Approved By: UGC AICTE
| 
             Duration: 4 Years | 
          
             Eligibility: 10+2 or Equivalent | 
        
Course Duration: Four Years (Semester System)
Course Eligibility: Pass with 70% aggregate marks in 10+2 or equivalent (with Physics, Mathematics and English). OR Pass with 50% aggregate marks in 10+2 or equivalent (with Physics, Mathematics and English) subject to valid score in LPU NEAT - UG 2011/ AIEEE/ State Level Entrance Test/ SAT.
Admission Criteria: Merit in qualifying examination, subject to eligibility criteria.
Entrance/Eligibility Test: As per University Rules (LPU NEAT - UG 2011)
Programme Mode: Regular
Course Syllabus
Part - I
| 
 Course Code  | 
 Course Title  | 
| 
 MTH101  | 
 Engineering Mathematics – I  | 
| 
 PHY102  | 
 Electricity & Magnetism  | 
| 
 ENG100  | 
 Communication Skills – I  | 
| 
 CSE101  | 
 Foundation of Computing  | 
| 
 CHE101  | 
 Chemistry  | 
| 
 CHE102  | 
 Chemistry Lab  | 
| 
 MTH102  | 
 Engineering Mathematics – II  | 
| 
 PHY112  | 
 Modern Physics & Electronics  | 
| 
 ENG101  | 
 Communication Skills – II  | 
| 
 MGT593  | 
 Managerial Effectiveness  | 
| 
 ECE100  | 
 Introduction to Practical Electronics  | 
| 
 PHY122  | 
 Physics Lab II  | 
| 
 ECE001A  | 
 General Seminar  | 
| 
 ECE201  | 
 Electronic Devices & Circuits  | 
Part - II
| 
 ECE209  | 
 Signal, Systems and Networks  | 
| 
 ECE202  | 
 Digital Electronics Circuits  | 
| 
 MEC101  | 
 Mechanical Science I  | 
| 
 ELE201  | 
 Unified Electrical Lab I  | 
| 
 SSE  | 
 Social Science 1  | 
| 
 ELE202  | 
 Transformers & DC Machines  | 
| 
 ELE203  | 
 Field Theory  | 
| 
 ENG108  | 
 Reading and writing Skills  | 
| 
 ELE204  | 
 Unified Electrical Lab II  | 
| 
 CSE202  | 
 Object oriented programming  | 
| 
 MTH 201  | 
 Complex Analysis & Transform Techniques  | 
| 
 ELE001B  | 
 General Seminar  | 
Part - III
| 
 ELE300  | 
 Induction & Synchronous Machines  | 
| 
 ELE301  | 
 Power Electronics  | 
| 
 ELE302  | 
 Power Systems I  | 
| 
 ECE301  | 
 Microprocessor Based System Design  | 
| 
 ELE303  | 
 Unified Electrical Lab III  | 
| 
 SSE  | 
 Social science II  | 
| 
 ELE304  | 
 Power System II  | 
| 
 ECE305  | 
 Control Systems  | 
| 
 ELE426  | 
 Utilization & Traction  | 
| 
 ELE306  | 
 Unified Electrical Lab IV  | 
| 
 ECE300  | 
 Digital Signal Processing  | 
| 
 ELE307  | 
 Electrical Drives  | 
| 
 ELE001C  | 
 General Seminar  | 
Part - IV
| 
 ELE441  | 
 Industry Internship Project Or  | 
| 
 DE1  | 
 Dept. Elective I  | 
| 
 Major Elective A1/B1/C1  | 
|
| 
 DE2  | 
 Dept. Elective II  | 
| 
 OE1  | 
 Open Elective – I  | 
| 
 ELE442A  | 
 Minor Project Part A  | 
| 
 OE2  | 
 Open Elective – II  | 
| 
 Major Elective A2/B2/C2  | 
|
| 
 Major Elective A3/B3/C3  | 
|
| 
 ELE400  | 
 Electrical Machine Design  | 
| 
 ELE404  | 
 Computer Aided Power System Analysis  | 
| 
 ELE001D  | 
 General Seminar  | 
| 
 ELE442B  | 
 Minor Project Part B  | 
List of Departmental Elective - I
| 
 ELE421  | 
 Flexible AC Transmission  | 
| 
 ELE422  | 
 Non Conventiional Energy Sources  | 
| 
 ELE423  | 
 Reliability & Quality Management  | 
List of Departmental Elective – II
| 
 ELE424  | 
 HV Engineering  | 
| 
 ELE425  | 
 Modelling, Simulation & Optimization Techniques  | 
| 
 ELE427  | 
 Power Quality  | 
Name Of Specialisation(1): Power systems
| 
 Advanced Power System Stability (A1)  | 
Name Of Specialisation(2): Instrumentation and Control
| 
 Advanced Control Systems (B1)  | 
Name Of Specialisation(3): Drives
| 
 ECE445  | 
 Computer control of electric drives (C1)  |