A photovoltaic module support facilitating photovoltaic panel installation

CN224790590UActive Publication Date: 2026-09-22HUACHUANG TIANSHENG (WUHAN) TECH CO LTD
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Patent Information

Application Number
CN202522281440.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-09-22
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于克服上述技术不足,提供一种便于光伏板安装的光伏组件支架,解决现有技术中光伏组件支架,整体体积较大,虽然能够提高光伏板的安装效率,但同时也增加了设备的使用成本和维护难度的技术问题

Benefits of technology

[0014]与现有技术相比,本实用新型提供的一种便于光伏板安装的光伏组件支架,通过在每个底座上设置转动件,分别铰接高度不同的第一支撑杆和第二支撑杆,形成稳定的四点支撑斜面结构,构成倾角支撑框架,无需额外调节机构即可适配光伏板所需的安装倾角;同时,铰接连接允许在运输或收纳时折叠收拢,便于搬运与现场快速展开,承载框由两个安装侧板、限位底板和限位顶板组成,其中限位底板与限位顶板通过连接件与安装侧板可拆卸连接,使得光伏板的装入与取出无需整体拆解支架,仅需松开连接件即可打开限位顶板或底板,实现光伏板的快速置入或更换,大幅缩短现场安装与后期维护时间,限位底板和限位顶板内部均设置有限位件,两个限位件相对设置形成安装区域,该结构可在光伏板放入后自动施加适度夹紧力,既防止组件在风载或震动下位移,又通过弹性缓冲避免刚性挤压造成的玻璃或边框损伤,提升安装安全性与组件寿命,所有构件均为标准化机械部件,可通过常规金属加工工艺批量制造;现场安装仅需按顺序铰接支撑杆、连接承载框并锁紧连接件,无需专业工具或电力支持,普通施工人员即可完成,由此显著降低制造成本、运输成本、安装人工成本及后期维修成本,特别适用于分布式光伏、临时电站或偏远地区项目。

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Abstract

The utility model discloses a photovoltaic module support convenient to photovoltaic board installation, including a plurality of base, install rotator on any one base, two two base are arranged in four corners, and first support rod and second support rod are hinged on rotator respectively, and the upper end of first support rod and second support rod is hinged with the connecting seat, is equipped with the bearing frame on the connecting seat, bearing frame, including two installation side board, spacing bottom plate and spacing top plate, two installation side board all are connected on connecting seat, and spacing bottom plate and spacing top plate are detachably connected through connecting piece between two installation side board from below to top. The utility model has the beneficial effect of: solve the photovoltaic module support in the prior art, the overall volume is bigger, although can improve the installation efficiency of photovoltaic board, but also increased the use cost and maintenance difficulty of equipment's technical problem.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic equipment technology, and specifically to a photovoltaic module bracket that facilitates the installation of photovoltaic panels. Background Technology

[0002] As a key support structure in a photovoltaic power generation system, the main function of photovoltaic module brackets is to securely and stably fix photovoltaic modules and maximize solar radiation reception efficiency through reasonable tilt and azimuth angle arrangements. Modern photovoltaic bracket designs place greater emphasis on ease of installation, cost-effectiveness, and compatibility with modules, becoming an important factor affecting the overall performance and economy of photovoltaic systems. Chinese utility model CN223109940U proposes a "photovoltaic panel mounting bracket". This device mainly improves the installation efficiency of photovoltaic panels. However, the device adopts a complex mechanical structure and a large number of electronic components, such as drive motors and linkage mechanisms. Although it can improve the installation efficiency of photovoltaic panels, it also increases the equipment cost and maintenance difficulty. In addition, the complex structure often results in a large size of the equipment, which increases the difficulty of transportation and on-site installation, especially in some application scenarios with complex terrain or limited space. Utility Model Content

[0003] The purpose of this utility model is to overcome the above-mentioned technical deficiencies and provide a photovoltaic module bracket that facilitates the installation of photovoltaic panels. This solves the technical problem that existing photovoltaic module brackets have a large overall size, which, although improving the installation efficiency of photovoltaic panels, also increases the operating cost and maintenance difficulty of the equipment.

