Short Description
Detect Hazardous Threats Without Sending Personnel Into Danger
Tracked robotic platform designed for CBRN detection, hazardous environment reconnaissance, radiation monitoring, and remote situational awareness in high-risk operational environments.
When Environments Become Too Dangerous to Approach, Robotics Deliver Critical Detection Capability
Advanced tracked robot for hazardous material detection, radiation monitoring, environmental assessment, and remote reconnaissance operations.
Hazardous Environments Limit Human Access
Emergency teams and hazardous response units increasingly face environments involving:
Toxic chemicals
Radiation risks
Hazardous industrial leaks
Dangerous confined spaces
Unknown environmental threats
Direct human entry can significantly increase operational danger while limiting situational awareness.
Modern hazardous response operations increasingly rely on unmanned robotic systems to improve safety and environmental intelligence.
The Solution: Remote Hazard Detection & Reconnaissance
Astral Route tracked robotic platforms support:
Hazardous environment detection
Radiation monitoring
Chemical reconnaissance
Remote environmental assessment
Live situational awareness
Sensor-integrated operations
Helping organizations improve operational safety while expanding hazardous detection capability.
Built for Hazardous Environment Detection
Remote Hazard Detection
Supports remote detection in environments involving:
Radiation hazards
Chemical leaks
Hazardous industrial incidents
Dangerous operational zones
Unknown environmental conditions
Hazardous Environments Should Be Assessed Remotely First
CBRN Sensor Integration
Supports integration of:
Radiation detectors
Gas detection systems
Chemical sensors
Thermal imaging
EO/IR cameras
Environmental monitoring payloads
👉 modular multi-sensor architecture
Tracked Mobility for Difficult Terrain
Tracked mobility supports operation across:
Debris
Mud
Stairs
Industrial environments
Uneven terrain
Disaster zones
Tracked robots are widely used in hazardous operations because of superior terrain adaptability.
Real-Time Situational Awareness
Provides:
Live environmental monitoring
Remote video transmission
Hazard visualization
Operational coordination
Remote reconnaissance capability
Modern robotic systems increasingly rely on integrated environmental awareness and remote sensing.
Reduce Personnel Exposure
Enable hazardous environment assessment before personnel deployment.
Manual Hazard Detection vs Robotic Remote Detection
| Manual Operations | Robotic Detection Operations |
|---|---|
| Direct personnel exposure | Remote hazard assessment |
| Limited dangerous-area access | Enhanced hazardous-area reach |
| Reduced situational awareness | Real-time environmental intelligence |
| High operational risk | Improved personnel safety |
| Limited sensing capability |
Multi-sensor integration |
Remote Robotics Improve Safety During Hazardous Assessment
Why Choose Astral Route
Designed for Hazardous Detection Operations
Built for environments where direct human access may not be safe.
Multi-Sensor Integration Capability
Supports flexible integration of radiation, gas, thermal, and environmental monitoring systems.
Tracked Mobility for Complex Terrain
Reliable movement across debris, industrial zones, unstable terrain, and disaster environments.
Real-Time Environmental Awareness
Integrated monitoring improves operational visibility and hazard assessment efficiency.
Reduce Personnel Exposure Risk
Enable remote hazardous environment inspection before personnel deployment.
PRODUCT DETAIL

CBRN Detection & Hazardous Reconnaissance Tracked Robot
After a nuclear, biological, or chemical (NBC) incident, the NBC reconnaissance tracked robot can be remotely operated by personnel to quickly enter the designated area for real-time detection of NBC agent levels.
It wirelessly transmits video and data back to the control terminal for real-time display.
The robot consists of a lightweight all-terrain chassis, robotic arm, radiation-resistant central control module, radiation-resistant camera, and integrated NBC detection equipment such as a gamma dose rate meter, radionuclide identification module, alpha aerosol module, neutron dose rate meter, and biological/chemical detection modules.
It is primarily used for environmental reconnaissance and NBC data monitoring in nuclear/chemical accident conditions where personnel cannot access the area.
