Sticky trap type mosquito killer lamp with photographing function
By adding a camera to the mosquito-killing lamp to monitor the sticky paper status in real time, the problem of frequent checks after the sticky paper is full is solved, and the sticky paper status can be replaced in time, improving the efficiency and convenience of mosquito killing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU GEMEI ENVIRONMENTAL ENG CO LTD
- Filing Date
- 2025-07-03
- Publication Date
- 2026-06-02
AI Technical Summary
The stickers on existing mosquito killer lamps need to be frequently checked and replaced after they become covered with mosquitoes, which makes them inconvenient to use and reduces their effectiveness in killing mosquitoes.
A mosquito-killing sticky trap with a camera function was designed. The camera monitors the status of the sticky paper in real time and replaces the sticky paper in time to maintain its adhesion.
It enables real-time monitoring of the sticky paper's status, reducing the hassle of frequent checks and replacements and ensuring the continuity of mosquito control effects.
Smart Images

Figure CN224306614U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to mosquito trapping equipment, and more particularly to a sticky mosquito-killing lamp with a shooting function. Background Technology
[0002] Currently available mosquito killer lamps typically use sticky notes to trap mosquitoes. However, since the number of mosquitoes that a single sticky note can trap is limited, its ability to trap mosquitoes decreases once it is full of mosquitoes. To ensure the sticky note's adhesion, it must be replaced with a new one. However, since the number of mosquitoes is not fixed and the time it takes for the sticky note to become full of mosquitoes varies each time, users have to frequently remove the sticky note to check its effectiveness, which requires them to move around and is quite inconvenient. Utility Model Content
[0003] To overcome the above-mentioned defects, this utility model provides a sticky mosquito killer lamp with a shooting function, which has the advantage of being able to monitor the sticky paper status in real time.
[0004] The technical solution adopted by this utility model to solve its technical problem is: a sticky mosquito killer lamp with a shooting function, including: a fixed base, a shell, lamp tubes, a camera and adhesive paper. The bottom end of the shell is swayed and connected to the bottom end of the fixed base, and the top end of the shell is detachably connected to the top end of the fixed base. The shell can be fastened to the fixed base to form a hollow shell structure with a hollow top. There are two lamp tubes, which are arranged vertically and horizontally on the fixed base. The camera is fixed to the fixed base between the two lamp tubes. The adhesive paper is detachably clipped to the shell. When the shell is fastened to the fixed base, the camera can shoot the adhesive paper, and the adhesive paper can stick to mosquitoes.
[0005] Optionally, the mounting base has water droplet holes around its perimeter, and two cable management components are provided on the top of the mounting base. The cable management components have cable management grooves for inserting power cables. The sidewalls of the mounting base protrude outward to form a hollow cavity structure. Two pairs of lamp holders are fixed to the outer wall of the cavity structure at intervals along the vertical direction. Each pair of lamp holders is detachably electrically connected to a lamp tube. The camera, ballast, and controller are all fixed inside the cavity structure. The controller is electrically connected to the camera. The cavity structure has a light-transmitting hole at the position corresponding to the camera, and the camera lens can extend into the light-transmitting hole.
[0006] Alternatively, the two lamps can be arranged alternately, one in front of the other.
[0007] Optionally, the controller may include a wireless communication module.
[0008] Optionally, the housing includes a base plate, a front plate, and two side plates. The first end of the base plate is pivotally connected to the bottom end of the fixing seat via a pin. The front plate is connected to the second end of the base plate. The side plates are located on both sides of the housing and connect the base plate and the front plate. Each side plate is fixed with an iron nail. The fixing seat is fixed with a magnet at the position corresponding to the iron nail. The front plate is provided with three guide plates. The side cross-section of the guide plates is T-shaped. Two of the guide plates are symmetrically arranged, and the other guide plate is located near the base plate. The side of the adhesive paper can be locked onto the side of the guide plate. The space between the three guide plates can accommodate the adhesive paper. The front plate has multiple rows of protruding ridges at the position corresponding to the adhesive paper for the adhesive paper to abut against. The base plate, the front plate, and the two side plates are integrally formed.
