Control structure of mosquito eradication device and mosquito eradication swatter

By employing a dual-function push-button switch design in the mosquito-killing device, the operation process is simplified, costs are reduced, user experience and device safety and reliability are improved, and the problems of high cost and complex operation in traditional mosquito-killing devices are solved.

CN223452702UActive Publication Date: 2025-10-21FOSHAN SIJISHANGPIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423036336.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-10-21
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The use of two independent switches to control the boost circuit and discharge circuit in existing mosquito control devices increases costs and operational complexity, affecting user experience.

Method used

It adopts a dual-function push-button switch design, which can control the opening of the boost circuit and the disconnection of the discharge circuit with a single press operation. Combined with the mechanical design of spring and conductive metal sheet, reliable switching is ensured.

Benefits of technology

It simplifies the operation process, reduces costs, improves user experience and the safety and reliability of the equipment, and avoids potential safety hazards caused by residual electricity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a mosquito eradication device control structure and a mosquito eradication swatter, the mosquito eradication device control structure comprises a mosquito eradication net, a booster circuit, a discharge circuit and a controller, the booster circuit is electrically connected with the mosquito eradication net, and the booster circuit is used for providing enough voltage for the mosquito eradication net; the discharging circuit is electrically connected with the mosquito killing net, and the discharging circuit is used for automatically discharging residual electricity of the mosquito killing net; the controller comprises a first push switch and a second push switch, the first push switch is connected with the booster circuit in series, on-off of the first push switch controls on-off of the booster circuit, the second push switch is connected with the discharging circuit in series, and on-off of the second push switch controls on-off of the discharging circuit; by utilizing the design of the push switch with double functions, the mode that two independent switches need to be operated respectively in the traditional scheme is replaced. In addition, a user can control the boosted circuit to be turned on and the discharging circuit to be turned off only through one-time pressing operation, the operation process is simplified, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mosquito killer's control structure and mosquito killer. BACKGROUND

[0002] Mosquito killer is a common household and public place used equipment, aims at killing mosquito through electric shock mode. The existing mosquito killer usually includes mosquito killer net, boost circuit, discharge circuit and corresponding switch control structure. In the prior art, the electrical connection between mosquito killer net and boost circuit, discharge circuit usually needs to control the on-off state of boost circuit and discharge circuit through independent switch, thereby realizing the work and safe discharge of mosquito killer net.

[0003] Specifically, the traditional design usually adopts two switches to control the work of boost circuit and discharge circuit respectively. The first switch is used to turn on boost circuit, provides enough voltage to mosquito killer net, so as to ensure that mosquito can be electric shock to death, the second switch is used to control discharge circuit, ensures that the residual energy is discharged in time when mosquito killer net does not work, avoids the security risk caused by electric residue. The advantage of this design is that the working state of each circuit can be controlled independently, but there are also some shortcomings.

[0004] Firstly, the mode of using two independent switches to control often leads to the increase of equipment cost, especially when standard high-quality switch is needed, the increase of cost is more obvious. In addition, the design of multiple switches also increases the complexity of operation, users need to operate different switches in turn, which may bring inconvenience, and even affect user experience. UTILITY MODEL CONTENTS

[0005] The first purpose of the utility model is to provide a mosquito killer control structure which can reduce cost and simplify operation.

[0006] The second purpose of the utility model is to provide a mosquito killer which optimizes the installation mode of lamp beads and lens, improves the assembly efficiency, can reduce cost and simplify operation.

