Adjusting device of solar panel

By employing two rotating drive components working in tandem in the solar panel adjustment device, combined with a light intensity sensor and a control module, flexible adjustment of the solar panel's orientation angle is achieved. This solves the problem of insufficient adjustment flexibility in existing technologies, improves the degree of automation, and reduces production costs.

CN223681021UActive Publication Date: 2025-12-16SHENZHEN BASEUS TECH CO LTD
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Patent Information

Application Number
CN202423316948.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing solar panel adjustment devices, with the cooperation of horizontal rotation drive components and pitch rotation drive components, lack sufficient flexibility in adjusting the orientation angle.

Method used

Two rotating drive components work together to flexibly adjust the solar panel by rotating around different axes. Combined with a light intensity sensor and control module, the orientation is automatically adjusted. The use of bevel gear and spur gear transmission structure simplifies the component design.

Benefits of technology

It enables flexible adjustment of the solar panel orientation angle, improves the flexibility and automation of the adjustment device, and reduces production costs and component complexity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjusting device of a solar panel. The adjusting device comprises a base, the solar panel and a rotation driving assembly. The solar panel is movably arranged on the base and can rotate around a first axis and a second axis relative to the base, and the directions of the first axis and the second axis are different; the two rotation driving assemblies are arranged between the base and the solar panel, and the two rotation driving assemblies can be in linkage fit with each other so as to drive the solar panel to move relative to the base. Through mutual linkage cooperation of the two rotation driving assemblies, the solar panel can rotate around the first axis and the second axis in different directions relative to the base, so that the orientation angle of the solar panel is adjusted flexibly, and the orientation angle of the solar panel is adjusted more flexibly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of solar cell, especially a kind of solar panel adjusting device. BACKGROUND

[0002] The adjusting device of some existing solar panels includes base, solar panel, horizontal rotation driving assembly and pitching rotation driving assembly, the solar panel can be horizontally rotated and pitched relative to the base, the horizontal rotation driving assembly is used to drive the solar panel to be horizontally rotated relative to the base;Pitching rotation driving assembly is used to drive the solar panel to be pitched relative to the base, and the two cooperate to realize the orientation angle adjustment of solar panel.However, the adjusting device of the current solar panel, horizontal rotation driving assembly and pitching rotation driving assembly respectively carry out movement adjustment of different directions to solar panel, so that the flexibility of solar panel adjustment orientation angle is insufficient. SUMMARY

[0003] The utility model aims at at least one of the technical problems existing in prior art is solved.For this purpose, the utility model provides a kind of solar panel adjusting device, improves the flexibility of solar panel adjustment orientation angle.

[0004] According to the adjusting device of solar panel of the utility model embodiment, including base, solar panel and rotation driving assembly.Solar panel is movably arranged in the base and can be rotated relative to the base around first axis and second axis, and the first axis is different from the direction of the second axis;Two rotation driving assemblies are arranged between the base and the solar panel, and the two rotation driving assemblies can be interconnected to cooperate to drive the solar panel to move relative to the base.

[0005] According to the adjusting device of solar panel of the utility model embodiment, at least has following beneficial effect:by the interconnection of two rotation driving assemblies, the orientation angle of solar panel can be adjusted flexibly by rotating the solar panel relative to the base around different first axis and second axis, so that the solar panel adjustment orientation angle is more flexible.

[0006] According to some embodiments of the utility model, still include rotation connection structure, rotation connection structure is connected in rotation around first axis in base, solar panel is connected in rotation around second axis in rotation connection structure, base is provided with first transmission part around first axis, every rotation drive subassembly includes second transmission part and rotation driver, second transmission part is provided with and is connected in rotation in solar panel around second axis, rotation driver is arranged in solar panel, first axis is located between two second transmission part, second transmission part and first transmission part transmission cooperation, rotation driver can drive corresponding second transmission part clockwise rotation or counterclockwise rotation, to make second transmission part can revolve around first axis relative to first transmission part motion.

[0007] According to some embodiments of the utility model, first axis and second axis are perpendicular to each other, first transmission part is first bevel gear, second transmission part is second bevel gear, second bevel gear is engaged with first bevel gear.

