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Course: Electromagnetic Theory
paper code: EI 503
Course Coordinator: Arpan Deyasi
Department of Electronics and Communication Engineering
RCC Institute of Information Technology
Kolkata, India
Topic: Transmission Line – Lossless Line
24-11-2021 Arpan Deyasi, EM Theory 1
Arpan Deyasi
Electromagnetic
Theory
Losses in transmission line
I2R loss: [i] due to dissipation of heat
[ii] resistive feature
[iii] small if line is terminated without generating standing wave pattern
[iv] high if line has low characteristic impedance
Skin effect: [i] due to current confinement at conductor surface subject to
application of high-frequency signal
[ii] reduces cross-sectional area with increasing frequency
Crystallization: [i] due to again of line, major factor is bending
[ii] increases with temperature, high wind and moisture
24-11-2021 Arpan Deyasi, EM Theory 2
Arpan Deyasi
Electromagnetic
Theory
Distortion in transmission line
Amplitude distortion: occurs when the medium is non-linear or when the line
parameters are functions of voltage or current
24-11-2021 Arpan Deyasi, EM Theory 3
Arpan Deyasi
Electromagnetic
Theory
Attenuation distortion: takes place when the attenuation offered by
transmission line varies with frequency
Distortion in transmission line
input
output
24-11-2021 Arpan Deyasi, EM Theory 4
Arpan Deyasi
Electromagnetic
Theory
Phase distortion: occurs when phase constant becomes a function of frequency
Distortion in transmission line
24-11-2021 Arpan Deyasi, EM Theory 5
Arpan Deyasi
Electromagnetic
Theory
Condition for Distortionless Transmission
A transmission line can be free from attenuation distortion if every component of
the transmitted wave has get same attenuation as the others as well as same phase
velocity.
This is possible if attenuation constant becomes zero and phase velocity is
independent of frequency.
( )( )
1/2
2 2 2 2 2 2 2
1
2
RG LC R L G C
   
 
= − + + +
 
 
24-11-2021 Arpan Deyasi, EM Theory 6
Arpan Deyasi
Electromagnetic
Theory
Condition for Distortionless Transmission
0
 =
( )( )
2 2 2 2 2 2 2
0
RG LC R L G C
  
 
− + + + =
 
 
( )( )
2 2 4 2 2 2 2 2 2 2 2 2
2
R G L C RGLC R L G C
   
+ − = + +
For no distortion
24-11-2021 Arpan Deyasi, EM Theory 7
Arpan Deyasi
Electromagnetic
Theory
Condition for Distortionless Transmission
2 2 4 2 2 2
2 2 4 2 2 2 2 2 2 2 2
2
R G L C RGLC
R G L C L G C R
 
  
+ −
= + + +
2 2 2 2 2 2 2
2 0
L G C R RGLC
  
+ + =
2 2 2 2
2 0
L G C R RGLC
+ + =
24-11-2021 Arpan Deyasi, EM Theory 8
Arpan Deyasi
Electromagnetic
Theory
( )
2
0
LG RC
+ =
LG RC
=
Condition for Distortionless Transmission
24-11-2021 Arpan Deyasi, EM Theory 9
Arpan Deyasi
Electromagnetic
Theory
Propagation Constant for Lossless Line
Propagation constant is defined as
( )( )
R j L G j C
  
= + +
2 2
( )
RG LC j LG RC
  
= − + +
2 2 2
( )
RG j LC j LG RC
  
= + + +
24-11-2021 Arpan Deyasi, EM Theory 10
Arpan Deyasi
Electromagnetic
Theory
Propagation Constant for Lossless Line
2 2 2
2
RG j LC j LGRC
  
= + +
( ) ( )
2
2
j RG j LC
  
+ = +
RG
 =
LC
 
=
24-11-2021 Arpan Deyasi, EM Theory 11
Arpan Deyasi
Electromagnetic
Theory
Phase velocity
p
v


=
p
v
LC


=
1
p
v
LC
=
Phase Velocity for Lossless Line
24-11-2021 Arpan Deyasi, EM Theory 12
Arpan Deyasi
Electromagnetic
Theory
Problem 1
A lossless cable of length 100 m has inductance of 28 µH and capacitance of 20 nF. Find
propagation velocity and propagation constant at 100 KHz.
8
1
1.336 10
p
v
LC
= = 
6
28 10
/ 0.28 /
100
L H m H m

−

= =
9
20 10
/ 0.2 /
100
C F m nF m
−

= =
Soln
24-11-2021 Arpan Deyasi, EM Theory 13
Arpan Deyasi
Electromagnetic
Theory
p
v

 =
3
4.702 10 /
rad m
 −
= 
24-11-2021 Arpan Deyasi, EM Theory 14
8
1.336 10 /sec
p
v m
= 
Arpan Deyasi
Electromagnetic
Theory
Phase Wavelength for Lossless Line
Phase wavelength
LC
 
=
2
LC



=
2
LC



=
24-11-2021 Arpan Deyasi, EM Theory 15
Arpan Deyasi
Electromagnetic
Theory
Problem 2
A distortionless line has L=333.3 nH/m, C=92.59 pF/m. Find phase wavelength at
100 MHz.
Soln
2
LC

 =

2
2 f LC

 =

24-11-2021 Arpan Deyasi, EM Theory 16
Arpan Deyasi
Electromagnetic
Theory
1.8 m
 =
8
6
0.6 3 10
1.8
100 10
 
