Foldable electric mosquito swatter capable of efficiently killing mosquitoes
The redesign of the electric insect zapper with a central light source improves capture efficiency by ensuring light coverage during folding, addressing the inefficiencies of traditional designs.
Patent Information
- Application Number
- CN202422395596.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-29
AI Technical Summary
When the existing electric mosquito swatter has the folding function, the mosquito killing efficiency is low, and the induced light source is easily blocked by the power grid, which affects the convenience of use and the mosquito killing effect.
Re-plan the relative positions of the grid head, handle and light source bin, so that the light source bin is set in the center of the grid head, and the light emitting part protrudes forward, and the handle and the grid head can be freely folded to avoid light being blocked, increasing the light exposure range and mosquito induction rate.
It improves the mosquito arrest rate and mosquito killing efficiency, while ensuring the portability and flexibility of the electric mosquito swatter, enhancing the user experience.
Smart Images

Figure CN223094598U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric mosquito rackets, in particular to a foldable electric mosquito racket with high mosquito killing efficiency. Background Art
[0002] With the arrival of summer, the mosquito problem has become one of the important factors affecting people's quality of life. Although traditional electric mosquito rackets can effectively drive away and kill mosquitoes to a certain extent, their mosquito killing efficiency is often limited by the layout of the electric grid and the induction light source, as well as the convenience and flexibility of use.
[0003] Most of the existing electric mosquito rackets are configured with induction light sources at the edge of the racket head (i.e., the edge of the electric grid) or the handle part. In this design, when mosquitoes are induced to fly close to the induction light source, they are likely to deviate from the electric grid, and the probability of successful mosquito killing is relatively low. Therefore, the mosquito killing efficiency is limited to a certain extent.
[0004] At the same time, if the electric mosquito racket is designed to improve the convenience and flexibility of use by adding a folding function, usually after folding, the electric grid will overlap with the induction light source, and the light emitted by the induction light source will be blocked by the electric grid grille, further affecting the mosquito killing efficiency.
[0005] Therefore, there is an urgent need in the market for an electric mosquito racket product that can not only kill mosquitoes efficiently but also has a folding function. Summary of the Utility Model
[0006] Aiming at the above defects, the purpose of the utility model is to provide a foldable electric mosquito racket with high mosquito killing efficiency, which solves the problem that the electric mosquito racket cannot kill mosquitoes efficiently when it has a folding function.
[0007] To achieve this purpose, the utility model adopts the following technical solutions:
[0008] A foldable electric mosquito racket with high mosquito killing efficiency includes an electric grid racket head, a handle, and a light source bin; the upper end of the handle is movably connected to the rear end of the electric grid racket head, the light source bin is arranged in the center of the electric grid racket head, and the light emitting part of the light source bin protrudes forward from the front of the electric grid racket head.
[0009] Further, the electric grid racket head includes a front inner shell, a rear inner shell, and a first electric grid; an optical source front groove with an opening facing backward is provided in the center of the front inner shell, an optical source rear groove with an opening facing forward is provided in the center of the rear inner shell, the first electric grid is fixed by fastening the rear surface of the front inner shell and the front surface of the rear inner shell, the first electric grid is fixed by fastening the openings of the optical source front groove and the optical source rear groove, and they enclose to form the light source bin, and the special-shaped groove bottom of the optical source front groove is the light emitting part.
[0010] Further, the power grid racket head further includes a front housing, a rear housing, a second power grid, and a third power grid; a light-emitting through hole is formed in the front housing corresponding to the light-emitting part; the rear surface of the front housing and the front surface of the rear housing are snap-fastened to fix the front inner housing and the rear inner housing, and the light-emitting part passes through the light-emitting through hole;
[0011] The second power grid is clamped and fixed by the rear surface of the front housing and the front surface of the front inner housing, and the third power grid is clamped and fixed by the front surface of the rear housing and the rear surface of the rear inner housing. The meshes of the first power grid, the second power grid, and the third power grid are arranged in a mutually staggered manner.
