Automotive · Frontier

RF Dipstick — Tanker Fill Level & Slosh State

Reads a tanker's fill level from outside the tank — no holes drilled.

Frontier Frontier

Plausible physics, early work — shown honestly as an experiment.

The surface of a liquid is a strong boundary the signal reflects from, and its height shapes the echoes inside the tank. As the level drops, those echoes shift. Sloshing rocks the surface at its own slow rhythm, clearly different from road vibration.

In the physics: Liquids with eps_r 20-80 versus air eps_r 1 make the fill surface a dominant dielectric boundary: fill height sets the reflection geometry and path delays of tank-interior multipath, while sloshing modulates those paths at the fluid's resonant frequency (0.5-2Hz), distinct from road vibration.
Preparing the recorded fieldLoading real LatentField pipeline output…

This is real pipeline output for Automotive, replayed. The exact reading depends on your room.

Bring this into the real roomCabin Presence Node1 sensing nodes · ~$40 parts · about 45 min
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How the field becomes an answer

RFF/NeRF eps_r field reconstruction for static fill height CIR delay tracking per fill state Doppler 0.5-2Hz slosh band energy compartment Kalman fusing fill estimate with flow/consumption model.

How we prove it

Own-hardware: 200L drum and IBC tote, sweep fill 0-100% in 5% steps with ESP32 pair, verify monotonic delay/NeRF response; then live tanker trailer with certified dip readings as ground truth.

Who it is for

Retrofit tank telemetry with zero tank penetration and no intrinsic-safety certification burden — sold to bulk-liquid fleet managers and rail tank-car lessors.

Complete first-room estimateCabin Presence Node1 nodes · ~$40 parts · 45 min Request kit, subscribe, or set up →
Compatible DIY hardware options
Prosumer DIY$18–35

45 min · intermediate

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