1) Title of the course: Second Year B.Sc. Electronic Science
2) Introduction: Semester Pattern is followed at S.Y.B.Sc. Electronic Science. Second
year B.Sc. syllabus is desired to provide core technical skills in design, analysis,
building and testing electronic blocks / circuits. Training on equipment handling and
maintenance is also included. In the theory courses adequate knowledge of Analog
circuit design, digital circuit design, communication systems and electronic circuit
measurement and testing instrumentation knowledge will be acquired by the students.
Student taking admission at S.Y.B.Sc. Electronic Science have to complete 4 theory
courses two each semester and one practical course (Annual). In the practical course
of 100 marks there are compulsory experiments along with the activities to be done.
There are two types of activities – One carried out by the student in his own area of
interest and other to be arranged by teachers for enhancement of the practical quality
and skills of the students.
2) Introduction: Semester Pattern is followed at S.Y.B.Sc. Electronic Science. Second
year B.Sc. syllabus is desired to provide core technical skills in design, analysis,
building and testing electronic blocks / circuits. Training on equipment handling and
maintenance is also included. In the theory courses adequate knowledge of Analog
circuit design, digital circuit design, communication systems and electronic circuit
measurement and testing instrumentation knowledge will be acquired by the students.
Student taking admission at S.Y.B.Sc. Electronic Science have to complete 4 theory
courses two each semester and one practical course (Annual). In the practical course
of 100 marks there are compulsory experiments along with the activities to be done.
There are two types of activities – One carried out by the student in his own area of
interest and other to be arranged by teachers for enhancement of the practical quality
and skills of the students.
3) Aim and Objectives :
The aim of the course is to generate the manpower with adequate theory knowledge of
the electronic circuit design, instrumentations and practical work along with hands on
experiences of the practical work.
Following are the objectives –
i) To design the syllabus with specific focus on key Learning Areas.
ii) To equip student with necessary fundamental concepts and knowledge base.
iii) To develop specific practical skills.
iv) To impart training on circuit design , analysis , building and testing.
v) To prepare students for demonstrating the acquired knowledge.
vi) To encourage student to develop skills for accepting challenges of upcoming
technological advancements.
These objectives can be achieved by implementing this syllabus at the second year
B.Sc. Electronic Science. Also it will provide foundation for the T.Y.B.Sc. Electronic
Science course.
4) Eligibility: First Year B.Sc. Pass / ATKT .
5) Examination –
A) Pattern of Examination :
i) Semester and Practical
Theory Papers - Two Theory papers of 50 marks per semester
(Internal examination 10 + Semester Examination 40, Total 50)
Practical - At the end of year 100 marks Examination.
(Internal examination 20 + Semester Examination 80, Total 100)
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ii) Pattern of the question Paper:
The pattern adopted for theory and practical examination is as below.
Theory: The topic wise weightage is decided as per lecture allotted
to cover the syllabus for the topics. The Internal option is also
taken into consideration in the process. Equal weightage is given
for each topic, and none of the topic can be put up as option by
the student for examination.
Internal Examination 10 Marks
Four types of questions – Objective, Fill in the blanks, True or
False and One sentence answer.
There are two or three different sets of the question papers used
for internal examination in the same class for same paper.
It is continues evaluation process and is executed by the teacher
conducting the course.
External Examination 40 Marks
Pattern is as follows-
Q.1 Answer any all of the following : 12 marks
Compulsory no internal option , contains one mark , two
mark objective and numerical questions.
Q.2 Answer any TWO. : 08 marks
Three questions are given, each having 4 marks, any two
are to be solved.
Q.3 Answer any TWO. : 08 marks
Three questions are given,each having 4 marks, any two
are to be solved.
Q.4 Answer any TWO. : 12 marks
Three questions are given, each having 6 marks, any two
are to be solved.
There is complete option question for Q.4 having three
compulsory numerical problems having weightage of 4
marks each.
Practical : Internal Marks 20 : Continuous assessment
External Examination 80 Marks. – Have to perform 2 experiments
of 40 marks of the duration 3 hours each. (Practical Examination is
scheduled in two sessions.)
B) Standard of passing: Candidate must score 40% marks at the semester
examination in each course. i.e. 16 marks at semester
theory paper 32 marks at the practical course
There is no separate passing for internal course,
however the total marks of internal and external should
cross 40% of the total marks to be awarded.