[0004] To achieve the above-mentioned technical objectives, the present invention adopts the following technical solution: In a first aspect, this utility model provides a photovoltaic module support that facilitates the installation of photovoltaic panels, comprising: A plurality of bases, each of which is equipped with a rotating component, the bases are arranged in pairs at four corners, and a first support rod and a second support rod are respectively hinged to the rotating component. The upper ends of the first support rod and the second support rod are both hinged to a connecting seat, and the connecting seat is provided with a bearing frame. The support frame includes two mounting side plates, a limiting bottom plate, and a limiting top plate; both mounting side plates are connected to the connecting seat, and the limiting bottom plate and the limiting top plate are detachably connected from bottom to top between the two mounting side plates via connectors. The limiting bottom plate and the limiting top plate are each provided with limiting members, and an installation area is formed between the two limiting members for placing photovoltaic panels.

[0005] In some embodiments, a ground-breaking cone is fixedly attached to the lower end of any of the bases.

[0006] In some embodiments, the rotating component includes two supports and a shaft. The two supports are equidistantly mounted on the base and maintain a gap. The shaft is rotatably connected between the two supports, and a first support rod or a second support rod is fixed on the shaft.

[0007] In some embodiments, both the first support rod and the second support rod include a first rod body and a second rod body. The first rod body is fixed to the shaft body and has a threaded groove at its upper end. The second rod body has a threaded post at one end facing the threaded groove, and the second rod body is threadedly connected to the first rod body.

[0008] In some embodiments, the height of the second support rod is higher than that of the first support rod, and the second support rod further includes an adjusting rod body. The lower end of the adjusting rod body is provided with a threaded post, and the top of the adjusting rod body is provided with a threaded groove for cooperating with the first rod body and the second rod body.

[0009] In some embodiments, each of the mounting side plates is provided with a sliding groove, and an extension plate is provided on the opposite side of the two mounting side plates.

[0010] In some embodiments, the outer walls of the two mounting side plates are provided with a plurality of mounting screw holes that mate with the connectors, and the limiting bottom plate and the limiting top plate are detachably connected in the mounting screw holes.

[0011] In some embodiments, both the limiting base plate and the limiting top plate are provided with notches and sliders that cooperate with the sliding groove, and both the limiting base plate and the limiting top plate are provided with an extension plate. The extension plate is provided with a hole that cooperates with the mounting screw hole, and the hole and the mounting screw hole are internally threaded with a connector.

[0012] In some embodiments, the connector includes a connecting bolt, one end of which passes through the hole and extends into the mounting screw hole.

[0013] In some embodiments, the limiting member includes a plurality of spring dampers and a limiting plate. The limiting bottom plate and the limiting top plate each have an installation cavity on their opposite sides. A plurality of spring dampers are arranged equidistantly in the installation cavity, and the telescopic ends of the spring dampers are connected to the limiting plate.

[0014] Compared with existing technologies, this utility model provides a photovoltaic module bracket that facilitates photovoltaic panel installation. By setting rotating parts on each base and hinged first and second support rods of different heights, a stable four-point support inclined structure is formed, constituting an inclined support frame. This allows it to adapt to the required installation tilt angle of the photovoltaic panel without the need for additional adjustment mechanisms. Simultaneously, the hinged connection allows for folding and collapsing during transportation or storage, facilitating handling and rapid on-site deployment. The support frame consists of two installation side plates, a limiting bottom plate, and a limiting top plate. The limiting bottom plate and limiting top plate are detachably connected to the installation side plates via connectors, enabling the installation and removal of photovoltaic panels without disassembling the entire bracket. Simply loosening the connectors allows the limiting top plate or bottom plate to be opened, enabling rapid placement or replacement of photovoltaic panels and significantly reducing installation time. Short on-site installation and subsequent maintenance time: Both the bottom and top limiting plates are equipped with limiting components. The two limiting components are arranged opposite each other to form an installation area. This structure can automatically apply a moderate clamping force after the photovoltaic panel is placed, which not only prevents the module from shifting under wind load or vibration, but also avoids damage to the glass or frame caused by rigid compression through elastic buffering, thereby improving installation safety and module life. All components are standardized mechanical parts and can be mass-produced through conventional metal processing technology. On-site installation only requires hinged support rods, connected load-bearing frames and locked connectors in sequence. No special tools or power support are required, and ordinary construction personnel can complete the work. This significantly reduces manufacturing costs, transportation costs, installation labor costs and subsequent maintenance costs, making it particularly suitable for distributed photovoltaic, temporary power stations or remote area projects. Attached Figure Description

