Pressure sensor & AIRIS Core
Differential pressure sensor, 20 Hz acquisition and automatic regulation via contactors (inflate/deflate). Real-time curve, regulation thresholds and alerts visible instantly in the field.
Synchronized (or near-synchronized) collection of multiple variables, with timestamping and traceability.
Dashboards, thresholds, alerts and histories to manage operations and maintenance.
Turning measurements into simple indicators: status, trends, anomalies and events.
Adaptable architecture: sensors, enclosures, power supply, communications and operator interface.
We cover the entire chain: sensors → acquisition → operation → decision-making. The system is designed to remain robust, easy to read and usable in the field.
Selection, placement and integration of sensors based on the structure and the use case.
Timestamping, storage, filtering and exports for analysis and traceability.
Operator interface: statuses, trends, alerts and histories.
Thresholds, event detection and actionable indicators for decision-making.
Inflasys AIRIS (Advanced Inflatable Regulation & Intelligent Supervision) is our in-house platform for real-time monitoring and automatic regulation of inflatable structures.
From differential measurement in the field to the local dashboard, Android app and optional cloud uplink, the chain is designed to stay clear, safe and usable without daily internet dependency.
Differential pressure sensor, 20 Hz acquisition and automatic regulation via contactors (inflate/deflate). Real-time curve, regulation thresholds and alerts visible instantly in the field.
Embedded hub on Raspberry Pi 5 with 7" touchscreen: pressure, temperature, history chart, relays, regulation thresholds and event log. Fully local operation with no mandatory cloud.
Inflasys AIRIS mobile app (Jetpack Compose): Bluetooth LE or Wi-Fi REST connection, live chart, INFLATE/DEFLATE relays, AUTO mode, alerts, threshold settings and CSV export.
Cloud service for telemetry, log ingestion and secure REST API (Bearer token). Multi-site supervision as a complement to local control — never a replacement for on-site visibility.
We integrate sensors adapted to the structure and your objectives. The examples below cover most common needs: pressure control, thermal management, stability, mechanical status, environment, and acoustic performance. Architectures are modular: you select only what is useful.
Tube pressure, setpoint tracking, and differential pressure sensors to monitor deviations or flows.
Internal tube temperature and a volume’s temperature (e.g., a hangar) to correlate pressure/behavior and improve operational comfort.
GPS for location/traceability, accelerometers and inertial units for shocks, vibrations, drift and events.
Tension measurement on straps/anchors and critical points to monitor loads during operation.
Light sensor for usage correlations, acoustic sensor for measurements and attenuation tracking based on a protocol.
We first define the objectives (safety, operations, performance), then design a measurement plan, integrate the sensors and deliver clear supervision with indicators and alerts.
Objectives, field constraints, autonomy, environment, traceability needs and thresholds.
Sensor selection, placement, acquisition, testing and calibration when needed.
Dashboards, alerts, exports, reports and usage recommendations.
Do you need real-time monitoring with multiple sensors (pressure, temperature, GPS, inertial, tension, acoustics, etc.)? Contact us: we’ll define the scope, the relevant sensors, the architecture and the deliverables (supervision, alerts, reports).