Flight R&D Engineer
Job Summary
Our mission is to make a world where everyone has access to delivery. Where goods move as freely as information moves today.
This is possible. Today the cost of moving on a scooter is 2/km. Thats the cost of moving a 150kg mass from point A to B. Were bringing that mass down to less than 5kgs concurrently bringing the cost down to 10 paise/km. This is how we make deliveries a reality. This is how we create a world where were doing billions of deliveries per day.
The tech is not there. The current cost of drone delivery is 100/km. We need to completely redefine the way things are done here. Were building the worlds most efficient aircraft from the ground-up and scaling that up to beyond anything the aerospace sector has ever seen. This cannot be an iterative process. We have to tear down all conventions and build everything up from scratch.
To do this we need nothing less than the best engineers. The ones who care about building something fundamentally different who are deeply curious about understanding the fundamentals of everything theyre working on who are dreamers that believe in the impossible.
The hardware on the drone is only half of what keeps it up in the air. The rest is the software both on the craft and on our ground station.
Our unique dual motor thrust vectored tail sitter with blended wing body design has to fly in almost all weather-including heavy winds and light rains autonomously. Were targeting 1000s of flights per day across all locations requiring us to rethink everything from firmware controls state estimation to even ground control and fleet management software.
Weve achieved an industry-leading payload-to-weight ratio of 2kg drone for 1kg payload and were pushing this even further. Every gram matter when youre revolutionizing logistics.
This is where cutting-edge aerospace engineering meets software scalability meets real-world impact. If you get excited about solving problems that span multiple disciplines that dont have textbook solutions this is your playground.
In this hands-on engineering role you will be at the front line of understanding how our aircraft behaves in the real world and ensuring it keeps getting safer smarter and more reliable. You will dig deep into flight data work closely with hardware and help define how the aircraft responds when things go wrong. This is a role for someone who thinks in first principles is energized by anomalies and finds satisfaction in turning raw logs and physical evidence into clear actionable understanding.
Flight Log Analysis & Root Cause Investigation: Own the post-flight analysis pipeline - parse visualize and interpret flight logs using tools like UAV Log viewer and ArduPilot Web Tools to identify anomalies failure signatures and off-nominal behaviour. Produce structured Root Cause Analysis (RCA) reports that trace failures to their physical origin with supporting evidence and quantitative data.
Craft Inspection & Physical Failure Analysis: Conduct systematic post-incident inspections of airframe propulsion and avionics hardware. Correlate physical findings with log data to build a complete picture of failure events. Maintain inspection checklists and contribute to evolving airworthiness standards for our thrust-vectored tail sitter platform.
Failsafe Definition & Safety Behaviour: Assist in defining reviewing and validating the aircrafts failsafe logic - covering stability loss as well as scenarios such as communication loss sensor degradation battery faults and actuator failures. Translate operational risk understanding into concrete parameter recommendations and behavioural specifications in collaboration with software and systems teams.
Peripheral Integration Support: Support the integration of new sensors and peripheral hardware onto the flight stack - including bench characterisation ground testing and in-flight data quality evaluation. Help validate that new hardware performs within bounds required for safe flight operations.
Required Skills & Experience
Experience: 0-2 years in aerospace UAV robotics or a related technical field. Strong academic background or project experience in aeronautics mechanical engineering physics or a closely related discipline.
Fundamentals: Solid grasp of flight mechanics rigid body dynamics and aerodynamic principles. Comfort reasoning from first principles about why a vehicle behaves the way it does - or why it stopped.
Analytical Rigour: Structured evidence-driven approach to problem-solving. Ability to form and test hypotheses against data identify root causes under ambiguity and communicate findings in well-organised written reports.
Hands-on experience: Building flying or repairing multirotors or fixed-wing UAVs with exposure to ArduPilot/PX4 or GCS tools (Mission Planner QGroundControl)
Documentation: Strong technical writing habits with the ability to produce clear RCA reports and inspection records for both engineering and cross-functional audiences.
Good to Have
Exposure to control theory - PID loops stability margins step response characterisation - even in an academic or simulation context
Familiarity with MAVLink dataflash logs or telemetry formats
Experience with SITL environments or hardware-in-the-loop testing
Working knowledge of Python for data processing and visualisation. Comfort with time-series flight data analysis.
Comprehensive health insurance to keep you and your loved ones covered
Relocation assistance and a daily travel stipend to ease your commute
Advanced salary credit to support you when you need it
A driven passionate team where youll have room to grow and thrive - this is more than just a job its a rare opportunity to build something meaningful from the ground up
In-office role working alternate Saturdays.
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Required Experience:
IC