[0015] Figure 1 This is an assembly diagram of a photovoltaic module bracket that facilitates the installation of photovoltaic panels, provided by an embodiment of this utility model. Figure 2 This is an assembly diagram of the limiting base plate, limiting top plate, and mounting side plate of the photovoltaic module bracket that facilitates photovoltaic panel installation, provided by an embodiment of this utility model. Figure 3 This is a side view of a photovoltaic module bracket that facilitates the installation of photovoltaic panels, provided by an embodiment of this utility model. Figure 4 This is a schematic diagram of the support frame structure of a photovoltaic module bracket that facilitates photovoltaic panel installation, provided by an embodiment of this utility model. Figure 5 This is a schematic diagram of the back of a photovoltaic module bracket that facilitates the installation of photovoltaic panels, provided in an embodiment of this utility model.

[0016] Explanation of reference numerals in the attached drawings: 1. Base; 11. Breaking cone; 12. Rotating component; 121. Support; 122. Shaft; 13. First support rod; 130. Second support rod; 131. First rod body; 132. Second rod body; 133. Adjusting rod body; 14. Connecting seat; 2. Bearing frame; 21. Mounting side plate; 211. Sliding groove; 212. Extension plate; 213. Mounting screw hole; 3. Limiting bottom plate; 301. Limiting top plate; 302. Notch; 303. Slider; 304. Outer extension plate; 305. Mounting cavity; 4. Connecting component; 41. Connecting bolt; 5. Limiting component; 51. Spring damper; 52. Limiting plate. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0018] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a photovoltaic module that facilitates photovoltaic panel installation according to one embodiment of the present invention. A photovoltaic module that facilitates photovoltaic panel installation includes: Several bases 1, each base 1 is equipped with a rotating component 12, and the bases 1 are arranged in pairs at four corners. The rotating component 12 is respectively hinged with a first support rod 13 and a second support rod 130. The upper ends of the first support rod 13 and the second support rod 130 are both hinged with a connecting seat 14, and the connecting seat 14 is provided with a bearing frame 2. The support frame 2 includes two mounting side plates 21, a limiting bottom plate 3, and a limiting top plate 301. Both mounting side plates 21 are connected to the connecting seat 14. The limiting bottom plate 3 and the limiting top plate 301 are detachably connected from bottom to top between the two mounting side plates 21 through the connecting piece 4. The limiting bottom plate 3 and the limiting top plate 301 are both provided with limiting pieces 5. An installation area is formed between the two limiting pieces 5 for placing photovoltaic panels.

