Portable solar aviation obstruction beacon

By adopting an adjustable bracket and circular base design in the solar aviation obstacle light, the problem of difficulty in fixing the angle of the solar panel and battery replacement is solved, efficient energy collection and convenient maintenance are achieved, and the overall efficiency and convenience of the system are improved.

CN223049979UActive Publication Date: 2025-07-01DONGGUAN TIANXIANG AEROSPACE TECH CO LTD
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Patent Information

Application Number
CN202422361142.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-01
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing solar aviation obstacle lights have problems such as fixed angles of solar panels that cannot be adjusted, difficult to replace batteries, bulky structures and inconvenient transportation and installation, resulting in low energy collection efficiency, difficult maintenance and high transportation costs.

Method used

A convenient solar aviation obstacle light is designed, which adopts an adjustable bracket and a circular base, allowing the solar panel to adjust the angle according to the lighting conditions. The battery is installed in the box, and the box cover is removable for easy maintenance. At the same time, the structural design is light and easy to handle and install.

Benefits of technology

The adjustable solar panel structure improves energy harvesting efficiency, simplifies battery replacement and maintenance processes, reduces transportation and installation complexity, and improves the overall efficiency and convenience of the system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a portable solar aviation obstruction light, which comprises an obstruction light, a battery, a box body, an adjustable bracket, a solar panel and a PCBA (Printed Circuit Board Assembly), the battery is arranged in the box body, the solar panel is arranged on the adjustable bracket, the adjustable bracket is detachably arranged on the box body, the obstruction light is arranged at the top of the box body, and the PCBA is arranged on the box body. And the obstruction light, the solar panel and the battery are electrically connected with the PCBA in the box body. According to the utility model, by adopting the structural design of the angle-adjustable solar panel, a user can easily adjust the angle of the solar panel so as to achieve the optimal light energy conversion rate, thereby effectively improving the overall efficiency of the system; and through the design of the box cover or the bottom cover, the battery and the PCBA can be checked and maintained without dismounting the whole device, so that the daily maintenance process is greatly simplified. And the solar panel can be completely folded, so that the size of the product in an unused state is reduced, the packaging is more compact, and the storage and the transportation are easy.
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Description

Technical Field

[0001] The utility model relates to the technical field of obstacle lights, in particular to a portable solar aviation obstacle light. Background Art

[0002] With the rapid development of the air transportation industry, the safety warning requirements for high-rise buildings or structures such as power transmission towers, communication towers, high-rise buildings, and wind power generation are increasing day by day. Traditional aviation obstacle lights mostly use mains power supply, which not only consumes a large amount of energy, but also makes it difficult to ensure continuous power supply in remote areas or in case of emergencies, increasing the maintenance cost and difficulty. In addition, the aviation obstacle lights in traditional designs are usually large in size, complex and inconvenient to carry during installation, and the battery replacement is also not convenient enough, which restricts their wide application.

[0003] In recent years, as a clean and renewable resource, solar energy has been more and more widely used in various fields. However, most of the existing solar aviation obstacle lights have the following problems:

[0004] The angle of the solar panel is fixed and cannot be adjusted according to the actual lighting conditions, affecting the energy collection efficiency;

[0005] The battery compartment is not reasonably designed, resulting in difficult battery replacement, troublesome maintenance, and reduced maintenance efficiency;

[0006] The structure is relatively bulky, which is not conducive to handling and installation, and also increases the transportation cost;

[0007] Therefore, it is particularly important to develop a portable solar aviation obstacle light that can overcome the above disadvantages and is both energy-saving and environmentally friendly and convenient to use and maintain. Content of the Utility Model

[0008] In view of this, the utility model provides a portable solar aviation obstacle light, aiming to solve the problems of complex structure and inconvenient maintenance and transportation of the existing obstacle lights in the background art.

[0009] The utility model provides a portable solar aviation obstacle light, which includes an obstacle light, a battery, a box body, an adjustable bracket, a solar panel, and a PCBA. The battery is installed in the box body, the solar panel is installed on the adjustable bracket, the adjustable bracket is detachably installed on the box body, the obstacle light is installed on the top of the box body, and the obstacle light, the solar panel, the battery and the PCBA inside the box body are electrically connected.

[0010] Furthermore, a box cover is arranged on the top of the box body. One side of the box cover is connected to the box body through a hinge, and the other side is connected to the box body through a buckle.

