Engineer analysing vibration with laptop, motor and sensor

Vibration Learning &
Analysis Platform

Interactive simulators, signal-processing labs and an AI assistant — built for engineers, students and condition-monitoring practitioners.

Platform features

Everything you need to learn and analyse machinery vibration

From textbook-grade simulations to industrial-style spectrum analysis — one platform.

Gear Lab

Multi-stage spur, bevel and planetary gear simulator with GMF, FHT and fractional-mesh signatures.

Bearing Analysis

BPFI / BPFO / BSF / FTF kinematics with load-zone modelling and 3D animated rolling elements.

Signal Processing

FFT, envelope, kurtogram and order tracking with real-time waveform & spectrum cursors.

Interactive 3D

Watch gears mesh, bearings roll and faults excite the structure — synchronised with the generated vibration signal.

AI Assistant

Built-in expert guide answers vibration questions, walks through fault diagnostics and explains the math.

Course Modules

Structured lessons with hands-on labs covering rotor dynamics, gearbox faults and bearing condition monitoring.

FAQ

Frequently asked questions

Quick answers about who the platform is for and how it works.

FAQ

Mechanical engineers, maintenance teams, vibration analysts and university students learning rotating-machinery diagnostics.

No. Everything runs in your browser — gear and bearing simulators, FFT engine and AI assistant are all client-side or served from this site.

Yes — gear-mesh signals are built from Hertzian-stiffness, static transmission error and FRF, and bearing impulses use damped sinusoidal ring-down. Faults match published signature models.

Importing CSV / WAV waveforms into the signal processing lab is on the roadmap. The simulators already cover the major rotating-machinery fault families used in training.

Ready to start analysing vibration?

Open the labs, run a simulation, and let the AI guide you through interpretation.

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Questions, feedback or partnership inquiries — drop us a note.

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