Electric mosquito swatter and electric mosquito swatter modular production method

By introducing rotating components into the electric mosquito swatter, the angle of the swatter is allowed to be adjusted, which is convenient to hit mosquitoes on the ceiling, and fold and storage is achieved through removable connections, which solves the problems of inconvenient control and inconvenient storage of traditional electric mosquito swatters, and improves killing efficiency and portability.

CN120052318APending Publication Date: 2025-05-30SHENZHEN ZHISHANG INNOVATION TECH CO LTD
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Patent Information

Application Number
CN202510356992.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The linear structure design of the traditional electric mosquito swatter makes it difficult to fit the swatter surface and the ceiling in parallel, making it inconvenient for user control, and it is inconvenient for folding and storage, and takes up a large space.

Method used

An electric mosquito swatter is designed, and a rotating assembly is used to connect the swatter surface assembly to the grip control assembly. The rotating assembly includes a first rotating part and a second rotating part, allowing the swatter surface assembly to adjust the angle, facilitates the swatter to hit mosquitoes on the ceiling, and makes the electric mosquito swatter foldable and stored through a removable connection.

Benefits of technology

Through the design of the rotating component, the electric mosquito swatter can more conveniently hit mosquitoes on the ceiling, reduce mosquito escape, and improve killing efficiency. At the same time, the electric mosquito swatter can be detached, easy to fold and store, save space, and easy to carry.

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Abstract

The invention discloses an electric mosquito swatter and an electric mosquito swatter modular production method in the field of electric mosquito swatters, the electric mosquito swatter comprises a swatter surface assembly, a rotating assembly and a holding control assembly, the rotating assembly is arranged between the swatter surface assembly and the holding control assembly, the swatter surface assembly is detachably connected with the rotating assembly, the rotating assembly is detachably connected with the holding control assembly, and the holding control assembly is detachably connected with the rotating assembly. The rotating assembly comprises a first rotating part and a second rotating part, and the first rotating part can rotate relative to the second rotating part. According to the electric mosquito swatter, the problems that an existing electric mosquito swatter cannot beat mosquitoes attached to a ceiling conveniently and cannot be folded and stored conveniently are solved, the angle of the swatter face assembly can be adjusted, the mosquitoes attached to the ceiling can be beaten conveniently, mosquito escape is reduced, and the mosquito killing efficiency is improved; the swatter surface assembly is detachably connected with the rotating assembly, and the rotating assembly is detachably connected with the holding control assembly, so that the electric mosquito swatter can be split into a plurality of parts, folding and storage are convenient, space is saved, and a user can conveniently carry the electric mosquito swatter.
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Description

Technical Field

[0001] The present invention relates to the technical field of electric mosquito rackets, and specifically, to an electric mosquito racket and a modular production method thereof. Background Art

[0002] Traditional electric mosquito rackets usually adopt a fixed structure design, and their racket surfaces and handles are usually arranged in a 180° straight line. When a user needs to hit mosquitoes attached to the ceiling, the straight structure makes it difficult for the racket surface to fit parallel to the ceiling. The user needs to fully straighten and raise the arm, and the wrist is forced to bend excessively (close to 90°), resulting in a decrease in control accuracy. Moreover, this anti-joint posture makes fine-tuning difficult, and the racket surface is prone to tilting to form dead corners. In addition, with the racket surface and handle designed in a straight line, the edge of the racket surface is forced to contact the ceiling first, forming a wedge-shaped gap through which mosquitoes can escape. Additionally, since the housing of the electric mosquito racket is injection-molded integrally by an injection molding process, it cannot be folded and stored, resulting in a large occupied space and inconvenience for the user to carry the electric mosquito racket.

[0003] The above defects need to be solved urgently. Summary of the Invention

[0004] To solve the problems that the existing electric mosquito rackets are not convenient for hitting mosquitoes attached to the ceiling and are not convenient for folding and storing, the present invention provides an electric mosquito racket and a modular production method thereof.

