Analog Electronics Book pdf free download | Polytechnic 2nd semester 1st year book download pdf


Analog Electronics Book pdf free download | Polytechnic 2nd semester 1st year book download pdf यदि आप डाउनलोड करना चाहते हैं तो आपको हमारी इस वेबसाइट के माध्यम से यह सुविधा प्राप्त हो सकती है डाउनलोड बटन नीचे दिया गया है।


Analog Electronics Book pdf free download | Polytechnic 2nd semester 1st year book download pdf

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Analog Electronics Book pdf free download | Polyticnic 2nd semester 1st year book download pdf


Analog Electronics Book pdf free download | Polyticnic 2nd semester 1st year book download pdf | Analog Electronics Book pdf free download | Polytechnic 2nd semester 1st year book download pdf | Analog Electronics 2nd semester Polytechnic pdf | Analog Electronics for polytechnic pdf in english | Analog Electronics for polytechnic pdf in hindi | Analog Electronics 2nd Semester Notes PDF | diploma 2nd sem Analog Electronics pdf | Analog Electronics Notes PDF

Analog Electronics Polytechnic syllabus


ANALOG ELECTRONICS 

L T P 
 4 - 4 
RATIONALE 
 
At present, electronic gadgets are being extensively used in various manufacturing processes 
in industries, power system operations, communication systems, computers etc. Even for an 
electrical diploma holder, it is absolutely necessary to have a basic understanding of electronic 
components, their function and applications. This understanding should facilitate in operation 
and maintenance equipment, which are electronically controlled. 
In this course, topics like semi-conductor Diodes, Bipolar transistors, rectifiers, single stage 
and multistage amplifiers and field effect transistors have been included. 
LEARNING OUTCOMES 
After undergoing the subject, students will be able to: 
• Use P.N. junction as rectifier 
• Use Zener diode as voltage stabilizer 
• Use bi-polar transistors and its application as an amplifier and as a switch 
• Analyse amplifier and enhance the gain of amplifier 
• Use unipolar transistors as amplifier 
• Identify and testing of various active and passive components such as resistor, inductor, 
capacitor, diode and transistor 

DETAILED CONTENTS 

1. Semiconductor Diodes (12 periods) 

 
1.1 PN Junction, mechanism of current flow in PN junction, drift and diffusion 
currents, depletion layer, potential barrier, effect of forward and reverse biasing 
in a PN junction. Concept of junction capacitance in forward and reverse biased 
conditions. Breakdown mechanism 
1.2 Ideal diode, Semiconductor diode characteristics, static and dynamic resistance
1.3 Use of diode as half wave and full wave rectifiers (centre tapped and bridge 
type), relation between DC output and AC input voltage, efficiency of rectifier 
1.4 Concept of ripples, filter circuits – shunt capacitor, series inductor, and pie (π) 
filters and their applications 
1.5 Diode ratings/specifications 
1.6 Various types of diodes such as zener diode, varactor diode, schottky diode, 
light emitting diode, tunnel diode, photo diode; their working characteristics and 
applications 
1.7 Zener diode and its characteristics 
1.8 Use of zener diode for voltage stabilization 

2 Bi-polar Transistors (06 periods) 

2.1 Concept of junction transistor, PNP and NPN transistors, their symbols and 
mechanism of current flow 
2.2 Transistor configurations: common base (CB), common emitter (CE) and 
common collector (CC), current relation and their input/output characteristics; 
comparison of the three configurations 

3. Transistor Biasing and Stabilization (10 periods) 

3.1 Transistor biasing, its need, operating point, effect of temperature on the 
operating point of a transistor and need of stabilization of operating point. 
3.2 Different biasing circuits, limitations, simple problems to calculate operating 
point in different biasing circuits. Use of Thevenin’s theorem to determine 
operating point 
3.3 Concept of h-parameters of a transistor 
3.4 Use of data book to know the parameters of a given transistor 

