SW6010 is a mobile robot that autonomously navigates strawberry fields, using multiple arms to pick ripe fruit with advanced vision and AI. Helps address labor shortages and ensures gentle harvesting.
The Agrobot SW6010 is a state-of-the-art autonomous harvesting robot designed specifically for strawberries. Developed to meet the labor and quality challenges of modern berry production, the SW6010 uses advanced computer vision, AI-driven decision-making, and multiple robotic arms to detect, select, and gently harvest ripe strawberries with exceptional accuracy.
Engineered for use in both open fields and protected environments, the SW6010 performs selective harvesting at the plant level, ensuring that only the fruit at peak ripeness is picked. With its modular design and scalable performance, it helps producers reduce labor costs, minimize damage, and maintain consistent fruit quality across large-scale operations.
🍓 Selective Harvesting – Uses 3D vision and AI to identify and pick only ripe strawberries
🤖 Multiple Robotic Arms – Up to 24 independently controlled arms for high-speed, multi-fruit harvesting
🧠 AI-Driven Recognition – Assesses ripeness, size, and quality in real time
🚜 Autonomous Navigation – Moves through rows and adjusts to various field conditions
🔧 Modular & Scalable – Configurable for different growing systems and production volumes
🌿 Soft-Touch Grippers – Designed to prevent bruising and preserve fruit quality
Reduce reliance on seasonal labor
Increase harvest efficiency and consistency
Ensure gentle handling of delicate fruit
Improve yield traceability with harvest data logging
Operate sustainably with targeted, plant-by-plant harvesting
Agrobot SW6010 is the future of berry harvesting—combining gentle precision with industrial performance.
Dimensions (LxWxH) | 3.0x1.7x2.2 m |
Weight | 900 kg |
Battery Type | Li-ion |
Battery Life | 8 hours |
Crop Type | Strawberries |
Autonomy Level | Full |
Sensors | Cameras, AI Vision |
Connectivity | 4G, Wi-Fi |
Year Released | 2019 |
Attribute | Value | Description | Why It Matters |
---|---|---|---|
Crop Types | N/A | Compatible plant varieties | Application versatility |
Field Conditions | N/A | Terrain and weather capability | Deployment reliability |
Pesticide Resistance | N/A | Chemical exposure protection | Agricultural environment survival |
GPS Accuracy | N/A | Positioning precision (cm) | Precise farming operations |
Data Collection | N/A | Sensor types and capabilities | Farm management integration |
Seasonal Operation | N/A | Year-round capability | Farming cycle coverage |
Autonomy Level | N/A | Human supervision required | Labor cost reduction |
Yield Impact | N/A | Crop yield improvement (%) | ROI demonstration |
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