[0008] According to some embodiments of the utility model, rotation connection structure is provided with first rotation shaft along first axis direction, base is provided with first matching hole, first rotation shaft is arranged in first transmission part and is connected in rotation in first matching hole, both sides of rotation connection structure are provided with second rotation shaft along second axis direction respectively, solar panel is provided with two second matching holes, second rotation shaft is connected in rotation in second matching hole one by one, two second transmission parts are rotatably arranged in two second rotation shafts one by one.

[0009] According to some embodiments of the utility model, base is provided with connecting ring, connecting ring forms first matching hole, first rotation shaft is provided with first limiting portion and second limiting portion, connecting ring is located between first limiting portion and second limiting portion.

[0010] According to some embodiments of the utility model, rotation driver includes motor, first spur gear and second spur gear, first spur gear is connected in output shaft of motor, second spur gear is coaxially arranged with corresponding second transmission part and rotates synchronously, first spur gear is engaged with second spur gear.

[0011] According to some embodiments of the utility model, still include light intensity sensor and control module, light intensity sensor is arranged in solar panel, control module is electrically connected with light intensity sensor and two rotation drive subassembly.

[0012] According to some embodiments of the utility model, solar panel includes main plate body, light intensity sensor is located in one end of main plate body.

[0013] According to some embodiments of the present application, the solar panel comprises a main panel body and a protective shell, the protective shell is arranged on one side of the main panel body and forms a containing cavity with the protective shell, and the first transmission member and the rotating drive assembly are located in the containing cavity.

[0014] According to some embodiments of the present application, the protective shell is provided with a clearance hole, the base is provided with a supporting rod, the supporting rod is arranged in the clearance hole and fixedly connected with the first transmission member, the clearance hole is strip-shaped and extends around the second axis, and the outer periphery of the supporting rod is provided with a cover plate, the cover plate is arranged in the clearance hole, and the cover plate is slidingly connected to the protective shell around the second axis.

[0015] The additional aspects and advantages of the present application will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0016] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:

[0017] Figure 1 It is a perspective view of the adjusting device of the solar panel according to the embodiments of the present application;

[0018] Figure 2 It is a perspective view of part of the structure of the adjusting device of the solar panel according to the embodiments of the present application;

[0019] Figure 3 It is a perspective view of the adjusting device of the solar panel according to the embodiments of the present application; Figure 1 It is a sectional view of the A-A direction of the adjusting device of the solar panel according to the embodiments of the present application;

[0020] Figure 4 It is an exploded view of the adjusting device of the solar panel according to the embodiments of the present application.

[0021] REFERENCE NUMERALS:

[0022] Base 100, first transmission member 110, first matching hole 120, connecting ring 130, supporting rod 140, cover plate 150, lower base 160;

[0023] Solar panel 200, first axis 201, second axis 202, second matching hole 210, main panel body 220, protective shell 230, clearance hole 231, containing cavity 240;

[0024] Rotating drive assembly 300, second transmission member 310, rotating drive 320, motor 321, first straight gear 322, second straight gear 323;

[0025] Rotary connection structure 400, first rotating shaft 410, first limiting portion 411, second limiting portion 412, second rotating shaft 420;

[0026] Light intensity sensor 500;

[0027] Control module 600. DETAILED DESCRIPTION

[0028] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary only, and are used only for explaining the present application, and cannot be understood as a limitation of the present application.

[0029] In the description of the present application, it should be understood that, in relation to the orientation description, for example, the orientation or position relationship indicated by up, down, etc. is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0030] In the description of the present application, the plural refers to two or more. If there is a description of first, second, etc., it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.

[0031] In the description of the present application, unless otherwise explicitly limited, the words such as setting, installing, connecting, etc. should be broadly understood, and the person skilled in the art can reasonably determine the specific meaning of the above words in the present application in combination with the specific content of the technical solution.

[0032] Referring to Figures 1 to 4 The adjusting device of the solar panel 200 of the embodiment of the present application comprises a base 100, a solar panel 200 and a rotary driving assembly 300. The solar panel 200 is movably arranged on the base 100 and can rotate relative to the base 100 about a first axis 201 and a second axis 202, the first axis 201 and the second axis 202 are different in direction; two rotary driving assemblies 300 are arranged between the base 100 and the solar panel 200, and the two rotary driving assemblies 300 can be interconnected to drive the solar panel 200 to move relative to the base 100.

