Insect killing lamp
By designing a longitudinal track in the lamp shell of the insect extermination lamp, the longitudinal displacement of the cleaning brush tool is solved, and the existing insect extermination lamp cleaning brush tool cannot provide effective overall cleaning of the electric shock coil is achieved, achieving a more efficient cleaning effect.
Patent Information
- Application Number
- CN202421738923.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The existing cleaning brushes of insect-extinguishing lamps cannot provide effective overall cleaning of the electric shock coil. Due to the lamp shell structure, they can only be cleaned locally.
A lamp shell containing a longitudinal track is designed, and the operating member of the cleaning brush tool moves along the longitudinal track, driving the brush body to longitudinally displace the lamp shell, thereby cleaning the entire electric shock coil.
Through the displacement of the brush body guided by the longitudinal track, the entire electric shock coil can be fully contacted, which significantly improves the cleaning efficiency and solves the problem that only local cleaning can be carried out in the prior art.
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Figure CN222916865U_ABST
Abstract
Description
Technical Field
[0001] The utility model provides an insecticidal lamp, especially an insecticidal lamp with a cleaning brush. Background Art
[0002] It is found that US20200281181A develops an insecticidal lamp with a cleaning brush to solve the defect that the existing insecticidal lamp needs to be turned off and disassembled when cleaning. The cleaning brush faces the electric shock coil, and has at least a handle member extending through a hollow part on the surface of the lamp housing. When the handle member is operated, it displaces along the hollow part on the surface of the lamp housing, thereby driving the cleaning brush to clean the electric shock coil.
[0003] Among them, US20200281181A discloses the content of cleaning with a straight rod brush. However, the aforementioned brush can only clean a part of the electric shock coil, which is not conducive to implementation. In addition, the cleaning area of the existing cleaning brush for the electric shock coil depends on the displacement range of the handle member allowed by the hollow part on the surface of the lamp housing. From US20200281181A, its cleaning brush is limited by the shape of the hollow part on the surface of the lamp housing, and can only clean the part at the same height position of the electric shock coil. Moreover, the handle member is limited by the lamp housing structure and can only displace slightly, resulting in that its cleaning brush can only clean locally and cannot provide efficient cleaning for the electric shock coil. Summary of the Utility Model
[0004] The main purpose of the utility model is to solve the problem that the cleaning brush of the existing insecticidal lamp cannot provide a good cleaning effect for the electric shock coil.
[0005] To achieve the above purpose, the utility model provides an insecticidal lamp, which includes a pest attracting lamp core, an electric shock coil surrounding the pest attracting lamp core, a power supply module electrically connected to the pest attracting lamp core and the electric shock coil, a lamp housing providing the pest attracting lamp core and the electric shock coil to be arranged therein and connected to the power supply module, and a cleaning brush. The lamp housing includes a plurality of horizontally arranged ribs arranged at intervals, a plurality of vertically arranged ribs arranged at intervals and intersecting with the horizontally arranged ribs, and a plurality of hollow parts formed between the horizontally arranged ribs and the vertically arranged ribs. At least one of the vertically arranged ribs is formed with a vertically arranged track in a hollow shape. The cleaning brush includes a brush body surrounding the pest attracting lamp core and selectively contacting the electric shock coil, and at least one operating member connected to the brush body and movable along the vertically arranged track by operation. The at least one operating member includes a connecting portion extending into the lamp housing through the vertically arranged track to connect the brush body, and an operating portion exposed outside the lamp housing. When the at least one operating member is operated and moves along the vertically arranged track, it drives the brush body to generate a vertical displacement in the lamp housing to clean the electric shock coil.
[0006] In one embodiment, the lamp housing has a top end and a bottom end. The longitudinal track includes a main path between the top end and the bottom end, and a branch path connecting the main path and close to the top end. When the connecting portion of the operating member enters the branch path, the cleaning brush will be in a restricted position.
[0007] In one embodiment, the lamp housing includes a base, and an attracting fan disposed on the base.
[0008] In one embodiment, the lamp housing includes a through hole formed on the base and providing a setting space for the attracting fan, a space communicating with the through hole, and a drawer disposed in the space and removable from the outer surface of the lamp housing.
[0009] In one embodiment, the power supply module is disposed at the relative top end of the lamp housing. The power supply module includes at least one solar panel, an energy storage unit, and a working management module connecting the at least one solar panel, the energy storage unit, the insect attracting lamp core and the electric shock coil.
[0010] In one embodiment, the power supply module includes at least one power input port electrically connected to the working management module.
[0011] In one embodiment, the insect killing lamp has at least one operation switch exposed on the surface of the insect killing lamp and electrically connected to the working management module.
