Power Electronics Engineer
Arquimea
| Company | Arquimea |
| Category | Engineering |
| Location | — |
| Remote | — |
| Employment | Not stated |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 24 Jul 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (teamtailor) |
Description
ARQUIMEA , we are a technology company operating globally and providing innovate solutions and products in highly demanding sectors. Our areas of activity are Aerospace, Defense & Security, Big Science, Biotechnology and Fintech. Main function and scope: We are looking for Power Electronics Engineer with solid experience in power distribution systems, PCB design and hardware validation to join our Power Electronics Engineering Team. The successful candidate will contribute to the development and validation of advanced power electronics hardware for embedded and electromechanical systems operating in technically demanding environments. The role spans the full development cycle, from schematic design and PCB layout through to prototype bring-up, hardware testing and system-level validation and involves close collaboration with firmware, control, mechanical, and systems engineering teams. This position is especially suited to an engineer who combines strong theoretical foundations in power electronics with a practical, hands-on approach to design and validation. The candidate will participate in multidisciplinary R&D and product-oriented projects where hardware reliability, electromagnetic compatibility, thermal performance and design traceability are critical requirements. The candidate is not expected to be a senior expert in every area. We are looking for someone with solid power electronics fundamentals, good technical judgement and a strong motivation to design, build, test and improve real hardware systems. We are looking for curious, creative, tenacious and collaborative people, eager to build real things and unafraid to tackle hardware challenges in order to contribute to the advancement of highly demanding technology sectors. The ideal candidate is someone who enjoys designing, building and validating real hardware systems, learning from test results, diagnosing failures at the bench and working in close contact with multidisciplinary engineering teams. We value strong technical intuition, attention to detail, design ownership and a proactive attitude over very extensive prior experience. Key responsibilities: Design and develop power electronics hardware for embedded systems, including DC/DC converters, inverters, motor drives, battery management circuits, power distribution architectures and associated protection circuitry. Create and maintain schematics, PCB layouts, bills of materials, assembly drawings and technical documentation using Altium Designer or equivalent EDA tools. Define and apply PCB design rules for high-power and mixed-signal boards, including polygon pour strategies, thermal via placement, layer stack-up selection, controlled impedance routing and design-for-manufacturability considerations. Support the selection, evaluation and benchmarking of power semiconductors, gate drivers, passive components, magnetic components, connectors and other critical hardware elements. Define, plan and execute hardware testing and validation activities, including functional verification, electrical characterisation, thermal profiling, efficiency mapping, EMC pre-compliance checks and fault-injection testing. Set up laboratory test benches, design test fixtures and implement measurement procedures using oscilloscopes, power analysers, thermal cameras, network analysers and other relevant instrumentation. Perform design verification against system-level electrical, thermal and safety requirements; document results, identify deviations and propose corrective design actions. Contribute to the analysis and resolution of hardware failures and unexpected behaviours observed during integration, testing or field operation. Support simulation and modelling activities for power converter topologies, control loops, thermal networks and electromagnetic behaviour, using tools such as LTSPICE, PLECS, MATLAB/Simulink or equivalent. Collaborate with fi
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