[0011] Furthermore, a circular base is provided at the bottom of the box body. Adjustment holes are provided on the base to allow adjustment of the installation angle of the box body, thereby facilitating the alignment of the solar panel with the sun to optimize the energy collection efficiency.

[0012] Optionally, handles are provided on both sides of the box body, and a waterproof connector is also provided on the side of the adjustable bracket for connection to the solar panel.

[0013] For further description of the foregoing solution, the adjustable bracket includes a cross bar, an inclined bar, and a vertical bar. The solar panel is fixed on the inclined bar. The two ends of the cross bar are respectively rotatably connected to the box body and the inclined bar. The two ends of the vertical bar are respectively connected to the box body and the inclined bar. Inclined adjustment holes are also provided at the ends of the inclined bar to adjust the inclination angle of the solar panel.

[0014] In some solutions, a bottom cover is provided at the bottom of the box body. The bottom cover is connected to the base, and the box body wraps the bottom cover, eliminating the need for a top cover.

[0015] Furthermore, fixing members are provided inside the box body, and the fixing members fix the battery on the bottom cover.

[0016] More preferably, a lightning rod is also installed on the side of the box body to provide additional lightning protection. A wireless communication module is integrated on the PCBA to achieve remote monitoring and control functions. In addition, a photoelectric sensor is provided inside the obstacle lamp, and the PCBA automatically turns on or off the obstacle lamp according to the signal of the photoelectric sensor, thereby realizing intelligent management.

[0017] Furthermore, a bird-proof needle is provided at the top of the obstacle lamp to prevent birds from staying and defecating, covering the shell of the obstacle lamp. In addition, one or more obstacle lamps can be provided to meet the requirements of different application scenarios.

[0018] More preferably, an installation pipe is provided at the top of the box cover. The bottom of the obstacle lamp is sleeved on the installation pipe and fixed by fastening screws; the wire of the obstacle lamp passes through the installation pipe and is electrically connected to the PCBA inside the box body.

[0019] Compared with the prior art, by adopting the adjustable-angle solar panel structure design in the present utility model, users can easily adjust the angle of the solar panel to achieve the best light energy conversion rate, thereby effectively improving the overall efficiency of the system;

[0020] By providing a box cover or a bottom cover, it is not necessary to disassemble the entire device to inspect and repair the battery and the PCBA, greatly simplifying the daily maintenance process.

[0021] The solar panel can be completely retracted, reducing the volume of the product in the non-use state, making the packaging more compact and easy to store and transport;

[0022] The overall structure is light and strong, suitable for various outdoor environments, and can easily handle both urban and remote areas.

[0023] In summary, the portable solar aviation obstruction light proposed by the present utility model not only solves many problems existing in the prior art, but also further improves the functionality and practicality of the aviation obstruction light. It can be applied to power transmission towers, communication towers, high-rise buildings, wind power generation, urban airspace, and places where aviation warning is required, and has broad market prospects and social value. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0025] Figure 1 , 2 is the overall schematic diagram provided by Embodiment 1 of the present utility model;

[0026] Figure 3 , 4 is the explosion schematic diagram provided by Embodiment 1 of the present utility model;

[0027] Figure 5 is the schematic diagram of the adjusting bracket provided by the embodiment of the present utility model;

[0028] Figure 6 , 7 is the overall schematic diagram provided by Embodiment 1 of the present utility model;

[0029] Figure 8 is the overall schematic diagram provided by Embodiment 2 of the present utility model;

[0030] Figure 9 is the explosion schematic diagram provided by Embodiment 2 of the present utility model;

[0031] Figure 10 is the overall schematic diagram provided by Embodiment 2 of the present utility model.

[0032] Among them, the reference numerals in the drawings:

[0033] 1. Obstruction lamp; 11. Anti-bird needle; 12. Fastening screw; 13. Installation pipe; 2. Solar panel; 3. Adjustable bracket; 31. Cross bar; 32. Diagonal bar; 321. Tilt adjustment hole; 33. Vertical bar; 4. Box body; 41. Box cover; 42. Handle; 43. Bottom cover; 44. Fixing part; 45. Waterproof joint; 46. Hinge; 47. Buckle; 5. Base; 51. Adjustment hole; 6. Lightning rod; 7. Battery.