[0012] In one embodiment, the insect killing lamp has at least one light-emitting decorative member disposed between the lamp housing and the power supply module.
[0013] In one embodiment, the lamp housing includes a through hole formed on the base, a space communicating with the through hole, and a drawer disposed in the space and removable from the outer surface of the lamp housing.
[0014] Through the foregoing embodiments of the present utility model, compared with the prior art, it has the following characteristics: The lamp housing of the present utility model includes the transverse ribs, longitudinal ribs and the hollowed-out portion, and at least one of the longitudinal ribs is formed with the longitudinal track. When the operating member of the cleaning brush moves along the longitudinal track, it will drive the brush body of the cleaning brush to perform longitudinal displacement within the lamp housing to clean the whole electric shock coil.
[0015] The following describes the present utility model in detail with reference to the accompanying drawings and specific embodiments, but it is not a limitation to the present utility model. Description of the Drawings
[0016] Figure 1 , the three-dimensional structure schematic diagram of the first embodiment of the present utility model.
[0017] Figure 2 , the exploded schematic diagram (one) of the first embodiment of the present utility model.
[0018] Figure 3 , exploded view (2) of the first embodiment of the present utility model.
[0019] Figure 4 , cross-sectional view of the first embodiment of the present utility model.
[0020] Figure 5 , three-dimensional structure diagram of the second embodiment of the present utility model.
[0021] Figure 6 , three-dimensional structure diagram of the third embodiment of the present utility model.
[0022] Among them, reference numerals
[0023] 10: insecticidal lamp
[0024] 11: insect attracting lamp wick
[0025] 111: light-emitting component
[0026] 112: lamp barrel
[0027] 113: lamp board
[0028] 114: assembly groove
[0029] 12: electric shock coil
[0030] 13: power supply module
[0031] 131: solar panel
[0032] 132: energy storage unit
[0033] 133: operation management module
[0034] 135: power input port
[0035] 14: lamp housing
[0036] 141: transverse rib
[0037] 142: longitudinal rib
[0038] 143: hollowed-out part
[0039] 144: longitudinal track
[0040] 145: top end
[0041] 146: bottom end
[0042] 147: main road
[0043] 148: branch road
[0044] 149: base
[0045] 150: Suction fan
[0046] 151: Through hole
[0047] 152: Space
[0048] 153: Drawer
[0049] 154: Inlet air side
[0050] 155: Outlet air side
[0051] 156: Partition board
[0052] 157: Through hole
[0053] 158: Perforation
[0054] 17: Cleaning brush
[0055] 171: Brush body
[0056] 172: Operating part
[0057] 173: Connecting part
[0058] 174: Operating section
[0059] 175: Longitudinal displacement
[0060] 18: Operating switch
[0061] 19: Light-emitting decorative part Detailed implementation mode
[0062] The detailed description and technical content of the present utility model are described as follows in conjunction with the accompanying drawings:
[0063] Please refer to Figures 1 to 4 , the present utility model provides a pest control lamp 10, which includes an insect attracting lamp core 11, an electric shock coil 12, a power supply module 13, a lamp housing 14 and a cleaning brush 17. Among them, the power supply module 13 provides power. The power supply module 13 can receive commercial power to drive the insect attracting lamp core 11 and the electric shock coil 12, or can receive the power converted from solar energy to drive the insect attracting lamp core 11 and the electric shock coil 12. The insect attracting lamp core 11 is connected to the power supply module 13. When the insect attracting lamp core 11 is driven, it generates at least one light ray. The at least one light ray has a special wavelength and can effectively attract insects to approach. The electric shock coil 12 is connected to the power supply module 13 and is arranged around the insect attracting lamp core 11. The electric shock coil 12 provides an electric shock function to insects after being started.
[0064] The lamp housing 14 is provided with the insect attracting lamp core 11 and the electric shock coil 12 disposed therein, and is assembled with the power supply module 13. The lamp housing 14 includes a plurality of transverse ribs 141, a plurality of longitudinal ribs 142, and a plurality of hollow portions 143. The transverse ribs 141 are arranged in a transverse interval, and the longitudinal ribs 142 are arranged in a longitudinal interval, and are arranged in an interlaced manner with the transverse ribs 141. In plain words, the transverse ribs 141 and the longitudinal ribs 142 are jointly configured into a fence-like structure, and the hollow portions 143 are formed between the transverse ribs 141 and the longitudinal ribs 142, and are located at the penetrable part of the fence-like structure. A longitudinal track 144 is formed on at least one of the longitudinal ribs 142, and the longitudinal track 144 is hollowed out to provide a setting and guiding function.
