Compiling forest…
SEIVA · Forest Intelligence

Nature's own
nervous system.

Every cork oak mapped. Every degree accounted for. A forest that can tell you it is about to burn — before there is anything to see.

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The blind spot

Everyone detects
the aftermath.

Cameras, satellites and gas sensors all wait for a signal that only exists once the fire already does. By then you are not preventing — you are reacting.

The layer nobody built

We do not watch
the forest. We are in it.

SEIVA nodes live on the trunk, under the canopy, below the thermal noise floor where an ignition first announces itself.

Trunk-mounted Sub-canopy Cork-oak native
The node

The perfect battery is
the one that doesn't exist.

The node harvests everything it needs from the tree and the air around it. No cell to die, no chemistry to degrade, nothing to swap out on a hillside in year three.

Battery Solar panel Power grid Maintenance
Lifetime

10 years of rest.
1 millisecond of response.

A 10–15 year service life with zero field intervention. Install once; the forest keeps reporting long after the install crew has forgotten the coordinates.

10–15 yr lifetime 0 field visits 0 consumables Passive wake
The mesh

One node is a reading.
Ten thousand are a brain.

Each node is a neuron. The mesh correlates thermal drift across neighbours, so a single warm trunk is noise — and a propagating gradient is a decision.

Self-forming mesh Neighbour correlation Edge inference
Ultra-early detection

Hours before
the first wisp.

An anomaly propagates through the mesh and leaves the forest as an alert — while it is still a temperature, not yet a fire.

Anomaly → alert Geo-located node Pre-ignition window
Node SV-01
Battery-free · 10–15 yr
Dunas de Cantanhede · PT
ALT 000 M · SEQ 01/07
STATUS NOMINAL
NODES 000 ONLINE
ΔT +0.00 °C
Scroll to descend
The problem

More — and worse — fires every year.

×2

Area burned globally has roughly doubled in two decades.

€ Bn

Billions invested in detection every year — yet millions of hectares still burn.

Min.

Every minute of delay between ignition and alert multiplies the damage.

The product

Why current forest fire prevention fails.

01

Batteries die

Every cell in the forest is a future field visit — and a future failure exactly when the season is hottest.

02

Solar fails

Under a closed cork-oak canopy there is no reliable light budget. Panels foul, shade moves, winter happens.

03

Maintenance never scales

A thousand devices is a logistics problem. A million is an impossibility. OPEX is what kills coverage.

The solution

Physics made it possible. We are making it inevitable.

A passive node with no stored energy, no panel and no grid connection. It rests for a decade and answers in a millisecond.

01

Passive by physics

Nothing to charge, nothing to deplete. The energy budget is zero because there is no budget.

02

Triggered by the anomaly itself

The event that matters is the event that powers the report. We don't look for the fire — we wait for it.

03

Priced to cover a whole country

Forest prevention should not be a luxury line item. Coverage only matters if it can be deployed everywhere.

Recognised across

Backed by people who know what a bad fire season costs.

[ Partner ][ Partner ][ Partner ] [ Partner ][ Partner ]
Awards

Built by a team that ships ambitious physics.

2026

[ Award name ]

2026

[ Award name ]

2026

[ Recognition ]

2026

[ Grant / Prize ]

Our journey

So simple, you'll wonder how it wasn't invented 30 years ago.

2025

Aurora Mission

The physics is proven outside the lab. The idea stops being a paper and starts being a device.

Jul–Aug 2026

EIA Porto 2026

Team assembled, product defined, first working prototypes printed and instrumented.

Next

First pilots

Instrumented cork-oak stands in Portugal, with landowners and municipalities who want the season back.

Save a forest with us

Tell us about your forest. We'll tell you what it takes to cover it.

Join us