Portable trap lamp device for microminiature insects
By using RGB three-color LED luminous lamp beads and an LED lamp plate with a ring layout in the portable insect trapping device, the problem of single effect of insect trapping lamps in the prior art is solved, and an efficient and convenient insect trapping effect is achieved.
Patent Information
- Application Number
- CN202510483276.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-05-13
AI Technical Summary
The existing insect-attracting lamp devices have a relatively single effect on insect trapping, and cannot attract different types of insects in a targeted manner. The device is designed in a complex manner and is inconvenient to use.
A portable insect-attracting lamp device is designed, using RGB three-color LED luminous lamp beads. Through the mixing of three luminous chips, red, green and blue, light in the range of 380-750nm, which can attract different types of insects in a targeted manner. The device adopts annular layout LED light panels to ensure uniform light distribution and form a 360-degree luminous range.
It improves the targeted and trapping rate of insect luring, realizes the convenient installation and use of insect luring lamps, and enhances the effect of insect luring.
Smart Images

Figure CN119969365A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of agricultural pest control, and in particular to a portable insect trapping lamp device for micro-insects. Background Art
[0002] There are some beneficial insects in nature that are of great benefit to the ecosystem and humans, but there are also some pests that harm the life and health of plants, humans and other animals. Many pests feed on crops, resulting in a sharp drop in crop yields, or even a complete loss of crop yields in severe cases. In the process of taking food, pests are also prone to spread various plant pathogens, further affecting the growth and development of plants. At the same time, some pests will directly bite humans, spread a variety of diseases, seriously disrupt the ecological balance and affect biodiversity. Common pests in nature include locusts, termites, mosquitoes, flies, etc. How to kill pests safely and effectively is a question that pest control workers have been thinking about.
[0003] Insect-attracting lamps are based on the characteristics of insects being phototactic. They use the fact that insects can absorb light of a specific wavelength, causing a photoreaction, stimulating the visual nerves, and then directing the motor organs to make the insects move toward the light source, thereby attracting the insects and effectively killing them. At present, there are many insect trap lamp devices at home and abroad, but some of them have a single color and poor targeting when trapping insects. Some suction insect trap lamps also have a single color and cannot carry out targeted trapping of a single insect. Summary of the invention
[0004] The main purpose of the present invention is to provide a portable insect-attracting lamp device for micro-insects, so as to solve the limitations of the prior art in attracting insects with lamps, improve the targeting and trapping rate of insects, and realize the convenience of installation and use.
[0005] To achieve the above object, the technical solution adopted by the present invention is: A portable insect trap lamp device for micro-insects comprises an energy supply mechanism and a trapping mechanism, wherein the energy supply mechanism is arranged on the upper side of the trapping mechanism, and the trapping mechanism comprises an LED light board, a lampshade, a protective cover, and a turbo negative pressure fan, wherein the protective cover is arranged below the energy supply mechanism, and the protective cover is a cylindrical structure as a whole, wherein an LED light board is fixedly arranged inside the protective cover, wherein LED light beads are arranged on the LED light board, wherein the LED light beads comprise a shell and an LED module, wherein the LED module is arranged inside the shell, wherein at least one red light chip, at least one green light chip, and at least one blue light chip are arranged at a predetermined interval, wherein the lampshade is arranged outside the LED light board, wherein the air vent is arranged on the protective cover, wherein the turbo negative pressure fan is arranged at the bottom of the protective cover, wherein the turbo negative pressure fan is driven by a motor, wherein the motor is fixedly arranged at the bottom of the turbo negative pressure fan, and wherein the turbo negative pressure fan is mounted on the motor shaft.
[0006] Furthermore, the LED light beads are provided with 12 pieces, and the LED light beads are installed in a ring shape on the LED light board. The ring shape installation on the LED light board can make the light distribution of the insect attractant lamp more uniform, forming a 360-degree light range, thereby better attracting insects from all directions around. This ring layout can also reduce the blind spots of light and improve the insect attracting effect.
[0007] Furthermore, the LED light beads can emit light with a wavelength in the range of 380-750nm. The wavelength range of 380-750nm covers the entire spectrum visible to the human eye. The light emitted in this wavelength range can better simulate the light in the natural environment, making it easier for insects to mistake it for a natural light source. By adjusting the combination or intensity of light of different wavelengths, different types of insects can be attracted in a targeted manner.
