An integrated device for intelligent termite detection and killing
By integrating solar power supply, termite attraction, image monitoring and spraying modules into the integrated intelligent termite detection and killing equipment, the problems of single function and low recognition accuracy of existing devices are solved, and early detection, early treatment and efficient prevention and control of dam termites are achieved.
Patent Information
- Application Number
- CN202510412381.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2045-04-03
AI Technical Summary
Existing termite monitoring devices have single functions, low recognition accuracy, untimely killing, and single communication modes, making them unable to achieve all-round monitoring and efficient prevention and control.
An integrated intelligent termite detection and killing device has been designed, which integrates a solar power supply panel, a termite attraction component, an image intelligent monitoring component, a spraying module and an electronic control program system. It uses image recognition algorithms and an intelligent terminal platform to achieve active termite attraction, accurate identification and automatic killing, and supports multiple communication modes.
It achieves early detection and early treatment of dam termites, improves identification accuracy and killing efficiency, reduces energy consumption, and supports remote monitoring and personalized management.
Smart Images

Figure CN120226647B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of water conservancy project safety protection and pest control, and in particular to an integrated intelligent termite detection and killing device with high-efficiency termite control capability. Background Art
[0002] In the field of water conservancy, earth-rock dams are critical infrastructure for ensuring the rational use of water resources and flood control. However, the damage caused by termites to earth-rock dams cannot be underestimated. Termites build nests and dig tunnels within the dams, severely damaging their structural integrity and impermeability, greatly increasing the risk of leakage, collapse, and even dam failure.
[0003] With the advancement of science and technology, termite monitoring technology continues to innovate, evolving from traditional trapping methods to monitoring using sensors, intelligent algorithms, and image recognition technologies. However, existing termite monitoring devices generally suffer from limited functionality, low recognition accuracy, and delayed termite extermination. These issues are particularly evident in the following aspects: First, many existing termite monitoring devices only have a single monitoring function, such as using sensors to detect signs of termite activity or simply using image recognition technology to capture images of termites. These devices lack comprehensive analysis and processing capabilities, and are unable to simultaneously provide monitoring, identification, early warning, and extermination functions. Second, termite activity is secretive and complex, with diverse behavioral patterns and nest structures. This makes it difficult for existing image recognition algorithms and sensor technologies to accurately identify termite presence and activity ranges. Especially in complex soil environments, termite signs can easily be misidentified or missed, resulting in low recognition accuracy. Third, once termite activity is detected, existing monitoring devices lack a termite extermination function, or their extermination mechanisms react slowly, allowing termites to continue to spread and cause damage, often preventing immediate and effective extermination measures. Fourth, most existing devices use Lora or 4G / 5G communication modes, which are relatively simple and do not set different communication methods according to different scenarios to ensure the effectiveness of monitoring.
[0004] Therefore, an integrated device for intelligent termite detection and killing is proposed. Summary of the Invention
[0005] The purpose of the present invention is to provide an integrated intelligent termite detection and killing device, which aims to solve the functional defects of termite monitoring equipment in the prior art and realize all-round monitoring and efficient prevention and control of dam termites.
[0006] To achieve the above objectives, the present invention provides the following solution: The present invention provides an integrated intelligent termite detection and killing device, comprising:
[0007] The housing comprises a top cover, an upper shell and a lower shell; the top of the upper shell is detachably connected to the top cover, and the bottom is detachably connected to the lower shell; an induction hole is opened on the outer wall of the lower shell;
[0008] A solar power panel is mounted on the top surface of the roof. The tilted top surface increases the solar panel's light-receiving area, improving photoelectric conversion efficiency, while also facilitating the rapid drainage of rainwater, preventing damage to the device caused by accumulated water. When there is sufficient sunlight, the solar panel converts solar energy into electrical energy, which is then used to charge the device's internal battery via an inverter, ensuring stable operation in all environments.
[0009] A termite attraction assembly is located within the lower shell and includes information strips made of pine wood. These strips are mounted on the underside of the ant bridge, located within the lower shell. Blind holes are drilled through the center of the top of the strips, corresponding to the through holes in the ant bridge. A gap is left between the bottom of the strips and the bottom wall of the lower shell. Pine wood is naturally attractive to termites, and its surface has been specially treated to prevent corrosion.
