LettuceBot uses computer vision and AI to scan lettuce fields, precisely thin plants for optimal growth, and collect agronomic data for farmers, minimizing waste.
LettuceBot is an innovative autonomous farming robot designed to transform lettuce cultivation through cutting-edge technology and precision automation. Developed to handle the demanding tasks of planting, thinning, and harvesting lettuce, LettuceBot helps growers increase productivity while reducing labor costs and environmental impact.
Equipped with advanced vision systems and intelligent algorithms, LettuceBot identifies lettuce plants with pinpoint accuracy, ensuring optimal spacing and healthier crop growth. Its rugged design and adaptive capabilities allow it to operate efficiently across diverse field conditions.
🤖 Fully Autonomous Operation – Works day and night with minimal human intervention
🌿 Precision Plant Thinning and Weeding – Improves crop uniformity and yield quality
📷 Advanced Vision & AI – Detects and treats individual plants with high accuracy
🔋 Long Battery Life – Designed for extended field operations
🌎 Sustainable Farming – Reduces chemical use and soil disturbance
Boost harvest quality and consistency
Cut down on manual labor and input costs
Promote environmentally friendly farming practices
Seamlessly integrates into existing farm workflows
LettuceBot is more than a robot — it’s your partner in cultivating the freshest, healthiest lettuce with greater efficiency.
Dimensions (LxWxH) | 3.5x2.4x2.2 m (est.) |
Weight | 900 kg (est.) |
Battery Type | Tractor-powered |
Battery Life | N/A |
Payload Capacity | N/A |
Field Coverage | Not specified |
Working Speed | Not specified |
Crop Type | Lettuce |
Autonomy Level | Partial (implement) |
Sensors | Cameras, vision |
Connectivity | Not specified |
Year Released | 2015 |
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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