Electronics & Communication Engineering

LABORATORY DETAILS

    

Sl. No.

NAME OF LAB

DETAILS OF EXPERIMENTAL SETUP

NO. OF EQUIPMENTS

EXPERIMENT  DETAILS

1.

 

 

 

 

Microwave lab

 

1. Klystron Tube
2. Klystron Power Supply
3. Klystron Mount
4. Isolator
5. Frequency Meter
6. Variable Attenuator
7. Slotted Section
8. Tunable Probe
9.VSWR  Meter
10. Waveguide Stand
11. Movable Short
12. Matched Termination

12

1. To determine the Frequency and wavelength in a rectangular wave guide in T-E 10 mode.

1. Klystron Tube
2. Klystron Power Supply
3. Klystron Mount
4. Isolator
5. Frequency Meter
6. Variable Attenuator
7. Slotted Line
8. Tunable Probe
9.VSWR  Meter
10. Waveguide Stand
11. Movable Short
12. Matched Termination
13. S. S. Tuner

13

2. To measure an unknown impedance using the smith chart.

1. Gunn Diode
2. Gunn Power Supply
3. Gunn Oscillator
4. Isolator
5. Frequency Meter
6. Matched Termination

6

3. Study of V-I characteristics of Gunn diode.

1. Spectrum Analyser
2. Filter Kit

2

4. To determine the frequency response of high pass filter, low pass filter, band pass filter using spectrum analyzer with tracking generator.

1. Klystron Tube
2. Klystron Power Supply
3. Klystron Mount
4. Isolator
5. Frequency Meter
6. Variable Attenuator
7. X- band detector
8. Tunable Probe
9.VSWR  Meter
10. Waveguide Stand
11. Movable Short
12. Matched Termination
13. Oscilloscope

13

5. To study the characteristics of reflex klystron tube and to determine its electronic tuning range.

2.

 

 

 

 

 

 

 

 

 

Analog Electronics Lab

 

 

 

 

 

 

 

 

 

1.Transistor characteristics apparatus with regulated power supply

1

1. To study the characteristics of BJT.

1.FET characteristics apparatus

 

1

2. To study the characteristics of FET.

1.Two Stage RC Coupled Amplifier Apparatus

1

3.Calculate the Efficiency of RC Coupled Amplifier

1.Transistor Push Pull Amplifier Apparatus

1.

4. Calculate the Efficiency of Push Pull Amplifier

1.Class A,AB and Push Pull Amplifier Apparatus

1

5. Calculate the Efficiency of Class A,AB
Amplifier

1.Operational Amplifier Apparatus

1

6.Study of OP-AMP as summing, scaling, average window detecting

1.Analog Bread Board Trainer kit
2.Oscilloscope

2

7.Study of Zener diode characteristics

1.Analog Bread Board Trainer kit
2.Oscilloscope

2.

8.Study of Clipper, Clamper circuit.

1.Analog Bread Board Trainer kit
2.Oscilloscope

2.

9.Study of Ripple Factor of Full and Half wave Rectifier

1.Analog Bread Board Trainer kit
2.Oscilloscope

2.

10.Study of 555 timer as Astable,Monostable Multivibrator.

3.

 

 

 

 

 

 

 

 

 

Digital Communication Lab

 

 

 

 

 

 

 

 

 

1.PAM Trainer Kit
2.DSO
3.Adaptor

3.

1.Study of PAM and Demodulation

1.PCM Trainer Kit
2.DSO
3.Adaptor

3.

2. Study of PCM and Demodulation

1.DMTrainer Kit
2.DSO
3.Adaptor

3.

3. Study of Delta Modulation and Demodulation

1.ADMTrainer Kit
2.DSO
3.Adaptor

3.

4. Study of Adaptive Delta Modulation and Demodulation

1. BPSK Modulator kit
2. DSO
3. Adaptor

3

5. Study of BPSK Modulator and Demodulator.

1. BFSK Modulator kit
2. DSO
3. Adaptor

3

6. Study of BFSK Modulator and Demodulator.

1. ASK Modulator kit
2. DSO
3. Adaptor

3

7. Study of ASK Modulator and Demodulator

1. QPSK Modulator kit
2. DSO
3. Adaptor

3

8. Study of QPSK Modulator and Demodulator

1. Window PC system
2. MATLAB

2

9. Simulation study of probability of symbol error for BPSK modulation

1. Window PC system
2. MATLAB

2

10. Simulation study of probability of symbol error for BFSK modulation

4

 

 

 

 

 

 

 

Analog Communication Lab

 

 

 

 

 

 

 

1.AM modulation and demodulation trainer kit
2.CRO

02

1.Measurement of modulation index of an AM signal for three conditions (critical, under , over)& demodulation

1.DSB-SC  modulation & demodulation trainer kit
2CRO

01

2.Measurement of output power with varying modulation index of a DSBSC system and recover the original message signal.

