UAV Engine EFI System

From automotive powertrain control to the low-altitude economy

UAV Engine EFI System
UAV Engine EFI System · Aviation EFI / FADEC

Overview

An aviation engine electronic control unit for large industrial UAVs and eVTOL, this is Hanruijing's strategic extension of its automotive core-controller technology into the low-altitude economy. It covers 9cc–550cc two-stroke and four-stroke piston engines and has been adapted to 24 engine models.

Built on a FADEC full-authority digital engine control architecture with ASIL-C software, it is validated to GJB 150A / GJB 151B for high altitude, low temperature and high-vibration operation.

Key Functions

Full-authority digital control

FADEC architecture closes the loop on fuel injection, ignition, intake and exhaust as one system.

Wide displacement coverage

9cc–550cc, two-stroke and four-stroke, from single-cylinder to four-cylinder engines.

Altitude adaptation

Pressure, temperature and humidity compensation keeps output and combustion stable above 5,000 m.

Redundant ignition & injection

Dual ignition drivers and redundant injection channels prevent single-point shutdown.

Range-extender integration

Works with generator and BMS to form 5 kW / 13.5 kW / 100 kW aviation range-extender systems.

Telemetry downlink

Engine status over CAN / UART for ground-station monitoring and fault logging.

Specifications

Displacement range9cc – 550cc
Engine typeTwo-stroke / four-stroke, 1–4 cylinders
Control architectureFADEC full-authority digital engine control
Functional safetyISO 26262 ASIL-C
Software scaleAUTOSAR architecture, 246 SWU-class software assets
Environmental standardsGJB 150A / GJB 151B / EMC
Operating temperature-40 °C to +85 °C
Engines adapted24 models

Applications

  • Industrial fixed-wing and compound-wing UAVs
  • Vertical take-off fixed-wing (VTOL)
  • eVTOL hybrid range-extender platforms
  • Target drones, inspection and mapping UAV propulsion

Why It Wins

Automotive-grade heritage

Automotive development process and validation — far more robust than hobby-grade EFI.

Fully localized

Domestic MCU and power devices, suited to customers with supply-chain requirements.

24-model experience

Proven adaptation across 24 engines shortens calibration time on new platforms.

Fuel & emissions optimization

Closed-loop combustion control cuts fuel burn and extends endurance.

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Frequently Asked Questions

Common questions about cooperation, lead time and certifications

What are the typical applications of UAV Engine EFI System?

Key applications include: Industrial fixed-wing and compound-wing UAVs, Vertical take-off fixed-wing (VTOL), eVTOL hybrid range-extender platforms, Target drones, inspection and mapping UAV propulsion.

What is the delivery form and technical support scope of UAV Engine EFI System?

We can supply a complete package of controller hardware, basic software and application software, or deliver hardware and software modules separately to fit your existing platform. CAN / UART protocols, calibration tools and integration support are included.

Do you support customized hardware and software development?

Yes. We cover the full stack — chip selection, hardware design, basic software (AUTOSAR / MCAL), application algorithms and calibration — and co-develop with vehicle and equipment OEMs, including support for DV/PV testing and vehicle calibration.

Which quality systems and certifications do you hold?

We are certified to ISO 9001:2015. Product development follows the ISO 26262 functional safety process (up to ASIL-D) and the AUTOSAR architecture standard; defence and UAV-related products meet GJB 150A / GJB 151B environmental requirements.

Need controller selection or custom development?

Tell us your E/E architecture, power level and target market — we respond with a preliminary proposal within 48 hours.

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