Experience

Building systems, scaling workflows, and bringing clarity in complex aerospace programs.

Safran Passenger Innovations

Lead Systems Engineer • Munich - Germany

2023-Present

What I Actually Do

  • Architected end-to-end airborne SATCOM systems across hardware, software, RF, and network domains, managing 3,000+ requirements.
  • Defined system behavior through ConOps, functional chains, and MBSE-driven use cases.
  • Acted as technical interface between aircraft OEMs (Airbus, Boeing) and satellite providers (Viasat, SES, OneWeb).

Impact

  • Enabled structured system integration and certification of complex Ka/Ku communication systems.
  • Reduced ambiguity across multidisciplinary teams by translating stakeholder needs into clear system architectures.
  • Strengthened system reliability and maintainability through FMEA, fault detection, and lifecycle-driven design.

Tooling & Methods

  • MBSE: XatiS (CESAME), Cameo/SysML, Capella.
  • Requirements: DOORS, Polarion.
  • Standards & Processes: ARP4754A, ARP4761, DO-254, DO-178C, DO-160G, ARINC.
  • Python, LanChain, Agentic AI

Dassault Falcon Jet

Systems Engineering Intern • Delaware - USA

2022-2023

What I Actually Do

  • Supported development of avionics and SATCOM architectures including requirements and interface definitions.
  • Performed functional analysis and contribute to system-level design activities.
  • Assisted in coordination between engineering teams and suppliers.

Impact

  • Contributed to early-stage system definition and improved requirement clarity.
  • Supported certification and test planning activities for avionics systems.
  • Helped ensure alignment between system design and stakeholder expectations.

Tooling & Methods

  • Design & engineering: CATIA V5, AutoCAD.
  • Documentation & analysis: MS Office (Excel, Word, PowerPoint).
  • Systems engineering methods: functional analysis, interface definition, test planning.

Climate Technology

Senior Electrical Systems Engineer • Beirut - Lebanon

2012-2020

What I Actually Do

  • Coordinated cross-functional teams (20–30 engineers/technicians) and external stakeholders.
  • Managed full lifecycle: requirements → design → installation → verification → customer acceptance.
  • Delivered compliant and cost-optimized engineering solutions under technical, operational, and schedule constraints.

Impact

  • Delivered large-scale, compliant, and cost-optimized electrical systems across multiple industries.
  • Improved project execution efficiency through structured coordination and supervision.
  • Ensured reliable system delivery through risk management and cost control practices.

Tooling & Methods

  • Design & simulation: AutoCAD, Dialux, Ecodial.
  • Documentation & analysis: MS Office (Excel, Word, reporting, cost tracking).
  • Engineering domains: power systems, lighting design, safety & building systems.

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