Intelligent mosquito swatter

By introducing a Y-shaped racket frame, telescopic rod and elastic buckle assembly into the mosquito swatter, combined with circuit board control, the rotation and extension functions of the swatter are realized, solving the problem of insufficient convenience of traditional mosquito swatters and improving the flexibility and efficiency of mosquito control.

CN223379887UActive Publication Date: 2025-09-26FOSHAN SHUNDE ZHENGDUO ELECTRICAL CO LTD
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Patent Information

Application Number
CN202422670930.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-26
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Traditional mosquito swatters do not have the function of rotating and extending the swatter net, which limits their convenience of use.

Method used

An intelligent mosquito swatter has been designed, which adopts a Y-shaped swatter frame and telescopic rod structure, combined with elastic buckle components and circuit board control to realize the rotation and extension functions of the swatter. It is equipped with a power switch and a digital display screen, and provides automatic and manual mosquito killing modes.

Benefits of technology

The mosquito swatter is more convenient to use, can be attached to different surfaces and extended to higher or farther places to effectively kill mosquitoes, and enhances the flexibility and efficiency of mosquito killing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent mosquito swatter which comprises a handle, a swatter frame arranged at the front end of the handle and a net swatter arranged on the swatter frame. The racket frame comprises an arc part and a straight pipe part arranged in the middle of the arc back of the arc part, the net racket comprises a nearly-circular racket frame and a conductive net arranged in the racket frame, and the racket frame is arranged in an arc opening of the arc part and is in damping connection with shaft holes correspondingly formed in the two sides of the arc part through convex shafts arranged on the outer walls of the two corresponding sides of the racket frame, so that the net racket is rotationally connected to the racket frame. The handle comprises a handle shell and a telescopic rod arranged in the handle shell, the front end of the handle shell is in butt joint with the tail end of the straight pipe part, the telescopic rod comprises an outer cylinder and an inner rod which moves front and back and is arranged in the outer cylinder in a damping mode, the outer cylinder is fixedly installed in the handle shell, and the front end of the outer cylinder is partially exposed out of the handle shell and then is movably inserted into the straight pipe part. The front end of the inner rod is exposed out of the front opening of the outer cylinder and then is fixedly connected with the straight pipe part so that the racket frame can be connected to the handle shell in a forward-extending and backward-contracting mode. The utility model is more convenient to use.
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Description

Technical Field

[0001] The utility model relates to a structural improvement of a mosquito swatter. Background Art

[0002] Traditional mosquito swatters either do not have the net swatter rotation function, do not have the net swatter extension function, or have neither the net swatter rotation function nor the net swatter extension function, which limits their convenience of use. Utility Model Content

[0003] The utility model aims to provide a mosquito-killing swatter with both a swatter rotation function and a swatter extension function.

[0004] The technical solutions adopted in this utility model are as follows:

[0005] An intelligent mosquito-killing swatter comprises a handle, a swatter frame arranged at the front end of the handle, and a net swatter arranged on the swatter frame.

[0006] The racket frame is Y-shaped, including an arc portion and a straight tube portion centrally located on the back of the arc portion. The racket includes a nearly circular racket frame and a conductive net arranged in the racket frame. The racket frame is arranged in the arc opening of the arc portion and is connected to the corresponding shaft holes on both sides of the arc portion through the convex shaft damping provided on the corresponding outer walls on both sides of the racket, so as to rotatably connect the racket to the racket frame.

[0007] The handle includes a handle shell and a telescopic rod arranged inside the handle shell. The front end of the handle shell is connected to the end of the straight tube part. The telescopic rod includes an outer tube and an inner rod that can move forward and backward and has a damper arranged in the outer tube. The outer tube is fixedly installed in the handle shell and its front end is partially exposed from the handle shell and then movably inserted into the straight tube part. The front end of the inner rod is exposed from the front opening of the outer tube and then fixedly connected to the straight tube part, so that the racket frame can be extended forward and retracted backward to be connected to the handle shell.