[0009] Optionally, a back cover is also included, wherein a fixing opening with a communicating cavity structure is provided through the middle of the fixing seat, and the back cover can be placed on the fixing opening. The fixing seat and the back cover are detachably connected by screws.
[0010] The beneficial technical effects of this utility model are as follows: The adhesive mosquito killer lamp with a shooting function includes: a fixing base, a shell, a lamp tube, a camera, and adhesive paper. In use, the adhesive paper is first attached to the shell, and then the shell is fastened to the fixing base. This forms a hollow shell structure with a perforated top. Mosquitoes are attracted by the light emitted from the lamp tube and enter the shell structure from the top. Mosquitoes flying into the shell structure have a certain probability of coming into contact with the adhesive paper and being stuck to it. Since the fixing base is equipped with a camera, and the adhesive paper is aligned with the camera when the shell is fastened to the fixing base, the camera can capture images of the adhesive paper. The user can monitor the status of the adhesive paper in real time through the camera. When the adhesive paper is full of mosquitoes, the user can replace it promptly. This eliminates the need for the user to frequently open the shell to check the adhesive paper and avoids the user being unaware that the adhesive paper is full of mosquitoes, thus preventing a decrease in the insect-killing effect. It has the advantage of being able to monitor the status of the adhesive paper in real time. Attached Figure Description
[0011] Figure 1 This is a three-dimensional view of the entire device with the outer shell in the snap-fit state;
[0012] Figure 2 This is a three-dimensional view of the entire device with the outer casing in the open state;
[0013] Figure 3 This is a rear view of the entire machine of this utility model;
[0014] Figure 4 This is a top view of the entire machine of this utility model;
[0015] Figure 5 This is a side view of the entire device with the outer casing in the open state;
[0016] Figure 6 This is a side sectional view of the entire machine of this utility model;
[0017] in:
[0018] 1. Mounting base; 2. Back cover; 3. Camera; 4. Controller; 5. Ballast; 6. Pin; 7. Lamp base; 8. Guide plate; 9. Adhesive; 10. Housing; 11. Lamp tube; 12. Nail; 13. Magnet. Detailed Implementation
[0019] In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.
[0020] This specific embodiment details the adhesive mosquito-killing lamp with a shooting function described in this application, such as... Figures 1-6 As shown, the sticky mosquito killer lamp with shooting function includes: a base 1, a housing 10, lamp tubes 11, a camera 3, and adhesive paper 9. The bottom end of the housing 10 is sway-connected to the bottom end of the base 1, and the top end of the housing 10 is detachably connected to the top end of the base 1. The housing 10 can be fastened to the base 1 to form a hollow shell structure with a hollow top. There are two lamp tubes 11, which are arranged vertically and horizontally on the base 1. The camera 3 is fixed to the base 1 between the two lamp tubes 11. The adhesive paper 9 is detachably clipped to the housing 10. When the housing 10 is fastened to the base 1, the camera 3 can take pictures of the adhesive paper 9, and the adhesive paper 9 can stick mosquitoes. In use, first attach the adhesive paper 9 to the outer casing 10, then fasten the outer casing 10 to the fixing base 1. This forms a hollow shell structure with a perforated top. Mosquitoes, attracted by the light emitted from the lamp tube 11, enter the shell structure from the top. A certain probability of these mosquitoes coming into contact with the adhesive paper 9 and becoming stuck to it. Since the fixing base 1 is equipped with a camera 3, and the adhesive paper 9 is aligned with the camera 3 when the outer casing 10 is fastened to the fixing base 1, the camera 3 can capture images of the adhesive paper 9. The user can monitor the status of the adhesive paper 9 in real time through the camera 3. When the adhesive paper 9 is covered with mosquitoes, the user can replace it promptly. This eliminates the need for the user to frequently open the outer casing 10 to check the adhesive paper 9, and avoids the situation where the user is unaware that the adhesive paper 9 is covered with mosquitoes, thus preventing a decrease in insecticidal effect. It has the advantage of being able to monitor the status of the adhesive paper in real time.