[0007] The first purpose of the utility model is realized as follows:

[0008] A mosquito killer control structure, comprising a mosquito killer net, a boost circuit, a discharge circuit and a controller, the boost circuit and the mosquito killer net are electrically connected, and the boost circuit is used to provide enough voltage to the mosquito killer net;

[0009] The discharge circuit and the mosquito killer net are electrically connected, and the discharge circuit is used to automatically discharge the residual electricity of the mosquito killer net;

[0010] The controller comprises a first press switch and a second press switch, the first press switch and a boost circuit are connected in series, the first press switch controls the boost circuit to be on or off, the second press switch and a discharge circuit are connected in series, the second press switch controls the discharge circuit to be on or off;

[0011] The first press switch comprises a seat body and an insulating press rod, the insulating press rod is arranged on the seat body, and the insulating press rod controls the first press switch to be on or off through stretching or retracting;

[0012] The second press switch comprises a conductive metal shell, a spring, a conductive metal baffle and a conductive metal sheet, the conductive metal shell is sleeved on the seat body, the conductive metal sheet is arranged in front of the insulating press rod, the conductive metal sheet is provided with an opening corresponding to the position of the insulating press rod, and the insulating press rod passes through the conductive metal shell and extends towards the opening direction;

[0013] The conductive metal baffle is arranged on the insulating press rod between the conductive metal shell and the conductive metal sheet, and the spring is sleeved on the insulating press rod, one end of the spring abuts against the conductive metal shell, and the other end of the spring abuts against the conductive metal baffle;

[0014] When the insulating press rod is pressed against the spring force, the first press switch is turned on, so that the boost circuit is turned on, at the same time, the conductive metal baffle is away from the conductive metal sheet, the second press switch is turned off, and the discharge circuit is turned off;

[0015] When the insulating press rod is reset, the first press switch is turned off, so that the boost circuit is turned off, at the same time, the conductive metal baffle contacts the conductive metal sheet, the second press switch is turned on, and the discharge circuit is turned on.

[0016] By using a double-function press switch design, the traditional scheme of needing to operate two independent switches is replaced. The user only needs to press once to control the opening of the boost circuit and the closing of the discharge circuit, simplifying the operation process and improving the user experience.

[0017] By using the self-made second press switch (combined with a spring, a metal conductive sheet and other simple elements), the use of multiple standard high-cost switch parts is avoided. This not only reduces the element procurement and production cost, but also reduces the overall cost, making the product more competitive in the market.

[0018] The control structure can effectively ensure that the electric energy is released in time after the mosquito killer net stops working. The disconnection of the first press switch cuts off the boost circuit, and the second press switch turns on the discharge circuit at this time, so as to ensure that the residual electricity of the mosquito killer net is released in time, avoid potential safety hazards caused by residual electricity, and improve the safety during use.

[0019] The mechanical design of the spring and the conductive metal sheet ensures reliable switching of the first and second press switches, reduces the occurrence of mechanical failures, and improves the overall reliability of the device.

[0020] When the mosquito-killing net is no longer working, the control structure can automatically start the discharge circuit, avoiding the residual electric energy remaining in the mosquito-killing net, and further improving the safety and performance stability of the device.

[0021] The first purpose of the utility model can also be solved by the following technical measures:

[0022] It also includes a power supply and a circuit board, the circuit board is provided with the boost circuit, the discharge circuit and the controller, the mosquito-killing net, power supply is electrically connected with the circuit board respectively.

[0023] The boost circuit, discharge circuit and controller are integrated on the same circuit board, so that the design of the whole system is more compact and simple. The integration of the circuit board makes the connection between each circuit module more compact, improving the stability and reliability of the system.

[0024] By integrating the power supply, boost circuit, discharge circuit and controller in the same circuit board, the independent wiring between each part is reduced. This design not only reduces the complexity of circuit connection, but also reduces the influence of external interference on the circuit, thereby improving the anti-interference ability and working stability of the circuit.

[0025] The design of the circuit board makes the internal structure of the mosquito-killing device more compact, and the external appearance more neat and beautiful. By orderly integrating each circuit module, the exposure of complex cables and components is avoided, and the overall beauty of the product is improved.

[0026] The integrated circuit board helps to optimize power management, especially for battery-powered mosquito-killing devices, ensuring efficient use of the battery, prolonging the service life of the battery, and avoiding energy waste.