[0065] The cleaning brush 17 includes a brush body 171 and at least one operating member 172. The brush body 171 is designed to solve the problem that the existing straight-rod brush can only perform partial cleaning. The brush body 171 is arranged around the insect attracting lamp wick 11 and can selectively contact the electric shock coil 12. The brush body 171 is not connected to the electric shock coil 12. When the brush body 171 moves relative to the electric shock coil 12, it can remove foreign matter (such as insect corpses, etc.) attached to the electric shock coil 12 in 360 degrees. The at least one operating member 172 is arranged in the longitudinal track 144 and connected to the brush body 171. After being operated, the at least one operating member 172 is guided by the longitudinal track 144 and moves along the longitudinal track 144, and drives the brush body 171 to generate a longitudinal displacement 175 in the lamp housing 14. More specifically, the at least one operating member 172 includes a connecting portion 173 and an operating portion 174. The connecting portion 173 extends into the lamp housing 14 through the longitudinal track 144 to connect to the brush body 171. The operating portion 174 is connected to the connecting portion 173 and exposed on the surface of the lamp housing 14 for holding.
[0066] The implementation of the insect killer lamp 10 is now described. Figures 1 to 4Assume that the insecticidal lamp 10 is not started initially, the insect attracting wick 11 does not attract insects, and no foreign objects such as insect corpses are attached to the electric shock coil 12. When the insecticidal lamp 10 is started, the power supply module 13 supplies power to the insect attracting wick 11 and the electric shock coil 12. The insect attracting wick 11 emits the at least one light ray to attract insects. When the insects enter through the hollow part 143 of the lamp housing 14 and contact the electric shock coil 12, a conduction relationship is formed between the electric shock coil 12 and the insects, so that the insects are electrocuted to death and may be attached to the electric shock coil 12. When cleaning the electric shock coil 12, the user can hold the operating part 174 of the operating member 172 and drive the connecting part 173 of the operating member 172 to move along the longitudinal track 144, so that the brush body 171 contacts the electric shock coil 12 while performing the longitudinal displacement 175 within the lamp housing 14, so as to clean the foreign objects on the electric shock coil 12 in 360 degrees.
[0067] As can be seen from the above, in the present utility model, through the arrangement of the longitudinal track 144, the displacement of the cleaning brush 17 is guided, so that the brush body 171 can perform the longitudinal displacement 175 within the lamp housing 14 after being driven by the operating member 172. Compared with the prior art, in the present utility model, with the longitudinal track 144 as the guide, while the brush body 171 performs the longitudinal displacement 175, it can completely contact the whole of the electric shock coil 12, thereby improving the problem that the existing cleaning brush can only clean a partial area of the electric shock coil in a small range, and can greatly improve the cleaning efficiency of the cleaning brush 17 when cleaning the electric shock coil 12.
[0068] Continuing from the above, please refer to Figures 1 to 4 , in one embodiment for the present utility model to accommodate the cleaning brush 17, the lamp housing 14 has a top end 145 and a bottom end 146. The longitudinal track 144 includes a main track 147 and a branch track 148. The main track 147 is between the top end 145 and the bottom end 146, and the main track 147 is generally longitudinal. The branch track 148 is connected to the main track 147 and branches out from the main track 147. The extending direction of the branch track 148 is different from that of the main track 147 to provide a limit for the cleaning brush 17. Also, the branch track 148 is located near the top end 145 of the lamp housing 14. When the connecting part 173 of the operating member 172 enters the branch track 148, the position of the cleaning brush 17 will be limited and the implementation of the electric shock coil 12 will not be affected, thereby achieving the purpose of accommodating the cleaning brush 17 without affecting the insecticidal effect of the insecticidal lamp 10.
[0069] In addition, in one embodiment, the lamp housing 14 includes a base 149 and a suction fan 150. The base 149 is located at the bottom end 146 of the lamp housing 14. The suction fan 150 is disposed on the base 149. The suction fan 150 is started when the cleaning brush 17 cleans the electric shock coil 12, and generates an air flow flowing in the direction of the base 149 inside the lamp housing 14 to assist in attracting foreign objects on the electric shock coil 12 to fall off, so as to assist in improving the cleaning efficiency. In addition, the suction fan 150 can also be turned on when the insect killing lamp 10 is operating. The air flow generated by the suction fan 150 will attract insects that are close to the electric shock coil 12 but do not touch the electric shock coil 12, improving the insect killing effect of the insect killing lamp 10.
