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Lead end-to-end deployments of Zipline’s drone delivery infrastructure in Nigeria, coordinating engineering, logistics, and regulatory teams to launch new distribution centers safely and on schedule.
Design the physical user experience for Zipline’s next-gen drone logistics platform, turning constraints into intuitive, manufacturable products from concept to deployment.
Build predictive models and optimization algorithms to forecast demand, allocate resources, and improve efficiency across Zipline’s global drone-delivery network.
Senior Quality Engineer to design and scale drone manufacturing lines, ensuring high-volume production of electro-mechanical assemblies while driving quality, cost reduction, and process improvements.
Lead manufacturing strategy and operations for Zipline’s autonomous drone delivery system, scaling production capacity and factory footprint while driving cross-functional initiatives to improve quality, yield, and efficiency.
Own the schedule and execution for Zipline’s next-gen drone delivery container (EV3), coordinating mechanical, electrical, firmware, and manufacturing teams to move from design through global production ramps.
Build automated validation infrastructure for embedded flight software, including simulation and hardware-in-the-loop tests to verify reliability of safety-critical drone systems.
Design and run mechanical test systems for autonomous drone logistics hardware, iterating quickly to validate reliability in aerospace environments and support global deployments.
Design and run mechanical/electromechanical tests for Dropbox, Zipline’s customer-facing package-loading system, to validate reliability, safety, and performance before fleet deployment.
Design and deploy mechanical/electrical test rigs to validate next-gen drone delivery droids and ground stations, using Python automation and hands-on prototyping.
Owns reliability of critical mechanical/electromechanical systems like delivery pods, applying Design-for-Reliability and Physics-of-Failure to set targets, run FMEAs, and validate hardware for global drone delivery operations.
Lead reliability engineering for high-voltage power electronics in autonomous drone delivery systems, applying physics-of-failure and accelerated testing to ensure safe, long-life operation of charging and power distribution hardware.
Lead a team building and improving CI/CD, remote build execution, and developer tooling to speed up software delivery across Zipline’s autonomous drone logistics platform.
Own and harden security for Zipline’s autonomous drone logistics systems, including fleet orchestration, telemetry, and CI/CD, by designing controls, threat modeling, and driving measurable risk reduction in production.
Design and run mechanical test systems for autonomous delivery drones, iterating hardware to meet aerospace-grade reliability and field demands.
Design, build, and test hardware for Zipline’s long-range autonomous delivery drones, iterating from prototypes to field-ready systems that deliver critical goods globally.
Build and run hardware test rigs for Zipline’s autonomous delivery drones, validating avionics, power systems, and sensors to ensure flawless performance in real-world conditions.
Coordinate hardware development for autonomous drone delivery systems, managing timelines and cross-functional teams to build and test next-gen drones and ground infrastructure.
Lead Zipline’s Growth & Profitability program to align growth, customer adoption, and unit economics across engineering, operations, and sales while scaling the world’s largest autonomous delivery network.
Build features for Zipline’s consumer mobile and web apps using React Native, Python, and Go, focusing on fast, reliable delivery logistics.
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