FFRobotics Harvester uses up to 12 robotic arms to pick a variety of fruits and vegetables with gentle, high-speed grippers and advanced vision, boosting productivity for orchards and farms.
The FFRobotics Harvester is a powerful, multi-arm robotic solution designed to automate the harvesting of fresh fruits such as apples, peaches, pears, and more. Engineered for high-volume orchards, it combines advanced AI-powered vision systems with mechanical picking arms to identify, select, and gently harvest fruit—mimicking the dexterity of the human hand while working tirelessly around the clock.
Equipped with up to 12 robotic arms, the Harvester can replace up to 10–15 human pickers, helping growers overcome labor shortages and reduce harvesting costs. Its patented picking technology ensures minimal bruising and maintains post-harvest fruit quality for fresh markets.
Key Features:
🤖 Up to 12 robotic arms – fast, efficient, and accurate fruit picking
🍏 AI vision system – detects ripeness, size, and location in real time
🛠️ Multiple end-effectors – customized for different fruit types
🌳 Ideal for orchards – supports various tree layouts and densities
📉 Reduces labor dependency – lowers costs and increases consistency
FFRobotics Harvester brings the future of orchard automation to life—delivering reliability, speed, and precision for modern fruit growers worldwide.
Dimensions (LxWxH) | 6.0x2.5x3.0 m |
Weight | 8000 kg |
Battery Type | Diesel/Electric |
Battery Life | 12 hours |
Payload Capacity | 200 kg (fruit) |
Crop Type | Apples, citrus, stone fruit |
Autonomy Level | Full |
Sensors | Vision, touch, force |
Year Released | 2019 (pilot) |
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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