C) ATKT Rules: As per University statues
D) Award of Class: Overall class including the subjects offered by the
candidate at Second Year B.Sc. Electronic Science.
It will as per University rules as –
Above 70% First class with distinction
Between 60% to 70% First Class
Between 50% to 60% Second Class
From 40% to 50 % Pass class.
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However the marks in the electronic science papers at Second Year
B.Sc. course will be taken into account , at T.Y.B.Sc. for awarding the
ultimate class of the course.
E) External Students: Not applicable for this course. External Students are not
admitted for the course.
F) Setting of Questions paper/ Pattern of Question paper:
Setting of the question paper is as per University Schedule and it is
centralized system adopted by University of Pune. Pattern of question paper will
be as per decided by Board of Electronic Science, University of Pune.
G) Verification of Revaluation: As per University Statutes and rules for
verification and revaluation of marks in stipulated time after declaration of the
semester examination result.
6) Structure of the course :
i)
a) Compulsory Paper : Four theory papers
b) Optional Paper : Nil
c) Question paper : Theory -
For Internal Examination 10 Marks
For Semester Examination 40 Marks
Practical “
For Internal Examination 20 Marks
For Semester Examination 80 Marks
ii) Medium and Instructions: ENGLISH
7) Equivalence subject/Paper and Transitory Provision:
Semester OLD Syllabus New Syllabus
Semester
I
EL211 Analog Circuit Design Principles I Paper - I : Analog Circuits and Systems
EL 212 Communication I Paper - II: Electronic Instrumentation
Semester
II
EL 221 Analog Circuit Design Principles II Paper – I: Digital System Design
EL 222 Communication II Paper – II: Communications system
8) University Terms: More than 75% attendance is necessary for the course as per
University statues.
16 Weeks will be available for completion of theory course.
Practical course will be throughout the year.
9) Subject wise Detail Syllabus and Recommended books:
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S.Y.B.Sc. Electronic Science - Semester I
Paper - I : Analog Circuits and Systems
UNIT 1: Amplifiers: (12)
General classification of amplifiers: with respect to signal amplitude, frequency and
configuration. Small signal amplifier: A.C.-D.C. analysis, frequency response, Bode plot,
stability, Nyquist criteria, gain Bandwidth product. Design of single stage class-A
amplifier. Types of coupling (quantitative analysis): RC coupled, transformer coupled and
direct coupled. Multi-stage RC coupled CE amplifier: effect of coupling capacitor and
bypass capacitor on frequency response (qualitative approach) and application area.
UNIT 2: Power Amplifiers (12)
Comparison of small signal and large signal amplifiers: with respect to gain, efficiency,
and distortion. Classification of power amplifiers on the basis of conduction: class-A,
class-B, class-AB, class-C, class D, Class E. Class-A amplifier: resistive load/transformer
coupled load, efficiency calculation of transformer coupled amplifier, comparison for
efficiency, concept of harmonic distortion. Class B amplifier: Efficiency calculation,
Push-pull amplifier concept, complimentary symmetry class-B push pull amplifier,
crossover distortion, class AB push pull amplifier. Concept, use and types of heat sinks.
UNIT 3: Feedback (08)
Concept of negative and positive feedback. Types of feedbacks circuits: current shunt,
current series, voltage shunt and voltage series, comparison and applications. Effect of
negative feedback: on amplifier performance, stability of an amplifier. Positive feedback:
oscillator circuits -Wien bridge , Phase Shift , Hartley , Colpitts and Crystal.
UNIT 4: Differential Amplifiers (06)
Concept and working of differential amplifier. Configurations of differential amplifier:
Single ended, double ended. Differential and Common mode gain. Use of constant
current source and its effect on CMRR.
UNIT 5: Opamp and its applications (10)
Internal block diagram of op-amp. Parameters of op-amp (ideal and practical). Inverting
and non-inverting configurations. Op-amp Applications: Integrator, Differentiator,
Comparator, Voltage to current converter, Current to voltage converter, Bridge amplifier,
Instrumentation amplifiers with three op-amp, Precision rectifier, First order Butterworth
active filter - Low pass and High pass.
