Power Electronics Engineer

Posted 2 Days Ago
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Paris, Île-de-France, FRA
In-Office
Senior level
Aerospace • Artificial Intelligence • Hardware • Defense
The Role
Lead the design and industrialization of embedded power and control electronics for airborne and ground defense systems. Own power architectures, converters, motor inverters, energy storage, protection, control algorithms, component selection, high-current PCB layout, thermal design, safety analysis, simulation, validation, EMC qualification, and production readiness. Collaborate with software, mechanical, propulsion, manufacturing, EMS, and safety teams while maintaining engineering documentation and supporting design reviews and industrialization.
Summary Generated by Built In

Embedded Power & Control Electronics

📍 Location: Paris Region (on-site)
🛰️ Sector: Next-gen European Defense
💼 Type: Full-time, Permanent
📈 Seniority: Senior
💰 Compensation: Competitive Salary + Equity + Full Health Coverage

About EGIDE

EGIDE is building a new European defense leader focused on scalable, intelligent air-defense architectures. We develop mass-use interceptors designed to neutralize low-cost, high-volume threats such as Shahed-type loitering munitions and FPV drones.
Our systems combine missile-grade lethality with modern software-defined architectures and electrically propelled interceptors, enabling a new class of cost-effective and rapidly deployable
air defense solutions.

We are assembling a world-class engineering team to design, test, and industrialize these systems at pace.

About the Role

As a Power Electronics Engineer, you will lead, directly or through design subcontractors under your technical authority, the design and industrialization of the embedded power and control electronics of our airborne and ground systems.

You will own both the power stage and its control: power conversion and distribution, three-phase inverters and motor control for high-speed electric machines, energy storage and power switching circuits, and system power supplies. The scope ranges from a few watts to tens of kilowatts, over a 3V to 60V voltage range and from milliamps to the hundred-amp range, under severe mass, volume, thermal and environmental constraints.

You will cover the design lifecycle from specification to a validated, production-ready definition, integrating manufacturability, assembly and testability (DFM / DFA / DFT) and cost from the first
schematic. Industrialization and production are carried out with the support of internal or external
manufacturing engineers and EMS partners, with whom you will work closely, as well as with the
Munition Safety Engineer and the electronics, embedded software, propulsion and mechanical teams.

What You’ll Do

  • Define power architectures and specify power boards from system requirements: power budgets, voltage rails, protection strategy, energy management, thermal and mass allocations.

  • Design and lead the design of power stages across the full power range:

    • Conversion & distribution: non-isolated and isolated DC/DC converters, high-current distribution, electronic fuses, inrush limiting and precharge, reverse polarity and transient protection

    • Motor drives: three-phase inverters for high-speed permanent magnet machines, gate drive, current sensing, power stage protection

    • Energy storage & switching: capacitor charging circuits, energy accumulation, controlled discharge and high-current switching for safety-critical functions

    • Power supplies: battery and external-source powered supplies for ground equipment

  • Design the control part: motor control algorithms (FOC, sensorless control, field weakening) converter control loops and stability, PWM and ADC synchronization, protection an monitoring functions, in coordination with the embedded software team

  • Size and select power components (Si and GaN MOSFETs, gate drivers, magnetics, capacitors, sensors); compute losses, efficiency and junction temperatures; define thermal, design with mechanical engineers

  • Lead high-current PCB layout: thick copper, busbars, commutation loop minimization, Kelvin connections, partitioning between power and control

  • Implement safety by design on safety-critical power functions (independent barriers, fail-safe states, no Single Point of Failure) with the Munition Safety Engineer; conduct FMECA, derating and reliability analyses

  • Plan and execute validation: simulation (SPICE, PLECS, MATLAB / Simulink), double pulse testing, efficiency and thermal mapping, load and motor test benches, EMC / E3 and environmental qualification

  • Design for manufacturing, assembly and test (DFM / DFA / DFT) with a design-to-cost approach: component standardization, automated assembly compatibility, thermal interface and potting constraints, test access and production test requirements

  • Support the manufacturing engineers and EMS partners during industrialization: design data package, prototype and pre-series builds, technical support on non-conformances and design changes

  • Produce and maintain the definition package (specifications, design justification, ICDs, test and acceptance procedures); participate in design reviews (PDR, CDR, PRR)

You Are a Fit If You Have

  • Engineering degree (power electronics, electrical engineering or equivalent)

