Discover a scalable, cost-effective solution for replacing expensive process controllers in serial production. This case study shows how a modular test system, powered by M!OS and Raspberry Pi, enables precise recording of force and torque curves.
Development support for a mass spectrometer: Software, control controller integration, GUI enhancement, and optimized measurement data processing for modern test and measurement systems.
This project report details the automation of complex, long-term stability testing for bimetallic temperature sensors. Discover how M!OS functions as an autonomous test system to control temperature cycles, precisely capture switching points, and deliver reliable, reproducible data for quality assurance, all without manual intervention.
Development of a secure and scalable control platform for avionics systems. Focused on robust software architecture, system integration, and compliance with stringent safety and certification requirements.
Innovative warning system for railway construction sites designed to improve worker safety. Precise localization and automated alerts ensure early hazard detection and more efficient site operations.
Development of modular embedded software for electronic plant protection documentation in agricultural engineering. The solution enables precise, sensor-based control of spray application and seamless, regulatory-compliant documentation for special crops such as fruit, wine and hop cultivation.
Development of embedded control software for a medical diagnostic system with high requirements for reliability, long-term stability and usability. The focus is on the secure integration of hardware components, precise processing of user inputs, and standards-compliant implementation in accordance with IEC 62304.
The existing RDS telematics system had been a central component of railway operations for many years, connecting a central server with numerous vehicle clients. The need for comprehensive modernisation was driven by the steady increase in system load, the emergence of new functional requirements and the high safety specifications.
It became apparent in a naval underwater unit that the existing electrical power supply systems were increasingly affected by ageing and obsolescence. The aim was to extend their service life by around 10 years to ensure operational readiness until new underwater platforms were introduced.
Modernise medical devices to comply with MDR – without losing diversity. We show how sustainable software development reduces costs and promotes innovation.