Photovoltaic insect repelling and mosquito killing lamp

Photovoltaic insect repellent mosquito lamps, powered by photovoltaic panels, combined with insect nets and decorative mechanisms, solve the problem of outdoor mosquito repellent lamps without power supply, and achieve the effects of convenient mosquito catching and beautiful decoration.

CN223472906UActive Publication Date: 2025-10-28CHANGFEI (YUNCHENG) NEW ENERGY CO LTD
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Patent Information

Application Number
CN202422929953.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-28
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Conventional mosquito repellent lamps cannot be used conveniently outdoors without power, and have poor decorative effects and cannot blend in with the surrounding environment.

Method used

A photovoltaic insect repellent and mosquito-killing lamp was designed. It adopts a light-emitting mechanism consisting of a photovoltaic panel, an inverter and a light source, combined with an insect-catching net and a decorative mechanism. It is powered by solar energy and has decorative and mosquito-catching functions. It includes a transparent protective layer and a detachable hook to improve portability and maintainability.

Benefits of technology

The invention can be used conveniently outdoors in an environment without power supply, is decorative, can effectively catch mosquitoes, and is well coordinated with the environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mosquito-killing lamps, and provides a photovoltaic insect-expelling mosquito-killing lamp which comprises an annular supporting body and a top hook, a light-emitting mechanism used for emitting light to trap insects is arranged above the annular supporting body, the light-emitting mechanism comprises a photovoltaic panel, an inverter and a light-emitting source, and the photovoltaic panel, the inverter and the light-emitting source are electrically connected in sequence. An insect catching mechanism for collecting mosquitoes is arranged below the annular supporting body, by arranging the light emitting mechanism, the device can be separated from limitation of a limited power source, the device can be conveniently placed outdoors and can be used through solar energy, by arranging the insect catching mechanism, attracted mosquitoes can be collected, and the purpose of catching insects is achieved. The situation that mosquitoes bite people around the device is effectively reduced, and people feel more comfortable when gathering outdoors. By means of the technical scheme, the problems that in the prior art, a mosquito killer lamp cannot be conveniently used outdoors without a power source, and meanwhile the decoration effect is poor are solved.
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Description

Technical Field

[0001] This utility model relates to the field of mosquito-killing lamp technology, specifically to a photovoltaic insect-repelling and mosquito-killing lamp. Background Technology

[0002] Mosquito-killing lamps are simple and practical mechanical devices that attract mosquitoes by releasing light beams or chemical substances based on their living habits, and then capture them through a device.

[0003] Conventional mosquito killer lamps are mostly placed indoors, and mosquitoes are most prevalent in summer, when there are many people gathering in outdoor areas such as parks, courtyards, and fields. Furthermore, conventional mosquito killer lamps require an indoor power source or a separate power cord to be installed in these outdoor settings, which is inconvenient. They cannot be used outdoors without a power source. Additionally, conventional mosquito killer lamps have simple decorative elements, making them difficult to integrate into the surrounding environment. Therefore, we have proposed a photovoltaic insect-repelling mosquito killer lamp to solve these problems. Utility Model Content

[0004] This utility model proposes a photovoltaic insect repellent and mosquito-killing lamp, which solves the problems of mosquito-killing lamps in related technologies that cannot be conveniently used outdoors in the absence of power, and also have poor decorative effect.

[0005] The technical solution of this utility model is as follows:

[0006] A photovoltaic insect-repelling and mosquito-killing lamp includes an annular support body and a top hook. A light-emitting mechanism for attracting insects is located above the annular support body. The light-emitting mechanism includes a photovoltaic panel, an inverter, and a light source, which are electrically connected sequentially. An insect-catching mechanism for collecting mosquitoes is located below the annular support body. The insect-catching mechanism includes an insect-catching net fixedly connected to the bottom surface of the annular support body, with an insect inlet on the bottom surface of the net. A decorative mechanism is located below the annular support body, including decorative wooden strips for decorating the mosquito-killing lamp, which are fixedly connected to the bottom surface of the annular support body.

