DERARTMENT OF TECHNICAL EDUCATION
DIPLOMA COURSE IN ELECTRONICS & COMMUNICATION ENGG.
THIRD SEMESTER
MODEL QUESTION PAPER
ANALOG COMMUNICATIONDIPLOMA COURSE IN ELECTRONICS & COMMUNICATION ENGG.
THIRD SEMESTER
MODEL QUESTION PAPER
MAX MARKS:100 TIME :3Hrs
INSTRUCTIONS:-
1 SECTION-I IS COMPULSORY
2 ANSWER ANY TWO FULL QUESTIONS FROM EACH OF THE REMAINING
SECTIONS.
SECTION I
1 A) FILL IN THE BLANKS WITH APPROPIRATE WORDS:- 1X5
I) The current at Resonance in Series Resonance circuit is____________.
ii) The cut off frequency of LPF is given by ____________.
iii) The Attenuator is a __________Network.
iv) The characteristic impedance of transmission line is given by_________.
v) The modulation index in FM is given by___________.
B) Write a note on Equalizers. 5
SECTION :II
2 a) State Superposition theorem . 3b) List the steps involved in simplifying the network using the Superposition
theorem. 5
Define Resonance . Derive the expression for Resonant frequency of Parallel
Resonance circuit. 7
3 a) Derive the expression for L and C of constant K – T section LPF. 7
b) Design constant K - PI section HPF given fc= 2 KHz , Ro= 600 ohms. 5
c) Find the relationship between Decibel and Neper. 3
4a) Define Attenuator and mention its Applications. 4
b) Design T –type attenuator given attenuation =10 dB , Ro= 600 ohms. 5
c) State Norton’s Theorem and write its Equivalent circuit. 6
SECTION :III
5a) Describe the electrical model of Transmission line.. 4b) Explain the following :
(a) Reflection and (b) Standing waves in Transmission Line. 4
c) Derive the Relationship between SWR and Reflection Coefficient. 7
6 a) Define the following terms w.r.t Antenna :
(a) Polarization,
(b) Isotropic radiator
(c) Radiation pattern
(d) Directive gain
(e) Directivity 10
b) Explain the working of broadside array. 5
7 a) Explain Single stub matching . 5
b) Explain Ground wave propagation with relevant diagram. 6
c) Explain propagation in a mobile/portable environment . 4
SECTION : IV
8a) Explain the need for Modulation. 4b) Explain amplitude modulator circuit using diode. 5
c) Sketch the FM wave. Write mathematical expressions for the following:
(a) Frequency deviation
(b) Modulation index 6
9a) Explain the working of AM Linear diode detector circuit. 5
b) Explain the working of Foster Seeley discriminator . 6
c) Explain the need for pre-emphasis and de-emphasis circuits. 4
10a) Explain the working of High level AM transmitter with a neat block diagram. 8
b) Explain the working of FM receiver with Block Diagram. 7
No comments:
Post a Comment