Recommended Books:
1 Malvino A.P Electronic Principles TMH
2 Gaykawad R. Operational amplifiers and linear Integrated
Circuits
PHP
3 Clayton G.B. Operational amplifier ELBS
4 Millman, Halkias Electronic devices and circuits McGrawHill
5 Boylestead Electronic devices and circuits PHP
6 Meheta V.K. Principles of Electronics S.Chand and
Company
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S.Y.B.Sc. Electronic Science - Semester I
Paper - II: Electronic Instrumentation
Unit 1: Measurement principles (04)
Measurement of physical parameters, measurement system block diagram. Measurement
characteristics like accuracy, precision, Sensitivity, linearity, resolution, reliability,
repeatability, errors.
Unit 2: Test and Measuring instruments (18)
Working principle, block diagram, specification and operating procedure for: Voltmeter ,
Ammeter , Multirange meter , Analog Multimeter , Electronic Voltmeter, True RMS
Meter, LCR Meter, DMM, DFM, CRO. Types of CROs: dual beam, dual trace, digital
storage.
Unit 3: Signal Sources (06)
Working principle, block diagram, specification and operating procedure for: Signal and
function generators, Sweep generator.
Unit 4: Power Supplies (10)
Working principle, block diagram, specification and operating procedure for: Fixed
voltage power supply, variable power supply, dual power supply, CVCC power supply,
SMPS, DC to DC converter, UPS.
Unit 5: Special measurement systems (10)
Working principle, block diagram, specification and operating procedure for: Digital
Thermometer, Lux meter, Tachometer, Speedometer, pH meter.
Recommended Books:
1 Helfrik A.& Cooper W. Modern Electronic Instrumentation and
measurement techniques
PHI
2 Rangan, Mani, Sharma Instrumentation Devices & Systems TMH
3 Rashid Muhammad H Power Electronics PHI
4 Sawhney A.K. A course in electrical and electronic
measurements and instrumentation
Dhanpat
Rai &
Company
5 B.S.Sonde Power Supplies TMH
6 Kalasi H. S. Electronic Instrumentation TMH
7 Bouwens Digital Instrumentations TMH
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S.Y.B.Sc. Electronic Science- Semester II
Paper – I: Digital System Design
UNIT 1: Combinational circuits (12)
Design of code converter: BCD to 7 segments, Binary/ BCD to Gray, Gray to Binary /
BCD, serial adder, 4-input priority encoder, parity generator, 4-bit magnitude comparator.
UNIT 2: Sequential circuits (10)
State tables, state diagrams, excitation table and transition table. Design of counters using
state machine: asynchronous and synchronous counter, Modulo-n counter, sequence
generator, presettable binary up/down counter. Design of Universal shift register.
UNIT 3: Compatibility in digital systems (08)
Fan in Fan Out, Totem pole, Open collector outputs, Tristate Logic, Current Booster,
Buffer , Latches, Unidirectional and Bidirectional BUS concepts. TTL and CMOS Logic
converters.
UNIT 4: Data Converters (10)
Key Features, Advantages and applications of Digital to Analog Converters: Weighted
resistive network and R-2R ladder type. Key Features, Advantages and Applications
Specific selection of Analog to Digital Converters: Staircase, Ramp Type, Single Slope
and dual slope, Servo Type, Successive approximation and Flash type.
UNIT 5: Digital System Interfacing and Applications (08)
Digital system interfacing of LEDs and Multidigit Seven segment LED display Driver.
Interfacing of a switch and switch matrix, Thumb Wheel Switches . Interface
considerations for ADC / DAC with digital systems.
Applications of counters: Digital clock , Auto-parking system , totalizers. Applications of
shift registers: time delay generator, parallel to serial converter, serial to parallel
converter, UART and serial Key board encoder
Recommended Books:
1 Floyd Thomas L Digital Fundamentals Pearson
Education
2 Raj kamal Digital System Principles and Design Wheeler
3 Moriss Mano Digital Circuit Design PHP
4 Malvino Leach Digital Principles and Applications TMH
5 Strangio Digital Electronics TMH
6 Floyd , Jain Digital Fundamentals TMH
7 Anand Kumar A. Switching Theory and Logic design PHI
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S.Y.B.Sc. Electronic Science Semester II
Paper – II: Communications system
1. Basics of communication systems. (14)
Block diagram of communication system. Types of Electronic Communication systems:
Simplex, Duplex. Analog/Digital Signals. Noise in communication: External noise-
Atmospheric, space noise, man-made noise, Internal noise- Thermal, Shot noise
Definitions and relationship between Bit rate, Baud rate, Bandwidth and signal to noise
ratio.