[0027] The second purpose of the utility model is achieved as follows:

[0028] A mosquito-killing fan includes a protection frame, a handle and an illumination module, the mosquito-killing net is arranged in the protection frame, the protection frame is provided with a handle connecting part, the illumination module includes a lamp bead and a lens, the handle connecting part is provided with a lamp bead accommodating cavity for accommodating the lamp bead, and the lamp bead is arranged in the lamp bead accommodating cavity.

[0029] The handle includes a front handle part and a rear handle part, and the front handle part is provided with a lens mounting port corresponding to the position of the lamp bead accommodating cavity.

[0030] The lens shape matches the shape of the lens mounting port, the lens is provided with an outer extension edge, the lens protrudes outward through the lens mounting port until the outer extension edge abuts against the inner wall of the front handle part, so that the lens is embedded in the lens mounting port;

[0031] The front handle part and the rear handle part are connected to form a handle, and the front handle part and the rear handle part clamp the handle connecting part, so that the handle and the protection frame are connected, and the lamp bead accommodating cavity is closed by the lens;

[0032] The circuit board is arranged in the handle, the circuit board is also provided with a toggle switch, the lamp bead is electrically connected with the circuit board, the controller controls the voltage rise and discharge of the mosquito killer net, and the toggle switch controls the power supply of the mosquito killer net, the power-off of the mosquito killer net and the common power supply of the mosquito killer net and the lamp bead.

[0033] During use of the mosquito killer, the user can not only effectively kill mosquitoes, but also use the lighting function in a low-light environment, thereby increasing the multifunctionality and practicality of the product.

[0034] Through the precise cooperation of the lamp bead accommodating cavity and the lens mounting port, it is ensured that the lens can be embedded and fixed in position, thereby ensuring the stability and lighting effect of the lighting module. The design of the lens enables uniform scattering of light, thereby enhancing the lighting effect and improving the use experience of the mosquito killer in the night or dim environment.

[0035] The user can control the voltage rise and discharge of the mosquito killer net by pressing the controller, and the user can control the power supply of the mosquito killer net, the power-off of the mosquito killer net and the common power supply of the mosquito killer net and the lamp bead by toggling the switch, and the operation is simple.

[0036] The handle of the mosquito killer is composed of the front handle part and the rear handle part, and the two parts clamp the handle connecting part, thereby ensuring the stable connection of the handle and the protection frame, and also ensuring the comfort and stability of the handle during use. The handle design makes the user more convenient during use, and effectively avoids the problems of loose or unstable handle caused by improper operation.

[0037] The lens is embedded in the lens mounting port, which not only ensures the close connection of the lens and the handle, but also effectively protects the lamp bead from physical impact and damage from the outside. At the same time, the outer extension edge of the lens abuts against the inner wall of the front handle part, effectively avoiding the deviation or loosening of the position of the lamp bead and the lens, thereby improving the durability and stability of the lighting module.

[0038] The beneficial effects of the utility model are as follows:

[0039] The utility model discloses, through utilizing one double function's press switch design, replaced the mode that needs the operation of two independent switches respectively in traditional scheme. User only needs through once press operation, can control the opening of boost circuit and the disconnection of discharge circuit, has simplified the operation process, has promoted the user experience.

[0040] The utility model discloses, when user stops pressing, the disconnection of first press switch will cut off boost circuit, and second press switch is connected discharge circuit at this time, thereby ensuring that the residual electricity of mosquito net is released in time, avoids the potential safety hazard that electric residue brings, promotes the security in the use process.

[0041] The utility model discloses through the mechanical design of spring and conductive metal sheet, has guaranteed the reliable switching of first press switch and second press switch, has reduced the occurrence of mechanical failure, has promoted the overall reliability of equipment. DRAWINGS

[0042] Figure 1 It is the schematic diagram of the improved structure of electric mosquito swatter.

[0043] Figure 2 It is the front view of the improved structure of electric mosquito swatter.

