Mission profiles

Mission‑level, multi‑domain robotics.

The mission profile is the product. We build platforms and profiles that match the environment, threat picture, and operator reality — then validate with test evidence.

Example mission lanes

Briefable lanes that drive decisions on range, payload, EW, sustainment, and training.

Trench ISR

Low altitude, short setup time, resilient links, repeatable behavior under pressure.

Operator‑tuned profiles

Long‑range FPV strike

Endurance + comms resilience, strict safety behaviors, predictable terminal performance.

Range + resilience

Critical logistics

Modular payload interfaces, delivery confirmation, routes designed around EW reality.

Proof of delivery

MAD‑P™ — Mission‑Adaptive Drone Platform

MAD‑P is DRONE DRIVER’s flagship multi‑domain platform family — the hardware backbone of our ecosystem. Instead of juggling dozens of unrelated airframes, MAD‑P gives you a small set of mission‑adaptive chassis across air, ground, and maritime roles.

  • Chassis system, not one‑offs: shared concepts across multirotor, fixed‑wing, hybrid, UGV, and USV forms.
  • Snap‑in mission pods: ISR, strike, EW, logistics, and med‑support modules with a common power/data backbone.
  • Born to work as a mesh: spectrum‑aware comms and telemetry designed for continuous improvement.

Blood Wing™ — Autonomous Blood & Medical Delivery

When artillery, loitering munitions, and FPVs own the roads, lifesaving logistics becomes a robotics problem. Blood Wing is MAD‑P focused on one mission: get blood and critical medical supplies to the right place, on time, every time.

  • Cold‑chain pods: temperature‑controlled, shock‑buffered modules with telemetry + chain‑of‑custody logging.
  • Multi‑domain delivery: VTOL/multirotor for reach, UGV for last‑meters under cover, optional USV corridors.
  • Survivable routing: EW‑aware paths and comms profiles that adapt under jamming; proof of delivery into logistics systems.

Bring us your mission profile

Range, payload, threat, EW, sustainment — we’ll translate constraints into an engineering plan.

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