frames and solar panels is designed. The mounting frame is connected to the solar panels through the rotating connection of the L-shaped panels. The top of the mounting frame is connected to the solar panels through the shaft. The adsorption plates and limiting cylinders are used to achieve stable installation of the L-shaped panels, and the cameras are flexibly adjusted through adjustment components.
It realizes the fast and easy installation of the camera, and can be installed with one hand throughout the whole process, reducing operational complexity and safety risks, and improving installation flexibility and convenience.
Smart Images

Figure CN119996799A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of image communication equipment, and in particular to a low-power camera powered by solar energy. Background Art
[0002] The low-power camera based on the solar power supply system is a solar-powered monitoring and transmission integrated product that meets the needs of the outdoor civilian monitoring market. It absorbs solar energy through solar panels and converts and stores it into electrical energy. At the same time, the camera is designed to reduce consumption. It is the preferred solution for integrated integration of solar power supply. The existing low-power camera based on the solar power supply system is relatively cumbersome to install and disassemble during use, and there is a problem of difficulty in maintenance; Therefore, the prior art proposes a low-power camera based on a solar power supply system with patent number CN202020738743.X. The positioning plate can be inserted into the interior of the vertical pole through the setting of the installation mechanism. At this time, the corresponding surface of the mounting sleeve on the outside of the mounting block can be fitted. The bolts can be directly used to pass through the mounting hole and tighten the bolts. The overall installation process is simple and convenient, and the structure is stable.
[0003] However, during the actual installation of this type of device, the worker needs to hold the entire device with one hand after climbing up, and use the other hand to insert the positioning plate into the inside of the pole, and then use tools to tighten the bolts to complete the installation. The entire process requires two-handed operation, and the device is prone to accidentally falling from a height during the installation process. The operation is relatively complicated and the installation is relatively inconvenient. Summary of the invention
[0004] In order to solve the above technical problems, the present invention provides a low-power camera powered by solar energy to solve the problems described in the above background technology.
[0005] The present invention discloses a low-power camera based on solar power supply, which is achieved by the following specific technical means: a low-power camera based on solar power supply, comprising an L-shaped plate, a mounting frame and a solar panel, the L-shaped plate is rotatably connected to the mounting frame, the top of the mounting frame is rotatably connected to the solar panel via an axle, extension plates are fixed to the left and right ends of the outer wall of the L-shaped plate, a fixing frame is embedded in the rear end of the L-shaped plate, an adsorption plate is fixed in the middle of the fixing frame, a limiting cylinder is fixed to the outer side of the adsorption plate, an adjustment component is embedded in the interior of the L-shaped plate, and a camera is fixed below the front end of the adjustment component.
[0006] As a further solution of the present invention: the back opening of the L-shaped plate is provided with a fixing groove, the fixing frame is just embedded in the fixing groove, the fixing frame fits with the fixing groove, and the backs of the L-shaped plate, the fixing frame, the extension plate and the limiting cylinder are all on the same vertical horizontal plane.
[0007] As a further solution of the present invention: the limiting cylinder outside the fixing frame is embedded in the extension plate, the outer wall of the limiting cylinder is close to the inner wall of the extension plate, and the front end of the extension plate and the front end of the limiting cylinder are both in the same vertical horizontal plane.
[0008] As a further solution of the present invention: the cross-sectional area of the stainless steel plate is consistent with the cross-sectional area of the adsorption plate, the front end of the adsorption plate is in close contact with the back of the stainless steel plate, and the adsorption plate is made of magnetic material.
[0009] As a further solution of the present invention: the adjustment assembly is composed of an inner slider, an inner adjustment rod, an inner limit rod, an outer guide rail, an outer adjustment rod, an outer slider, a connecting column, a connecting plate, an inner fixing plate, an outer extension plate and an adjustment bolt; Specifically, an inner slider is embedded in the L-shaped plate, an inner adjusting rod is horizontally embedded in the middle of the L-shaped plate, inner limit rods are horizontally fixed to the upper and lower ends of the inner part of the L-shaped plate, an outer guide rail is fixed to the front surface of the inner slider, an outer adjusting rod is vertically embedded in the front surface of the inner slider, an outer slider is embedded in the inner part of the outer guide rail, a connecting column is longitudinally embedded in the inner front end of the outer slider, a connecting plate is embedded in the inner front end of the connecting column, an inner fixing plate is fixed to the front end of the connecting plate, an outer extension plate is nested in the outer front end of the inner fixing plate, an adjusting bolt is longitudinally embedded in the inner right side of the outer extension plate, and a camera is fixed below the front end of the outer extension plate.
