Network
System architecture and coordination
HyperJet scales from a single turret to several pump stations that work as one defensive network.
Architecture
One pump station, up to eight turrets
The pump station holds the fluid tank, the 7,000-bar class pump and the power supply, and feeds up to eight turrets through high-pressure lines. Stations can be networked for hot swap.
Power comes from the vehicle, a Li-ion battery bank or a lightweight APU. Reloading means refilling the tank.
Software
Software and coordination layer
A large part of the system is software, electronics, distributed control and synchronisation. The turret performs the physical engagement. The software around it handles detection, target selection, fire control, hit confirmation, target reassignment and prioritisation.
A shared defensive network
Over the long term, the architecture will extend beyond a single turret to a shared defensive network with common coordinate grids, distributed sensor fusion, target arbitration, priority management and synchronised engagement across nodes and defensive layers.
This architecture is designed for saturation attacks and coordinated drone operations, where several defensive systems have to function as one network.
Integration
Integration with third-party systems
HyperJet supplies effectors, control modules and integration components to C-UAS manufacturers and layered air-defence integrators. The effector works with third-party turrets, sensors, command systems and multi-layer defence architectures, and accepts cueing from third-party detection and command-and-control.
Integrators can request technical information through the contact form.