Magic Tee (Basics, Working, Internal structure, S Matrix & Applications) Explained in Microwave
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- Опубликовано: 11 авг 2017
- Magic Tee / EH Plane Tee in Microwave is explained with the following outlines:
0. Magic Tee
1. Magic Tee Basics
2. Magic Tee Internal Structure
3. Magic Tee Working
4. Magic Tee Applications
5. Magic Tee Scattering Matrix
Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Microwave Engineering.
Chapter-wise detailed Syllabus of the Microwave Engineering Course is as follows:
Chapter-1 Transmission Line in Microwave: • Transmission Line in M...
Advantages of Microwave, Basics of Transmission Line, Parameters of Transmission Line, Types of Transmission Line, Examples on Transmission Line, Transmission Line Parameters, Impedance matching of Transmission Line, Losses in Transmission Line, Parameters of Transmission Line {Propagation constant, Phase constant, Attenuation constant, Characteristics Impedance, Reflection Coefficient, Transmission Coefficient, VSWR, Input Impedance, Line Impedance}.
Chapter-2 Smith Chart: • Smith Chart in Microwa...
Basics of Smith Chart, Mathematics of Smith Chart, Examples on Smith Chart, Smith Chart Examples on {VSWR, Reflection Coefficient, Load Impedance, Input Impedance, Line Impedance, Vmax and Vmin location, Admittance, Parallel stub Impedance matching, Series stub Impedance matching}.
Chapter-3 Scattering Parameters/ S Parameters: • Scattering Parameters,...
Basics of Scattering parameters, Properties of Scattering parameters, Scattering parameters for two port network, Scattering parameters for four port network, Examples on Scattering parameters.
Chapter-4 Waveguides: • Waveguides in Microwav...
Basics of Waveguide, Parameters of Waveguide, Comparison of Waveguide and Transmission line, Why TEM Mode is not possible in rectangular Waveguide, Parallel plate waveguide, Rectangular Waveguide, Group velocity and phase velocity in rectangular Waveguide, Modes in Rectangular Waveguide, Degenerated Modes in Rectangular Waveguide, Dominant Modes if Waveguide, Cut off frequency in rectangular Waveguide, Circular Waveguide, Examples of circular Waveguide, Comparison of circular waveguide and rectangular waveguide, Examples on waveguide.
Chapter-5 Microwave Devices: • Microwave Devices
Isolator in Microwave, Circulator in Microwave, Examples on Circulator in Microwave, Directional Coupler in Microwave, Example of directional coupler in Microwave, Two holes directional coupler in Microwave, E plane Tee, H plane Tee, Magic Tee, Hybrid Ring or Rat Race coupler, Gyrator.
Chapter-6 Microwave Sources: • Microwave Sources
Reflex Klystron, Two cavity Klystron amplifier, Comparison of Reflex klystron and two cavity klystron, Magnetron Oscillator, Magnetron zero mode, Magnetron pi mode, Magnetron mode jumping, Magnetron strapping, Travelling wave tube, Backward wave oscillator, Parametric Amplifier, MASER - Microwave Amplification Stimulated Emission Radiation, Cavity Resonator, Limitations of conventional tubes over microwave tubes.
Chapter-7 Microwave Diodes: • Microwave Diodes
Schottky Diode, Gunn Diode, Varactor Diode, TRAPATT Diode, Tunnel Diode, IMPATT Diode, BARITT Diode, PIN Diode, Step recovery Diode.
Chapter-8 Microwave Applications: • Microwave Applications
EMI, EMC, Phase Shifter, Microwave Transistors.
Chapter-9 Microwave Measurement: • Microwave Measurement
Spectrum Analyzer, VNA Calibration, Network Analyzer.
#MagicTee #MicrowaveEngineering #EngineeringFunda Наука
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Thank you sir. Good lecture.
Best teaching sir, I understand whole derivation in one go, thank you
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It is very helpful! Thanks for uploading
Job mili?
