Owl · CS-140 · Silent / Night ISR Platform

HEARD BY NO ONE.
HOME BEFORE THE LIGHT.

A big, slow propeller and an IR-biased eye — orbiting instead of hovering, unheard, unseen, unjammed.

Perimeter Watch · Route Overwatch · Night ISR · Site Surveillance

~2.1 H
Endurance on station
Ø0.55 M
Propeller — the quiet budget's variable
~86 M/S
Propeller tip speed (~M0.25)
0
Transmitters aboard, in any configuration
What It Is

A Quiet Fixed-Wing Watcher.
The Air Family's Night Eye.


Owl CS-140 is a quiet, fixed-wing electric aircraft built to orbit a route, perimeter or site through the night — unseen and unheard. It is a passive-sensor carrier, not an interceptor: no warhead, no energetic payload, nothing aboard that can strike, drop or designate.

It takes its place among four other airframes on the same launcher-and-doctrine logic. Kestrel is the cheap, attritable scout; Loon is the long-endurance, long-range eye; Raven is the family's deliberate radio exception — comms relay, decoy, electronic support. Owl is the one built purely for quiet: acoustic and thermal restraint carried ahead of reach or speed. It does not perch on the target; it circles above it. The platform's own hover cross-check makes the reason arithmetic rather than opinion — a same-mass quadrotor would burn roughly five to six times more power to hover than the Owl burns to cruise, so an orbiting fixed wing beats a loitering rotor on this mission.

The doctrine goes one step past the fleet's usual carriers-not-munitions rule. Owl does not just avoid explosives — it carries no effect of any kind. It does not ram, drop, designate for, or trigger anything. It carries sensors, and only sensors. Record-and-return is the baseline data path — perfectly silent, nothing radiated — with an optional trailing fibre for a live, human-in-loop feed on missions that need one. No RF payload of any kind: emission is deliberately left to Raven, so the family's one aircraft built for radio silence never becomes its own exception.

The Claim
Not perched. Orbiting.

Hover would cost five to six times cruise power on this airframe — arithmetic, not opinion. So the Owl never lands on the target; it circles above it, quietly, on a big slow propeller, until the battery says it's time to go home.

  • No transmitter — every frame records onboard; the only live option is a trailing fibre with a human in the loop.
  • No effector — it does not ram, drop, designate for, or trigger anything; sensors, and only sensors.
  • No prepared ground — a ~4 m bungee rail out, a deep-stall or belly-skid landing home.
01 How It Works · The Quiet Chain

LAUNCH QUIET. CLIMB QUIET. WATCH QUIET.


A bungee-elastic rail — about four metres, on unprepared ground — takes the Owl to stall-plus speed at a benign ~1.8 g: far gentler than the shock the fleet's tube-launched interceptors are built to survive. No pyrotechnics, no compressed-gas requirement, no shock-hardening program. That gentleness is also why COTS sensor and avionics hardware is credible on this platform at all.

Once airborne, one engineering control governs the quiet budget, and only one: propeller tip speed. A big propeller turning slowly moves the same air as a small one screaming — roughly 86 m/s at the tip, about Mach 0.25 — and classical propeller acoustics puts rotational noise near the fifth power of that number. No dB(A)-at-distance figure is published for this aircraft, for either the cruise condition or the launch transient: that number comes from a calibrated ground-acoustics measurement, not from arithmetic, and Canadian Shield does not publish arithmetic as measurement.

On station the nose or belly bay carries a passive EO/IR sensor biased toward infrared — the name mission is night watch off motor-and-battery contrast — and every frame is recorded onboard. There is no transmitter on this aircraft, in any configuration: the only live option is an optional trailing fibre for a human-in-loop feed. When the sortie ends, the Owl comes down on a deep-stall or belly-skid landing, on ground it never needed prepared, and the record comes home with the airframe.

NIGHT ORBIT ORBIT, NOT HOVER — THE QUIET-BUDGET ARGUMENT WATCH POINT EO/IR — IR-BIASED NIGHT CORE V_tip ≈86 m/s · ~M0.25 — THE QUIET-BUDGET VARIABLE NO dB(A)-AT-DISTANCE FIGURE PUBLISHED NO TRANSMITTER — RECORD ONBOARD OPTIONAL FIBRE — TIER 2, HUMAN-IN-LOOP HOVER CROSS-CHECK, SAME MASS: ~580 W · ~25 MIN — ~5–6× CRUISE POWER CS-140 · big prop, low RPM — orbiting a watch point on the quiet budget
Full Specification Sheet

Every Number, Grouped for the Walk-Around.


