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Find the fault before it fails. Autonomous LiDAR inspection for bridges, turbines and power grids — millimetre-accurate, from a single flight.

[ F.01 — Payload ]

A survey-grade LiDAR core, slung low.

The Halo-L sensor sits on a 3-axis gimbal beneath the airframe — 240,000 points per second, five returns per pulse.

[ F.02 — Airframe ]

Folding carbon arms, ready in seconds.

Four brushless rotors on carbon-fibre arms fold to a 480 mm frame — survey-grade capture that ships as carry-on.

[ F.03 — Link ]

Streams home from 20 km out.

An encrypted O4-class link holds a 1080p feed to the ground station and georeferences the point cloud mid-flight.

[ 01 — Autonomous Flight ]

Ready when you are.

A crack you'd miss from the ground is unmissable at 240,000 points a second.

It flies the line itself and lands with a georeferenced point cloud of every surface it passed — the exact geometry your engineers need. No crew at height. No scaffolding.

  • 5Returns / Pulse
  • ±2 cmDetection Accuracy
  • 450 mMax Range
  • 240KPoints / Second

Payload

[ 03 ]

Sensor Core

Built around the Halo-L survey-grade LiDAR core — frame-based point-cloud acquisition with five simultaneous returns per pulse, so dense canopy, lattice steel and hairline cracks resolve in a single pass.

[ The Aircraft ]

Fits a case. Maps a bridge.

Survey LiDAR core, folding carbon airframe, encrypted downlink — the whole system packs into a single hard case one operator carries to site.

[ POINT CLOUD · LIVE ]

[ 04 — Capability ]

One pass.
Every angle.

Terrain, steel and vegetation captured as one full-hemisphere point cloud — the whole asset, from a single flight line, at 240,000 points a second.

Full-hemisphere LiDAR at 240,000 pts·s⁻¹ with five returns per pulse — foliage, steel and terrain in one dome of geometry.

Georeferenced in flight over an encrypted O4-class link, so the point cloud lands ready to process the moment NOX touches down.

Folds to a 480 mm frame that fits a single hard case — survey-grade capture that ships as carry-on.

Solutions

[ 05 ]

Energy

Grids and wind farms sprawl across terrain no ground crew can cover. NOX flies it in hours, not weeks — and never sends a climber up a turbine.

Wind turbinesSolar farmsPower linesSubstations

Infrastructure

Bridges, dams and tunnels hide movement where crews can't safely reach. NOX resolves millimetre drift across a full span in one pass.

BridgesDamsRailTunnels

Industry

Inspect live plant from the air — refineries, flare stacks, tank farms — with no shutdown, no scaffolding and no confined-space entry.

RefineriesFlare stacksTank farmsPipelines

Geospatial

Quarries, coastlines and worksites change by the day. Every overflight becomes a georeferenced surface model — volumes, contours and change, measured.

TopographyVolumetricsCoastalEarthworks

[ Imaging ]

A survey sensor, on a stabilised gimbal.

Five returns per pulse, stabilised on a 3-axis gimbal — hairline cracks and dense canopy resolve sharp, in a single pass.

±2 cmAccuracy
5Returns / pulse
450 mRange

01 — Structural Fault Zone

Surface deformation detected across a 42 m² sector.

CONFIDENCE 87% RISK LEVEL: MODERATE

Raw flight data to georeferenced deliverable in under 20 minutes.

[ 07 — Platform ]
01
Ingest

Flight logs and raw returns import automatically the moment NOX lands.

02
Register

RTK/PPK positions fuse into one georeferenced point cloud, ±2 cm.

03
Classify

Ground, structure and vegetation separate; anomalies get flagged.

04
Report

A quality report and LAS/LAZ/E57 deliverable export, ready to hand off.

Long in the air. Steady in the wind.

[ 08 ]
42min

A single-charge inspection window over the asset.

Endurance
12m·s⁻¹

Holds a survey line steady through gusting wind.

Wind Resistance
20km

Encrypted HD downlink to the ground station.

O4 Link Range
360°

Omnidirectional obstacle sensing, day or night.

Awareness

[ Anatomy ]

Built to be opened up.

Shell, power core, motors, sensor — NOX comes apart in layers, so a field swap takes minutes, not a trip back to base.

01Composite shell
02Power core
03Brushless motors
04Halo-L sensor

↓ scroll to disassemble

From the field

Captures pulled straight from NOX inspection flights — point cloud, RGB and thermal.

[ 09 ]
01Point CloudN 47.37 · WIND ARRAY
02RGBBRIDGE DECK · SPAN 04
03ThermalREFINERY · STACK 02
04DSMTERRAIN · Q-14
05Point CloudSUBSTATION · BAY 3
06RGBSOLAR FARM · ROW 22

Specifications

[ 10 ]

Payload — Halo-L

Acquisition rate
240,000 pts·s⁻¹
Returns per pulse
5
Detection accuracy
±2 cm
Max range
450 m
Field of view
360° × 90°

Airframe

Endurance
42 min
Wind resistance
12 m·s⁻¹
Folded frame
480 mm
Takeoff weight
3.4 kg
Obstacle sensing
Omnidirectional

Transmission

System
O4-class
Range
20 km
Live feed
1080p / 60fps
Link
AES-256 encrypted

Software

Pipeline
Ingest → Report
Deliverable
< 20 min
Output
LAS / LAZ / E57
Georeferencing
RTK / PPK

[ 11 — Deploy ]

Put NOX over your assets.

Book a pilot flight over one of your sites. We fly it, process it, and hand back the deliverable — end to end.