[0021] Optionally, in this embodiment, the mounting base 1 has water droplet holes around its perimeter, and two cable management components are provided on the top of the mounting base 1. Each cable management component has a cable management groove for inserting the power cord. The sidewall of the mounting base 1 protrudes outward to form a hollow cavity structure. Two pairs of lamp holders 7 are fixed vertically to the outer wall of the cavity structure. Each pair of lamp holders is detachably electrically connected to a lamp tube 11. The camera 3, ballast 5, and controller 4 are all fixed inside the cavity structure. The controller 4 is electrically connected to the camera 3. The cavity structure has a light-transmitting hole at the position corresponding to the camera 3, allowing the lens of the camera 3 to extend into the light-transmitting hole. The water droplet holes facilitate hanging the sticky mosquito killer lamp with shooting function, and inserting the power cord into the cable management groove allows the power cord to avoid the outer casing 10, thus preventing the power cord from being clamped by the outer casing 10. The camera 3, ballast 5, and controller 4 are housed within a cavity structure to protect them. The controller 4 contains circuitry for driving the camera 3. In some optional embodiments, the controller 4 and the lamp 11 share a power line, and the controller 4 contains a transformer for voltage reduction. In this embodiment, the ballast 5 drives the lamp 11; in some optional embodiments, the lamp 11 is an ultraviolet lamp.
[0022] Optionally, in this embodiment, the two lamp tubes 11 are arranged in a staggered manner. In this embodiment, the lower lamp tube 11 is closer to the adhesive paper 9 (when the outer shell 10 is in the closed state) than the upper lamp tube 11. The staggered arrangement of the two lamp tubes 11 can maximize the utilization of the light-emitting area of the lamp tubes 11 and avoid the upper lamp tube 11 blocking the lower lamp tube 11. Since the upper lamp tube 11 is closer to the cutout at the top of the shell structure (the entrance for mosquitoes), mosquitoes are first attracted by the upper lamp tube 11 due to phototaxis and fly into the shell structure through the cutout at the top of the shell structure. Then they are attracted by the lower lamp tube 11. Since the lower lamp tube 11 is closer to the adhesive paper 9, mosquitoes are more likely to collide with the adhesive paper 9 when flying around the lower lamp tube 11. Therefore, the probability of mosquitoes being stuck to the adhesive paper 9 is greater, which improves the capture efficiency.
[0023] Optionally, in this embodiment, the controller 4 is equipped with a wireless communication module. The wireless communication module can be a commercially available communication module such as a WIFI communication module or an IoT module.
[0024] Optionally in this embodiment, the outer casing 10 includes a bottom plate, a front plate, and two side plates. The first end of the bottom plate is sway-connected to the bottom end of the fixing base 1 via a pin 6. The front plate is connected to the second end of the bottom plate. The side plates are located on both sides of the outer casing 10, connecting the bottom plate and the front plate. Each side plate is fixed with an iron nail 12. The fixing base 1 is fixed with a magnet 13 at the position corresponding to the iron nail 12. The front plate is provided with three guide plates 8. The side cross-section of the guide plates 8 is T-shaped, with two guide plates 8 arranged symmetrically and the other guide plate 8 located near the bottom plate. The side of the adhesive paper 9 can be engaged with the side of the guide plate 8. The space between the three guide plates 8 can accommodate the adhesive paper 9. The front plate has multiple rows of protruding ridges at the position corresponding to the adhesive paper 9 for the adhesive paper 9 to abut against. The bottom plate, front plate, and two side plates are integrally formed. The top of the outer casing 10 is connected to the fixing base 1 by attracting the iron nail 12 with the magnet 13. Since the side cross-section of the guide plate 8 is T-shaped, when the guide plate 8 is fixed to the front plate, there is a gap between the top of the guide plate 8 and the front plate. This gap is located on both sides of the guide plate 8, and the side of the adhesive paper 9 can be just fitted into this gap. In this way, the two sides of the adhesive paper 9 can be respectively fitted onto the two symmetrical sides of the guide plate 8, and the bottom side of the adhesive paper 9 is fitted onto the guide plate 8 closest to the bottom plate to fix the adhesive paper 9. At the same time, the back of the adhesive paper 9 can abut against the protruding ridge to prevent the adhesive paper 9 from deforming.