[0010] As a further solution of the present invention: the inner limit rod is transversely embedded in the limit holes at the upper and lower ends of the inner slider, the inner adjustment rod is transversely embedded in the inner slider, the outer wall of the inner adjustment rod is connected to the inner wall of the inner slider by a thread, and the inner slider slides left and right in a horizontal direction inside the L-shaped plate.
[0011] As a further solution of the present invention: the outer adjustment rod is vertically embedded in the inner rear end of the outer slider, the outer wall of the outer adjustment rod is connected to the inner wall of the outer slider by a thread, and the outer slider is lifted and lowered vertically on the outer side of the outer guide rail.
[0012] As a further solution of the present invention: both left and right sides of the front end of the outer slider and both left and right sides of the front end of the connecting column are opened with embedding openings of the same cross-sectional area, and the limiting openings of the outer slider and the connecting column are both on the same vertical horizontal plane.
[0013] As a further solution of the present invention: the connecting column rotates left and right in the outer slider, the cross-sectional area of the connecting plate is consistent with the cross-sectional area of the outer slider and the connecting column embedding opening, and the hollow volume of the connecting plate is consistent with the embedding opening in the connecting column.
[0014] As a further solution of the present invention: a row of latch teeth is fixed on the upper right side of the inner fixing plate, the leftmost latch tooth of the adjusting bolt is engaged with the latch tooth on the right side of the inner fixing plate, the outer wall of the inner fixing plate is close to the outer extension plate, and the outer extension plate slides back and forth in a horizontal direction on the outside of the inner fixing plate.
[0015] 1. During the installation process, the lighter fixing frame can be installed on the column by screwing the screw rod in the middle of the fixing frame in advance, and then the L-shaped plate can be nested in the fixed fixing frame. At this time, the adsorption plate on the fixing frame generates magnetic force to tightly attract the stainless steel plate on the L-shaped plate. At the same time, the extension plates on both sides of the L-shaped plate are nested in the outside of the limit cylinders on the left and right sides of the fixing frame. The L-shaped plate can be installed later by screwing the bolts into the limit cylinders, and the L-shaped plate will not fall off the fixing frame during the installation process. After the L-shaped plate is installed, the connecting plate at the rear end of the camera is embedded from top to bottom in the inside of the connecting column, so that the device can be quickly installed on the column. It has high flexibility and can be installed on the column with one hand throughout the process, which makes the installation easier.
[0016] 2. After the installation is completed, the inner adjusting rod is rotated clockwise or counterclockwise in the inner slider to make the inner slider move left and right in the L-shaped plate, so that the camera can be moved left and right to adjust its position; the outer adjusting rod is rotated clockwise or counterclockwise in the outer slider to make the outer slider move up and down in the outer guide rail, so that the camera can be moved up and down to adjust its position; the outer extension plate is rotated left and right to make the outer extension plate drive the connecting column to rotate left and right in the outer slider through the inner fixed plate and the connecting plate, so that the camera can be rotated left and right to adjust its position; the adjusting bolt is rotated clockwise or counterclockwise to make the adjusting bolt push the outer extension plate to move forward and backward on the outside of the inner fixed plate, so that the camera can be moved forward and backward to adjust its position; the device does not need to be disassembled and reinstalled to adjust the monitoring position of the camera, so it is more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a right side cross-sectional schematic diagram of the overall structure of the present invention; Figure 3 It is a schematic diagram of the back side of the local structure of the L-shaped plate in the present invention; Figure 4 It is a front view schematic diagram of the partial structure of the L-shaped plate and the fixing frame in the present invention; Figure 5 It is a schematic diagram of the local structure of the inner slider in the present invention; Figure 6 It is a right side cross-sectional schematic diagram of the local structure of the inner slider in the present invention; Figure 7 It is a schematic diagram of the explosion of the local structure of the inner slider in the present invention.
