Prodiginvulgar supports industrial robotics projects in Portugal and Europe with more than 30 years of practical experience in automotive and aerospace environments. Robot cells built for real production — reliable, safe and maintainable.
All ServicesIndustrial robotics uses robots, control systems, safety logic and mechanical integration to automate repetitive or critical tasks in production environments. A robot cell must be planned with focus on cycle time, safety, maintenance access and production continuity. In automotive and aerospace environments, robot cells must also meet strict traceability and reliability requirements. Integration is not just about the robot — it is about making the entire cell work reliably in a real production context.
From integration planning to commissioning and production handover — practical robotics support for real factory environments.
Full integration of robot cells including mechanical installation, safety fencing, guarding, PLC interface wiring and I/O commissioning. Planned around production constraints and maintenance access requirements.
Robot program development for new applications and modifications to existing programs. Motion paths, I/O logic, safety routines, error recovery and cycle optimisation. Experience with multiple industrial robot systems in automotive and aerospace environments.
Structured commissioning process covering safety validation, cycle testing, signal verification, fault recovery testing and production readiness confirmation. Documentation provided for maintenance and operations teams.
Analysis and improvement of existing robot cell cycle times. Motion path review, signal timing, wait conditions and process overlap opportunities — without compromising safety or reliability.
Review and validation of robot cell safety systems: safety PLCs, light curtains, safety mats, door interlocks, emergency stop circuits and risk assessment documentation for regulatory compliance.
Before integrating an industrial robot you need to define the production task clearly, assess the workspace, evaluate existing equipment, confirm safety requirements, determine cycle time targets and evaluate PLC and control system compatibility. Rushing integration without this context is one of the most common causes of robot cell commissioning problems and production delays.
Commissioning time depends on cell complexity, number of robots, PLC integration requirements, safety validation scope and production environment constraints. Simple single-robot cells may take days to weeks. Complex multi-robot automotive cells with full safety validation and PLC integration can take several weeks to months. Planning commissioning around production schedules is essential to minimise impact on existing production.
Yes. Prodiginvulgar carries out preventive and corrective maintenance on industrial robots, including cable harness replacement, mechanical inspection, axis calibration and full electrical diagnostics — independent of robot brand. All work is coordinated to minimise production downtime.
Yes. Many existing production lines can be adapted to include robot cells without full replacement. This depends on available workspace, structural capacity, existing PLC compatibility, safety system integration requirements and cycle time targets. A technical assessment of the existing installation is the correct first step before any integration proposal is made.
Robot programming covers the logic, motion paths and I/O signals within the robot controller itself. Robot cell integration covers the full system: mechanical installation, safety fencing, PLC interface, HMI alarm configuration, SCADA connectivity and production validation. A correctly integrated robot cell requires both — and both must be planned together from the beginning of the project.