[0019] In this embodiment, by setting a rotating component 12 on each base 1, and hinged to the first support rod 13 and the second support rod 130 with different heights respectively, a stable four-point support inclined surface structure is formed, constituting an inclined support frame. This allows for adaptation to the installation tilt angle required by the photovoltaic panel without the need for an additional adjustment mechanism. At the same time, the hinged connection allows for folding and collapsing during transportation or storage, facilitating handling and rapid on-site deployment. The bearing frame 2 consists of two mounting side plates 21, a limiting bottom plate 3, and a limiting top plate 301. The limiting bottom plate 3 and the limiting top plate 301 are detachably connected to the mounting side plates 21 via connectors 4. This allows for the installation and removal of the photovoltaic panel without disassembling the entire support frame. Simply loosening the connectors 4 is sufficient to open the limiting top plate 301 or the bottom plate, enabling rapid placement or replacement of the photovoltaic panel and significantly shortening the on-site installation time. To minimize the need for later maintenance, both the limiting base plate 3 and the limiting top plate 301 are equipped with limiting components 5. The two limiting components 5 are positioned opposite each other to form an installation area. This structure can automatically apply a moderate clamping force after the photovoltaic panel is placed in, which not only prevents the module from shifting under wind load or vibration, but also avoids damage to the glass or frame caused by rigid compression through elastic buffering, thereby improving installation safety and module life. All components are standardized mechanical parts that can be mass-produced through conventional metal processing technology. On-site installation only requires hinged support rods, connected load-bearing frame 2 and locked connectors 4 in sequence. No special tools or power support are required, and ordinary construction personnel can complete the installation. This significantly reduces manufacturing costs, transportation costs, installation labor costs and later maintenance costs, making it particularly suitable for distributed photovoltaic, temporary power stations or remote area projects.

[0020] In one embodiment, please refer to Figure 1 To improve the stability of multiple supports 121 during installation, a ground-breaking cone 11 is fixed to the lower end of any one of the bases 1.

[0021] In this embodiment, the ground-breaking cone 11 has a pointed conical structure, which can be directly inserted into unhardened surfaces such as soil, sand, and grassland. Workers only need to align the support base 1 with the installation position and press it down manually or with simple tools to complete the fixation, significantly shortening on-site construction time. This is particularly suitable for rapid deployment in distributed photovoltaic systems, temporary power supply systems, or remote areas without infrastructure. After the ground-breaking cone 11 is inserted into the ground, its conical structure forms a wedge effect with the soil, effectively increasing the anchoring depth and contact area between the support and the ground. In the event of strong winds, heavy rain, or minor geological disturbances, it can significantly improve the overturning moment and horizontal anti-slip capability of the support system, thereby ensuring the protection of the photovoltaic system. Compared to traditional supports that rely on flat concrete foundations, the base 1 equipped with the ground-breaking cone 11 can be flexibly applied to irregular or undulating terrains such as slopes, hills, farmland, and woodlands, ensuring the structural stability and operational safety of the components under severe weather conditions. The ground-breaking cone 11 can independently penetrate the soil to the appropriate depth according to local ground conditions, achieving adaptive leveling of the four corners of the support. This avoids structural stress concentration or component installation deviation caused by uneven ground, enhancing the support's adaptability to diverse application scenarios. If the photovoltaic array needs to be inspected, expanded, or rearranged, staff can quickly pull out the ground-breaking cone 11, move the support to the new position, and then reinsert it for fixation. The entire process requires no secondary civil engineering.

[0022] In one embodiment, please refer to Figure 1 - Figure 4 To improve the working efficiency of the first support rod 13 and the second support rod 130, the rotating component 12 includes two supports 121 and a shaft 122. The two supports 121 are equidistantly mounted on the base 1 with a gap. The shaft 122 is rotatably connected between the two supports 121. The first support rod 13 or the second support rod 130 is fixed on the shaft 122. Both the first support rod 13 and the second support rod 130 include a first rod body 131 and a second rod body 132. The first rod body 131 is fixed on the shaft 122 and has a threaded groove at its upper end. The second rod body 132 has a threaded post at one end facing the threaded groove and is threadedly connected to the first rod body 131. The height of the second support rod 130 is higher than that of the first support rod 13. The second support rod 130 also includes an adjusting rod 133. The lower end of the adjusting rod 133 has a threaded post, and its top has a threaded groove for cooperating with the first rod body 131 and the second rod body 132.