[0005] The technical solution of the present invention is as follows:

[0006] An electric mosquito racket includes a racket surface assembly, a rotating assembly, and a holding and control assembly. The rotating assembly is arranged between the racket surface assembly and the holding and control assembly. The racket surface assembly is detachably connected to the rotating assembly, and the rotating assembly is detachably connected to the holding and control assembly. Moreover, the rotating assembly includes a first rotating part and a second rotating part, and the first rotating part can rotate relative to the second rotating part.

[0007] According to the present invention of the above solution, a first rotating opening is provided on the lower side of the first rotating part. The second rotating part includes a base and a rotating head connected to the base. The rotating head is arranged in the first rotating opening. When the first rotating part rotates around the second rotating part to a certain angle, the first rotating part is clamped with the base.

[0008] According to the present invention of the above solution, a first arc surface is provided on the top of the rotating head to facilitate the rotation of the first rotating part around the second rotating part.

[0009] According to the present invention of the above solution, connecting sides are provided on both sides of the rotating head, and an abutting step is formed between the connecting sides and the base. The lower end of the first rotating part can abut against the abutting step.

[0010] In the present invention according to the above solution, the second rotating part includes a rotating head and a connecting piece connected to the rotating head. The rotating head is disposed between the first rotating part and the connecting piece. A first rotating opening is provided on the lower side of the first rotating part, and a second rotating opening is provided on the upper side of the connecting piece. At least a part of the upper side of the rotating head is disposed within the first rotating opening, and the first rotating part is rotatable relative to the rotating head. At least a part of the lower side of the rotating head is disposed within the second rotating opening, and the connecting piece is rotatable relative to the rotating head.

[0011] In the present invention according to the above solution, a first arc surface is provided at the top of the rotating head, and a second arc surface is provided at the bottom of the rotating head, so that the first rotating part rotates around the rotating head and the connecting piece rotates around the rotating head.

[0012] In the present invention according to the above solution, the holding control assembly includes a mosquito attracting lamp module, a control module, and a power module. The mosquito attracting lamp module is detachably connected to the control module, and the control module is detachably connected to the power module.

[0013] In the present invention according to the above solution, between the rotating assembly and the racket face assembly, between the rotating assembly and the mosquito attracting lamp module, between the mosquito attracting lamp module and the control module, and between the control module and the power module are all electrically connected through a DC male-female socket structure.

[0014] In the present invention according to the above solution, the control module includes a function control board and a switch button. A fingerprint recognition device is provided on the function control board. The fingerprint recognition device and the switch button are both electrically connected to the function control board.

[0015] In the present invention according to the above solution, it further includes an extension rod, and the extension rod is detachably connected to the holding control assembly.

[0016] A modular production method for an electric mosquito racket, used for producing the above electric mosquito racket, includes the following steps:

[0017] Step 1: Separately produce a racket face assembly, a rotating assembly, a mosquito attracting lamp module, a control module, and a power module. The mosquito lamp module, the control module, and the power module form a holding control assembly;

[0018] Step 2: Select specific specifications of the racket face assembly, the rotating assembly, the mosquito attracting lamp module, and the power module according to customer requirements, and assemble them with the control module to form the required electric mosquito racket.

[0019] According to the present invention of the above solution, the racket face assembly, the mosquito attracting lamp module, the mosquito attracting lamp module, the power module, and the rotating assembly are all provided in multiple specifications, and the control module is provided in one specification.

[0020] The beneficial effect of the present invention according to the above solution lies in:

[0021] In the above electric mosquito racket, the rotating assembly is located between the racket face assembly and the holding and control assembly. The rotating assembly includes a first rotating part and a second rotating part. The first rotating part can rotate relative to the second rotating part, so that the racket face assembly can adjust the angle, facilitating hitting mosquitoes attached to the ceiling, reducing the escape of mosquitoes, and improving the killing efficiency of mosquitoes.