[0008] Furthermore, the red light chip, green light chip and blue light chip are arranged side by side in the LED module. The side by side arrangement makes the distances between the chips of the three colors close, and the emitted light can be mixed within a short distance. At the same time, the propagation direction of the light is relatively concentrated and orderly, which is convenient for designing the lighting angle and range that meet the requirements of the insect attractant lamp, improves the utilization efficiency of the light, and enhances the insect attracting effect.
[0009] Furthermore, the LED module is provided with 1 red light chip, 2 green light chips and 2 blue light chips, the red light chip is located in the middle, and the green light chip and the blue light chip are arranged between LED chips of other colors. The red light chip is placed in the middle, and the green light chip and the blue light chip are distributed on both sides thereof. Such a layout is conducive to uniform mixing of the three colors of light. The number of green light chips and blue light chips is relatively large and distributed around the red light chip, which can optimize the spectral distribution while ensuring the overall luminous intensity. Because green light and blue light may have a stronger attraction to some insects during the insect luring process, appropriately increasing the number of chips helps to improve the effect of the insect attractant. At the same time, this arrangement is also conducive to heat dissipation.
[0010] Furthermore, the spacing distance between the red light chip, the green light chip and the blue light chip is 0.5-2mm, which is conducive to the mixing of light. The spacing of 0.5-2mm can ensure that air circulates between the chips to take away heat and prevent the chip from overheating and causing performance degradation, shortening of life or even damage.
[0011] Furthermore, the LED modules are provided in plurality, and the plurality of LED modules are distributed in a ring-shaped manner with the same spacing therebetween. The ring-shaped distribution of the plurality of LED modules increases the circumference of the light-emitting surface, thereby expanding the effective trapping range of the insect trap. This layout of ring-shaped distribution and the same spacing can ensure that the light emitted by the insect trap is as uniform as possible in all directions.
[0012] Furthermore, an adjustment button is provided on the LED lamp board, and the adjustment button adopts a multi-speed switch. Each speed of the adjustment button corresponds to a preset color such as red, orange, yellow, green, cyan, blue, purple, and pink. A microcontroller is provided on the LED light board. The microcontroller receives an input signal from the adjustment button, calculates the corresponding RGB value according to the preset color and wavelength-RGB function relationship, and controls the driving circuit through a PWM signal to adjust the color of the LED lamp beads.
[0013] Furthermore, the energy supply mechanism includes a foldable rotating hook, a solar panel and an integrated battery compartment. The foldable rotating hook can be folded and rotated. The integrated battery compartment is arranged below the foldable rotating hook. A built-in cavity and a controller are arranged inside the integrated battery compartment. A lithium battery is arranged in the built-in cavity. The controller is used to control the charging or discharging of the lithium battery. A connection port is arranged on the surface of the integrated battery compartment. The lithium battery is charged through the connection port. The solar panel is composed of a single 5W monocrystalline silicon panel, and the monocrystalline silicon panel is installed at an angle of 15 degrees for one circle.
[0014] Furthermore, the solar panel is provided with an intelligent control system. When the illumination is less than 50 lux, the intelligent control system automatically turns on the LED light panel and the turbo negative pressure fan. When the humidity is greater than 80%, the intelligent control system controls the turbo negative pressure fan to stop working. Compared with the prior art, the present invention has the following beneficial effects: 1. This application uses RGB three-color LED light-emitting lamp beads. Various colors of visible light are mixed in a certain proportion by the red, green and blue light-emitting chips on the LED module, so that the LED light-emitting lamp beads can emit light with a wavelength in the range of 380-750nm. By adjusting the combination or intensity of light of different wavelengths, different types of insects can be attracted in a targeted manner.