[0007] Furthermore, the light-emitting mechanism also includes a fixing plate, which is fixedly connected to the inner wall of the photovoltaic panel. The photovoltaic panel is fixedly connected to the upper surface of the annular support. The inverter and the light source are both fixedly connected to the fixing plate. A storage battery is fixedly connected to the upper surface of the fixing plate. The storage battery is electrically connected to the light source. By setting the fixing plate and the storage battery, the light energy collected by the photovoltaic panel can be stored. In bad weather conditions, the storage battery can be used to continuously power the device, thereby ensuring the efficiency of the light source and avoiding the situation where the light source stops operating due to lack of energy support.

[0008] Furthermore, the photovoltaic panel is conical in shape and has a pre-drilled hole at its top. The pre-drilled hole of the photovoltaic panel is detachably connected to the top hook. By setting a top hook that is easy to remove, the device can be easily suspended in a suitable position, which helps to improve the mobility and applicability of the device and achieve the purpose of easy carrying and installation. At the same time, after the top hook is removed, it is easy to maintain and replace the internal structure of the photovoltaic panel.

[0009] Furthermore, the upper surface of the photovoltaic panel is provided with a transparent protective layer. By setting the transparent protective layer, the photovoltaic power generation working elements on the surface of the photovoltaic panel can be protected, avoiding interference from external factors when they are moved or used. At the same time, it achieves a rainproof effect. Combined with the above-mentioned conical inclined setting, rainwater can be guided to the outside of the device in rainy weather, avoiding water accumulation on the surface from affecting the photovoltaic power generation efficiency, and also preventing rainwater from flowing into the device and causing internal damage.

[0010] Furthermore, the insect-catching net has a high-density wire mesh structure, which is made of high-strength steel wires arranged in a cross pattern. By setting the wire mesh structure, the light source can be emitted to the outside of the device to the maximum extent, so that mosquitoes can effectively observe the light source and be attracted. At the same time, the high density of holes can maximize the trapping of mosquitoes and prevent them from escaping through the holes of the insect-catching net after entering the net.

[0011] Furthermore, the mosquito inlet is funnel-shaped and placed upside down on the bottom of the insect-catching net, and is detachably connected. By setting the funnel-shaped mosquito inlet, the movement path of mosquitoes can be restricted, preventing them from easily escaping after entering the insect-catching net.

[0012] Furthermore, several support plates are fixedly connected to the bottom of the inner wall of the decorative wooden strip, and the other end of each support plate is fixedly connected to the insect-catching net. By setting the support plates, the fixing effect of the bottom of the decorative wooden strip can be enhanced.

[0013] The working principle and beneficial effects of this utility model are as follows:

[0014] 1. In this utility model, by setting a light-emitting mechanism, the device can be freed from the limitation of a limited power source, making it convenient to place outdoors and use solar energy. By setting an insect-catching mechanism, the attracted mosquitoes can be collected to achieve the purpose of insect trapping, effectively reducing the situation of mosquito bites around the device and making people more comfortable when gathering outdoors. At the same time, a decorative mechanism can be set to decorate the exterior of the device, making it more beautiful and practical, and better able to integrate with the surrounding environment, making its appearance more harmonious with the surrounding environment. Attached Figure Description

[0015] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0016] Figure 1 This is a front view schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the internal structure of the present invention;

[0018] Figure 3 This is a top view of the structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the unfolded structure of the decorative wooden strips of this utility model.

[0020] In the diagram: 1. Ring-shaped support; 2. Top hook; 3. Light-emitting mechanism; 301. Photovoltaic panel; 302. Inverter; 303. Light source; 304. Fixing plate; 305. Battery; 4. Insect-catching mechanism; 401. Insect net; 402. Insect inlet; 5. Decorative mechanism; 501. Support plate; 502. Decorative wooden strips. Detailed Implementation

[0021] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.

[0022] Example 1

[0023] like Figures 1-4 As shown, this embodiment proposes a photovoltaic insect repellent and mosquito killer lamp, including an annular support body 1 and a top hook 2. A light-emitting mechanism 3 for attracting insects is provided above the annular support body 1.