[0008] As a preferred solution, the end of the straight tube is provided with an insert tube inserted into the front opening of the handle shell, and the outer wall of the insert tube is axially provided with a groove. The handle shell is connected to the handle shell through the corresponding convex buckle docking groove on the inner wall of the front opening to fix the racket frame circumferentially to the handle shell.

[0009] As a preferred solution, the racket frame is also axially fixed to the handle shell by an elastic buckle assembly. The elastic buckle assembly includes a movable buckle and two springs. The movable buckle includes a door-shaped buckle seat, spring holes provided on the two end faces of the door-shaped buckle seat, a lock button centered on the outer top of the buckle seat, and a snap buckle provided on the side of the buckle seat. The movable buckle is provided inside the connection between the handle shell and the straight tube part. The buckle seat is radially movably sleeved on the outer tube, and the lock button connects to the lock button hole provided on the side wall of the rear mouth of the straight tube part. The snap buckle is movably provided in the buckle ring provided on the inner circumferential wall of the front mouth of the handle shell. The two springs are respectively provided in the two spring holes and the other ends are respectively provided in the two spring tubes corresponding to the inner wall of the straight tube part. The two springs radially elastically support the movable buckle to partially push the lock button out of the straight tube part, and make the snap buckle connected to the buckle ring, thereby axially locking the straight tube part to the handle shell.

[0010] As a preferred solution, a circuit board and a battery are provided inside the handle shell, the circuit board is electrically connected to the conductive mesh, and the battery is electrically connected to the circuit board.

[0011] As a preferred solution, the circuit board is provided with a power switch, which has an off position, a manual mosquito killing position and an automatic mosquito killing position. The side wall of the handle shell is provided with a shift key for switching the off position, the manual mosquito killing position and the automatic mosquito killing position.

[0012] As a preferred solution, the circuit board is further provided with two double-control switches for use with the manual mosquito-killing position, and the two double-control switches are partially exposed on the corresponding two side walls of the handle shell.

[0013] As a preferred solution, the side wall of the handle housing is further provided with a digital display screen for displaying the battery power, and the digital display screen is electrically connected to the circuit board.

[0014] As a preferred solution, the side wall of the handle shell is further provided with a charging interface for charging the battery, and the charging interface is electrically connected to the circuit board.

[0015] As a preferred solution, the outer edge of the racket frame is provided with a hanging ear for hanging the entire mosquito swatter.

[0016] As a preferred solution, the end of the handle shell is further provided with a base for placing the handle shell upright on the ground or a desktop.

[0017] The net racket of the present invention can be rotated relative to the racket frame so that the net racket can fit the wall, ceiling or other inclined resting objects where mosquitoes rest. In addition, the racket frame of the present invention can be extended relative to the handle to drive the net racket to extend to a higher place or farther to kill mosquitoes. The utility model is conducive to improving the convenience of using the mosquito swatter. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the utility model

[0019] Figure 2 This is an exploded view of the overall structure of the embodiment of the utility model

[0020] Figure 3 This is one of the partial structural diagrams of the embodiment of the utility model

[0021] Figure 4 This is the second schematic diagram of the partial structure of the embodiment of the utility model

[0022] Figure 5 This is one of the schematic diagrams of the connection structure of the elastic buckle assembly of the embodiment of the utility model

[0023] Figure 6 This is the second schematic diagram of the connection structure of the elastic buckle assembly of the embodiment of the utility model

[0024] Figure 7 Schematic diagram of the movable buckle structure of the embodiment of the utility model

[0025] Figure 8 This is a schematic diagram of the overall structure of the embodiment of the utility model after the racket is rotated and extended DETAILED DESCRIPTION

[0026] The present invention will be described below with reference to the accompanying drawings and specific embodiments.

[0027] like Figure 1-7 The intelligent mosquito swatter shown includes a handle 1 , a swatter frame 2 provided at the front end of the handle 1 , and a net swatter 3 provided on the swatter frame 2 .

[0028] The handle 1 comprises a handle shell 1.1, the front end of which is open.

