An insect-attracting lamp device

By setting up an angled 395nm light panel and a 365nm small light panel in the insect-attracting lamp, combined with frosted glass to diffuse the light, the problem of low trapping efficiency and safety hazards of existing insect-attracting lamps is solved, achieving a more efficient and safer insect-attracting effect.

CN224572089UActive Publication Date: 2026-07-31陈晓纯 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
陈晓纯
Filing Date
2025-07-04
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing insect-attracting lamps suffer from strong directional ultraviolet light irradiation and limited range, resulting in low trapping efficiency and potential harm to human eyes. Their complex structure also increases production costs and maintenance difficulties.

Method used

A 395nm light panel is arranged at an angle of 45 to 90 degrees with the insect trapping board, and 365nm small light panels are set on both sides of the light body. Combined with frosted glass to diffuse the light, a dual-band light source is formed, and the circuit connection is optimized.

Benefits of technology

It increases insect-attracting coverage, reduces eye irritation, improves insect-attracting efficiency and safety, and simplifies the production and maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to an insect-attracting lamp device, comprising an insect-trapping plate, a lamp body, a main lamp plate bracket, and a 395nm lamp plate. The insect-trapping plate is located on the outermost side of the device. The lamp body is a closed shell formed by connecting a plastic front cover, a plastic middle frame, and a plastic rear cover. The main lamp plate bracket is installed inside the plastic rear cover. The 395nm lamp plate is fixed on the main lamp plate bracket and forms an angle of 45 to 90 degrees with the insect-trapping plate to improve ultraviolet irradiation efficiency and reduce glare. This structure improves insect-attracting efficiency by optimizing the lamp plate arrangement angle and alleviates discomfort caused by direct ultraviolet light, exhibiting good safety and applicability.
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Description

Technical Field

[0001] This utility model relates to an insect-attracting lamp, specifically an insect-attracting lamp device. Background Technology

[0002] Currently, widely used insect-attracting lamps on the market mainly attract flying insects by emitting light of specific wavelengths using ultraviolet light sources, and then use structures such as plastic sheets and electric grids to trap or kill the insects. These devices are mostly used in homes, restaurants, warehouses, and agriculture, and offer a certain degree of convenience and environmental friendliness.

[0003] However, existing insect-attracting lamps generally have the following technical problems:

[0004] In traditional structures, the light panels are mostly arranged vertically and are usually installed below or above the trapping board. This results in strong directionality and limited range of ultraviolet light irradiation, making it impossible to achieve full coverage of the trapping board and affecting trapping efficiency.

[0005] Some products do not properly guide the direction of the light, especially in indoor environments, which can easily cause 395nm ultraviolet rays to directly irradiate the human eyes, causing discomfort or even potential harm, posing a safety concern.

[0006] Existing devices typically use only a single-band ultraviolet light source, and the light panels are concentrated on one side, resulting in insufficient attraction for flying insects, especially in environments with large spaces or strong light interference, where the insect-attracting effect is poor.

[0007] Some products use multiple independent housings and lamp board components, with inconsistent connection methods and chaotic internal circuit layouts, which increases production costs and the difficulty of later maintenance. Utility Model Content

[0008] To address the aforementioned problems, this invention provides an insect-attracting lamp device that effectively overcomes the shortcomings of existing technologies.

[0009] This utility model is achieved through the following technical solution: an insect-attracting lamp device, comprising:

[0010] The flying insect trapping board is placed on the outermost side of the device;

[0011] The lamp body includes a plastic front cover, a plastic middle frame, and a plastic rear cover, which are connected to form a closed outer shell;

[0012] The main light panel bracket is installed inside the plastic back cover;

[0013] A 395nm light panel is fixed on the main light panel bracket and forms an angle of 45 to 90 degrees with the flying insect trapping board to improve the efficiency of ultraviolet irradiation and reduce glare.

[0014] As a preferred technical solution, it is characterized by:

[0015] The plastic front cover and the plastic middle frame are connected by snaps, and the plastic middle frame and the plastic rear cover are fixed by screws.

[0016] As a preferred technical solution, a frosted glass panel is provided on each of the left and right sides of the plastic frame to diffuse light.

[0017] As a preferred technical solution, the outer side of the 395nm lamp panel is covered with a main lamp panel frosted glass, and the main lamp panel frosted glass is fixedly connected to the lamp body through a slot structure.

[0018] As a preferred technical solution, it also includes a 365nm small light board, which is connected to the main circuit board by welding and is located on the left and right sides inside the lamp body.

[0019] As a preferred technical solution, the main circuit board is mounted on the positioning post inside the plastic back cover, and is connected to the 365nm small lamp board, the 395nm lamp board and the European standard AC plug respectively by soldering wires.

