• Progressive, skill-based training approach: Novice → Adept → Wizard
• Hands-on practice with real vibration data and equipment
• Trainers with field and industry certification experience
• Post-training support and mentoring
• Certificate of Completion awarded for each course
• Modes: On-site / Online Live / Hybrid
• Batch Size: Small groups for interactive learning
• Languages: English & Urdu (on request)
The Novice course introduces the core concepts of vibration analysis and condition monitoring. It covers the basics of vibration theory, sensor types, data collection methods, and common machine faults. Ideal for maintenance personnel, new analysts, and anyone entering the field..
Topics Covered:
• Vibration basics: terminology, units, frequency, and amplitude
• Overview of sensors and data collectors
• Introduction to unbalance, misalignment, and looseness
• Signal types: time waveform and spectrum
• Hands-on demo with real data
• Best practices for route-based data collection
Duration: 3–4 Days
Who should attend: Maintenance staff, technicians, entry-level analysts
Prerequisites: None
The Adept course builds upon the fundamentals and focuses on deeper diagnostic skills. Participants learn to interpret vibration spectra, identify complex faults, and improve accuracy in machinery condition assessments. This course is ideal for analysts with hands-on experience looking to sharpen their diagnostic abilities.
Topics Covered:
• Advanced frequency analysis and fault signature recognition
• Gear, bearing, and motor fault identification
• Phase analysis, resonance, and cross-channel techniques
• Time waveform interpretation
• Severity assessment and reporting
• Case studies and fault simulations
Duration: 4–5 Days
Who should attend: Vibration analysts, condition monitoring personnel
Prerequisites: Completion of Novice course or equivalent experience.
The Wizard course is for experienced professionals aiming to master vibration diagnostics and condition monitoring strategy. It includes advanced signal processing, structural dynamics, and program management. This is your step toward becoming a true vibration specialist.
Topics Covered:
• Advanced dynamic behavior of rotating machinery
• Critical speeds, natural frequencies, and modal concepts
• Expert-level fault detection and root cause analysis
• Program design, reporting, and reliability-based strategies
• Live case studies and complex diagnostic scenarios
• Leadership in condition monitoring
Duration: 5 Days
Who should attend: Senior analysts, reliability engineers, condition monitoring managers
Prerequisites: Completion of Adept course and significant field experience
We offer specialized Solutions and Services to effectively identify and rectify maintenance challenges.
Reliability Centered Maintenance (RCM)
Consultation / Solution Planning
Supplies & Services (as per the need identified under consultation)
Condition Based Monitoring (CBM) of Rotary Equipment
Vibration Induced Fatigue Failure ((VIFF) Studies and Integrity Assessment as per Energy Institute UK guidelines
Remaining effective life for Rotary Equipment (RELA)
Root cause failure and criticality analysis (RCFA, FMEA, FMECA)
Pump performance evaluation as per API610
Objective: Assess pipeline vibration using AVIFF methodology as per Energy Institute (EI) Guidelines.
Scope: Covers high-pressure, high-flow pipelines with ICP accelerometer and strain gauge analysis techniques.
Key Elements:
Sensor Placement: Strain gauge and ICP accelerometers positioned at critical locations.
Data Acquisition: Continuous monitoring of vibration amplitude and frequency.
Threshold Analysis: Compare measured vibration levels against EI guideline thresholds.
Risk Assessment: Identify potential fatigue and failure risks.
It ensures the pump operates safely, efficiently, and reliably, particularly in demanding industries like oil and gas, by setting strict guidelines for design, construction, and performance, ultimately minimizing the risk of failure and optimizing system efficiency throughout the pump's lifespan
Safety and Reliability
Performance Optimization
Reduced Maintenance Costs
Cost-Effectiveness
Performance Curves
Vibration and Noise Levels
Motors
Pumps
Gearboxes
Compressors
Steam Turbines
Gas Turbines
Hydro Turbines
Pipework
Storage Tanks
Pressure Vessels
Bridges and Buildings
Power transmission Towers
Wind Turbine Towers
Critical Components of aircrafts
Portable and battery operated (Route Based Measurements)
Can capture Dynamic signal
Multichannel with simultaneous data acquisition
Having capabilities of incorporating multiple types of sensors as per scope of the work
Upgradable in terms of I/O for larger scope
Powerful software platform:
Severity evaluation on the basis of desired criteria
Storage of collected measurement data
Analysis and diagnosis of problems
Reporting capabilities
Interface to e.g., CMMS (SAP) etc…