Multi-functional illuminable electric mosquito swatter

CN224654505UActive Publication Date: 2026-08-21YIWU LITIAN ELECTRICAL APPLIANCE CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202522098716.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-08-21
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种多功能可照明的电蚊拍,以解决上述背景技术提出电路会因过度工作而产生过多热量,会损坏电蚊拍内部的电子元件和电路,导致电蚊拍使用较为不便的问题

Benefits of technology

1、本实用新型出的一种多功能可照明的电蚊拍,锂电池将通过安装在绝缘套中的电线为紫外线灯进行供电,紫外线灯透过抗紫外线玻璃对使用空间的蚊虫进行引诱,且设置的抗紫外线玻璃利用自身的抗紫外线功能,减弱抗紫外线玻璃对人体的伤害,关闭紫外线灯,下压按压开关,锂电池将为高压电网进行供电处,便于对蚊虫诱捕进行集中电击,减少操作人员花费长时间寻找蚊虫,增加电蚊拍的使用效果。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224654505U_ABST
    Figure CN224654505U_ABST
Patent Text Reader

Abstract

The utility model relates to electric mosquito flaps technical field discloses a multifunctional electric mosquito flap of illumination, including electric mosquito flap, the outer surface of the rod is equipped with press switch, the body inside of rod groove is equipped with lithium cell, the outer surface of the body of the rod is equipped with the installation cover, the lower extreme of installation cover is installed in the outer surface of built -in bent frame, the inside of installation cover is equipped with ultraviolet lamp, before using, a large number of electric current is powered to it through the electric wire of setting in the inside of insulating sleeve, and the temperature of electric wire is promoted to rise, and the operation of ultraviolet lamp also can produce heat, and the heat is absorbed by insulating sleeve and built -in bent frame, and the heat is in the inside of inner groove, when swinging electric mosquito flap, the heat in the inside of inner groove will be accelerated to radiate by the wind produced, and the heat dissipation net of setting in the inside of heat dissipation groove B and heat dissipation groove A will avoid the dust in the air to enter the inside of inner groove, and the heat dissipation effect of insulating sleeve and built -in bent frame is influenced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of electric mosquito swatter technology, specifically a multifunctional electric mosquito swatter with illumination. Background Technology

[0002] An electric mosquito swatter is a common insect-killing tool that works by killing mosquitoes through electric shock. The main components of an electric mosquito swatter include: an electric grid (composed of multiple metal meshes carrying a high-voltage current; the grid is powered by a battery or rechargeable battery), a power source (usually a rechargeable or disposable battery that provides the high-voltage current to the grid), and a switch (controlling whether the grid is energized, usually a push-button switch; pressing it energizes the grid). When you press the switch, the battery provides current through the circuit, which flows through the grid, causing the metal mesh to become highly charged. When a mosquito or other flying insect comes into contact with the grid, the current flows through its body, forming a closed current loop. Because the current passes through the resistance of the organism, the insect is immediately shocked, usually resulting in its death. For example, a multifunctional electric mosquito swatter base with publication number CN222485900U includes a base with multiple LED light strips mounted on its outer periphery. A frosted transparent lampshade for protecting the LED light strips is also mounted on the outer periphery of the base. A connector for connection is provided on the top surface of the base, and the electric mosquito swatter body is inserted into the inner side of the connector. When using the electric mosquito swatter base, the connector on the top of the base facilitates the insertion of the electric mosquito swatter body for charging. The multiple LED light strips on the outer periphery of the base provide convenient illumination, while the frosted transparent lampshade provides protection. Therefore, the electric mosquito swatter base can be used to charge the mosquito swatter or as a standalone night light, making it convenient for the electric mosquito swatter to be taken out and stored during use, and also serving as a night light, greatly improving the product's functionality and performance.

[0003] The aforementioned patent proposes that multiple LED light strips around the base facilitate the emission of light, while a frosted transparent lampshade provides protection. This allows the electric mosquito swatter base to both power the mosquito swatter and function as a standalone night light. However, in actual use, the electric mosquito swatter uses a high-voltage grid. When the swatter is working, the circuit generates excessive heat due to overwork, which can damage the internal electronic components and circuitry, making the use of the electric mosquito swatter inconvenient. Utility Model Content

[0004] The purpose of this invention is to provide a multifunctional electric mosquito swatter with illumination, in order to solve the problem mentioned in the background art that the circuit generates too much heat due to overwork, which can damage the electronic components and circuits inside the electric mosquito swatter, making it inconvenient to use.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a multifunctional electric mosquito swatter with illumination, comprising an electric mosquito swatter, the electric mosquito swatter comprising a swatter pole and a swatter body installed at the top of the swatter pole, a high-voltage grid installed inside the swatter body, a push-button switch installed on the outer surface of the swatter pole, a swatter groove opened inside the swatter body, and a lithium battery installed inside the swatter groove; The racket body has an inner groove inside, and a built-in curved frame is installed inside the inner groove. A mounting cover is installed through the outer surface of the racket body. The lower end of the mounting cover is installed on the outer surface of the built-in curved frame. An ultraviolet lamp is installed inside the mounting cover.

