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Dept of EEE, REC
9. DC Shunt Motor Coupled With DC Shunt Motor – 1 No.
10. Tachometer -Digital/Analog – 8 nos
11. Single Phase Auto Transformer – 2 nos
12. Three Phase Auto Transformer – 1 No.
13. Single Phase Resistive Loading Bank – 2 nos
14. Three Phase Resistive Loading Bank. – 2 nos
15. SPST switch – 2 nos
TOTAL: 45 PERIODS
OUTCOMES:
On completion of the course, students will be able to
● conduct and obtain the load characteristics of DC motors by conducting load test.
● conduct load test on DC generators and will be able obtain the load characteristics.
● obtain the load characteristics of single phase transformer by conducting load tests
● predetermine the regulation of single phase transformers by conducting No load and Short circuit
test.
● predetermine the efficiency of DC machine by conducting Swinburne's test, Hopkinson Test and
Polarity Test.
EE 17412 LINEAR AND DIGITAL INTEGRATED CIRCUITS L T P C
LABORATORY 0 0 4 2
OBJECTIVES:
To impart the design methodology of different mathematical operational circuit using IC 741.
To provide knowledge on design and verify multivibrator circuits using IC555.
To design and verify combinational logic circuits and sequential logic circuits using digital ICs.
To learn and verify special ICs like VCO, PLL.
To study understand the verification of various dedicated ICs for combinational and sequential
logic circuits.
LIST OF EXPERIMENTS:
Linear ICs
1. Application of Op-Amp: inverting and non-inverting amplifier, Adder, comparator, Integrator
and Differentiator
2. Timer IC applications: Study of NE/SE 555 timer in Astable, Monostable operation.
3. VCO IC: Voltage to frequency characteristics of NE/ SE566 IC.
4. PLL IC: Frequency multiplication using NE/SE 565 PLL IC.
Digital ICs
5. Implementation of Adder/ Subtractor circuits using logic gates.
6. Code converters: Excess-3 to BCD and Binary to Gray code converter and vice-versa
7. Study of Encoders and Decoders using dedicated ICs and implementation of Boolean
functions using them.
8. Counters: Design and implementation of 4-bit modulo counters as synchronous and
Asynchronous types using FF ICs and specific counter IC.
Curriculum and Syllabus | B.E. Electrical and Electronics Engineering | R2017 Page 53