[0033] By the interlinking cooperation of the two rotating driving assemblies 300, the solar panel 200 can be rotated about the first axis 201 and the second axis 202 in different directions relative to the base 100, so as to flexibly adjust the orientation angle of the solar panel 200, thereby making the solar panel 200 more flexible in adjusting the orientation angle.

[0034] Specifically, the first axis 201 is arranged in the up-down direction, and the second axis 202 is arranged in the horizontal direction, so as to facilitate the adjustment of the horizontal orientation and the pitch angle of the solar panel 200. In some embodiments, the first axis 201 and the second axis 202 can also be arranged in other directions, which are not limited herein.

[0035] In an embodiment, a rotating connection structure 400 is further included, the rotating connection structure 400 is rotatably connected to the base 100 about the first axis 201, the solar panel 200 is rotatably connected to the rotating connection structure 400 about the second axis 202, the base 100 is provided with a first transmission member 110 around the first axis 201, each rotating driving assembly 300 includes a second transmission member 310 and a rotating driver 320, the second transmission member 310 is arranged around the second axis 202 and rotatably arranged on the solar panel 200, the rotating driver 320 is arranged on the solar panel 200, the first axis 201 is located between the two second transmission members 310, the second transmission member 310 is in transmission cooperation with the first transmission member 110, and the rotating driver 320 can drive the corresponding second transmission member 310 to rotate clockwise or counterclockwise, so that the second transmission member 310 can move relative to the first transmission member 110 around the first axis 201.

[0036] When the two rotating driving assemblies 300 are linked together, the rotating connection structure 400 and the solar panel 200 can be driven to rotate relative to the base 100 about the first axis 201, and the solar panel 200 can be driven to rotate relative to the rotating connection structure 400 about the second axis 202, that is, the function of driving the solar panel 200 to rotate relative to the base 100 about the first axis 201 and the second axis 202 is realized, and the structure is relatively simple. Specifically, when the rotating drivers 320 of the two rotating driving assemblies 300 both drive the second transmission members 310 to rotate clockwise or counterclockwise, the two second transmission members 310 can move relative to the first transmission member 110 about the first axis 201, so as to adjust the horizontal orientation of the solar panel 200 and the rotating connection structure 400 relative to the base 100; when one of the rotating drivers 320 drives the second transmission member 310 to rotate clockwise and the other rotating driver 320 drives the second transmission member 310 to rotate counterclockwise, the movement trends of the two second transmission members 310 are opposite, so that the two second transmission members 310 do not move relative to the first transmission member 110, and the solar panel 200 and the two rotating drivers 320 rotate relative to the second transmission member 310 about the second axis 202, so as to adjust the pitch angle of the solar panel 200 relative to the base 100; the orientation angle adjustment of the solar panel 200 can be completed through the two rotating drivers 320, the first transmission member 110 and the two second transmission members 310, so that the structure of the adjustment device of the solar panel 200 is simplified, and the production cost is reduced.

[0037] It can be imagined that in other embodiments, the solar panel 200 can also be rotatably arranged on the base 100 through a spherical joint, and at this time the solar panel 200 can rotate relative to the base 100 about the first axis 201 and the second axis 202 through the spherical joint.

[0038] In embodiments, the first axis 201 and the second axis 202 are perpendicular to each other, the first transmission member 110 is a first bevel gear, and the second transmission member 310 is a second bevel gear, and the second bevel gear meshes with the first bevel gear.

[0039] The first transmission member 110 adopts a first bevel gear, and the second transmission member 310 adopts a second bevel gear, so that when the second bevel gear rotates, the second bevel gear can move relative to the first bevel gear about the first axis 201 through meshing with the first bevel gear, and the structure is simple and easy to implement. It can be imagined that in other embodiments, the first transmission member 110 can also adopt a friction wheel, and the second transmission member 310 also adopts a friction wheel; or the first transmission member 110 adopts an annular rack, and the second transmission member 310 adopts a gear, etc.

