Head-up type solar lamp
By designing adjustment and heat dissipation mechanisms, the overhead solar lamp solves the problems of fixed angle and high-temperature heat dissipation, achieving automatic adjustment and efficient heat dissipation under different lighting conditions, thus extending its service life.
Patent Information
- Application Number
- CN202520560539.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-27
AI Technical Summary
Existing solar lights have a fixed angle after installation, which cannot balance the illumination area and the light coverage of the solar panel. In addition, they have poor heat dissipation performance in high-temperature environments, which affects their service life.
A tilting solar lamp was designed, which adjusts the angle of the lamp housing through an adjustment mechanism and improves heat dissipation performance by combining a heat dissipation mechanism, including a motor, a drive gear, a driven gear ring, a rotating shaft, heat dissipation holes, a dustproof mesh, and a waterproof and breathable membrane, to achieve the tilting and heat dissipation functions of the lamp housing.
It enables automatic adjustment of the solar panel's light requirements under different lighting conditions, and improves heat dissipation performance and extends service life in high-temperature environments.
Smart Images

Figure CN223965345U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting fixtures, specifically to a head-up solar lamp. Background Technology
[0002] Solar lights are electric lights that convert solar energy into electricity using solar panels. Even during the day, and on cloudy days, this solar generator (solar panel) can collect and store solar energy. As a safe and environmentally friendly new type of light, solar lights are gaining increasing attention.
[0003] In existing technologies, the angle of conventional solar lights is fixed after installation. During use, it is impossible to balance the lighting area and the area of the solar panel receiving sunlight, resulting in only meeting the needs of lighting or receiving sunlight. This greatly affects the lighting and illumination requirements of solar lights. Furthermore, since the solar panel is set outdoors, the sealed lamp shell causes the internal electrical components to overheat in the hot summer, reducing the lifespan of the electrical components. Utility Model Content
[0004] This invention provides a head-up solar light to solve the problems in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a head-up solar lamp, including a mounting box, a control mechanism fixedly installed inside the mounting box, a box cover installed on the left side of the mounting box, a mounting frame installed near the middle of the right side wall of the mounting box, an adjustment mechanism fixedly installed between the front and rear inner walls of the mounting frame, and a rotating cover snapped onto the right side of the mounting frame, the front and rear sides of the adjustment mechanism being connected and fixed to the lamp housing through the mounting mechanism, a solar panel embedded near the upper side of the left side wall of the lamp housing, an LED light panel and a transparent lens installed near the right side of the inner wall of the lamp housing, and a heat dissipation mechanism provided on the front and rear side walls of the lamp housing.
[0006] Furthermore, the control mechanism includes a control circuit board, a battery, and a photosensitive sensor assembly. The control circuit board and the battery are mounted on the inner wall of the mounting box, and the photosensitive sensor assembly is embedded in the lower edge of the right side wall of the mounting box.
[0007] Furthermore, the mounting box corresponding to the photosensitive sensor assembly has mounting holes on its right side wall.
[0008] Furthermore, the adjustment mechanism includes a motor, a driving gear, a driven gear ring, and a rotating shaft. The motor is fixedly mounted on a mounting bracket, and a driving gear is fixedly mounted on the output shaft of the motor. The driving gear meshes with the driven gear ring, and the driven gear ring is fixedly mounted on the rotating shaft.
[0009] Furthermore, the rotating shaft is a hollow structure with openings on both the front and rear sides, and a threading hole is provided on the left side of the rotating shaft.
[0010] Furthermore, the mounting mechanism includes a mounting groove and a pressure plate. The mounting groove is provided at both the front and rear positions of the left side wall of the lamp housing corresponding to the rotating shaft. The pressure plate installs the rotating shaft into the mounting groove of the lamp housing.
[0011] Furthermore, the heat dissipation mechanism includes heat dissipation holes, a dustproof mesh, and a waterproof and breathable membrane. Heat dissipation holes are evenly provided on the front and rear side walls of the lamp housing, and a dustproof mesh and a waterproof and breathable membrane are sequentially fixed on the inner wall of the lamp housing corresponding to the heat dissipation holes.
[0012] Compared with the prior art, the present invention provides a head-up solar lamp with the following advantages:
[0013] 1. This overhead solar light, through the combination of a control mechanism and an adjustment mechanism, allows the lamp housing to tilt, thereby adjusting the angle of the solar light. It can meet the solar panel's lighting needs during the day and provide illumination when sunlight is scarce, making it more convenient to use.
[0014] 2. This overhead solar lamp improves its heat dissipation performance by setting up a heat dissipation mechanism to cool the front and rear side walls of the lamp housing, which is beneficial for use in high-temperature environments and extends its service life. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0016] Figure 2 This is an exploded front view of the present invention;
[0017] Figure 3 This is a rear view of the present invention;
[0018] Figure 4 This is an exploded rear view of the present invention.