[0020] As a preferred technical solution, the European standard AC pin is embedded in the pin groove at the bottom of the plastic back cover and fixed to the plastic back cover with screws.

[0021] As a preferred technical solution, the main circuit board and the plastic back cover are locked together by product fixing screws.

[0022] As a preferred technical solution, an adhesive nameplate is affixed to the outer surface of the plastic back cover.

[0023] As a preferred technical solution, the main lamp panel bracket is fixedly connected to the plastic back cover by screws, which is used to support the 395nm lamp panel and the frosted glass of the main lamp panel as a whole.

[0024] The beneficial effects of this utility model are as follows: The insect-attracting lamp device provided by this utility model, by setting the 395nm lamp panel and the flying insect trapping board at an angle, makes the direction of ultraviolet irradiation more closely aligned with the effective area of ​​the trapping board, effectively improving the coverage of the trapping surface by ultraviolet light, thereby enhancing the insect-attracting effect and avoiding the light energy waste and trapping blind spots caused by the vertical arrangement of traditional lamp panels. At the same time, the angled structure prevents the light from shining directly upwards, significantly reducing eye irritation and safety hazards, and improving the comfort and safety of indoor use.

[0025] This invention effectively expands the ultraviolet radiation range by incorporating 365nm small light panels on both the left and right sides inside the lamp body, complementing the 395nm light panel located in the center of the lamp body. Compared to existing technologies that only place a single ultraviolet light source on the front of the lamp body, the 365nm small light panels on the left and right sides can emit ultraviolet light to the lateral areas of the insect trapping board, improving the overall attraction range and uniformity of the insect-attracting lamp, reducing blind spots, and increasing insect-attracting efficiency. Simultaneously, the 365nm wavelength is more sensitive to some flying insects; the lateral arrangement not only enhances the visual stimulation effect on the insects but also helps reduce glare interference to the human eye, improving user comfort. This structure is unprecedented in similar products and possesses strong innovation and practicality. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0028] Figure 2 This is an exploded view of the present invention. Detailed Implementation

[0029] All features disclosed in this specification, or all steps in all disclosed methods or processes, may be combined in any way, except for mutually exclusive features and / or steps.

[0030] Any feature disclosed in this specification (including any appended claims, abstract, and drawings) may be replaced by other equivalent or similar features for a similar purpose, unless specifically stated otherwise. That is, unless specifically stated otherwise, each feature is merely one example of a series of equivalent or similar features.

[0031] like Figure 1 and Figure 2As shown, this utility model discloses an insect-attracting lamp device, comprising an insect-trapping plate 1, a lamp body, a main lamp plate bracket 8, a 395nm lamp plate 7, a 365nm small lamp plate 5, a main circuit board 6, and European standard AC connectors 12, etc. The insect-trapping plate 1 is located on the outermost side of the device and is used to adhere to or attract flying insects. Its material can be transparent or semi-transparent highly adhesive trapping paper, and it is fixed to the front area of ​​the lamp body, providing a direct surface for insect attraction during device operation. The lamp body is an integrally enclosed shell structure, composed of a plastic front cover 2, a plastic middle frame 3, and a plastic rear cover 10. These three components are stably connected during assembly through a structural fit. Specifically, the plastic front cover 2 and the plastic middle frame 3 are connected by a snap-fit ​​mechanism. The snap-fit ​​mechanism is pre-set on the inner edge of the plastic front cover 2 and the outer groove of the plastic middle frame 3. After mating, it can be quickly assembled and easily disassembled. The plastic middle frame 3 and the plastic rear cover 10 are locked together by multiple product fixing screws 9. The screws pass through the screw holes set at the rear end of the middle frame and are locked into the pre-embedded nuts or stud holes of the rear cover 10 to ensure that the lamp body is sealed and secure.

[0032] To enhance the lighting effect, frosted glass 4 is provided on both the left and right sides of the plastic frame 3 to diffuse the light and prevent the ultraviolet beam from becoming too concentrated, thereby increasing the insect-attracting coverage area. The frosted glass 4 can be fixed to the window area of ​​the frame 3 by embedding or sliding into a slot guide rail structure, providing good light transmission and a soft light effect, making it easy to guide flying insects to the trapping area. The main light panel bracket 8 is installed on the internal positioning structure of the plastic back cover 10, preferably locked to the limiting post of the back cover 10 by screws. The upper part of the bracket 8 has light panel mounting holes to stably fix the light panel and keep the light panel arranged within a set angle range.