[0023] In this embodiment, the rotating component 12 consists of two supports 121 equidistantly arranged on the base 1 with an appropriate gap, and a shaft 122 passing between them. A stable rotating pair is formed between the shaft 122 and the supports 121. This structure avoids the swaying, eccentric loading, or stress concentration problems that are easily caused by single-point hinges, significantly enhancing the torsional and bending resistance of the support rod under long-term wind load, snow load, or vibration conditions, and improving the structural reliability of the whole machine. The first support rod 13 and the second support rod 130 are both composed of a first rod body 131 and a second rod body 132, which are connected by threaded grooves and threaded columns. By rotating the second rod body 132, the total length of the support rod can be finely adjusted, thereby precisely controlling the installation tilt angle of the bearing frame 2 to adapt to the requirements of different latitudes or seasons for the optimal tilt angle. The support rod can be disassembled into short segments, greatly reducing the packaging volume and logistics costs, especially suitable for remote areas or batch delivery scenarios. Damage to the first support rod 130 requires only replacement of the corresponding parts, eliminating the need for complete scrapping and reducing maintenance costs. An adjustment rod 133 is further introduced between the first and second support rods 131 and 132, with threaded posts and grooves at both ends. This allows for threaded engagement with the upper and lower rods, forming a three-stage threaded connection structure. This expands the overall height adjustment range, enabling the bracket to adapt to larger span tilt angles, such as from 10° to 45°, providing finer adjustment steps. This facilitates on-site fine-tuning based on solar altitude angle or terrain slope, maximizing power generation efficiency. While maintaining structural rigidity, flexible adaptation is achieved, preventing structural deformation or loosening due to forced installation. By limiting the height of the second support rod 130 to be higher than the first support rod 13, the two sets of support rods automatically form a tilted frame with a lower front and higher rear after deployment. This eliminates the need for additional angle adjustment mechanisms or pads, providing a standard installation tilt angle that meets the sunlight reception requirements for the photovoltaic panels.

[0024] In one embodiment, please refer to Figure 1 - Figure 5To improve the installation efficiency of the limiting base plate 3 and the limiting top plate 301, sliding grooves 211 are provided on the mounting side plates 21, and extension plates 212 are provided on the opposite sides of the two mounting side plates 21. Multiple mounting screw holes 213 that mate with the connecting piece 4 are provided on the outer walls of both mounting side plates 21. The limiting base plate 3 and the limiting top plate 301 are detachably connected within the mounting screw holes 213. Notches 302 and sliders 303 that mate with the sliding grooves 211 are provided on both the limiting base plate 3 and the limiting top plate 301. The extension plate 304 has a hole that mates with the mounting screw hole 213. The hole and the mounting screw hole 213 are internally threaded with a connector 4. The connector 4 includes a connecting bolt 41. One end of the connecting bolt 41 passes through the hole and extends into the mounting screw hole 213. The limiting member 5 includes several spring dampers 51 and a limiting plate 52. The limiting bottom plate 3 and the limiting top plate 301 each have a mounting cavity 305 on their opposite sides. Multiple spring dampers 51 are equidistantly arranged in the mounting cavity 305. The telescopic ends of the spring dampers 51 are connected to the limiting plate 52.