[0019] In the diagram: 1. Mounting box; 2. Control mechanism; 201. Control circuit board; 202. Battery; 203. Photosensitive sensor assembly; 3. Box cover; 4. Mounting bracket; 5. Adjustment mechanism; 501. Motor; 502. Drive gear; 503. Driven gear ring; 504. Rotating shaft; 6. Rotating cover; 7. Mounting mechanism; 701. Mounting slot; 702. Pressure plate; 8. Lamp housing; 9. Solar panel; 10. LED light panel; 11. Transparent lens; 12. Heat dissipation mechanism; 121. Heat dissipation hole; 122. Dustproof mesh; 123. Waterproof and breathable membrane; 13. Mounting hole; 14. Wiring hole. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1-4 This utility model discloses a head-up solar lamp, including a mounting box 1. A control mechanism 2 is fixedly installed inside the mounting box 1. A box cover 3 is installed on the left side of the mounting box 1. The box cover 3 has a hanging hole for installing the solar lamp. A mounting frame 4 is installed on the right side wall of the mounting box 1 near the middle. An adjustment mechanism 5 is fixedly installed between the front and rear inner walls of the mounting frame 4. A rotating cover 6 is snapped onto the right side of the mounting frame 4. The front and rear sides of the adjustment mechanism 5 are connected and fixed to the lamp housing 8 through the mounting mechanism 7. A solar panel 9 is embedded on the left side wall of the lamp housing 8 near the upper side. An LED light panel 10 and a transparent lens 11 are installed on the inner wall of the lamp housing 8 near the right side. A heat dissipation mechanism 12 is provided on the front and rear side walls of the lamp housing 8.
[0022] Specifically, the control mechanism 2 includes a control circuit board 201, a battery 202, and a photosensitive sensor assembly 203. The control circuit board 201 and the battery 202 are mounted on the inner wall of the mounting box 1, and the photosensitive sensor assembly 203 is embedded in the lower edge of the right side wall of the mounting box 1.
[0023] In this embodiment, the photosensitive sensor assembly 203 monitors the light intensity and feeds the information back to the control circuit board 201, so that the control circuit board 201 issues commands to the adjustment mechanism 5 and the LED light panel 10. The storage battery 202 is used to provide power to various electrical components, and the solar panel 9 charges the storage battery 202.
[0024] Specifically, the mounting box 1 corresponding to the photosensitive sensor assembly 203 has a mounting hole 13 on its right side wall.
[0025] In this embodiment, the mounting hole 13 meets the installation requirements of the photosensitive sensor assembly 203, enabling the photosensitive sensor assembly 203 to monitor the intensity of external light.
[0026] Specifically, the adjustment mechanism 5 includes a motor 501, a drive gear 502, a driven gear ring 503, and a rotating shaft 504. The motor 501 is fixedly mounted on the mounting bracket 4. The drive gear 502 is fixedly mounted on the output shaft of the motor 501. The drive gear 502 meshes with the driven gear ring 503. The driven gear ring 503 is fixedly mounted on the rotating shaft 504.
[0027] In this embodiment, the output shaft of the motor 501 drives the drive gear 502, which in turn drives the rotating shaft 504 to rotate via the driven gear ring 503. The rotating shaft 504 then drives the lamp housing 8 to rotate via the mounting mechanism 7.
[0028] Specifically, the rotating shaft 504 is a hollow structure with openings on both the front and rear sides, and a wire hole 14 is provided on the left side of the rotating shaft 504.
[0029] In this embodiment, the threading hole 14 and the rotating shaft 504 meet the requirements for threading.
[0030] Specifically, the mounting mechanism 7 includes a mounting groove 701 and a pressure plate 702. The mounting groove 701 is provided at both the front and rear positions of the left side wall of the lamp housing 8 corresponding to the rotating shaft 504. The pressure plate 702 installs the rotating shaft 504 into the mounting groove 701 of the lamp housing 8.
[0031] In this embodiment, the front and rear mounting slots 701 are used to insert the front and rear ends of the rotating shaft 504, so that the pressure plate 702 is installed on the lamp housing 8 by fastening bolts, and the pressure plate 702 presses and fixes the rotating shaft 504 on the lamp housing 8, so that the rotating shaft 504 can drive the lamp housing 8 to rotate.
[0032] Specifically, the heat dissipation mechanism 12 includes heat dissipation holes 121, a dustproof mesh 122, and a waterproof and breathable membrane 123. The heat dissipation holes 121 are evenly provided on the front and rear side walls of the lamp housing 8. The dustproof mesh 122 and the waterproof and breathable membrane 123 are sequentially fixed on the inner wall of the lamp housing 8 corresponding to the heat dissipation holes 121.
