Domestic Electrical Appliances Training

Domestic Electrical Appliances Training prepares learners to install, service, troubleshoot, repair, and maintain residential household electrical appliances and wiring. This course covers the functioning of appliances ranging from basic lighting and wiring systems to advanced high-power home appliances like washing machines, refrigerators, air conditioners, induction cooktops, and water heaters.

Participants gain practical skills in assembling, disassembling, fault diagnosis, component replacement, motor servicing, PCB and sensor-level repairs, and electrical safety practices in homes. This training is suitable for electricians, service technicians, beginners in electrical work, and individuals seeking self-employment in electrical servicing.


Topics Covered

1. Basics of Domestic Electrical Systems

  • Introduction to home wiring systems (single phase supply)

  • Earthing, MCB, ELCB, RCCB, fuses in home safety

  • Load calculation for domestic installations

  • Protection against shock, leakage, and overload

2. Wiring, Switches & Accessories

  • Fan regulators, dimmers, socket wiring

  • Switchboards, modular switches installation

  • Conduits, cables, junction box wiring

  • LED light installation and troubleshooting

3. Motors & Pumps in Domestic Use

  • Ceiling fan, pedestal fan servicing

  • Submersible & jet motors installation & repair

  • Capacitor testing & replacement

  • Motor rewinding basics

4. Kitchen Appliances Servicing

  • Mixer, grinder, induction stove, microwave servicing

  • Rice cooker, OTG & electric kettle repairs

  • Heating coils, thermostat & relay servicing

  • Common faults, replacement of spares

5. Laundry Appliances

  • Washing machine types & working (Fully automatic, semi-automatic, front load)

  • Motors, gear box, solenoid valves servicing

  • PCB faults, door lock issues, drain system faults

6. Refrigeration & Cooling Appliances

  • Refrigerator components (compressor, thermostat, relay, capillary)

  • Gas leakage identification, compressor faults

  • Air cooler & room AC servicing fundamentals

  • Cleaning, safety handling of refrigerant systems

7. Heating Systems & Water Heaters

  • Geyser installation & maintenance

  • Element, thermostat, cut-out servicing

  • Solar water heater introduction

  • Leakage, scaling & preventive maintenance

8. PCB Level Troubleshooting

  • Identifying sensors, relays, capacitors, diodes, transformers

  • Dry solder, short circuit diagnosis

  • Component replacement techniques

  • Testing using multimeter, continuity tester

9. Domestic Electrical Safety Procedures

  • Safe repair without electric shock

  • Handling wet environment faults

  • Working with live circuits: precautions

  • Customer safety awareness & service ethics

10. Service Documentation & Customer Handling

  • Repair estimate preparation

  • Warranty conditions and service records

  • Customer communication & home visit etiquette

  • Spare parts selection and inventory management


Learning Outcomes

After completion, participants will be able to:

  • Safely install, repair, and maintain home appliances

  • Diagnose electrical and mechanical faults in domestic equipment

  • Work independently as a service engineer or freelance technician

  • Understand PCB troubleshooting and component replacement

  • Provide preventive maintenance and customer service effectively


Project Work

Sample projects include:

  • Complete servicing of a domestic washing machine

  • Full repair log for refrigerator compressor and relay replacement

  • Troubleshooting induction stove and PCB repair

  • Fan motor servicing and capacitor testing report


Certification

Participants receive a certificate as Domestic Electrical Appliance Service Technician after training and successful project evaluation.


Who Can Join?

  • Beginners seeking electrical technician skills

  • Diploma / ITI / 10th or 12th pass interested in servicing

  • Working electricians wishing to upgrade skills

  • Individuals interested in self-employment

Plant Technologies: Electrical Systems Operator Training

(Training + Skill Assessment + Certification + Project)

Overview

Plant Technologies: Electrical Systems Operator Training is designed for technicians and engineers who work in industrial production plants such as steel, cement, power, petrochemical, food processing, pharmaceuticals, refineries, and general manufacturing units. The training focuses on operating and maintaining plant electrical equipment, ensuring reliable power supply, and supporting uninterrupted plant operations.

Participants learn how to operate motor control systems, power distribution panels, switchgear, transformers, protection systems, PLC-supported electrical panels, safety circuits, and emergency shutdown systems. Through skill assessment, participants identify their strengths and weaknesses. Those who need improvement undergo targeted training and receive certification based on real plant-oriented tasks.


Why Skill Assessment Is Important

Before training, each learner is assessed to check:

  • Ability to handle switchgear and electrical panels

  • Understanding of power supply and motor circuits

  • Knowledge of troubleshooting for industrial electrical systems

  • Safety awareness in live plant environments

  • Skills in preventive and predictive maintenance

This assessment ensures that the training focuses only on the gaps that must be improved to make the participant industry-ready.


Topics Covered

1. Introduction to Plant Electrical Systems

  • Power flow inside industrial plants

  • 3-phase supply characteristics and demand management

  • Distribution boards, LT panels, MCCs, PCCs overview

  • Auxiliary systems and plant utilities

2. Switchgear and Control Systems

  • MCB, MCCB, ACB, VCB operation

  • Control circuit logic, interlocking, and protections

  • Bus bars, relays, contactors, overload relays

  • Breaker safety, racking in/racking out procedure

3. Transformers and Substation Operations

  • Transformer operation, tap changers, and cooling systems

  • Industrial substation components and bay operations

  • Shutdown and energizing sequences

  • Earth switch, isolator handling and safety

4. Motors and Drives Operation

  • Induction motors & synchronous motor operation

  • Soft starters, VFDs, Servo drives overview

  • Remote and local operation modes

  • Load characteristics and troubleshooting

5. Generators, UPS, and Backup Systems

  • Diesel generator operations and synchronization

  • UPS power distribution & battery bank monitoring

  • Emergency power changeovers

  • Black start procedure

6. Industrial Protection Systems

  • Overcurrent, short circuit, earth fault protection

  • Load shedding, relay coordination

  • Arc flash hazards and mitigation practices

  • Trips, alarms, annunciators troubleshooting

7. Maintenance Practices in Plants

  • Daily, weekly, monthly maintenance checklists

  • Predictive maintenance (vibration, IR, insulation test)

