HOLD THE STANDOFF.
APPLY THE COAT.
An umbilical-fed applicator platform. The pressure stays on the ground; the machine flies the last few hundred millimetres.
Ground · Umbilical · Standoff · Trigger · Film
An umbilical-fed multirotor built to hold mechanical standoff against a tower, tank or façade and apply protective coating through a shrouded head. All the pressure, all the fluid mass and all the pot-life risk stay on the ground; the aircraft carries only the head, a short whip and a trigger valve. A work machine on the civil line, built around an auditable applied-volume record.
An umbilical-fed applicator platform. The pressure stays on the ground; the machine flies the last few hundred millimetres.
Ground · Umbilical · Standoff · Trigger · Film
The Coater CS-550 is an umbilical-fed multirotor built to apply protective coating and sealant to infrastructure surfaces — steel towers, storage tanks, bridge structures, façades and marine structures — from a hover a few hundred millimetres off the work. A shrouded applicator head, a short fluid whip and a trigger valve are the only fluid mass it carries; everything else — the bulk fluid, the proportioner, the pump, the pressure — stays on the ground.
The design logic starts from arithmetic, not preference: a hovering platform is an excellent positioner and a hopeless tank. A single maintenance coat moves roughly 0.58 kg of wet material per square metre; an onboard reservoir sized to a sensible airframe buys minutes of gun time, not a shift. So the Coater does not carry the coating — it carries the aim. Ground pump, ground proportioner, ground metering; the platform's job is to hold a repeatable few hundred millimetres of standoff against a real surface in real wind, and let the umbilical do the rest.
It sits in the Industrial line beside the Seeder CS-510, the Sprayer CS-560 and its closest sibling, the Washer CS-540 — a caged, umbilical-fed platform that shares its airframe, feelers and ground pump architecture so closely that the two are, by design, roughly the same machine wearing a different wetted path.
An onboard-reservoir, free-flying architecture buys minutes of gun time before it needs to land and refill — arithmetic that survives every plausible revision of the inputs. It survives on this machine only as a touch-up mode, where a small area is the whole job and rigging an umbilical is not worth it. Production work rides the umbilical.
Bulk coating, filter, proportioner, pump and flow meter sit on a skid at the base of the work — all the mass, all the pressure energy and all the pot-life risk, racked into a truck or skid, never carried aloft. A pressure-rated umbilical — hose, power and comms in a managed jacket on a tensioning reel — pays that pressure up to the aircraft.
At the platform, the umbilical loads directly into the lift core at a hard point: the single most safety-critical structural detail on the machine, because the platform-side quick-disconnect has to leave a 150-bar-class line safe if it ever separates. From there the fluid runs a short whip to a shrouded applicator head, firing below the rotor wash. Two to four compliant standoff feelers ride or lightly touch the surface ahead of the head — a mechanical datum, not an optical one, because a ±50 mm standoff error swings film build by roughly −15% / +20%, which is most of the industry tolerance band before wind, overlap or traverse-speed error are even counted.
The trigger only opens inside an interlocked envelope — valid standoff, on-surface, inside the environmental window — and the machine works bottom-to-top, so its own downwash sweeps the uncoated surface ahead of it rather than the wet film behind it. Command and control rides conventional radio C2 and GNSS position hold, permitted on this civil line; the umbilical adds a hard-line comms path for the fluid work itself, removing RF dropout as a close-work failure mode.
The complete data card for the Coater — dimensions, delivery performance, control, the applicator head, construction, safety and compliance, grouped the way a fleet buyer compares them.
Coverage is stated at the baseline pass strategy and moves with the coating chosen, standoff accuracy in wind, transfer efficiency at the surface, umbilical length and working height, and ground-station resupply and flush cadence. Film build is inferred and sampled, never controlled — acceptance stays with the asset owner's certified coatings inspector.
Canadian Shield's thesis is that manufacturing is the decisive capability, built sovereign and priced like a tool. The Coater advances that thesis with a fluid-handling grammar held once, in a shared library, and instanced across every wet-work product on the civil line.
The Coater does not draw its own fluid-handling engineering from scratch. It instances the five-stage process grammar, the wetted-path boundary and the umbilical hard-point rule that the Sprayer and the Washer also draw from — a single canon, amortised across three products instead of reinvented per machine. The Coater and the Washer in particular share the airframe, the cage, the feelers, the umbilical and the ground pump station so closely that the honest read is platform commonality: two members of one civil fluid-work family, differing mainly in the fluid, the pressure class and the wetted-material set.
And the estate's radio boundary runs the way it does across the whole Industrial line: the no-radio rule governs the defence, underground and tethered platforms without exception — but the surface civil line is the exception, and the Coater uses both radio and GNSS openly for flight, with the umbilical adding a hard-line path for the fluid work itself. A tank shell is not a jammed battlefield, and we do not engineer it like one.
The machine does not sell a superior finish — it sells a metered, logged, per-square-metre applied-volume record: position, standoff, flow, traverse speed, ambient and surface conditions, batch and lot. Film build stays inferred and sampled, never controlled, and acceptance stays exactly where it belongs — with the client's certified coatings inspector.
A Coater job is a loop anchored to the ground, not a free flight — illustrative of how the machine is used, not a work record. The asset owner's coating specification sets the target, the machine holds standoff and executes the pass strategy, and what comes home is a record.
The crew stages the ground fluid station at the base of the tower or tank — bulk coating, filter, proportioner, pump, heater and flush line on a skid — and spools out the umbilical. Before any real coating touches the line, the fan pattern and film-build model are calibrated against an inert medium: pigmented water matched for viscosity and density, never the coating itself. The coating specification is the asset owner's specifier and certified inspector's call — never ours.
The Coater lifts on the umbilical and brings its compliant feelers against the face, holding 150–300 mm mechanically as it works bottom-to-top so its own downwash sweeps ahead of the wet film, not through it. The trigger opens only inside the interlocked envelope — valid standoff, on-surface, inside the environmental window — and closes the moment any of the three drops out. The operator flies the plan and owns the exceptions; the machine holds the standoff, meters the flow and logs every pass.
At the end of a run — or the moment a pause threatens pot life on a two-component product — an automatic flush clears the umbilical before the coating can cure inside it; it is an interlock, not a procedure. Captured waste solvent is handled as the regulated stream it is. The client receives the per-square-metre applied-volume map: an auditable record ready for their own inspector's sign-off — never an acceptance call.
Three wet-work machines on the civil line instance one shared fluid-handling canon — the same process grammar, wetted-path boundary and umbilical hard-point rule, amortised across the family instead of reinvented per machine.
Holds mechanical standoff and applies protective coating through a shrouded head — the accountable coat.
Download PDF ↓Roughly the same machine wearing a different wetted path — shared airframe, cage, feelers, umbilical and ground pump station.
Download PDF ↓The third member of the fluid-work family, drawing on the same shared fluid-handling module and process grammar.
Download PDF ↓If you manage steel towers, storage tanks, bridge structures or façade maintenance with a specification and an inspector attached, the conversation starts with your coating spec — and with the machine built to hold standoff and execute it, band by band.