[0012] Further, an electronic control board is provided in the light source bin, and an electronic control board placement groove is provided in the light source rear groove corresponding to the light-emitting part. The electronic control board is limited in the electronic control board placement groove, and the electronic control board is provided with an induction wick facing the light-emitting part;
[0013] The first power grid is provided with a power grid through hole corresponding to the electronic control board placement groove, and the first power grid is sleeved on the outer groove wall of the electronic control board placement groove through the power grid through hole.
[0014] Further, the electronic control board is further provided with at least one functional wick facing the light-emitting part.
[0015] Further, both the inner and outer surfaces of the light-emitting part are frosted surfaces.
[0016] Further, the upper end of the handle is rotatably connected to the rear side end of the power grid racket head, and the rear side end of the power grid racket head can rotate up and down around the upper end of the handle.
[0017] Further, at least one limiting block is provided in the electronic control board placement groove, and the electronic control board is provided with a limiting notch corresponding to the limiting block, and the limiting block is limited in the limiting notch.
[0018] Further, a wire notch is formed in the groove wall of the electronic control board placement groove, and the wire notch is used for the wire electrically connected to the electronic control board to route.
[0019] The technical solution provided by the present utility model may include the following beneficial effects: The upper end of the handle is movably connected to the rear end of the electric grid racket head (which can be in any folding manner), enabling the upper end of the handle and the rear end of the electric grid racket head to move freely relative to each other. When the handle and the electric grid racket head are folded freely, the handle will not block the light-emitting part in front of the electric grid racket head, preventing the emitted light from being blocked by the handle. At the same time, the light source chamber is arranged in the center of the electric grid racket head, and the light-emitting part of the light source chamber protrudes forward beyond the front of the electric grid racket head, allowing mosquitoes attracted by the light source to land on the electric grid around the light-emitting part, improving the mosquito-catching rate. Moreover, the forward protrusion of the light-emitting part can expand the irradiation range of the light (i.e., in a ° fan shape), enhancing the induction rate. Therefore, by re-planning the relative positions of the electric grid racket head, the handle, the light source chamber, and the light-emitting part, while ensuring the foldability, portability, and flexibility of the electric mosquito racket, the mosquito-killing efficiency is further improved, enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 FIG. is a schematic structural diagram of a foldable electric mosquito racket for highly efficient mosquito killing according to one embodiment of the present utility model.
[0021] Figure 2 As shown in Figure 1 FIG. is a left view of a foldable electric mosquito racket for highly efficient mosquito killing.
[0022] Figure 3 As shown in Figure 2 FIG. is an enlarged sectional view at position B of a foldable electric mosquito racket for highly efficient mosquito killing.
[0023] Figure 4 As shown in Figure 1 FIG. is an enlarged sectional view at position A of a foldable electric mosquito racket for highly efficient mosquito killing.
[0024] Wherein: electric grid racket head 1, handle 2, light source chamber 3, light-emitting part 31, front inner shell 11, rear inner shell 12, first electric grid 13, light source front groove 111, light source rear groove 121, front outer shell 14, rear outer shell 15, second electric grid 16, third electric grid 17, light-emitting through hole 141, electronic control board 4, electronic control board placement groove 122, induction lamp wick 41, function lamp wick 42, limit block 123, limit notch 43, wire notch 124. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary only for explaining the present utility model and should not be construed as limiting the present utility model.
[0026] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features, which are used to distinguish and describe features without order or importance.
[0027] In the description of the present utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0028] In the description of the embodiments of the present utility model, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present utility model can be understood according to specific circumstances.
[0029] The following is combined with Figures 1 to 4 to describe a foldable electric mosquito swatter for highly efficient mosquito killing according to an embodiment of the present utility model.
[0030] A foldable electric mosquito swatter for highly efficient mosquito killing includes a grid racket head 1, a handle 2, and a light source chamber 3; the upper end of the handle 2 is movably connected to the rear side end of the grid racket head 1, the light source chamber 3 is arranged in the center of the grid racket head 1, and the light emitting part 31 of the light source chamber 3 protrudes forward from the front of the grid racket head 1.
