ex 3 course file edc ex 2012 sourabh sahu new
TRANSCRIPT
Course File
GGCT
Gyan Ganga College of Technology
Course file Year : 2012 Sem : Odd
Name of the faculty : SOURABH SAHU
Designation : Asst. Professor
Department : Electrical Engineering
Name of the Subject : Electronics Devices and Circuits [EX - 304]
Semester : Third Semester
GGCT
Gyan Ganga College of Technology
Status Paper Year :2012 Sem : Odd
NAME OF THE FACULTY : SOURABH SAHUSUBJECT : ELECTRONICS DEVICES AND CIRCUITSSUBJECT CODE : [ELECTRICAL ENGINEERING -304]BRANCH : ELECTRICAL ENGINEERING
1. TARGET PREVIOUS YEARa)% Pass 100% % Pass 100%b) % I class 100% % I class 80%
2. COURSE PLANThis course will be covered by taking lectures in class. Since there are many
advancements in the field of ELECTRONICS DEVICES AND CIRCUITSpresent scenario it is very important to make the students aware of the latest advancements which would be done by giving handouts of the updates. Students would be asked to make presentation over various topics in Electrical Engineering. New practical would also be incorporated in the course to enhance their practical knowledge too.
GGCT
Gyan Ganga College of STATUS PAPERYear:2012Sem : Odd
Technology
3. METHOD OF EVALUATION:
3.1 MID SEMESTER EXAMINATION3.2 ASSIGNMENTS3.3 QUESTION IN THE CLASS ROOM3.4 QUIZ
4. List out any new topics in Electrical Engineering or any innovation you would like to introduce in teaching the subject in this semester:a. Give them an idea of PCB and bread boards.b. Ask them to build small circuits of transmitters etc.
Signature of HOD Signature of FacultyDate Date
GGCT
Gyan Ganga College of Technology
GUIDELINES TOSTUDY THE
SUBJECT
Year:2012 Sem:Odd
1. NAME OF THE FACULTY : SOURABH SAHU2. SUBJECT : ELECTRONICS DEVICES AND CIRCUITS
3. SUBJECT CODE : [ELECTRICAL ENGINEERING -304]4. BRANCH : ELECTRICAL ENGINEERING 5. GUIDELINES TO STUDY THE SUBJECT
Subject topics in Electrical Engineering should be covered through books like:
a. ELECTRONICS DEVICES AND CIRCUITSby Streetsman b. ELECTRONICS DEVICES AND CIRCUITSby Robert Boylestadc. ELECTRONICS DEVICES AND CIRCUITSby V K Mehtad. Integrated Electronic Electrical Engineering by Milliman Halkias
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GGCT
Gyan Ganga College of Technology
COURSE OBJECTIVES &LEARNING OUTCOMES
Year:2012 Sem: Odd
6. NAME OF THE FACULTY : SOURABH SAHU7. SUBJECT : ELECTRONICS DEVICES AND CIRCUITS
8. SUBJECT CODE : [ELECTRICAL ENGINEERING -304]9. BRANCH : ELECTRICAL ENGINEERING 10. COURSE OBJECTIVES:
a) Give them the knowledge of the various types of diodes including the
practical application.
b) Give the fundamentals of BJT, FET, MOSFET transistors and their
properties.
c) To identify various types of multivibarators, amplifiers.
d) Give the idea of various types of oscillators and their utilization.
e) Give the idea of various power amplifiers their associated properties
LEARNING OUTCOMES:
a) Knowledge of charge flow phenomena and various effects related to
semiconductors.
b) Students would be able to identify various configurations of transistors.
c) Estimation of the various current components in transistor.
d) Modes of operation of oscillators and realization of digital circuits from it.
e) Knowledge of practical application of transistors including realization of
various power amplifiers and corrective use of it.
Signature of HOD Signature of FacultyDate Date
Gyan Ganga college of technology
Schedule of instructions
Year-2012Sem-odd
1. NAME OF THE FACULTY : SOURABH SAHU2. SUBJECT : ELECTRONICS DEVICES AND CIRCUITS
3. SUBJECT CODE : [ELECTRICAL ENGINEERING -304]4. BRANCH : ELECTRICAL ENGINEERING
Actual Date of Completion & Remarks, if any
Unit 1
Unit 2
Unit 3
Unit 4
Unit 5
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GGCT
Gyan Ganga College of Technology
Tutorial Sheet
Subject: Electronic Devices & Circuits
Year:2012Sem: Odd
Tutorial 1 Date:
1) Define the current gain for CE configuration & CB configuration?
2) Drive the relationship between α and β?
3) Calculate the value of collector current and collector emitter voltage for a fixed bias
circuit if =10kΩ, =100kΩ, =10V and β=100. Assume =0.7V.