[0034] Through the above-mentioned drawings, specific embodiments of the present invention have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present invention in any way, but to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0036] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. On the contrary, when an element is referred to as being "directly on" another element, there is no intermediate element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation manner. The terms "upper end", "lower end", "left side", "right side", "front end", "rear end" and similar expressions used herein refer to the positional relationship in the drawings.

[0037] To make the technical solutions and advantages of the present invention clearer, the implementation manners of the present invention will be further described in detail below in conjunction with the drawings.

[0038] Embodiment 1

[0039] Please refer to Figures 1-7As shown in the figure, the utility model provides a portable solar aviation obstruction lamp, which includes an obstruction lamp 1, a battery 7, a box body 4, an adjustable bracket 3, a solar panel 2 and a PCBA. The battery 7 is installed in the box body 4, the solar panel is installed on the adjustable bracket 3, the adjustable bracket 3 is detachably installed on the box body 4, the obstruction lamp 1 is installed on the top of the box body 4, and the obstruction lamp 1, the solar panel 2, the battery 7 and the PCBA inside the box body 4 are electrically connected.

[0040] As Figure 3 , 4 shown in the figure, a box cover 41 is provided on the top of the box body 4. One side of the box cover 41 is connected to the box body 4 through a hinge 46, and the other side is connected to the box body 4 through a buckle 47. A circular base 5 is also provided at the bottom of the box body 4. An adjustment hole 51 is provided on the base 5 to allow adjustment of the installation angle of the box body 4, so as to facilitate the solar panel 2 to align with the sun and optimize the energy collection efficiency. Handles 42 are provided on both sides of the box body 4, and a waterproof connector 45 is also provided on one side of the adjustable bracket 3 for connecting the wire to the solar panel 2. An installation pipe 13 is provided on the top of the box cover 41. The bottom of the obstruction lamp 1 is sleeved on the installation pipe 13 and fixed by a fastening screw 12; the wire of the obstruction lamp 1 passes through the installation pipe 13 and is electrically connected to the PCBA inside the box body 4.

[0041] As Figure 5 shown in the figure, the adjustable bracket 3 includes a cross bar 31, an inclined bar 32 and a vertical bar 33. The solar panel 2 is fixed on the inclined bar 32. Both ends of the cross bar 31 are rotatably connected to the box body 4 and the inclined bar 32 respectively. Both ends of the vertical bar 33 are connected to the box body 4 and the inclined bar 32 respectively. An inclined adjustment hole 321 is also provided at the end of the inclined bar 32 to adjust the inclination angle of the solar panel 2.

[0042] As Figure 6 , 7 shown in the figure, a bird-proof needle 11 is provided on the top of the obstruction lamp 1 to prevent birds from staying and defecating, covering the shell of the obstruction lamp 1. In addition, one or more obstruction lamps 1 can be provided to meet the requirements of different application scenarios.

[0043] As Figure 1 shown in the figure, a lightning rod 6 is also installed on the side of the box body 4 to provide additional lightning protection. A wireless communication module is integrated on the PCBA to realize the functions of remote monitoring and control. In addition, a photoelectric sensor is provided inside the obstruction lamp 1, and the PCBA automatically turns on or off the obstruction lamp 1 according to the signal of the photoelectric sensor, so as to realize intelligent management.

[0044] In order to understand the disclosure of the utility model more thoroughly and comprehensively, the principle will be further explained below in combination with the usage method.

[0045] During transportation, as Figure 3As shown, disassembling and separately packaging the adjustable bracket 3, battery 7, obstacle lamp 1, and solar panel 2 can effectively reduce the packaging size, facilitate green transportation, and reduce transportation costs. During installation, the box body 4 is installed on an object through the base 5. Then, the bracket with the solar panel 2 is installed on the box body 4. Next, the battery 7 and PCBA are installed, and then the obstacle lamp 1 is installed. Finally, according to the direction of sunlight irradiation, the base 5 can be rotated to change the tilt angle of the solar panel 2 to achieve the best light energy conversion rate.

[0046] Working principle: The sun shines on the solar panel 2, and the solar panel 2 performs photoelectric conversion and transmits the electricity to the PCBA. The PCBA stores the electricity in the battery 7. The photoelectric sensor inside the obstacle lamp 1 can automatically turn on and off the lamp according to the ambient light, and can also be remotely controlled through the wireless communication module.

