Electrical Systems Engineer at SAFRAN — Akkodis Toulouse (2025-12 – Present)
- Obsolescence Management – A350 / A380: Coordinated the implementation of technical modifications with internal stakeholders (Design Office, Industrial teams, etc.)
- Coordinated testing activities (component procurement, equipment assembly, testing, validation of test reports) and issued associated technical requests
- Prepared technical justification notes and modification documentation (ECR & EDES)
- In-Service & Production Support – A350 / A380: Provided technical support to internal production teams and suppliers in resolving non-conformities
- Performed or coordinated technical investigations and root cause analyses
- Prepared modification documentation (ECR & EDES) related to design improvements, industrial transfers, in-service and production issues
- Drafted technical notes supporting the above activities
- Implemented design modifications on serial production equipment
- BBHM Redesign – A320: Prepared technical documentation to support internal and customer milestone reviews (drawings, specification activities, Verification & Validation, QJN, etc.)
Electrical Systems Engineer at Liebherr Aerospace — Akkodis Toulouse (2024-07 – 2025-12)
- Development of Air System Controllers for Helicopters: Contributed to the development of sensors and controllers for Leonardo AW169, AW139 NG, and Kopter AW09 helicopters
- Analyzed customer, regulatory, and internal requirements
- Supported ECSC AW139 NG controller certification activities
- Conducted CAN & ARINC 429 communication tests and EMI testing
- Selected, sized, and simulated electrical components for system design
- Performed design justification through electrical and EMC analyses
- Defined necessary test procedures to ensure functional validation and system performance evaluation, and executed tests
- Humidity Regulation System Development: Conducted verification and validation (V&V) of subsystems using DOORS
Power electronic Engineer – Power Conversion Team at AIRBUS — Akkodis Toulouse (2022-03 – 2024-06)
- Actively contributed to the development of a 10kW LVDC converter with a 28V output, ensuring effective interface management between our team, Airbus, and the supplier to guarantee successful design, development, and integration into the overall system
- Collaborated on the design and development of DC/DC power converters (28V DC – 10kW)
- Performed electronic function analyses and simulations, documenting results to ensure design compliance and performance efficiency
- Designed and validated electrical systems in accordance with ATA24 / ATA92 standards
- System Engineering: captured and managed requirements from customer needs to system-level definition, ensuring traceability to subsystems using DOORS
- Supplier Follow-up: led technical meetings, managed deliverables and schedules, resolved blocking issues, and assessed risks using JIRA
- Applied safety and compliance methods: Compliance Matrices, Means of Compliance, FMEA (Failure Mode and Effects Analysis), FHA (Functional Hazard Assessment), PSSA (Preliminary System Safety Assessment), SSA (System Safety Assessment)
Electrical Systems Engineer Intern – Energy Conversion Systems Integration at CRNA — Direction générale de l'aviation civile – Directorate of Air Navigation / Technical Infrastructure D Toulouse (2021-03 – 2021-09)
Participated in the installation and integration of energy conversion systems within a CRNA, in a critical continuous-operation environment
- Implemented a redundant electrical architecture from 20kV utility supply to 400V distribution via a 1000kVA HV/LV transformer
- Segregated and secured power paths: Normal bus for non-critical loads (offices, HVAC, lighting) and Backup bus for vital systems (radars, servers, computers, communication systems)
- Integrated and configured UPS systems in a redundant architecture, each capable of supporting 100% of critical load in case of failure
- Implemented filtering solutions to mitigate harmonics and disturbances generated by inverters
- Designed protection schemes against voltage surges and sags to ensure reliability and availability of critical systems
- Conducted impact studies of electrical incidents (notably short circuits) on switched-mode power supplies for IT and critical equipment, analyzing propagation to upstream distribution
- Evaluated dual-redundant power supply architectures, ensuring each source could autonomously support critical loads
- Simulated load-side short-circuit scenarios to analyze waveform behaviors across multiple stages of the power system
- Modeled a 2kW / 5V switched-mode power supply in PSIM and Simulink to study transient responses and fault conditions
- Designed and implemented an experimental test platform, including real power supplies and a programmable load, to validate simulation results through practical testing