4) Differentiate emitter, base & collector on the basis of their construction?
5) Write short notes on h parameters.
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GGCT
Gyan Ganga College of Technology
Assignment Sheet
Subject: Electronic Devices & Circuits
Year: 2012Sem: Odd
Assignment No.1 Date:
1) Explain the working of MOSFET?
2) Draw VI characteristic of diode from diode equation?
3) What is the difference between zener break down & avalanche break down?
4) Explain the working of zener diode as a regulator?
5) Draw the input/output characteristic of CB configuration of transistor?
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GGCT
Gyan Ganga College of Technology
Tutorial Sheet
Subject: Electronic Devices & Circuits
Year:2012Sem : Odd
Tutorial No.2 Date:
Explain Following
a. (A)LC oscillator.
b. (B). R.C. phase shift oscillator
2) Define following with respect to power amplifiers
a. Power dissipation
b. Efficiency
3) Explain current shunt feedback amplifier?
4) In a class B amplifier, =20V, =2 , =20Ω.Find output signal power and
collector dissipation.
5) Write short notes on Power Amplifiers.
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
Assignment Sheet
Subject: Electronic Devices & Circuits
Year : 2012 Sem: Odd
Assignment No. 2 Date:
1) What is the principal of operation of oscillators?
2) Differentiate emitter, base & collector on the basis of their construction?
3) Compare different types of power amplifiers?.
4) What are the advantages of power amplifier over normal amplifier?
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GGCT Tutorial Sheet Year : 2012
Gyan Ganga College of Technology
Subject: Electronic Devices & Circuits
Sem : Odd
Tutorial No. 3 Date:
1. Explain the working of transistor as a switch.
2. Explain the working of Astable Multivibrator.
3. Explain differential amplifier?
4. Explain briefly the working of clippers & clampers?
5. Explain Following :
a. CMRR
b. Boot strapping
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GGCT Assignment Sheet Year : 2012
Gyan Ganga College of Technology
Subject: Electronic Devices & Circuits
Sem : Odd
Assignment No. 3 Date:
1) Explain on, off & reverse recovery time With respect to BJT (Bipolar Junction
Transistor)?
2) Explain the working of bistable multivibrator.
3) Explain the working of Darlington Amplifier
4) What do you understand by bootstrapping?
5) Derive the equations of CMRR using bootstrapping.
Signature of HOD Signature of FacultyDate Date
GGCT
Gyan Ganga College of Technology
Tutorial Sheet
Subject: Electronic Devices & Circuits
Year:2012Sem: Odd
Tutorial No.4 Date:
1) Explain the working of transistor as a switch.
2) Explain the working of Astable Multivibrator.
3) Explain Inductor Filter & Capacitor Filter?
4) Explain Inductor – Capacitor (LC) Filter?
5) Explain Following:
c. Ripple Factor
d. Peak Inverse Voltage
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
Assignment Sheet
Subject: Electronic Devices & Circuits
Year : 2012Sem : Odd
Assignment No. 4 Date:
1) Compare FET (Field Effect Transistor) With BJT(Bipolar Junction Transistor)?
2) Explain the working of Darlington Amplifier?
3) What do we require crystal oscillators?
4) Derive the equations LC Hartley Oscillators?
Signature of HOD Signature of FacultyDate Date
GGCT
Tutorial Sheet Year:2012 Sem: Even
Gyan Ganga College of Technology
Subject: Electronic Devices & Circuits
Tutorial No. 5 Date:
1) Explain on, off & reverse recovery time With respect to BJT (Bipolar Junction
Transistor)?
2) Explain the working of bistable multivibrator.
3) Explain the working of Darlington Amplifier
4) What do you understand by bootstrapping?
5) Derive the equations of CMRR using bootstrapping.
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
Assignment Sheet
Subject: Electronic Devices & Circuits
Year : 2012Sem : Odd
Assignment No. 5 Date:
6) Explain the working of transistor as a switch.
7) Explain the working of AB power amplifiers.
8) Explain differential amplifier?
9) Explain briefly cross over and harmonic distortions?
10) Explain Following :
a. CMRR
b. Boot strapping
Signature of HOD Signature of Faculty
GGCT Year:2012
Gyan Ganga College of Technology
SCHEDULE OF INSTRUCTIONS
Sem: odd
1. NAME OF THE FACULTY : SOURABH SAHU2. NAME OF THE SUBJECT : Electronic Devices & Circuits3. SUBJECT CODE : ELECTRICAL ENGINEERING -3044. BRANCH : ELECTRICAL ENGINEERING
UNIT NO. 1Lecture No.
