How the monitoring actually works.
The technical answers behind the service: what we measure, how the readings travel, how an alarm reaches you, and what you hand to an auditor.
Measure
What we put in your lab, what it reads, and how the readings reach the server.
The full sensor range: temperature, gas, pressure, humidity, particles, door, flow, VOC, H₂O₂ and light, with the ranges and the practical caveats.
Calypso, Titan, Telesto, Tethys and the CO₂/O₂ sampling station: what each one does, and why the network survives a power cut.
What goes wrong without continuous monitoring, which parameters carry the risk, what regulators expect, and how to judge whether your current setup is enough.
Detect and alert
How a deviation becomes a phone that rings, and what happens when nobody answers.
The safety-net principle: multiple alarm layers, automatic escalation, and the devices that still work when the network is gone.
How to set limits and delays that mean something, design an escalation ladder that survives holidays and shift changes, keep alarm volume under control, and prove afterwards that the path worked.
Prove and comply
Reports, validation documentation and the record you hand to an auditor.
From a monthly printout for a clinical partner to spotting a freezer that is quietly deteriorating before it fails.
The four-step validation route, the documents produced at each step, and where XiltriX takes work off your quality team.
Real-time acquisition, automatic backup, an audit trail that holds up, and a record designed to outlive the equipment it describes.
A practical eight-step route to a working quality control regime: risk assessment, critical parameters, instrumentation, validation (IQ/OQ/PQ), data integrity under 21 CFR Part 11, deviation handling, training and continuous review.
The most common questions, answered in a paragraph each.
Three ways forward.
Pick the one that fits where you are today.
