Handheld mosquito and fly catching and killing device
By designing a handheld mosquito and fly trap, which incorporates a shell, trap net, handle, and built-in power supply, the problem of inconvenient operation and low efficiency of existing tools is solved, achieving efficient and convenient mosquito and fly trapping effects, and making it suitable for use in multiple scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-07
AI Technical Summary
Existing mosquito and fly control tools suffer from problems such as inconvenience in operation, low efficiency, significant environmental impact, and poor portability, making it difficult to meet the needs of household and outdoor use.
A handheld mosquito and fly trap has been designed, which consists of a shell, a trap net, and a handle. It is combined with a telescopic mechanism, a built-in power supply, and a light. The position of the trap net can be adjusted by a knob, which improves the ease of operation and the trapping range.
It achieves efficient, convenient, and environmentally friendly mosquito and fly control, suitable for both home and outdoor environments, expands the control range, and improves operational stability and practicality.
Smart Images

Figure CN224084517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household sanitary equipment technology, and in particular to a handheld mosquito and fly trap. Background Technology
[0002] In daily life, pests such as mosquitoes and flies not only affect people's normal lives but also potentially spread diseases, posing a threat to public health. Therefore, how to effectively control mosquitoes and flies has become an important issue of concern. Currently, common mosquito and fly control tools on the market mainly include traditional swatting tools, chemical sprays, and electronic mosquito killers. However, these existing technologies have certain limitations. Traditional swatting tools are inconvenient to operate, inefficient, and unable to handle fast-flying mosquitoes and flies; while chemical sprays can repel and kill flies to some extent, long-term use may have adverse effects on human health and the environment; electronic mosquito killers usually require fixed installation, are not portable, and have limited coverage, making them unsuitable for outdoor or mobile scenarios. Furthermore, existing handheld killing devices are mostly single-function, have low killing efficiency, and are easily limited by environmental factors during use. Therefore, developing an efficient, portable, and environmentally friendly handheld mosquito and fly killer to solve the above-mentioned technical problems has significant practical value and promotional significance. Utility Model Content
[0003] The purpose of this utility model is to provide a handheld mosquito and fly trap that solves the problems mentioned in the background art.
[0004] This utility model is implemented as follows: a handheld mosquito and fly trap, which mainly consists of a shell, a trapping net set at the front end of the shell, and a handle set at the rear end of the shell. The trapping net is movably connected to the shell through a telescopic mechanism. The handle includes a grip, a battery compartment set at the bottom of the grip, and a trigger switch set at the top of the grip.
[0005] A further technical solution of this utility model is: a screw is provided inside the telescopic mechanism, a knob connected to the screw is provided on the outside of the telescopic mechanism, and a guide rail that cooperates with the screw is provided inside the housing.
[0006] A further technical solution of this utility model is: the trigger switch is arc-shaped and located at the top of the handle; the battery compartment is equipped with a built-in power supply for powering the net.
[0007] A further technical solution of this utility model is: the shell is provided with a lighting lamp corresponding to the trapping net, and the position of the lighting lamp matches the working area of the trapping net.
[0008] A further technical solution of this utility model is: a groove is provided on the side of the handle near the shell, and an anti-slip silicone pad is embedded in the groove.
[0009] A further technical solution of this utility model is: one end of the screw is fixedly connected to the trapping net, and the other end extends to the outside of the shell and is connected to the knob.
[0010] A further technical solution of this utility model is: the lighting lamp uses LED lamp beads, and the lighting lamp switch is independent of the trigger switch.
[0011] The beneficial effects of this utility model are as follows: This device has a compact structure, is easy to carry, and can be widely used in home and outdoor environments. The handle supports the trapping net, and the built-in power supply provides stable power. The position of the trapping net can be adjusted by the knob, which improves the trapping range and ease of operation, thereby improving the efficiency of mosquito and fly trapping. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the overall structure of the present invention, showing the layout of the housing, the trapping net, the handle, and the light of the handheld mosquito and fly trap. The trapping net is connected to the housing through a telescopic mechanism, and the handle is equipped with a trigger switch and a battery compartment.
[0013] Figure 2 This is a schematic diagram of the telescopic mechanism of the trapping net of this utility model, which shows in detail the structural relationship between the screw, the knob and the guide rail, and how the knob drives the screw to rotate so as to realize the forward and backward movement of the trapping net.
