Troubleshooting Of Electrical Equipment and Control Systems Course

Explore troubleshooting techniques for electrical equipment and control systems in this training course. Develop skills to diagnose and resolve system issues. LBTA offers Troubleshooting Of Electrical Equipment and Control Systems Course in Electrical and Power Engineering Training Courses.

EnglishOne WeekConfirmed£from 5,300 GBP

Upcoming schedule

210 sessions
VenueStartsEndsNet feesBook
Bali, Indonesia5-Jul-20269-Jul-20268,700 GBPRegister
Berlin, Germany5-Jul-20269-Jul-20268,300 GBPRegister
Munich, Germany5-Jul-20269-Jul-20268,900 GBPRegister
New York, United States5-Jul-20269-Jul-202612,750 GBPRegister
Paris, France5-Jul-20269-Jul-20267,900 GBPRegister
Rome, Italy5-Jul-20269-Jul-20267,900 GBPRegister
Zurich, Switzerland5-Jul-20269-Jul-20268,700 GBPRegister
Amsterdam, Netherlands12-Jul-202616-Jul-20269,100 GBPRegister
Barcelona, Spain12-Jul-202616-Jul-20268,300 GBPRegister
Dubai, UAE12-Jul-202616-Jul-20265,722.5 GBPRegister
Hong Kong, Hong Kong12-Jul-202616-Jul-20269,100 GBPRegister
Interlaken, Switzerland12-Jul-202616-Jul-20269,950 GBPRegister

Course syllabus

Course Description

Accurate troubleshooting and subsequent repair of electrical equipment is necessary in today’s sophisticated industrial environments to ensure continued efficient operation and productivity of the equipment. Delegates are encouraged to raise queries both during and at any time after attending the course. Delegates are also encouraged to bring any specific issues that they may wish to raise to this course.

Course Objectives

  • To develop a structured approach to electrical troubleshooting using common terminology and to provide troubleshooting methods and solutions for various electrical equipment and control systems problems. To develop a better understanding of various test equipment used in electrical troubleshooting.
  • To develop a better understanding of various electrical equipment and control systems design, functionality and failure modes.
  • To better understand work practices, which allow for successful troubleshooting including job plans.
  • To provide examples of successful troubleshooting techniques and ‘hands on’ experiences plus case studies and group problem solving exercises.
  • To provide troubleshooting methods and solutions for various electrical equipment and control systems problems.

Course Outlines

THE TECHNOLOGY OF ELECTRICAL EQUIPMENT

Definitions and descriptions of electrical equipment used in industrial applications including:

Source Equipment – transformers

  • power supplies (UPS)
  • batteries
  • generators

Switching Equipment – switchgear

  • motor control centre (MCC)
  • disconnects
  • contactors
  • overload relays
  • starters
  • neutral ground resistors (NGR)

Control Equipment – variable frequency drives (VFD)

  • programmable logic controllers (PLC)
  • distributed control systems (DCS)
  • power monitoring and control
  • relays and timers
  • limit switches
  • temperature switches
  • pressure switches
  • level switches
  • speed switches
  • vibration switches
  • safety and shutdown switches
  • motor/feeder protective devices

Load Equipment – motors (AC induction, asynchronous, DC)

  • heaters
  • solenoids
  • valve actuators
  • signaling and alarm devices

TROUBLESHOOTING APPLICABLE TO THE ABOVE LIST

  • methods
  • terminology
  • principles
  • special techniques

TEST EQUIPMENT

  • digital volt meter (DVM)
  • oscilloscope or oscillograph
  • megger
  • hi-pot tester
  • frequency meter
  • ammeter (inline, clamp-on)
  • power meter (watt, VAR)
  • current transformer
  • specialised equipment

TYPICAL PROBLEMS/FAILURES

  • common mode failures
  • phase imbalance
  • contact pitting/arcing
  • electronic control component failure
  • blown fusing
  • damaged windings
  • worn bearings
  • damaged brushes
  • burnt ballasts
  • damaged excitation circuits
  • battery cell failure
  • inverter/rectifier failure
  • high voltage bushing failure
  • switch failure
  • ground fault

TYPICAL TROUBLESHOOTING JOB PLAN DEVELOPMENT

  • identify troubleshooting step sequence
  • prepare procedures
  • documentation
  • follow-up
  • regulatory requirements
  • training

TYPICAL ELECTRICAL DRAWINGS AND SYMBOLS

  • single line
  • control wiring
  • distribution
  • symbols

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