Configure the aircraft's control center around the mission.
Our flight controllers are avionics infrastructure that bring together processing, sensor, communication, and software layers for a specific mission.
Hardware architecture
The flight controller is the aircraft's decision-making center. It processes sensor data, manages motors and control surfaces, and works together with the communication and software layers. This is not an electronics-store catalog — it's engineering infrastructure configured around the mission.
What problem does it solve?
Standard control boards may not fit every mission or sensor set. Mission-specific configuration guarantees the right sensor and communication support.
Inputs and outputs
Processing infrastructure
An embedded processor that handles flight decisions in real time.
Sensor connections
Interfaces with IMU, barometer, and other flight sensors.
Communication interfaces
Data links with the ground station and mission systems.
GPS and navigation support
Navigation integration for position and route tracking.
Technical specification areas
| Processing infrastructure | Determined per project |
|---|---|
| Sensor connections | Determined per project |
| Communication interfaces | Determined per project |
| GPS and navigation support | Determined per project |
| ESC connections | Determined per project |
| Software compatibility | Determined per project |
| Expansion | Determined per project |
| Integration support | Not specified |
Development process
- 1
Requirements
We define the mission profile and the required sensor set.
- 2
Hardware Design
We design the board architecture and its interfaces.
- 3
Software Integration
We adapt the flight software together with the hardware.
- 4
Testing
We validate it with bench testing and flight testing.
- 5
Delivery
We deliver it together with technical documentation.