[0014] Figure 3 This is a schematic diagram of the handle part of this utility model, which highlights the groove on the grip, the anti-slip silicone pad, and the arc design of the trigger switch, demonstrating the stability and convenience of one-handed operation.
[0015] The attached figures are labeled as follows:
[0016] 1. Shell; 2. Net; 3. Handle; 4. Telescopic mechanism; 5. Screw; 6. Knob; 7. Guide rail; 8. Grip; 9. Battery compartment; 10. Trigger switch; 11. Light; 12. Groove; 13. Anti-slip silicone pad. Detailed Implementation
[0017] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0018] It should be noted that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of this invention. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of this invention, should still fall within the scope of the disclosed technical content. Furthermore, the terms "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of this invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this invention.
[0019] Example 1: Figure 1 A handheld mosquito and fly trap is shown, and the specific implementation of the device is illustrated in conjunction with the attached diagram. Figure 1 To be continued Figure 3 Please provide a detailed explanation. For example... Figure 1 As shown, the overall structure of this utility model includes a housing 1, a trap net 2 located at the front end of the housing 1, and a handle 3 located at the rear end of the housing 1. The trap net 2 is movably connected to the housing 1 via a telescopic mechanism 4. The telescopic mechanism 4 has a screw 5 inside and a knob 6 connected to the screw 5 on the outside. The knob 6 drives the screw 5 to rotate and, in conjunction with the guide rail 7 inside the housing 1, moves the trap net 2 back and forth. The handle 3 includes a grip 8, a battery compartment 9 located at the bottom of the grip 8, and a trigger switch 10 located at the top of the grip 8. The trigger switch 10 is arc-shaped and is used for one-handed operation to form a stable grip point. The battery compartment 9 provides power to the trap net 2 through a built-in power source to form an energy support point. The housing 1 has a light 11 corresponding to the trap net 2. The grip 8 has a groove 12 on the side near the housing 1, and the groove 12 is embedded with an anti-slip silicone pad 13 to enhance operational stability. This device is compact and portable, and can be widely used in home and outdoor environments. The handle 3 supports the trap net 2 and provides stable power through the built-in power supply. The position of the trap net 2 can be adjusted by the knob 6, which improves the trapping range and ease of operation, thereby increasing the efficiency of mosquito and fly trapping.
[0020] In specific implementation, first refer to Figure 1The housing 1, as the main load-bearing component of the entire device, is ergonomically designed to ensure easy grip and reduce user fatigue. A trapping net 2, made of woven metal wire, is located at the front end of the housing 1. This net possesses excellent conductivity and durability, and can quickly kill mosquitoes and flies upon contact with it using high-voltage current. The trapping net 2 is connected to the housing 1 via a telescopic mechanism 4. The telescopic mechanism 4 allows the trapping net 2 to move back and forth within a certain range, thereby expanding the trapping area. The specific structure of the telescopic mechanism 4 is as follows... Figure 2 As shown, the device contains a screw 5 inside. One end of the screw 5 is fixedly connected to the trapping net 2, and the other end extends to the outside of the housing 1 and is connected to a knob 6. The knob 6 is located on the outside of the housing 1. The user can rotate the knob 6 to drive the screw 5 to rotate. The rotation of the screw 5, in conjunction with the guide rail 7, enables the trapping net 2 to move back and forth. The guide rail 7 is fixed inside the housing 1, and its smooth surface provides guidance, ensuring that the trapping net 2 remains stable during movement. This design not only improves the operational flexibility of the trapping net 2 but also enhances the overall stability of the device.
[0021] Handle 3 is an important component of this utility model, and its structure is as follows: Figure 3 As shown, the device includes a handle 8, a battery compartment 9, and a trigger switch 10. The handle 8 is designed to conform to the natural curvature of the human hand, allowing for extended use without fatigue. A groove 12 is located on the side of the handle 8 near the housing 1, containing an anti-slip silicone pad 13. The surface of the anti-slip silicone pad 13 has a fine texture, effectively increasing friction and preventing the device from slipping from the hand during use. The battery compartment 9 is located at the bottom of the handle 8, accommodating multiple dry cell or rechargeable batteries to provide stable power to the trapping net 2. The cover of the battery compartment 9 uses a snap-on design for easy battery replacement. The trigger switch 10 is located at the top of the handle 8. The trigger switch 10 is arc-shaped, its position and shape carefully designed to fit naturally with the user's thumb for easy one-handed operation. When the user presses the trigger switch 10, the circuit is connected, and the trapping net 2 begins to operate; when the user releases the trigger switch 10, the circuit is disconnected, and the trapping net 2 stops operating. This design not only improves the ease of operation, but also effectively avoids safety hazards caused by accidental touches.