[0022] In addition, the racket face assembly is detachably connected to the rotating assembly, and the rotating assembly is detachably connected to the holding and control assembly, so that the electric mosquito racket can be disassembled into multiple parts, facilitating folding and storage, saving space, and facilitating the user to carry the electric mosquito racket. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is one of the structural schematic diagrams of Embodiment 1 of the present invention;

[0024] Figure 2 It is the second structural schematic diagram of Embodiment 1 of the present invention;

[0025] Figure 3 It is the structural schematic diagram of the rotating assembly of Embodiment 1 of the present invention;

[0026] Figure 4 It is the structural schematic diagram of the rotating assembly of Embodiment 1 of the present invention;

[0027] Figure 5 It is the disassembly diagram of the control module of Embodiment 1 of the present invention;

[0028] Figure 6 It is the structural schematic diagram of the wall-mounted base of Embodiment 1 of the present invention;

[0029] Figure 7 It is one of the structural schematic diagrams of the racket face assembly of Embodiment 1 of the present invention;

[0030] Figure 8 It is the second structural schematic diagram of the racket face assembly of Embodiment 1 of the present invention;

[0031] Figure 9 It is the third structural schematic diagram of the racket face assembly of Embodiment 1 of the present invention;

[0032] Figure 10 It is the fourth structural schematic diagram of the racket face assembly of Embodiment 1 of the present invention;

[0033] Figure 11 It is the fifth structural schematic diagram of the racket face assembly of Embodiment 1 of the present invention;

[0034] Figure 12 This is a schematic structural diagram of the second embodiment of the present invention;

[0035] Figure 13 This is a schematic structural diagram of the rotating assembly in the second embodiment.

[0036] In the figure, 1 is the racket face assembly; 2 is the rotating assembly; 21 is the first rotating part; 211 is the first rotating opening; 22 is the second rotating part; 221 is the base; 222 is the rotating head; 2221 is the first arc surface; 2222 is the connecting side surface; 2223 is the second arc surface; 223 is the abutting step; 224 is the connecting member; 2241 is the second rotating opening; 3 is the holding and control assembly; 31 is the mosquito attracting lamp module; 32 is the control module; 321 is the function control board; 322 is the switch button; 323 is the fingerprint recognition device; 33 is the power module; 4 is the DC male-female socket structure; 5 is the extension rod; 6 is the base; 7 is the wall mounting base. Detailed implementation manners

[0037] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0038] Embodiment 1

[0039] As Figure 1 、 Figure 2 shown, the present invention provides an electric mosquito racket, which includes a racket face assembly 1, a rotating assembly 2 and a holding and control assembly 3. The rotating assembly 2 is arranged between the racket face assembly 1 and the holding and control assembly 3. The racket face assembly 1 is detachably connected to the rotating assembly 2, and the rotating assembly 2 is detachably connected to the holding and control assembly 3, so that the electric mosquito racket can be disassembled into multiple parts, which is convenient for folding and storage, saves space and is convenient for users to carry the electric mosquito racket. In addition, if a certain part is damaged, such as the racket face assembly 1 or the rotating assembly 2, it can be replaced separately without replacing the whole electric mosquito racket, reducing the maintenance cost.

[0040] As Figure 3 、 Figure 4 shown, in this embodiment, the rotating assembly 2 is located between the racket face assembly 1 and the holding and control assembly 3. The rotating assembly 2 includes a first rotating part 21 and a second rotating part 22. The first rotating part 21 can rotate relative to the second rotating part 22, so that the racket face assembly 1 can adjust the angle, which is convenient for hitting mosquitoes attached to the ceiling. In addition, the user does not need to move the body or arm greatly, and only needs to adjust the angle of the rotating assembly 2 to easily hit the mosquitoes, and the operation is convenient.