[0025] In this embodiment, a sliding groove 211 is provided on the mounting side plate 21. The limiting bottom plate 3 and the limiting top plate 301 are respectively provided with sliders 303 and notches 302. The two form a sliding pair during assembly, so that the limiting plate 52 can smoothly slide into the predetermined position along the sliding groove 211 during the installation process, avoiding installation difficulties or damage to the connector 4 caused by manual hole deviation. Especially in high-altitude or confined working spaces, this guide structure greatly reduces the installation difficulty, improves the first-time assembly success rate, and significantly improves on-site construction efficiency. The limiting bottom plate 3 and the limiting top plate 301 are provided with an extension plate 304, on which the opening is aligned with the mounting screw hole 213 on the outer wall of the mounting side plate 21. The connecting bolt 41 passes through and is threaded and locked to form a firm and detachable connection. An extension plate 212 is provided on the opposite side of the mounting side plate 21, which not only provides a mounting plate for the extension plate 304 but also provides a mounting plate for the extension plate 304. The mounting base also acts as a reinforcing rib, effectively improving the overall rigidity of the side plate and preventing bending or twisting under long-term load or bolt preload. This ensures the geometric accuracy of the load-bearing frame 2 and the flatness of the photovoltaic panel mounting surface. The inner sides of the limiting bottom plate 3 and the limiting top plate 301 are provided with mounting cavities 305. Multiple spring dampers 51 are arranged equidistantly in the mounting cavity 305, and their telescopic ends are connected to the limiting plate 52. The limiting plate 52 can automatically fit the photovoltaic panel frame with different thicknesses or tolerance ranges under the action of the spring, achieving reliable limiting. At the same time, the spring dampers 51 can absorb the dynamic loads generated by wind vibration, thermal expansion and contraction, or transportation impact, avoiding glass breakage, frame deformation, or bolt loosening caused by rigid contact. The limiting plate 52 is usually made of soft materials, such as rubber-coated metal plates, combined with an elastic structure to prevent scratches on the photovoltaic panel surface during installation or operation.

[0026] To better understand this utility model, the following is combined with... Figures 1 to 5The technical solution of this utility model is described in detail as follows: In the target installation area, such as grassland, sand, farmland, etc., determine the four corner positions to ensure that the ground is roughly flat or can be naturally leveled. Place the four bases 1 in pairs at the four corners in the predetermined positions. Using manpower or simple tools, such as a rubber mallet, press the soil-breaking cone 11 at the bottom of each base 1 vertically into the ground until the base 1 is stable. If the ground is uneven, each soil-breaking cone 11 can be driven into the soil to different depths independently to achieve self-adaptive leveling of the four corners. Extend the first support rod 13 and the second support rod 130 on each base 1 outward around the axis 122 of the rotating component 12 to form an inclined posture with the front lower and the back higher. Because the overall height of the second support rod 130 is higher than that of the first support rod 13, the rotating component 12... The double support structure 121 ensures that the support rod is stable and does not wobble after deployment. Depending on local latitude or seasonal requirements, the second rod 132 and the adjusting rod 133 in the second support rod 130 can be manually rotated to screw the threaded post into or out of the threaded groove of the first rod 131, finely adjusting the total length of the support rod. The tilt angle, such as 10°–45°, can be precisely set using the first rod 131, adjusting rod 133, and second rod 132. After adjustment, high stability can be maintained by thread self-locking or slight pre-tightening. The connecting seat 14 is hinged to the upper end of the first support rod 13 and the second support rod 130. Two mounting side plates 21 are pre-installed or installed on-site on the connecting seat 14. The outer wall of the mounting side plate 21 has an extension plate 212 and multiple mounting screw holes 2. 13. For subsequent connection of the limiting plate 52, align the limiting base plate 3 with the lower position between the two mounting side plates 21; so that the sliders 303 on both sides are embedded into the sliding grooves 211 on the mounting side plates 21, and the notches 302 are aligned with the grooves; push the limiting base plate 3 horizontally into place along the sliding grooves 211; align the holes on the outer extension plate 304 of the limiting base plate 3 with the mounting screw holes 213 of the mounting side plates 21; insert the connecting bolts 41 and tighten them to complete the rigid fixation of the limiting base plate 3, and place the photovoltaic module from above into the area initially supported by the limiting base plate 3; the photovoltaic panel frame falls into the limiting plate 52 in the inner mounting cavity 305 of the limiting base plate 3, and the spring damper 51 automatically compresses and provides initial clamping force, and the limiting top plate 301 is placed from above. Align the installation position, with the slider 303 and notch 302 also engaging with the sliding groove 211 and sliding in along the groove. After the hole of the extension plate 304 is aligned with the mounting screw hole 213, insert and tighten the connecting bolt 41. The limiting plate 52 on the inner side of the limiting top plate 301 presses down on the upper edge of the photovoltaic panel under the action of the spring damper 51. The upper and lower limiting plates 52 work together to form the installation area, fixing the photovoltaic panel through elastic clamping while providing buffer protection. When maintenance or disassembly is required later, loosen the connecting bolt 41 on the limiting top plate 301 and pull the limiting top plate 301 outward along the sliding groove 211; remove or replace the photovoltaic module. If a thorough overhaul of the bracket is required, the limiting bottom plate 3 can be further removed; after installing the new module, reinstall the limiting plate 52 and lock it according to the same procedure.