[0031] In a preferred embodiment of a foldable electric mosquito swatter for highly efficient mosquito killing proposed by the present utility model, as Figures 1 to 2As shown, the upper end of the handle 2 is movably connected to the rear side end of the electric grid racket head 1 (which can be any folding method), enabling the upper end of the handle 2 and the rear side end of the electric grid racket head 1 to move freely relative to each other. When the handle 2 and the electric grid racket head 1 are freely folded, the handle 2 will not block the light-emitting part 31 in front of the electric grid racket head 1, preventing the emitted light from being blocked by the handle 2. At the same time, the light source chamber 3 is arranged at the center of the electric grid racket head 1, and the light-emitting part 31 of the light source chamber 3 protrudes forward from the front of the electric grid racket head 1. This allows mosquitoes attracted by the light source to land on the electric grid around the light-emitting part 31, increasing the mosquito-catching rate. Moreover, the forward protrusion of the light-emitting part 31 can expand the light irradiation range (i.e., in a 180° fan shape), enhancing the induction rate. Thus, by re-planning the relative positions of the electric grid racket head 1, the handle 2, the light source chamber 3, and the light-emitting part 31, while ensuring the folding function of the electric mosquito racket to guarantee portability and flexibility, the mosquito-killing efficiency is further improved, enhancing the user experience.
[0032] Furthermore, the electric grid racket head 1 includes a front inner shell 11, a rear inner shell 12, and a first electric grid 13. A light source front groove 111 with an opening facing backward is provided at the center of the front inner shell 11, and a light source rear groove 121 with an opening facing forward is provided at the center of the rear inner shell 12. The first electric grid 13 is fixed by snap-fitting the rear surface of the front inner shell 11 and the front surface of the rear inner shell 12. The first electric grid 13 is fixed by snap-fitting the openings of the light source front groove 111 and the light source rear groove 121, and they enclose to form the light source chamber 3. The special-shaped groove bottom of the light source front groove 111 is the light-emitting part 31.
[0033] In this embodiment, as Figure 3 shown, when the light source chamber 3 located at the center of the electric grid racket head 1 is formed by snap-fitting the first electric grid 13 between the rear surface of the front inner shell 11 and the front surface of the rear inner shell 12, at the same time, the openings of the light source front groove 111 and the light source rear groove 121 are snap-fitted to fix the first electric grid 13, thus enclosing to form the light source chamber 3. The special-shaped groove bottom of the light source front groove 111 is used to form a protruding structure as the light-emitting part 31. When light is emitted from the light source chamber 3, the light is concentrated in the light source chamber 3 and emitted through the special-shaped groove bottom.
[0034] Furthermore, the electric grid racket head 1 further includes a front outer shell 14, a rear outer shell 15, a second electric grid 16, and a third electric grid 17. A light-emitting through hole 141 is provided on the front outer shell 14 corresponding to the light-emitting part 31. The rear surface of the front outer shell 14 and the front surface of the rear outer shell 15 are snap-fitted to fix the front inner shell 11 and the rear inner shell 12, and the light-emitting part 31 passes through the light-emitting through hole 141.
[0035] The second electric grid 16 is clamped and fixed between the rear surface of the front outer shell 14 and the front surface of the front inner shell 11, and the third electric grid 17 is clamped and fixed between the front surface of the rear outer shell 15 and the rear surface of the rear inner shell 12. The meshes of the first electric grid 13, the second electric grid 16, and the third electric grid 17 are arranged in a staggered manner.
[0036] In this embodiment, in order to better fix the light source chamber 3 and at the same time set more power grids to increase the power grid density and thus improve the mosquito killing efficiency; the power grid head 1 is also provided with a front inner shell 11 and a rear inner shell 12 fixed by the cooperation of the rear surface of the front outer shell 14 and the front surface of the rear outer shell 15, so as to fix the light source chamber 3 and enable the light emitting part 31 to pass through the light emitting through hole 141 and protrude from the front surface of the power grid head 1; at the same time, the second power grid 16 is clamped and fixed by the rear surface of the front outer shell 14 and the front surface of the front inner shell 11, and the third power grid 17 is clamped and fixed by the front surface of the rear outer shell 15 and the rear surface of the rear inner shell 12, so that the first power grid 13, the second power grid 16 and the third power grid 17 are aligned and arranged in parallel. The use of the mutually staggered grids effectively prevents mosquitoes from passing through the power grid meshes and improves the mosquito killing efficiency.
