Osiris Agriculture develops an autonomous robot designed to optimize irrigation, fertilization, and crop protection for industrial crops like potatoes and vegetables. This technology allows farmers to achieve higher yields while reducing water consumption and operational labor. The system supports farmers in their agroecological transition by precisely managing inputs and securing production against climate variability.
Funding
$2.3M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


AEFFGHD+2Founders
Product
Problem
European industrial crop farmers face challenges in optimizing irrigation, fertilization, and crop protection, leading to resource waste, yield variability, and increased environmental impact. Traditional methods often lack the precision needed to adapt to changing climatic conditions and specific plant needs.
Solution
Osiris Agriculture offers an autonomous, mobile robotic solution designed to optimize irrigation, fertilization, and crop protection specifically for potato and vegetable crops. The robot, named Oscar, automates tasks, enabling farmers to transition to agroecological practices while securing yields and reducing environmental impact. By providing precise application of resources, the system helps farmers minimize waste, control costs, and make data-driven decisions at the plant level. The technology aims to enhance productivity and sustainability in European industrial agriculture.
Target Audience
The primary target audience includes European farmers specializing in industrial crops such as potatoes and vegetables, seeking to improve resource efficiency and adopt sustainable agricultural practices.
Features
- Autonomous navigation and task execution within potato and vegetable fields
- Precision irrigation, delivering water precisely where and when needed
- Targeted fertilization, optimizing nutrient delivery for individual plants
- Automated crop protection, applying treatments only to affected areas
- Real-time data collection and analysis for informed decision-making
- Weather condition adaptation for efficient resource allocation