Mechanical Engineer – Drone Development, Design & Test
Listed on 2026-09-12
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Engineering
Mechanical Engineer, Aerospace / Aviation / Avionics
About Us:
Havoc is a leader in all-domain collaborative autonomy. Its software-defined hardware approach powers military and commercial-grade autonomous systems across sea, air, and land to sense, decide, and act together in complex and contested environments. Havoc connects assets, enabling them to share information, adapt in real time, and continue operating even when communications are disrupted or denied. Havoc optimizes mission performance and minimizes human risk.
Havoc was founded in 2024 and headquartered in Providence, Rhode Island. Learn more at Havoc:
All-Domain Collaborative Autonomy .
HavocAI is seeking a Senior Mechanical Engineer to lead the technical maturation of Locust, our advanced unmanned aircraft system (UAS), as it transitions from a demonstrated prototype to a Department of Defense (DoD) fieldable, Low-Rate Initial Production (LRIP) platform.
This is a hands-on engineering leadership role where you'll drive airframe design for manufacture, structural analysis, and system-level integration while providing the program leadership necessary to keep the production effort on schedule and within budget.
You will serve as the primary technical authority for Locust's production readiness, working closely with manufacturing partners, government customers, and cross-functional engineering teams. Success in this role means delivering a robust, mission-ready aircraft that can withstand the demands of operational use while being reliably manufactured at production scale.
We are looking for an engineer who is equally comfortable designing parts in CAD, working with vendors and machinists, assembling prototypes, and getting into the field or test environment to understand why something failed.
This is not a purely analytical or desk-based engineering position. The ideal candidate has experience developing drones, UAVs, robotics, autonomous systems, or other lightweight electromechanical platforms and enjoys moving quickly between design and hardware.
Key ResponsibilitiesDesign mechanical components, assemblies, structures, enclosures, mounts, and mechanisms for unmanned aerial systems
Develop concepts and detailed designs using 3D CAD
Own mechanical designs from initial requirements through prototype, test, iteration, and production release
Build and assemble prototype vehicles and subsystems
Work directly with machine shops, fabrication vendors, and suppliers to rapidly produce prototype hardware
Develop engineering drawings, tolerances, interfaces, and manufacturing documentation
Perform engineering calculations including structural, load, thermal, vibration, tolerance, and basic mechanical analysis
Design lightweight structures while balancing strength, stiffness, manufacturability, cost, and weight
Develop and execute mechanical test plans Conduct structural, vibration, environmental, durability, and system-level testing
Diagnose mechanical failures and rapidly implement design improvements
Support flight testing and vehicle-level integration
Work closely with electrical, embedded, autonomy, controls, manufacturing, and test engineers
Design for manufacturability, assembly, serviceability, and field repair
Participate directly in vehicle builds, troubleshooting, test campaigns, and engineering validation
BS or MS in Mechanical Engineering, Aerospace Engineering, or a related discipline
3+ years of mechanical product development experience
Strong 3D CAD and mechanical design experience
Demonstrated experience taking hardware from concept through prototype and testing
Hands-on experience assembling, modifying, troubleshooting, and testing electromechanical systems
Strong understanding of mechanical design fundamentals including materials, fasteners, tolerancing, structures, and manufacturing processes
Experience designing parts for CNC machining, sheet metal, composites, additive manufacturing, or similar fabrication processes
Experience developing test fixtures and executing mechanical validation testing
Ability to independently troubleshoot hardware failures and drive design changes
Direct experience designing or developing UAVs, drones, UAS, aircraft, robotics, or autonomous vehicles
Experience with small or Group 1-3 unmanned aircraft
Experience with airframes, propulsion integration, payload integration, landing systems, or flight-control hardware
Experience with composite structures
Experience transitioning prototype designs into low-rate or production manufacturing
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