Hardware-Agnostic
Connect any device brand, any protocol, any sensing technology — without locking your operation into one hardware ecosystem.
Track-and-trace answers where. Sensing answers in what condition — and whether anyone interfered. Thirty-six sensing capabilities across six families, deployable individually or as a combined sensor set on one device, all normalised into one hardware-agnostic fabric: one event model, one custody ledger, one API.
Five layers. INNFINI captures from any device, processes at the edge where it matters, normalizes every signal into the same event format — and feeds it into the agents, dashboards and workflows that act on it.
RFID, BLE, GPS, vision, barcode, environmental, mobile, PLC, BMS — any device, any brand, any protocol.
Filter, dedupe, buffer and apply local rules at the edge. Stay online and operational even when the network drops.
Raw reads, scans, pixels and readings are converted into one shared operational event schema across every signal type.
Each signal becomes a meaningful event — asset entered Zone A · temp exceeded threshold · vehicle crossed gate-3.
Clean, structured events stream into agents, ML models, dashboards, workflows and enterprise integrations.
Use the right sensing method for each job. Combine multiple methods where coverage matters most. Add new devices without re-architecting the platform.
Connect any device brand, any protocol, any sensing technology — without locking your operation into one hardware ecosystem.
Combine RFID, BLE, GPS, vision, barcode and environmental data into one operational view — and one unified event stream.
Filter, buffer and run rules locally — for faster response, lower bandwidth, and continued operation when connectivity drops.
Turn every read, scan, detection, image and sensor value into a structured business event — instantly visible across the platform.
Track reader status, gateway uptime, battery level, signal strength and read quality across every device on the network.
Deliver clean, structured, real-time sensor data straight into AI agents, ML models, dashboards and decisioning — no glue code required.
Deployable individually or as a combined sensor set on a single device. The device changes with the requirement; the event model, the workflows and the audit trail do not.
It is condition. Environmental channels turn a delivery record into a quality record — with the achievable accuracy stated per channel, not one headline number.
| Channel | Range | Typical accuracy | What it proves |
|---|---|---|---|
| Ambient temperature | −30 to +70 °C | ±0.5 °C (−10 to +45 °C) | Cargo-space conditions and excursion duration |
| Probe temperature | −95 to +55 °C | ±0.5 °C core band | Product-core temperature, not just air |
| Cryogenic probe | −200 to +400 °C | Probe-specific | LN2 vapour-phase and dry-ice shipments |
| Relative humidity | 0–100 %RH | ±1.8 to ±3 %RH | Corrosion, mould, packaging integrity |
| Barometric pressure | 300–1250 hPa | ±0.5 hPa; ±0.25 m relative | Whether a parcel actually flew; hold exposure |
| Light exposure | 0–52,000 lux | 0.01 lux detection | Box opened, pallet unwrapped, seal breached |
| CO2 (ambient, NDIR) | 400–5,000 ppm | ±(30 ppm + 3 %) | Ventilation and dry-ice sublimation load |
Liquid water on a capacitive RH sensor makes it non-responsive until it dries. We flag dew-point crossings rather than reporting a number we cannot stand behind.
Absolute lux thresholds fire constantly in a lit warehouse. We use relative-change detection on a 10-second sample with an events-per-hour cap, so a tamper alert means something.
The device changes with the band. The platform, the reports and the audit trail do not.
Recorder performance for transport and storage, −80 to +85 °C; accuracy classes 0.5 / 1 / 2, with periodic verification under EN 13486.
Secure, computer-generated, time-stamped audit trails; record changes never obscure prior data; unique electronic signatures.
Temperature mapping under representative seasonal conditions; mean kinetic temperature calculated automatically on every lane.
Multi-point certificates traceable to NIST / UKAS under ISO/IEC 17025, managed per device with expiry tracking in the platform.
Accuracy degrades below −40 °C on every technology in the market — typically from ±0.5 °C to ±1.5 °C. We state the achievable figure per band rather than quoting one headline number.
Reefer units, compressors, conveyors, gensets and the racking in the warehouse — on the same fabric that tracks the shipment.
| Axes / range | 3-axis, ±16 g, 10–1,000 Hz velocity band |
|---|---|
| Output | v-RMS mm/s, a-Peak, crest factor, kurtosis |
| On-edge analysis | 1,600-line FFT and time waveform at the node |
| Standard | ISO 10816-3 / ISO 20816-3 severity zones A–D |
| Power / comms | 2–5 yr battery · LoRaWAN, BLE or wired Modbus |
| Environment | IP67 · −40 to +105 °C · ATEX Zone 2 variant |
| Zone | Meaning | Group 2 rigid | Group 1 rigid |
|---|---|---|---|
| A | Newly commissioned | < 1.4 mm/s | < 2.3 mm/s |
| B | Unrestricted long-term | < 2.8 mm/s | < 4.5 mm/s |
| C | Unsatisfactory — act | < 4.5 mm/s | < 7.1 mm/s |
| D | Unacceptable — stop | ≥ 4.5 mm/s | ≥ 7.1 mm/s |
Bearing wear, imbalance and misalignment surfaced weeks before failure.
Compressor condition tracked alongside the cargo it is protecting.
Forklift, crane and conveyor vibration trended against ISO zones.
Racking, HVAC and dock-leveller monitoring on the same LoRaWAN grid.
We deploy the recording tier the cargo value justifies — from a two-dollar indicator to a 4,096 sps evidence-grade recorder.
Time-stamped and geofenced to a carrier, a leg and a handover.
Peak g, velocity change and pulse duration, per axis.
Transit profile compared against ISTA test assumptions.
Objective evidence in place of a two-month email chain.
Any one of them can raise a breach. Defeating one is possible; defeating all six, in transit, without a trace, is not.
Every LOCK-A1 carries a per-shipment authorised-user list. An unlock is matched against the list, the geofence and the schedule before it is granted — and every attempt, granted or refused, is written to the custody ledger with the card ID.
Six families — climate, mechanical, tamper, hazardous gas, process gas and air quality — combined per use case, not forced into one stack.
Connect existing infrastructure where possible. Add new devices gradually — by site, zone, asset or process.
Multi-sensor coverage closes the gaps any single technology leaves open — indoors, outdoors, in transit.
Multi-IMSI roaming plus NTN satellite hand-off — with offline store-and-forward when the link drops entirely.
You know where every asset is, what condition it is in, and whether it has been opened — and you can prove all three. Without being locked into anyone's hardware, including ours.
A 60-minute architecture review with our solutions team. We map your sensors, your systems, and the workflows where this capability moves the needle.