Mosquito killing lamp

By introducing a flame lamp panel to simulate flame lighting and an escape prevention component into the mosquito killer lamp, the problems of high power consumption and mosquito escape are solved, achieving a combination of low power consumption, high-efficiency mosquito killing, and aesthetic appeal.

CN223816811UActive Publication Date: 2026-01-23NINGBO DAYANG TECH CO LTD
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Patent Information

Application Number
CN202520401881.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-01-23
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

Existing mosquito-killing lamps consume a lot of electricity and are not very effective at killing mosquitoes. Moreover, when the power is depleted, the captured mosquitoes are easy to escape, and they lack visual appeal and unique features.

Method used

A mosquito-killing lamp was designed, which combines a lighting component and a mosquito-killing component. The lamp uses a flame lamp panel to simulate the flickering light of a flame, and an escape prevention component is set in the mosquito-killing component, including a rotatable hinge and an ultraviolet lamp. When the fan is running, it sucks in mosquitoes and dries and kills them. When it stops, the hinge seals to prevent escape.

Benefits of technology

It achieves low power consumption and effective mosquito killing, while also being aesthetically pleasing and preventing mosquitoes from escaping, making it suitable for outdoor use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223816811U_ABST
Patent Text Reader

Abstract

The utility model provides a mosquito killing lamp. The mosquito killing lamp comprises a lighting assembly and a mosquito killing assembly. The lighting assembly comprises a top cover, a battery, a circuit board and a flame lamp panel which are electrically connected in sequence are arranged below the top cover, a lampshade is arranged on the outer side of the flame lamp panel, and the flame lamp panel is used for emitting lighting light simulating flame jumping outwards; the mosquito killing assembly comprises a fan assembly and a mosquito collecting box which are communicated up and down, the fan assembly comprises a fan shell and a fan arranged in the fan shell, and the fan is electrically connected with the circuit board and used for sucking mosquitoes into the mosquito collecting box for air drying and mosquito killing; the lighting assembly is arranged above the mosquito killing assembly, and the mosquito killing assembly is located in the projection below the top cover. The mosquito killer lamp has mosquito killing and lighting functions, the flame lamp panel is adopted as the lighting assembly, lighting light simulating flame jumping can be emitted outwards, and the mosquito killer lamp is extremely ornamental and distinctive in feature; the mosquito eradication assembly is located in the projection below the top cover, and the top cover can shield the mosquito eradication assembly from rainwater.
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Description

Technical Field

[0001] This utility model relates to the technical field of mosquito-killing equipment, and more specifically to a mosquito-killing lamp. Background Technology

[0002] Existing mosquito-killing lamps come in various styles, all possessing mosquito-killing and lighting functions. Aside from differences in appearance and design, they lack other distinctive features and are easily replaceable. Moreover, the mosquito-killing function generally relies on a fan to suck mosquitoes into the casing and dry them. To prevent captured mosquitoes from escaping, the fan must run for an extended period of time until all captured mosquitoes are killed, resulting in high power consumption. Once the power is depleted and the fan stops, the captured mosquitoes will escape from the casing, leading to mosquito-killing failure. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a mosquito-killing lamp that, in addition to having mosquito-killing and lighting functions, is also highly ornamental and distinctive.

[0004] The technical solution of this utility model is to provide a mosquito-killing lamp, including a lighting component and a mosquito-killing component; the lighting component includes a top cover, and below the top cover are a battery, a circuit board, and a flame lamp plate that are electrically connected in sequence. A lampshade is provided on the outside of the flame lamp plate, and the flame lamp plate is used to emit illumination light that simulates the flickering of flames; the mosquito-killing component includes a fan component and a mosquito collection box that are connected vertically. The fan component includes a fan housing and a fan disposed inside the fan housing. The fan is electrically connected to the circuit board and is used to suck mosquitoes into the mosquito collection box for drying and killing them; the lighting component is disposed above the mosquito-killing component, and the mosquito-killing component is located within the projection below the top cover.