Technical Specifications
Overall Dimensions: Not greater than 1200mm × 800mm × 1000mm
Total Weight: Not greater than 80kg (including mounted equipment and control terminal)
Climbing Capability (Unidirectional Slope): Not less than 30°
Single Run Distance: Not less than 1000 meters (horizontal straight-line distance)
Operating Speed: 0.5 m/s to 2 m/s, adjustable at intervals
Single Operation Endurance: >120 minutes; battery can be replaced for extended operation
Obstacle Clearance Height: Not less than 150mm
Communication Range Extension: Supports carrying and deploying relay devices to extend communication distance
Radiation Resistance – Total Dose: 50 Gy
Radiation Resistance – Instantaneous Dose Rate: 50 Gy/h

Product Features
Hardened radiation tolerance technology
To meet the demands of the operational environment for nuclear, biological, and chemical (NBC) reconnaissance robots, a radiation shielding design is developed using radiation-resistant computational models and the Monte Carlo simulation method to determine optimal shielding materials and thicknesses. Radiation-hardened chips are also selected to design the main control module, ensuring stable operation under high-radiation conditions.
NBC Detection Technology
Following a modular design philosophy, the system provides multiple reserved interfaces to allow flexible integration of various detection modules. This enhances the robot's adaptability to diverse operational scenarios.
Key Applications: Designed for Hazardous Detection Operations
Radiological Environment Inspection
Radiation area reconnaissance
Nuclear facility inspection
Contaminated zone assessment
Chemical Hazard Detection
Industrial leakage assessment
Hazardous material incidents
Toxic gas monitoring
Emergency Response Operations
Disaster environment inspection
Dangerous confined-space reconnaissance
Fire and smoke assessment
Critical Infrastructure Protection
Industrial facility monitoring
Restricted-area inspection
Hazardous operational zones
Environmental Safety Assessment
Remote environmental monitoring
Unknown hazard identification
Safety verification operations
Dangerous Environments Require Remote Detection Before Human Entry
Use Cases
Radiation Zone Reconnaissance
Challenge
Personnel cannot safely enter suspected contaminated environments.
Solution
Tracked robot equipped with radiation detection payload performs remote assessment.
Result
Reduced exposure risk
Real-time environmental awareness
Improved operational safety
Chemical Leakage Detection
Challenge
Hazardous industrial leaks create dangerous conditions for responders.
Solution
Robot equipped with gas detection systems performs remote environmental monitoring.
Result
Faster hazard identification
Improved response coordination
Reduced personnel exposure
Disaster Site Hazard Assessment
Challenge
Unknown environmental conditions delay emergency response operations.
Solution
Robot enters unstable areas to collect live environmental and visual data.
Result
Better situational awareness
Improved rescue planning
Faster operational decisions
Industrial Safety Inspection
Challenge
Dangerous industrial zones require remote monitoring capability.
Solution
Modular tracked platform performs continuous hazardous environment inspection.
Result
Improved worker safety
Better operational visibility
Enhanced hazard management
Contact Us and Reduce Personnel Exposure Risk
FAQ
Q1: What is a CBRN detection tracked robot used for?
It is designed for hazardous environment detection, radiation monitoring, chemical assessment, and remote reconnaissance operations.
Q2: Why are robotic systems important in hazardous detection operations?
They reduce the need for personnel to directly enter dangerous environments during initial assessment missions.
Q3: What detection systems can be integrated?
Radiation detectors, gas sensors, thermal imaging systems, EO/IR cameras, and environmental monitoring payloads.
Q4: Can the robot operate in contaminated environments?
Yes. It is designed for hazardous industrial zones, radiation areas, and dangerous operational environments.
Q5: Why are tracked platforms used for hazardous operations?
Tracked mobility improves stability and movement across rubble, debris, mud, and uneven terrain.
Q6: Can the robot provide live environmental monitoring?
Yes. The platform supports real-time video transmission and remote environmental awareness.
Q7: Is the robot suitable for emergency response teams?
Yes. It supports disaster response, hazardous material assessment, industrial inspection, and dangerous environment reconnaissance.
Q8: Why is remote hazard detection increasingly important?
Organizations increasingly use robotics to improve safety, situational awareness, and operational efficiency in high-risk environments.
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