Portable foldable mosquito killing device
The portable, foldable electric mosquito device solves the problems of inconvenience in carrying and storing electric mosquito nets, enabling easy installation and disassembly, adapting to mosquito control needs in different scenarios, and offering diverse functions and strong adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KUNMING XINGCAN INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-05-08
AI Technical Summary
Existing electric mosquito nets are inconvenient to carry and cannot be stored, making it difficult to enjoy mosquito-killing effects when outdoors. They are also easily damaged when not in use during winter, affecting their lifespan.
A portable, foldable mosquito-killing device was designed, including a power supply, a boost module, and a sheet-like electric mosquito net. It can be quickly installed and combined through connectors and plugs/sockets, and supports the splicing and stacking of multiple electric mosquito nets, making it highly adaptable.
It achieves convenient installation and disassembly, adapts to mosquito control needs in different scenarios, is easy to carry and store, has multiple functions, strong applicability, solves the application scenarios of portable devices, and has good adaptability.
Smart Images

Figure CN224206007U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mosquito killing devices, and in particular to a portable, foldable mosquito killing device. Background Technology
[0002] Window screens are a relatively effective physical means for humans to prevent mosquitoes from entering indoors, but ordinary window screens cannot completely stop them. For example, even if mosquitoes are blocked by the screen after smelling human scent, they usually don't leave. Instead, they often stay on the screen or window frame, waiting for an opportunity to enter, or slowly squeeze through a crack in the window. This is why people often feel there are more mosquitoes in the latter half of the night. Ordinary window screens are even less effective at preventing mosquitoes from entering the room, and may even prevent them from flying outside.
[0003] Therefore, in recent years, electric mosquito screens that use electricity to kill mosquitoes have appeared on the market. Ordinary electric mosquito screens (providing a single high voltage) can kill both indoor mosquitoes and outdoor mosquitoes attempting to enter the room and touching the screen. However, killing too many outdoor mosquitoes and leaving too many dead mosquitoes on the screen causes visual pollution and is difficult to clean. They also often cause significant noise due to the high voltage level, affecting users' sleep or rest. More technologically advanced smart electric mosquito screens can differentiate between indoor and outdoor mosquitoes. For indoor mosquitoes, they can take advantage of their habit of flying outdoors to mate or lay eggs at specific times (such as morning or evening), providing a higher voltage during those times and on the screen—their usual route—to kill them. For outdoor mosquitoes, smart electric mosquito screens can provide a lower voltage at other times outside of these specific periods. This voltage is not enough to kill the mosquitoes but is sufficient to irritate them and make them fly away, thus preventing them from entering the room. Therefore, these smart electric mosquito screens can kill indoor mosquitoes, repel outdoor mosquitoes, and avoid causing visual pollution on the screen. Furthermore, by precisely controlling the voltage level, this smart electric mosquito window does not generate noise, thus not affecting users' sleep and rest. Therefore, electric mosquito windows, especially smart electric mosquito windows, are an excellent way to control mosquitoes (or other similar small insects) indoors.
[0004] However, electric mosquito windows (including smart electric mosquito windows) have encountered many difficulties in their promotion: electric mosquito windows are difficult to assemble and install, and have high costs and prices, resulting in low market acceptance or penetration rates to date. Even if consumers want to try them out, they often have to pay a high cost, which is also quite difficult for merchants. When engaging in outdoor activities or traveling (such as camping, RV travel, staying in hotels, etc.), consumers can hardly enjoy the mosquito-killing or mosquito-repelling effects of electric mosquito windows. In addition, existing electric screens are all fixedly installed on the window frame. In winter, when mosquito prevention is not required, the electric screens are still hanging on the window frame and are easily corroded by rain and sun, affecting the lifespan of the electric screens. Moreover, users cannot enjoy a cool and transparent high-quality visual experience due to the obstruction of the screens. Utility Model Content
[0005] To solve or partially solve the problems existing in related technologies, this utility model provides a portable foldable mosquito killing device, which aims to solve the technical problems of existing electric screens being inconvenient to carry and impossible to store.
[0006] The aforementioned portable foldable mosquito-killing device includes a power supply, a boost module, and a sheet-like electric mosquito net;
[0007] The top of the sheet-like electric mosquito net is provided with a first connector, and the bottom of the sheet-like electric mosquito net is provided with a second connector that works in conjunction with the first connector.
[0008] The sheet-like electric mosquito net includes an outer frame, a positive longitudinal line, and a negative longitudinal line;
[0009] The outer frame is provided with positive electrode longitudinal lines and negative electrode longitudinal lines evenly spaced and staggered from left to right; the outer frame is provided with negative electrode transverse connecting lines and positive electrode transverse connecting lines, the negative electrode transverse connecting lines are connected to all the negative electrode longitudinal lines respectively, and the positive electrode transverse connecting lines are connected to all the positive electrode longitudinal lines respectively.