[0024] The top hook 2 here is a hook-shaped structure. The inner ring of the hook can be equipped with anti-slip measures such as a rubber pad, or a strip groove can be opened to increase friction and at the same time avoid scratching the surface of the load position when the device is suspended in the load position.

[0025] The light-emitting mechanism 3 includes a photovoltaic panel 301, an inverter 302, and a light source 303. The photovoltaic panel 301, the inverter 302, and the light source 303 are electrically connected in sequence. An insect-catching mechanism 4 for collecting mosquitoes is provided below the annular support 1.

[0026] The light-emitting mechanism 3 also includes a fixing plate 304, which is fixedly connected to the inner wall of the photovoltaic panel 301. The photovoltaic panel 301 is fixedly connected to the upper surface of the annular support 1. The inverter 302 and the light source 303 are both fixedly connected to the fixing plate 304. A storage battery 305 is fixedly connected to the upper surface of the fixing plate 304. The storage battery 305 is electrically connected to the light source 303.

[0027] By setting up a fixed plate 304 and a storage battery 305, the light energy collected by the photovoltaic panel 301 can be stored. When the weather is bad, the storage battery 305 can be used to continuously power the device, so as to ensure the efficiency of the light source 303 and avoid the situation where the light source 303 stops operating due to lack of energy support.

[0028] The inverter 302 here is used to convert the DC power generated by the photovoltaic panel 301 into AC power to power the light source 303. The electrical energy stored in the battery 305 is also DC power. By setting up the inverter 302, the photovoltaic panel 301 and the battery 305 can be conveniently electrically connected to the light source 303 for power supply.

[0029] The photovoltaic panel 301 is conical in shape and has a pre-drilled hole at the top. The pre-drilled hole of the photovoltaic panel 301 is detachably connected to the top hook 2.

[0030] By setting up a top hook 2 that is easy to remove, the device can be easily hung in a suitable position, which helps to improve the mobility and applicability of the device, making it easy to carry and install. At the same time, after removing the top hook 2, it is convenient to maintain and replace the internal structure of the photovoltaic panel 301.

[0031] The upper surface of the photovoltaic panel 301 is provided with a transparent protective layer.

[0032] By setting a transparent protective layer, the photovoltaic power generation components on the surface of the photovoltaic panel 301 can be protected, preventing them from being interfered with by external factors when moved or used. At the same time, it achieves a rainproof effect. Combined with the aforementioned conical inclined setting, rainwater can be guided to the outside of the device in rainy weather, preventing water from accumulating on the surface and affecting the photovoltaic power generation efficiency, while also preventing rainwater from flowing into the device and causing internal damage.

[0033] The specific principle of the light-emitting mechanism 3 is to use the light source 303 to attract mosquitoes and lure them into the subsequent mosquito-killing structure. Because mosquitoes have a clear tendency to light sources in the ultraviolet and blue-violet wavelength bands, the purpose of attracting mosquitoes can be achieved.

[0034] Example 2

[0035] like Figures 1-4As shown, based on the same concept as Embodiment 1 above, this embodiment also proposes an insect-catching mechanism 4 including an insect-catching net 401 fixedly connected to the bottom surface of the annular support 1. The bottom surface of the insect-catching net 401 is provided with a mosquito inlet 402, and a decorative mechanism 5 is provided below the annular support 1.

[0036] The insect net 401 has a high-density steel wire mesh structure, which is made of high-strength steel wires interlaced together.

[0037] By setting up a wire mesh structure, the light source can be emitted to the outside of the device to the maximum extent, so that mosquitoes can effectively observe the light source and be attracted. At the same time, the high density of holes can maximize the trapping of mosquitoes, preventing them from escaping through the holes of the insect trap 401 after entering the insect trap 401. Then, the mosquitoes inside are naturally dried by air, which dehydrates them and achieves the purpose of killing mosquitoes.

[0038] The mosquito inlet 402 is funnel-shaped and placed upside down on the bottom of the insect-catching net 401, and can be detachably connected.

[0039] By setting a funnel-shaped mosquito inlet 402, the movement path of mosquitoes can be restricted, preventing them from easily escaping after entering the insect-catching net 401.