Date of lecture planned
Topics Covered Actual date completed
Reason for deviation
1
2
3
4
5 6
7
8 9 10
11
12
Semiconductor device theory of P-N junction,
Temperature dependence and break down characteristics
Diode applications, clippers, clampers
Half and full wave rectifiers with filters
Zener diode, Voltage Regulators Varactor diode, Power diodes
PIN diode, LED, Photo diode,
Schottky diodes, Tunnel diodes
Tunnel diodes oscillators Diffusion and Transition Capacitance of PN Junctions
geometry of LEDs
LEDs and LCD specifications
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
SCHEDULE OF INSTRUCTIONS
Year:2012 Sem: odd
1. NAME OF THE FACULTY : SOURABH SAHU2. NAME OF THE SUBJECT : Electronic Devices & Circuits3. SUBJECT CODE : ELECTRICAL ENGINEERING -3044. BRANCH : ELECTRICAL ENGINEERING
UNIT NO. 2
Lecture No.
Date of lecture planned
Topics Covered Actual date completed
Reason for deviation
13
14
15
16
17
18
19
Transistor construction and characteristics
Transistor parameter calculation and specification
Applications, limitations of BJT
FET parameter calculation, applications, limitations
MOSFET parameter calculation
MOSFET applications, limitations
Comparisons of FET and BJT
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
SCHEDULE OF INSTRUCTIONS
Year:2012 Sem: Odd
1. NAME OF THE FACULTY : SOURABH SAHU2. NAME OF THE SUBJECT : ELECTRONIC DEVICES & CIRCUITS
3. SUBJECT CODE : ELECTRICAL ENGINEERING -3044. BRANCH : ELECTRICAL ENGINEERING
UNIT NO. 3Lecture
No.Date of lecture planned
Topics Covered Actual date completed
Reason for deviation
20
21
22
23
24
25
26
27
28
29
30
31
Amplifier Biasing and dc equivalent model
Method of bias stabilization, thermal runaway and stability
Low frequency small signal analysis
Low frequency small signal analysis cont.
h parameter
Analysis of single stage transistor using h parameter
RC coupled amplifier and its various responses
Cascaded amplifiers
Cascode amplifier
Comparison and analysis of single and multistage amplifier
Darlington amplifier, bootstrapping
Noise in BJT
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
SCHEDULE OF INSTRUCTIONS
Year:2012 Sem: odd
1. NAME OF THE FACULTY : SOURABH SAHU2. NAME OF THE SUBJECT : Electronic Devices & Circuits3. SUBJECT CODE : ELECTRICAL ENGINEERING -3044. BRANCH : ELECTRICAL ENGINEERING
UNIT NO. 4Lecture
No.Date of lecture planned
Topics Covered Actual date
completed
Reason for
deviation31
32
33
34
35
36
37
38
3940
4142
43
44
Feedback amplifier
Negative feedback
voltage-series, voltage shunt
Classification of feedback amplifiers
Oscillators introduction and conditions of operation
Crystal Oscillators for stability of oscillations
Sinusoidal oscillators
L-C (Hartley oscillators)
L-C (Colpitt oscillators)
RC phase shift
Wien bridge
Crystal oscillators.
UJT Oscillators
Signature of HOD Signature of Faculty
Date
GGCT
Gyan Ganga College of Technology
SCHEDULE OF INSTRUCTIONS
Year:2012 Sem: odd
1. NAME OF THE FACULTY : SOURABH SAHU2. NAME OF THE SUBJECT : Electronic Devices & Circuits3. SUBJECT CODE : ELECTRICAL ENGINEERING -3044. BRANCH : ELECTRICAL ENGINEERING
UNIT NO. 5Lecture No.
Date of lecture planned
Topics Covered Actual date completed
Reason for deviation
45
46
47
48
49
50
51
52
53
54
Power Amplifiers,classification
Class A, B power amplifiers
Class AB and C power amplifiers
Push Pull amplifiers
Heat sink design
Cross over distortion and harmonic distortion
Single tuned voltage amplifier
Double tuned voltage amplifier
Stability consideration of tuned amplifiers
Class B and C power amplifiers and specifications
Signature of HOD Signature of Faculty
GGCT
Gyan Ganga College of Technology
ASSESSMENT PAPER
EC ……………… Department
Year:2012 Sem: ODD
NAME OF THE FACULTY : SOURABH SAHUSUBJECT : EDCSUBJECT CODE : ELECTRICAL ENGINEERING -304BRANCH : ELECTRICAL ENGINEERING
Planned Achieved
1. Target a. % of pass 100 … ………………
b. % of first class 80 ………………….
2. Remarks on the results by faculty
3. HOD Remarks
Signature of HOD Signature of faculty