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May 10th, 2017, 09:42 AM
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Syllabus of Electrical Engineering in DTU

I have passed 2nd Semester of B.E Electrical Engineering Course of Delhi Technological University (DTU). I need syllabus of 3rd Semester Course. So tell me on which site I can download syllabus of B.E Electrical Engineering 3rd Semester Course of DTU?

As you want syllabus of B.E Electrical Engineering 3rd Semester Course of Delhi Technological University (DTU), so here is complete syllabus:

Delhi Technological University B.E Electrical Engineering 3rd Semester Syllabus

TH1 *EE-201 Electronic Devices and Circuits
TH2 *EE-202 Electrical Machines-I
TH3 *EE-203 Network Analysis and Synthesis
TH4 EE-204 Power Plant Engineering
TH5 *EE-205 Electrical and Electronic Measurements
TH6 *EE-206 Engineering Economics
PR1 *EE-207 Electronic Devices and Circuits Lab.
PR2 *EE-208 Electrical and Electronic Measurement Lab
PR3 *EE-209 Electrical Machines-I Lab.
PR4 *EE-210 Term Paper-I

TH1 *EE-201 Electronic Devices and Circuits
UNIT I
Introduction to Electronics : Signals, frequency spectrum of signals, analog and digital signals, amplifiers, circuit models of amplifiers, frequency response, digital logic inverters.
Diodes; Ideal diodes, physical operation and terminal characteristics, small signal models, operation in reverse breakdown region, Zener diode, rectifier circuits, limiting and clamping circuits etc.

UNIT II
Bipolar Junction Transistors: Physical structure and modes of operation, symbols, operation in active mode, graphical representation of transistor characteristics, DC analysis of transistor circuits, transistor as an amplifier and small signal model, transistor biasing, CE, CC and CB amplifier configurations, transistor as switch, large signal model of the transistor.

UNIT III
MOSFETs and Field Effect Transistors: Structure and physical operation of enhancement type MOSFET, current-voltage characteristics, depletion type MOSFET, MOSFET as an
amplifier, basic single stage MOSFET amplifiers, all NMOS amplifier stages, JFETs, etc. Differential and Multistage Amplifiers: BJT differential pair, small signal model and
operation, differential amplifiers with active loads, MOS differential amplifiers, multistage amplifiers, etc.

UNIT IV
Frequency Response : Low frequency response of CE and CS amplifier, high frequency response of CS and CE amplifier, CB, CC and cascade configurations and their frequency
response, frequency response of CC-CE cascade.

UNIT V
Feedback amplifiers and Oscillators : Principles of feed back in amplifiers, advantages of negative feedback, effect of feedback on impedances, Nyquist criterion for stability, Barkhausen criterion for sinusoidal oscillators, phase shift oscillator, Wien-bridge oscillator, resonant circuit oscillators, crystal oscillators, frequency stability

TH2 *EE-202 Electrical Machines-I
UNIT I
Transformers : General constructional features, type of transformers, Special constructional features – cruciform and multiple stepped cores, cooling methodology, conservators, breather, Buchholz relay, concepts of coupled circuits, voltage, current and impedance relationships, equivalent circuits and phasor diagrams at no load and full load conditions, voltage regulation, losses and efficiency, all day efficiency, auto transformer and equivalent circuit, comparison of copper volume with two winding transformer, practical determination of equivalent circuit parameters and phasor diagrams, parallel operation and load sharing with equal and unequal voltage ratios, advantages of per unit system.

UNIT II
Poly Phase Transformers : Poly phase connections, starstar, star-delta, delta-star and delta-delta connections, use of delta connection for third harmonics, zig-zag connection, tertiary windings, vector groups with clock convention, phase conversions- 3-phase to 1 phase, 3-phase to 6-phase, 3-phase to 2-phase (Scott connection) and 3 phase to 12 phase, Special Purpose transformers; instrument transformers and high frequency transformers.

UNIT III
Electromechanical Energy Conversion Principles: Forces and torques in magnetic field systems, single and multiple excited magnetic field systems, forces and torques in systems with permanent magnets, generated emf in electrical machines with concentrated & distributed windings.

UNIT IV
D.C. Machines : Basic constructional features of DC machines, separately and self excited machines, armature winding details - lap & wave connections, DC generators; emfequation, armature-reaction, commutation, characteristics of different types of DC generators. DC motors; torque equation, armature-reaction, commutation, interpoles, compensating windings, characteristics of different types of D.C. motors. DC motor starting methods and types of starters, speed control, losses, efficiency and testing; Dynamics of DC motors.

Delhi Technological University B.E Electrical Engineering 3rd Semester Syllabus


Last edited by Neelurk; March 28th, 2020 at 10:12 AM.
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