Adjustable solar camera support
Through the combination of socket structure and shaft locking tongue spring, flexible lifting and rotation adjustment of solar panels is achieved, which solves the problem of inconvenient installation and fixing or adjustment of solar panels in the prior art, and obtains a good damping feel and a longer service life.
Patent Information
- Application Number
- CN202421819196.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-30
AI Technical Summary
The solar panels of existing solar cameras are fixed or blocked by high-power antennas, which lead to inconvenient adjustment and affects solar energy conversion efficiency. The tooth choking structure is easy to be damaged and inconvenient to use.
The socket-type structure is used to realize the lifting and lowering adjustment of the solar panel, and the rotation positioning is performed through the shaft lock tongue and the shaft spring, which can obtain a good damping feel, extend the service life, achieve bidirectional adjustment, and improve the convenience of use.
It realizes flexible lifting and rotary adjustment of solar panels, obtains a good damping feel, extends service life, and improves solar energy conversion efficiency, making it more convenient to use.
Smart Images

Figure CN222996480U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an adjustable solar camera bracket, belonging to the technical field of camera bracket equipment. Background Art
[0002] For the existing surveillance cameras, their power supply systems mostly adopt wire connection for power supply, and it is necessary to embed cables for use. In order to improve the convenience of using the cameras, a solar power supply method is also adopted, which can omit the steps of embedding cables, save the installation cost, and is more convenient to use.
[0003] For the existing solar cameras, their solar panels are usually installed on the cameras or on the camera brackets. The height and angle of the solar panels installed on the cameras are fixed and cannot be adjusted. For the solar panels installed on the camera brackets, due to the obstruction of high-power antennas, it is inconvenient to rotate and adjust the solar panels, which affects the solar energy conversion efficiency. Moreover, when the existing solar panels rotate, they are mainly realized through the cooperation of a gear engagement structure to obtain a damping feeling. However, since the gear engagement parts are fixed by screws, the same material is prone to losing elasticity and wearing after long-term use, resulting in unsmooth rotation. Even loosening the screws is required to adjust the rotation, which brings a lot of inconvenience to users. Content of the Utility Model
[0004] The purpose of the utility model is to provide an adjustable solar camera bracket aiming at the defects or deficiencies in the prior art. The lifting adjustment of the solar panel is realized by adopting a socket structure, and the rotation positioning is carried out by matching a rotating shaft lock tongue with a rotating shaft spring, obtaining a good damping feel, not easily damaged, having a longer service life, and the two-way adjustment makes the installation and use of the solar panel more convenient.
[0005] To achieve the above purpose, the utility model adopts the following technical solutions: It includes a solar panel 1 and a bracket assembly 2. The solar panel 1 is connected to the bracket assembly 2. The bracket assembly 2 includes a camera mounting bracket 21, a solar panel bracket 22, a solar panel upper rotating shaft 23, and a solar panel lower rotating shaft 24. The camera mounting bracket 21 is inserted into and fixed to the solar panel bracket 22 by screws. The solar panel lower rotating shaft 24 is movably connected to the top of the solar panel bracket 22. The solar panel upper rotating shaft 23 is movably connected to the solar panel lower rotating shaft 24, and the solar panel upper rotating shaft 23 is fixedly connected to the solar panel 1.
[0006] Further, the solar panel bracket 22 is of a bent structure, and a rotating groove 221 is provided at the top of the front end of the bent part, and a plurality of positioning grooves are provided in the rotating groove 221.
[0007] Further, a shaft lock tongue 25 is provided on the lower rotating shaft 24 of the solar panel. A shaft spring 26 is sleeved on the shaft lock tongue 25. The front end of the shaft lock tongue 25 is spherical and matches the positioning groove.
[0008] Further, a plurality of adjustment fixing holes 222 are provided on the outer side of the vertical portion of the solar panel bracket 22.
[0009] Further, an installation groove 211 is provided on the camera mounting bracket 21. The installation groove 211 matches the vertical portion of the solar panel bracket 22, and a matching groove is provided on the outer side of the top of the installation groove 211 corresponding to the adjustment fixing hole 222.
[0010] Further, a camera fixing bracket 212 is provided inside the camera mounting bracket 21, and a camera bridging bracket 27 is provided inside the camera fixing bracket 212.
[0011] Further, a left - right adjustment turntable 28 is movably provided at the bottom of the camera fixing bracket 212. A plurality of balls 281 are provided on the surface of the left - right adjustment turntable 28. The balls 281 are in rolling connection with the bottom surface of the camera fixing bracket 212. The left - right adjustment turntable 28 is fixedly connected with the camera bridging bracket 27.
