We help companies develop custom products, prototypes and laboratory test systems that require multidisciplinary engineering. We define the system architecture, design key components and integrate mechanical engineering, electric drives, automation, simulation and testing to move projects from an initial concept to a validated prototype or functional system.
Our focus is on technical feasibility, reliability, reduced development risk and practical implementation.
We analyse technical challenges, conduct research and develop new technologies tailored to real project requirements.
We design custom systems, machines, devices and electric drives by combining mechanics, automation, simulation and data analysis.
We build prototypes and research test benches, integrate components and validate solutions through testing and measurement.
We developed a complete research test bench for controlled aerosol and airflow experiments. The project covered system architecture, mechanical and pneumatic design, component selection, prototyping, subsystem integration and engineering documentation. The result was a completed and accepted system used in research work.
We developed a compact electric propulsion concept for integration with a small watercraft. The project included drive-system development, CAD modelling, mechanical integration analysis and adaptation of the design to underwater operating conditions.
We developed a custom research test bench for controlled experiments involving pneumatic systems. The project included concept development, mechanical design, component selection, pneumatic-system integration and prototype construction tailored to the requirements of the research programme.
We developed an electromagnetic model of a reluctance motor for finite-element analysis. The project included topology selection, rotor and stator geometry development, magnetic-field analysis and evaluation of torque, efficiency and operating characteristics across the required speed and load range.
We are developing an automated pipeline for creating electric-machine models, running finite-element simulations and generating datasets and complete efficiency maps. The project combines parametric geometry, FEA, results processing and data preparation for future surrogate and AI-based models to shorten machine-design and optimisation cycles.
We develop custom equipment, research test benches, prototypes, electric machines and drive systems. IMEE can lead the work from requirements and system architecture through detailed engineering and integration to a tested, working solution.
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