Core capabilities and practical value for deployment.
Detailed technical data for evaluation and system integration.
| Sampling Depth | 0–20 cm (customizable) |
|---|---|
| Sampling Diameter | 25 mm |
| Navigation | Autonomous GPS + LiDAR + IMU |
| Accuracy | ±2 cm |
| Communication | 4G / Wi-Fi / LoRa — |
| Data Output | pH, Nutrients, Moisture, EC, GPS — |
| Power Supply | Rechargeable Battery 8–10 hrs |
| Dimensions | 120 × 80 × 100 cm |
| Weight | ~120 kg |
| Operating Temperature | -10 to 50 °C |
| Protection Rating | IP65 — |
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High-precision soil sampling and field data collection for site-specific crop management.
Autonomous sampling for agricultural experiments, trials and research programs.
Collection of soil measurements including moisture, pH, EC and nutrient-related data.
Soil data collection to support informed fertilizer and nutrient management decisions.
Automated field sampling and georeferenced environmental data collection.
Configuration-specific availability and pricing.
Autonomous soil-sampling configuration with GPS, LiDAR and IMU navigation, multi-depth sampling and wireless communication.
Quotation requiredVersion and hardware compatibility information for supported products.
Digital monitoring and data visualization resource for the Auto Soil Sampling Robot. Supports review of georeferenced soil sampling results, sampling locations, soil measurements and field data collected during autonomous sampling operations.
Open ResourceProducts, accessories, gateways and software designed to work with this product.
Publisher-hosted papers linked through DOI and publisher URLs.
Adaptive AgroTech Team
Discover Applied Sciences, 2026
This study investigates the use of a local LoRa-based wireless network and a digital shadow for supervising and teleoperating agricultural mobile robots in complex field environments. The system combines GPS-based navigation, collision avoidance sensors, LoRa transmitters and repeaters, a digital representation of the robot, and a graphical user interface for remote supervision. The research evaluates long-range communication and robot control for agricultural field operations, with particular attention to communication reliability, latency, stability, and situation awareness. The results demonstrate the potential of LoRa-based connectivity for remote agricultural robot supervision while identifying communication range and latency as important challenges.
Publisher PageSupport for product selection, deployment, integration and continued operation.
Share your application, sensing requirements, environment and expected integration scope with our engineering team.
Contact Adaptive AgroTechYes. The Auto Soil Sampling Robot is designed with a modular architecture and can be configured for different sensing requirements. Compatible sensors can be integrated for soil, environmental and agricultural measurements, subject to hardware, communication and software compatibility.
The standard sampling depth is 0–20 cm and can be customized for specific applications. The multi-depth sampling mechanism allows soil samples to be collected from defined depths for precision agriculture, research and soil health assessment.
The robot uses autonomous navigation based on GPS, LiDAR and IMU technologies. Sampling missions can be planned by defining target locations, after which the robot autonomously navigates to the designated sampling points and performs soil collection.
The system can support soil-data workflows involving pH, nutrients, moisture, electrical conductivity (EC) and GPS-referenced measurements. The collected data can be used for soil health assessment, precision agriculture and site-specific management decisions.
The robot supports wireless communication through 4G, Wi-Fi and LoRa. This enables field data transmission and integration with remote monitoring or agricultural data-management workflows, depending on the deployed configuration.
The robot is designed for precision agriculture, agricultural research and development, soil health monitoring, fertilizer management and environmental studies. It can be deployed for systematic soil sampling, georeferenced field measurements and data-driven agricultural decision making.
Add the required product configuration to your cart, then send the complete selection to Adaptive AgroTech sales. Custom sensors, quantities, installation, training and integration requirements can all be included.
Your selected configuration and quantity will be carried into the quotation request automatically.
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