[0041] As Figure 3 、Figure 4 As shown in the figure, in this embodiment, a first rotation opening 211 is provided on the lower side of the first rotation part 21. The second rotation part 22 includes a base part 221 and a rotation head 222 connected to the base part 221. The rotation head 222 is arranged in the first rotation opening 211. When the first rotation part 21 and the second rotation part 22 are arranged in a 180° straight line, the racket surface assembly 1 and the holding control assembly 3 are also arranged in a 180° straight line, which is convenient for hitting mosquitoes at low places, such as mosquitoes on the ground, wall or flying at low altitude. The user can easily operate without adjusting the posture. In addition, when the first rotation part 21 and the second rotation part 22 are arranged in a 180° straight line, the first rotation part 21 and the rotation head 222 are limited by friction, so that the racket surface assembly 1 and the holding control assembly 3 remain stable when arranged in a 180° straight line, ensuring that the user can accurately hit mosquitoes at low places.

[0042] In this embodiment, when the first rotation part 21 rotates 90° around the second rotation part 22, the racket surface assembly 1 and the holding control assembly 3 are arranged at 90°, which is convenient for the racket surface assembly 1 to be horizontally arranged with the ceiling, reducing the escape of mosquitoes and improving the killing efficiency of mosquitoes. At the same time, the first rotation part 21 is clamped with the base part 221, ensuring that the racket surface assembly 1 remains stable in the 90° state, being able to limit the racket surface assembly 1, facilitating the user to accurately hit mosquitoes attached to the ceiling and enhancing the flexibility and efficiency of use. In addition, when the racket surface assembly 1 is parallel to the ceiling, it can quickly cover a larger hitting range, reducing the chance of mosquito escape and improving the killing efficiency.

[0043] As Figure 3 、 Figure 4 shown in the figure, in this embodiment, a first arc surface 2221 is provided on the top of the rotation head 222 to facilitate the rotation of the first rotation part 21 around the second rotation part 22. The design of the first arc surface 2221 makes the contact surface smoother when the first rotation part 21 rotates around the second rotation part 22, reducing the frictional resistance during rotation and making the rotation smoother.

[0044] As Figure 3 、 Figure 4 shown in the figure, in this embodiment, connecting side surfaces 2222 are provided on both sides of the rotation head 222, and an abutting step 223 is formed between the connecting side surfaces 2222 and the base part 221. The lower end of the first rotation part 21 can abut against the abutting step 223. The design of the abutting step 223 physically limits the rotation of the first rotation part 21, preventing excessive rotation or detachment from the rotation assembly 2 and ensuring the controllability of the rotation angle. At the same time, when the lower end of the first rotation part 21 abuts against the abutting step 223, the overall structure of the rotation assembly 2 is more stable.

[0045] As Figure 1 、 Figure 2 、 Figure 5As shown, in this embodiment, the holding control assembly 3 includes a mosquito attracting lamp module 31, a control module 32, and a power module 33. The mosquito attracting lamp module 31 is detachably connected to the control module 32, and the control module 32 is detachably connected to the power module 33. Specifically, the racket face assembly 1 and the rotating assembly 2, the rotating assembly 2 and the mosquito attracting lamp module 31, the mosquito attracting lamp module 31 and the control module 32, and the control module 32 and the power module 33 are all connected by screw threads. The screw thread connection method makes the connection between the modules tighter, avoiding loosening or detachment caused by shaking or external forces during use. A first internal thread is provided at the bottom of the racket face assembly 1, and a first external thread is provided at the top of the rotating assembly 2. The first internal thread is threadedly connected to the first external thread. A second internal thread is provided at the bottom of the rotating assembly 2, and a second external thread is provided at the top of the mosquito attracting lamp module 31. The second internal thread is threadedly connected to the second external thread. A third internal thread is provided at the bottom of the mosquito attracting lamp module 31, and a third external thread is provided at the top of the control module 32. The third internal thread is threadedly connected to the third external thread. A fourth internal thread is provided at the bottom of the control module 32, and a fourth external thread is provided at the top of the power module 33. The fourth internal thread is threadedly connected to the fourth external thread. Of course, it is also possible to design that the racket face assembly 1 and the rotating assembly 2, the rotating assembly 2 and the mosquito attracting lamp module 31, the mosquito attracting lamp module 31 and the control module 32, and the control module 32 and the power module 33 are all connected by snap connections or pluggings. In actual design, the detachable connection methods between the racket face assembly 1 and the rotating assembly 2, the rotating assembly 2 and the mosquito attracting lamp module 31, the mosquito attracting lamp module 31 and the control module 32, and the control module 32 and the power module 33 can be designed according to actual needs.