[0037] Furthermore, an electronic control board 4 is provided in the light source chamber 3. The light source rear groove 121 is provided with an electronic control board placement groove 122 corresponding to the light emitting part 31. The electronic control board 4 is limited in the electronic control board placement groove 122. The electronic control board 4 is provided with an induction wick 41 facing the light emitting part 31.
[0038] The first power grid 13 is provided with a power grid through hole corresponding to the electronic control board placement groove 122. The first power grid 13 is sleeved on the outer groove wall of the electronic control board placement groove 122 through the power grid through hole.
[0039] In this embodiment, as Figure 4 shown, the light emitted by the light source chamber 3 from the light emitting part 31 is realized by the wick of the electronic control board 4. Therefore, the light source rear groove 121 is provided with an electronic control board placement groove 122 corresponding to the light emitting part 31. The electronic control board 4 is limited in the electronic control board placement groove 122. The electronic control board 4 is provided with an induction wick 41 facing the light emitting part 31, so that the light emitted by the induction wick 41 (i.e., the induction light source) can directly pass through the light emitting part 31 to emit induction light. More importantly, since the first power grid 13 is fixed by the cooperation of the rear surface of the front inner shell 11 and the front surface of the rear inner shell 12, in order to prevent the first power grid 13 from affecting (or interfering with) the electronic control board 4 in the light source chamber 3, the first power grid 13 is provided with a power grid through hole corresponding to the electronic control board placement groove 122. The first power grid 13 is sleeved on the outer groove wall of the electronic control board placement groove 122 through the power grid through hole, so as to isolate the first power grid 13 and the electronic control board 4 by the outer groove wall of the electronic control board placement groove 122.
[0040] Furthermore, the electronic control board 4 is also provided with at least one functional wick 42 facing the light emitting part 31.
[0041] In this embodiment, when the electric mosquito swatter wants to add other functions related to light sources, it can also be realized by adding other light sources in the light source chamber 3, that is, adding functional wicks 42, such as a wick with a lighting function and a wick with a colored light function, etc., and the number of wicks is not limited.
[0042] Furthermore, both the inner and outer surfaces of the light emitting part 31 are frosted surfaces.
[0043] In this embodiment, since matte treatment is performed on the surface of the transparent or translucent material, the scattering of light can be increased, making the light source more gentle and evenly diffused, and the induction rate can be improved. Therefore, both the inner and outer surfaces of the light-emitting part 31 are preferably matte surfaces.
[0044] Furthermore, the upper end of the handle 2 is rotatably connected to the rear end of the electric mosquito racket head 1, and the rear end of the electric mosquito racket head 1 can rotate up and down around the upper end of the handle 2.
[0045] In this embodiment, the preferred folding method of the handle 2 and the electric mosquito racket head 1 is rotation. When the electric mosquito racket head 1 rotates to overlap with the handle 2, it is convenient to carry. At the same time, the position of the electric grid can be adjusted by rotating the rear end of the electric mosquito racket head 1 up and down around the upper end of the handle 2, improving the flexibility of use. More importantly, the upper end of the handle 2 is rotatably connected to the rear end of the electric mosquito racket head 1, which is more convenient for the wire to route and avoids the wire being broken.
[0046] Furthermore, at least one limiting block 123 is provided in the electric control board placement groove 122, and the electric control board 4 is provided with a limiting notch 43 corresponding to the limiting block 123, and the limiting block 123 is limited in the limiting notch 43.
