ORBITLINE PROFESSIONAL TRAINING

Vibration Analysis
Category I

Build a strong foundation in machinery vibration, vibration measurement, data collection and basic condition monitoring for rotating equipment.

Vibration Fundamentals Data Collection Basic Spectrum Analysis Practical Machine Examples
Training Level
Foundation
Target
Category I
Experience Level
Beginner
Delivery
Classroom / On-Site
Course Overview

Start Your Journey in Machinery Vibration Analysis

The ORBITLINE Vibration Analysis Category I course introduces participants to the fundamentals of vibration-based condition monitoring for industrial rotating equipment.

Participants learn how vibration is generated, how it is measured, how sensors are selected and mounted, and how reliable vibration data should be collected from machines.

The course also introduces vibration spectra, overall vibration levels, machine running speed and basic fault patterns associated with common rotating machinery problems.

Practical examples are used throughout the training to help participants connect vibration measurements with the physical behavior of pumps, motors, fans, gearboxes and other equipment.

Category I Skills

Understand basic vibration terminology
Understand frequency, amplitude and phase
Select correct measurement locations
Mount vibration sensors correctly
Collect repeatable vibration data
Recognize basic vibration patterns
Identify abnormal machinery condition
Who Should Attend?

Ideal for Professionals Starting in Condition Monitoring

Designed for personnel who need a practical introduction to vibration measurement and machinery condition monitoring.

01

Maintenance Technicians

Technicians responsible for inspecting and maintaining industrial rotating equipment.

02

Vibration Technicians

Personnel beginning their career in vibration monitoring and predictive maintenance.

03

Mechanical Technicians

Technicians working with pumps, motors, fans, gearboxes, compressors and other machines.

04

Maintenance Engineers

Engineers who require a basic understanding of machinery vibration and condition monitoring.

05

Reliability Personnel

Professionals starting work in reliability and predictive maintenance programs.

06

Operators

Plant operators who want to better understand machinery condition and vibration indications.

Learning Outcomes

What You Will Learn

Build the foundation required to collect reliable vibration data and understand basic machinery condition.

Vibration Fundamentals

Understand vibration amplitude, frequency, phase and the basic motion of rotating machinery.

Measurement Units

Understand displacement, velocity and acceleration and where each parameter is commonly used.

Sensor Selection

Understand accelerometers, velocity sensors and proximity probe measurement principles.

Data Collection

Select appropriate measurement locations and collect repeatable machinery vibration data.

Basic Spectrum Analysis

Recognize machine running speed, harmonics and major frequency components.

Basic Fault Recognition

Recognize common indications of unbalance, misalignment, looseness and bearing problems.

Trend Analysis

Understand how changes in vibration levels over time can indicate developing machine problems.

Condition Reporting

Communicate basic vibration observations clearly to maintenance and reliability teams.

Course Curriculum

Vibration Analysis Category I Topics

Select each module below to view the main subjects covered during the training.

