UAV propulsion systems
Powering the next generation of Indian UAVs.
Indigenous propulsion systems engineered for heavy-lift and endurance missions in the harshest conditions.

The propulsion stack.
Three components ready to order, three in development. All of them designed to run as one system rather than a shelf of parts.
Available now
Built, bench-tested and shipping from Manipal. Tell us your mission and we will quote.

8014 motor
A heavy-lift motor wound for endurance. Machined aluminium housing, copper stator, and thermal headroom for long missions under load.
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Electronic speed controller
Sustained current delivery with a low temperature rise, so throttle response holds through long hover and climb segments.
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Flight controller
A 32-bit control board with onboard logging, ready for open firmware and field tuning. INAV and Betaflight supported.
EnquireIn development
Internal builds and CAD. Timelines move, so nothing here is a shipped spec.

Composite propellers
- In-house development. Blades designed specifically for the Aerionix propulsion ecosystem.
- Automated design iterations. Proprietary software generates and evaluates geometries across operating conditions, targeting up to 15% longer flight time.
- Full-stack optimisation. Motor, ESC and propeller matched as one system rather than tuned in isolation.

ExpressLRS link
- Long-range communication. A high-performance, low-latency link built for reliable long-distance control.
- High update rates. Fast packet rates for responsive, precise control in demanding operations.
- Robust connectivity. Frequency hopping and link-quality monitoring keep the link alive in harsh RF environments.
- Open and flexible. An open-source ExpressLRS core, customisable across platforms and mission requirements.

Frame
A fixed-wing VTOL platform built around our own propulsion chain.
- Seamless hardware ecosystem. Aerionix motors, ESCs, flight controller, batteries, sensors and payloads on one standardised platform.
- Industrial, all-weather design. A rugged enclosed frame with dust and water resistance and integrated cooling, not a hobby-grade open build.
- Modular and repairable. Quick to deploy, maintain and upgrade, which means less downtime for commercial operations.
The layer above the hardware.
A ground station on the same telemetry as the hardware: mission control, aircraft health and an AI layer reading every flight.
Ground station
For the operator
Telemetry, mission control and aircraft health in one console, with an AI layer reading every flight.
Health intelligence. Anomalies and emerging faults surfaced from live telemetry, sharper with every flight.
Unified cloud. Fleet-wide data stored securely, powering better predictive models.
Voice co-pilot. Status reports, warnings and mission handling by voice.

One ecosystem, from winding to warning.
Motors and speed controllers carry embedded thermal and vibration sensors, streaming RPM, heat and current spikes straight to the flight controller.
A real-time data fusion stack built on open-source foundations filters sensor noise within milliseconds, so the aircraft acts on clean signal.
A predictive layer warns the pilot about component desync or overheating before it becomes a failure in the air.
04 About us
We build the whole aircraft, not a shelf of parts.
Aerionix is the UAV propulsion arm of Redinium Technologies Pvt. Ltd., based in Manipal, Karnataka. We design, wind and test motors, speed controllers and flight controllers in house, then tune them against each other instead of against a datasheet.
Around that hardware we are building the airframe, the propeller, the radio link and the software layer that reads every flight. One team, one ecosystem, one view of aircraft health.
Why Aerionix.
Built in India, owned end to end
Sovereign supply chain. Designed and manufactured in India, so programs are not exposed to import lead times.
Designed, not white-labelled. Our core components are engineered in house, giving us control over design, integration, repair and upgrades.
Full-system accountability. We take responsibility for the entire drone, not just individual components, so customers get one integrated system with clear accountability for performance and reliability.
Engineered as one system
One ecosystem. Motors, ESCs, flight controllers, batteries and software run as a single connected system with one view of aircraft health, the layer no one else is building.
End-to-end optimisation. Motor, controller and firmware are tuned against each other, not against a datasheet.
Optimised SKU. Instead of building dozens of motors for every application, we develop standardised drones and optimise the propulsion system around them. Fewer SKUs, simpler manufacturing, lower cost.
Read by software, proven in the field
Integrated intelligence. Sensing, firmware and prediction ship together instead of being bolted on later.
Data-driven planning. The ground station feeds real operations back into the roadmap: how customers fly, what they need next and where failures occur.
Engineered for extremes. Validated for heat, dust and vibration loads that heavy-lift and endurance missions produce.
Talk to the founders.
Reach any of us directly, or use the form below and it lands with the right person.
05 Contact
Tell us about your mission.
Payload, endurance target, operating conditions. Send the constraints and we will tell you what the stack can do.