 

1.SSB-SC  modulation & demodulation trainer kit
2CRO

01

3.Measurement of output power with varying modulation index of a SSB-SC system and recover the original message signal.

1.FM modulation & demodulation trainer kit
2.CRO

01

4.Measurement of power of different frequency component of FM signal and measurement of bandwidth.

1.Study of VCO & PLL TRAINER kit
2.CRO

01

5.Design a FM demodulator using PLL.

1.PM modulation & demodulation Kit
2.CRO

01

6.Study of PM modulation & demodulation

1.AM modulation and demodulation trainer kit
2.CRO
3.Resistor
4.Capacitor

02

7.One innovative Experiment(envelope detector)

1. Pulse Width modulation kit
2.CRO

01

8.Study of PWM modulation

5

Solid State Devices lab

1. Bread Board
2. Transistor  CK100
3. Resistor  1K ohm

 7
20
50

Study of input characteristic of CE of BJT

1. Bread Board
2. Transistor  CK100
3. Resistor  1K ohm

 7
20
50

Study of output characteristic of CE of BJT for different base currents and hence determine hybrid parameters

1. Bread Board
2. Transistor  CK100
3. Resistor  1K ohm

 7
20
50

Study of output characteristic of CE of BJT and find performance  parameters (voltage gain, currtent gain, input impedence and output impedence)

1. RC Amplifier kit
2. CRO
3. Function Generator

 

10
5

Study the veriation of small signal voltage gain with frequency of a CE RC coupled amplifier

1. Bread Board
2. FET  BFW-10
3. Resistor  10K ohm

 7
20
50

Study of drain characteristics and transfer characteristics of a JFET and hence determine FET parameters (drain resistance, transconductance and amplification factor)

1. Computer
2. PSPICE software

3
Trial Version

Study of C-V characteristics of a MOS structure by appropriate software

1. Computer
2. PSPICE software

3
Trial Version

Study of drain characteristics and transfer characteristics of a MOSFET and hence determine FET parameters (drain resistance, transconductance and amplification factor)

1. Computer
2. PSPICE software

3
Trial Version

Study of C-V characteristics of a varactor diode by  appropriate software

6

Electromagnetic wave and Transmission Lines Lab 

1.Antenna trainer
ATS-10K
2. Stepper Motor
Controller unit  
3. Tripod with stepper
Motor
4. Simple tripod 
5. Dipole antenna
(Tx)
6. Diople
Antenna (Rx)

 1

1

1

1
1

1

Study and plot the radiation pattern of simple dipole antenna

1.Antenna trainer
ATS-10K
2. Stepper Motor
Controller unit  
3. Tripod with stepper
Motor
4. Simple tripod 
5. Folded antenna
(Tx)
6. Dipole
Antenna (Rx)

 1

1

1

1
1

1

Study and plot the radiation pattern of folded dipole antenna

1.Antenna trainer
ATS-10K
2. Stepper Motor
Controller unit  
3. Tripod with stepper
Motor
4. Simple tripod 
5. Yagi-Uda 3 element      antennas   (Tx)
6. Dipole
Antenna (Rx)

 1

1

1

1
1

1

Study and plot the radiation pattern of 3 element Yagi-Uda antenna

1. Spectrum Analyzer
2. Filter kit

1
1

Study of Spectrum analyzer

1.  Transmission line trainer  TLA-05

1

Ploting of stanging wave pattern along a transmission line  when the line is short cercited, open circuited and terminated by a resistive load at the load ended

1.  Transmission line trainer  TLA-05

1

Input impedence of a terminated co-axiel line using shift in minima technique

1. computer
2. Matlab software

1

Study of smith charts on matlab platform

7

Digital Signal Processing Lab

1.Computers
2.MATLAB software

29

Simulation of sampled Sinusoidal signal, various sequences and different arithmetic operations

1.Computers
2.MATLAB software

29

 

Simulation of convolution of two sequences using graphical methods and using commands- verification of the
properties of convolution

1.Computers
2.MATLAB software

29

Simulation of z-transform of various sequences - verification of the properties of z-transform

1.Computers
2.MATLAB software

29

Simulation of Twiddle factors – verification of the properties.

1.Computers
2.MATLAB software

29

Simulation of DFTs/IDFTs using matrix multiplication and also using commands

1.Computers
2.MATLAB software

29

Simulation of circular convolution of two sequences using graphical methods and using commands,
differentiation between linear and circular convolutions.

1.Computers
2.MATLAB software

29

Verifications of the different algorithms associated with filtering of long data sequences and overlap-add &
overlap-save methods.