Module 01 — Introduction to Condition Monitoring
  • What is condition monitoring?
  • Predictive maintenance principles
  • Preventive versus predictive maintenance
  • Why machinery vibration is monitored
  • Benefits of early fault detection
  • Condition monitoring technologies overview
Module 02 — Fundamentals of Machinery Vibration
  • What is vibration?
  • Simple harmonic motion
  • Amplitude
  • Frequency
  • Period
  • Phase
  • Machine running speed
  • RPM and Hz conversion
Module 03 — Vibration Measurement Units
  • Displacement
  • Velocity
  • Acceleration
  • Peak amplitude
  • Peak-to-peak amplitude
  • RMS amplitude
  • Choosing the appropriate vibration parameter
Module 04 — Vibration Sensors
  • Accelerometers
  • Velocity transducers
  • Proximity probes
  • Sensor frequency range
  • Sensor sensitivity
  • Common sensor applications
Module 05 — Sensor Mounting
  • Stud mounting
  • Magnetic mounting
  • Hand-held probes
  • Mounting surface preparation
  • Effect of poor mounting
  • Measurement repeatability
Module 06 — Measurement Locations & Directions
  • Horizontal measurement
  • Vertical measurement
  • Axial measurement
  • Bearing housing measurements
  • Machine train measurement points
  • Measurement location identification
  • Repeatable route setup
Module 07 — Vibration Data Collection
  • Using a vibration analyzer or data collector
  • Machine identification
  • Route-based data collection
  • Measurement consistency
  • Machine operating condition
  • Loading considerations
  • Recognizing incorrect measurements
  • Data quality checks
Module 08 — Overall Vibration
  • Overall vibration level
  • Velocity overall
  • Acceleration overall
  • Interpreting vibration severity
  • Baseline measurements
  • Alarm concepts
  • Trend monitoring
Module 09 — Introduction to FFT Spectrum
  • Time waveform versus spectrum
  • What is FFT?
  • Frequency axis
  • Amplitude axis
  • Machine running speed frequency
  • 1X running speed
  • 2X and higher harmonics
  • Basic spectrum interpretation
Module 10 — Basic Unbalance
  • What causes rotor unbalance?
  • Heavy spot concept
  • Typical 1X running speed vibration
  • Radial vibration behavior
  • Basic unbalance recognition
Module 11 — Basic Misalignment
  • Shaft misalignment
  • Angular misalignment
  • Parallel offset misalignment
  • Coupling effects
  • Axial vibration
  • 1X and 2X vibration patterns
Module 12 — Mechanical Looseness
  • Loose foundation bolts
  • Loose bearing housings
  • Structural looseness
  • Basic harmonic patterns
  • Visual inspection considerations
Module 13 — Rolling Element Bearing Basics
  • Bearing components
  • Inner race
  • Outer race
  • Rolling elements
  • Cage
  • Common bearing failure causes
  • Lubrication effects
  • Basic bearing vibration indications
Module 14 — Gearbox Vibration Basics
  • Gearbox components
  • Gear teeth
  • Input and output shafts
  • Gear mesh frequency introduction
  • Basic gearbox vibration patterns
  • Gear wear and damage awareness
Module 15 — Pumps, Fans & Motors
  • Pump vibration basics
  • Motor vibration basics
  • Fan vibration basics
  • Blade pass frequency introduction
  • Vane pass frequency introduction
  • Flow-related vibration awareness
  • Cavitation introduction
Module 16 — Trend Analysis
  • Baseline vibration values
  • Vibration trends
  • Rate of change
  • Comparing similar machines
  • Detecting developing problems
  • When to request further analysis
Module 17 — Practical Data Collection
  • Selecting machine measurement points
  • Correct sensor orientation
  • Collecting radial measurements
  • Collecting axial measurements
  • Comparing measurement positions
  • Reviewing collected vibration data
Module 18 — Practical Machinery Case Studies
  • Normal machine vibration example
  • Unbalance example
  • Misalignment example
  • Mechanical looseness example
  • Bearing condition example
  • Pump vibration example
  • Fan vibration example
  • Motor vibration example
Industrial Applications

Machinery Covered During Training

Participants learn how basic vibration principles apply to common rotating equipment used throughout industry.

Pumps
Motors
Fans
Compressors
Gearboxes
Blowers
Course Information

Training Details

Training Level

Foundation-level vibration analysis training suitable for participants beginning in machinery condition monitoring.

Recommended Background

No previous vibration certification is required. Basic mechanical knowledge is beneficial.

Training Method

Instructor-led theory, machinery examples, vibration spectra, data collection exercises and practical case studies.

Training Format

Public classroom programs and private on-site corporate training can be arranged.

Location

Training programs can be delivered in Saudi Arabia or at customer industrial facilities.

Corporate Training

Customized programs can be arranged for maintenance, inspection and condition monitoring teams.

Certification Information: This course is designed to develop knowledge relevant to Vibration Analysis Category I. Personnel certification, examination eligibility, required experience and certification requirements depend on the selected independent certification body. Course attendance alone should not be interpreted as accredited personnel certification unless this is specifically stated in an ORBITLINE quotation.
Why ORBITLINE?

Learn Vibration from Practical Industrial Examples

Build a strong foundation using machinery examples that connect vibration theory to actual rotating equipment.

01

Practical Training

Learn how vibration measurements are actually collected from industrial rotating equipment.

02

Real Machinery Examples

Understand vibration behavior using pumps, motors, fans, gearboxes and other common equipment.

03

Strong Foundation

Build the knowledge required before progressing into more advanced vibration analysis and diagnostics.

04

Reliability Focus

Understand how good vibration data contributes to early fault detection and equipment reliability.

Start Your Vibration Analysis Journey

Contact ORBITLINE for upcoming Category I training dates, pricing, group registration or private on-site training.

Contact Training Team
ORBITLINE   |   Asset Reliability & Condition Monitoring