[0006] Preferably, a circuit board is installed inside the rod groove, and an adjustment switch and an illumination lamp are installed on the outer surface of the rod.

[0007] Preferably, the rod groove is connected to the interior of the inner groove, and bolts are threaded at the four outer corners of the built-in curved frame. The threaded ends of the bolts are threaded into the interior of the inner groove, and UV-resistant glass is installed inside the mounting cover.

[0008] Preferably, insulating sleeves are installed through both sides of the built-in curved frame, and one end of the insulating sleeve is inside the rod groove.

[0009] Preferably, the outer surface of the inner groove is provided with heat dissipation groove A and heat dissipation groove B, with heat dissipation groove A located on one side of the built-in curved frame and heat dissipation groove B located on one side of the insulating sleeve.

[0010] Preferably, heat dissipation mesh is installed inside the heat dissipation slots A and B.

[0011] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model discloses a multifunctional electric mosquito swatter with illumination. A lithium battery powers an ultraviolet lamp via a wire installed in an insulating sleeve. The ultraviolet lamp attracts mosquitoes in the usage space through UV-resistant glass. The UV-resistant glass reduces the harm to the human body by utilizing its own UV-resistant function. When the ultraviolet lamp is turned off and the switch is pressed down, the lithium battery powers a high-voltage grid, which facilitates concentrated electric shocks to attract and kill mosquitoes, reducing the time operators spend searching for mosquitoes and increasing the effectiveness of the electric mosquito swatter.

[0012] 2. This utility model discloses a multifunctional electric mosquito swatter with illumination. Before the ultraviolet lamp is used, a large current is supplied to it through the wires set inside the insulating sleeve. The current flow causes the wire temperature to rise. The operation of the ultraviolet lamp also generates heat. The heat is absorbed by the insulating sleeve and the built-in curved frame. The heat is located inside the inner groove. When the electric mosquito swatter is swung, the generated wind will accelerate the heat dissipation inside the inner groove. The heat dissipation mesh set inside the heat dissipation grooves B and A will prevent dust in the air from entering the inner groove and affecting the heat dissipation effect of the insulating sleeve and the built-in curved frame. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model; Figure 2 This is a schematic diagram of the racket shaft and racket body structure of this utility model; Figure 3 For the present utility model Figure 2 Enlarged view of point A in the middle; Figure 4 This is a schematic diagram of the three-dimensional structure of the racket body of this utility model.

[0014] In the diagram: 1. Electric mosquito swatter; 11. Swatter handle; 111. Swatter groove; 112. Lithium battery; 113. Adjustment switch; 114. Circuit board; 115. Irradiation lamp; 12. Swatter body; 121. Inner groove; 122. Insulating sleeve; 123. Built-in curved frame; 124. Bolt; 125. Ultraviolet lamp; 126. Mounting cover; 127. Ultraviolet resistant glass; 128. Heat dissipation groove A; 129. Heat dissipation groove B; 13. Push switch; 14. High voltage grid; 15. Heat dissipation mesh. Detailed Implementation

[0015] 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.

[0016] Example 1: Please refer to Figures 1-3 A multifunctional electric mosquito swatter with illumination includes an electric mosquito swatter 1. The electric mosquito swatter 1 includes a swatter shaft 11 and a swatter body 12 installed at the top of the swatter shaft 11. A high-voltage grid 14 is installed inside the swatter body 12. A push-button switch 13 is installed on the outer surface of the swatter shaft 11. A swatter groove 111 is opened inside the body of the swatter shaft 111. A lithium battery 112 is installed inside the swatter groove 111. The lithium battery 112 is of model 18650, has a voltage of 3.7V, and a capacity between 2200mAh and 3500mAh.

[0017] The racket body 12 has an inner groove 121 inside, and an inner curved frame 123 is installed inside the inner groove 121. An installation cover 126 is installed through the outer surface of the racket body 12. The lower end of the installation cover 126 is installed on the outer surface of the inner curved frame 123. An ultraviolet lamp 125 is installed inside the installation cover 126.

[0018] The inside of the rod groove 111 is equipped with a circuit board 114, and the outer surface of the swatter 11 is equipped with an adjustment switch 113 and an illumination lamp 115. When the ultraviolet lamp 125 and the illumination lamp 115 are switched, the circuit board 114 also has a protection circuit to prevent current overload or short circuit, ensuring the safe use of the electric mosquito swatter 1.

[0019] The rod groove 111 is connected to the interior of the inner groove 121. Bolts 124 are threaded at the four outer corners of the built-in curved frame 123. The threaded ends of the bolts 124 are threaded into the interior of the inner groove 121. UV-resistant glass 127 is installed inside the mounting cover 126. UV-resistant glass 127 has UV absorbers (such as titanium dioxide, zinc oxide, etc.) added to the glass raw materials. The UV absorbers can absorb UV light within a certain wavelength range, thereby reducing UV transmittance.

[0020] Insulating sleeves 122 are installed through both sides of the built-in curved frame 123, and one end of the insulating sleeve 122 is inside the rod groove 111. The insulating sleeve 122 is used to separate the wires that supply power to the high-voltage grid 14, prevent the two wires from contacting each other, effectively prevent current from flowing through the contact surface outside the conductor, and reduce the risk of electric shock.

