Field edge
Sensors remain synchronized on the robot. Coverage and storage are checked before the team leaves the route.
Capture health · local NVMeRobotic spatial capture
One repeatable route records the street, the garden and the interior as a connected spatial experience — ready to stream through a browser.
One pass, many spatial layers
Reliable neighborhood capture is not one camera bolted to a robot. It is synchronized sensing, route control, field QA and a reconstruction pipeline designed for web delivery.
Capture rig / 01
Select a layer to see how every component contributes to the same reconstructed route.
Mobility · 01
The quadruped follows a planned path across pavements, gardens and interiors while keeping the sensor rig at a repeatable height.
Production pipeline / 02
Six controlled stages convert field data into a fast, navigable buyer experience.
CURRENT STAGE
A route planner divides the neighborhood into capture tiles, marks private zones and connects the street path to each property entrance.
Deployment architecture / 03
Geographic tiles manage the neighborhood. Portals connect street, property and interior scenes. Progressive levels of detail keep the browser responsive.
Sensors remain synchronized on the robot. Coverage and storage are checked before the team leaves the route.
Capture health · local NVMeStreet and property scenes are reconstructed separately, then aligned through geographic anchors and invisible portals.
Training · alignment · QAThe map selects the right scene and level of detail; nearby transitions preload before a buyer reaches them.
Map → street → interiorPRIVACY BY WORKFLOW
Raw field data is encrypted and access-controlled.
Capture boundaries and private zones are set before the route.
Faces, plates and incidental personal details are reviewed before publication.
Define your first route
Model route length, properties, indoor area, lighting passes, field time and raw data before you deploy the team.