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Engineering Manager - Robotics & Drones

in 42103, Wuppertal, Nordrhein-Westfalen, Deutschland
Unternehmen: Aptiv
Vollzeit position
Verfasst am 2026-07-15
Berufliche Spezialisierung:
  • Software Entwicklung
    Robotik, Software-Architekt
Gehalts-/Lohnspanne oder Branchenbenchmark: 145125 - 170736 EUR pro Jahr EUR 145125.00 170736.00 YEAR
Stellenbeschreibung

Engineering Manager - Robotics & Drones

We are Aptiv - a global technology company with 200,000 specialists in 48 countries. We develop innovative software and build the hardware to bring autonomous driving cars, advanced driver‑assistance systems, connected vehicles and smart cities to life in a way that only we can. We work in partnership with almost all car manufacturers. Our sensors, systems and software can already be found in almost all passenger cars today.

We are building a new Robotics business at Aptiv, focused on Autonomous Mobile Robots (AMRs) and Drones for warehouse, industrial, and adjacent markets. So we are seeking an Engineering Manager with experience to define and own the end‑to‑end architecture for autonomous mobile robots (AMRs) and drone platforms while directly leading and growing high‑performing robotics development teams.

In this role, you will balance hands‑on architectural leadership with people management, guiding teams responsible for perception, localization, planning, safety, and platform software. You will establish technical direction, ensure architectural integrity across programs, and develop engineers through mentorship, coaching, and clear engineering standards. You will work closely with product management, hardware/SoC teams, and engineering partners to turn PoCs into scalable, reusable architectures that can be deployed across multiple customers and robotic form factors.

Key Responsibilities Architecture & System Design
  • Manage a team responsible for the overall software architecture for AMR and drone platforms, from sensors to perception, localization, planning, safety and cloud connectivity.
  • Support defining platform architecture based on ROS 2 / middleware, real‑time OS, and Linux, ensuring modularity, scalability, and re‑use across programs.
  • Support partition functionality across onboard compute (SoCs, MCUs) and offboard services, including edge and cloud where appropriate.
  • Support defining and maintaining clear APIs and interfaces between perception, mapping/localization, planning, control, safety, and fleet/enterprise systems.
  • Support verifying that the software architecture design meets all derived software requirements (performance, throughput/latency, moding)
Technical Leadership
  • Lead architecture reviews, design decisions, and trade‑offs (safety vs. performance, cost vs. capability, CPU/GPU/NPU offload, etc.).
  • Provide technical direction to software teams implementing autonomy, perception, and safety features.
  • Mentor senior and junior engineers on architectural best practices, coding standards, and design patterns for robotics systems.
  • Collaborate with embedded compute teams to map robotics workloads to heterogeneous compute (CPU, GPU, NPU, DSP).
Safety, Reliability & Compliance
  • Support architecture of the software stack to meet relevant functional safety standards (e.g., IEC 61508, ISO 13849, ISO 10218, ISO 3691‑4, ISO 12100 – as applicable to AMRs/industrial robots).
  • Support defining safety concepts and software patterns (safety monitors, watchdogs, safe states, redundancy, diagnostics).
  • Collaborate with safety engineering to develop and maintain safety cases, hazard analyses, and FMEAs for software.
  • Drive architectural strategies for robustness, resiliency, observability, and over‑the‑air updates.
Simulation, Tooling & Dev Ops
  • Define how simulation (e.g., Gazebo / Isaac / Webots / custom) fits into the development flow – from algorithm prototyping to regression and scenario testing.
  • Work with Dev Ops/Tools teams to shape CI/CD pipelines, testing strategy (HIL/SIL/MIL), and performance benchmarks for robotics software.
  • Evaluate and integrate open‑source components and third‑party SDKs, ensuring license compliance, maintainability, and fit to architecture.
Customer & Partner Engagement
  • Translate customer/partner requirements into technical architecture and system requirements.
  • Support PoCs and demos with partners (e.g., AMR OEMs, drone OEMs, industrial automation vendors), ensuring architectural alignment with the long‑term platform vision.
  • Contribute to technical roadmaps, build‑vs‑buy decisions, and ecosystem strategy (ROS 2 distributions, middleware vendors,…
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