[0021] In this embodiment: the plug of the electric mosquito swatter 1 is inserted into the socket, and the electricity is stored in the lithium battery 112. Pushing the adjustment switch 113, the lithium battery 112 will power the ultraviolet lamp 125 through the wire installed in the insulating sleeve 122. The ultraviolet lamp 125 attracts mosquitoes in the space through the ultraviolet-resistant glass 127. The ultraviolet-resistant glass 127 uses its own ultraviolet-resistant function to reduce the harm of the ultraviolet-resistant glass 127 to the human body. After a period of use, the adjustment switch 113 can be pushed back to turn off the ultraviolet lamp 125. Pressing down the push switch 13 will allow the lithium battery 112 to power the high-voltage grid 14, which facilitates the concentrated electric shock of mosquitoes and reduces the time spent by the operator to search for mosquitoes, thus increasing the effectiveness of the electric mosquito swatter 1. When the adjustment switch 113 is pushed to one side of the push switch 13, the illumination lamp 115 will be turned on and can be used as an emergency lamp.

[0022] Example 2: This example is an improvement upon Example 1. For details, please refer to [link / reference]. Figures 2-4The outer surface of the inner groove 121 is provided with heat dissipation grooves A128 and B129. Heat dissipation groove A128 is located on one side of the inner curved frame 123, and heat dissipation groove B129 is located on one side of the insulating sleeve 122. The heat dissipation grooves A128 and B129 facilitate heat dissipation for the inner curved frame 123 and the insulating sleeve 122.

[0023] Heat dissipation mesh 15 is installed inside heat dissipation slots A128 and B129. The heat dissipation mesh 15 facilitates heat dissipation of heat dissipation slots A128 and B129, while also preventing impurities in the outside air from entering the interior of the inner slot 121 and affecting the heat dissipation of heat dissipation slots A128 and B129.

[0024] In this embodiment: Before the ultraviolet lamp 125 is used, a large current is supplied to it through the wires set inside the insulating sleeve 122. The current flow causes the temperature of the wires to rise. The operation of the ultraviolet lamp 125 also generates heat. The heat is absorbed by the insulating sleeve 122 and the built-in curved frame 123. The heat is located inside the inner groove 121. The outer surface of the inner groove 121, located at the positions of the insulating sleeve 122 and the ultraviolet lamp 125, is respectively provided with heat dissipation grooves B129 and A128. When the electric mosquito swatter 1 is swung, the generated wind will accelerate the heat dissipation inside the inner groove 121. The heat dissipation mesh 15 set inside the heat dissipation grooves B129 and A128 will prevent dust in the air from entering the interior of the inner groove 121 and affecting the heat dissipation effect of the insulating sleeve 122 and the built-in curved frame 123.

[0025] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0026] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A multifunctional electric mosquito swatter with illumination, comprising an electric mosquito swatter (1), characterized in that: The electric mosquito swatter (1) includes a swatter pole (11) and a swatter body (12) installed at the top of the swatter pole (11). A high-voltage grid (14) is installed inside the swatter body (12). A push switch (13) is installed on the outer surface of the swatter pole (11). A rod groove (111) is opened inside the body of the swatter pole (111). A lithium battery (112) is installed inside the rod groove (111). The body of the paddle (12) has an inner groove (121) inside, and an inner curved frame (123) is installed inside the inner groove (121). An installation cover (126) is installed through the outer surface of the paddle (12). The lower end of the installation cover (126) is installed on the outer surface of the inner curved frame (123). An ultraviolet lamp (125) is installed inside the installation cover (126).

2. The multifunctional electric mosquito swatter with illumination according to claim 1, characterized in that: A circuit board (114) is installed inside the rod groove (111), and an adjustment switch (113) and an illumination lamp (115) are installed on the outer surface of the rod (11).

3. The multifunctional electric mosquito swatter with illumination according to claim 2, characterized in that: The rod groove (111) is connected to the interior of the inner groove (121). Bolts (124) are threaded at the four corners of the outer side of the built-in curved frame (123). The threaded end of the bolt (124) is threaded to the interior of the inner groove (121). Anti-ultraviolet glass (127) is installed inside the mounting cover (126).

4. The multifunctional electric mosquito swatter with illumination according to claim 3, characterized in that: Insulating sleeves (122) are installed through both sides of the built-in curved frame (123), and one end of the insulating sleeve (122) is inside the rod groove (111).

5. A multifunctional electric mosquito swatter with illumination according to claim 4, characterized in that: The outer surface of the inner groove (121) is provided with heat dissipation groove A (128) and heat dissipation groove B (129). Heat dissipation groove A (128) is located on one side of the built-in curved frame (123), and heat dissipation groove B (129) is located on one side of the insulating sleeve (122).

6. A multifunctional electric mosquito swatter with illumination according to claim 5, characterized in that: The heat dissipation slots A (128) and B (129) are equipped with heat dissipation mesh (15).

Citation Information

Patent Citations

  • Multifunctional electric mosquito swatter base

    CN222485900U