[0015] 2. The present application uses 12 LED light beads to be installed in a ring on the LED light board, which can make the light distribution of the insect attractant lamp more uniform, forming a 360-degree light range, so as to better attract insects from all directions around. This ring layout can also reduce the blind spots of light and improve the insect attracting effect; 3. The LED module of the present application places the red light chip in the middle, and the green light chip and the blue light chip are distributed on both sides. Such a layout is conducive to the uniform mixing of the three colors of light. The number of green light chips and blue light chips is relatively large and distributed around the red light chip, which can optimize the spectral distribution while ensuring the overall luminous intensity. Because green light and blue light may have a stronger attraction to some insects during the insect attraction process, appropriately increasing the number of chips will help improve the effect of the insect attractant lamp. At the same time, this arrangement is also conducive to heat dissipation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the overall structure of an insect trap lamp according to Embodiment 1 of the present invention; Figure 2 This is a schematic diagram of the overall cross-sectional structure of the insect attractant lamp of Example 1 of the present invention; Figure 3 This is a schematic diagram of the cross-sectional structure of an LED light-emitting lamp bead according to Embodiment 1 of the present invention; Figure 4 This is a front structural diagram of an LED module according to Embodiment 1 of the present invention; Figure 5 This is a schematic diagram of a top view of a part of the energy supply mechanism of Example 1 of the present invention; Figure 6 This is a schematic diagram of the top view of the LED light bead structure of Example 1 of the present invention; Figure 7 This is a schematic diagram of the color adjustment process of the LED light bead in Example 1 of the present invention; Figure 8 This is a schematic cross-sectional view of the foldable rotary hook according to Embodiment 1 of the present invention; Fig. 9This is a partial structural schematic diagram of the lure box according to Example 1 of the present invention.
[0017] Reference numerals: 100. Insect trap lamp; 1. Energy supply mechanism; 2. Trapping mechanism; 3. Insect collection mechanism; 21. LED lamp board; 22. Lampshade; 23. Protective cover; 24. Turbine negative pressure fan; 25. LED light beads; 251. Shell; 252. LED module; 2521. Red light chip; 2522. Green light chip; 2523. Blue light chip; 231. Air vent; 241. Motor; 211. Adjustment button; 11. Folding swivel hook; 12. Solar panel; 13. Integrated battery compartment; 111. Upper hook; 112. Mounting frame; 114. First rotating shaft; 116. Fixing plate; 117. Limiting hole; 118. Limiting block; 108. Second rotating shaft; 107. Lower hook; 121. Monocrystalline silicon panel; 131. Built-in cavity; 132. Lithium battery; 133. Connection port; 31. Collection box; 32. Air outlet; 33. Lure box; 34. Protective net; 311. Mounting hole. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0019] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention. Example 1
[0020] like Figure 1-5As shown, a portable insect trap lamp device for micro insects includes an energy supply mechanism 1, a trapping mechanism 2 and an insect collecting mechanism 3. The energy supply mechanism 1 is arranged on the upper side of the trapping mechanism 2, and the insect collecting mechanism 3 is arranged on the lower side of the trapping mechanism 2. The insect trap lamp 100 is cylindrical as a whole, with a diameter of 8 cm and a height of 10 cm. It is small in size and easy to carry. The trapping mechanism 2 includes an LED light board 21, a lampshade 22, a protective cover 23 and a turbo negative pressure fan 24. The protective cover 23 is a cylindrical structure as a whole, and is made of plastic materials including but not limited to PC, PS, PP and PET, etc., and is white or translucent in color, with a diameter of 8 cm, 4.5 cm high, hollow in the middle, an LED light board 21 is fixedly arranged inside the protective cover 23, an LED light bead 25 is arranged on the LED light board 21, the LED light bead 25 comprises a shell 251 and an LED module 252, an LED module 252 is arranged in the shell 251, at least one red light chip 2521, at least one green light chip 2522 and at least one blue light chip 2523 are arranged at a predetermined interval in the LED module 252, the lampshade 22 is arranged outside the LED light board 21, and the protective cover 23 is made of translucent plastic material, and the plastic material includes but is not limited to PC, PS, PP and PET, etc., a ventilation hole 231 is provided on the protective cover 23, and the position of the ventilation hole 231 corresponds to the bottom and surrounding of the lampshade 22. The turbo negative pressure fan 24 is arranged at the bottom of the protective cover 23. The blades of the turbo negative pressure fan 24 are made of anti-corrosion metal material, such as stainless steel and aluminum alloy, which can effectively increase the service life of the turbo negative pressure fan 24. The diameter of the turbo negative pressure fan 24 is in the range of 4-6cm. The turbo negative pressure fan 24 is driven by a motor 241, and the motor 241 is fixed at the bottom of the turbo negative pressure fan 24, and the turbo negative pressure fan 24 is installed on the shaft of the motor 241.
