Autonomous Lab Loop

Watch the loop run.

Every sensor class from every heavy industry — hydrogen, ammonia, waste-to-energy, CCS, data centers, nuclear, metals, and process plants — streams into the same autonomous loop. The SuperPC builds a live model. Hypotheses become run plans, experiments execute, and insights feed back into the next setpoint. No hand-waving — every transition is logged, checked, and reversible.

Active phase
Ingest

Instruments stream raw data into the bus. Provenance tags are attached before compute sees anything.

Experiments
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Sensor types
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Industries
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Tokens / s
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Active node
Instruments
40+ sensor classes across 8 industries: PMT, Timepix3, spectrometer, oscilloscope, RF generator, mass flow, pressure transmitters, thermocouples, pH/ORP, gas analyzers, vibration, infrared, DCS/PLC, PD meters, stack CEMS, electrolyzer cells, cooling loops, neutron/gamma detectors, and edge PLCs.
Live log
→ loop initialized

Loop mechanics

One closed loop, seven explicit stages.

The animation above is not decoration. It maps the same control architecture we deploy across hydrogen, ammonia, waste-to-energy, CCS, data centers, nuclear, metals, and process plants: instrumentation, compute, hypothesis generation, orchestration, execution, logging, and physics-aware analysis.

01 Ingest

Multi-channel data ingestion

Normalize streams from 40+ sensor classes across every heavy industry: electrolyzer stacks, flue-gas CEMS, ammonia reactor cells, CRAC units, capture solvent loops, neutron/gamma detectors, PLCs, vibration sensors, spectrometers, and more. Stale or missing channels are rejected before compute.

02 Compute

SuperPC resonance

Local GPU cluster builds a live world-model from embeddings. Patterns across runs resonate; glitches and regime transitions are separated by physics.

03 Hypothesize

Testable predictions

The hypothesis engine proposes the next measurement. Every prediction must survive dimensional, conservation, and known-bound checks before it becomes a run plan.

04 Decide

Policy-driven orchestration

Orchestrator converts the hypothesis into instrument setpoints and run sequences. High-consequence actions escalate to a human; routine sweeps run autonomously.

05 Run

Closed-loop actuation

Experiment runner executes the campaign. Safety gates pause on anomaly; physics-aware bounds prevent runaway setpoints.

06 Log + Analyze

Provenance and feedback

Outputs, setpoints, model versions, and agent decisions are archived. Analysis feeds residuals and insights back into the model for the next loop.

Put your lab on a loop.

Start with a Lab Audit. In 48 hours we'll map where autonomy is ready, where it needs guardrails, and where humans must stay in charge.

Request a Lab Audit →