[0010] The information box is removably attached to the inner wall of the upper shell and integrates the electronic control program system, image intelligent monitoring components, and spray module. The electronic control program system includes a battery and a circuit board. The battery provides stable power to the device. The circuit board has built-in SIM card wide-area communication, local-area communication modules, and Beidou positioning modules. It processes data and instructions from various components of the device, enabling local near-field or wide-area remote wireless communication and positioning functions, allowing managers to monitor the device's location and operating status in real time.
[0011] The ant bridge is mounted on top of the lower shell and has several through-holes. A transparent acrylic plate is installed on the top of the bridge, with a spacer between the plate and the bridge to protect the camera from external interference while ensuring a clear view of termite activity on the bridge. A spray port has been added to the side of the bridge, so the lower shell has a sunken groove designed to secure the protruding portion of the spray port.
[0012] The monitoring end of the image intelligent monitoring component faces the top surface of the ant bridge, the spraying module is used to spray medicine on the top surface of the ant bridge, the solar power supply panel, the image intelligent monitoring component, and the spraying module are all electrically connected to the electronic control program system, and the electronic control program system is electrically connected to the intelligent terminal platform;
[0013] The electronic control program system includes a battery and a circuit board, which are both installed in the information box. The image intelligent monitoring component is installed on the circuit board. The solar power supply panel is electrically connected to the battery. The smart terminal platform, the battery, the image intelligent monitoring component and the spray module are all electrically connected to the circuit board.
[0014] The spray module consists of a tank mounted on a mounting base within the information box, a spray connector, and a solenoid valve. The tank stores termite-killing drugs and is filled with gas through an inflator nozzle. The spray port faces the top of the ant bridge, ensuring precise spray targeting of termites. The solenoid valve controls the flow of gas into the tank, creating a low pressure for spraying.
[0015] According to the integrated intelligent termite detection and killing device provided by the present invention, the circuit board has built-in SIM card wide area communication, local area communication modules and Beidou positioning module.
[0016] According to the present invention, an integrated intelligent termite detection and killing device is provided. The termite attracting component includes a plurality of attracting wooden strips, and the plurality of attracting wooden strips are installed on the bottom surface of the ant bridge, and the plurality of attracting wooden strips are located in the lower shell. A blind hole is opened through the center of the top surface of the attracting wooden strip, and the plurality of blind holes are respectively arranged in one-to-one correspondence with the plurality of through holes. A gap is provided between the bottom of the attracting wooden strip and the inner bottom wall of the lower shell.
[0017] According to an integrated intelligent termite detection and killing device provided by the present invention, the spraying module includes a mounting base installed in the information box, and a medicine storage tank, a spraying connector and a solenoid valve are installed on the mounting base. The medicine storage tank is used to store ant-killing drugs and is equipped with an inflation nozzle. The medicine storage tank and the spraying connector are connected through a pipeline. The solenoid valve is installed on the pipeline. The spraying connector is detachably connected to a spraying pipe, and a spraying port is installed at the end of the spraying pipe. The spraying port faces the top surface of the ant bridge. A drug quantity sensing sensor is installed in the medicine storage tank; the solenoid valve and the drug quantity sensing sensor are both electrically connected to the circuit board.
[0018] According to the integrated intelligent termite detection and killing device provided by the present invention, a transparent plate is installed on the top surface of the ant bridge, and a spacer is provided between the transparent plate and the ant bridge. The transparent plate is made of acrylic material with good light transmittance and strong weather resistance.
[0019] According to the integrated intelligent termite detection and killing device provided by the present invention, the image intelligent monitoring component includes a camera, which is installed at the bottom of the circuit board and faces the top surface of the ant bridge. The camera is electrically connected to the circuit board; the camera is a fixed-focus infrared camera.
[0020] According to the integrated intelligent termite detection and killing device provided by the present invention, an acoustic sensor and a photosensitive sensor are installed on the circuit board, and both the acoustic sensor and the photosensitive sensor are connected to the circuit board.
[0021] According to the integrated intelligent termite detection and killing device provided by the present invention, the top surface of the top cover is inclined.