[0018] Legend: L-shaped plate 1, mounting frame 101, solar panel 102, extension plate 103, stainless steel plate 104, fixing frame 105, adsorption plate 106, limiting cylinder 107, inner slider 2, inner adjustment rod 201, inner limiting rod 202, outer guide rail 203, outer adjustment rod 204, outer slider 205, connecting column 206, connecting plate 207, inner fixing plate 208, outer extension plate 209, adjusting bolt 210, camera 3. DETAILED DESCRIPTION
[0019] Example 1, please refer to Figure 1-7 A low-power camera based on solar power supply includes an L-shaped plate 1, a mounting frame 101 and a solar panel 102. The L-shaped plate 1 is rotatably connected to the mounting frame 101, and the top of the mounting frame 101 is rotatably connected to the solar panel 102 through an axle rod. Extension plates 103 are fixed to the left and right ends of the outer wall of the L-shaped plate 1. A fixing frame 105 is embedded in the rear end of the L-shaped plate 1, and an adsorption plate 106 is fixed in the middle of the fixing frame 105. A limiting cylinder 107 is fixed to the outer side of the adsorption plate 106. An adjusting component is embedded in the L-shaped plate 1, and a camera 3 is fixed at the lower front end of the adjusting component.
[0020] The back opening of the L-shaped plate 1 is provided with a fixing groove, and the fixing frame 105 is just embedded in the fixing groove, and the fixing frame 105 fits with the fixing groove. The backs of the L-shaped plate 1, the fixing frame 105, the extension plate 103 and the limiting cylinder 107 are all on the same vertical horizontal plane; The limiting cylinder 107 on the outside of the fixing frame 105 is just embedded in the inside of the extension plate 103, the outer wall of the limiting cylinder 107 is close to the inner wall of the extension plate 103, and the front end of the extension plate 103 and the front end of the limiting cylinder 107 are both on the same vertical level; Before installing the L-shaped plate 1, the lighter fixing frame 105 can be pre-installed on the column by screwing the screw rod in the middle of the fixing frame 105, and then the fixing groove on the back of the L-shaped plate 1 is nested on the fixed fixing frame 105. At this time, the adsorption plate 106 on the fixing frame 105 generates magnetic force to tightly attract the stainless steel plate 104 on the L-shaped plate 1, and at the same time, the extension plates 103 on both sides of the L-shaped plate 1 are nested on the outside of the limiting cylinders 107 on the left and right sides of the fixing frame 105. Subsequently, the L-shaped plate 1 can be installed by screwing bolts into the limiting cylinders 107, and the L-shaped plate 1 will not fall off the fixing frame during the installation process; The cross-sectional area of the stainless steel plate 104 is consistent with the cross-sectional area of the adsorption plate 106. The front end of the adsorption plate 106 is in close contact with the back of the stainless steel plate 104. The adsorption plate 106 is made of magnetic material. The main function of the adsorption plate 106 is to generate magnetic force to attract the stainless steel plate 104 in the L-shaped plate 1 to prevent the L-shaped plate 1 from falling off during the installation process.
[0021] Example 2, please refer to Figure 1-7 , Embodiment 2 differs from Embodiment 1 in that the adjustment assembly is composed of an inner slider 2, an inner adjustment rod 201, an inner limit rod 202, an outer guide rail 203, an outer adjustment rod 204, an outer slider 205, a connecting column 206, a connecting plate 207, an inner fixing plate 208, an outer extension plate 209 and an adjustment bolt 210; An inner slider 2 is embedded in the L-shaped plate 1, an inner adjustment rod 201 is transversely embedded in the middle of the L-shaped plate 1, inner limit rods 202 are transversely fixed to the upper and lower ends of the inner part of the L-shaped plate 1, an outer guide rail 203 is fixed to the front surface of the inner slider 2, an outer adjustment rod 204 is vertically embedded in the front surface of the inner slider 2, an outer slider 205 is embedded in the outer guide rail 203, a connecting column 206 is longitudinally embedded in the inner front end of the outer slider 205, a connecting plate 207 is embedded in the inner front end of the connecting column 206, an inner fixing plate 208 is fixed to the front end of the connecting plate 207, an outer extension plate 209 is nested in the outer front end of the inner fixing plate 208, an adjusting bolt 210 is longitudinally embedded in the inner right side of the outer extension plate 209, and a camera 3 is fixed below the front end of the outer extension plate 209; The inner limit rod 202 is transversely embedded in the limit holes at the upper and lower ends of the inner slider 2, the inner adjustment rod 201 is transversely embedded in the inner slider 2, the outer wall of the inner adjustment rod 201 is connected to the inner wall of the inner slider 2 through a thread, and the inner slider 2 slides horizontally left and right inside the L-shaped plate 1; After the installation is completed, the inner adjustment rod 201 is twisted to rotate clockwise or counterclockwise in the inner slider 2, so that the inner slider 2 moves left and right in the L-shaped plate 1, thereby allowing the camera 3 to move left and right to adjust the monitoring position; The outer adjustment rod 204 is vertically embedded in the inner rear end of the outer slider 205. The outer wall of the outer adjustment rod 204 is connected to the inner wall of the outer slider 205 through a thread. The outer slider 205 is lifted up and down in a vertical direction on the outer side of the outer guide rail 203. By twisting the outer adjustment rod 204 to rotate clockwise or counterclockwise in the outer slider 205, the outer slider 205 is moved up and down in the outer guide rail 203, so that the camera 3 can be moved up and down to adjust the position; By twisting the outer extension plate 209 to rotate left and right, the outer extension plate 209 drives the connecting column 206 to rotate left and right in the outer slider 205 through the inner fixed plate 208 and the connecting plate 207, allowing the camera 3 to rotate left and right to adjust the position. The flexibility is high, and there is no need to disassemble and reinstall the device to adjust the monitoring position of the camera 3 later, which is more convenient to use.
