Interactive Demo

See CondiCloud in Action

Walk through the three steps of the monitoring workflow, then watch a real equipment health index decline over a simulated three-year period — from first installation to fault detection.

Three steps. Then it watches for you.

Click each step to see a simplified view of the dashboard at each stage of the process.

Step 1

Mount the sensor.
Connect the device.

Attach a vibration sensor to your rotating equipment. The edge device powers on, connects to your network, and appears in the dashboard within seconds — no specialist installer, no firewall configuration.

  • Sensor attached to machine housing
  • Edge device connects and registers automatically
  • Dashboard shows device Online
  • Signal quality confirmed before proceeding
Quick setup
Sensor mounting and device connection. No specialist installer or tools beyond a standard mounting bracket.
condicloud.com / dashboard / assets
Monitored Assets
Pump Motor #3
Centrifugal · Production Line A
Healthy
Gearbox Unit B
Spur gear · Conveyor drive
Degrading
HVAC Fan Unit
Centrifugal · Roof plant room
Healthy
Compressor A
Rotary screw · Utility room
Healthy
Signal pipeline — Pump Motor #3
Pump Motor
● Sensor active
Vibration signal
Edge Device Local processing
Health score
Dashboard Real-time alerts
Device Online
Signal Good
MQTT Connected
Step 2

Record a healthy baseline.
The algorithm trains itself.

Run the machine normally for a short period. CondiCloud captures the vibration signature of healthy operation, automatically identifies the most diagnostic signal characteristics, and trains a detection model — entirely without fault examples or expert input.

  • Vibration captured from multiple analytical perspectives
  • System selects the most informative signal characteristics automatically
  • Detection model trained on healthy data only — no failures needed
  • Monitoring begins immediately on completion
20 sec
That's all the data the system needs to learn this machine's healthy behaviour and start watching for changes.
Learning the machine — Pump Motor #3
Learning Progress
0%
Listening to the machine
Recording how this machine sounds and feels during normal operation.
Building a vibration fingerprint
Identifying the unique signature of this machine running healthily.
Setting the normal range
Establishing what counts as normal — so anything outside it gets flagged immediately.
Monitoring begins
Waiting for learning to complete…
Live health score — monitoring active
96%
Pump Motor #3
● HEALTHY
Current readings
Health Index 96.2%
Anomaly Score 0.038
Alert latency 312 ms
Status Monitoring active
Step 3

Continuous monitoring.
Plain-language alerts.

The system scores every second of vibration data and compares it to the healthy model. When the score begins declining — even slowly, over weeks or months — the trend is detected and your team is notified with a clear recommended action.

  • Health index updated every second, around the clock
  • Gradual trends detected weeks or months before failure
  • Alerts include recommended action — not just a number
  • Monitoring continues even if internet connectivity drops
<500ms
From vibration anomaly to alert reaching your team. Not the next inspection round.
Alert feed — live
⚠ Fault Detected — Gearbox Unit B
Health index below warning threshold (38%). Vibration pattern indicates progressive bearing damage. Confidence: high. Recommend immediate inspection.
Inspect within 24 hours
Detected 2 minutes ago
Early Warning — Pump Motor #3
Health index declining from 94% → 71% over the past 6 weeks. Gradual downward trend consistent with bearing wear. Safe to continue running at current load.
Schedule inspection this month
Trend detected 3 weeks ago
✓ Normal — Compressor A
Health index: 97%. No anomalies detected in the past 30 days. Operating within healthy parameters at all conditions.
Updated just now

Three years of equipment health — simulated

This chart simulates a real equipment lifecycle. The health index starts high after installation, holds steady for months, then begins an irreversible decline as wear accumulates — until CondiCloud detects the fault and fires an alert.

Health Index — Bearing Asset (3-Year Simulation)
Status:
Health Index:
Time:
Phase:
Healthy Months 1–14
Degrading Months 15–26
Warning Months 27–32
Alert fired Month ~33
Health Index
Healthy (≥70%)
Degrading (40–70%)
Warning (<40%)
Alert threshold (40%)

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