The evidence is proven or strong, but this capability still needs a capability-specific ESP32 or Rust runtime adapter.
Intended capability
Validate this target only after a capability-specific adapter and ground-truth study exist: Detects containment-airflow breaks in small server rooms — door propped open, containment panel removed, failed door closer — from the airflow-driven band shift plus the static-geometry change, before the temperature alarm fires.
This describes the intended outcome. Readiness is needs edge adapter, evidence is class B, and a catalog mapping or recording is not proof of this outcome at a real site.
Solution blueprint
See the environment before installing it.
This exact kit is one of 191 first-class designs. It includes geometry, objects, nodes, wording, scenarios, installation, limitations, and catalog-bound readiness.
No rendered revision is available yet.
Bundled recording
A related Datacenter scene
This is one recorded vertical scenario. It is not separate validation of every capability in the catalog.
01 The physics
Open doors change both the static multipath geometry (a step change in the CIR-visible path set — the proven tamper observable) and the airflow pattern (flutter-band redistribution at vents and along the containment aisle). The compound separates 'door open' from 'person walked through'.
02 Shared processing path
Static-geometry step detection (existing tamper class) + edge Doppler flutter redistribution -> compound door/panel state classifier -> open-beyond-policy alerts with the temperature-lag advantage stated.
This is a capability design path. Components may be shared with other catalog entries; it is not presented as a unique algorithm.
03 Validation plan
Own-hardware in one containment aisle: scripted door/panel states vs door-contact ground truth, 2 weeks; report state accuracy and the median lead time vs the room's own temperature alarm.
04 Commercial hypothesis
For the ops team: 'Know the aisle is breached in seconds — not when the hot-aisle sensor finally notices.'