[0012] After adopting the above - mentioned technical solution, the beneficial effects of the present utility model are as follows: The lifting adjustment of the solar panel is realized by using a socket - type structure, and the rotation positioning is carried out by matching the shaft lock tongue with the shaft spring, obtaining a good damping feel, not being easily damaged, having a longer service life, and the two - way adjustment makes the installation and use of the solar panel more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0014] Figure 1 is the structural schematic diagram of the present utility model;
[0015] Figure 2 is Figure 1 the second - angle view of
[0016] Figure 3 is the structural schematic diagram of the bracket assembly 2 in the present utility model;
[0017] Figure 4 is Figure 3 the disassembled state schematic diagram of
[0018] Description of reference numerals: solar panel 1, bracket assembly 2, camera 3, camera mounting bracket 21, solar panel bracket 22, upper solar panel rotating shaft 23, lower solar panel rotating shaft 24, rotating shaft locking tongue 25, rotating shaft spring 26, camera bridging bracket 27, left and right adjustment turntable 28, mounting groove 211, camera fixing bracket 212, rotating groove 221, adjustment fixing hole 222, ball 281, etc. Detailed implementation manners
[0019] Refer to Figures 1 - 4 As shown, the technical solution adopted in this detailed implementation manner is as follows: It includes a solar panel 1 and a bracket assembly 2. The solar panel 1 is connected to the bracket assembly 2. The bracket assembly 2 includes a camera mounting bracket 21, a solar panel bracket 22, an upper solar panel rotating shaft 23, and a lower solar panel rotating shaft 24. The camera mounting bracket 21 is inserted into and connected to the solar panel bracket 22 and fixed by screws. The lower solar panel rotating shaft 24 is movably connected to the top of the solar panel bracket 22. The upper solar panel rotating shaft 23 is movably connected to the lower solar panel rotating shaft 24, and the upper solar panel rotating shaft 23 is fixedly connected to the solar panel 1. In this embodiment, in order to realize the lifting adjustment of the solar panel, a connection method in which the camera mounting bracket is inserted into the solar panel bracket is adopted. Adjusting the position of the solar panel bracket on the camera mounting bracket can adjust the height of the solar panel, so that it can be used in cooperation with cameras equipped with different specifications of antennas. At the same time, in order to enable the solar panel to obtain the best lighting effect, an upper solar panel rotating shaft and a lower solar panel rotating shaft are provided, and the relative angle between the upper and lower rotating shafts can be adjusted, so that the solar panel can be adjusted at a specific inclination angle. At the same time, the lower solar panel rotating shaft can also rotate movably on the solar panel bracket, so that the camera can adjust the specific orientation of the solar panel whether it is installed on the sunny side or the non-sunny side, which is convenient to use and has better effects.
[0020] More specifically, the solar panel bracket 22 is a bent structure, and a rotation groove 221 is provided at the top of the front end of the bent portion, and a plurality of positioning grooves are provided in the rotation groove 221. In this embodiment, in order to better realize the rotation adjustment of the solar panel, a rotation groove is provided at the top of the bent portion of the solar panel bracket, and the rotation adjustment is realized by the cooperation of the rotation groove and the lower rotating shaft of the solar panel, and a plurality of positioning grooves are provided in the rotation groove, and the positioning groove is an arc groove. At the same time, a rotating shaft lock tongue 25 is provided on the lower rotating shaft 24 of the solar panel, and a rotating shaft lock tongue 25 is sleeved with a rotating shaft lock tongue 25. The shaft spring 26 and the front end of the shaft lock tongue 25 are spherical and match the positioning groove. Under normal circumstances, the shaft lock tongue is positioned in the positioning groove, and the shaft under the solar panel will not rotate easily. When the direction needs to be adjusted, the solar panel rotates, driving the shaft under the solar panel to rotate, and the shaft lock tongue moves from one positioning groove to another. During the movement, the shaft lock tongue compresses the shaft spring, and the shaft spring applies a restoring force to the shaft lock tongue, which has a good damping effect. Therefore, a clear impact feedback feel can be obtained during the rotation process, and it can be more clear whether the adjustment is in place, and the operation is more precise.
[0021] To be more specific, a plurality of adjustment fixing holes 222 are arranged on the outer side of the vertical portion of the solar panel bracket 22, and a mounting groove 211 is arranged on the camera mounting bracket 21, the mounting groove 211 matches the vertical portion of the solar panel bracket 22, and a matching groove is opened on the outer side of the top of the mounting groove 211 corresponding to the adjustment fixing hole 222. In this embodiment, the vertical portion of the solar panel mounting bracket is inserted into the mounting groove, and when the solar panel mounting bracket is raised or lowered, the screws are clamped in the matching groove and connected and fixed to the adjustment fixing holes, so that the solar panel mounting bracket is fixed. In this embodiment, a structure with three adjustment fixing holes is illustrated, and a solar mounting bracket with more adjustment fixing holes can be selected for use according to the specifications of the actual camera antenna.
