Euronext | ALUAV | € 32.00 | 09/15/2026

Multirotor drones are known for their vertical flight precision, hovering ability, and mechanical simplicity. Veronte Autopilot provides advanced control capabilities for all multirotor layouts, offering modular integration, customizable logic, and safety-critical features suited for commercial and tactical operations.

Multirotor Layout Compatibility

Quadcopters (X, H, + layouts)

Quadcopters (X, H, + layouts)

The most common geometry, supported by default.

Hexacopters / Octocopters

Hexacopters / Octocopters

Platforms with increased thrust and redundancy.

Trirotors

Trirotors

Supported with advanced control logic for yaw and pitch balance.

Coaxial and Custom Frames

Coaxial and Custom Frames

Compatible with stacked motor geometries and novel airframe designs.

Takeoff and Landing Capabilities

Takeoff

Takeoff

Vertical takeoff is automatic with environmental adaptation and configurable altitude/speed profiles. Multiple preconditions (arming state, GNSS fix, flight mode) can be enforced.

Landing

Landing

Landing in both static and moving platforms is possible with the use of Veronte Autopilot. The integration with relative positioning sensors (vision, IR, ultrasound, etc.) enables rendezvous algorithms.

Flight Control for Multirotor

Real-time attitude control ensures stability in turbulence and high wind. Veronte’s algorithms allow precise altitude hold, position lock, and autonomous flight path execution with rapid response to commands or sensor feedback.

Mission Capabilities & Precision Operations

Structure Inspection

Hover near vertical surfaces and dynamic path adaptation.

Low-Altitude Survey

Accurate data capture with gimbal stabilization.

Conflict Area Navigation

Operate in GNSS-denied environments with visual SLAM or external aids.

Synchronize tools like sprayers, cameras, or grippers.

Custom Safety Logic

Autonomous mission aborts, geofences, and mission transitions.

Redundancy, Safety and Compliance

Integrates redundant IMUs, dual GNSS, and multiple power rails being available in redundant autopilot configurations. Includes real-time monitoring, emergency mode transitions, and safe-throttle idle handling. Meets UAV safety protocols and supports certification processes.

Advanced Features for Multirotor

Trirotor Flight Support

Special yaw compensation logic.

Hybrid Power Compatibility

Supports electric, fuel-powered, or pitch-controlled rotors.

Autonomous Hover Routines

Hold or reposition dynamically based on mission state.

Integrated Payload Triggers

Logic-based activation of tools, cameras, and drop systems.