  • Cable fault and termination procedures

  • Spare part management and documentation

8. Safety Practices in Industrial Electrical Work

  • Lockout–Tagout (LOTO) procedure

  • Permit to Work (PTW) system

  • PPE requirements for switchyard and panel area

  • Working with energized equipment precautions

9. Emergency & Shutdown Handling

  • Emergency shutdown logic & system reset

  • Fault response and reporting

  • Fire safety for electrical panels

  • Post-breakdown documentation techniques


What You Will Learn

After completing the program, participants will be able to:

  • Operate industrial electrical systems safely and efficiently

  • Handle switchgear, MCC, PCC, transformer, and control panels

  • Identify faults in motors, drives, and power circuits

  • Follow industrial maintenance procedures and documentation

  • Maintain continuous power supply for industrial processes


Project Work

Projects are based on real industrial scenarios, such as:

  • Transformer energizing and shutdown sequence study

  • MCC panel malfunction diagnosis and maintenance report

  • VFD-controlled motor load characteristics documentation

  • Generator synchronization project with operational logs


Certification

After assessment, training, and successful project completion, participants receive Electrical Systems Operator Certification for Industrial Plant Technologies with documented skills and project experience.


Who Can Join?

  • ITI / Diploma / B.Tech in electrical-related fields

  • Plant electricians, maintenance technicians, and operators

  • Service engineers looking to work in major industries

  • Freshers seeking plant operation careers

Process Controls and Instrumentation Training for Electrical Engineers

(Training + Skill Assessment + Certification + Project)

Overview

Process Controls and Instrumentation Training is designed for electrical engineers who work in automated industries such as petrochemical plants, oil & gas refineries, pharmaceuticals, food processing units, steel plants, power plants, water treatment plants, and manufacturing industries. The program builds strong practical knowledge of sensors, transmitters, controllers, industrial automation, SCADA, PLC-based process control, and instrumentation safety.

Before training, we assess each participant’s understanding of instrumentation devices, control loops, wiring, calibration, logic, and troubleshooting skills. This helps us identify skill gaps and provide targeted training. After training, participants receive certification along with project experience that reflects their real industrial capabilities.


Why Skill Assessment Is Important

Skill assessment helps engineers understand their strengths and areas that require improvement. It evaluates:

  • Basic understanding of instrumentation and sensors

  • Wiring, loop checking, and calibration skills

  • Ability to work with control loops and logic systems

  • Knowledge of field devices, controllers, and safety systems

  • Troubleshooting techniques in process industries

The assessment ensures that training is customized to the participant’s needs, making them more confident and job-ready.


Topics Covered

1. Fundamentals of Process Control Systems

  • Basics of process automation

  • Importance of instrumentation in industries

  • Open-loop and closed-loop control systems

  • P&ID symbols and instrument tags

2. Sensors and Transmitters

  • Temperature sensors (RTD, thermocouples)

  • Pressure sensors, level sensors, flow sensors

  • Smart transmitters and HART protocol

  • Signal types (4–20 mA, 0–10 V, pulse signals)

3. Control Valves and Final Control Elements

  • Control valve construction and types

  • Actuators: pneumatic, hydraulic, electric

  • Valve positioners and calibration

  • On-off valves vs. modulating valves

4. Distributed Control Systems (DCS)

  • Architecture and functions

  • Controller strategies and operations

  • Alarms, historian, trending, user interfaces

  • DCS troubleshooting methods

5. PLC for Process Control

  • PLC hardware and wiring

  • Ladder logic, function blocks, structured text

  • Analog IOs, interlocking, and safety logic

  • Field wiring and panel integration

6. SCADA and HMI Systems

  • SCADA architecture and communication

  • HMI design and process monitoring

  • Data logging, trends, and alarms

  • Remote control and networking

7. Calibration and Loop Checking

  • Field calibration techniques

  • Bench calibration standards

  • Loop tuning & PID control

  • Documentation and reporting

8. Instrumentation Safety

  • Intrinsically safe systems and ATEX

  • Hazardous area classification

  • Earthing, shielding, surge protection

  • Safety Integrity Level (SIL) basics


What You Will Learn

After completing the program, participants will be able to:

  • Handle installation, wiring, calibration, and testing of sensors

  • Work with PLC/DCS-controlled process applications

  • Understand and troubleshoot control loops

  • Configure transmitters, valves, IOs, and control panels

  • Apply safety practices and documentation in process industries


Project Work

Real-time industrial projects are assigned, such as:

  • Calibration of pressure/level transmitters with full documentation

  • PLC-based process control simulation with interlocking

  • Control valve fault diagnosis and maintenance report

  • SCADA trending and alarm mapping for a plant process


Certification

Participants who complete skill assessment, training, and project assignments receive Process Controls and Instrumentation Certification for Electrical Engineers with documented skill capabilities.


Who Can Join?

  • Diploma or B.Tech in Electrical, EEE, E&I, ECE

  • Working professionals in maintenance, automation, or instrumentation

  • Service engineers and control engineers

  • Fresh graduates planning to build a career in industries