
Thunderbird 1 was developed to address a gap in the UAS market for high speed VTOL payload delivery. Powered by hybrid electric-gas turbine technology, the Thunderbird 1 can lift heavy payloads at high speed to its destination. This is currently under development. We are currently seeking expressions of interest.

Thunderbird 2 was designed to address the need for a wide body heavy lift drone in the global UAS market. Thunderbird 2 is a VTOL hybrid gas-electric platform to deliver pyloads at further distances and longer flight times with minimal footprint and easy transportation. This is currently under development and are seeking expressions of interest.

Over the course of ten years, the Impulse 2 was developed. As a basic DIY product, it contains some of the most cutting-edge features. Numerous accessories are included with the Impulse 2, such as the Titan Balancing Cradle, which holds the rotors in place while they are being balanced.


TurboScan is a new generation of micro turbine health monitoring system. Scheduled to be released in 2023, TurboScan provides micro turbine operators the ability to monitor the health of their engines. It is complimented with advanced software to record and interpret data in realtime.

The DynexHobby hardware is supported by an advanced software tool kit. Various software applications are available for performing vibration analysis and dynamic balancing.

A wide array of industries have adopted our products globally, ranging from UAS operators, maintenence organsisations to light industrial applications. Our products are targeted towards DIY users who prefer to customise their own applications.

DynexHobby provides out of box solutions to startups. This allows entreprenuers to rapidly develop Minimum Via Products to suit their indended market. Shown above is Whisper Aero who are currently developing a new generation of silent propulsion systems for Air Taxis.

The Acoustic Threat Identification System (ATIS) was created to help troops, firefighters, and search and rescue workers locate individuals or identify hazards in environments with little to no visibility. It triangulates the sound source and uses real-time algorithms and sophisticated acoustic sensors to identify it for the operator on a head-up display.