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Understand, quantify and deploy predictive maintenance

Guides, filmed testimonials and in-depth articles — to help you prepare your own project.

GUIDE

“Zero Failure” — the guide

Our services and use-case guide, to help you understand and implement an innovative, proactive approach to industrial-asset maintenance.

Download the guide (PDF)

Inside the guide

  • Reducing maintenance costs
  • Reducing unplanned downtime
  • Extending equipment lifespan
  • Better maintenance planning
ARTICLES

Field notes

Predictive vs preventive maintenance: what's the difference, and what's the ROI?

Preventive maintenance runs on a fixed schedule, whether or not a fault is present: it reduces failure risk but also triggers unnecessary work on equipment that's in perfectly good shape. Predictive maintenance, by contrast, relies on the machine's actual condition — vibration, temperature, current — and only steps in when the data calls for it. Across the fleets Monixo monitors, this approach cuts unplanned downtime while avoiding needless maintenance work. Value builds progressively, asset by asset, as the historical data deepens. The switch doesn't happen overnight: it starts with instrumenting a limited number of critical assets, long enough to build the data history that lets the models sharpen their accuracy.

Why 88% of industrial failures are avoidable

Most failures on an industrial fleet aren't one-off events: they're recurring failure modes that show up, in similar form, across different pieces of equipment. An imbalance, a misalignment, a bearing working loose — these signatures are known and detectable well before the break. That's the premise behind data-driven maintenance: instead of discovering a failure the moment it happens, the goal is to recognise, in the vibration or thermal signal, the early signs of an already-documented failure mode. The challenge isn't only technological — installing sensors — it's organisational too: folding that information into day-to-day maintenance practice, so it turns into concrete action rather than an alert nobody acts on.

Water resilience in West Africa: the role of IoT data

In West Africa's major cities, drinking-water networks often rely on dozens of boreholes and pumping stations, some installed decades ago. The challenge isn't a lack of water — it's a lack of visibility into the real condition of that infrastructure. By instrumenting every submerged pump — vibration, temperature, current, insulation, water-table level — without ever stopping it, it becomes possible to detect degradation weeks before failure, where it previously went entirely unnoticed. That's the approach structured with SEN'EAU: qualify a multi-parameter architecture, standardise measurement points, then progressively extend monitoring to priority infrastructure.

DATASHEETS

Sensor specifications

Moniteur, Dot, FluidMiner and Node Energy datasheets, in PDF format.