Performance that is measured, results that are optimized.
ICR-ECO combines collaborative robotics, computer vision, and NIR spectrography with a proprietary measurement methodology to understand, optimize, and maximize material recovery in every plant.
THE PERFORMANCE
The success of an installation is not measured by the captures made by each robot, but by the percentage of target material that the plant manages to recover. ICR-ECO sizes each solution to achieve this goal with the optimum number of robots.
OUR APPROACH
Three key metrics for understanding and enhancing performance
ICR-ECO continuously monitors the installation's operation and converts data into actionable insights for decision-making and process improvement.
Our three KPIs allow for the evaluation of actual performance and the detection of improvement opportunities in real time.
1. Target Detection
Measures the system's capacity to accurately identify the target materials present on the conveyor belt.
2. Effective Capture
Quantifies the percentage of identified materials successfully recovered by the automated robotic system.
3. Plant Utilization
Monitors real-time robot operation and idle times, reflecting the degree of target material availability.
TAILORED ENGINEERING FOR EVERY PLANT
By analyzing flow, materials, and recovery goals, we scale the facility with the exact number of robots required to maximize your recovery percentage.
1. Optimal dimensioning of robot quantity.
2. Preliminary study of flow and materials.
3. Maximum recovery of the target material.
4. Continuous improvement based on actual data.

Intelligent automation for waste sorting

Collaborative robotics, machine vision, and NIR spectrography for recycling and advanced material recovery plants.
ICR-ECO develops robotic systems to automate sorting and material recovery processes in real industrial environments.
The technology combines collaborative robotics, artificial intelligence, optical sensors, and advanced detection systems to optimize operational efficiency and improve the recovery of valuable materials.
Modular design
Collaborative robots and real-time intelligent sorting.
ICR-ECO processes heterogeneous waste streams through modular configurations adaptable to each facility, integrating:
Up to 12 collaborative industrial robots
NIR Spectrography
Machine Vision
3D Laser Sensors
Smart Sorting Hoppers
Vibratory Distribution Systems
Ferromagnetic Separation

Advanced industrial vacuum capture

ICR-ECO incorporates high-power suction systems combined with laser proximity sensors for the precise recovery of bulky or heavy items.
The technology is designed to operate in complex environments with humidity, dust, and variable waste streams.

Material recognition

ICR-ECO enables the identification of multiple materials and compounds to optimize waste sorting and recovery processes.
ICR-ECO enables processing different waste and material streams from sorting, recycling, and recovery processes, recognizing:
Cellulosic material variants
Plastics and polymers
Textiles
Lightweight packaging
Residual waste
Selectively collected waste
Commingled waste streams

Technology validated in real industrial environments

System developed to operate under real industrial conditions in waste sorting and recovery processes.
(*) Cellulosic material classification technique (corrugated cardboard)

Get in touch for further details

info@icr-eco.com
Leading technology for efficient waste management.

Desarrolladores del proyecto

ICR-ECO is a solution jointly developed by Ecocidi Recursos and IJR Robotica to automate waste sorting processes using artificial intelligence and industrial robotics.