[0022] To be more specific, a camera fixing bracket 212 is provided inside the camera mounting bracket 21, and a camera bridging bracket 27 is provided inside the camera fixing bracket 212. In this embodiment, the camera bridging bracket is connected to the camera installation position, and the vertical angle of the camera can also be adjusted, and can be installed by rotating a certain angle.
[0023] To be more specific, a left-right adjustment dial 28 is movably provided at the bottom of the camera fixing frame 212, and a plurality of balls 281 are provided on the surface of the left-right adjustment dial 28. The balls 281 are rollingly connected to the bottom surface of the camera fixing frame 212, and the left-right adjustment dial 28 is fixedly connected to the camera bridge bracket 27. When the camera needs to be rotated, the left-right adjustment dial only needs to be turned to drive the camera bridge bracket to rotate, thereby driving the camera to rotate.
[0024] Working principle of the present utility model: When installing the bracket, the solar panel 1 is not installed first. Connect the camera 3 to the camera bridging bracket 27 to complete the installation of the camera 3. Then connect the solar panel 1 to the upper rotating shaft 23 of the solar panel to complete the overall installation of the device. At this time, adjust the antenna position of the camera 3, and adjust the installation position of the vertical part of the solar panel installation bracket 22 in the installation groove 211 according to the antenna position. After ensuring the position, use screws to pass through the adjustment fixing holes 222 for fixation to complete the position adjustment of the solar panel installation bracket 22. During use, its overall position can still be adjusted as needed, thereby adjusting the height position of the solar panel 1 to obtain the best installation effect. At the same time, after adjusting the height, angle adjustment is required. Just swing the solar panel 1 to drive the lower rotating shaft 24 of the solar panel to rotate in the rotating groove 221. During the rotation process, the rotating shaft locking tongue 25 will move from one positioning groove to another under the action of the rotating shaft spring 26, obtaining a clear feedback feel during the movement and realizing positioning, thus realizing the angle adjustment of the solar panel 1. When the angle of the camera 3 needs to be adjusted, rotate the left and right adjustment turntables 28 to drive the camera bridging bracket 27 to rotate, and then the angle position of the camera 3 can be adjusted.
[0025] The above is only used to illustrate the technical solution of the present utility model and not to limit it. Any other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solution of the present utility model should be covered within the scope of the claims of the present utility model as long as they do not depart from the spirit and scope of the technical solution of the present utility model.
Claims
1. An adjustable solar camera bracket, comprising a solar panel (1) and a bracket assembly (2), wherein the solar panel (1) is connected to the bracket assembly (2), and characterized in that: The support assembly (2) comprises a camera mounting support (21), a solar panel support (22), a solar panel upper shaft (23), and a solar panel lower shaft (24); the camera mounting support (21) is plugged into the solar panel support (22) and fixed by screws; the solar panel lower shaft (24) is movably connected to the top of the solar panel support (22); the solar panel upper shaft (23) is movably connected to the solar panel lower shaft (24); and the solar panel upper shaft (23) is fixedly connected to the solar panel (1).
2. The adjustable solar camera bracket according to claim 1, characterized in that: The solar panel support (22) is a bent structure, a rotation groove (221) is arranged at the top of the front end of the bent part, and a plurality of positioning grooves are arranged in the rotation groove (221).
3. The adjustable solar camera bracket according to claim 1, characterized in that: A rotating shaft lock tongue (25) is arranged on the lower rotating shaft (24) of the solar panel, a rotating shaft spring (26) is sleeved on the rotating shaft lock tongue (25), and the front end of the rotating shaft lock tongue (25) is a spherical surface matching the positioning groove.
4. The adjustable solar camera bracket according to claim 1, characterized in that: A plurality of adjustment and fixing holes (222) are arranged on the outer side of the vertical portion of the solar panel support (22).
5. The adjustable solar camera bracket according to claim 1, characterized in that: The camera mounting bracket (21) is provided with a mounting groove (211), the mounting groove (211) matches the vertical portion of the solar panel bracket (22), and a matching groove corresponding to the adjustment fixing hole (222) is opened on the outer side of the top of the mounting groove (211).
6. The adjustable solar camera bracket according to claim 1, characterized in that: A camera fixing frame (212) is arranged inside the camera mounting frame (21), and a camera bridging frame (27) is arranged inside the camera fixing frame (212).
7. The adjustable solar camera bracket according to claim 6, characterized in that: A left-right adjustment dial (28) is movably arranged at the bottom of the camera fixing frame (212); a plurality of balls (281) are arranged on the surface of the left-right adjustment dial (28); the balls (281) are rollingly connected to the bottom surface of the camera fixing frame (212); and the left-right adjustment dial (28) is fixedly connected to the camera bridge bracket (27).