Modulation and Demodulation: Need and Types of modulation, AM and FM: Modulating
signal, need of carrier signal, modulation index, and percentage modulation. Amplitude
and Frequency modulation circuits : AM using diode circuit, FM using varactor diode.
Amplitude and Frequency demodulation circuits: AM demodulation using diode detector,
FM demodulation using slope detector and Foster-Seeley Discriminator.
2. Transmission Media (08)
Principle, types and applications of - Free space communication using Radio waves and
Microwaves, Cable communication using Twisted Pair, Coaxial cable, Fiber Optic Cable.
3. Radio and Television communication (12)
Block diagram of AM (TRF and Superhetrodyne) and FM radio receiver, Receiver
characteristics. Elements of TV broadcasting system: scanning, synchronization,
composite video signal, audio/video channels. Block diagram of Television receiver,
Basic principles of Monochrome and Colour TV, CCTV.
4. Telecommunication Systems (08)
Block diagram of a Telephone handset, principles of Pulse and DTMF dialing, concepts
of call routing, PSTN and cellular telephony. Digital communication systems: Block
diagram, MODEM, concept of ASK, FSK, PSK.
5. Modern Communication Systems (06)
Basic principles and functioning of: mobile phone, FAX , Set Top box and Dish TV,
Internet and its applications, e-commerce, e-banking, e-learning, ATM Machines.
Recommended Books:
1 Kennedy Electronic Communication, 2nd edition TMH
2 Frenzel Communication Electronics,3rd edition TMH
3 Dennis Roddy,John
Coolen
Electronic Communication System PHI
4 Grob B. Electronic Principles TMH
5 Vishwanathan
Thiagarajan
Telecommunication Switching Systems and
Networks
PHI
8
S.Y.B.Sc. Electronic Science
Practical Course
· Total Practical to be conducted 20.
· 16 experiments compulsory: At least four practical from each of the ABCD groups.
· One activity equivalent to 2 experiments by the student.
a. Continuation of F. Y. activity.
b. PSPICE Simulation
c. Documentation type experiments
d. Presentation/Seminar on Electronics /advanced topic/research topics.
· One activity equivalent to 2 experiments to be arranged by the teacher – Arrange at
least two practical demonstrations / Workshops which will enhance quality and skills
of the student.
· Examination will be conducted on 16 experiments as well as on activities.
Practical Examination –
A) Internal Marks 20: 16 Marks
as usual for 16 marks for experiments and 04 marks for activities
B) Annual examination: 80 Marks in Two session of 3 Hrs as usual practice.
Session I 40 marks
Practical work 32 marks
Oral based on the student’s own activities 8 marks
Session II 40 marks
Practical work 32 marks
Oral based on Common activities arranged by teachers 8 marks
32 Marks can be divided as - Circuit diagram 05
Connection 05
Demonstration and working explanation 10
Results 05
Result analysis / conclusion / comments 02
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LIST OF PRACTICALS:
Group A: Analog circuit design
1 Study of commercially available power amplifier(IC). OR
Design of complementary symmetry Push pull amplifier.
2 Design and test two stage amplifier. OR
Study of effect of negative feedback on frequency response and gain of amplifier.
3 Design and test FET amplifier.
4 Design and testing of Wien bridge/phase shift oscillator.
5 Design and testing of 3 opamp instrumentation amplifier OR Programmable gain
amplifier.
6 Design and test First order butterworth active filter(low pass and high pass) OR
Design and test V to I converter. (High current and low current).
Group B: Digital circuit design
1 Study of ADC / DAC parameters.
2 Design of counter for given count sequence.
3 Study of Dynamic Display.
4 Design and test Event Counter.
5 Design and testing of 4-bit Parallel Adder.
6 Design of digital clock / combinational lock.
7 Xilinx Simulation on schematic level.
Group C: Communication
1. Design and testing of AM using IC (AD 633) / transistor and detector.
2. Design and testing of FSK modulation.
3. Design and testing of TDM at least four channels.
4. Design and testing of RF Tuned amplifier.
5. Study of PPM, PWM and PAM.
6. Study of TV / Radio / Mobile Receiver.
Group D: Instrumentation
1. Design of resistive ladder for multirange voltmeter.
2. Design of bridge amplifier for temperature measurement system using thermister/
RTD/PT100.
3. Study of DFM for various modes/ Function Generator.
4. Study of CVCC power supply/ variable power supply.
5. Design of digital thermometer using LM 35 and DPM module.
6. Study of UPS/SMPS.
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