1.Computers
2.MATLAB software

29

Simulation of DIT & DIF Radix-2 FFT algorithms

1.Computers
2.MATLAB software

29

Simulation of Butterworth Filter design with different set of design parameters, Simulation of FIR Filters using
Rectangular, Hamming, Hanning, Bartlett windows and comparisons of these designs

8

Microprocessor and microcontroller lab
(EC-592)

ES-852(Microprocessor Kit )

15

Program of adding two number-8 bit result -8 bit

ES-852(Microprocessor Kit )

Program of adding two number-8 bit result -16 bit

ES-852(Microprocessor Kit )

Program of subtract two number-8 bit result -8 bit

ES-852(Microprocessor Kit )

Program of 1’scomplement -8 bit no.

ES-852(Microprocessor Kit )

Program of 2’scomplement -8 bit no

ES-852(Microprocessor Kit )

Program of 1’scomplement -16 bit no

ES-852(Microprocessor Kit )

Program of adding two number-16 bit result -16 bit

ES-852(Microprocessor Kit )

Multiplication of two 8 bit no

ES-852(Microprocessor Kit )

Division of Two 8 bit no

ES-852(Microprocessor Kit )

Swapping of two 8 bit no 

ES-852(Microprocessor Kit )

Square of a given no from LOOK-UP table

ES-852(Microprocessor Kit )
8255 interfacing

LED Display

ES-852(Microprocessor Kit )-
Steeper Motor Interface

Steeper Motor control using 8085

9

DIGITAL  ELECTRONICS LAB
(EC-492)

Digital Trainer Kit
&
IC-7400

12

Proof that NAND gate is a Universal Gate

Digital Trainer Kit
&
IC-7402

Proof that NOR gate is a Universal Gate

Digital Trainer Kit
&
IC-7486 & 7408

Design a Half Adder Circuit

Digital Trainer Kit
&
IC-7486 & 7408 & 7432

Design a Full Adder Circuit

Digital Trainer Kit
&
IC-7486

BCD to Gray Code Conversion

 

 

 

 

 

Digital Trainer Kit
&
IC-7486

 

Gray Code to  BCD Conversion

Digital Trainer Kit
&
IC-7483

BCD to Excess-3 Code conversion

Digital Trainer Kit
&
IC-7432 & 7408 & 7404

Design a 1: 2 Decoder Circuit using Basic Gates

Digital Trainer Kit
&
IC-7432 & 7408 & 7404

Design a 2:1 MUX Circuit using Basic Gates

Digital Trainer Kit
&
IC-7402 & 7400

Design a S-R flip flop

Digital Trainer Kit
&
IC-7432 & 7408 & 7404

Design a J-K flip flop

Digital Trainer Kit
&
IC-74101

Design a D flip flop

10

 

 

 

 

 

 

BASIC  ELECTRONICS LAB
(ES-191/ES-291)

 

 

 

 

 

 

CRO, Function generator.

2

Familiarization with CRO.

Zener diode Trainer kit

1

Study on V-I characteristics of Zener diode

Junction diode trainer kit

1

Study on V-I characteristics of Junction diode

Rectifier Trainer kit

1

Study of half wave &full wave Rectifier with 1:1 isolation transformer

CB transistor trainer kit

1

Study the characteristics of CB transistor

CE transistor trainer kit

1

Study the characteristics of CE transistor

CC transistor trainer kit

1

Study the characteristics of CC transistor

FET Trainer kit

1

 

OP-AMP characteristics Trainer kit, CRO, function genarator

3

Determination of input offset voltage,input bias current cmrr,offset null of op-amp

OP-AMP characteristics Trainer kit, CRO, function genarator

 

3

Determination of slew rate and bandwidth  op-amp

Bread board

1

Study of logic gates

11

 

VLSI LAB
EC-792 & EEE-791

1.Computers
2.Xilinx 12.3 ise

29

Familiarity with EDA tools for VLSI design/FPGA based system design & Simulation of all basic gates using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of Half Adder using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of Full Adder using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of 4-bit
Full Adder using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of 3 to 8 Decoder using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of CMOS Inverter using XILINX 12.3 ISE Simulator.

 

1.Computers
2.Xilinx 12.3 ise

29

Simulation of Encoder8 to 3using Xilinx 12.3 ISE simulator

1.Computers
2.Xilinx 12.3 ise

29

Simulation of 3 to 8 Decoder using Xilinx 12.3 ISE simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of CMOS Inverter using XILINX 12.3 ISE Simulator.

1.Computers
2.Xilinx 12.3 ise

29

Simulation of Decoder 3:8(case statement) using Xilinx 12.3 ISE simulator

1.Computers
2.SPICE

29

Familiarity with Spice simulation tool

1.Computers
2.Tanner 13

29

Spice Simulation of Inverter , NAND , NOR Gates.

1.Computers
2.Tanner 13

29

Design of CMOS XOR/XNOR Gates

1.Computers
2.Tanner 13

29

Design of CMOS Flip flops ( R-S ,D , J-K)

 


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