String faults caught inside a billing cycle
- 11 wk → 4 wk
- Worst-case fault dwell time
- 8 person-days
- Saved per inspection cycle
- ±2 °C
- Radiometric accuracy
Capture
Twelve hectares a day, without anyone on a rope.
For: Asset owners, survey teams, inspection contractors
Inspecting a stack, a solar field, a transmission line or a quarry face means rope access, scaffolding or a shutdown — and produces a PDF of photographs nobody can measure.
Planned drone missions producing georeferenced, measurable output: orthomosaics, point clouds, thermal maps and change detection against the last flight. The deliverable is a model you can take a dimension from, not a folder of JPEGs.
Altitude, overlap, sensor and ground control chosen from the accuracy the deliverable actually needs — not from the drone's defaults.
PPK-timestamped capture with in-field coverage verification, so nobody discovers a hole in the data back at the office.
SfM or LiDAR registration, classification, and change detection against the previous survey epoch.
A browser view with measurement, annotation and defect tagging that ties back to the asset register.
The objection we hear most
“Can we not just use a consumer drone?”
For a look, yes. For anything you will take a dimension from or defend in a dispute, no — the difference is ground control and PPK, not the airframe.
Proof
Tell us the option count, the CAD you already have and the frame budget you need to hit. An engineer reads it and replies with a straight answer — including when the answer is that good photography would serve you better.
We reply to every enquiry within one business day, in your timezone — with a frame budget, not a brochure.