The Advanced Equipment Troubleshooting, Testing & Adjusting with Electronic Technician (ET) training program, designed by Global Horizon Training Center, provides maintenance and technical personnel with a structured approach to diagnosing equipment faults, conducting testing and adjustment procedures, and effectively navigating Electronic Technician (ET) diagnostic software.
The program focuses on developing systematic troubleshooting capabilities by combining equipment operating principles, electronic diagnostic information, fault-code interpretation, parameter monitoring, testing procedures, and adjustment techniques. Participants will learn how to use ET functions and diagnostic data to identify abnormalities, determine probable causes, and support efficient maintenance decisions.
By the end of this program, participants will be able to:
Apply systematic troubleshooting methodologies to equipment faults.
Understand the interaction between mechanical, electrical, and electronic control systems.
Navigate Electronic Technician (ET) software efficiently.
Identify and interpret diagnostic and event codes.
Monitor equipment parameters and operating conditions.
Analyze sensor, actuator, and electronic control information.
Perform structured testing and adjustment procedures.
Differentiate between symptoms, faults, and root causes.
Use diagnostic information to support maintenance decisions.
Verify equipment condition following troubleshooting and adjustment.
Reduce unnecessary component replacement and equipment downtime.
Apply best practices for documenting troubleshooting activities.
The program uses a technical and application-oriented learning approach combining:
Instructor-led technical presentations
Equipment troubleshooting scenarios
Diagnostic logic and fault-analysis exercises
ET software navigation demonstrations
Diagnostic and event-code interpretation
Parameter and status-data analysis
Testing and adjustment examples
Technical discussions and case studies
Troubleshooting decision-making exercises
Successful implementation of the knowledge gained from this program can help organizations:
Improve equipment troubleshooting efficiency.
Reduce diagnostic time and equipment downtime.
Improve maintenance personnel's diagnostic capabilities.
Reduce unnecessary replacement of serviceable components.
Improve the accuracy of fault identification.
Standardize troubleshooting and testing procedures.
Improve utilization of electronic diagnostic information.
Strengthen preventive and corrective maintenance practices.
Improve equipment reliability and availability.
Support more effective maintenance planning and decision-making.
This program is suitable for:
Mechanical Maintenance Technicians
Heavy Equipment Technicians
Equipment Maintenance Engineers
Electrical and Electronic Technicians
Field Service Technicians
Maintenance Supervisors
Diagnostic Technicians
Workshop Technicians
Service Engineers
Equipment Inspectors
Technical Support Personnel
Day 1 – Fundamentals of Equipment Troubleshooting
Systematic Troubleshooting and Diagnostic Principles
Principles of effective equipment troubleshooting
Understanding equipment systems and subsystems
Mechanical, electrical, and electronic fault relationships
Symptoms versus actual root causes
Structured troubleshooting methodology
Gathering equipment operating information
Understanding technical specifications and service information
Visual inspection and preliminary diagnostic checks
Establishing normal versus abnormal operating conditions
Developing a logical troubleshooting sequence
Common troubleshooting mistakes and how to avoid them
Maintenance safety considerations during diagnostic activities
Day 2 – Electronic Technician (ET) Program & Navigation
Using ET as a Diagnostic Platform
Introduction to Electronic Technician (ET)
ET system architecture and diagnostic functions
Communication between ET and electronic control modules
Understanding equipment electronic control systems
ET interface overview
Navigating menus, screens, and diagnostic functions
Identifying connected electronic control modules
Accessing equipment and system information
Viewing system status and configuration information
Understanding diagnostic codes
Understanding event codes
Active versus logged faults
Viewing and interpreting operating parameters
Using ET information within a structured troubleshooting process
Day 3 – Electronic Diagnostics & Parameter Analysis
Interpreting Equipment Diagnostic Information
Understanding electronic control module information
Sensor and actuator fundamentals
Inputs, outputs, and control logic
Identifying abnormal sensor readings
Monitoring real-time equipment parameters
Comparing actual values against expected conditions
Understanding fault-code conditions and triggers
Diagnostic code interpretation methodology
Event-code analysis
Identifying intermittent electronic faults
Electrical circuit troubleshooting principles
Using parameter trends to support diagnosis
Correlating ET information with physical equipment symptoms
Day 4 – Equipment Testing & Adjusting Procedures
Verification, Testing and System Adjustment
Principles of equipment testing and adjustment
Preparing equipment for testing procedures
Selecting appropriate test points and parameters
Checking operating conditions before adjustment
Component and system testing methodology
Sensor and actuator verification
Pressure, temperature, speed, and performance considerations
Understanding calibration requirements
Adjustment procedures and technical specifications
Using ET-supported testing functions
Evaluating test results
Determining whether adjustment or repair is required
Verification following adjustment
Recording test and adjustment results
Day 5 – Advanced Troubleshooting & Diagnostic Best Practices
Integrated Fault Diagnosis and Maintenance Decision-Making
Developing advanced troubleshooting strategies
Combining ET data with equipment observations
Diagnosing multiple and related fault conditions
Prioritizing diagnostic codes and symptoms
Identifying probable root causes
Troubleshooting intermittent problems
Distinguishing electronic faults from mechanical problems
Avoiding unnecessary component replacement
Post-repair diagnostic verification
Clearing and reviewing diagnostic information appropriately
Documenting troubleshooting findings and corrective actions
Improving diagnostic efficiency and equipment reliability
Troubleshooting case scenarios
Final knowledge review and key technical takeaways