[0005] Compared with the prior art, the mosquito killer lamp of this utility model has the following advantages: it has mosquito killing and lighting functions. The lighting component adopts a flame lamp plate, which can emit light that simulates the flickering of flames, making it highly ornamental and distinctive. The mosquito killing component is located in the projection under the top cover, and the top cover can shield the mosquito killing component from rain, so that the mosquito killer lamp of this utility model can be used safely outdoors.

[0006] Preferably, the mosquito-killing component further includes an escape-prevention component, which comprises a third connector and two hinges. The two hinges are rotatably connected to the third connector via an elastic element. The escape-prevention component is positioned between the fan housing and the mosquito collection box. The two hinges cover the top of the mosquito collection box. When the fan operates, it drives the two hinges to rotate downwards, connecting the fan housing and the mosquito collection box. The elastic element undergoes elastic deformation when the two hinges rotate downwards, and its rebound drives the two hinges to rotate upwards to reset. With this structure, the fan generates an airflow that draws in mosquitoes. This airflow simultaneously drives the two hinges to rotate downwards, connecting the fan housing and the mosquito collection box, allowing the drawn-in mosquitoes to enter the collection box and be dried and killed. When the fan stops, the two hinges cover the top of the mosquito collection box, preventing the mosquitoes inside from escaping. Thus, the fan can be turned on at night to kill mosquitoes, and turned off during the day. Unkilled mosquitoes are trapped in the collection box and killed again when the fan is turned on next time.

[0007] Preferably, each of the two hinge hinges has an ultraviolet lamp installed on its pivot, and the ultraviolet lamp is electrically connected to the circuit board. With this structure, the ultraviolet light emitted by the lamp attracts mosquitoes to the vicinity of the mosquito-killing component, improving the component's efficiency in capturing mosquitoes. Since the ultraviolet lamp is located on the pivot of the two hinges, hinge rotation will not affect the lamp, and the lamp can be stably electrically connected to the circuit board.

[0008] Preferably, the bottom of the fan housing is provided with a detachable first connector, the top of the mosquito collection box is provided with a detachable second connector, and a third connector is detachably disposed within the second connector, with the second connector detachably connected to the first connector. Using this structure, no modifications to the existing fan housing and mosquito collection box are required; simply adding the first, second, and third connectors allows for the installation of an escape-prevention component between the fan housing and the mosquito collection box, eliminating the need for re-molding the fan housing and mosquito collection box and reducing production costs.

[0009] Preferably, the outer edge of the first connector is provided with several protrusions, and the side wall of the second connector is provided with several L-shaped connecting grooves. The protrusions are connected to the connecting grooves respectively, and the protrusions can enter from the opening of the corresponding connecting groove and rotate relative to the connecting groove to lock the second connector to the first connector. With this structure, the connection structure between the mosquito collection box with the anti-escape component and the fan housing is simple and easy to operate.

[0010] Preferably, the bottom of the mosquito collection box is provided with a rotating handle. The rotating handle is used to rotate the mosquito collection box to drive the second connecting member to rotate relative to the first connecting member, so that the second connecting member is locked or unlocked from the first connecting member. This structure facilitates the connection or disassembly of the mosquito collection box with anti-escape components from the fan housing.

[0011] Preferably, the second connector is annular with an inner stepped surface on its inner ring sidewall, and the third connector is annular with an outer stepped surface on its outer sidewall. The outer stepped surface fits onto the inner stepped surface, allowing the third connector to be embedded within the second connector. This structure simplifies the connection between the escape prevention component and the mosquito collection box; simply placing the third connector on the second connector makes operation very easy.

[0012] Preferably, the third connector has a cover handle above the two hinges. The cover handle is used to lift the third connector to open the mosquito collection box. With this structure, after removing the mosquito collection box with the escape prevention component from the fan housing, the escape prevention component on the mosquito collection box can be removed simply by lifting the cover handle, making it convenient to clean the mosquito collection box.

