High Precision Slope Stability Radar Slide Detection by China Suppliers and Factory for Landslide Monitoring
📡Product Introduction
This product is based on synthetic aperture radar imaging technology and interferometry/differential interferometry technology, specifically designed for emergency and regular monitoring and early warning of geological hazard risk points such as landslides, collapses, and cave-ins. It features a low-cost, low-power design with advantages including 360° comprehensive coverage, sub-millimeter level deformation measurement and all-weather, all-day non-contact remote sensing scanning.
At the same time, this device is specifically designed to meet the demands of "long-term online, unattended" monitoring of geological disaster hazard points. It focuses on automation, ultra-low power consumption, multi-radar access, multiple power supply methods, and multi-platform access designs. Additionally, it integrates a variable-focus visual sensor for regular inspections and key position observations to assist in judgment. It can perform surface, multi-point, long-distance, and long-term monitoring and scanning of observation scenarios (geological disaster hazard points, water conservancy projects, railway highways, and other geological bodies and major engineering projects) to achieve long-term unattended monitoring and automated early warning.
✅Features
🌍Wide applicability: suitable for emergency response and long-term monitoring in areas with geological disaster hazards.
📶Strong microwave penetration, capable of all-weather monitoring, unaffected by rain, snow, fog, smoke, or firelight.
🏕️No protective framework needed: resistant to outdoor wind, sun, rain, dust, and heavy snow, with no requirement for a monitoring house.
⚙️Adaptive atmospheric disturbance compensation algorithm to eliminate the effects of long-term monitoring disturbances.
🔄Arc imaging and continuous wave radar systems, allowing for 360° monitoring with no angle or distance blind spots.
🕐24/7 operation: continuous scanning.
🗺️Three-dimensional fusion: sub-meter level registration.
🌦️All-weather, full-surface monitoring.
🤖Automatic judgment and alert system, unmanned operation.
🛡️IP65 protection; operational in low temperatures down to -40°C.
📋Main Parameter
| SN | Description | Parameter |
|---|---|---|
| 1 | Operating frequency band | Ku |
| 2 | Maximum distance | ≥800m |
| 3 | Coverage angle | ≥360° (horizontal or specified sector) × 40° (elevation) |
| 4 | Deformation accuracy | ≤0.5mm (any angle within 360° azimuth) |
| 5 | Distance resolution | ≤0.3m |
| 6 | Azimuth resolution | ≤9mrad |
| 7 | Data acquisition cycle | ≤1min |
| 8 | Elevation adjustment angle | ≥±45° |
| 9 | Data upload cycle | Configurable from 1min to 24h |
| 10 | Overall power consumption | ≤20W |
| 11 | Overall weight | ≤5.5kg |
| 12 | Maximum size of radar host | ≤0.6m |
| 13 | Operating temperature | -20 ~ 55℃ |
| 14 | Protection level | IP65 |
| 15 | Radar host | Built-in 4G wireless (optional) and wired communication functions |
| 16 | The radar host | Uses edge computing to perform deformation calculations internally, eliminating the need for a workstation. |
🏔️Application
This equipment can continuously and accurately monitor and provide timely alerts for slopes, dams, mountains, buildings, and other sites at rescue scenes, mitigating the safety threats posed by secondary disasters to rescuers and their equipment; it can also be used for long-term monitoring of mines, geological disaster risk points, water conservancy facilities, and more.



❓Frequently Asked Questions
QWhat types of geological hazards can this radar monitor?
This system is designed to monitor a wide range of geological hazard risk points, including landslides, collapses, cave-ins, slopes, dams, mountains, and mining areas. It is suitable for both emergency response and long-term monitoring scenarios, as well as water conservancy facilities and major engineering projects.
QCan the radar operate in extreme weather conditions?
Yes. The radar employs microwave technology with strong penetration capability, making it completely unaffected by rain, snow, fog, smoke, or firelight. It meets IP65 protection standards and operates across a temperature range of -20°C to 55°C, with cold-start capability down to -40°C — requiring no monitoring house or protective enclosure.
QWhat deformation measurement accuracy does this device achieve?
The device achieves sub-millimeter deformation accuracy of ≤0.5mm at any angle within the full 360° azimuth range. This level of precision enables the detection of extremely minor ground movements, making it ideal for early warning of geological disasters before they escalate.
QDoes the system require on-site personnel to operate?
No. The system is designed for fully unattended, long-term online operation. It features automated judgment and alerting, on-device edge computing for deformation calculations, and remote data transmission via built-in 4G wireless or wired communication — eliminating the need for a workstation or on-site staff.
QWhat is the monitoring coverage range and scan cycle?
The radar provides 360° horizontal coverage (or a specified sector) with a 40° elevation angle and a maximum monitoring distance of ≥800 meters. The data acquisition cycle is ≤1 minute per scan, with a configurable upload cycle ranging from 1 minute to 24 hours to suit different project requirements.
QWhat power and communication options are available?
The device is designed with ultra-low power consumption of ≤20W, supporting multiple power supply methods suitable for remote deployments. For communications, the radar host includes a built-in 4G wireless module (optional) alongside wired communication capabilities, enabling flexible multi-platform access and remote data management.
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