[0021] like Figure 5 As shown, there are 12 LED light beads 25, which are installed in a ring on the LED light board 21. The LED light beads 25 can emit light with a wavelength range of 380-750nm. The ring installation on the LED light board 21 can make the light distribution of the insect attractant lamp 100 more uniform, forming a 360-degree light range, so as to better attract insects from all directions around. This ring layout can also reduce the blind spots of light and improve the insect attracting effect. The wavelength range of 380-750nm covers the entire spectrum visible to the human eye. The light that can emit this wavelength range can better simulate the light in the natural environment, making it easier for insects to misjudge it as a natural light source. By adjusting the combination or intensity of light of different wavelengths, different types of insects can be attracted in a targeted manner.
[0022] like Figure 4As shown, the red light chip 2521, the green light chip 2522 and the blue light chip 2523 are arranged side by side in the LED module 252. The LED module 252 is provided with one red light chip 2521, two green light chips 2522 and two blue light chips 2523. The red light chip 2521 is located in the middle, and the green light chip 2522 and the blue light chip 2523 are arranged between the LED chips of other colors. The interval between the red light chip 2521, the green light chip 2522 and the blue light chip 2523 is 0.5-2mm. The side-by-side arrangement can make the distance between the chips of the three colors close, and the emitted light can be mixed within a short distance. At the same time, the propagation direction of the light is relatively concentrated and orderly, which is convenient for designing the lighting angle and range that meet the requirements of the insect attractant lamp 100. To improve the efficiency of light utilization and enhance the insect attracting effect, the red light chip 2521 is placed in the middle, and the green light chip 2522 and the blue light chip 2523 are distributed on both sides. Such a layout is conducive to the uniform mixing of the three colors of light. The number of green light chips 2522 and the blue light chips 2523 is relatively large and distributed around the red light chip 2521, which can optimize the spectral distribution while ensuring the overall luminous intensity. Because green light and blue light may have a stronger attraction to some insects during the insect attracting process, appropriately increasing the number of chips is helpful to improve the effect of the insect attracting lamp 100. At the same time, this arrangement is also conducive to heat dissipation. The interval of 0.5-2mm can ensure that air circulates between the chips, taking away heat, and preventing the chip from overheating and causing performance degradation, shortening life or even damage.
[0023] like Figure 6 As shown, the LED modules 252 are provided in plurality, and the plurality of LED modules 252 are distributed in a ring-shaped manner with the same spacing. The ring-shaped distribution of the plurality of LED modules 252 increases the circumference of the light-emitting surface, thereby expanding the effective trapping range of the insect trap lamp 100. This layout of ring-shaped distribution and the same spacing can ensure that the light emitted by the insect trap lamp 100 is as uniform as possible in all directions.
[0024] like Figure 5 and Figure 7 As shown, an adjustment button 211 is provided on the LED light board 21. The adjustment button 211 adopts a multi-level switch. Each level of the adjustment button 211 corresponds to a preset color such as red, orange, yellow, green, cyan, blue, purple, and pink. A microcontroller is provided on the LED light board 21. The microcontroller receives an input signal from the adjustment button 211, calculates a corresponding RGB value according to a preset color and wavelength-RGB function relationship, and controls the driving circuit through a PWM signal to adjust the color of the LED lamp beads.