[0040] In the embodiment, the rotating connection structure 400 is provided with a first rotating shaft 410 along the direction of the first axis 201, the base 100 is provided with a first matching hole 120, the first rotating shaft 410 is arranged in the first transmission member 110 and is rotatably connected to the first matching hole 120, the rotating connection structure 400 is provided with a second rotating shaft 420 along the direction of the second axis 202 at two sides, the solar panel 200 is provided with two second matching holes 210, the second rotating shaft 420 is rotatably connected to the second matching hole 210 one by one, and two second transmission members 310 are rotatably arranged in the two second rotating shafts 420 one by one. The rotating connection structure 400 described above can rotate around the first rotating shaft 410 relative to the base 100 and rotate around the second rotating shaft 420 relative to the solar panel 200, and the structure is simple and relatively compact in layout with the first transmission member 110 and the second transmission member 310.

[0041] It can be imagined that, in other embodiments, the rotating connection structure 400 can also be provided with the first matching hole 120 and the second matching hole 210, the base 100 is provided with the first rotating shaft 410, and the solar panel 200 is provided with the second rotating shaft 420; or the rotating connection structure 400 can also be a ball joint, and the solar panel 200 is movably arranged on the base 100 through the ball joint to horizontally rotate and pitch relative to the base 100.

[0042] In the embodiment, the base 100 is provided with a connecting ring 130, the connecting ring 130 forms the first matching hole 120, the first rotating shaft 410 is provided with a first limiting part 411 and a second limiting part 412, and the connecting ring 130 is located between the first limiting part 411 and the second limiting part 412. By arranging the connecting ring 130, the first limiting part 411 can contact the upper side of the connecting ring 130, the second limiting part 412 can contact the lower side of the connecting ring 130, the up-down position of the first rotating shaft 410 relative to the connecting ring 130 is limited, and the risk of the first rotating shaft 410 coming out of the base 100 is reduced.

[0043] Specifically, the connecting ring 130 can be a bearing, so as to reduce the friction between the rotating connection structure 400 and the base 100.

[0044] In the embodiment, the first rotating shaft 410 is provided with a screw, and the screw forms the second limiting part 412. By forming the second limiting part 412 through the screw, when the screw is not installed, the first rotating shaft 410 can be inserted into the first matching hole 120, and then the screw is installed on the first rotating shaft 410, at this time, the installation and limiting of the first rotating shaft 410 relative to the base 100 can be completed, and the assembly is convenient. It can be imagined that a resilient pin can also be arranged on the first rotating shaft 410, before the first rotating shaft 410 is inserted into the first matching hole 120, the resilient pin is retracted into the first rotating shaft 410, after the insertion of the first rotating shaft 410 is completed, the resilient pin is popped out and forms the second limiting part 412.

[0045] In the embodiment, the rotating driver 320 comprises a motor 321, a first spur gear 322 and a second spur gear 323, the first spur gear 322 is connected to the output shaft of the motor 321, the second spur gear 323 is coaxially arranged with the corresponding second transmission member 310 and synchronously rotates, and the first spur gear 322 is engaged with the second spur gear 323. The motor 321 drives the second transmission member 310 to rotate through the first spur gear 322 and the second spur gear 323, so that the rotating speed and torque of the second transmission member 310 can reach a suitable degree, and the use effect is better. It can be imagined that in other embodiments, the rotating driver 320 can also be directly used as the motor 321, the output shaft of the motor 321 is directly connected to drive the second transmission member 310, or the rotating driver 320 can also drive the second transmission member 310 to rotate through a belt transmission, a chain transmission or other transmission structures. It can be imagined that the rotating driver 320 can also be a structure using other output rotating power, such as an internal combustion engine.

[0046] In the embodiment, the second spur gear 323 and the second transmission member 310 are an integral structure, so that the second spur gear 323 and the second transmission member 310 can synchronously rotate, the number of parts is reduced, and the assembly structure is simplified. It can be understood that in other embodiments, the second spur gear 323 and the second transmission member 310 can also be produced separately, and then locked by structures such as screws or bolts, so that the two synchronously rotate; or the second spur gear 323 and the second transmission member 310 are fixed on the same connecting shaft, so that the two synchronously rotate.

[0047] In the embodiment, the light intensity sensor 500 and the control module 600 are further included, the light intensity sensor 500 is arranged on the solar panel 200, and the control module 600 is electrically connected with the light intensity sensor 500 and the two rotating driving assemblies 300. The light intensity sensor 500 can detect the light intensity, the control module 600 can adjust the orientation angle of the photovoltaic mechanism by controlling the operation and linkage cooperation of the two rotating driving assemblies 300, the cooperation of the light intensity sensor 500 and the control module 600 provides a physical basis for the solar panel 200 to automatically orient to the orientation angle with the strongest sunlight, and the use convenience of the adjusting device of the solar panel 200 is improved.

