Portable solar multifunctional power mosquito killing lamp
By combining solar energy and emergency power supply modes and control devices, the problem of insufficient power in portable mosquito killer lamps is solved, and all-weather mosquito killing effect is achieved, which is suitable for outdoor activities.
Patent Information
- Application Number
- CN202520074991.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The existing portable solar mosquito killer lamps have insufficient power when used in continuous rainy weather or for a long time outdoors, and cannot meet the demand for all-weather mosquito killing.
It adopts two power supply modes: solar energy and emergency power supply. The control device is combined to control the intermittent operation of the mosquito killer lamp. The light sensor senses the ambient light intensity, cuts off the power during the day, and switches to a mobile power supply at night or on rainy days. A mosquito counter and killing device are also set to extend the battery life.
It can effectively kill mosquitoes all day long under limited power conditions, save power, extend outdoor use time, and is suitable for a variety of outdoor activity scenarios.
Smart Images

Figure CN223335417U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mosquito-killing lamps, and in particular relates to a portable solar-powered multifunctional mosquito-killing lamp. Background Art
[0002] In the summer, people are often bitten by mosquitoes when engaging in outdoor activities. In addition to causing physical discomfort, mosquito bites also pose the risk of spreading diseases. Therefore, the demand for portable outdoor mosquito repellent lamps is particularly urgent.
[0003] With the maturity of photovoltaic power generation technology, solar mosquito killer lamps have been widely used. The utility model patent with application number CN200520000653.6 discloses an outdoor mosquito killer lamp, which uses solar panels to charge batteries, and then the batteries power the mosquito killer lamp. It does not require an external power supply and can be conveniently used outdoors. Due to the limited capacity of the battery, the problem of insufficient battery power will occur in continuous rainy weather or long-term outdoor use. Therefore, the utility model is also provided with a control system. By sensing environmental parameters, the mosquito killer lamp is controlled to start working only at night when there are more mosquitoes, avoiding waste of electricity.
[0004] However, when people are camping or fishing outdoors, they are near grass, water and other environments, and they will be troubled by mosquito bites even during the day. They need mosquito killer lamps to work all day. Therefore, how to make the mosquito killer lamp work as long as possible under limited power conditions is a problem that needs to be solved. Utility Model Content
[0005] The main technical problem to be solved by the utility model is to provide a portable solar multi-functional power supply mosquito killer lamp, which adopts two power supply modes: solar energy and emergency power supply. At the same time, the mosquito killer lamp is controlled to work intermittently through a control device, thereby further saving electricity and extending the outdoor use time.
[0006] In order to solve the above technical problems, the present invention provides the following technical solutions:
[0007] A portable solar multifunctional power supply mosquito killer lamp includes a mosquito killing device, which includes a mosquito attracting lamp, the bottom of the mosquito attracting lamp is fixedly connected to a lower shell, the center of the bottom of the lower shell is provided with a feeding opening, and a centralized killing device is fixedly connected below the feeding opening. A control device is fixedly installed outside the centralized killing device, a main controller is provided in the control device, and a counting sensor is provided in the centralized killing device. The control device receives signals from the counting sensor and controls the centralized killing device to intermittently power on.
[0008] The following is a further optimization of the above technical solution by the present invention:
[0009] The centralized killing device includes a temporary storage box, the shape of the opening at the upper end of the temporary storage box is adapted to the material drop opening, and the bottom of the temporary storage box is detachably fixedly connected to a collection box.
[0010] Further optimization: an anti-escape net is provided near the upper end of the temporary storage box, and the anti-escape net is in the shape of a downwardly protruding funnel. A mosquito-killing electric net is fixedly installed at the bottom of the temporary storage box. The collection box and the temporary storage box are connected through the gap in the mosquito-killing electric net, and a fan is provided at the bottom of the collection box.
[0011] Further optimization: A counting sensor is fixedly installed at the opening at the lower end of the anti-escape net. The counting sensor monitors the number of mosquitoes entering the temporary storage box and transmits the signal to the control device.
[0012] Further optimization: Several mosquito traps are provided above the lower shell near the drop-out port, and mosquito attractants are placed in the mosquito traps.
[0013] Further optimization: A light sensor is also provided in the control device, which senses the light intensity and transmits the signal to the main controller.