[0025] like Figure 2 and Figure 8As shown, the energy supply mechanism 1 includes a foldable rotating hook 11, a solar panel 12, and an integrated battery compartment 13. The foldable rotating hook 11 includes an upper hook 111, a mounting frame 112, a first rotating shaft 114, a fixing plate 116, a limiting hole 117, and a limiting block 118. The first rotating shaft 114 is rotatably mounted on the mounting frame 112. The first rotating shaft 114 is provided with an upper hook 111. The mounting frame 112 is fixedly provided with fixing plates 116 on both sides. When the upper hook 111 rotates 90 degrees to the left and right, it is limited by the fixing plate 116. The mounting frame 112 is provided with a limiting hole 117, and the limiting hole 117 is adapted to the limiting block 118. The hook is fixed after being rotated to a certain angle. A second rotating shaft 108 is provided at the bottom of the mounting frame 112, and a lower hook 107 is provided on the second rotating shaft 108. When hanging, the lower hook 107 can rotate 360 degrees. The folding rotating hook 11 is made of thermoplastic elastomer material, which has good flexibility and deformability. It can maintain a certain shape at room temperature and can be deformed when subjected to external force. The folding rotating hook 11 can adapt to various hanging requirements. When the insect trap lamp 100 is used in series, the insect trap lamp 100 is plugged into a power supply equipped with multiple USB interfaces to form a light string, which is convenient for large-scale use.
[0026] like Figure 2 As shown, the solar panel 12 is composed of a single 5W monocrystalline silicon panel 121. The monocrystalline silicon panel 121 is installed at an angle of 15 degrees for a circle, which is convenient for storing light energy. The solar panel 12 is IP65 waterproof. At the same time, the solar panel 12 can be disassembled separately. The solar panel 12 is provided with an intelligent control system. When the illumination is less than 50lux, the intelligent control system automatically turns on the LED light panel 21 and the turbo negative pressure fan 24. When the humidity is greater than 80%, the intelligent control system controls the turbo negative pressure fan 24 to stop working. The integrated battery compartment 13 is arranged below the folding rotating hook 11. The integrated battery compartment A built-in cavity 131 and a controller are provided inside 13. A lithium battery 132 is provided in the built-in cavity 131. The diameter of the lithium battery 132 is 18 mm and the height is 65 mm. The lithium battery 132 is cylindrical and has a capacity of 2600 mAh. The controller is used to control the charging or discharging of the lithium battery 132. A connection port 133 is provided on the surface of the integrated battery compartment 13. The lithium battery 132 is charged via USB-C emergency charging via the connection port 133. When there is sunshine, energy is stored via the solar panel 12. When it is rainy and cloudy, the lithium battery 132 can be replaced or charged by connecting to a power source via the connection port 133.
[0027] like Figure 1-2 and Fig. 9As shown, the insect collecting mechanism 3 includes a collecting box 31, an air outlet 32, an attractant box 33 and a protective net 34. The collecting box 31 is arranged below the turbo negative pressure fan 24. The collecting box 31 is made of a cylindrical transparent or translucent plastic material. The plastic material includes but is not limited to PC, PS, PP and PET, etc., which is convenient for observing the number of insects inside the collecting box 31. When too many insects are attracted, a new collecting box 31 can be replaced. The size of the collecting box 31 is consistent with the size of the protective cover 23, and the height is 3.5 cm. The inner wall of the collecting box 31 is provided with insect glue, and the bottom of the collecting box 31 is provided with a mounting hole 311. The attractant box 33 is a cylindrical structure, the diameter of the attractant box 33 is 1 cm, and the height is 2 cm. The mounting hole 311 cooperates with the attractant box 33. When the attractant box 33 is replaced, it can be replaced through the mounting hole 311. After the attractant box 33 is taken out, it is installed back in place. Air outlet holes 32 are arranged around the top of the collecting box 31. Air outlet holes 32 are arranged on the surface of the attractant box 33. The air outlet holes 32 are circular holes with a diameter of 0.15 cm. When the turbo negative pressure fan 24 is working, the airflow passes through the attractant box 33, and the volatile substances are continuously emitted through the air outlet holes 32, thereby increasing the efficiency of trapping target insects. A protective net 34 is arranged on the air outlet holes 32 and the collecting box 31. The protective net 34 is a nylon gauze with a mesh size of 280 or more. Covering the collecting box 31 and the air outlet holes 32 on the collecting box 31 with the protective net 34 can effectively prevent the small insects trapped from escaping again. Covering the air outlet holes 32 of the attractant box 33 with the protective net 34 can effectively prevent small insects from entering the attractant box 33 and affecting the emission of volatile substances.
[0028] Those skilled in the art should recognize that the above embodiments are only used to illustrate the present invention, and are not intended to limit the present invention. As long as they are within the spirit of the present invention, any changes or modifications to the above embodiments will fall within the scope of the claims of the present invention.
