Angle-adjustable support for solar panel
By using a high-strength connection design made of aluminum, titanium, and carbon fiber, the rigidity and angle adjustment issues of high-capacity solar panel brackets have been solved, achieving lightweight and convenient installation to meet the needs of different installation environments.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING METEOROLOGICAL OBSERVATION CENT
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-17
AI Technical Summary
Existing technologies cannot simultaneously meet the rigidity requirements of high-capacity solar panel brackets and the need for convenient angle adjustment, especially in terms of adjustability, and are difficult to achieve lightweight, easy transportation and easy installation.
The crossbars, vertical bars, diagonal supports, and limit bars are made of aluminum, titanium, and carbon fiber and are connected by high-strength screws. The structure is designed to be detachable and the angle can be adjusted by adjusting the hole positions, ensuring structural strength and lightweight.
While ensuring structural strength, the bracket features a lightweight design, facilitating packaging and transportation, and supports angle adjustment for high-altitude operations, meeting the needs of different installation environments.
Smart Images

Figure CN224138942U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of meteorological engineering technology, and more specifically to an adjustable angle bracket for solar panels. Background Technology
[0002] The meteorological industry employs a large amount of specialized meteorological equipment, such as automatic weather stations, real-time monitoring systems, weather phenomenon instruments, and DC battery banks, installed in manned or unmanned urban and field locations. Often, in remote and challenging areas (such as urban greenbelts, suburban parks, mountainous regions, reservoirs, and uninhabited areas) where AC / DC power supply is unavailable, high-capacity solar panels are required. These panels must be installed at a high altitude and supported by meteorological poles.
[0003] Typically, high-capacity solar panels are heavy and have a large volume (surface area), requiring strong supporting structures. Meanwhile, meteorological equipment is often installed across the country, meaning it is installed at different latitudes and longitudes. Different latitudes require different elevation angles of the solar panels relative to the sky, and different seasons also require different elevation angles. Furthermore, the support structure must be adjustable in angle. In addition, considering the usage environment, the solar panel brackets must be easy to transport and install.
[0004] In summary, solar panel supports used in meteorological equipment must be lightweight, easy to transport, easy to install (at height), and adjustable with easily adjustable angles, while ensuring structural strength.
[0005] Currently, there are no products on the market that can solve the above problems at once, especially in terms of adjustability. They often use low-strength connection methods such as swivel shafts, which cannot meet the rigidity requirements of the brackets for high-capacity solar panels. On the other hand, products that meet the rigid connection requirements cannot achieve convenient angle adjustment. Utility Model Content
[0006] The technical problem to be solved by this utility model is to provide an adjustable angle bracket for solar panels, so as to solve the problems in the background art.
[0007] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows.
[0008] An adjustable angle bracket for solar panels includes two horizontal bars mounted on a special upright pole for meteorological equipment. Vertical bars are vertically mounted on both sides of the two horizontal bars. Limiting rods are vertically mounted on the same side at both ends of the bottom horizontal bar. The horizontal bars, vertical bars, and limiting rods are perpendicular to each other. An inclined support for mounting the solar panel is provided between the end of the limiting rod and the end of the top horizontal bar. The lower end of the vertical bar has several vertical bar adjustment holes for adjusting the height of the top of the inclined support. The end of the limiting rod facing the horizontal bar has several limiting rod adjustment holes for adjusting the position between the bottom of the inclined support and the horizontal bar.
[0009] The technical solution has been further optimized by providing a pole mounting hole on the crossbar for mounting the bracket onto the special pole for meteorological equipment using a clamp.
[0010] To further optimize the technical solution, the connections of the horizontal bar, vertical bar, diagonal support, and limiting bar are respectively connected by high-strength screws and nuts.
[0011] To further optimize the technical solution, the horizontal bar, vertical bar, diagonal support, and limiting bar are made of aluminum, titanium, and carbon fiber.
[0012] The technological advancements achieved by this utility model are as follows, due to the adoption of the above technical solutions.
[0013] This invention provides an adjustable angle bracket for solar panels that achieves lightweight design while maintaining structural strength. The bracket can be disassembled into its smallest units, containing no other specially shaped components besides straight rods and screws, thus facilitating packaging and transportation. Furthermore, the bracket allows for high-altitude operations to adjust the angle without requiring complete disassembly. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a side view of the present invention.