[0014] Further optimization: The mosquito killing device is externally electrically connected to a power supply device, which includes a solar panel and a multifunctional mobile power supply.
[0015] Further optimization: The multifunctional mobile power supply has a built-in controller, a Bluetooth speaker is provided on both sides of the multifunctional mobile power supply, and an LED display is provided near the lower side of the front of the multifunctional mobile power supply.
[0016] Further optimization: A control panel is set above the LED display screen, and the control panel is provided with a power switch, a mode switch and a voltage display meter from left to right.
[0017] Further optimization: The solar panel is a flexible structure.
[0018] The utility model adopts the above technical solution, which has the following beneficial effects:
[0019] The mosquito repellent lamp of the utility model adopts two power supply modes. It uses solar panels for power supply on sunny days and switches to a mobile power supply for power supply at night or in rainy weather. It is suitable for various usage scenarios.
[0020] The utility model uses a flexible solar cell panel, which can be freely rolled up and is convenient to carry. At the same time, the shape of the solar cell panel can be adjusted according to the angle of sunlight, ensuring that it can fully receive sunlight and increase power generation.
[0021] The utility model is provided with a mosquito counter, and when the number of mosquitoes in the temporary storage box reaches a certain number, the mosquitoes are killed in a concentrated manner to avoid wasting electricity.
[0022] The utility model senses environmental parameters through a light sensor. When there is sufficient light during the day, the mosquito trap lamp is powered off, and only the mosquito trap box is used to attract mosquitoes and kill them in a concentrated manner, thereby further saving power and extending the outdoor use time.
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a three-dimensional diagram of the overall structure of the mosquito killing device of the utility model;
[0025] Figure 2 This is a front view of the overall structure of the mosquito killing device of the utility model;
[0026] Figure 3 for Figure 2 A partial enlarged cross-sectional view of point A;
[0027] Figure 4 It is a three-dimensional diagram of the overall structure of the power supply device of the present utility model.
[0028] In the figure: 1. Mosquito killing device; 101. Mosquito trap lamp; 102. Lower shell; 103. Temporary storage box; 104. Anti-escape net; 105. Mosquito killing grid; 106. Collection box; 107. Fan; 108. Mosquito trap box; 109. Counting sensor; 2. Control device; 3. Power supply device; 301. Solar panel; 302. Multi-function mobile power supply; 303. Bluetooth speaker; 304. LED display; 305. Power switch; 306. Mode switch; 307. Voltage display meter. DETAILED DESCRIPTION
[0029] like Figure 1-4 As shown, a portable solar multi-functional power supply mosquito killer lamp includes a mosquito killer device 1 for capturing and killing mosquitoes. The mosquito killer device 1 is electrically connected to a control device 2 for controlling the intermittent operation of different electrical devices in the mosquito killer device 1. A power supply device 3 is also provided outside the mosquito killer device 1. The power supply device 3 is electrically connected to the mosquito killer device 1 for supplying power to the mosquito killer device 1.
[0030] The mosquito killing device 1 includes a mosquito trap 101. The mosquito trap 101 is a prior art device. An ultraviolet lamp is provided at the center. A high-voltage power grid is fixedly installed around the ultraviolet lamp. Since mosquitoes are phototactic, they will be attracted to the mosquito trap 101 by the light and electrocuted to death by the high-voltage power grid. A lower shell 102 is fixedly connected to the bottom of the mosquito trap 101 to catch the bodies of the killed mosquitoes.
[0031] In this embodiment, the lower shell 102 is funnel-shaped and protrudes downward, with a drop-out port opened at the center of the bottom. A centralized killing device is fixedly connected below the drop-out port. A plurality of mosquito trap boxes 108 are provided above the lower shell 102 near the drop-out port. Mosquito attractants are placed in the mosquito trap boxes 108 to assist in attracting mosquitoes and enhance the mosquito killing effect.