[0044] Figure 3 It is the sectional view of the improved structure of electric mosquito swatter.

[0045] Figure 4 It is the assembly drawing of the improved structure of electric mosquito swatter.

[0046] Figure 5 It is the assembly drawing of the improved structure of electric mosquito swatter from another angle.

[0047] Figure 6 It is the boost state schematic diagram of mosquito net.

[0048] Figure 7 It is the discharge state schematic diagram of mosquito net.

[0049] Figure 8 It is Figure 3 The enlarged view of A part. CONCRETE IMPLEMENTING METHOD

[0050] The utility model will be further described in connection with the drawings and examples:

[0051] The utility model discloses, through utilizing one double function's press switch design, replaced the mode that needs the operation of two independent switches respectively in traditional scheme. User only needs through once press operation, can control the opening of boost circuit and the disconnection of discharge circuit, has simplified the operation process, has promoted the user experience. Figures 1 to 8 As shown in the figure, an electric mosquito swatter comprises a protection frame 1, a mosquito net 2, a handle 3, a circuit board 4, a power supply and an illumination module, the mosquito net 2 is arranged in the protection frame 1, the protection frame 1 is provided with a handle connecting part 11, the illumination module comprises a lamp bead 6 and a lens 5, the handle connecting part 11 is provided with a lamp bead accommodating cavity 12 for accommodating the lamp bead 6, and the lamp bead 6 is arranged in the lamp bead accommodating cavity 12.

[0052] The handle 3 comprises a front handle part 31 and a rear handle part 32, and the front handle 3 is provided with a lens mounting port 33 corresponding to the position of the lamp bead accommodating cavity 12;

[0053] The lens 5 is matched in shape with the lens mounting port 33, and the lens 5 is provided with an outer extension edge 51, the lens 5 extends outward through the lens mounting port 33 until the outer extension edge 51 abuts against the inner wall of the front handle part 31, so that the lens 5 is embedded in the lens mounting port 33;

[0054] The front handle part 31 and the rear handle part 32 are connected to form the handle 3, and the front handle part 31 and the rear handle part 32 clamp the handle connecting part 11, so that the handle 3 and the protection frame 1 are connected, and the lens 5 seals the lamp bead accommodating cavity 12;

[0055] Further, the inner wall of the lamp bead accommodating cavity 12 is sprayed with a reflective coating.

[0056] Further, the lens 5 and the lens mounting port 33 are compactly matched.

[0057] Further, the upper part of the front handle part 31 is provided with a front connecting cavity 311, the upper part of the rear handle part 32 is provided with a rear connecting cavity 322, the front handle part 31 and the rear handle part 32 are connected, the front connecting cavity 311 and the rear connecting cavity 322 surround a connecting cavity, and the handle connecting part 11 is arranged in the connecting cavity, a bolt passes through the front handle part 31, the handle connecting part 11 and the rear handle part 32, and the protection frame 1 and the handle 3 are connected.

[0058] Further, the lamp bead 6 is an LED lamp bead, and the power supply is a battery 10.

[0059] The circuit board 4 is provided with a voltage boosting circuit, a discharging circuit and a controller, the voltage boosting circuit is electrically connected with the mosquito killing net 2, and the voltage boosting circuit is used to provide sufficient voltage for the mosquito killing net 2;

[0060] The discharging circuit is electrically connected with the mosquito killing net 2, and the discharging circuit is used to automatically discharge the residual electricity of the mosquito killing net 2;

[0061] The controller comprises a first press switch 7 and a second press switch 8, the first press switch 7 is connected in series with the voltage boosting circuit, the first press switch 7 is used to control the on-off of the voltage boosting circuit, the second press switch 8 is connected in series with the discharging circuit, and the second press switch 8 is used to control the on-off of the discharging circuit;

[0062] The first press switch 7 comprises a seat body 71 and an insulating press rod 72, the insulating press rod 72 is arranged on the seat body 71, and the insulating press rod 72 is used to control the on-off of the first press switch 7 through extension and retraction;