4. Single-Stage Transistor Amplifiers (10 periods) 

4.1 Single stage transistor amplifier circuit in CE configuration, function of each 
component 
4.2 Working of single stage transistor amplifier, physical and graphical explanation, 
phase reversal 
4.3 Concept of DC and AC load line 
4.4 Voltage gain of single stage transistor amplifier using characteristics of the 
device 
4.5 Concept of input and output impedance 
4.6 AC equivalent circuit of single stage transistor amplifiers 
4.7 Calculation of voltage gain using AC equivalent circuit 
4.8 Frequency response of a single stage transistor amplifier

5. Multi-Stage Transistor Amplifiers (10 periods) 

5.1 Need of multi-stage transistor amplifiers – different types of couplings, their 
purpose and applications. 
5.2 Knowledge of various terms such as voltage gain, current gain, power gain, 
frequency response, decibel gain and band width 
5.3 RC coupled two-stage amplifiers, circuit details, working, frequency response, 
applications 
5.4 Loading effect in multistage amplifiers 
5.5 Elementary idea about direct coupled amplifier, its limitations and applications 
5.6 Transformer coupled amplifiers, its frequency response. Effect of co-efficient of 
coupling on frequency response. Applications of transformer coupled amplifiers 

6. Field Effect Transistor (FET) (08 periods)

 
6.1 Construction, operation, characteristics and applications of a N channel JFET 
and P channel JFET 
6.2 JFET as an amplifier 
6.3 Types, construction, operation, characteristics and applications of a MOSFET 
6.4 Comparison between BJT, JFET and MOSFET 

LIST OF PRACTICALS 

1. a) Identification and testing of electronic components such as resistor, inductor, 
capacitor, diode, transistor and different types of switches used in Electronic circuits 
b) Measurement of resistances using multimeter and their comparison with colour code 
values 
2. To plot V-I characteristics of a Semiconductor diode and to calculate its static and 
dynamic resistance 
3. a) To plot V-I characteristics of a zenor diode and finding its reverse breakdown 
voltage 
 b) Fabrication of a zenor diode voltage stabilizer circuit using PCB 
4. Observation of input and output wave shapes of a half-wave rectifier and verification of 
relationship between dc output and ac input voltage 
5. Observation of input and output wave shapes of a full wave rectifier and verification of 
relationship between dc and ac input voltage 
6. Observation of input and output wave shapes of a full wave rectifier with (i) shunt 
capacitor) (ii) series inductor (iii) Π filter circuits 
7. Plotting input and output characteristics of a transistor in CB configuration 
8. Plotting input and output characteristics of a transistor in CE configuration
9. Measurement of operating point in case of (i) fixed biased circuit (ii) potential divider 
biasing circuit and to observe the effect of temperature variation on the operating point. 
INSTRUCTIONAL STRATEGY 
This subject gives the knowledge of fundamental concepts of basic electronics. The teacher 
should give emphasis on understanding of concepts and various term used in the subject. The 
students be made familiar with diodes, transistors, resistors, capacitors, inductors etc. and 
electrical measuring instruments etc. Practical exercises will reinforce various concepts. 
Application of Semiconductor Diodes, Transistors, Field Effect Transistors etc must be told to 
students.
MEANS OF ASSESSMENT 
- Assignments and quiz/class Tests 
- Midterm and End-term tests 
- Laboratory and Practical work 
- Presentations 
- Viva-Voce 

 RECOMMENDED BOOKS 

1. Basic Electronics and Linear Circuit by NN Bhargava, Kulshreshta and SC Gupta, Tata 
McGraw Hill Education Pvt Ltd, New Delhi. 
2. Principles of Electrical and Electronics Engineering by VK Mehta; S Chand and Co., 
New Delhi 
3. Electronics Devices and Circuits by Millman and Halkias; McGraw Hill. 
4. Electronic Devices and Circuits by Dharma Raj Cheruku and Battula Tirumala Krishna: 
Pearson Education (Singapore) Pvt Ltd., Indian Branch, 482 F.I.E Patparganj, Delhi- 92 
5. Basic Electronics by JB Gupta, SK Kataria and Sons, New Delhi 
6. Electronics Devices and circuit by Boylested, Tata McGraw Hill, New Delhi


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