Your voice is smooth and fine 👌 and a very good explanation making a concentration to the topic 🙏 Thank you so much Sir 😀
Thank you very much for everything sir.
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Thank you sir
nice explanation
Really it is very helpful sir! Thank you sir😊
Your positive comments motivates me.
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you are awesome sir!!!
Your welcome
Tnq so much sir
perfectly explained..thanks aload for ur efforts
Engineering done?
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superb siir👌👍
veer malik your wellcome
Great Explanation
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Amazing explanation 😍
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Ty
Thank you sir ❤️
Your positive comments motivates me.
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God bhai God
Thank to u sir 🙏🏻🙏🏻🙏🏻
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Thank you
Your positive comments motivates me.
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sir, s24 is suppose to be 1/√2
Sir, I didn't even pay attention to the voice because my whole mind was busy in understanding.
Sir I didn't understand last step
....i.e how s11=s22=s12
yes same here, and how it became zero
Same for me
this is the case when input is fed to any one of collinear port .
and also for hybrid tree consider all port are perfectly matched.i.e
s11=s22=s33=s44=0
thanku sir
your welcome dear
Thank u
@chethan: your welcome
bhai maza aa gya bt halke bola kr
Two entities that are combined to form a Magic Tee are
(A) One H? and two E plane tees
(B) One H? and one E plane tee
(C) Two H? and two plane tees
(D) Two H? and one E plane tee
b
Sr, at the end how S11=S12=S22=0?
if i will interchanged port3 and 4. what will be the s-matrix
Just sufful E arm and H arm
@@EngineeringFunda shuffle*
Tq
Your positive comments motivates me, my goal is to create largest community of engineers in entire globe, so please help me for that by sharing this lecture series (playlist) with your friends in social media (watsapp, telegram etc). Thanks and welcome 🙏
It's time to get schwifty in here
Sir what is the significance of the value of s parameter you get after such calculations
It explains power transfer from input port to output port
What is root 2
@@kirankumaarr 2 ki जड़ें
Sir please make the video on S matrix for magic tee...
It is already explained in this video.
@@EngineeringFunda sir , the theory of s-matrix magic tee is only the E plane & H plane n port 1-2 ..... Is it correct?
____/\______ I will watch all your ads now .
+satyajeet kumar jha :this is what paying me by some amount. :)
Sir can u upload derivation of s matrix of a magic Tee
+Banka Karunakar : it is there u see till end
i am getting no of ads..............
bloody video..............................
Bro... Please use blue or black pen
Noted ✅
sir everything is fine just kindly make your voice little more clear and louder...it feels like u are talking to urself
Right
Women☕☕
after every two minutes ads are come.............
that too scrolling ads...............
thank you, but where is application??
We can use it as Duplexer
Sir , how S32 become S13
S23 = S32 implies S32=S13 as S23= S13
Sound bohot slow hai
Sir where is hybrid ring video lecture
+mahaveer mahawar : will put it after 1 week
Sir how is S32 = S13, you didn't specify any relation in the lecture
the output port H that is 3, so S32 specifies when we give the input to the H port then, the output from the port 2 will be S32 or S23 and that will be in phase with the output from port 1 S12 or S21, this will be different in case of E Plane as S42 = - S41 or S14. Hope this helps
Applications sir
The most common application of this type of junction is to use it as the mixer section for microwave radar receivers
Sir, applications bhi bata do
Duplexer
Power divider
Isolator
How to draw these 3d figures 🙂😤
Nice sir but voice increase
Sure
Magic Tee Numerical ??
If a wave is input into port-3 then waht S31=S32 or S34=S43=0?..please clear this one
s13=s23 //
its like the input port is return after the output port, in case of s31 the input port is 1 and 3 is the output port, got it??
too many ads
why so many adds???????????????????????????????????????.Disgusting
Sir, what about Scattering Martix?
[b]=[s][a]
Thank you sir
Your positive comments motivates me, Thanks and welcome 🙏
Tnq so much sir
+Banka Karunakar : your welcome