[0063] The second press switch 8 comprises a conductive metal shell 81, a spring 82, a conductive metal baffle 83 and a conductive metal sheet 84, the conductive metal shell 81 is sleeved on the seat body 71, the conductive metal sheet 84 is arranged in front of the insulating press rod 72, the conductive metal sheet 84 corresponds to the opening of the insulating press rod 72, and the insulating press rod 72 penetrates through the conductive metal shell 81 and extends towards the opening direction;

[0064] The conductive metal baffle 83 is arranged on the insulating press rod 72 between the conductive metal shell 81 and the conductive metal sheet 84, and the spring 82 is sleeved on the insulating press rod 72, one end of the spring 82 abuts against the conductive metal shell 81, and the other end of the spring 82 abuts against the conductive metal baffle 83;

[0065] The circuit board 4 is arranged in the handle 3, the circuit board 4 is also provided with a toggle switch 9, the lamp bead 6 is electrically connected with the circuit board 4, the controller controls the voltage boosting and discharging of the mosquito killer net 2, and the toggle switch 9 controls the power supply of the mosquito killer net 2, the power-off of the mosquito killer net 2 and the common power supply of the mosquito killer net and the lamp bead 6.

[0066] When the insulating press rod 72 is pressed against the elastic force of the spring 82, the first press switch 7 is turned on, so that the voltage boosting circuit is turned on, and the conductive metal baffle 83 is away from the conductive metal sheet 84, so that the second press switch 8 is turned off, so that the discharging circuit is turned off.

[0067] When the insulating press rod 72 is reset, the first press switch 7 is turned off, so that the voltage boosting circuit is turned off, and the conductive metal baffle 83 contacts the conductive metal sheet 84, so that the second press switch 8 is turned on, so that the discharging circuit is turned on.

[0068] User operation method of mosquito killer net

[0069] First, the power supply of the mosquito killer net 2 is turned on through the toggle switch 9, then the user holds the handle 3, and the electric mosquito killer is aimed at the target area.

[0070] Finally, the insulating press rod 72 is pressed, so that the insulating press rod 72 moves downward against the elastic force of the spring 82, at this time, the first press switch is turned on, the voltage boosting circuit starts to work, and enough high voltage is provided for the mosquito killer net 2, at this time, the mosquito killer net is powered on and has the function of killing mosquitoes.

[0071] The user can continuously press the insulating press rod 72 when the mosquito killer is needed, so as to ensure that the mosquito killer net 2 remains in the powered-on state.

[0072] User operation method of mosquito killer net

[0073] When the user stops pressing the insulating pressing rod 72, the insulating pressing rod 72 is reset under the action of the spring 82, the first pressing switch is turned off, the voltage boosting circuit stops working, the mosquito net 2 is powered off, meanwhile, the conductive metal baffle 83 is in contact with the conductive metal sheet 84, the second pressing switch 8 is turned on, the discharge circuit is turned on, the residual electricity of the mosquito net is automatically discharged to eliminate the residual high-voltage charge and ensure safety.

[0074] Finally, the user turns off the power supply of the mosquito net 2 by dialing the switch 9.

[0075] User operation method for starting or turning off lighting

[0076] The user turns on or turns off the common power supply of the mosquito net and the lamp bead 6 by dialing the switch 9. When the lamp bead 6 is started, the light generated by the lamp bead 6 is emitted outward through the lens 5, which is convenient for the user to find the position of the mosquito in the dark environment.

