Material Flow Simulation
Simulate material movement, process sequences and system behavior across connected production areas.
Move through every stage of automation with one connected approach.
Explore proven use cases for testing, validation and production optimization.
From initial planning to production-ready systems and automated engineering workflows.
Build reliable virtual commissioning workflows, industrial software and reusable expertise.
Tools for the Digital Factory
RF::SUITE
One connected platform for engineering, simulation, validation and production intelligence.
Explore RF::SUITE →
Choose the tools your workflow needs and connect them within one consistent engineering environment.
We combine simulation, virtual commissioning and industrial software expertise across demanding production environments.
From individual machines to complex production lines: we connect engineering, simulation and operation throughout the entire lifecycle.
Explore IndustriesWe participate in national and international research projects focused on digital engineering, automation, artificial intelligence and sustainable production systems.
Resilient, sustainable and adaptable industrial production systems.
→ 02 Research Project REDRIVESResilient drive technologies and robust industrial production processes.
→ 03 Research Project DIGIKLEBDigital methods for connected adhesive processes and quality assurance.
→ 04 Research Project GENIUSIntelligent engineering methods for data-driven manufacturing systems.
→Learn more about EKS InTec, our locations, career opportunities and how to get in touch with our team.
3D Simulation & Process Visualization
RF::YAMS enables engineers to model, visualize and analyze complex production systems in a virtual 3D environment. Material flow, system behavior and process dynamics can be evaluated before physical implementation.
RF::YAMS
RF::YAMS is the 3D simulation and visualization module within the RF::SUITE. It enables engineers to model, visualize and analyze complex production systems in a virtual environment.
Material flow, system behavior and process dynamics can be evaluated before physical implementation, supporting validation, communication and engineering decisions throughout the project lifecycle.
Core Functions
RF::YAMS combines 3D visualization, material flow simulation and system behavior analysis in one virtual environment for production engineering and virtual commissioning.
Simulate material movement, process sequences and system behavior across connected production areas.
Evaluate production dynamics, dependencies and interactions before physical implementation.
Review production layouts, resources and spatial relations in a transparent simulation environment.
Combine RF::YAMS with RF::ViPer, RF::RobSim and RF::SCOUT for connected simulation and analysis workflows.
Visualize complex production systems, robot cells and automation layouts in a virtual 3D environment.
Use the virtual model as a foundation for testing, validation and commissioning workflows.
Inside RF::YAMS
RF::YAMS combines 3D visualization, material flow simulation, digital twins and engineering workflows in a single simulation environment.
Build simulation-ready models from engineering data and create the foundation for digital production systems.
Simulate dynamic production behavior and analyze interactions between machines, transport systems and resources.
Reduce engineering effort through automation and structured project generation workflows.
Generate visual project documentation and provide engineering data for downstream processes.
Use a single project model across multiple engineering and operational scenarios.
RF::SUITE Integration
RF::YAMS is part of the RF::SUITE ecosystem. It provides the virtual 3D environment that can be connected with peripheral simulation, robot simulation, process analysis and virtual training.
Virtual 3D environment for production systems, material flow and process visualization.
Simulation of peripheral components, signals and automation behavior.
Robot program validation, motion simulation and cell layout review.
Process analysis, transparency, validation and optimization based on production data.
Training environments based on virtual production systems and RF::SUITE workflows.
Create the virtual production system in RF::YAMS.
Connect behavior, signals and robot motion.
Evaluate sequences, timing and process behavior.
Use virtual environments for knowledge transfer.
RF::YAMS Plugins
RF::YAMS can be extended with dedicated plugins for video creation and intelligent project guidance.
Create license-free 3D videos directly from RF::YAMS for seamless sharing, documentation and presentation.
Simplify and accelerate workflows with intelligent project guidance throughout the RF::YAMS environment.
Frequently Asked Questions
Learn more about simulation capabilities, integrations and practical applications of RF::YAMS.
Yes. RF::YAMS supports the simulation of a wide range of mechanical processes, including material flow, conveyor systems, collision detection and robot kinematics. Production sequences can be analyzed and validated in a virtual environment before physical implementation. Its logical simulation engine also enables the reliable simulation of highly dynamic production processes.
RF::YAMS includes advanced collision detection capabilities that continuously monitor interactions between objects within the virtual production environment. Potential collisions can be identified early during planning and validation, helping reduce implementation risks, downtime and engineering effort.
RF::YAMS can import and process various 3D engineering formats such as JT and DAE. In addition, a communication interface is required to connect simulation logic and automation systems. This interface can be generated using RF::VPM or created manually depending on project requirements.
RF::YAMS is used across industries where complex production systems must be planned, validated or optimized. Typical application areas include automotive manufacturing, aerospace, industrial production, logistics and energy systems. Its flexibility makes it suitable for a wide range of simulation scenarios.
Yes. RF::YAMS integrates seamlessly with other RF::SUITE modules and can exchange data with external platforms. Support for USD export enables integration with NVIDIA Omniverse™, while plugin and library support allows connection to additional third-party systems and engineering workflows.
Yes. RF::YAMS can serve as the basis for digital twin applications by combining engineering data, simulation models and operational information within a virtual 3D environment. This enables validation, visualization and analysis throughout the lifecycle of a production system.