[0022] According to the integrated intelligent termite detection and killing device provided by the present invention, the attracting wooden strips are made of pine wood, and the number of the attracting wooden strips and the number of the through holes are both six.
[0023] The present invention discloses the following technical effects:
[0024] When the present invention is in use, termites enter the lower shell through the luring hole, gnaw on the wooden strips, and then climb onto the ant bridge along the blind holes and through holes. The fixed-focus camera in the image intelligent monitoring component monitors and analyzes the top surface of the ant bridge. Once termite activity is detected, the image data is transmitted to the circuit board of the electronic control program system. The circuit board analyzes and processes the image based on the intelligent recognition algorithm, accurately identifies the termites and counts their number, and simultaneously uploads the relevant information to the intelligent terminal platform. When the number of termites reaches the set threshold or meets specific killing conditions, the intelligent terminal platform sends a command to control the operation of the spraying module through the circuit board;
[0025] The present invention can achieve the effect of early detection and early treatment of termites on dams, and realize the functions of active luring, accurate identification, and automatic killing of dam termites. By integrating the four core functions of termite luring, monitoring and identification, intelligent early warning, and automatic spraying, it highlights the intuitive feedback of termite activities, realizes early detection and early treatment of termite damage, and eliminates risks before they arise.
[0026] The present invention realizes long-term monitoring through independent power supply of solar power supply panels, reduces energy consumption, and the intelligent terminal platform sends instructions to the device, and controls the spraying module to spray through the electronic control program system, thereby completing the automatic spraying and killing of termites within the monitoring range. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0028] Figure 1 It is the front view of the present invention;
[0029] Figure 2 for Figure 1 Cross-sectional view of AA;
[0030] Figure 3 Schematic diagram of the structure of the spraying module in the present invention;
[0031] Figure 4 for Figure 1 Cross-sectional view of the BB.
[0032] Among them, 1. Solar power supply panel; 2. Top cover; 3. Upper shell; 4. Lower shell; 5. Induction hole; 6. Battery; 7. Circuit board; 8. Camera; 9. Inflating nozzle; 10. Solenoid valve; 11. Drug storage tank; 12. Mounting seat; 13. Spraying joint; 14. Transparent plate; 15. Through hole; 16. Ant bridge; 17. Attracting wooden strip; 18. Blind hole; 19. Spraying pipe; 20. Spraying port; 22. Information box; 23. Sunken groove. DETAILED DESCRIPTION
[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making creative efforts are within the scope of protection of the present invention.
[0034] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0035] Reference Figures 1-4 The present invention provides an integrated intelligent termite detection and killing device, comprising:
[0036] The housing includes a top cover 2, an upper shell 3, and a lower shell 4; the top of the upper shell 3 is detachably connected to the top cover 2, and the bottom is detachably connected to the lower shell 4; an induction hole 5 is opened on the outer wall of the lower shell 4;
[0037] A solar power supply panel 1 is mounted on the top surface of the top cover 2;
[0038] A termite attracting component is provided in the lower shell 4;
[0039] The information box 22 is detachably connected to the inner wall of the upper shell 3. The information box 22 is equipped with an electronic control program system, an image intelligent monitoring component and a spraying module;
[0040] The ant bridge 16 is mounted on the top of the upper shell 3 and has a plurality of through holes 15;
[0041] Among them, the monitoring end of the image intelligent monitoring component faces the top surface of the ant bridge 16, the spraying module is used to spray medicine on the top surface of the ant bridge 16, the solar power supply panel 1, the image intelligent monitoring component, and the spraying module are all electrically connected to the electronic control program system, and the electronic control program system is electrically connected to the intelligent terminal platform;
[0042] With this arrangement, when the present invention is in use, termites enter the lower shell 4 through the luring hole, gnaw on the wooden strips, and then climb onto the ant bridge along the blind hole 18 and the through hole 15. The fixed-focus camera 8 in the image intelligent monitoring component monitors and analyzes the top surface of the ant bridge. Once termite activity is detected, the image data is transmitted to the circuit board 7 of the electronic control program system. The circuit board 7 analyzes and processes the image based on the intelligent recognition algorithm, accurately identifies the termites and counts their number, and simultaneously uploads the relevant information to the intelligent terminal platform. When the number of termites reaches the set threshold or meets specific killing conditions, the intelligent terminal platform sends a command to control the operation of the spraying module through the circuit board 7;
[0043] The present invention can achieve the effect of early detection and early treatment of termites on dams, and realize the functions of active luring, accurate identification, and automatic killing of dam termites. By integrating the four core functions of termite luring, monitoring and identification, intelligent early warning, and automatic spraying, it highlights the intuitive feedback of termite activities, realizes early detection and early treatment of termite damage, and eliminates risks before they arise.
