Products

Drones That Have Thermal Imaging
Target tracking method: Automatic / Manual
Target recognition technology: Automatic (Neural Network Deep Learning)
Flight radius: 15km
Transportation method: Backpack
Drones equipped with thermal imaging technology are revolutionary tools for modern intelligent monitoring and emergency response. Through infrared thermal radiation detection and high-precision imaging technology, they break through the limitations of light, weather and environment and provide all-weather solutions for multiple fields. Its core advantage is to capture target temperature difference information in real time. Combined with the flexible maneuverability of drones, it can quickly locate potential forest fire points, search and rescue trapped people at night, and monitor abnormal heating of power equipment or the activity trajectory of wild animals.
High-sensitivity thermal imaging sensor
Uses uncooled infrared detectors, supports ±0.1℃ temperature difference recognition, and has a resolution of 640×512 pixels, which can meet the needs of complex environmental monitoring.
Multi-scenario adaptability
Equipped with replaceable lens modules, compatible with wide-angle and telephoto fields of view, suitable for forest fire prevention (7km range inspection), night search and rescue (smoke penetration) and building inspection and other scenarios.
Intelligent analysis and real-time transmission
Integrated AI edge computing module, can automatically identify targets (such as human bodies, fire points) and generate alarms, and data is transmitted back to the command center in real time via 4G/5G.
Long battery life and modular design
Equipped with a dual battery system, the battery life is up to 45 minutes; the thermal imaging payload can be quickly disassembled and assembled, and is compatible with mainstream industrial drone platforms.

Product Parameters
| Drone Weight | 3.5kg | Target Tracking | Automatic / Manual |
| Transmitter Weight | 4kg | Target Recognition | Automatic (Neural Network Deep Learning) |
| Flight Time | 45min | Find Target Distance | 800m (2.3mx2.3m Target) |
| Voyage | 150km/h | Target Gps Location | Accuracy 30m |
| Flight Radius | 15km | Uav Powered Mode | Electric Propeller (Only One, No Noise) |
| Flight Altitude | 400m | Uav Landing Mode | Parachute |
| Data Link Band | L band (stronger anti-interference ability) | Means Of Transport | Backpack |
| Airplane Mode | Remote control flight/autonomous flight | Size | 792mmx116mmx116mm (Length X Width X Height) |
work principle
Infrared radiation reception
Based on the Stefan-Boltzmann law, detect infrared energy on the surface of the object and generate raw thermal radiation data.
01
Signal conversion
The thermal imaging sensor converts radiation energy into electrical signals, eliminates environmental noise through algorithms, and improves the signal-to-noise ratio.
02
Pseudo-color imaging processing
Maps temperature difference data into a visual color spectrum (such as high temperature red, low temperature blue) to enhance target recognition.
03
Multi-source data fusion
Combines visible light images with thermal images to achieve three-dimensional spatial positioning through the GIS system.
04
Cloud-based intelligent analysis
Uses deep learning models (such as the YOLO algorithm) to automatically classify targets and generate inspection reports or warning information.
05
FAQ
1. How to balance thermal imaging resolution and temperature measurement accuracy?
It is recommended to choose a module with a resolution of 384×288 or above, and the temperature measurement error must be ≤2% or ±2℃ (taking FLIR Tau2 as an example).
2. Does the drone's endurance meet the needs of continuous operation?
It is recommended to use a 6S 10000mAh battery and a portable charging station, which can complete 4-6 take-offs and landings per day.
3. How is the stability in complex environments (such as rainy days and low temperatures)?
It is necessary to choose equipment with an IP54 protection level or above, and the operating temperature range should cover -20℃ to 50℃.
4. Does it support third-party software data docking?
It is necessary to confirm the degree of SDK openness. Mainstream brands such as DJI and FLIR provide API interfaces.
5. What are the costs of later maintenance and calibration?
It is recommended to perform professional calibration once a year. The maintenance cost of non-cooled detectors is lower than that of cooled types.
6. Can bulk purchases be customized?
Some manufacturers support algorithm customization (such as power inspection hotspot marking), but additional development costs are required.
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