[0016] The components include: 1. Horizontal bar, 2. Vertical bar mounting hole, 3. Vertical bar, 4. Vertical bar adjustment hole, 5. Diagonal support, 6. Photovoltaic module mounting hole, 7. Limiting rod, and 8. Limiting rod adjustment hole. Detailed Implementation
[0017] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0018] An adjustable angle bracket for solar panels, combined with Figures 1 to 2As shown, the system includes a horizontal bar 1, a vertical bar 3, a limiting bar 7, and an inclined support 5. Each of the horizontal bar 1, vertical bar 3, limiting bar 7, and inclined support 5 is arranged in parallel pairs. The horizontal bar 1 is mounted on a dedicated vertical pole for meteorological equipment. The two vertical bars 3 are respectively positioned perpendicularly on both sides of the two horizontal bars 1. The two limiting bars 7 are respectively positioned perpendicularly at both ends of the bottom horizontal bar 1, and are located on the same side of the horizontal bar 1. The horizontal bar 1, vertical bar 3, and limiting bar 7 are arranged perpendicularly to each other. The two inclined supports 5 are respectively located at the ends of the two limiting bars 7 and the ends of the top horizontal bar 1, and are used to install solar panels.
[0019] The crossbar 1 has a pole mounting hole 2, which is used to install the bracket on the special pole for meteorological equipment by means of a clamp, thus realizing the installation and fixation of the bracket.
[0020] The lower end of the vertical rod 3 has several vertical rod adjustment holes 4, used to adjust the top height of the diagonal support. The end of the limiting rod 7 facing the horizontal rod 1 has several limiting rod adjustment holes 8, used to adjust the position between the bottom of the diagonal support and the horizontal rod, thereby adjusting the tilt angle of the diagonal support. By opening holes in the horizontal rod, vertical rod, and limiting rod, various angles and different sizes of uprights can be accommodated. Several holes are opened at calculated positions on the main material structure. By changing the hole positions, the angle can be adjusted, and while adjusting the angle, the support in the x, y, and z directions remains at right angles, balancing the accuracy of the angle and the stability of the structure.
[0021] The horizontal bar 1, vertical bar 3, diagonal support 5 and limit bar 7 are connected by high-strength screws and nuts, which takes into account both angle adjustment and reliable connection. At the same time, after being disassembled into the smallest unit, the overall volume is small, without irregular shape or sharp corners, which is convenient for packaging and transportation. In particular, there is no need to use adjustment parts such as pivots and sliding sleeves.
[0022] The horizontal bar 1, vertical bar 3, diagonal support 5, and limit bar 7 are made of aluminum, titanium, and carbon fiber, which ensures the strength of the product while achieving its lightweight design.
[0023] When adjusting the angle, this invention first keeps the upper horizontal bar clamp tightly closed, at which point the upper horizontal bar serves to hold the main body in place; then loosen the lower horizontal bar clamp; next, remove the fixing screws and nuts of the vertical bar and lower horizontal bar, and adjust the height to match the hole position on the vertical bar, at which point the lower horizontal bar still serves to support and hold the main body; finally, remove the fixing screws and nuts of the horizontal bar and limit rod, and adjust the angle to match the hole position on the limit rod, at which point both the upper and lower horizontal bars serve to support and hold the main body; reset and tighten all screws and nuts, thus completing the adjustment process (for high-altitude operations) under conditions of incomplete disassembly.
Claims
1. An adjustable angle mount for a solar panel, characterized by: It includes two horizontal bars (1) set on a special pole for meteorological equipment. Vertical bars (3) are set vertically on both sides of the two horizontal bars (1). Limiting bars (7) are set vertically on the same side at both ends of the bottom horizontal bar (1). The horizontal bars (1), vertical bars (3) and limiting bars (7) are perpendicular to each other. An inclined support (5) for installing solar panels is set between the end of the limiting bar (7) and the end of the top horizontal bar (1). Several vertical bar adjustment holes (4) are opened at the lower end of the vertical bar (3) for adjusting the height of the top of the inclined support. Several limiting bar adjustment holes (8) are opened at the end of the limiting bar (7) facing the horizontal bar (1) for adjusting the position between the bottom of the inclined support and the horizontal bar.
2. An adjustable angle mount for a solar panel according to claim 1, wherein: The crossbar (1) has a pole mounting hole (2) for mounting the bracket on the meteorological equipment pole by means of a clamp.
3. The adjustable angle bracket for solar panels according to claim 1, characterized in that: The horizontal bar (1), vertical bar (3), diagonal support (5) and limiting bar (7) are connected by high-strength screws and nuts respectively.