We make the invisible measurable.
KAM Defense designs and prototypes radar, lidar, and scanning systems — the sensors that detect, range, and resolve a contested environment before anyone enters it.
Three sensing domains, one detection picture.
Each domain solves a different physics problem. Fused, they give an operator continuous awareness across range, weather, light, and material — from the horizon to below the surface.
Radar
Active electronically scanned arrays that detect and track through cloud, dust, and darkness, from counter-UAS volumes to over-the-horizon early warning.
- BandL · S · X · Ku
- ModeSearch / Track / SAR
- OutputTracks · Doppler
Lidar
Coherent and solid-state lidar that resolves geometry to the centimetre, building 3D point clouds for terrain, navigation, and littoral survey where GPS is denied.
- Wavelength905 · 1550nm
- ProductPoint cloud
- UseMap · Navigate
Scanning
Hyperspectral and subsurface scanning that reads material and structure — identifying what a target is made of and what lies beneath it.
- SpectrumVNIR · SWIR
- DepthSub-surface
- OutputMaterial ID
Field-oriented prototypes, built to be integrated.
A selection from the KAM catalogue. Every system ships with an open data interface so it can join an existing sensor network rather than replace it.
A digitally-beamformed multi-mission radar that interleaves search, track, and imaging in a single aperture for air and surface pictures.
A compact, no-moving-parts lidar for autonomous platforms, mapping its surroundings in 3D for navigation where satellite positioning is unavailable.
A staring, low-elevation radar tuned for small, slow, low-flying targets, classifying drones from birds before they reach the perimeter.
A line-scan imager spanning visible to short-wave infrared, separating materials by spectral signature for camouflage defeat and survey.
From physics to fielded prototype.
We run tight loops between modelling, the bench, and the open air — so a concept proves itself against real returns long before it becomes a programme.
- P-01
Model the phenomenology
We simulate the target, the clutter, and the medium first — defining what a sensor must see and where physics says it can.
- P-02
Prototype the aperture
Front-end, beamforming, and optics are built and characterised on the bench against traceable references.
- P-03
Process the return
Detection, tracking, and classification pipelines turn raw returns into a decision-ready picture.
- P-04
Field and fuse
Systems are trialled outdoors and fused into the operator's wider sensor network through an open interface.
Bring us a detection problem.
If you need to see further, in worse conditions, through more clutter — that is the problem we are built for.