Claims

1. A control structure of a mosquito-killing device, comprising a mosquito-killing net (2), a voltage boosting circuit, a discharge circuit and a controller, characterized in that: the voltage boosting circuit and the mosquito-killing net (2) are electrically connected, and the voltage boosting circuit is used to provide sufficient voltage for the mosquito-killing net (2); the discharge circuit and the mosquito-killing net (2) are electrically connected, and the discharge circuit is used to automatically discharge the residual electricity of the mosquito-killing net (2); the controller comprises a first press switch (7) and a second press switch (8), the first press switch (7) and the voltage boosting circuit are connected in series, the first press switch (7) is used to control the on-off of the voltage boosting circuit, the second press switch (8) and the discharge circuit are connected in series, and the second press switch (8) is used to control the on-off of the discharge circuit; the first press switch (7) comprises a seat body (71) and an insulating press rod (72), the insulating press rod (72) is arranged on the seat body (71), and the insulating press rod (72) is used to control the on-off of the first press switch (7) through stretching and retracting; the second press switch (8) comprises a conductive metal shell (81), a spring (82), a conductive metal baffle (83) and a conductive metal sheet (84), the conductive metal shell (81) is sleeved on the seat body (71), the conductive metal sheet (84) is arranged in front of the insulating press rod (72), the conductive metal sheet (84) is provided with an opening corresponding to the position of the insulating press rod (72), and the insulating press rod (72) passes through the conductive metal shell (81) and extends towards the opening; the conductive metal baffle (83) is arranged on the insulating press rod (72) between the conductive metal shell (81) and the conductive metal sheet (84), and the spring (82) is sleeved on the insulating press rod (72), one end of the spring (82) abuts against the conductive metal shell (81), and the other end of the spring (82) abuts against the conductive metal baffle (83); when the insulating press rod (72) is pressed against the elastic force of the spring (82), the first press switch (7) is turned on, the voltage boosting circuit is turned on at the same time, the conductive metal baffle (83) is away from the conductive metal sheet (84), the second press switch (8) is turned off, and the discharge circuit is turned off; when the insulating press rod (72) is reset, the first press switch (7) is turned off, the voltage boosting circuit is turned off at the same time, the conductive metal baffle (83) contacts the conductive metal sheet (84), the second press switch (8) is turned on, and the discharge circuit is turned on. Further comprising a power supply and a circuit board (4), the circuit board (4) is provided with the voltage boosting circuit, the discharge circuit and the controller, and the mosquito-killing net (2) and the power supply are electrically connected with the circuit board (4) respectively.

3. A mosquito-killing device adopting the control structure according to claim 2, comprising a protection frame (1), a handle (3) and an illumination module, the mosquito-killing net (2) is arranged in the protection frame (1), the protection frame (1) is provided with a handle (3) connecting part, the illumination module comprises a lamp bead (6) and a lens (5), the handle (3) connecting part is provided with a lamp bead accommodating cavity (12) for accommodating the lamp bead (6), and the lamp bead (6) is arranged in the lamp bead accommodating cavity (12). ​ ​ ​ ​ ​ ​ 2. The control structure of the mosquito eradication device according to claim 1, wherein: ​ ​ The handle (3) comprises a front handle part (31) and a rear handle part (32), and the front handle (3) is provided with a lens mounting port (33) corresponding to the position of the lamp bead accommodating cavity (12); The lens (5) is matched with the shape of the lens mounting port (33), and the lens (5) is provided with an outer extension edge, the lens (5) extends outward through the lens mounting port (33) until the outer extension edge abuts against the inner wall of the front handle part (31), so that the lens (5) is embedded in the lens mounting port (33); The front handle part (31) and the rear handle part (32) are connected to form the handle (3), the front handle part (31) and the rear handle part (32) clamp the connecting part of the handle (3), so that the handle (3) is connected with the protection frame (1), and meanwhile the lens (5) seals the lamp bead accommodating cavity (12); The circuit board (4) is arranged in the handle (3), the circuit board (4) is further provided with a toggle switch (9), the lamp bead (6) is electrically connected with the circuit board (4), the controller controls the voltage rise and discharge of the mosquito killer net (2), and the toggle switch (9) controls the power supply of the mosquito killer net (2), the power-off of the mosquito killer net (2) and the common power supply of the mosquito killer net (2) and the lamp bead (6).