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Shandong Tianhe Environmental Technology Co., Ltd

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    lixinghua@yunjingtianhe.com

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    13276363035

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    Room 206, Building 1, Weifang High tech Zone Optoelectronic Industry Accelerator (Phase I), No. 155 Optical Circuit, Weifang High tech Zone, Shandong Province

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Agricultural Spore Capture and Analysis System

NegotiableUpdate on 01/28
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin
Overview
The farmland spore capture and analysis system is a comprehensive monitoring device that integrates spore capture, microscopic imaging, intelligent recognition, and data analysis. It is widely used in fields such as agriculture, forestry, meteorology, environmental protection, and disease prevention and control, and is used for real-time monitoring and early warning of dynamic changes in plant pathogens (such as fungal spores). Spore capture devices utilize aerodynamic principles or active suction methods, combined with precision filters or viscous media, to efficiently capture spores as small as a few micrometers in the air. Some equipment adopts a quantitative airflow design, which can continuously and timed regulate the work to ensure capture efficiency. Microscopic imaging system equipped with high-power optical microscope or high-resolution
Product Details

Agricultural Spore Capture and Analysis SystemIt is a comprehensive monitoring device that integrates spore capture, microscopic imaging, intelligent recognition, and data analysis. It is widely used in fields such as agriculture, forestry, meteorology, environmental protection, and disease prevention and control, and is used for real-time monitoring and early warning of dynamic changes in plant pathogens (such as fungal spores). Spore capture devices utilize aerodynamic principles or active suction methods, combined with precision filters or viscous media, to efficiently capture spores as small as a few micrometers in the air. Some equipment adopts a quantitative airflow design, which can continuously and timed regulate the work to ensure capture efficiency. The microscopic imaging system is equipped with a high-power optical microscope or high-resolution camera to capture spore images clearly, ensuring that details are visible. Adopting depth of field fusion technology to enhance the 3D perception of images and improve recognition accuracy.

农田孢子捕捉分析系统


1、 Product Introduction
Agricultural Spore Capture and Analysis SystemThe equipment uses high magnification optical microscopy imaging technology, precision limiting technology, automatic intelligent focusing fusion technology, IoT transmission control technology and other technical means to capture tiny target spores, and uploads the images in real time to the designated agricultural cloud platform. The platform adopts image optimization algorithms to accurately process and analyze uploaded images.
2、 Product Features
1. There are horizontal and vertical dual axis motors inside the spore equipment
2. Built in carrier tape, which can display the current usage level cumulatively. When the carrier tape is about to run out, the platform can remind the carrier tape replacement time when it expires. The carrier tape can be manually reset, and reset is password protected. The carrier tape can be manually replaced
3. The interface can display the real-time progress of a single glass slide sampling;
4. The working mode can be set from the interface: divided into automatic and manual modes;
5. The device has a high-resolution microscope that can clearly capture and display spores of 5-100um.
6. Through special air duct airflow circulation design, the inlet and outlet form air ducts to ensure air circulation, effectively reduce collection repetition rate, shorten sampling time, and improve collection efficiency. The sampling time of the suction port can be set for a single sampling.
7. The working time and sampling frequency can be set arbitrarily;
8. The spore catcher is equipped with a 10.1-inch Android touch screen display, which has a good human-computer interaction interface. Support local viewing of captured photos, configuration of device parameters, control of devices, and other functions
9. Statistical analysis: Using cloud server technology, manual statistics and analysis of bacterial spore images can be achieved, which can be viewed and confirmed remotely in real time, shortening the prediction and forecasting cycle
10. Support automatic timing with servers
3、 Technical parameters
1. Main structure: spray painted material
2. Power supply voltage: 220VAC, optional 480w 200ah solar power supply
3. Starting power: ≤ 65W; Stable working power: ≤ 50W; Standby power ≤ 26.4W
3. Overall dimensions: 600 * 640 * 1418mm
4. Communication method: 4G upload, based on cellular network, TCP/IP data upload, supports dynamic domain name resolution DNS, only requires inserting a mobile phone card to upload data to the remote monitoring software platform
5. Working environment: -20-70 ℃, 0-95% (relative humidity), no condensation
6. Built in glass strap: can be used continuously for up to 365 days with a single replacement, taking 3 photos per day
7. Insulation resistance ≥ 2.5M Ω (leakage protection)
8. Camera: 500W pixel
9. Operating system: Android system
10. Gas sampling: collection time of 60-1200 minutes (set range), available collection area: length * width (mm) 50 * 21mm;
11. Working time setting: timed start, 24-hour system, can set the 24-hour start time arbitrarily;
4、 Cloud platform
1. It has the function of remote real-time viewing and control, and real-time analysis of spores
2. It can switch the working mode of the spore automatic capture analyzer in real-time and remotely, achieve automatic and remote photography, and realize the function of carrier band usage warning
3. In automatic mode, the starting working time, working duration, sampling duration, working interval, carrier band single movement distance pulse number, etc. of the spore automatic capture analyzer can be set, and can be remotely sent to the device end
4. In remote control mode, the suction port, exhaust port, sampling port, light source status, and carrier belt motor status of the spore automatic capture analyzer can be remotely controlled