[0029] The racket frame 2 is Y-shaped and comprises an arc portion 2.1 and a straight tube portion 2.2 centrally located on the back of the arc portion 2.1. The distal end of the straight tube portion 2.2 is provided with a cannula 2.21 for insertion into the front opening of the handle housing 1.1. Axial grooves 2.211 are formed on the outer walls of the cannula 2.21 on either side thereof. The handle housing 1.1 engages with the grooves 2.211 via corresponding tabs 1.11 provided on the inner wall of the front opening of the handle housing 1.1, thereby circumferentially securing the racket frame 2 to the handle housing 1.1.

[0030] The racket frame 2 is also axially fixed to the handle shell 1.1 by an elastic buckle assembly 4. The elastic buckle assembly 4 includes a movable buckle 4.1 and two springs 4.2. The movable buckle 4.1 includes a door-shaped buckle seat 4.11, spring holes 4.12 provided at both end surfaces of the door-shaped buckle seat 4.11, a lock button 4.13 centrally provided on the outer top of the buckle seat 4.11, and a buckle 4.14 provided on the side of the buckle seat 4.11. The movable buckle 4.1 is provided inside the connection between the handle shell 1.1 and the straight tube portion 2.2. The buckle seat 4.11 is radially movable and sleeved on the outer tube 1.21. The lock button 4.13 The locking button hole provided on the side wall of the rear opening of the straight tube portion 2.2 is connected to the buckle 4.14, which is movably arranged in the buckle 1.12 provided on the inner wall of the front opening of the handle shell 1.1. Two springs 4.2 are respectively arranged in the two spring holes 4.12 and the other ends are respectively arranged in the two spring tubes 2.22 correspondingly provided on the inner wall of the straight tube portion 2.2. The two springs 4.2 elastically support the movable buckle 4.1 through the radial direction, thereby partially pushing the locking button 4.13 out of the straight tube portion 2.2, and making the buckle 4.14 buckled with the buckle 1.12, thereby axially locking the straight tube portion 2.2 to the handle shell 1.1.

[0031] The handle 1 also includes a telescopic rod 1.2 disposed within the handle shell 1.1. The telescopic rod 1.2 includes an outer tube 1.21 and an inner rod 1.22 that is movable forward and backward and has a damper disposed within the outer tube 1.21. The outer tube 1.21 is fixedly mounted within the handle shell 1.1 and its front end is partially exposed from the handle shell 1.1 and then movably inserted into the straight tube portion 2.2. The front end of the inner rod 1.22 is exposed from the front opening of the outer tube 1.21 and then fixedly connected to the straight tube portion 2.2, so as to connect the racket frame 2 to the handle shell 1.1 in a manner that it extends forward and retracts backward.

[0032] The racket 3 comprises a substantially circular frame 3.1 and a conductive mesh 3.2 disposed within the frame 3.1. The frame 3.1 is positioned within the opening of the arc portion 2.1 and is dampedly connected to corresponding axial holes 2.11 on the outer walls of the frame 3.1 via protruding shafts 3.11 on either side of the arc portion 2.1, thereby rotatably connecting the racket 3 to the racket frame 2.

[0033] A circuit board 1.3 and a battery 1.4 are provided inside the handle shell 1.1. The circuit board 1.3 is electrically connected to the conductive mesh 3.2, and the battery 1.4 is electrically connected to the circuit board 1.3.

[0034] The circuit board 1.3 is provided with a power switch, which has an off position, a manual mosquito-killing position, and an automatic mosquito-killing position. The off position cuts off the power supply to the conductive mesh 3.2, while the manual mosquito-killing position and the automatic mosquito-killing position alternately turn on the power supply to the conductive mesh 3.2. A shift key 1.5 for switching among the off position, the manual mosquito-killing position, and the automatic mosquito-killing position is provided on the side wall of the handle housing 1.1.