[0032] The centralized killing device includes a temporary storage box 103. The shape of the opening at the upper end of the temporary storage box 103 is adapted to the feeding port. An anti-escape net 104 is provided near the upper end of the temporary storage box 103. The anti-escape net 104 is in the shape of a downwardly protruding funnel. The upper end is sealed with the temporary storage box 103 and the lower end is open. After mosquitoes enter the anti-escape net 104, they are attracted by the mosquito attracting box 108 near the feeding port and concentrated at the upper end of the temporary storage box 103, thereby effectively preventing mosquitoes from escaping from the opening at the lower end of the anti-escape net 104. A mosquito killing net 105 is fixedly installed at the bottom of the temporary storage box 103 to kill mosquitoes in the temporary storage box 103.
[0033] A collection box 106 is detachably fixedly connected to the bottom of the temporary storage box 103. The collection box 106 is connected to the temporary storage box 103 through the gap of the mosquito-killing net 105. A fan 107 is provided at the bottom of the collection box 106. The fan 107 rotates to form a negative pressure in the collection box 106, which attracts mosquitoes in the temporary storage box 103 to the collection box 106. The mosquitoes are killed when passing through the mosquito-killing net 105. The blades of the fan 107 also have a certain killing effect on the mosquitoes. After using it for a period of time, the collection box 106 is removed and the mosquito corpses therein can be centrally processed.
[0034] In this embodiment, the temporary storage box 103 and the collection box 106 can be connected in a claw-type, threaded connection or other detachable connection manner.
[0035] In this embodiment, a counting sensor 109 is provided at the opening at the lower end of the anti-escape net 104, which is used to monitor the number of mosquitoes entering the temporary storage box 103. A control device 2 is fixedly installed on the outside of the temporary storage box 103, and a main controller is provided in the control device 2. When the number of mosquitoes reaches a preset threshold, the main controller in the control device 2 controls the mosquito killing net 105 in the temporary storage box 103 and the fan 107 in the collection box 106 to work simultaneously, so as to kill the collected mosquitoes in a concentrated manner.
[0036] In this embodiment, a light sensor is further provided in the control device 2. During the day, when the ambient brightness is high and mosquitoes are less sensitive to light, the light sensor senses a strong light signal. The main controller in the control device 2 controls the ultraviolet lamp of the mosquito trap 101 and the high-voltage power grid to cut off power. Since there are fewer mosquitoes during the day, the mosquito trap box 108 can now meet the mosquito attraction effect.
[0037] The power supply device 3 includes a solar panel 301 and a multifunctional mobile power supply 302, which are electrically connected. When there is sufficient outdoor light, the solar panel 301 converts light energy into electrical energy, part of which is used to power the mosquito repellent device 1, and the other part is stored in the multifunctional mobile power supply 302. At night or in rainy weather, the multifunctional mobile power supply 302 powers the mosquito repellent device 1.
[0038] In this embodiment, the solar panel 301 is a flexible structure. When rolled up, it takes up less space and is easy to carry. At the same time, the shape can be flexibly adjusted according to the angle of sunlight during use to ensure that the solar panel 301 can fully convert light energy into electrical energy.
[0039] In this embodiment, the multifunctional mobile power supply 302 has a built-in controller, which is used to control the charging and discharging process of the multifunctional mobile power supply 302 to prevent overcharging or overdischarging, thereby ensuring that the multifunctional mobile power supply 302 can work safely.
[0040] A Bluetooth speaker 303 is provided on both sides of the multifunctional mobile power supply 302, which can be connected to the Bluetooth of a mobile phone to play audio. An LED display screen 304 is provided near the lower side of the front of the multifunctional mobile power supply 302 to realize the entertainment function in conjunction with the Bluetooth speaker 303. A control panel is provided above the LED display screen 304. The control panel is provided with a power switch 305, a mode switching switch 306 and a voltage display meter 307 from left to right. The power switch 305 is used to control the power on and off of the multifunctional mobile power supply 302, the mode switching switch 306 is used to control the multifunctional mobile power supply 302 to output AC or DC power, which is selected according to the external power consumption device, and the voltage display meter 307 is used to display the voltage value in the multifunctional mobile power supply 302.
[0041] In order to improve the outdoor use experience, the multifunctional mobile power supply 302 can also be connected to an external LED lighting lamp, an electric fan or other electrical devices.