[0046] In this embodiment, the rotating assembly 2 and the racket face assembly 1, the rotating assembly 2 and the mosquito attracting lamp module 31, the mosquito attracting lamp module 31 and the control module 32, and the control module 32 and the power module 33 are all electrically connected through a DC male-female connector structure 4. The DC male-female connector structure 4 provides electrical connection to ensure stable power transmission between the modules and avoid power interruption or fluctuation caused by poor contact. In addition, users can quickly disassemble or assemble the various modules of the electric mosquito racket through simple plugging and unplugging operations, making the disassembly and assembly of the electric mosquito racket more convenient.

[0047] Such as Figure 5As shown in the figure, in this embodiment, the control module 32 includes a function control board 321 and a switch button 322. A fingerprint recognition device 323 is provided on the function control board 321. Both the fingerprint recognition device 323 and the switch button 322 are electrically connected to the function control board 321. After the user turns on the switch button 322, power can only be supplied after fingerprint recognition by the fingerprint recognition device 323, effectively preventing the risk of accidental touch by the elderly and children. Only authorized users (users with fingerprint input) can operate the electric mosquito swatter, enhancing the exclusivity and safety of the device. In addition, the dual control mechanism (switch button 322 + fingerprint recognition) ensures that the electric mosquito swatter is only powered on when the user clearly expresses the intention to operate, avoiding misoperation that may occur with a single control method. It should be noted that both fingerprint recognition and fingerprint input by the fingerprint recognition device 323 are prior arts, and the present invention has not made improvements in this part, so the principles and processes will not be elaborated further.

[0048] As Figure 2 shown, in this embodiment, the electric mosquito swatter further includes an extension rod 5, and the extension rod 5 is detachably connected to the holding and control assembly 3. In addition, the extension rod 5 can extend the holding and control assembly 3, enabling the electric mosquito swatter to reach higher positions to strike mosquitoes, such as mosquitoes on the ceiling or high walls, solving the problem that traditional electric mosquito swatters cannot strike mosquitoes at high places due to insufficient length. Users can easily strike mosquitoes at high places without the need to rely on ladders or other tools, enhancing the practicality of the electric mosquito swatter. Additionally, the extension rod 5 is threadedly connected to the power supply module 33, and users can choose whether to install the extension rod 5 according to their needs. For example, when striking mosquitoes at low places, there is no need to install the extension rod 5, while when striking mosquitoes at high places, the extension rod 5 can be quickly installed. At the same time, the extension rod 5 can be detached, making the electric mosquito swatter more compact when not in use, facilitating storage and carrying. Of course, it is also possible to design the extension rod 5 to be connected to the power supply module 33 by snap connection or plug-in connection. In actual design, the detachable connection method between the extension rod 5 and the power supply module 33 can be designed according to actual needs.

[0049] As Figure 2 、 Figure 6 shown, in this embodiment, the electric mosquito swatter further includes a base 6, and the bottom of the power supply module 33 is plugged into the base 6, facilitating the vertical placement of the electric mosquito swatter on the tabletop. In addition, the electric mosquito swatter further includes a wall mount 7, and the wall mount 7 can be set on the wall or other places. The holding and control assembly 3 is plugged into the wall mount 7, facilitating the hanging placement of the electric mosquito swatter.

[0050] The present invention also provides a modular production method for an electric mosquito swatter for producing the above-mentioned electric mosquito swatter, including the following steps:

[0051] Step 1: Separate production of the racket surface assembly 1, the rotating assembly 2, the mosquito attracting lamp module 31, the control module 32, and the power supply module 33. The mosquito lamp module, the control module 32, and the power supply module 33 form the holding and control assembly 3;

[0052] Step 2: Select the racket face component 1, rotation component 2, mosquito attracting lamp module 31, and power supply module 33 of specific specifications according to customer requirements, and assemble them with the control module 32 to form the required electric mosquito racket.