[0035] The circuit board 1.3 is also provided with two double-control switches 1.6 for use with the manual mosquito killer. Both double-control switches are push-to-connect switches and are connected in series to the connection line between the manual mosquito killer and the conductive mesh 3.2. Therefore, they must be pressed simultaneously to energize the conductive mesh 3.2. The two double-control switches 1.6 are partially exposed on the corresponding two side walls of the handle shell 1.1.

[0036] The side wall of the handle housing 1.1 is further provided with a digital display screen 1.7 for displaying the power level of the battery 1.4, and the digital display screen 1.7 is electrically connected to the circuit board 1.3.

[0037] The side wall of the handle housing 1.1 is further provided with a charging interface 1.8 for charging the battery 1.4, and the charging interface 1.8 is electrically connected to the circuit board 1.3.

[0038] The shift key 1.5, the dual-control switch 1.6, the digital display 1.7 and the charging port 1.8 are all arranged at the rear of the handle housing 1.1.

[0039] The end of the handle shell 1.1 is also provided with a base 5 for placing it upright on the ground or a table. The base 5 is sleeved and fixed to the end of the handle shell 1.1.

[0040] like Figure 1To automatically kill mosquitoes, adjust the selector switch 1.5 to the automatic mosquito killing position, energizing the conductive net 3.2. The handle 1 and racket frame 2 are then placed upright on the ground or a tabletop via the base 5, and the racket 3 is rotated to a vertical position. To enhance the effectiveness of the automatic mosquito killing, a mosquito trap can be installed inside the conductive net 3.2.

[0041] like Figure 8 As shown, to manually kill mosquitoes, shift the selector button 1.5 to the manual mosquito killing position, hold the handle 1, and bring the racquet 3 close to the mosquito resting area. Simultaneously press the two dual-control switches 1.6 to energize the conductive mesh 3.2. If the mosquito is higher or farther away, press the lock button 4.13 to disengage the buckle 4.14 from the ring 1.12, unlock the handle housing 1.1 and the racquet frame 2, and manually extend the racquet 3 by pulling the inner rod 1.22. To kill mosquitoes resting on a wall, ceiling, or other inclined surface, first support the top of the racquet 3 against the wall, ceiling, or other inclined surface. Applying pressure from the handle 1 will rotate the racquet 3 to the desired angle. Alternatively, the racquet 3 can be rotated to the desired angle before holding the handle 1 and placing the racquet 3 against the wall, ceiling, or other inclined surface.

[0042] When not in use, the shift key 1.5 is turned to the off position. For easy storage, a hanging ear 3.12 for hanging the entire mosquito swatter can be provided on the outer edge of the swatter frame 3.1.

Claims

1. An intelligent mosquito-killing swatter, comprising a handle (1), a swatter frame (2) disposed at the front end of the handle (1), and a net swatter (3) disposed on the swatter frame (2); characterized in that: The racket frame (2) is Y-shaped and includes an arc portion (2.1) and a straight tube portion (2.2) centrally arranged on the back of the arc portion (2.1). The tennis racket (3) includes a nearly circular racket frame (3.1) and a conductive net (3.2) arranged in the racket frame (3.1). The racket frame (3.1) is arranged in the arc opening of the arc portion (2.1) and is dampedly connected to the shaft holes (2.11) correspondingly arranged on both sides of the arc portion (2.1) through convex shafts (3.11) arranged on the outer walls of the corresponding two sides, so that the tennis racket (3) is rotatably connected to the racket frame (2). The handle (1) comprises a handle shell (1.1) and a telescopic rod (1.2) arranged inside the handle shell (1.1); the front end of the handle shell (1.1) is connected to the end of the straight tube portion (2.2); the telescopic rod (1.2) comprises an outer tube (1.21) and an inner rod (1.22) movable forward and backward and damped within the outer tube (1.21); the outer tube (1.21) is fixedly installed in the handle shell (1.1) and its front end is partially exposed from the handle shell (1.1) and then movably inserted into the straight tube portion (2.2); the front end of the inner rod (1.22) is exposed from the front opening of the outer tube (1.21) and then fixedly connected to the straight tube portion (2.2), so that the racket frame (2) is connected to the handle shell (1.1) in a manner that it extends forward and contracts backward.