[0070] In addition, for the present utility model to collect foreign objects such as insect corpses, in one embodiment, the lamp housing 14 includes a through hole 151, a space 152 and a drawer 153. The through hole 151 is formed on the base 149 and communicates with the inside of the lamp housing 14. The space 152 is formed by the base 149 and communicates with the through hole 151. The drawer 153 is disposed in the space 152 and the opening direction faces the through hole 151. The drawer 153 can receive foreign objects that come from the inside of the lamp housing 14 and fall into the inside of the drawer 153 through the through hole 151. Also, the drawer 153 can be separated from the lamp housing 14. For example, when the drawer 153 is to be emptied, the drawer 153 can be taken out from the outer surface of the lamp housing 14. Further, the drawer 153 can be provided with at least one sticky insect sticker to assist in improving the insect killing effect of the insect killing lamp 10.
[0071] Continuing from the above, in this embodiment, the suction fan 150 can be implemented in combination with the drawer 153. The suction fan 150 is disposed in the through hole 151. An air inlet side 154 of the suction fan 150 faces the electric shock coil 12, and an air outlet side 155 of the suction fan 150 faces the drawer 153. When the suction fan 150 is started, it will suck the foreign objects on the electric shock coil 12 and discharge them towards the drawer 153. In another embodiment, the lamp housing 14 further includes a partition plate 156. The partition plate 156 is located at the opposite bottom end 146 of the lamp housing 14, that is, the partition plate 156 is located on the side of the lamp housing 14 close to the base 149. The partition plate 156 provides a place for the electric shock coil 12 and the insect attracting lamp core 11 to be disposed thereon. At least one through hole 157 is formed on the partition plate 156, and the through hole 157 communicates the inside of the lamp housing 14 with the through hole 151.
[0072] Please refer to again Figures 2 to 4, in one embodiment, the power supply module 13 of the present utility model is disposed at the opposite top end of the lamp housing 14, that is, the power supply module 13 is located on one side of the lamp housing 14 close to the top end 145. The power supply module 13 has a waterproof function, so that the insecticidal lamp 10 can be placed indoors or outdoors. The power supply module 13 includes at least one solar panel 131, an energy storage unit 132, and an operation management module 133 that connects the solar panel 131, the energy storage unit 132, the insect attracting lamp core 11, and the electric shock coil 12. The energy storage unit 132 provides a power storage function and can be a battery. The at least one solar panel 131 receives sunlight. The operation management module 133 converts the solar energy from the at least one solar panel 131 into an operating power and stores the operating power in the energy storage unit 132, so that the insecticidal lamp 10 can be charged by solar energy when placed outdoors. When the insecticidal lamp 10 is started, the operation management module 133 drives the energy storage unit 132 to release the stored operating power to the insect attracting lamp core 11 and the electric shock coil 12, so that the insect attracting lamp core 11 and the electric shock coil 12 operate. In another embodiment, the power supply module 13 further includes at least one power input port 135. The at least one power input port 135 is disposed on the lamp housing 14 and is electrically connected to the operation management module 133. The at least one power input port 135 receives power input and can be a USB port or the like, so that the insecticidal lamp 10 can be charged through the at least one power input port 135 when placed indoors.
[0073] In one embodiment, the at least one solar panel 131 is disposed on the surface of the lamp housing 14, and the energy storage unit 132 and the operation management module 133 are located inside the lamp housing 14. The lamp housing 14 is formed with at least one through hole 158, so that the at least one solar panel 131 forms an electrical connection relationship with the energy storage unit 132 and the operation management module 133.
[0074] Furthermore, the insect attracting wick 11 further includes a plurality of light emitting elements 111 and a lamp tube 112. Each of the light emitting elements 111 can be a blue LED capable of emitting special wavelength light. A plurality of the LEDs are arranged on a lamp board 113 at intervals. The light emitting elements 111 are electrically connected to the operation management module 133, and the light emitting modes of the light emitting elements 111 can vary based on the control of the operation management module 133, such as flashing, constant lighting, etc. It should be understood that the present invention does not limit the light emitting modes of the light emitting elements 111, and the main implementation is that the insect attracting wick 11 can attract insects to approach. In addition, the lamp tube 112 is made of a light transmissive material. The lamp tube 112 provides a setting space for the light emitting elements 111 and is assembled with the lamp board 113. The lamp tube 112 can assist in light divergence and at the same time limit the position of the lamp board 113 within the lamp housing 14. In addition, the electric shock coil 12 is arranged on the periphery of the lamp tube 112, and the lamp tube 112 is formed with at least one assembly groove 114 for providing the setting of the electric shock coil 12.