[0053] As Figures 7 to 11 shown, in Step 1, the racket face component 1, mosquito attracting lamp module 31, mosquito attracting lamp module 31, power supply module 33, and rotation component 2 are all set with multiple specifications, and the control module 32 is set with one specification. Customers can select specific specification modules for combination according to their needs. Specifically, the racket face component 1 is set with 5 shapes, namely circular, rhombic, rectangular, oval, and triangular, to meet different appearance design and functional requirements; the mosquito attracting lamp module 31 is set with 4 brightness specifications, and the luminous fluxes of the mosquito attracting lamp module 31 are 5 lumens, 10 lumens, 15 lumens, and 20 lumens respectively to adapt to the mosquito attracting needs in different environments; the power supply module 33 is set with multiple capacity specifications, namely 500 mA, 1200 mA, 2000 mA, and 3000 mA, to meet different endurance requirements. In addition, the racket face component 1, mosquito attracting lamp module 31, mosquito attracting lamp module 31, power supply module 33, rotation component 2, and control module 32 can be produced simultaneously, shortening the overall production cycle. In addition, customers can select racket face components 1 of different shapes, mosquito attracting lamp modules 31 of different brightnesses, and power supply modules 33 of different capacities according to their own needs to assemble an electric mosquito racket that meets their own needs.

[0054] After the electric mosquito racket adopts the modular production method, customers can combine each module of the electric mosquito racket according to their own unique needs, efficiently allocate the corresponding modules through the modular production process, quickly complete the assembly, and improve the production efficiency. In addition, modular production avoids the problem of the overall production stagnation caused by the delay of a certain link in the traditional assembly line production, and improves the production efficiency of the electric mosquito racket.

[0055] Embodiment 2

[0056] As Figure 12As shown, different from the first embodiment, the second rotating part 22 of this embodiment includes a rotating head 222 and a connecting member 224 connected to the rotating head 222. The rotating head 222 is arranged between the first rotating part 21 and the connecting member 224. A first rotating opening 211 is provided on the lower side of the first rotating part 21, and a second rotating opening 2241 is provided on the upper side of the connecting member 224. At least a part of the upper side of the rotating head 222 is arranged in the first rotating opening 211, and the first rotating part 21 can rotate relative to the rotating head 222. At least a part of the lower side of the rotating head 222 is arranged in the second rotating opening 2241, and the connecting member 224 can rotate relative to the rotating head 222. When the first rotating part 21 and the second rotating part 22 are arranged in a straight line, the racket surface assembly 1 and the holding control assembly 3 are also arranged in a straight line, which is convenient for hitting mosquitoes at low places, such as mosquitoes on the ground, wall or flying at low altitude. Users can easily operate without adjusting their postures. In addition, when the first rotating part 21 and the second rotating part 22 are arranged in a straight line, the first rotating part 21 and the rotating head 222 are limited by friction, and the rotating head 222 and the connecting member 224 are limited by friction, so that the racket surface assembly 1 and the holding control assembly 3 are stable when arranged in a straight line, ensuring that users can accurately hit mosquitoes at low places.

[0057] In this embodiment, when the first rotating part 21 rotates clockwise by 90° around the rotating head 222, the racket surface assembly 1 is arranged at 90° with the rotating head 222. At the same time, the connecting member 224 is rotated counterclockwise by 90° around the rotating head 222, so that the racket surface assembly 1 and the holding control assembly 3 are arranged in parallel, which is convenient for folding and storing the electric mosquito racket. The folded electric mosquito racket has a smaller volume, is convenient for storage and carrying, and solves the problem that the traditional electric mosquito racket is difficult to store due to its large volume. In addition, the folded electric mosquito racket can be easily put into a bag or a drawer, which is suitable for outdoor use or travel.