[0022] The housing 1 is equipped with an illumination lamp 11, which is positioned corresponding to the trapping net 2. This lamp provides auxiliary lighting in low-light environments, helping users to more accurately locate target mosquitoes and flies. The illumination lamp 11 uses low-power LED beads, featuring high brightness and low energy consumption, allowing for continuous operation for extended periods without significantly draining the battery. The illumination lamp 11 has a separate switch from the trigger switch 10, allowing users to turn the lighting function on or off as needed. Furthermore, the housing 1 is made of high-strength plastic, making it lightweight, durable, and waterproof, thus adapting to various complex operating environments.
[0023] In practical applications, this handheld mosquito and fly trap can be widely used in both home and outdoor settings. For example, in a home environment, users can use the device in bedrooms, living rooms, or kitchens to quickly eliminate indoor mosquitoes and flies, improving the hygiene of the living environment. In an outdoor environment, users can carry the device with them to repel insects during camping, picnics, or gardening activities. The specific operating steps are as follows: First, the user inserts the battery into the battery compartment 9 to ensure the device is in standby mode; then, depending on the location of the target mosquitoes and flies, the user adjusts the position of the trapping net 2 by rotating the knob 6 to cover a larger area; next, the user holds the handle 8 with one hand and presses the trigger switch 10 with their thumb to power on the trapping net 2; finally, the user slowly moves the trapping net 2 closer to the target mosquitoes and flies. When the mosquitoes and flies come into contact with the trapping net 2, the high-voltage current will quickly kill them. Throughout the operation, the user can observe the brightness of the light 11 to judge the working status of the device, and at the same time, the anti-slip silicone pad 13 enhances the grip stability, ensuring safe and reliable operation.
[0024] In summary, this utility model achieves efficient and convenient mosquito and fly trapping through reasonable structural design and functional configuration. Its core innovation lies in the extension mechanism 4, which enables the trapping net 2 to move back and forth, expanding the trapping range; the optimized design of the handle 3, which improves operational stability and convenience; and the integration of a built-in power supply and lighting lamp 11, which enhances the device's practicality and adaptability. These features make this utility model perform excellently in practical applications, meeting the needs of different scenarios and possessing high market promotion value.
[0025] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A handheld mosquito and fly trap, characterized in that, The handheld mosquito and fly trap is mainly composed of a housing (1), a trapping net (2) located at the front end of the housing (1), and a handle (3) located at the rear end of the housing (1). The trapping net (2) is movably connected to the housing (1) through a telescopic mechanism (4). The handle (3) includes a grip (8), a battery compartment (9) located at the bottom of the grip (8), and a trigger switch (10) located at the top of the grip (8).
2. The handheld mosquito and fly trap according to claim 1, characterized in that, The telescopic mechanism (4) is equipped with a screw (5), and the telescopic mechanism (4) is equipped with a knob (6) connected to the screw (5) on the outside. The housing (1) is equipped with a guide rail (7) that cooperates with the screw (5).
3. A handheld mosquito and fly trap according to claim 1, characterized in that, The trigger switch (10) is arc-shaped and located on the top of the handle (8). The battery compartment (9) contains a built-in power supply for powering the trap net (2).
4. A handheld mosquito and fly trap according to claim 1, characterized in that, The housing (1) is equipped with a lighting lamp (11) corresponding to the trapping net (2), and the position of the lighting lamp (11) matches the working area of the trapping net (2).
5. A handheld mosquito and fly trap according to claim 1, characterized in that, The handle (8) has a groove (12) on the side near the housing (1), and an anti-slip silicone pad (13) is embedded in the groove (12).
6. A handheld mosquito and fly trap according to claim 2, characterized in that, One end of the screw (5) is fixedly connected to the trap net (2), and the other end extends to the outside of the housing (1) and is connected to the knob (6).
7. A handheld mosquito and fly trap according to claim 4, characterized in that, The lighting lamp (11) uses LED lamp beads, and the switch of the lighting lamp (11) is independent of the trigger switch (10).