  • 5+ years of experience designing low-voltage, high-current power electronics (48 V class and below), from a few watts to several kilowatts, ideally in electric vehicles, drones, aerospace or industrial drives

  • Strong command of DC/DC converter topologies, their control and stability, and of protection and power distribution circuits

  • Proven experience with three-phase inverters and motor control for permanent magnet machines (FOC, sensorless control), from power stage to firmware integration

  • Power component expertise: MOSFETs (Si, GaN), gate drivers, magnetics, capacitors, current sensing; loss and thermal calculations

  • Hands-on high-current PCB layout experience and associated ECAD tools (Altium Designer, Cadence, KiCad or equivalent)

  • Practice of simulation tools (LTspice, SIMetrix, PLECS, MATLAB / Simulink)

  • Lab expertise: power stage bring-up, double pulse testing, power analyzers, differential and current probes, thermal imaging

  • Understanding of EMI / EMC constraints of switching converters (input filters, layout,

  • conducted and radiated emissions)

  • Working knowledge of DFM / DFA / DFT constraints for power assemblies and a design-to-cost mindset

  • Ability to write structured engineering documentation and to work across multidisciplinary interfaces

Nice to Have

  • Experience in electric vehicles, ground or airborne (e-mobility, eVTOL, drones): traction inverters, power distribution, onboard converters

  • High-speed motor drives and aerospace actuators

  • Capacitor charging, pulsed power or high-current switching circuits

  • Battery systems knowledge (high-discharge lithium cells, BMS)

  • Embedded C for control loops on MCU / DSP

  • Military power and EMC standards (MIL-STD-704, MIL-STD-1275, MIL-STD-461) and safety-critical design (IEC 61508, ISO 26262 or munition safety standards)

  • Active security clearance or eligibility to obtain one

Why Join EGIDE?

  • Work on next-generation weapon systems addressing real-world, high-intensity threats

  • Own power and control electronics end to end, from watts to tens of kilowatts, from first

  • schematic to production-ready design

  • Competitive salary + meaningful equity

  • 100% health coverage

  • High-autonomy, engineering-driven culture with direct impact on system performance and cost

  • Concrete contribution to European strategic autonomy

Recruitment Process

  • First phone / video call screening

  • Technical deep dive

  • Case study

  • On-site final meeting

Skills Required

  • Engineering degree in power electronics, electrical engineering, or equivalent
  • 5+ years designing low-voltage, high-current power electronics, preferably 48 V class and below
  • Experience spanning power levels from a few watts to several kilowatts
  • Strong knowledge of DC/DC converter topologies, control, stability, protection, and power distribution
  • Experience with three-phase inverters and permanent-magnet motor control, including FOC and sensorless control
  • Expertise with MOSFETs, GaN devices, gate drivers, magnetics, capacitors, current sensing, loss calculations, and thermal calculations
  • Hands-on high-current PCB layout experience and familiarity with ECAD tools
  • Experience with LTspice, SIMetrix, PLECS, MATLAB, or Simulink
  • Laboratory experience with power-stage bring-up, double-pulse testing, power analyzers, differential and current probes, and thermal imaging
  • Understanding of EMI and EMC constraints for switching converters
  • Working knowledge of DFM, DFA, and DFT for power assemblies
  • Ability to write structured engineering documentation and collaborate across multidisciplinary teams
  • Experience with electric vehicles, e-mobility, eVTOL, drones, traction inverters, power distribution, or onboard converters
  • Experience with high-speed motor drives and aerospace actuators
  • Experience with capacitor charging, pulsed power, or high-current switching circuits
  • Battery systems knowledge, including high-discharge lithium cells and BMS
  • Embedded C experience for control loops on MCU or DSP platforms
  • Knowledge of MIL-STD-704, MIL-STD-1275, MIL-STD-461, IEC 61508, ISO 26262, or munition safety standards
  • Active security clearance or eligibility to obtain one
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The Company
14 Employees
Year Founded: 2025

What We Do

EGIDE is a European defense company building scalable, intelligent air-defense architectures. It develops mass-use interceptors and mission systems designed to combine missile-grade performance with modern embedded computing and advanced autonomy. Its work focuses on creating deployable, high-performance defense capabilities, positioning the company as a technology-driven provider for contemporary air-defense requirements across European security markets and critical national defense missions at scale.

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