The complete data card for the Owl — dimensions, performance, launch and recovery, propulsion, sensors, construction and compliance, grouped the way a fleet buyer compares them.

Owl CS-140 · Silent / Night ISR Platform Air Family · Sensor Carrier · Night Watch

01Dimensions & Mass

All-up mass
4.5 kg
Wingspan (aspect ratio 10)
~2.0 m
Wing area / mean chord
~0.40 m² / ~0.20 m
Airframe structure
~1.5 kg (~33% of all-up mass)
Configuration
Fixed wing · segmented wing over a continuous carbon spar · electric drive

02Performance

Cruise speed
16 m/s (~58 km/h)
Stall speed
~12 m/s
Endurance
~2.1 h (~1.8–2.4 h across the lift-to-drag sweep)
Endurance, cold-soaked at −20 °C
~1.5–1.7 h
Cruise electrical power
~98 W (~113 W bus draw incl. 15 W avionics and payload)
Hover cross-check, same mass
~580 W · ~25 min — ~5–6× cruise power; why the Owl orbits
Continuous watch-point coverage
~3 aircraft per point, ~20 min turnaround

03Launch & Recovery

Launch method
Bungee / elastic rail, ~4 m, unprepared ground
Launch acceleration
18 m/s² (~1.8 g)
Recovery
Deep-stall / belly-skid landing on unprepared ground; replaceable rPET skid

04Propulsion & Power

Propeller diameter
Ø0.55 m
Propeller speed / tip speed (cruise)
~3,000 rpm / ~86 m/s (~M0.25)
Battery pack
Swappable COTS cells, ~1.58 kg (~35% of all-up mass)
Battery energy, usable
~241 Wh (180 Wh/kg pack-level, 85% depth)
Propulsion (motor / ESC / prop)
~0.4 kg

05Sensors & Data

Sensor bay
One common bay, five swappable variants — LWIR night watch, low-light EO, dual EO/IR gimbal, acoustic listener, ballast/trainer
Sensor payload allocation
~0.5 kg
Data path
Record onboard; optional trailing fibre — Tier 2, human-in-loop
Emissions in flight
None — no transmitter, no RF payload; passive receivers only

06Materials & Construction

Body / airframe
Moulded GF-nylon fuselage and wing shells — the wing split into three or four segments so each mould stays small
Primary structure
COTS pultruded carbon spar tube, full span
Recycled content
rPET non-structural only — belly skid, bay liners, ballast/trainer article
Tooling
Dies cut on Canadian Shield’s own 5-axis floor

07Compliance

Patent status
Patent pending
Export control
Export-controlled — international transfer subject to Canadian government permits; export posture is counsel-first
Munitions classification
Passive-sensor carrier — no warhead, no energetic payload, no kinetic-defeat role
RF payload scope
Raven CS-130 — emission is never Owl’s job

Endurance is stated at the 4.5 kg configuration with the lift-to-drag sweep beside it; bus power includes a 15 W avionics-and-payload allowance. No dB(A)-at-distance acoustic figure is published for either the cruise condition or the launch transient.

In the Doctrine

No Radio. No Warhead.
Just Eyes, Quietly, All Night.


The fleet's no-radio rule runs all the way through the Owl: passive optical sensing only, nothing radiated, and data that comes back with the airframe — by record-and-return, or over an optional trailing fibre with a human in the loop. There is nothing aboard for a jammer to find, because nothing aboard transmits.

Owl's product is the picture, not the effect. It hands what it sees to the systems that act — a route-watch frame that cues a ground patrol, a perimeter track that hands off to the interceptor family. Goose and Gyrfalcon get their shot cued by products like the Owl's; the Owl itself never rams, drops, designates for, or triggers anything. Looking and acting stay separated by design, on two different airframes, in two different roles.