[0033] The 395nm light panel 7 is screwed onto the forward-leaning support surface of the main light panel bracket 8. The light panel 7 forms an angle with the insect-trapping plate 1, controlled within the range of 45 to 90 degrees. This angle is achieved through the tilt design of the light panel bracket 8, allowing the ultraviolet radiation to more concentratedly cover the area of ​​the insect-trapping plate 1, enhancing insect-attracting efficiency, while avoiding direct upward beams that could cause visual discomfort or light pollution to the user. A frosted glass panel 13 is placed over the outside of the 395nm light panel 7. This frosted glass panel 13 is installed in a slot structure onto the main light panel bracket 8 or the front end of the lamp body to further diffuse the light, preventing glare and providing some protection for the internal light panel 7.

[0034] To enhance the richness and effective range of the insect-attracting wavelengths, a 365nm small light board 5 is installed on each of the left and right sides inside the lamp body. This small light board 5 is fixed to the main circuit board 6 by soldering, and its leads are electrically connected to the solder pads of the main circuit board 6. The solder joints are treated with an anti-oxidation process to ensure long-term operational stability. The main circuit board 6 is installed inside the plastic back cover 10, and its position is limited by pre-set positioning posts or support ribs on the back cover 10. Installation is achieved by locking with product fixing screws 9 or by sliding into a slot. The main circuit board 6 contains the drive circuit for the 365nm small light board 5, the drive output for the 395nm light board 7, and a power supply module, all connected to the European standard AC connector 12 via soldering, forming a complete power supply and control circuit.

[0035] The European standard AC connector 12 is embedded in the connector groove at the bottom of the plastic back cover 10. Its main body shape and the connector groove structure are mutually compatible, and it is fixed by screws or clips to ensure that the connector 12 does not loosen or fall off, and provides good insertion and removal stability and service life. The main circuit board 6 and the plastic back cover 10 are locked together using product fixing screws 9 to prevent displacement and vibration of the circuit board 6 during transportation or use. To facilitate user identification of product information and parameters, an adhesive nameplate 11 is affixed to the outer surface of the plastic back cover 10. The adhesive nameplate 11 is made of weather-resistant material and printed with product name, voltage, current, frequency, power, manufacturer information, etc., possessing good adhesion and clarity.

[0036] The entire insect-attracting lamp device is assembled into an integrated working structure through the orderly assembly of its various components. Once powered on, it stably emits 395nm and 365nm ultraviolet light. Through angled settings, dual-band combination, optimized light diffusion structure, and simplified electrical connections, it achieves efficient, safe, and easy-to-maintain insect-attracting functionality. This structure not only solves the problems of low trapping efficiency and strong glare associated with traditional lamps, but also considers aesthetics, practicality, and structural integration, making it suitable for long-term insect-attracting use in various environments such as homes, commercial spaces, warehouses, and agriculture.

[0037] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any changes or substitutions conceived without inventive effort should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope defined in the claims.

Claims

1. A light trap device, characterized in that, include: The flying insect trapping board (1) is set on the outermost side of the device; The lamp body includes a plastic front cover (2), a plastic middle frame (3) and a plastic rear cover (10), which are connected to form a closed shell; The main light panel bracket (8) is installed inside the plastic back cover (10); The 395nm lamp board (7) is fixed on the main lamp board bracket (8) and forms an angle between it and the flying insect trapping board (1), the angle being 45 degrees to 90 degrees, to improve the efficiency of ultraviolet irradiation and reduce glare.

2. The device of claim 1, wherein: The plastic front cover (2) and the plastic middle frame (3) are connected by snap fasteners, and the plastic middle frame (3) and the plastic rear cover (10) are fixed by screws.

3. The light trap apparatus of claim 1, wherein: The plastic frame (3) has a frosted glass (4) on each of its left and right sides for diffusing light.

4. The insect light trap of claim 1, wherein: The outer side of the 395nm lamp panel (7) is covered with a main lamp panel frosted glass (13), which is fixedly connected to the lamp body through a slot structure.

5. The insect light trap of claim 1, wherein: It also includes a 365nm small light board (5), which is vertically connected to the main circuit board (6) by welding and is located on the left and right sides inside the lamp body.

6. The light trap apparatus of claim 5, wherein: The main circuit board (6) is mounted on the positioning post inside the plastic back cover (10) and is connected to the 365nm small lamp board (5), the 395nm lamp board (7) and the European standard AC plug (12) by soldering wires.

7. The light trap apparatus of claim 6, wherein: The European standard AC pin (12) is embedded in the pin groove at the bottom of the plastic back cover (10) and fixed to the plastic back cover (10) by screws.

8. The light trap apparatus of claim 5, wherein: The main circuit board (6) and the plastic back cover (10) are locked together by product fixing screws (9).

9. The insect light trap of claim 1, wherein: An adhesive nameplate (11) is affixed to the outer surface of the plastic back cover (10).

10. The insect light trap of claim 1, wherein: The main lamp board bracket (8) is fixedly connected to the plastic back cover (10) by screws, and is used to support the 395nm lamp board (7) and the main lamp board frosted glass (13) as a whole.