THE PRODUCT IS
THE PACK — NOT THE UNIT
Eight coordinated carriers. One fibre trunk. One operator. Nothing to jam.
Distributed Cargo · Recon Pods · Relay Nodes · Route Survey
Eight small moulded-polymer carriers working as one — cargo, sensing, relay and survey distributed across a pack that degrades gracefully where a single vehicle fails absolutely. Coordinated over fibre, with no radio and no GPS: a pack, choreographed, with nothing to jam.
Eight coordinated carriers. One fibre trunk. One operator. Nothing to jam.
Distributed Cargo · Recon Pods · Relay Nodes · Route Survey
Wolf CS-230 is the ground family's coordination tier: a pack of eight small, deliberately plain tracked carriers — 80 kg apiece — whose value lives not in any one hull but in what eight of them do together.
Each unit is a moulded GF-nylon tub sized for numbers: cheap to build because the chassis is a moulding, not a weldment. Each carries 20 kg in a single standardized bay — a dimensional subset of the family deck standard — so a pack fields a mix: recon pods, relay nodes, cargo panniers, route-survey packs, passive markers, recovery kit. Eight units, ~160 kg distributed, and no single loss that breaks the mission.
Coordination is the engineering. The leader trails one optical fibre trunk back to the operator; members join by short inter-unit spokes. One person supervises the pack — authorizing tasks, not steering eight joysticks — while every unit holds the family rule for itself: uncertain, or cut off? Stop and hold.
Need six of eight units to deliver? At 90% per-unit availability the pack answers the mission ~96% of the time — resilience bought with numbers, not exquisite hardware. We also publish the caveat: that binomial assumes independent failures and is stated as the upper bound it is.
The coordinated drone clouds of the literature need spectrum. The Wolf refuses spectrum — so its coordination is built from things that cannot be jammed: fibre, clocks and perception.
The leader carries the long optical trunk to the operator — a few kilograms of fibre on one unit instead of tens across a star. Members hang off short inter-unit spokes: cut one spoke and you lose one unit's link, not the pack; lose the leader and the pack falls back to its autonomous behaviors and holds. Bandwidth and latency over fibre are effectively free — the engineering cost is mechanical: payout, snag and line-crossing, handled in hardware rather than in spectrum.
Beneath the links sits a quiet design truth: on a small autonomous unit, the pack's mind must be cheap in watts. On firm ground a Wolf spends more energy thinking than driving — so compute-power engineering is range engineering, and the power-state architecture is a first-class design object.
The complete data card for the Wolf — unit numbers and pack numbers alike: dimensions, mobility, power, coordination, payload and compliance, grouped the way a fleet buyer compares them.
Pack availability assumes independent unit failures and is printed as the upper bound it is. Every range figure states its ground class and season; the deep-snow figure is the one the 3 km pack mission radius is sized against.
The fleet's thesis is that depth beats exquisiteness — many cheap, manufacturable units where the loss of one changes nothing. The Wolf is that thesis on the ground: the only ground platform small enough for the hull itself to be a moulding, straight off the division's own tooling.
And the fence is drawn tighter here than anywhere: the family rule — carriers, not munitions — applies to the unit and to the pack as a whole. Coordinated behavior is a logistics and sensing multiplier, nothing else; no unit carries an emitter, an effector or a weapon of any kind, and no pack behavior can compose one. Coordinated carriers — never a strike platform. That is the design, not a caption.
A Grizzly chooses one module; a Wolf pack fields a mix — sensing here, cargo there, a relay on the ridge. It surveys routes ahead of the family's heavy movers, lays short fibre legs, and hauls distributed loads no single small vehicle could. The bay is a subset of the family deck standard, so pack modules and family modules grow from one interface.
One pack mission, walked end to end — illustrative of how the pack is used, not a mission record.
The pack arrives as freight — eight units and their swap packs on one light trailer or a Grizzly-family deck. At the drop point the modules are mixed for the task: two recon pods, a relay, four cargo panniers, a survey pack. Clocks sync at the physical dock. Nothing transmits.
The leader pays out the trunk; members spoke on and spread to their lanes inside the 3 km mission radius. One operator authorizes tasks over the fibre; units execute and report back down the line. A unit that bogs or falters stops and holds — and the pack re-tasks around it, which is the entire point of being eight.
Tasks done, the pack musters on the leader, respools its spokes and walks the trunk home. Packs swap by hand — 15 kg, one person. A held unit is recovered by its packmates' recovery kit or a follow-on carrier; its position is known to the metre, because it stopped where it stood.
Wolf is the coordination tier of the six-platform ground family. Five siblings share its chassis logic, deck standard and no-radio guidance tiers — same doctrine, different jobs.
Eight coordinated carriers on one fibre trunk — distributed cargo, sensing and relay that degrade gracefully.
Download PDF ↓The heavy all-terrain mule — its deck standard, console and safety chain are engineering the family buys once.
Download PDF ↓If your mission survives on distributed logistics, sensing and relay — and cannot depend on spectrum — the pack conversation starts here.