Attritable Airpower
Low-cost, mass-producible FPV platforms with thousands of payload and communications configurations, including fiber-optic zero-RF options for jammed environments and autonomous variants for operator-light missions.
Modern conflict has been redefined by small, cheap, attritable systems. A few hundred dollars of airframe can find, fix, and finish targets worth millions, and the side that can field, fly, repair, and replace drones fastest holds the initiative.
Western forces have spent years depending on foreign-manufactured platforms that carry supply-chain, data-security, and compliance risk. Warfighters need American-made systems that are affordable enough to lose, capable enough to matter, and available at the speed of the fight.
Low-cost, mass-producible FPV platforms with thousands of payload and communications configurations, including fiber-optic zero-RF options for jammed environments and autonomous variants for operator-light missions.
Heavy-lift platforms move ammunition, water, blood, and batteries to forward positions without putting a driver or a pilot at risk.
Combat-proven kinetic intercept against hostile drones, from small quadcopters up to Shahed-class one-way attack threats.
One software backbone for mission planning, sensor fusion, swarm coordination, and fleet management across every platform we make. Fleet hardening and anonymization keep operations attributable to no one.
The same autonomy software and ground control run every role, so a pilot trained on one Powerus platform is most of the way to all of them.
FPV airframes across four sizes with thousands of payload and comms configurations. Fiber-optic zero-RF variants fly through jamming that grounds conventional systems.
Heavy-lift across four weight classes, from 100 lb class to 1,000 lb class, moving critical supply to forward positions with no crew in the vehicle.
Radar-cued kinetic interception of hostile drones, including Shahed-class one-way attack munitions, at a fraction of the cost of a missile engagement.
Ghost Layer hardening and anonymization for operations in sensitive or contested environments, without data leakage or attribution.
Precision effects at squad level, flown by the team that called for them.
Mass precision at a cost per airframe that makes attrition acceptable.
Ammunition, water, blood, and batteries into contested positions.
Medical resupply forward and evacuation support on the return leg.
Standing counter-UAS coverage of bases, depots, and command nodes.
Counter-drone protection that moves with the element it protects.
Large-force training against threat-realistic target drones.
Many airframes under one operator and one mission plan.
Fiber-optic zero-RF flight where conventional links fail.
Powerus fields one autonomous architecture across six missions, shared platforms, shared ground control, a single U.S. supply chain.
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