[0047] Embodiment 2

[0048] Based on Embodiment 1, the box cover 41 is removed, and the bottom of the box body 4 is hollowed out. As shown in FIGS. Figure 8 、 9 、10, a bottom cover 43 is provided at the bottom of the box body 4. The bottom cover 43 is connected to the base 5, and the box body 4 wraps the bottom cover 43. A fixing member 44 is provided inside the box body 4, and the fixing member 44 fixes the battery 7 on the bottom cover 43.

[0049] During installation, first install the battery 7 and PCBA on the bottom cover 43 through the fixing member 44, and then buckle the box body 4 on the base 5. The working principle of this embodiment is the same as that of Embodiment 1.

[0050] Those skilled in the art will readily think of other implementation schemes of the present invention after considering the specification and practicing the present invention. This application aims to cover any variations, uses, or adaptations of the present invention, which follow the general principles of the present invention and include common general knowledge or conventional technical means in the technical field not disclosed in the present invention. The specification and embodiments are only regarded as exemplary, and the true scope and spirit of the present invention are pointed out by the following claims.

[0051] It should be understood that the present invention is not limited to the exact structure already described and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present invention is only limited by the appended claims.

Claims

1. A portable solar-powered aviation obstruction light, comprising an obstruction light (1), a battery (7), a box (4), an adjustable bracket (3), a solar panel (2) and a PCBA, characterized in that: The battery (7) is installed in the box (4), the solar panel (2) is installed on the adjustable bracket (3), the adjustable bracket (3) is detachably installed on the box (4), the obstacle light (1) is installed on the top of the box (4), and the obstacle light (1), the solar panel (2), the battery (7) and the PCBA inside the box (4) are electrically connected.

2. A portable solar-powered aviation obstruction light according to claim 1, characterized in that: A box cover (41) is arranged on the top of the box body (4); one side of the box cover (41) is connected to the box body (4) via a hinge (46), and the other side of the box cover (41) is connected to the box body (4) via a buckle (47).

3. A portable solar-powered aviation obstruction light according to claim 1, characterized in that: The bottom of the box body (4) is also provided with a base (5), the base (5) is circular, and the base (5) is provided with an adjustment hole (51).

4. A portable solar-powered aviation obstruction light according to claim 1, characterized in that: Handles (42) are provided on both sides of the box body (4), and a waterproof joint (45) is also provided on one side of the adjustable bracket (3).

5. The portable solar-powered aviation obstruction light according to claim 1, characterized in that: The adjustable bracket (3) comprises a cross bar (31), an oblique bar (32), and a vertical bar (33); the solar panel (2) is fixed on the oblique bar (32); the two ends of the cross bar (31) are rotatably connected to the box body (4) and the oblique bar (32), respectively; the two ends of the vertical bar (33) are connected to the box body (4) and the oblique bar (32), respectively; and the end of the oblique bar (32) is also provided with an inclination adjustment hole (321).

6. A portable solar-powered aviation obstruction light according to claim 1, characterized in that: A bottom cover (43) is provided at the bottom of the box body (4); the bottom cover (43) is connected to the base (5), and the box body (4) wraps the bottom cover (43).

7. A portable solar-powered aviation obstruction light according to claim 6, characterized in that: A fixing member (44) is provided in the box body (4), and the fixing member (44) fixes the battery (7) on the bottom cover (43).

8. The portable solar-powered aviation obstruction light according to claim 1, characterized in that: A lightning rod (6) is also installed on the side of the box (4), a wireless communication module is also integrated on the PCBA, and a photoelectric sensor is arranged inside the obstacle light (1). The PCBA turns on or off the obstacle light (1) according to a signal from the photoelectric sensor.

9. A portable solar-powered aviation obstruction light according to claim 1, characterized in that: A bird-proofing needle (11) is arranged on the top of the obstacle light (1), and more than one obstacle light (1) is arranged.

10. A portable solar-powered aviation obstruction light according to claim 2, characterized in that: A mounting tube (13) is provided on the top of the box cover (41); the bottom of the obstacle light (1) is sleeved on the mounting tube (13) and fixed by means of a fastening screw (12); the wires of the obstacle light (1) pass through the mounting tube (13) and are electrically connected to the PCBA inside the box body (4).