[0010] The top side of the outer frame is provided with a male plug, which is electrically connected to the negative and positive horizontal connecting lines; the bottom of the outer frame is provided with a female plug on the same side as the male plug and matching it, which is electrically connected to the negative and positive horizontal connecting lines.
[0011] The power supply is electrically connected to the input terminal of the boost module, and the output terminal of the boost module is provided with a male power supply plug.
[0012] In some designs, the outer frame is a rigid frame;
[0013] One end of the rigid frame handle is provided with a slot that matches the outer frame.
[0014] In some designs, the first connector is a male connector and the second connector is a female connector;
[0015] Alternatively, the first connector may be a rope, and the second connector may be an iron ring.
[0016] In some solutions, the power source is a power bank, battery pack, or power adapter, and the input terminal of the boost module is equipped with a USB connector.
[0017] In some designs, the negative electrode lateral connecting line and the positive electrode lateral connecting line are located on the same side at the top or bottom of the outer frame; or the negative electrode lateral connecting line and the positive electrode lateral connecting line are located at the top and bottom of the outer frame, respectively.
[0018] In some designs, the bottom of the outer frame is provided with a second male plug opposite to the position of the female plug.
[0019] The technical solution provided by this utility model can include the following beneficial effects:
[0020] When using this application, simply plug the male plug on the power supply side into the female plug of the sheet-like electric mosquito net, and then hang the sheet-like electric mosquito net in the location that needs protection to complete the installation. Installation is convenient. Multiple sheet-like electric mosquito nets can be combined into one unit as needed through the first and second connectors, making it highly adaptable. When not in use, multiple sheet-like electric mosquito nets can be stacked for storage and transportation, making them convenient to carry and store.
[0021] The technical solution provided by the utility model may also include the following beneficial effects:
[0022] In some cases, one of the sheet-like electric mosquito nets can be removed and used together with the power source (power adapter, power bank, battery pack, etc.), boost module, and rigid frame handle as an electric mosquito swatter.
[0023] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit the present invention. Attached Figure Description
[0024] The above and other objects, features and advantages of the present invention will become more apparent from the accompanying drawings, in which like reference numerals generally represent like parts.
[0025] Figure 1 This is a schematic diagram of the structure of the mosquito-killing device shown in an embodiment of the present invention;
[0026] Figure 2 This is a schematic diagram of the structure of the sheet-like electric mosquito net of the mosquito-killing device shown in this embodiment of the utility model, which is longitudinally spliced with male and female buckles;
[0027] Figure 3This is a schematic diagram of the structure of the sheet-like electric mosquito net of the mosquito-killing device shown in this embodiment of the utility model, which uses a pull rope and an iron ring to be longitudinally spliced together;
[0028] Figure 4 This is a schematic diagram of the structure of the mosquito-killing device shown in this embodiment of the invention when the sheet-like electric mosquito net and the rigid frame handle are combined to form an electric mosquito net;
[0029] Figure 5 This is a schematic diagram showing the installation positions of the negative and positive transverse connecting lines of the mosquito-killing device according to an embodiment of this utility model.
[0030] Figure 6 This is a schematic diagram showing the connection of the sheet-like electric mosquito net of the mosquito-killing device when it is horizontally expanded according to an embodiment of this utility model.
[0031] Figure label:
[0032] 1. Power supply; 101. Male plug on the power supply side; 2. Boost module; 3. Sheet-shaped electric mosquito net; 301. Outer frame; 302. Positive vertical wire; 303. Negative vertical wire; 304. Insulated horizontal wire; 305. Negative horizontal connecting wire; 306. Positive horizontal connecting wire; 307. Male plug; 308. Female plug; 309. Second male plug; 4. First connector; 5. Second connector; 6. Rigid frame handle; 601. Slot. Detailed Implementation
[0033] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments, but the scope of protection of the present invention is not limited to the content described.
[0034] like Figure 1 As shown, this application provides a portable foldable mosquito killing device, including a power supply 1, a boost module 2, and a sheet-like electric mosquito net 3.
[0035] The sheet-like electric mosquito net 3 includes an outer frame 301, positive longitudinal lines 302, and negative longitudinal lines 303. The outer frame 301 is generally rectangular and made of insulating material, such as plastic or hard rubber. The positive and negative longitudinal lines 302 and 303 are evenly spaced and interlaced from left to right within the outer frame 301. The positive and negative longitudinal lines 302 and 303 extend from top to bottom and are generally made of conductive material, such as metal wire. The positive and negative longitudinal lines 302 and 303 interweave to form parallel strip structures. In some specific embodiments, insulating transverse lines 304 are evenly spaced from top to bottom within the outer frame 301. The insulating transverse lines 304 extend from left to right and are made of insulating material. The positive and negative longitudinal lines 302 and 303 and the insulating transverse lines 304 interweave to form a mesh.
