EKS InTec
Company

Engineering expertise
with industrial focus

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EKS InTec Automation, simulation and engineering expertise.

Industry ?? Robotics

Robotics
Validate robotic production systems before startup

RF::SUITE can help robotics integrators and end users validate robot programs, cell layouts and interlock logic in simulation ??? before executing motion on real hardware.

Robotics ??? hero visual Image placeholder

Industry Priorities

Common priorities in Robotics

Engineering teams in this sector typically focus on predictable commissioning, transparent process behavior and scalable validation workflows.

01

Program Validation

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

02

Cell Layout Review

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

03

Collision Prevention

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

04

Reachability Analysis

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

05

Commissioning Speed

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

06

Multi-robot Coordination

These workflows are relevant for Robotics engineering teams prioritizing structured validation and operational readiness.

RF::SUITE Fit

Where RF::SUITE fits

RF::SUITE can support simulation, virtual commissioning, training and optimization workflows across the engineering lifecycle ??? from early planning through operational improvement.

Explore the full RF::SUITE platform ???

Typical Applications

Applications in this industry

Simulation helps teams validate concepts early. Virtual commissioning enables control logic and system behavior to be tested before hardware integration.

Robot Programming

Validate robot programs and motion sequences virtually.

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Collision Detection

Detect spatial conflicts before real-world damage occurs.

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Interlock Check

Validate interlocks and robot dependencies before commissioning.

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PLC Software Testing

Test control logic virtually before hardware integration.

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Factory Layout Simulation

Validate layouts and material flow before build-out.

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Industry Workflow

Typical workflow

A structured path from engineering data to operational improvement ??? supported by RF::SUITE simulation and analysis capabilities.

01Robot Cell Model
02Motion Simulation
03Logic Validation
04Commissioning
05Production Analysis
Robotics ??? workflow diagram Image placeholder

Operational Value

Engineering and operational impact

RF::SUITE can support measurable improvements across planning, commissioning and day-to-day operations.

Reduced commissioning risk

Virtual commissioning enables control logic and system sequences to be validated before hardware integration ??? supporting more predictable startup phases.

Safer robot motion validation

Collision detection and reachability analysis can help prevent spatial conflicts before programs are transferred to real robots.

End-to-end cell validation

Combining robot simulation with PLC testing supports validation of coordinated cell behavior across motion and control logic.

Data-driven optimization

Cycle time analysis and production optimization tools can support continuous improvement based on measurable process data.

FAQ

Questions about this industry

How can robot programs be validated before execution?

Robot programming validation in simulation checks paths, reachability and cell interactions before programs are transferred to real robots.

What is the difference between collision detection and interlock check?

Collision detection focuses on spatial overlaps, while interlock check evaluates whether signal and locking logic adequately protects critical robot constellations.

Can multi-robot cells be simulated?

RF::SUITE supports coordinated robot simulation and validation workflows for cells with multiple robots and shared workspaces.

How does PLC testing relate to robot commissioning?

PLC logic often coordinates robot sequences. Virtual PLC testing alongside robot simulation helps validate end-to-end cell behavior.

How can cell layouts be reviewed virtually?

Factory layout simulation can help validate spatial arrangements, reach envelopes and material flow within robot cells.

Which modules support robotics projects?

RF::RobSim, RF::YAMS, RF::ViPer and RF::SCOUT cover robot simulation, plant modeling, virtual commissioning and production analysis.

When should interlock checks be performed?

Interlock validation is most effective during virtual commissioning, before robots and peripherals are connected on the shop floor.

Explore RF::SUITE for robotics

See how virtual validation can support robot integration and commissioning.

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