[0025] Optionally, this embodiment also includes a rear cover 2. A fixing port communicating with the cavity structure is provided through the middle of the fixing base 1. The rear cover 2 can be placed on the fixing port. The fixing base 1 and the rear cover 2 are detachably connected by screws. During assembly, the camera 3, ballast 5 and controller 4 can enter the cavity structure through the fixing port.
[0026] Using the sticky mosquito-killing lamp with a shooting function in this embodiment has the advantage of being able to monitor the sticky paper status in real time.
Claims
1. A sticky mosquito-killing lamp with a shooting function, characterized in that, include: The device consists of a mounting base (1), a housing (10), a lamp tube (11), a camera (3), and adhesive paper (9). The bottom end of the housing (10) is swayed and connected to the bottom end of the mounting base (1). The top end of the housing (10) can be detachably connected to the top end of the mounting base (1). The housing (10) can be fastened to the mounting base (1) to form a hollow shell structure with a hollow top. There are two lamp tubes (11), which are arranged vertically and horizontally on the mounting base (1). The camera (3) is fixed to the mounting base (1) between the two lamp tubes (11). The adhesive paper (9) is detachably attached to the housing (10). When the housing (10) is fastened to the mounting base (1), the camera (3) can photograph the adhesive paper (9), which can stick to mosquitoes.
2. The sticky mosquito killer lamp with shooting function according to claim 1, characterized in that: Water droplet holes are provided around the fixed base (1). Two cable management components are provided on the top of the fixed base (1). Cable management slots are provided on the cable management components so that power cords can be inserted. The side wall of the fixed base (1) protrudes outward to form a hollow cavity structure. Two pairs of lamp feet (7) are fixed to the outer wall of the cavity structure at intervals along the vertical direction. Each pair of lamp feet is detachably connected to a lamp tube (11). The camera (3), ballast (5) and controller (4) are all fixed inside the cavity structure. The controller (4) is electrically connected to the camera (3). The cavity structure has a light-transmitting hole at the position corresponding to the camera (3). The lens of the camera (3) can extend into the light-transmitting hole.
3. The sticky mosquito killer lamp with shooting function according to claim 2, characterized in that: The two lamps (11) are arranged alternately.
4. The sticky mosquito killer lamp with shooting function according to claim 2, characterized in that: The controller (4) is equipped with a wireless communication module.
5. The sticky mosquito killer lamp with shooting function according to claim 4, characterized in that: The outer shell (10) includes a bottom plate, a front plate and two side plates. The first end of the bottom plate is swayed to the bottom end of the fixing seat (1) by a pin (6). The front plate is connected to the second end of the bottom plate. The side plates are located on both sides of the outer shell (10) and connect the bottom plate and the front plate. Each side plate is fixed with an iron nail (12). The fixing seat (1) is fixed with a magnet (13) at the position corresponding to the iron nail (12). The front plate is provided with three guide plates (8). The side cross section of the guide plate (8) is T-shaped. Two guide plates (8) are symmetrically arranged, and the other guide plate (8) is located near the bottom plate. The side of the adhesive paper (9) can be stuck on the side of the guide plate (8). The space between the three guide plates (8) can accommodate the adhesive paper (9). The front plate is provided with multiple rows of protruding ridges at the position corresponding to the adhesive paper (9) for the adhesive paper (9) to abut against. The bottom plate, the front plate and the two side plates are integrally formed.
6. The sticky mosquito killer lamp with shooting function according to claim 5, characterized in that: It also includes a back cover (2), and a fixing port with a communicating cavity structure is opened through the middle of the fixing seat (1). The back cover (2) can be placed on the fixing port. The fixing seat (1) and the back cover (2) are detachably connected by screws.