[0044] The present invention realizes long-term monitoring through independent power supply of the solar power supply panel 1, reduces energy consumption, and the intelligent terminal platform sends instructions to the device, and controls the spraying module to spray through the electronic control program system, thereby completing the automatic spraying and killing of termites within the monitoring range.
[0045] To further optimize the solution, the electronic control program system includes a battery 6 and a circuit board 7, both of which are installed in the information box 22, the image intelligent monitoring component is installed on the circuit board 7, the solar power supply panel 1 is electrically connected to the battery 6, and the intelligent terminal platform, battery 6, image intelligent monitoring component and spraying module are all electrically connected to the circuit board 7.
[0046] To further optimize the solution, circuit board 7 has built-in SIM card wide area communication, local area communication module and Beidou positioning module;
[0047] Battery 6 serves as an energy storage element, providing power for the entire device. When solar panel 1 is exposed to sufficient sunlight, it stores this energy in battery 6, ensuring normal operation even in dark or low-light environments. Circuit board 7, serving as the control center, processes data and instructions from the intelligent image monitoring component, spray module, and smart terminal platform, enabling comprehensive monitoring and control of the device. A SIM card facilitates remote communication between the device and the smart terminal platform, while a local area communication module enables real-time transmission of near-field data to meet the needs of various scenarios. The Beidou positioning module acquires the device's geographic location in real time, facilitating remote monitoring and management.
[0048] A further optimized solution is that the termite attracting assembly includes a plurality of attracting wooden strips 17, which are all installed on the bottom surface of the ant bridge 16, and are all located in the lower shell 4. A blind hole 18 is opened through the center of the top surface of the attracting wooden strip 17, and the blind holes 18 are respectively arranged in one-to-one correspondence with the through holes 15. A gap is provided between the bottom of the attracting wooden strip 17 and the inner bottom wall of the lower shell 4.
[0049] Further optimized, the spraying module includes a mounting base 12 installed in the information box 22, on which a medicine storage tank 11, a medicine spraying connector 13 and a solenoid valve 10 are installed, an air filling nozzle 9 is installed on the medicine storage tank 11, the medicine storage tank 11 and the medicine spraying connector 13 are connected through a pipeline, the solenoid valve 10 is installed on the pipeline, the medicine spraying connector 13 is detachably connected to a medicine spraying pipe 19, the end of the medicine spraying pipe 19 is installed with a medicine spraying port 20, the medicine spraying port 20 faces the top surface of the ant bridge 16, and a medicine amount sensing sensor is installed in the medicine storage tank 11; the solenoid valve 10 and the medicine amount sensing sensor are both electrically connected to the circuit board 7;
[0050] The medicine storage tank 11 is used to store ant-killing drugs. Compressed gas can be filled into the medicine storage tank 11 through the inflation nozzle 9 to push the drugs to be sprayed out through the pipeline; the spray port 20 is used to spray the drugs directly onto the termites on the top surface of the ant bridge 16. The solenoid valve 10 is installed on the pipeline to control the amount of drugs sprayed; the drug amount sensing sensor is used to monitor the remaining amount of drugs in the medicine storage tank 11 in real time. When the drugs are insufficient, it will send a signal to the circuit board 7 to remind you to replace or replenish the drugs.
[0051] To further optimize the solution, a transparent plate 14 is installed on the top surface of the ant bridge 16, and a spacer is provided between the transparent plate 14 and the ant bridge 16. The transparent plate 14 is made of acrylic material; the transparent plate 14 is used to protect the camera 8 from interference from external factors such as dust and water mist, while allowing the camera 8 to clearly capture the termite activities on the top surface of the ant bridge 16, and has good light transmittance and strong weather resistance.
