Sensor intelligence for environments where conventional instrumentation has no answer.
First-principles design and qualification of force-rebalance accelerometers on single-crystal quartz substrates.
Neural signal processing pipelines for anomaly detection and predictive analytics at the edge of sensor physics.
Deployment architectures, signal chain design, and qualification pathways for extreme radiation and thermal environments.
Selection and specification of quartz, refractory alloys, and hermetic packaging for multi-decade deployment life.
Precision that survives the impossible.
In the environments we serve, failure is not measured in downtime — it is measured in consequence. Every sensor we design must function where temperatures liquefy conventional electronics and radiation doses accumulate into the kiloGray. These are domains with no commercial off-the-shelf answer.
We design, specify, and qualify sensor systems from first principles. Precision fabrication is executed by partner facilities under our process specifications and quality oversight — because the specification is the product, and the specification must be absolute.
Our machine learning pipeline operates at the intersection of first-principles physics simulation and neural signal processing — enabling predictive anomaly detection at signal-to-noise ratios where conventional thresholding fails. Models are trained on analytical physics rather than historical failure data, because in our domain, failure data is not a resource you can afford to accumulate.
We operate at a threshold where disclosure is a liability and discretion is a deliverable. Our partnerships are built on trust, not marketing. If you require precision sensing in a domain where every existing sensor has failed, you already know who we are.
Inquiries are reviewed directly. Expect a response within 72 hours.