[0047] In this embodiment, to prevent the electric control board 4 from shifting with the folding movement of the electric mosquito racket head 1 when placed in the electric control board placement groove 122, it is preferred to mutually provide a limiting and matching structure (i.e., the limiting block 123 and the limiting notch 43) between the electric control board placement groove 122 and the electric control board 4.
[0048] Furthermore, a wire notch 124 is provided on the groove wall of the electric control board placement groove 122, and the wire notch 124 is used for the wire electrically connected to the electric control board 4 to route.
[0049] In this embodiment, since the electric control board 4 in the electric control board placement groove 122 also needs to be powered and transmit signals, in order to facilitate the routing of wires (i.e., power supply wires and signal wires, etc.), a wire notch 124 is provided on the groove wall of the electric control board placement groove 122, so that the wires do not need to detour.
[0050] For other components and operations of the foldable electric mosquito racket for efficient mosquito killing according to the embodiment of the present utility model, etc., are known to those of ordinary skill in the art and will not be described in detail here.
[0051] In the description of this specification, the description referring to terms such as "embodiment", "example", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0052] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.
Claims
1. A foldable electric mosquito swatter for highly efficient mosquito killing, characterized in that: It includes an electric shock net racket head, a handle and a light source chamber; the upper end of the handle is movably connected to the rear side end of the electric shock net racket head, the light source chamber is arranged in the center of the electric shock net racket head, and the light emitting part of the light source chamber protrudes forward from the front of the electric shock net racket head.
2. The foldable electric mosquito racket for highly efficient mosquito killing according to claim 1, characterized in that: The electric shock net racket head includes a front inner shell, a rear inner shell and a first electric shock net; a light source front groove with an opening facing backward is provided in the center of the front inner shell, a light source rear groove with an opening facing forward is provided in the center of the rear inner shell, the first electric shock net is fixedly buckled by the front of the rear inner shell and the rear of the front inner shell, the notch openings of the light source front groove and the light source rear groove are fixedly buckled to form the light source chamber, and the special-shaped groove bottom of the light source front groove is the light emitting part.
3. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 2, wherein: The electric shock net racket head further includes a front outer shell, a rear outer shell, a second electric shock net and a third electric shock net; a light emitting through hole is provided in the front outer shell corresponding to the light emitting part; the front of the rear outer shell and the rear of the front outer shell are fixedly buckled to fix the front inner shell and the rear inner shell, and the light emitting part passes through the light emitting through hole; The second electric shock net is clamped and fixed by the rear of the front outer shell and the front of the front inner shell, the third electric shock net is clamped and fixed by the front of the rear outer shell and the rear of the rear inner shell, and the meshes of the first electric shock net, the second electric shock net and the third electric shock net are arranged in a staggered manner.
4. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 2, wherein: An electronic control board is arranged in the light source chamber, an electronic control board placement groove corresponding to the light emitting part is provided in the light source rear groove, the electronic control board is limited in the electronic control board placement groove, and the electronic control board is provided with an induction lamp core facing the light emitting part; The first electric shock net is provided with an electric shock net through hole corresponding to the electronic control board placement groove, and the first electric shock net is sleeved on the outer groove wall of the electronic control board placement groove through the electric shock net through hole.
5. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 4, characterized in that: The electronic control board is further provided with at least one functional lamp core facing the light emitting part.
6. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 1, wherein: Both the inner and outer surfaces of the light emitting part are frosted surfaces.
7. An efficiently mosquito-killing foldable electric mosquito swatter according to claim 1, wherein: The upper end of the handle is rotatably connected to the rear side end of the electric shock net racket head, and the rear side end of the electric shock net racket head can rotate up and down around the upper end of the handle.
8. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 4, characterized in that: At least one limiting block is arranged in the electronic control board placement groove, the electronic control board is provided with a limiting notch corresponding to the limiting block, and the limiting block is limited in the limiting notch.
9. The foldable electric mosquito swatter for highly efficient mosquito killing according to claim 4, characterized in that: A wire notch is provided on the groove wall of the electronic control board placement groove, and the wire notch is used for the wire electrically connected to the electronic control board to route.