[0052] To further optimize the solution, the image intelligent monitoring component includes a camera 8, which is installed at the bottom of the circuit board 7, and the camera 8 faces the top surface of the ant bridge 16, and the camera 8 is electrically connected to the circuit board 7; the camera 8 adopts a fixed-focus infrared camera; the camera 8 adopts a fixed-focus infrared camera, which can clearly capture the activities of termites under low light conditions, and the direction of the camera 8 remains perpendicular to the top surface of the ant bridge 16 to ensure that the captured image is clear and accurate.
[0053] The circuit board 7 processes and analyzes the image data transmitted by the camera 8. When termite activity is detected, it sends a spraying instruction to the spraying module;
[0054] The present invention is based on the management and control of intelligent image recognition algorithms, which can automatically control the camera to accurately identify termites within the shooting range, and upload them to the intelligent background terminal in time, synchronously output the termite recognition results, and summarize the number of termites recognized. A device start button and a manual photo button are set on the circuit board 7, and the camera 8 photo function test can be carried out in combination with the actual site before application; the intelligent terminal platform is connected to the circuit board 7 in real time, and the intelligent terminal platform can receive high-definition photos uploaded by the on-site monitoring equipment and generate recognition result photos. The manager can receive monitoring alarm information in time and view the results through the mobile terminal or PC terminal, intuitively feel the termite monitoring picture and number, and carry out disposal tasks in time according to the monitoring results, thereby improving the timeliness of termite monitoring and avoiding the delays and missed detection problems of manual disposal in traditional monitoring methods; the intelligent image recognition frequency can be adjusted on the intelligent terminal platform according to the project situation to meet personalized monitoring needs.
[0055] To further optimize the solution, an acoustic sensor and a photosensitive sensor are installed on the circuit board 7, and both the acoustic sensor and the photosensitive sensor are connected to the circuit board 7; the acoustic sensor is used to monitor the sound changes around the device. When an abnormal sound (such as the sound of termites gnawing) is detected, a signal will be sent to the circuit board 7 to remind further monitoring and processing; the photosensitive sensor is used to monitor the light intensity around the device. When the light intensity is lower than a certain threshold, the infrared mode of the camera 8 will be automatically turned on to ensure that the activities of termites can be clearly captured even under low light conditions.
[0056] To further optimize the solution, the top surface of the top cover 2 is tilted, and the top cover 2 and the upper shell 3 are detachably connected by a ring buckle. After connection, the top cover 2 can be rotated relative to the upper shell 3, so as to facilitate adjustment of the installation position of the solar power panel 1 on the top cover 2 according to the position of sunlight. The tilted top surface can increase the light-receiving area of the solar power panel 1 and improve the photoelectric conversion efficiency; the solar power panel 1 absorbs solar radiation energy and converts it into electrical energy, which is converted by the inverter to charge the battery 6; at the same time, the top cover 2 with an inclined top surface is conducive to the rapid discharge of liquids such as rainwater, preventing accumulated water from damaging the equipment.
[0057] According to a further optimized solution, the top surface of the top cover 2 is inclined at an angle of 18° to the horizontal plane.
[0058] As a further optimization solution, the upper shell 3 and the lower shell 4 are connected by threads, which can be easily disassembled for internal inspection. A groove and a bracket are provided inside the upper shell 3 for fixing the information box 22.
[0059] Further optimizing the solution, the attracting wooden strips 17 are made of pine wood, and the number of the attracting wooden strips 17 and the through holes 15 are both six;
[0060] The lure strips 17 are made of pine wood, a material favored by termites, and are coated with termite-attracting chemicals or pheromones. A gap is provided between the bottom surface of the lure strips 17 and the inner bottom wall of the lower shell 4 to facilitate termites' climbing upward after gnawing. Blind holes 18 provide a passage for termites to enter the ant bridge 16 from the lower shell 4.