[0048] Specifically, the control module 600 can adopt a structure with a control circuit, such as a circuit board or a single-chip microcomputer.

[0049] In the embodiment, the solar panel 200 comprises a main plate body 220, the light intensity sensor 500 is located at one end of the main plate body 220, the light intensity sensor 500 does not need to block the working area of the main plate body 220, and the installation position is relatively appropriate.

[0050] In the embodiment, the solar panel 200 comprises a main panel body 220 and a protective shell 230, the protective shell 230 is arranged on one side of the main panel body 220 and encloses the protective shell 230 to form a containing cavity 240, and the first transmission member 110 and the rotating driving assembly 300 are located in the containing cavity 240. The protective shell 230 is arranged to enclose the containing cavity 240 with the main panel body 220, which can reduce the pollution and corrosion between the first transmission member 110, the second transmission member 310 and the rotating driver 320 caused by external dust, fog and the like, avoid the exposure of internal components, and prolong the service life of the device.

[0051] In the embodiment, the protective shell 230 is provided with a clearance hole 231, the base 100 is provided with a support rod 140, the support rod 140 is arranged in the clearance hole 231 and fixedly connected with the first transmission member 110, the clearance hole 231 is strip-shaped and extends around the second axis 202, the outer periphery of the support rod 140 is provided with a cover plate 150, the cover plate 150 is arranged on the clearance hole 231, and the cover plate 150 is slidingly connected to the protective shell 230 around the second axis 202. Since the solar panel 200 needs to be tilted relative to the base 100, the protective shell 230 is provided with a strip-shaped hole, which can avoid the support rod 140 of the base 100 during the tilting of the solar panel 200. Since the clearance hole 231 is strip-shaped, the support rod 140 occupies part of the area of the clearance hole 231, and dust or fog may enter the containing cavity 240 from the unoccupied area of the strip-shaped hole. Therefore, the outer periphery of the support rod 140 is provided with a cover plate 150, the cover plate 150 can cover the clearance hole 231 and is slidingly connected to the protective shell 230 around the second axis 202, and when the solar panel 200 is tilted, the cover plate 150 slides relative to the clearance hole 231, so that the cover plate 150 always covers the clearance hole 231, thereby reducing the risk of dust or fog entering the containing cavity 240 from the strip-shaped hole.

[0052] Specifically, the protective shell 230 is provided with a sliding rail around the second axis 202, the cover plate 150 is provided with a sliding groove, and the sliding rail is slidingly connected to the sliding groove, so that the cover plate 150 can slide relative to the protective shell 230. It can be imagined that in other embodiments, a guide column can also be arranged on the protective shell 230 around the second axis 202, a guide sleeve is arranged on the cover plate 150, the guide column is slidingly arranged in the guide sleeve, so that the cover plate 150 can slide relative to the protective shell 230.

[0053] Specifically, the control module 600 is also installed in the containing cavity 240, and the protection effect on the control module 600 is good.

[0054] Specifically, the base includes a lower support 160 and a support rod 140, the lower support 160 is provided with a plug hole, and the support rod 140 is arranged in the up-down direction and is inserted into the plug hole. The upper end of the support rod 140 is formed with a mounting block, a first bevel gear is mounted above the mounting block, and the first bevel gear is fixed to the mounting block by a screw. The inner hole of the first bevel gear is provided with a connecting ring 130, and the connecting ring 130 forms a first matching hole 120. The support rod 140 is inserted into a cover plate 150, and the cover plate 150 is located between the mounting block and the upper end of the lower support 160.

[0055] Two second bevel gears are respectively located on the horizontal two sides of the first bevel gear, and two corresponding rotating drivers 320 are also respectively located on the horizontal two sides of the first bevel gear. The second matching hole 210 is formed in the protection shell 230 through a bearing, and the end of the second rotating shaft 420 is inserted into the second matching hole 210. The second bevel gear is sleeved on the second rotating shaft 420. The motor 321 is fixed to the protection shell 230.

[0056] Specifically, the two motors 321 can make the solar panel 200 simultaneously horizontally rotate and pitch rotate according to different operating states, and the adjustment flexibility is good.