[0036] The outer frame 301 contains a negative horizontal connecting line 305 and a positive horizontal connecting line 306, which are embedded within the outer frame 301 to prevent current leakage and effectively avoid damage to the negative and positive horizontal connecting lines 305 and 306, thus improving the service life of the device. The negative horizontal connecting line 305 is connected to all the negative vertical lines 303, and the positive horizontal connecting line 306 is connected to all the positive vertical lines 302. A male plug 307 is provided on one side of the top of the outer frame 301, which is electrically connected to the negative horizontal connecting line 305 and the positive horizontal connecting line 306. A female plug 308 is provided on the same side as the male plug 307 and is electrically connected to the negative horizontal connecting line 305 and the positive horizontal connecting line 306.
[0037] The sheet-like electric mosquito net 3 has a first connector 4 at its top and a second connector 5 at its bottom that works in conjunction with the first connector 4. In some embodiments, the first connector is a male buckle and the second connector is a female buckle. In some embodiments, the first connector is a rope and the second connector is an iron ring.
[0038] The power supply 1 is electrically connected to the input terminal of the boost module 2. The output terminal of the boost module 2 is equipped with a male power connector 101. During operation, the current output from the power supply 1 is boosted by the boost module 2, and then conducted through the male power connector 101, female power connector 308, negative horizontal connecting line 305, and positive horizontal connecting line 306 to the positive vertical line 302 and the negative vertical line 303. When a mosquito simultaneously comes into contact with both the positive and negative vertical lines 302 and 303, or when its body is between the positive and negative vertical lines 302 and 303 causing an air gap, it will be electrocuted, thus achieving the purpose of mosquito repellency. Sometimes, for outdoor mosquitoes, electric mosquito nets can provide a lower voltage. When mosquitoes touch the electric mosquito net, they will be adversely stimulated and fly away, thus achieving the purpose of mosquito repellency.
[0039] To use, simply plug the male plug 101 on the power supply side into the female plug 308 on the sheet-like electric mosquito net 3, and then hang the sheet-like electric mosquito net 3 in the location that needs protection, such as a fixed room window, a tent observation window, or a RV window, and the installation is complete. Installation is convenient.
[0040] In some specific implementations, when used, such as Figure 2As shown, the first connector 4 (male buckle) of one sheet-shaped electric mosquito net 3 is connected to the second connector 5 (female buckle) of another sheet-shaped electric mosquito net 3, and the male plug 307 of one sheet-shaped electric mosquito net 3 is plugged into the female plug 308 of another sheet-shaped electric mosquito net 3. This allows multiple sheet-shaped electric mosquito nets 3 to be connected into one large sheet-shaped electric mosquito net 3, providing adjustable protection area and convenient use. Furthermore, the different sheet-shaped electric mosquito nets 3 are connected by male and female buckles, providing a flexible connection that allows for bending at the connection point. When used on tent windows, the sheet-shaped electric mosquito nets 3 can fit snugly against the tent, effectively ensuring mosquito prevention. When not in use, multiple sheet-shaped electric mosquito nets 3 can be stacked for storage and transport, making them convenient to carry and store.
[0041] In some specific implementations, when used, such as Figure 3 As shown, the first connector 4 (rope) of one sheet-shaped electric mosquito net 3 is connected to the second connector 5 (iron ring) of another sheet-shaped electric mosquito net 3, and the male plug 307 of one sheet-shaped electric mosquito net 3 is plugged into the female plug 308 of another sheet-shaped electric mosquito net 3. This allows multiple sheet-shaped electric mosquito nets 3 to be connected into one large sheet-shaped electric mosquito net 3, providing adjustable protection area and convenient use. Furthermore, the different sheet-shaped electric mosquito nets 3 are connected by male and female buckles, providing a flexible connection that allows for bending at the connection point. When used on tent windows, the sheet-shaped electric mosquito nets 3 can fit snugly against the tent, effectively ensuring mosquito prevention. When not in use, multiple sheet-shaped electric mosquito nets 3 can be stacked for storage and transport, making them convenient to carry and store.
[0042] In some specific implementations, such as Figure 4 As shown, the outer frame 301 is a rigid frame; one end of the rigid frame handle 6 is provided with a slot 601 that matches the outer frame 301.