The manufacturing thesis rides along. Moulded GF-nylon fuselage and wing shells — the division's first flying wing rather than a cylinder, split into three or four segments so each mould stays small — over a single non-moulded primary structure, a COTS pultruded carbon spar tube running the full span. Recycled rPET stays honestly confined to non-structural parts: the belly skid, bay liners, the ballast/trainer article. Cut on the same Canadian 5-axis floor as the rest of the fleet.

The Boundary
Look. Never act.

The Owl carries sensors and nothing else — no kinetic mass, no capture chemistry, no net, no dropped store, no laser designator, no RF payload. If the fleet ever needs an aircraft that transmits, that aircraft is called Raven, not Owl.

Deployment

A Night Watch, Walked Through.


One night watch, walked end to end — illustrative of how the aircraft is used, not a mission record.

01 · Launch

Off the Rail, No Prepared Ground

A bungee-elastic rail, roughly four metres, takes the Owl to flying speed at a benign ~1.8 g — no pyrotechnics, no compressed-gas step, no infrastructure beyond the rail and its shuttle. The sortie is preset before the rail; nothing checks in over a link, because there is no link to check.

02 · Watch

The Orbit Over the Point

The aircraft climbs out and settles into an orbit over the route, perimeter or site, its IR-biased eye recording onboard through the night. A single airframe is good for roughly two hours on station; continuous coverage is bought by rotation — about three aircraft per watch point, one up, one turning, one in reserve — not by asking one aircraft to do more than its battery allows.

03 · Recover

Down Quiet, Home With the Record

A deep-stall or belly-skid landing brings the Owl down on the same unprepared ground it left from; the replaceable rPET skid takes the wear. The battery pack swaps for the next sortie, and the sensor record comes off with the airframe — intelligence latency equal to sortie length, and nothing exposed to the air in between.

The Air Family · At a Glance

One Doctrine. Many Registers.


Owl is the Air family's night eye. Three siblings fly the same no-radio thesis in different registers — the cheap scout, the far-ranger, and the family's one deliberate radio exception. Same doctrine, different jobs.

This aircraft CS-140 · Night ISR

Owl

The quiet night watcher — orbits a route, perimeter or site after dark on a big, slow propeller.

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CS-160 · Expendable scout

Kestrel

The cheap, attritable scout — tube-launched, priced to lose, sent anyway.

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CS-150 · Far-ranger

Loon

The long-endurance, long-range eye — hours on station, hundreds of kilometres out.

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CS-130 · Radio exception

Raven

The family's deliberate radio exception — comms relay, decoy and electronic support.

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Proof, Not Promotion

Silent Watch.
No Emissions. Back Before Dawn.

If you buy, build, integrate or regulate uncrewed night ISR for Canada or its allies, the Owl is on the table.

Full Marketing Package

The Rest of the Fleet.


Every Canadian Shield platform has a brochure like this one — same depth, same status discipline, same refusal to publish a number we cannot source. Organized by family below.

Air · 8
CS-110 · Air

Goose

No battery. No motor. No receiver. A kinetic carrier launched at ~189 m/s on shop air.

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CS-111 · Air

Encapsulator

A capture-head variant on the Goose CS-110 launch line — fouls rotors and entangles the airframe instead of striking it down.

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CS-112 · Air

Matrix

Aimed, direct-fire, tethered — the net that stays connected to the gun that threw it.

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CS-120 · Air

Gyrfalcon

Goose's launch chain, plus the power Goose leaves out — a tail motor and bow-thruster ring for mid-flight correction.

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CS-130 · Air

Raven

A moulded electric aircraft that carries the network — decoy, relay, electronic support. Non-kinetic. Recoverable.

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This brochure CS-140 · Air

Owl

A big, slow propeller and an IR-biased eye — orbiting instead of hovering, unheard, unseen, unjammed.

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CS-150 · Air

Loon

The bird that flies its whole leg without asking a satellite for a name.

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CS-160 · Air

Kestrel

The Air family's smallest body — a tube-launched, motor-cruising scout priced to lose, not to last.

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Ground · 6
CS-210 · Ground

Grizzly

Tracked. Battery-electric. 150 kg over muskeg — with nothing to jam.

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CS-220 · Ground

Moose

600 kg of freight over bad ground. Payload is the product — mobility is the constraint it is bought within.

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CS-230 · Ground

Wolf

Eight coordinated carriers. One fibre trunk. One operator. Nothing to jam.