[0013] Preferably, a bottom shell is provided below the top cover, and the lampshade is integrally formed and located on the lower side of the bottom shell. A closed cavity is provided between the top cover and the bottom shell, and the battery, circuit board, and flame lamp plate are all located within the closed cavity. A switch is provided on the bottom surface of the bottom shell, and the switch is electrically connected to the circuit board. With this structure, the lighting component is simple and reliable. The battery, circuit board, and flame lamp plate are all installed inside the bottom shell, and the circuit of the entire lighting component and mosquito-killing component can be protected simply by covering it with the top cover. The switch is located on the bottom surface of the bottom shell to prevent rainwater from entering the switch and damaging the circuit.

[0014] Preferably, at least one upper bracket is integrally formed around the lampshade on the bottom shell, and at least one bracket connecting part is provided on the outer wall of the fan housing. The upper bracket is correspondingly inserted into the upper part of the bracket connecting part, and a lower bracket is provided at the lower part of each bracket connecting part. Wiring holes are provided in at least one upper bracket and the corresponding bracket connecting part, and wires for connecting the fan and the circuit board are provided in the wiring holes. With this structure, three brackets can be set to stably support the mosquito killer lamp of this utility model, that is, there are three bracket connecting parts and three lower brackets, and the three-point support is stable; or only one lower bracket of sufficient weight can be set to support the mosquito killer lamp of this utility model. The wires for connecting the fan and the circuit board are routed in the bracket, which avoids the wire harness being exposed and saves wiring space. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the mosquito-killing lamp of this utility model.

[0016] Figure 2 for Figure 1 Exploded view.

[0017] Figure 3 for Figure 1 A sectional view.

[0018] Figure 4 This is a schematic diagram of the escape prevention component in the mosquito killer lamp of this utility model.

[0019] As shown in the figure: 1. Lighting assembly, 1-1. Top cover, 1-2. Bottom shell, 1-3. Battery, 1-4. Circuit board, 1-5. Wiring hole, 1-6. Flame lamp panel, 1-7. Lampshade, 1-8. Switch, 1-9. Upper bracket, 2. Fan assembly, 2-1. Fan housing, 2-2. Fan, 2-3. Bracket connection, 3. Anti-escape assembly, 3-1. First connector, 3-2. Protrusion, 3-3. Second connector, 3-4. Connecting groove, 3-5. Card interface, 3-6. Inner stepped surface, 3-7. Third connector, 3-8. Hinge connection, 3-9. Hinge, 3-10. Outer stepped surface, 3-11. Opening handle, 4. Ultraviolet lamp tube, 5. Mosquito collection box, 5-1. Mesh cover, 5-2. Clip, 5-3. Rotating handle, 6. Hook, 7. Lower bracket. Detailed Implementation

[0020] To better understand this application, various aspects of this application will be described in more detail with reference to the accompanying drawings. It should be understood that these detailed descriptions are merely illustrative of exemplary embodiments of this application and are not intended to limit the scope of this application in any way. Throughout the specification, the same reference numerals refer to the same elements.

[0021] In the accompanying drawings, the thickness, size, and shape of the objects have been slightly exaggerated for illustrative purposes. The drawings are for illustrative purposes only and are not drawn to scale.