[0075] Continuing, the insect killing lamp 10 further has at least one operation switch 18. The at least one operation switch 18 is electrically connected to the operation management module 133 of the power supply module 13 and is exposed on the surface of the insect killing lamp 10 for operation. The at least one operation switch 18 determines the control of the operation management module 133 over the insect attracting wick 11 based on the operated state, such as controlling the opening and closing, light emitting mode, etc. of the insect attracting wick 11.
[0076] In addition, the insect killing lamp 10 of the present invention can be in the form as Figures 1 to 4 shown, or in the configuration of a torch shape as Figure 5 shown, or be used as a garden landscape lamp as Figure 6 shown. In one embodiment, the insect killing lamp 10 can further have a light emitting decorative element 19. The light emitting decorative element 19 is arranged between the lamp housing 14 and the power supply module 13 and is controlled by the operation management module 133 to enhance the decorative effect of the insect killing lamp 10.
[0077] Certainly, the present invention can also have many other embodiments. Without departing from the spirit and essence of the present invention, those skilled in the art can make various corresponding changes and deformations according to the present invention, but these corresponding changes and deformations should all fall within the protection scope of the appended claims of the present invention.
Claims
1. An insect killer lamp, characterized in that: Include: An insect wick; An electric shock coil surrounding the insect attractant wick; A power supply module electrically connected to the insect attractant lamp wick and the electric shock coil; a lamp housing, in which the insect attracting lamp core and the electric shock coil are disposed, and assembled with the power supply module, the lamp housing comprising a plurality of transverse ribs arranged at intervals, a plurality of longitudinal ribs arranged at intervals and staggered with the transverse ribs, and a plurality of hollow portions formed between the transverse ribs and the longitudinal ribs, at least one of the longitudinal ribs being formed with a hollow longitudinal track; and A cleaning brush comprises a brush body which is arranged around the insect attracting wick and can selectively contact the electric shock coil, and at least one operating member which is connected to the brush body and can be operated to move along the longitudinal track. The at least one operating member comprises a connecting part which extends into the lamp housing through the longitudinal track to connect to the brush body, and an operating part which is exposed outside the lamp housing. When the at least one operating member is operated to move along the longitudinal track, it drives the brush body to generate a longitudinal displacement in the lamp housing to clean the electric shock coil.
2. The insect killer lamp according to claim 1, characterized in that: The lamp housing has a top and a bottom. The longitudinal track includes a main path between the top and the bottom, and a branch path connected to the main path and close to the top. When the connecting portion of the operating member enters the branch path, the cleaning brush will be restricted in position.
3. The insect killer lamp according to claim 2, characterized in that: The lamp housing comprises a base and a suction fan arranged on the base.
4. The insect killer lamp as claimed in claim 3, characterized in that: The lamp housing comprises a through hole formed on the base and providing the suction fan therein, a space communicating with the through hole, and a drawer arranged in the space and capable of being taken out from the exterior of the lamp housing.
5. The insect killer lamp as claimed in claim 4, characterized in that: The power supply module is arranged at the top end relative to the lamp housing, and the power supply module includes at least one solar panel, an energy storage unit, and a work management module connecting the at least one solar panel, the energy storage unit, the insect attracting lamp wick and the electric shock coil.
6. The insect killer lamp as claimed in claim 5, characterized in that: The power supply module includes at least one power input port electrically connected to the work management module.
7. The insect killer lamp as claimed in claim 5, characterized in that: The insect-killing lamp has at least one operating switch exposed on the surface of the insect-killing lamp and electrically connected to the work management module.
8. The insect killer lamp according to claim 7, characterized in that: The insect-killing lamp has at least one luminous decorative piece arranged between the lamp housing and the power supply module.
9. The insect killer lamp as claimed in claim 3, characterized in that: The lamp housing comprises a through hole formed on the base, a space communicated with the through hole, and a drawer arranged in the space and can be taken out from the outer surface of the lamp housing.
10. The insect killer lamp according to claim 1, characterized in that: The power supply module is arranged at the top end relative to the lamp housing, and the power supply module includes at least one solar panel, an energy storage unit, and a work management module connecting the solar panel, the energy storage unit, the insect attracting lamp wick and the electric shock coil.
11. The insect killer lamp according to claim 10, characterized in that: The power supply module includes at least one power input port electrically connected to the work management module.
12. The insect killer lamp according to claim 10, characterized in that: The insect-killing lamp has at least one operating switch exposed on the surface of the insect-killing lamp and electrically connected to the work management module.
13. The insect killer lamp according to claim 12, characterized in that: The insect-killing lamp has at least one luminous decorative piece arranged between the lamp housing and the power supply module.
Citation Information
Patent Citations
Bug Zapper Coil Sweeper
US20200281181A1