 = =

24-11-2021 Arpan Deyasi, EM Theory 17
Arpan Deyasi
Electromagnetic
Theory

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Distortionless Transmission Line

  • 1. Course: Electromagnetic Theory paper code: EI 503 Course Coordinator: Arpan Deyasi Department of Electronics and Communication Engineering RCC Institute of Information Technology Kolkata, India Topic: Transmission Line – Lossless Line 24-11-2021 Arpan Deyasi, EM Theory 1 Arpan Deyasi Electromagnetic Theory
  • 2. Losses in transmission line I2R loss: [i] due to dissipation of heat [ii] resistive feature [iii] small if line is terminated without generating standing wave pattern [iv] high if line has low characteristic impedance Skin effect: [i] due to current confinement at conductor surface subject to application of high-frequency signal [ii] reduces cross-sectional area with increasing frequency Crystallization: [i] due to again of line, major factor is bending [ii] increases with temperature, high wind and moisture 24-11-2021 Arpan Deyasi, EM Theory 2 Arpan Deyasi Electromagnetic Theory
  • 3. Distortion in transmission line Amplitude distortion: occurs when the medium is non-linear or when the line parameters are functions of voltage or current 24-11-2021 Arpan Deyasi, EM Theory 3 Arpan Deyasi Electromagnetic Theory
  • 4. Attenuation distortion: takes place when the attenuation offered by transmission line varies with frequency Distortion in transmission line input output 24-11-2021 Arpan Deyasi, EM Theory 4 Arpan Deyasi Electromagnetic Theory
  • 5. Phase distortion: occurs when phase constant becomes a function of frequency Distortion in transmission line 24-11-2021 Arpan Deyasi, EM Theory 5 Arpan Deyasi Electromagnetic Theory
  • 6. Condition for Distortionless Transmission A transmission line can be free from attenuation distortion if every component of the transmitted wave has get same attenuation as the others as well as same phase velocity. This is possible if attenuation constant becomes zero and phase velocity is independent of frequency. ( )( ) 1/2 2 2 2 2 2 2 2 1 2 RG LC R L G C       = − + + +     24-11-2021 Arpan Deyasi, EM Theory 6 Arpan Deyasi Electromagnetic Theory
  • 7. Condition for Distortionless Transmission 0  = ( )( ) 2 2 2 2 2 2 2 0 RG LC R L G C      − + + + =     ( )( ) 2 2 4 2 2 2 2 2 2 2 2 2 2 R G L C RGLC R L G C     + − = + + For no distortion 24-11-2021 Arpan Deyasi, EM Theory 7 Arpan Deyasi Electromagnetic Theory
  • 8. Condition for Distortionless Transmission 2 2 4 2 2 2 2 2 4 2 2 2 2 2 2 2 2 2 R G L C RGLC R G L C L G C R      + − = + + + 2 2 2 2 2 2 2 2 0 L G C R RGLC    + + = 2 2 2 2 2 0 L G C R RGLC + + = 24-11-2021 Arpan Deyasi, EM Theory 8 Arpan Deyasi Electromagnetic Theory
  • 9. ( ) 2 0 LG RC + = LG RC = Condition for Distortionless Transmission 24-11-2021 Arpan Deyasi, EM Theory 9 Arpan Deyasi Electromagnetic Theory
  • 10. Propagation Constant for Lossless Line Propagation constant is defined as ( )( ) R j L G j C    = + + 2 2 ( ) RG LC j LG RC    = − + + 2 2 2 ( ) RG j LC j LG RC    = + + + 24-11-2021 Arpan Deyasi, EM Theory 10 Arpan Deyasi Electromagnetic Theory
  • 11. Propagation Constant for Lossless Line 2 2 2 2 RG j LC j LGRC    = + + ( ) ( ) 2 2 j RG j LC    + = + RG  = LC   = 24-11-2021 Arpan Deyasi, EM Theory 11 Arpan Deyasi Electromagnetic Theory
  • 12. Phase velocity p v   = p v LC   = 1 p v LC = Phase Velocity for Lossless Line 24-11-2021 Arpan Deyasi, EM Theory 12 Arpan Deyasi Electromagnetic Theory
  • 13. Problem 1 A lossless cable of length 100 m has inductance of 28 µH and capacitance of 20 nF. Find propagation velocity and propagation constant at 100 KHz. 8 1 1.336 10 p v LC = =  6 28 10 / 0.28 / 100 L H m H m  −  = = 9 20 10 / 0.2 / 100 C F m nF m −  = = Soln 24-11-2021 Arpan Deyasi, EM Theory 13 Arpan Deyasi Electromagnetic Theory
  • 14. p v   = 3 4.702 10 / rad m  − =  24-11-2021 Arpan Deyasi, EM Theory 14 8 1.336 10 /sec p v m =  Arpan Deyasi Electromagnetic Theory
  • 15. Phase Wavelength for Lossless Line Phase wavelength LC   = 2 LC    = 2 LC    = 24-11-2021 Arpan Deyasi, EM Theory 15 Arpan Deyasi Electromagnetic Theory
  • 16. Problem 2 A distortionless line has L=333.3 nH/m, C=92.59 pF/m. Find phase wavelength at 100 MHz. Soln 2 LC   =  2 2 f LC   =  24-11-2021 Arpan Deyasi, EM Theory 16 Arpan Deyasi Electromagnetic Theory
  • 17. 1.8 m  = 8 6 0.6 3 10 1.8 100 10    = =  24-11-2021 Arpan Deyasi, EM Theory 17 Arpan Deyasi Electromagnetic Theory