[0022] It should also be understood that the terms "comprising," "having," "including," and "containing," when used in this specification, indicate the presence of the stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or combinations thereof. Furthermore, when expressions such as "...at least one" appear after a list of listed features, they modify the entire listed feature, not individual elements in the list. Example

[0023] like Figures 1 to 3As shown, the mosquito-killing lamp of this utility model includes a lighting component 1 and a mosquito-killing component, with the lighting component 1 positioned above the mosquito-killing component. The lighting component 1 includes a top cover 1-1, a bottom shell 1-2 below the top cover 1-1, and a lampshade 1-7 integrally formed on the lower side of the bottom shell 1-2. The top cover 1-1 covers the bottom shell 1-2, and a closed cavity is formed between the top cover 1-1 and the bottom shell 1-2. A battery 1-3, a circuit board 1-4, and a flame lamp plate 1-6, connected in sequence, are arranged within the closed cavity. The flame lamp plate 1-6 is located inside the lampshade 1-7. A switch 1-8 is arranged on the lower surface of the bottom shell 1-2, and the switch 1-8 is electrically connected to the circuit board 1-4. The mosquito-killing component is located within the projection below the top cover 1-1 and the bottom shell 1-2.

[0024] The mosquito-killing component includes a fan assembly 2 and a mosquito collection box 5 connected vertically. The fan assembly 2 includes a fan housing 2-1 and a fan 2-2 disposed within the fan housing 2-1. The fan 2-2 is electrically connected to a circuit board 1-4. A charging port is also provided on the fan housing 2-1, which is electrically connected to a battery 1-3, allowing the battery 1-3 to be charged. The mosquito collection box 5 is equipped with a mesh cover 5-1 to trap mosquitoes and expel airflow, allowing the mosquitoes to be gradually dried by the airflow.

[0025] like Figure 3 and Figure 4 As shown, the top of the mosquito collection box 5 is equipped with an escape prevention component 3. The escape prevention component 3 includes a third connector 3-7 and two hinges 3-9. The third connector 3-7 is annular and has two hinge connecting parts 3-8 that are spaced apart and opposite each other. The two ends of the two hinges 3-9 are rotatably connected to the hinge connecting parts 3-8 by coil springs and pivots, respectively. In the normal state, the two hinges 3-9 cover the third connector 3-7. Ultraviolet lamps 4 are installed on the pivots of the two hinges 3-9, and the ultraviolet lamps 4 are electrically connected to the circuit board 1-4.

[0026] To reuse the existing fan housing 2-1 and mosquito collection box 5, and to place the escape prevention component 3 between the fan housing 2-1 and the mosquito collection box 5, connectors are needed in both the fan housing 2-1 and the mosquito collection box 5. A detachable first connector 3-1 is provided at the bottom of the fan housing 2-1, which can be screwed to the bottom of the fan housing 2-1. Several protrusions 3-2 are provided along the outer edge of the first connector 3-1. A detachable, annular second connector 3-3 is provided at the top of the mosquito collection box 5. Several locking heads 5-2 can be provided at the top of the mosquito collection box 5, and several locking interfaces 3-5 can be provided on the second connector 3-3, allowing the locking heads 5-2 to be inserted into the corresponding locking interfaces 3-5 for engagement. The side wall of the second connector 3-3 is provided with several L-shaped connecting grooves 3-4. The protrusion 3-2 is connected to the connecting groove 3-4. The protrusion 3-2 can enter from the opening of the corresponding connecting groove 3-4 and rotate relative to the connecting groove 3-4 to lock the second connector 3-3 to the first connector 3-1.

[0027] The inner ring sidewall of the second connector 3-3 is provided with an inner stepped surface 3-6, and the outer sidewall of the third connector 3-7 is provided with an outer stepped surface 3-10. The outer stepped surface 3-10 fits onto the inner stepped surface 3-6, so that the third connector 3-7 is embedded in the second connector 3-3. In this way, the escape prevention component 3 is assembled on the top of the mosquito collection box 5. As long as the mosquito collection box 5 is connected to the lower side of the fan housing 2-1, even if the second connector 3-3 is connected and locked with the first connector 3-1, the assembly of the mosquito killing component is completed. After assembly, the two hinges 3-9 cover the top of the mosquito collection box 5. The operation of the fan 2-2 can drive the two hinges 3-9 to rotate downward, connecting the fan housing 2-1 and the mosquito collection box 5. The coil spring undergoes elastic deformation when the two hinges 3-9 rotate downward, and the spring rebound can drive the two hinges 3-9 to rotate upward and reset, re-covering the top of the mosquito collection box 5.