[0043] When mosquitoes have already entered the room or tent and need to be quickly and actively killed, the outer frame 301 of a sheet-like electric mosquito net 3 can be inserted into the slot 601, thereby connecting the sheet-like electric mosquito net 3 with the rigid frame handle 6 to form an electric mosquito swatter, which can be used for the active killing of mosquitoes. It has multiple functions and good applicability.
[0044] In some specific embodiments, the power source 1 is a power bank or battery pack, and the input terminal of the boost module 2 is equipped with a USB connector. Power banks are easy to obtain, which effectively improves the applicability of the device.
[0045] In some specific implementations, power supply 1 can also be a power adapter, etc.
[0046] In some specific implementations, such as Figure 1 As shown, the negative electrode lateral connecting line 305 and the positive electrode lateral connecting line 306 are disposed on the same side at the top or bottom of the outer frame 301.
[0047] In some specific implementations, such as Figure 5 As shown, the negative electrode lateral connecting line 305 and the positive electrode lateral connecting line 306 are respectively disposed at the top and bottom of the outer frame 301, that is, the negative electrode lateral connecting line 305 is disposed at the top of the outer frame 301 and the positive electrode lateral connecting line 306 is disposed at the bottom of the outer frame 301; or the negative electrode lateral connecting line 305 is disposed at the bottom of the outer frame 301 and the positive electrode lateral connecting line 306 is disposed at the top of the outer frame 301. By distributing the negative electrode lateral connecting line 305 and the positive electrode lateral connecting line 306 separately, it is beneficial to reduce the thickness of the outer frame 301.
[0048] In some specific implementations, such as Figure 6 As shown, the bottom of the outer frame 301 is provided with a second male plug 309 opposite to the position of the female plug 308. Thus, when it is necessary to expand the sheet-like electric mosquito net 3 laterally, the second male plug 309 and the female plug 308 on the two sheet-like electric mosquito nets 3 can be plugged into each other, thereby connecting the two adjacent sheet-like electric mosquito nets 3, which is convenient to use.
[0049] The various embodiments of the present invention have been described above. These descriptions are exemplary and not exhaustive, nor are they limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. A portable, foldable mosquito-killing device, characterized in that: Includes power supply (1), boost module (2), and sheet-like electric mosquito net (3). The top of the sheet-like electric mosquito net (3) is provided with a first connector (4), and the bottom of the sheet-like electric mosquito net (3) is provided with a second connector (5) that works in conjunction with the first connector (4). The sheet-like electric mosquito net (3) includes an outer frame (301), a positive pole longitudinal line (302), and a negative pole longitudinal line (303). The outer frame (301) is provided with positive electrode longitudinal lines (302) and negative electrode longitudinal lines (303) evenly spaced and staggered from left to right; the outer frame (301) is provided with negative electrode transverse connecting lines (305) and positive electrode transverse connecting lines (306), the negative electrode transverse connecting lines (305) are connected to all the negative electrode longitudinal lines (303) respectively, and the positive electrode transverse connecting lines (306) are connected to all the positive electrode longitudinal lines (302) respectively; The outer frame (301) has a male plug (307) on one side of its top, which is electrically connected to the negative horizontal connecting line (305) and the positive horizontal connecting line (306); the outer frame (301) has a female plug (308) on the same side as the male plug (307) and which is matched therewith, which is electrically connected to the negative horizontal connecting line (305) and the positive horizontal connecting line (306). The power supply (1) is electrically connected to the input terminal of the boost module (2), and the output terminal of the boost module (2) is provided with a power supply side male plug (101).
2. The portable foldable mosquito-killing device according to claim 1, characterized in that: The outer frame (301) is a rigid frame; One end of the rigid frame handle (6) is provided with a slot (601) that matches the outer frame (301).
3. A portable, foldable mosquito-killing device according to claim 1, characterized in that: The first connector (4) is a male connector, and the second connector (5) is a female connector; Alternatively, the first connector (4) may be a rope and the second connector (5) may be an iron ring.
4. A portable, foldable mosquito-killing device according to claim 1, characterized in that: The power supply (1) is a power bank, battery pack or power adapter, and the input end of the boost module (2) is equipped with a USB connector.
5. A portable, foldable mosquito-killing device according to claim 1, characterized in that: The negative electrode transverse connecting line (305) and the positive electrode transverse connecting line (306) are disposed on the same side at the top or bottom of the outer frame (301); or the negative electrode transverse connecting line (305) and the positive electrode transverse connecting line (306) are disposed at the top and bottom of the outer frame (301) respectively.
6. A portable foldable mosquito-killing device according to claim 1, characterized in that: The bottom of the outer frame (301) is provided with a second male plug (309) opposite to the position of the female plug (308).
7. A portable foldable mosquito-killing device according to claim 1, characterized in that: The outer frame (301) is provided with insulating transverse lines (304) evenly spaced from top to bottom.