2. The intelligent mosquito swatter according to claim 1, characterized in that: The end of the straight tube portion (2.2) is provided with an inserting tube (2.21) inserted into the front opening of the handle shell (1.1), and the outer wall of the inserting tube (2.21) is axially provided with a groove (2.211). The handle shell (1.1) is connected to the groove (2.211) through a corresponding convex buckle (1.11) provided on the inner wall of the front opening of the handle shell (1.1), so as to fix the racket frame (2) to the handle shell (1.1) in the circumferential direction.

3. The intelligent mosquito swatter according to claim 2, characterized in that: The racket frame (2) is also axially fixed to the handle shell (1.1) through an elastic buckle assembly (4). The elastic buckle assembly (4) includes a movable buckle (4.1) and two springs (4.2). The movable buckle (4.1) includes a door-shaped buckle seat (4.11), spring holes (4.12) provided at two end surfaces of the door-shaped buckle seat (4.11), a lock button (4.13) centrally provided at the outer top of the buckle seat (4.11), and a snap buckle (4.14) provided at the side of the buckle seat (4.11). The movable buckle (4.1) is provided inside the connection between the handle shell (1.1) and the straight tube portion (2.2). The buckle seat (4.11) is radially movably sleeved on the outer cylinder (1.21). The lock button (4.13) is provided at the outer top of the buckle seat (4.11). .13) is connected to the lock button hole provided on the side wall of the rear opening of the straight tube part (2.2), and the buckle (4.14) is movably provided in the buckle ring (1.12) provided on the inner peripheral wall of the front opening of the handle shell (1.1). Two springs (4.2) are respectively provided in the two spring holes (4.12) and the other ends are respectively provided in the two spring tubes (2.22) correspondingly provided on the inner wall of the straight tube part (2.2). The two springs (4.2) elastically support the movable buckle (4.1) in the radial direction, thereby partially pushing the lock button (4.13) out of the straight tube part (2.2) and making the buckle (4.14) buckled with the buckle ring (1.12), thereby axially locking the straight tube part (2.2) to the handle shell (1.1).

4. The intelligent mosquito swatter according to claim 1, characterized in that: A circuit board (1.3) and a battery (1.4) are provided inside the handle shell (1.1); the circuit board (1.3) is electrically connected to the conductive net (3.2); and the battery (1.4) is electrically connected to the circuit board (1.3).

5. The intelligent mosquito swatter according to claim 4, characterized in that: The circuit board (1.3) is provided with a power switch, which is provided with an off position, a manual mosquito-killing position, and an automatic mosquito-killing position. The side wall of the handle shell (1.1) is provided with a shift key (1.5) for switching the off position, the manual mosquito-killing position, and the automatic mosquito-killing position.

6. The intelligent mosquito swatter according to claim 5, characterized in that: The circuit board (1.3) is also provided with two double-control switches for use in conjunction with the manual mosquito-killing position, and the two double-control switches are partially exposed on the corresponding two side walls of the handle housing (1.1).

7. The intelligent mosquito swatter according to claim 5, characterized in that: The side wall of the handle shell (1.1) is also provided with a digital display screen (1.7) for displaying the power level of the battery (1.4), and the digital display screen (1.7) is electrically connected to the circuit board (1.3).

8. The intelligent mosquito swatter according to claim 5, characterized in that: The side wall of the handle shell (1.1) is also provided with a charging interface (1.8) for charging the battery (1.4), and the charging interface (1.8) is electrically connected to the circuit board (1.3).

9. The intelligent mosquito swatter according to claim 1, characterized in that: The outer edge of the swatter frame (3.1) is provided with a hanging ear (3.12) for hanging the entire mosquito swatter.

10. The intelligent mosquito swatter according to any one of claims 1 to 9, characterized in that: The end of the handle shell (1.1) is also provided with a base (5) for placing the handle shell (1.1) upright on the ground or a table.