[0028] The mosquito collection box 5 has a rotating handle 5-3 at its bottom. The rotating handle 5-3 is used to rotate the mosquito collection box 5 to drive the second connecting piece 3-3 to rotate relative to the first connecting piece 3-1, so that the second connecting piece 3-3 is locked or unlocked with the first connecting piece 3-1. That is, the mosquito collection box 5 can be removed from the fan housing 2-1 by rotating the rotating handle 5-3. The third connecting piece 3-7 is also provided with a cover opening handle 3-11 above the pivot of the two hinges 3-9. Lifting the cover opening handle 3-11 will disengage the third connecting piece 3-7 from the second connecting piece 3-3, that is, open the mosquito collection box 5, so that the mosquito collection box 5 can be cleaned.

[0029] The bottom shell 1-2 has three upper brackets 1-9 integrally formed around the lampshade 1-7 on its lower side; three bracket connecting parts 2-3 are provided on the outer wall of the fan housing 2-1; the upper brackets 1-9 are correspondingly inserted into the upper part of the bracket connecting parts 2-3, and each bracket connecting part 2-3 has a lower bracket 7. A hook 6 is also provided on the top cover 1-1. In this way, the mosquito killer lamp of this utility model can be hung on a tree, wall or eaves outdoors, or it can be stood on the ground or table.

[0030] One of the upper brackets 1-9 and the corresponding bracket connecting part 2-3 are provided with wiring holes 1-5. The wires for connecting the fan 2-2 and the circuit board 1-4, the wires for connecting the charging port and the battery 1-3, and the wires for connecting the ultraviolet lamp tube 4 and the circuit board 1-4 are all set in the wiring holes 1-5, which not only avoids the wire harness being exposed, but also saves wiring space.

[0031] When using this mosquito-killing lamp, pressing switch 1-8 causes the flame lamp plate 1-6 to emit light simulating flickering flames. The fan 2-2 then operates, generating an airflow that draws in mosquitoes. This airflow simultaneously drives the two hinges 3-9 downwards, connecting the fan housing 2-1 and the mosquito collection box 5, allowing the drawn-in mosquitoes to enter the collection box 5 and be dried and killed. Pressing switch 1-8 again turns off the flame lamp plate 1-6 and the fan 2-2, causing the two hinges 3-9 to re-seal the top of the mosquito collection box 5, preventing the mosquitoes from escaping.

[0032] The above are merely specific embodiments of this utility model and are not intended to limit the scope of implementation of this utility model. Any modifications or equivalent substitutions to this utility model without departing from its spirit and scope should be covered within the protection scope of the claims of this utility model.

Claims

1. A mosquito-killing lamp, characterized in that, The device includes a lighting component (1) and a mosquito-killing component. The lighting component (1) includes a top cover (1-1), and below the top cover (1-1) are a battery (1-3), a circuit board (1-4), and a flame lamp plate (1-6) that are connected in sequence. A lampshade (1-7) is provided on the outside of the flame lamp plate (1-6), and the flame lamp plate (1-6) is used to emit light that simulates the flickering of flames. The mosquito-killing component includes a fan component (2) and a mosquito collection box (5) that are connected vertically. The fan component (2) includes a fan housing (2-1) and a fan (2-2) installed inside the fan housing (2-1). The fan (2-2) is electrically connected to the circuit board (1-4) and is used to suck mosquitoes into the mosquito collection box (5) to dry and kill them. The lighting component (1) is positioned above the mosquito-killing component, which is located within the projection below the top cover (1-1).