[0061] In the description of the present invention, it should be understood that the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0062] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention and are not intended to limit the embodiments of the present invention. A person skilled in the art will be able to make other variations or modifications based on the above description. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. An integrated intelligent termite detection and killing device, characterized in that: include: An outer shell, the outer shell comprising a top cover (2), an upper shell (3) and a lower shell (4); the top of the upper shell (3) is detachably connected to the top cover (2), and the bottom is detachably connected to the lower shell (4); an induction hole (5) is provided on the outer wall of the lower shell (4); A solar power supply panel (1), the solar power supply panel (1) being mounted on the top surface of the top cover (2); A termite attracting component, the termite attracting component being arranged in the lower shell (4); An information box (22), the information box (22) being detachably connected to the inner wall of the upper shell (3), and the information box (22) being equipped with an electronic control program system, an image intelligent monitoring component, and a spraying module; An ant bridge (16), the ant bridge (16) being mounted on the top of the upper shell (3), and having a plurality of through holes (15); The monitoring end of the image intelligent monitoring component faces the top surface of the ant bridge (16), the spraying module is used to spray medicine onto the top surface of the ant bridge (16), the solar power supply panel (1), the image intelligent monitoring component, and the spraying module are all electrically connected to the electronic control program system, and the electronic control program system is electrically connected to the intelligent terminal platform; The electronic control program system includes a battery (6) and a circuit board (7), both of which are installed in the information box (22), the image intelligent monitoring component is installed on the circuit board (7), the solar power supply panel (1) is electrically connected to the battery (6), and the intelligent terminal platform, the battery (6), the image intelligent monitoring component and the spraying module are all electrically connected to the circuit board (7); The termite attracting assembly includes a plurality of attracting wooden strips (17), the plurality of attracting wooden strips (17) are all mounted on the bottom surface of the ant bridge (16), and the plurality of attracting wooden strips (17) are all located in the lower shell (4), a blind hole (18) is provided through the center of the top surface of the attracting wooden strip (17), the plurality of blind holes (18) are respectively arranged in a one-to-one correspondence with the plurality of through holes (15), and a gap is provided between the bottom of the attracting wooden strip (17) and the inner bottom wall of the lower shell (4), so as to facilitate termites to climb and enter the blind hole (18); The spraying module comprises a mounting base (12) mounted in the information box (22), a medicine storage tank (11), a medicine spraying connector (13) and a solenoid valve (10) mounted on the mounting base (12), an air filling nozzle (9) mounted on the medicine storage tank (11), the medicine storage tank (11) and the medicine spraying connector (13) are connected via a pipeline, the solenoid valve (10) is mounted on the pipeline, a medicine spraying pipe (19) is detachably connected to the medicine spraying connector (13), a medicine spraying port (20) is mounted at the end of the medicine spraying pipe (19), the medicine spraying port (20) faces the top surface of the ant bridge (16), compressed gas is filled in through the air filling nozzle (9), and medicine is pushed to be sprayed out through the medicine spraying port (20); a medicine quantity sensing sensor is mounted in the medicine storage tank (11); the solenoid valve (10) and the medicine quantity sensing sensor are both electrically connected to the circuit board (7).
2. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: The circuit board (7) has built-in SIM card wide area communication, local area communication modules and a Beidou positioning module.
3. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: A transparent plate (14) is installed on the top surface of the ant bridge (16), a spacer is provided between the transparent plate (14) and the ant bridge (16), and the transparent plate (14) is made of acrylic material.
4. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: The image intelligent monitoring component comprises a camera (8), the camera (8) being mounted on the bottom of the circuit board (7), the camera (8) facing the top surface of the ant bridge (16), and the camera (8) being electrically connected to the circuit board (7); the camera (8) being a fixed-focus infrared camera.
5. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: An acoustic sensor and a photosensor are mounted on the circuit board (7), and both the acoustic sensor and the photosensor are connected to the circuit board (7).
6. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: The top surface of the top cover (2) is arranged inclined.
7. The integrated intelligent termite detection and killing device according to claim 1, characterized in that: The attracting wooden strip (17) is made of pine wood, and the number of the attracting wooden strip (17) and the number of the through holes (15) are both six.
Citation Information
Patent Citations
Termite intelligent monitoring early warning and automatic killing device and system
CN119404820A
Termite monitoring and killing integrated device
CN222054354U