Autopilots
UNLEASH YOUR POTENTIAL

AUTOMATE ANY VEHICLE

Reliability, accuracy, autonomy

  • Add relevant value
  • Manage your fleet
  • CROSS-PLATFORM GCS
  • OPENSOURCE CODE
  • Customisation

Automated vehicles are nothing but vectors, value lies in the data they can generate autonomously.

 

Connect any payload, control it via any interface and start generating valuable data effortlessly.

Have full control over each vehicle

 

Upload waypoint missions with a simple interface

 

Monitor health status at a glance.

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Intuitive and Powerful Ground Control Station for PX4 and ArduPilot UAVs

QGroundControl provides full flight control and mission planning for any MAVLink enabled drone. It provides configuration for ArduPilot or PX4 Pro powered vehicles. Its primary goal is ease of use for first time and professional users. All the code is open-source source, so you can contribute and evolve it as you want.

From flight stack to ground control software, we firmly believe in open source. Benefit from a first-class team of developers all around the world.

PX4 powers any vehicle from racing and cargo drones through to ground vehicles. The powerful and uniquely flexible core of the Dronecode Platform is open-source, and available for you to use and customise as needed.

Our autopilots use the most fully-featured and robust hardware/software available

ArduPilot is a open source autopilot system supporting multi-copters, traditional helicopters, fixed wing aircraft and rovers. The source code is developed by a large community of professionals and enthusiasts.

We will be happy to provide our customers with tailored hardware and/or software developments to fit their specific applications.

The only boundary is your imagination.

autopilot
Pixhawk 3 pro drotek

Pixhawk 3 PRO

Pixhawk 3 Pro is a state-of-the-art autopilot system designed by Drotek and PX4. It features advanced processors and latest sensor arrays working with a dedicated real-time operating system, delivering incredible performance, flexibility, and reliability for controlling any autonomous vehicle.

Discover

DROPIX

Dropix is the legacy autopilot system designed by Drotek and based on Pixhawk 1. It has been flown seamlessly and has proven its reliability and performance over last years.

Discover
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Advanced autopilot
Pixhawk 3 PRO

Pixhawk 3 Pro is a state-of-the-art autopilot system designed by Drotek and PX4. It features advanced processors and latest sensor arrays working with a dedicated real-time operating system, delivering incredible performance, flexibility, and reliability for controlling any autonomous vehicle.

PIXHAWK Pro

DROPIX v2

Dropix is the legacy autopilot system designed by Drotek and based on Pixhawk 1. It has been flown seamlessly and has proven its reliability and performance over last years.

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Chimera  Paparazzi

Chimera is the latest in French Engineering and design from E.N.A.C.. Produce by DROTEK, this controller uses the latest STM32F7 processor to create the most comprehensive autopilot controller board yet. When you add the incredibly powerful and robust software (Paparazzi) you have an unbeatable platform. Unbeatable reliability and functionality.

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Our Partners

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orpheon partenaire drotek
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Intel
UBLOX
DroneCode
PX4Pro
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From The Blog

We are hiring ! Embedded systems in Drone Light Show

Drotek Events is looking for its next embedded systems engineer. You have solid engineering skills in C, C++ ? Experience with Real-Time Operating Systems? This job is made for you ! Drotek is divided into 3 poles: electronics, robotics and events. The Drotek events pole develops drone light show solutions dedicated to entertainment especially with
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New batch of Sirius F9P Rovers in production !

We have a new batch  of Sirius F9P Rovers in production !  The Sirius RTK GNSS Rover F9P has a built-in active antenna patch. It is capable of interacting with the Galileo satellites network, along with GPS, Beidou, Glonass and Galileo networks, which will provide more accuracy for its positioning. F9 Sirius Rover is designed to fit
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Improve your GNSS position thanks to multi-constellation and multi-frequency

  How to improve your GNSS position thanks to multi-constellation and multi-frequency ?         A GNSS receiver calculates its distance to the satellite thanks to the time, position and trajectory of the satellite. By trilateration, it gets its position. Three minimum satellites are therefore necessary to obtain a position. This position calculation
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