[0042] The mosquito-killing lamp of the present invention is suitable for use during long-term outdoor camping or fishing and other leisure activities. At night, the control device 2 controls the mosquito-attracting lamp 101 to be powered on. Some mosquitoes are attracted by the light of the ultraviolet lamp and approach the mosquito-attracting lamp 101 to be killed by the high-voltage electric grid. Another part of the mosquitoes enter the temporary storage box 103 under the attraction of the mosquito-attracting box 108. The control device 2 controls the mosquito-killing electric grid 105 in the temporary storage box 103 and the fan 107 in the collection box 106 to work intermittently at the same time according to a pre-set program, so as to concentrate on killing the collected mosquitoes. During the day, mosquitoes are not sensitive to light, so the control device 2 controls the mosquito-attracting lamp 101 to be powered off, and only the mosquitoes that enter the temporary storage box 103 are killed.
[0043] This design can not only ensure that mosquitoes are effectively captured and killed throughout the day, but also adjust the power supply time of each electrical equipment according to environmental needs, so as to achieve better mosquito killing effect while using less electricity.
[0044] For ordinary technicians in this field, based on the teachings of this utility model, without departing from the principles and spirit of this utility model, changes, modifications, substitutions and variations made to the implementation methods are still within the scope of protection of this utility model.
Claims
1. A portable solar multifunctional power mosquito killer lamp, comprising a mosquito killer device (1), characterized in that: The mosquito killing device (1) comprises a mosquito trap lamp (101), the bottom of the mosquito trap lamp (101) is fixedly connected to a lower shell (102), a drop opening is provided at the center of the bottom of the lower shell (102), a centralized killing device is fixedly connected below the drop opening, a control device (2) is fixedly installed outside the centralized killing device, a main controller is provided in the control device (2), a counting sensor (109) is provided in the centralized killing device, and the control device (2) receives a signal from the counting sensor (109) to control the centralized killing device to intermittently energize and operate.
2. The portable solar-powered multifunctional mosquito killer lamp according to claim 1, characterized in that: The centralized killing device comprises a temporary storage box (103), the shape of the opening at the upper end of the temporary storage box (103) is adapted to the material drop opening, and the bottom of the temporary storage box (103) is detachably fixedly connected to a collection box (106).
3. The portable solar multifunctional mosquito killer lamp according to claim 2, characterized in that: An anti-escape net (104) is provided near the upper end of the temporary storage box (103), and the anti-escape net (104) is in the shape of a downwardly protruding funnel. A mosquito-killing net (105) is fixedly installed at the bottom of the temporary storage box (103). The collection box (106) is connected to the temporary storage box (103) through a gap in the mosquito-killing net (105). A fan (107) is provided at the bottom of the collection box (106).
4. The portable solar multifunctional mosquito killer lamp according to claim 3, characterized in that: The counting sensor (109) is fixedly mounted at the lower opening of the anti-escape net (104). The counting sensor (109) monitors the number of mosquitoes entering the temporary storage box (103) and transmits a signal to the control device (2).
5. The portable solar multifunctional mosquito killer lamp according to claim 4, characterized in that: A plurality of mosquito attracting boxes (108) are provided above the lower shell (102) near the drop opening, and mosquito attractants are placed in the mosquito attracting boxes (108).
6. The portable solar multifunctional mosquito killer lamp according to claim 5, characterized in that: A light sensor is also provided in the control device (2), and the light sensor senses the light intensity and transmits a signal to the main controller.
7. The portable solar-powered multifunctional mosquito killer lamp according to claim 6, characterized in that: The mosquito killing device (1) is externally electrically connected to a power supply device (3), wherein the power supply device (3) comprises a solar cell panel (301) and a multifunctional mobile power supply (302).
8. The portable solar multifunctional mosquito killer lamp according to claim 7, characterized in that: The multifunctional mobile power supply (302) has a built-in controller. A Bluetooth speaker (303) is provided on each side of the multifunctional mobile power supply (302). An LED display screen (304) is provided on the front side of the multifunctional mobile power supply (302) near the lower side.
9. The portable solar multifunctional mosquito killer lamp according to claim 8, characterized in that: A control panel is provided above the LED display screen (304), and a power switch (305), a mode switching switch (306) and a voltage display meter (307) are provided on the control panel in order from left to right.
10. The portable solar multifunctional mosquito killer lamp according to claim 9, characterized in that: The solar cell panel (301) is a flexible structure.
Citation Information
Patent Citations
Outdoor mosquito killing lamp
CN2779870Y