[0040] The decorative mechanism 5 includes a decorative wooden strip 502 for decorating the mosquito-killing lamp, and the decorative wooden strip 502 is fixedly connected to the bottom surface of the annular support 1.

[0041] Several support plates 501 are fixedly connected to the bottom of the inner wall of the decorative wooden strip 502, and the other end of each support plate 501 is fixedly connected to the insect net 401.

[0042] By setting the support plate 501, the fixing effect of the bottom of the decorative wood strip 502 can be enhanced.

[0043] Working principle: After the device is suspended in a suitable location, during the day, the photovoltaic panel 301 is exposed to sunlight and converts the light energy. The generated direct current is stored in the battery 305. Alternatively, the electricity generated by the photovoltaic panel 301 can be directly supplied to the light source 303 via the inverter 302 to attract insects. At night or in bad weather, when there is no sunlight, the energy is discharged through the battery 305 and then supplied to the light source 303 via the inverter 302. When the light source 303 is working, it emits light that attracts insects, causing mosquitoes to gather around the device. Additionally, a mosquito inlet is located at the bottom of the device. In the mosquito trap 401, the mosquito inlet 402 is the main inlet, while the other parts are enclosed. To get closer to the light source, mosquitoes will eventually enter the trap 401 through the mosquito inlet 402. Once inside the trap 401, the mosquitoes are restricted by the inverted funnel shape of the mosquito inlet 402, making their escape extremely difficult. Eventually, more and more mosquitoes will accumulate inside the trap 401, achieving the goal of capturing mosquitoes. When it is necessary to clean the mosquito remains inside the trap 401, simply disassemble the mosquito inlet 402, clean the trap 401, and reinstall the mosquito inlet 402. Through the above solution, the photovoltaic-driven mosquito killer lamp can be operated to capture and eliminate mosquitoes.

[0044] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A photovoltaic insect-repelling and mosquito-killing lamp, characterized in that, The device includes a ring support (1) and a top hook (2). Above the ring support (1) is a light-emitting mechanism (3) for attracting insects. The light-emitting mechanism (3) includes a photovoltaic panel (301), an inverter (302), and a light source (303). The photovoltaic panel (301), the inverter (302), and the light source (303) are electrically connected in sequence. Below the ring support (1) is a mosquito-catching mechanism (4) for collecting mosquitoes. The mosquito-catching mechanism (4) includes a mosquito-catching net (401) fixedly connected to the bottom surface of the ring support (1). The bottom surface of the mosquito-catching net (401) is provided with a mosquito inlet (402). Below the ring support (1) is a decorative mechanism (5). The decorative mechanism (5) includes a decorative wooden strip (502) for decorating a mosquito-killing lamp, and the decorative wooden strip (502) is fixedly connected to the bottom surface of the ring support (1).

2. The photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The light-emitting mechanism (3) also includes a fixing plate (304), which is fixedly connected to the inner wall of the photovoltaic panel (301). The photovoltaic panel (301) is fixedly connected to the upper surface of the annular support (1). The inverter (302) and the light source (303) are both fixedly connected to the fixing plate (304). A storage battery (305) is fixedly connected to the upper surface of the fixing plate (304). The storage battery (305) is electrically connected to the light source (303).

3. The photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The photovoltaic panel (301) is conical in shape and has a pre-drilled hole at its top. The pre-drilled hole of the photovoltaic panel (301) is detachably connected to the top hook (2).

4. The photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The upper surface of the photovoltaic panel (301) is provided with a transparent protective layer.

5. A photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The insect-catching net (401) has a high-density steel wire mesh structure, which is made of high-strength steel wires interlaced.

6. A photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The mosquito inlet (402) is funnel-shaped and placed upside down on the bottom of the insect-catching net (401), and can be detachably connected.

7. A photovoltaic insect-repelling and mosquito-killing lamp according to claim 1, characterized in that, The inner bottom of the decorative wooden strip (502) is fixedly connected to several support plates (501), and the other end of each support plate (501) is fixedly connected to the insect net (401).