Claims
1. A portable insect trap light device for micro-insects, comprising an energy supply mechanism (1) and a trapping mechanism (2), wherein the energy supply mechanism (1) is arranged on the upper side of the trapping mechanism (2), and is characterized in that: The trapping mechanism (2) comprises an LED light board (21), a light cover (22), a protective cover (23), and a turbo negative pressure fan (24); the protective cover (23) is arranged below the energy supply mechanism (1); the protective cover (23) is a cylindrical structure as a whole; an LED light board (21) is fixedly arranged inside the protective cover (23); an LED light bead (25) is arranged on the LED light board (21); the LED light bead (25) comprises a housing (251) and an LED module (252); the housing (251) is provided with an LED module (252); the LED module At least one red light chip (2521), at least one green light chip (2522) and at least one blue light chip (2523) are arranged at a predetermined interval in (252); the lampshade (22) is arranged on the outside of the LED lamp board (21); the protective cover (23) is provided with an air vent (231); the turbo negative pressure fan (24) is arranged at the bottom of the protective cover (23); the turbo negative pressure fan (24) is driven by a motor (241); the motor (241) is fixedly arranged at the bottom of the turbo negative pressure fan (24); and the turbo negative pressure fan (24) is mounted on the shaft of the motor (241); The LED light board (21) is provided with an adjustment button (211), the adjustment button (211) adopts a multi-level switch, each level of the adjustment button (211) corresponds to a preset color of red, orange, yellow, green, cyan, blue, purple, and pink, and the LED light board (21) is provided with a microcontroller, the microcontroller receives an input signal of the adjustment button (211), calculates a corresponding RGB value according to a preset color and wavelength-RGB function relationship, and controls a driving circuit through a PWM signal, thereby adjusting the color of the LED lamp beads.
2. A portable insect trap light device for micro-insects according to claim 1, characterized in that: There are 12 LED light beads (25), and the LED light beads (25) are mounted in a ring shape on the LED light board (21).
3. A portable insect trap light device for micro-insects according to claim 1, characterized in that: The LED light bead (25) can emit light with a wavelength in the range of 380-750 nm.
4. A portable insect trap light device for micro-insects according to claim 1, characterized in that: The red light chip (2521), the green light chip (2522), and the blue light chip (2523) are arranged side by side in the LED module (252).
5. A portable insect trap light device for micro-insects according to claim 1, characterized in that: The LED module (252) is provided with one red light chip (2521), two green light chips (2522) and two blue light chips (2523), the red light chip (2521) being located in the middle, and the green light chip (2522) and the blue light chip (2523) being arranged between LED chips of other colors.
6. A portable insect trap light device for micro-insects according to claim 1, characterized in that: The red light chip (2521), the green light chip (2522) and the blue light chip (2523) are spaced apart by a distance of 0.5-2 mm.
7. A portable insect trap light device for micro-insects according to claim 1, characterized in that: A plurality of the LED modules (252) are provided, and the plurality of LED modules (252) are distributed in a ring shape with the same spacing.
8. A portable insect trap light device for micro-insects according to claim 1, characterized in that: The energy supply mechanism (1) comprises a foldable rotating hook (11), a solar panel (12) and an integrated battery compartment (13); the foldable rotating hook (11) can be folded and rotated; the integrated battery compartment (13) is arranged below the foldable rotating hook (11); a built-in cavity (131) and a controller are arranged inside the integrated battery compartment (13); a lithium battery (132) is arranged inside the built-in cavity (131); the controller is used to control the charging or discharging of the lithium battery (132); a connection port (133) is arranged on the surface of the integrated battery compartment (13); the lithium battery (132) is charged through the connection port (133); and the solar panel (12) is composed of a single 5W single crystal silicon panel (121); the single crystal silicon panel (121) is installed at an angle of 15 degrees.
9. A portable insect trap light device for micro-insects according to claim 8, characterized in that: The solar panel (12) is provided with an intelligent control system. When the illumination is less than 50 lux, the intelligent control system automatically turns on the LED light panel (21) and the turbo negative pressure fan (24). When the humidity is greater than 80%, the intelligent control system controls the turbo negative pressure fan (24) to be in a stopped working state.
Citation Information
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