Built like infrastructure, not a gadget.
One platform carries the whole journey — from the sensor module that takes a reading, through the AI on the edge gateway that judges it, to the open data platform where it becomes insight you can query, report and act on.
One platform, three layers
Sensor modules, an intelligent edge gateway, and an open data platform — each layer does its job close to where the job is.
Sense
Wired and wireless sensor modules capture air quality, gas, light and pressure signals — with structural sensing in development. Every module has its own cryptographic identity — no anonymous data.
Edge
A gateway in the building authenticates and signs each reading, buffers through outages, and runs anomaly detection and alarm logic locally — insight doesn't wait for the cloud.
Twin
Data lands in an open SensorThings API, ready for dashboards, reporting and a BIM/IFC digital twin — a living model of the building, not a folder of spreadsheets.
Sensing you can take at its word
Multi-modal modules, wired and wireless, grown from an industrial methane-sensing heritage — and not one anonymous reading among them.
One platform, every modality
Air, light, pressure and gas channels live today, structural channels in development — one pipeline and one data model, whatever the sensor.
Wired or wireless, room by room
Modules deploy wired where the building allows it and wireless where it doesn't, so coverage follows the rooms that matter — not the conduit runs.
Security by architecture
Sensing sits inside a security architecture aligned to IEC 62443 zones and conduits — designed in from the module up, not bolted on.
Authenticated at the source
Every reading authenticated with a per-device key and signed at the gateway, with replay protection — so the data you act on, report and archive stands up to scrutiny.
Intelligence next to the sensors
Anomaly detection and alarm logic run on the gateway itself — decisions are made in the building, and the record survives the outage.
AI that sees drift early
On-gateway anomaly detection flagged unusual behaviour around 80 seconds before a fixed threshold would have tripped, in controlled testing — warning time a person can actually use.
Alarms the AI can inform, never soften
Alarm decisions stay simple, auditable threshold logic. The AI can raise attention; it is never able to de-escalate, suppress or downgrade an alarm — and every AI output is labelled advisory.
Store-and-forward resilience
Connectivity drops; data doesn't. The gateway buffers every reading locally and backfills the moment the link returns — 0 readings lost to network outages in pilot operation.
Open standards, not another silo
Sensor data is served through open, public standards — queryable by your tools, portable when you need it, never held hostage.
OGC SensorThings API
Sensor data is served through the OGC SensorThings API — an open geospatial standard any dashboard, BMS integration or analytics stack can query. No lock-in, no proprietary export.
Building models on IFC
Designed to bind readings to IFC building models, so data belongs to rooms, floors and elements — the foundation for a living digital twin.
RoadmapDashboards, reporting, alerting
Live consoles for every modality, plain-language reports, and alert escalation that carries the room, the readings and the AI's advisory context to the right person.
The numbers behind the claims
Measured on real hardware in continuous pilot operation — not projections.
What it does today — and where it's headed
Two modalities live in pilot now, with structural monitoring and supervised energy optimisation in development on the same platform — instrument a building today and grow into it.
Air quality & environmental
Temperature, humidity, light and pressure live today with comfort-band alarming; CO₂, particulates and VOC channels are on the sensor roadmap.
Live in pilotGas detection
Methane detection built on a proven thermal-conductivity sensor with a decade of industrial field heritage — %LEL visibility, advisory alarm levels and a full audit trail.
Live in pilotStructural monitoring
Vibration and modal analysis to hear how a structure's condition changes over time — time-synchronised sensing designed for micro-second-class alignment. In development — on the roadmap, not available today — and the modular hardware is built to grow into it.
In developmentBeyond monitoring — supervised energy optimisation
Pairing with your existing building-management system over open protocols (BACnet/IP) to read chiller, ventilation and lighting performance alongside the sensing above — and, further along the roadmap, to recommend energy-saving adjustments that a person approves before anything changes. Your BMS stays in control, every action is bounded and logged, and we publish measured results, not projected percentages. In development — no automated control is available today.
In developmentSee the whole platform on live data
Pilot partnerships are open — live sensors, live AI and open data from a real deployment, watching a real building.