[0022] Example 3, please refer to Figure 1-7 , Embodiment 3 is different from Embodiment 2 in that both left and right sides of the front end of the outer slider 205 and both left and right sides of the front end of the connecting column 206 are opened with embedding openings of the same cross-sectional area, and the limiting openings of the outer slider 205 and the connecting column 206 are both on the same vertical horizontal plane; After the L-shaped plate 1 is installed on the column, the connecting plate 207 at the rear end of the camera 3 is inserted into the inserting opening of the outer slider 205 from top to bottom, so that the connecting plate 207 and the connecting column 206 can be fixed together as a whole to form a whole, so that the device can be quickly installed on the column, with high flexibility and easier installation; The connecting post 206 rotates left and right in the outer slider 205, and the cross-sectional area of the connecting plate 207 is consistent with the cross-sectional area of the outer slider 205 and the connecting post 206 embedding opening, and the hollow volume of the connecting plate 207 and the embedding opening of the connecting post 206 is consistent; When disassembling the camera 3, the connecting plate 207 at the rear end of the camera 3 is pushed upward from the bottom, so that the connecting plate 207 is sequentially removed from the connecting column 206 and the embedding opening of the outer slider 205, so that the camera 3 can be quickly disassembled from the outer slider 205 fixed on the column, which is more convenient for subsequent maintenance of the camera 3; A row of latching teeth is fixed on the upper right side of the inner fixing plate 208, and the leftmost latching teeth of the adjusting bolt 210 are meshed with the latching teeth on the right side of the inner fixing plate 208. The outer wall of the inner fixing plate 208 is close to the outer extension plate 209, and the outer extension plate 209 slides back and forth in a horizontal direction on the outer side of the inner fixing plate 208; By turning the adjusting bolt 210 clockwise or counterclockwise, the adjusting bolt 210 pushes the outer extension plate 209 to move forward and backward outside the inner fixed plate 208, so that the camera 3 can be moved forward and backward to adjust the position. It has high flexibility and there is no need to disassemble and reinstall the device to adjust the monitoring position of the camera later, which is more convenient to use.
[0023] The above are only preferred embodiments of the present invention. It should be pointed out that, for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present invention. These should also be regarded as the protection scope of the present invention. These will not affect the effect of the implementation of the present invention and the practicality of the patent.
Claims
1. A low-power camera powered by solar energy, comprising an L-shaped plate (1), a mounting frame (101) and a solar panel (102), wherein the L-shaped plate (1) is rotatably connected to the mounting frame (101), and the top of the mounting frame (101) is rotatably connected to the solar panel (102) via a shaft, characterized in that: Extension plates (103) are fixed to the left and right ends of the outer wall of the L-shaped plate (1); a fixing frame (105) is embedded in the rear end of the L-shaped plate (1); a suction plate (106) is fixed in the middle of the fixing frame (105); a limiting cylinder (107) is fixed to the outer side of the suction plate (106); an adjustment component is embedded in the L-shaped plate (1); and a camera (3) is fixed at the lower front end of the adjustment component.