[0057] Specifically, the rotating connection structure 400 is an integral molding, which is convenient to assemble.

[0058] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0059] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A device for adjusting a solar panel, characterized in that, The utility model relates to a solar energy panel drive mechanism, including: Base (100); Solar panel (200), activity sets up in base (100) and can rotate relative to base (100) around first axis (201) and second axis (202), first axis (201) with second axis (202) direction is different; Two rotation drive assemblies (300) are arranged between the base (100) and the solar panel (200), and the two rotation drive assemblies (300) can be interconnected to drive the solar panel (200) to move relative to the base (100).

2. The device for adjusting solar panels according to claim 1, characterized in that: It also includes a rotating connection structure (400) that is rotatably connected to the base (100) around the first axis (201), and the solar panel (200) is rotatably connected to the rotating connection structure (400) around the second axis (202). The base (100) is provided with a first transmission member (110) around the first axis (201), each rotation drive assembly (300) includes a second transmission member (310) and a rotation driver (320), the second transmission member (310) is arranged around the second axis (202) and rotatably arranged in the solar panel (200), the rotation driver (320) is arranged in the solar panel (200), the first axis (201) is located between the two second transmission members (310), the second transmission member (310) is in transmission cooperation with the first transmission member (110), and the rotation driver (320) can drive the corresponding second transmission member (310) to rotate clockwise or counterclockwise, so that the second transmission member (310) can move relative to the first transmission member (110) around the first axis (201).

3. The device for adjusting solar panels according to claim 2, characterized in that: The first axis (201) and the second axis (202) are perpendicular to each other, the first transmission member (110) is a first bevel gear, the second transmission member (310) is a second bevel gear, and the second bevel gear is engaged with the first bevel gear.

4. The solar panel adjustment device of claim 2, wherein: The rotating connection structure (400) is provided with a first rotating shaft (410) along the direction of the first axis (201), the base (100) is provided with a first matching hole (120), the first rotating shaft (410) penetrates the first transmission member (110) and is rotatably connected to the first matching hole (120), and the rotating connection structure (400) is provided with a second rotating shaft (420) on both sides along the direction of the second axis (202). The solar panel (200) is provided with two second matching holes (210), and the second rotating shaft (420) is rotatably connected to the second matching hole (210) one by one, and the two second transmission members (310) are rotatably sleeved on the two second rotating shafts (420) one by one.

5. The solar panel adjustment device of claim 4, wherein: The base (100) is provided with a connecting ring (130) forming the first matching hole (120), the first rotating shaft (410) is provided with a first limiting part (411) and a second limiting part (412), and the connecting ring (130) is located between the first limiting part (411) and the second limiting part (412).

6. The solar panel adjustment device of claim 2, wherein: The rotating driver (320) comprises a motor (321), a first spur gear (322) and a second spur gear (323), the first spur gear (322) is connected to the output shaft of the motor (321), the second spur gear (323) is coaxially arranged with the corresponding second transmission member (310) and synchronously rotates, and the first spur gear (322) is meshed with the second spur gear (323).

7. The solar panel adjustment device of claim 1, wherein: Further comprising a light intensity sensor (500) and a control module (600), the light intensity sensor (500) is arranged on the solar panel (200), and the control module (600) is electrically connected with the light intensity sensor (500) and the two rotating drive assemblies (300).

8. The device for adjusting solar panels according to claim 7, characterized in that: The solar panel (200) comprises a main plate body (220), and the light intensity sensor (500) is located at one end of the main plate body (220).

9. The solar panel adjustment device of claim 2, wherein: The solar panel (200) comprises a main plate body (220) and a protective shell (230), the protective shell (230) is arranged on one side of the main plate body (220) and forms a containing cavity (240) together with the protective shell (230), and the first transmission member (110) and the rotating drive assembly (300) are located in the containing cavity (240).

10. The solar panel adjustment device of claim 9, wherein: The protective shell (230) is provided with a let-hole (231), the base (100) is provided with a support rod (140), the support rod (140) is arranged in the let-hole (231) and is fixedly connected with the first transmission member (110), the let-hole (231) is strip-shaped and extends around the second axis (202), and the outer periphery of the support rod (140) is provided with a cover plate (150), the cover plate (150) is arranged on the let-hole (231), and the cover plate (150) is slidably connected with the protective shell (230) around the second axis (202).