[0027] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.

Claims

1. A photovoltaic module support for easy installation of photovoltaic panels, characterized in that, include: A plurality of bases, each of which is equipped with a rotating component, the bases are arranged in pairs at four corners, and a first support rod and a second support rod are respectively hinged to the rotating component. The upper ends of the first support rod and the second support rod are both hinged to a connecting seat, and the connecting seat is provided with a bearing frame. The support frame includes two mounting side plates, a limiting bottom plate, and a limiting top plate; both mounting side plates are connected to the connecting seat, and the limiting bottom plate and the limiting top plate are detachably connected from bottom to top between the two mounting side plates via connectors. The limiting bottom plate and the limiting top plate are each provided with limiting members, and an installation area is formed between the two limiting members for placing photovoltaic panels.

2. A photovoltaic module support for easy installation of photovoltaic panels according to claim 1, characterized in that: A ground-breaking cone is fixedly connected to the lower end of any of the bases.

3. A photovoltaic module support for easy installation of photovoltaic panels according to claim 1, characterized in that: The rotating component includes two supports and a shaft. The two supports are equidistantly mounted on the base and maintain a gap. The shaft is rotatably connected between the two supports, and a first support rod or a second support rod is fixed on the shaft.

4. A photovoltaic module support for easy installation of photovoltaic panels according to claim 3, characterized in that: Both the first support rod and the second support rod include a first rod body and a second rod body. The first rod body is fixed to the shaft body and has a threaded groove at its upper end. The second rod body has a threaded post at one end facing the threaded groove, and the second rod body is threadedly connected to the first rod body.

5. A photovoltaic module support for easy installation of photovoltaic panels according to claim 4, characterized in that: The second support rod is higher than the first support rod, and the second support rod also includes an adjusting rod body. The lower end of the adjusting rod body is provided with a threaded post, and the top of the adjusting rod body is provided with a threaded groove for cooperating with the first rod body and the second rod body.

6. A photovoltaic module support for easy installation of photovoltaic panels according to claim 1, characterized in that: Each of the mounting side plates is provided with a sliding groove, and an extension plate is provided on the opposite side of the two mounting side plates.

7. A photovoltaic module support for easy installation of photovoltaic panels according to claim 6, characterized in that: The outer walls of both mounting side plates are provided with multiple mounting screw holes that mate with the connectors. The limiting bottom plate and the limiting top plate are detachably connected to the mounting screw holes.

8. A photovoltaic module support for easy installation of photovoltaic panels according to claim 7, characterized in that: Both the limiting base plate and the limiting top plate are provided with notches and sliders that cooperate with the sliding groove. Both the limiting base plate and the limiting top plate are provided with an extension plate. The extension plate is provided with a hole that cooperates with the mounting screw hole. The hole and the mounting screw hole are internally threaded with a connector.

9. A photovoltaic module support for easy installation of photovoltaic panels according to claim 8, characterized in that: The connector includes a connecting bolt, one end of which passes through the hole and extends into the mounting screw hole.

10. A photovoltaic module support for easy installation of photovoltaic panels according to claim 1, characterized in that: The limiting component includes several spring dampers and a limiting plate. The limiting bottom plate and the limiting top plate each have an installation cavity on their opposite sides. Multiple spring dampers are arranged at equal intervals in the installation cavity, and the telescopic ends of the spring dampers are connected to the limiting plate.

Citation Information

Patent Citations

  • Photovoltaic panel mounting bracket

    CN223109940U