2. The low-power camera based on solar power supply according to claim 1, characterized in that: The back opening of the L-shaped plate (1) is provided with a fixing groove, the fixing frame (105) is embedded in the fixing groove, the fixing frame (105) fits in the fixing groove, and the backs of the L-shaped plate (1), the fixing frame (105), the extension plate (103) and the limiting cylinder (107) are all located on the same vertical horizontal plane.
3. The low-power camera based on solar power supply according to claim 1, characterized in that: The limiting cylinder (107) on the outside of the fixing frame (105) is just embedded in the interior of the extension plate (103), the outer wall of the limiting cylinder (107) is in close contact with the inner wall of the extension plate (103), and the front end of the extension plate (103) and the front end of the limiting cylinder (107) are both on the same vertical horizontal plane.
4. The low-power camera based on solar power supply according to claim 2, characterized in that: The cross-sectional area of the stainless steel plate (104) is consistent with the cross-sectional area of the adsorption plate (106); the front end of the adsorption plate (106) is in close contact with the back side of the stainless steel plate (104); and the adsorption plate (106) is made of magnetic material.
5. The low-power camera based on solar power supply according to claim 1, characterized in that: The adjustment assembly is composed of an inner slider (2), an inner adjustment rod (201), an inner limit rod (202), an outer guide rail (203), an outer adjustment rod (204), an outer slider (205), a connecting column (206), a connecting plate (207), an inner fixing plate (208), an outer extension plate (209) and an adjustment bolt (210); An inner slider (2) is embedded in the L-shaped plate (1), an inner adjustment rod (201) is transversely embedded in the middle of the L-shaped plate (1), inner limit rods (202) are transversely fixed to the upper and lower ends of the L-shaped plate (1), an outer guide rail (203) is fixed to the front surface of the inner slider (2), an outer adjustment rod (204) is vertically embedded in the front surface of the inner slider (2), an outer slider (205) is embedded in the outer guide rail (203), a connecting column (206) is longitudinally embedded in the front end of the inner slider (205), a connecting plate (207) is embedded in the front end of the inner slider (206), an inner fixing plate (208) is fixed to the front end of the connecting plate (207), an outer extension plate (209) is nested in the outer front end of the inner fixing plate (208), an adjustment bolt (210) is longitudinally embedded in the right side of the inner extension plate (209), and a camera (3) is fixed below the front end of the outer extension plate (209).
6. The low-power camera based on solar power supply according to claim 5, characterized in that: The inner limit rod (202) is transversely embedded in the limit holes at the upper and lower ends of the inner slider (2), the inner adjustment rod (201) is transversely embedded in the inner slider (2), the outer wall of the inner adjustment rod (201) and the inner wall of the inner slider (2) are connected via threads, and the inner slider (2) slides horizontally left and right inside the L-shaped plate (1).
7. The low-power camera based on solar power supply according to claim 5, characterized in that: The outer adjustment rod (204) is vertically embedded in the inner rear end of the outer slider (205); the outer wall of the outer adjustment rod (204) and the inner wall of the outer slider (205) are connected via threads; the outer slider (205) moves up and down in a vertical direction on the outer side of the outer guide rail (203).
8. The low-power camera based on solar power supply according to claim 5, characterized in that: Both left and right sides of the front end of the outer slider (205) and both left and right sides of the front end of the connecting column (206) are opened to provide embedding openings with the same cross-sectional area, and the limiting openings of the outer slider (205) and the connecting column (206) are both located on the same vertical horizontal plane.
9. The low-power camera based on solar power supply according to claim 5 or 8, characterized in that: The connecting column (206) rotates left and right in the outer slider (205); the cross-sectional area of the connecting plate (207) is consistent with the cross-sectional area of the outer slider (205) and the embedding opening of the connecting column (206); and the hollow volume of the embedding opening of the connecting plate (207) and the connecting column (206) is consistent.
10. The low-power camera based on solar power supply according to claim 1, characterized in that: A row of latching teeth is fixed on the upper right side of the inner fixing plate (208), the leftmost latching tooth of the adjusting bolt (210) is meshed with the latching teeth on the right side of the inner fixing plate (208), the outer wall of the inner fixing plate (208) is in close contact with the outer extension plate (209), and the outer extension plate (209) slides back and forth in a horizontal direction on the outer side of the inner fixing plate (208).
Citation Information
Patent Citations
Low-power-consumption camera based on solar power supply system
CN211791729U