2. The mosquito-killing lamp according to claim 1, characterized in that, The mosquito-killing component also includes an escape prevention component (3). The escape prevention component (3) includes a third connector (3-7) and two hinges (3-9). The two hinges (3-9) are rotatably connected to the third connector (3-7) through an elastic element. The escape prevention component (3) is located between the fan housing (2-1) and the mosquito collection box (5). The two hinges (3-9) cover the top of the mosquito collection box (5). When the fan (2-2) is running, it can drive the two hinges (3-9) to rotate downwards, connecting the fan housing (2-1) and the mosquito collection box (5). The elastic element undergoes elastic deformation when the two hinges (3-9) rotate downwards. The elastic element rebounds and drives the two hinges (3-9) to rotate upwards and reset.

3. The mosquito-killing lamp according to claim 2, characterized in that, Both hinges (3-9) are equipped with ultraviolet lamps (4), which are electrically connected to the circuit board (1-4).

4. The mosquito-killing lamp according to claim 2, characterized in that, The bottom of the fan housing (2-1) is provided with a detachable first connector (3-1), the top of the mosquito collection box (5) is provided with a detachable second connector (3-3), the third connector (3-7) is detachably disposed inside the second connector (3-3), and the second connector (3-3) is detachably connected to the first connector (3-1).

5. The mosquito-killing lamp according to claim 4, characterized in that, The outer edge of the first connector (3-1) is provided with several protrusions (3-2), and the side wall of the second connector (3-3) is provided with several L-shaped connecting grooves (3-4). The protrusions (3-2) are connected to the connecting grooves (3-4) respectively. The protrusions (3-2) can enter from the opening of the corresponding connecting groove (3-4) and rotate relative to the connecting groove (3-4) to lock the second connector (3-3) to the first connector (3-1).

6. The mosquito-killing lamp according to claim 5, characterized in that, The bottom of the mosquito collection box (5) is provided with a rotating handle (5-3). The rotating handle (5-3) is used to rotate the mosquito collection box (5) to drive the second connector (3-3) to rotate relative to the first connector (3-1), so that the second connector (3-3) is connected to the first connector (3-1) for locking or unlocking.

7. The mosquito-killing lamp according to claim 4, characterized in that, The second connector (3-3) is annular and has an inner stepped surface (3-6) on its inner ring sidewall. The third connector (3-7) is annular and has an outer stepped surface (3-10) on its outer sidewall. The outer stepped surface (3-10) fits onto the inner stepped surface (3-6), so that the third connector (3-7) is embedded in the second connector (3-3) for connection.

8. The mosquito-killing lamp according to claim 7, characterized in that, The third connector (3-7) has a cover handle (3-11) above the two hinges (3-9). The cover handle (3-11) is used to lift the third connector (3-7) to open the mosquito collection box (5).

9. The mosquito-killing lamp according to claim 1, characterized in that, A bottom shell (1-2) is provided below the top cover (1-1). The lampshade (1-7) is integrally formed and provided on the lower side of the bottom shell (1-2). A closed cavity is provided between the top cover (1-1) and the bottom shell (1-2). The battery (1-3), the circuit board (1-4) and the flame lamp plate (1-6) are all provided in the closed cavity. A switch (1-8) is provided on the bottom surface of the bottom shell (1-2). The switch (1-8) is electrically connected to the circuit board (1-4).

10. The mosquito-killing lamp according to claim 9, characterized in that, At least one upper bracket (1-9) is integrally formed on the bottom shell (1-2) around the lampshade (1-7). At least one bracket connecting part (2-3) is provided on the outer side wall of the fan housing (2-1). The upper bracket (1-9) is inserted into the upper part of the bracket connecting part (2-3). The lower part of the bracket connecting part (2-3) is provided with a lower bracket (7). At least one upper bracket (1-9) and the corresponding bracket connecting part (2-3) are provided with wiring holes (1-5). The wiring holes (1-5) are provided with wires for connecting the fan (2-2) and the circuit board (1-4).