DIPLOMA IN POWER & ELECTRICAL ENGINEERING
DIPLOMA IN POWER & ELECTRICAL ENGINEERING – Diploma Level
DURATION : 1–2 MONTHS
- Importance of electricity in modern industry
- Generation, transmission, and utilization overview
- Electrical standards and codes (IS, IEC)
- Electrical hazards and risk awareness
- Electrical units and measurements
Atomic structure and flow of electrons
AC and DC fundamentals
Voltage, current, resistance, power, and energy
Ohm’s Law and Kirchhoff’s Laws
Series and parallel circuits
Single-phase and three-phase systems
Standard electrical symbols and schematic reading
- Transformers (single-phase & three-phase)
- DC machines
- Induction motors (1-phase & 3-phase)
- Synchronous motors
- Star-delta and DOL starters
- Measuring instruments:
- Voltmeter
- Ammeter
- Wattmeter
- Energy meter
Power generation sources
Transmission and distribution systems
Substation components
Distribution transformers
LT and HT distribution networks
Overhead and underground distribution systems
Electrical losses and efficiency
Residential electrical projects
Commercial electrical projects
Industrial electrical projects
Reading and understanding electrical BOQ
Site survey and project documentation
Electrical layout interpretation
HT and LT systems overview
HT panels and switchyards
Circuit breakers (ACB, VCB, SF6)
LT panels and distribution boards
Safety procedures in HT/LT work
Electrical permits and lock-out/tag-out - (LOTO)
Marine power distribution systems
Shipboard electrical equipment
Marine cables and terminations
Electrical safety in marine environments
Emergency power systems
Maintenance of marine electrical systems
Purpose of estimation and costing
Electrical drawings for estimation
Material take-off methods
Estimation of:
Cables
Conduits
Panels
Lighting fixtures
- Labor cost calculation
- Tender and bidding process
- Preparation of BOQ and cost reports
- Connected load and demand load
- Diversity and demand factors
- Total load calculation
- Cable sizing
- Selection of:
Circuit breakers - Contactors
- Relays
- Transformers
- Motors and drives
- Selection of:
- Introduction to AutoCAD® Electrical
- Project creation and management
- Electrical schematics creation
- Panel layout drawings
- Cable schedules and wiring diagrams
- Symbol libraries and standards
- Report generation (BOM, wire list)
- Revision control and documentation
- Electrical safety rules and PPE
- Installation practices for electrical equipment
- Commissioning procedures
- Preventive and breakdown maintenance
- Testing before energizing
Testing Instruments Practical - Megger testing
- Multimeter measurements
- Tong Tester (Clamp Meter)
- Earth resistance tester
- Neon tester
- Loop calibrator operation
- Types of electrical panels:
- PCC
- MCC
- APFC
- PLC panels
- Panel design principles
- Internal wiring practices
- Cable dressing and routing
- Panel testing and inspection
- Cable types and specifications
- Cable laying methods
- Cable trays and trenching
- Gland booting techniques
- Ferrules and numbering
- Lug crimping and termination standards
- Bus bar materials and ratings
- Bus bar arrangement and sizing
- Insulation methods
- Switchgear components:
- MCB
- MCCB
- ACB
- Relays and contactors
- Protection coordination
- Different types of switches
- Control relays
- Time delay relays
- Overload relays
- Push buttons and selector switches
- Control circuit wiring
- Power quality issues
- Harmonics and mitigation
- Energy efficiency techniques
- Smart grids overview
- Power factor improvement systems
- Generator working principles
- Generator synchronization methods
- Automatic Mains Failure panels
- VFD basics and applications
- Speed control of motors using VFD
- Energy saving using drives
- Generator working principles
- Generator synchronization methods
- Automatic Mains Failure panels
- VFD basics and applications
- Speed control of motors using VFD
- Energy saving using drives
- Load testing procedures
- Functional testing
- Performance evaluation
- Fault identification and rectification
- Documentation and handover
- Energy monitoring systems
- Power analyzers
- Load monitoring
- Data logging and reporting
- Preventive power management strategies
- Live electrical project execution
- Electrical design and documentatio
- Estimation and costing
- Panel design and wiring
- Testing and commissioning
- Project presentation and evaluation
Syllabus
Job Opportunity
Faq
Anyone with an ITI, Diploma, 10+2, , working professional background or Interested people can join.
The course is 1–2 months, depending on the fixed schedule.
The program covers electricity fundamental principles and electrical machines and power distribution and panel design and AutoCAD Electrical and safety and testing and maintenance and project execution.
Yes, the course provides practical hands-on-training through real-world projects and hands-on sessions which cover all major electrical systems.
You will use AutoCAD® Electrical and Eplan for electrical drawing and panel design.
You can work as an Electrical Supervisor, Electrical Technician,Panel Designer, or electrical maintenance in industrial.
Yes, you will learn electrical safety, PPE usage, Lock-Out/Tag-Out (LOTO), and testing before energizing equipment.
Yes, you will complete a final industrial project, including panel wiring, load testing, and commissioning.
Absolutely, you will receive a Diploma Certificate after completed.
The course enables working professionals to learn electrical and power systems through its specialized training program.
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