[0058] As Figure 13 shown, in this embodiment, a first arc surface 2221 is provided at the top of the rotating head 222, and a second arc surface 2223 is provided at the bottom of the rotating head 222, so as to facilitate the rotation of the first rotating part 21 around the rotating head 222 and the rotation of the connecting member 224 around the rotating head 222. The design of the first arc surface 2221 and the second arc surface 2223 makes the contact surfaces of the first rotating part 21 and the connecting member 224 smoother when rotating around the rotating head 222, reducing the frictional resistance during rotation.

[0059] It should be understood that those of ordinary skill in the art can make improvements or changes according to the above description, and all such improvements and changes should fall within the protection scope of the appended claims of the present invention.

[0060] The present invention has been described by way of example in conjunction with the accompanying drawings. Obviously, the implementation of the present invention is not limited to the above-mentioned manner. Any improvements made by adopting the method concept and technical solution of the present invention, or directly applying the concept and technical solution of the present invention to other occasions without improvement, are within the scope of protection of the present invention.

Claims

1. An electric mosquito swatter, characterized in that: The invention comprises a racket face assembly, a rotating assembly and a grip control assembly, wherein the rotating assembly is arranged between the racket face assembly and the grip control assembly, the racket face assembly and the rotating assembly are detachably connected, the rotating assembly and the grip control assembly are detachably connected, and the rotating assembly comprises a first rotating part and a second rotating part, and the first rotating part can rotate relative to the second rotating part.

2. The electric mosquito swatter according to claim 1, characterized in that: A first rotating opening is provided at the lower side of the first rotating part, and the second rotating part includes a base and a rotating head connected to the base, and the rotating head is provided in the first rotating opening. When the first rotating part rotates around the second rotating part to a certain angle, the first rotating part is engaged with the base.

3. The electric mosquito swatter according to claim 2, characterized in that: A first arc-shaped surface is disposed on the top of the rotating head to facilitate the first rotating part to rotate around the second rotating part.

4. The electric mosquito swatter according to claim 2, characterized in that: Connecting side surfaces are provided on both sides of the rotating head, and abutting steps are formed between the connecting side surfaces and the base, and the lower end of the first rotating part can abut against the abutting steps.

5. The electric mosquito swatter according to claim 1, characterized in that: The second rotating part includes a rotating head and a connecting piece connected to the rotating head, the rotating head is arranged between the first rotating part and the connecting piece, a first rotating opening is arranged at the lower side of the first rotating part, and a second rotating opening is arranged at the upper side of the connecting piece, at least a portion of the upper side of the rotating head is arranged in the first rotating opening, the first rotating part can rotate relative to the rotating head, at least a portion of the lower side of the rotating head is arranged in the second rotating opening, and the connecting piece can rotate relative to the rotating head.

6. The electric mosquito swatter according to claim 5, characterized in that: The top of the rotating head is provided with a first arc surface, and the bottom of the rotating head is provided with a second arc surface, so that the first rotating part rotates around the rotating head and the connecting member rotates around the rotating head.

7. The electric mosquito swatter according to claim 1, characterized in that: The holding control assembly includes a mosquito lamp module, a control module, and a power module. The mosquito lamp module is detachably connected to the control module, and the control module is detachably connected to the power module.

8. The electric mosquito swatter according to claim 7, characterized in that: The rotating assembly and the flap assembly, the rotating assembly and the mosquito trap module, the mosquito trap module and the control module, and the control module and the power module are all electrically connected through a DC male and female socket structure.

9. The electric mosquito swatter according to claim 7, characterized in that: The control module comprises a function control board and a switch button. A fingerprint recognition device is arranged on the function control board. The fingerprint recognition device and the switch button are both electrically connected to the function control board.

10. A modular production method for an electric mosquito swatter, used for producing the electric mosquito swatter according to any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1, respectively produce a racket face component, a rotating component, a mosquito lamp module, a control module, and a power module, wherein the mosquito lamp module, the control module, and the power module form a grip control component; Step 2: Select a specific specification of the mosquito swatter face assembly, rotating assembly, mosquito lamp module and power module according to customer needs, and assemble them with the control module to form the required electric mosquito swatter.

Citation Information

Patent Citations

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