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CS-240 · Ground

Lynx

A wheeled route-picker with thermal eyes — and a watch mode measured in days.

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CS-250 · Ground

Beaver

Tracked. Battery-electric. An anchored winch pulls roughly seven times what the tracks alone can.

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CS-260 · Ground

Wolverine

A compact tracked carrier that places self-reacting tools at the work face — the force closes on the structure, not the machine.

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Water · 2
CS-310 · Water

Orca

Persistent survey & carrier AUV — one moulded hull that surveys, carries and watches.

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CS-320 · Water

Jellyfish

A soft pulsed-jet payload carrier — slower than the current on purpose.

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Underground · 8
CS-410 · Underground

Badger

A surface plant that pushes a steerable head into ground with no line, no map, no signal.

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CS-411 · Underground

Aquifer

Coiled-tubing bore, fibre-guided — conduit installed, water table mapped, nothing to jam.

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CS-420 · Underground

Ferret

Recon, mapping and locating in existing tunnels and culverts — with a block-only interpose capability, always human-confirmed.

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CS-430 · Underground

Mole

A passive seismic and acoustic node on long-life battery — reporting only over a buried fibre link.

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CS-435 · Underground

Trembler Line

A chain of buried Mole nodes on a fibre trunk — detect, localize, cue. Nothing radiated, nothing to jam.

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CS-440 · Underground

Muskrat

Hybrid swim/crawl. Zero visibility. No diver, no radio, no GPS.

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CS-450 · Underground

Gopher

It maps, it marks, it parks. Cheap enough to send in numbers.

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CS-460 · Underground

Farell Pig

Flow-driven, self-propelled or tethered — it rides the line, it doesn't bore one.

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Industrial · 17
CS-510 · Industrial

Seeder

A pneumatic seed-pod launcher, retuned to gentleness. Pods down, evidence back.

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CS-520 · Industrial

Skimmer

A small moulded surface craft — the information and marking layer of a spill response.

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CS-530 · Industrial

Rock Scaler

A contact-tolerant aerial platform sets the hook. A ground-anchored winch does the pulling.

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CS-540 · Industrial

Washer

A caged, umbilical-fed washing platform. Water up the line, evidence back down.

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CS-550 · Industrial

Coater

An umbilical-fed applicator platform. The pressure stays on the ground; the machine flies the last few hundred millimetres.

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CS-560 · Industrial

Sprayer

Full-width boom, drift-reduction nozzles, a metered rate held across the pass. The broadcast tool for the uniform job.

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CS-561 · Industrial

Spot Sprayer

Machine vision finds the target; only that nozzle opens. Built to cut total product volume per acre.

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CS-570 · Industrial

Dredger

A trailerable uncrewed dredger for ponds, marinas, lagoons and channels.

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CS-580 · Industrial

Recovery

An uncrewed collection craft for the debris and spill material that floats.

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CS-590 · Industrial

Enviro

A tracked, teleoperated manipulator platform for shoreline and land cleanup — reach, load and slope, enforced as one envelope.

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CS-630 · Industrial

Litter Collector

An uncrewed multirotor built to find litter, take only litter, and prove it did.

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CS-600 · Industrial

Cargo Mover

An uncrewed VTOL cargo family — four sizes of the same machine, from toolbox to bulk lift.

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CS-610 · Industrial

Personnel Mover

A crew-carrying VTOL work machine. Two tiers — PM-8 single-seat, PM-12 two-seat.

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CS-620 · Industrial

Heavy-Lift Logger

An uncrewed coaxial hybrid rotorcraft for long-line log extraction — turn after turn, hour after hour.

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CS-700 · Industrial

Self-Charging Dock

A docking and replenishment station that lets a working fleet return, recharge and redeploy without a hand touching it.

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CS-710 · Industrial

Relay Chain

A deployable chain of relay nodes — command, telemetry and position augmentation for civil fleets working past the edge of the network.

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CS-C001 · Industrial

Fibre Spool Line

Guidance-fibre consumable cassettes — a physical tether option, alongside or instead of radio.

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Defence · 1
CS-901 · Defence

Shield Pod

A canopy-retarded delivery pod: land on a crumple zone, right itself, open, release the carrier system.

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