[0033] In this embodiment, the heat dissipation hole 121, the dustproof mesh 122, and the waterproof and breathable membrane 123 allow for air circulation, and the dustproof mesh 122 and the waterproof and breathable membrane 123 prevent external dust and rainwater from entering the lamp housing 8, thus greatly improving the heat dissipation performance of the lamp housing 8.
[0034] In use, the light intensity is monitored by the photosensitive sensor assembly 203 in the control mechanism 2. When the light intensity is lower than the set value, the information is fed back to the control circuit board 201. The control circuit board 201 causes the output shaft of the motor 501 in the adjustment mechanism 5 to drive the drive gear 502. The drive gear 502 drives the rotating shaft 504 to rotate through the driven gear ring 503. The rotating shaft 504 drives the lamp housing 8 to rotate and tilt upward through the mounting mechanism 7, causing the lamp housing 8 to tilt the LED light panel 10 and the transparent lens 11 upward, thus meeting the lighting requirements. When the photosensitive sensor... When component 203 detects that the light intensity is higher than the set value, the adjustment mechanism 5 drives the lamp housing 8 to reset downward through the installation mechanism 7. At this time, the solar panel 9 on the upper surface of the lamp housing 8 is laid flat, which can meet the light requirements of the solar panel 9 during the day, making it more convenient to use. The heat dissipation mechanism 12 provides air circulation through the heat dissipation holes 121, dustproof net 122 and waterproof breathable membrane 123. The dustproof net 122 and waterproof breathable membrane 123 prevent external dust and rainwater from entering the lamp housing 8, which greatly improves the heat dissipation performance of the lamp housing 8, is conducive to use in high-temperature environments, and extends its service life.
[0035] In summary, this overhead solar light allows for angle adjustment, meeting the solar panel's illumination needs during the day and providing lighting when sunlight is scarce. It is more convenient to use and improves heat dissipation, making it suitable for use in high-temperature environments.
[0036] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A head-up solar light, comprising a mounting box (1), characterized in that: The mounting box (1) is fixedly installed with a control mechanism (2). The mounting box (1) is installed with a box cover (3) on the left side. The mounting box (1) is installed with a mounting bracket (4) near the middle of the right side wall. An adjustment mechanism (5) is fixedly installed between the front and rear inner walls of the mounting bracket (4). A rotating cover (6) is snapped onto the right side of the mounting bracket (4). The front and rear sides of the adjustment mechanism (5) are connected and fixed to the lamp housing (8) through the mounting mechanism (7). A solar panel (9) is embedded in the left side wall of the lamp housing (8) near the upper side. An LED light panel (10) and a transparent lens (11) are installed on the inner wall of the lamp housing (8) near the right side. A heat dissipation mechanism (12) is provided on the front and rear side walls of the lamp housing (8).
2. The overhead solar lamp according to claim 1, characterized in that: The control mechanism (2) includes a control circuit board (201), a battery (202) and a photosensitive sensor assembly (203). The control circuit board (201) and the battery (202) are installed on the inner wall of the mounting box (1), and the photosensitive sensor assembly (203) is embedded in the lower edge of the right side wall of the mounting box (1).
3. A solar-powered overhead lamp according to claim 2, characterized in that: The mounting box (1) corresponding to the photosensitive sensor assembly (203) has a mounting hole (13) on its right side wall.
4. A solar-powered overhead lamp according to claim 1, characterized in that: The adjustment mechanism (5) includes a motor (501), a drive gear (502), a driven gear ring (503), and a rotating shaft (504). The motor (501) is fixedly mounted on the mounting bracket (4). The drive gear (502) is fixedly mounted on the output shaft of the motor (501). The drive gear (502) meshes with the driven gear ring (503). The driven gear ring (503) is fixedly mounted on the rotating shaft (504).
5. A solar-powered overhead lamp according to claim 4, characterized in that: The rotating shaft (504) is a hollow structure with openings on both the front and rear sides, and a wire hole (14) is provided on the left side of the rotating shaft (504).
6. A solar-powered overhead lamp according to claim 4, characterized in that: The mounting mechanism (7) includes a mounting groove (701) and a pressure plate (702). The mounting groove (701) is provided on the front and rear sides of the left side wall of the lamp housing (8) corresponding to the rotating shaft (504). The pressure plate (702) installs the rotating shaft (504) into the mounting groove (701) of the lamp housing (8).
7. A solar-powered overhead lamp according to claim 1, characterized in that: The heat dissipation mechanism (12) includes heat dissipation holes (121), dustproof mesh (122) and waterproof and breathable membrane (123). The heat dissipation holes (121) are evenly provided on the front and rear side walls of the lamp housing (8). The dustproof mesh (122) and waterproof and breathable membrane (123) are fixedly installed on the inner wall of the lamp housing (8) corresponding to the heat dissipation holes (121).