VSWR - Voltage Standing Wave Ratio, Maximum Impedance & Minimum Impedance of Transmission Line

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  • เผยแพร่เมื่อ 28 มิ.ย. 2024
  • In this video, i have explained VSWR - Voltage Standing Wave Ratio, Maximum Impedance & Minimum Impedance of Transmission Line with following Time Code
    0:00 - Microwave Engineering Lecture Series
    0:14 - VSWR - Voltage Standing Wave Ratio of Transmission Line
    10:37 - Maximum Impedance of Transmission Line
    11:39 - Minimum Impedance of Transmission Line
    i have explained VSWR - Voltage Standing Wave Ratio, Maximum Impedance & Minimum Impedance of Transmission Line with following Outlines.
    0. Microwave Engineering Lecture Series
    1. VSWR - Voltage Standing Wave Ratio of Transmission Line
    2. Maximum Impedance of Transmission Line
    3. Minimum Impedance of Transmission Line
    Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Microwave Engineering.
    #MicrowaveEngineering, #EngineeringFunda, #ElectromagneticsTheory, #TransmissionLine, #VSWR, #VoltageStandingWaveRatio, #MaximumImpedance, #MinimumImpedance
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ความคิดเห็น • 28

  • @EngineeringFunda
    @EngineeringFunda  8 หลายเดือนก่อน

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  • @tanmaychaturvedi2613
    @tanmaychaturvedi2613 2 ปีที่แล้ว +5

    i am having emft exam tomorrow and i am completely stressed about it, but seeing your videos really makes me feel that i got to learn something about this unit, thankyou so much sir for this wonderful series of teaching emft, god bless you sir🙏

  • @rishabgupta625
    @rishabgupta625 2 ปีที่แล้ว +6

    Sir in minimum and max impedence how you make Z0=Vmin/Vmax and alsoZ0=Vmax/Vmin ?

    • @ankitchakraborty2960
      @ankitchakraborty2960 11 หลายเดือนก่อน

      Your question is wrong. It should be why Z0=Vmin/Imin and Z0=Vmax/Imax?

  • @NEETCOUNSELLINGGALAXY
    @NEETCOUNSELLINGGALAXY หลายเดือนก่อน +1

    Superb!!!
    Lectures❤

    • @EngineeringFunda
      @EngineeringFunda  หลายเดือนก่อน +1

      Your Appreciations, care and share matters a lot to me. #EnginneringLove.
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  • @beastbytes67574
    @beastbytes67574 2 ปีที่แล้ว +1

    Great! It was simplified yet explained well!

    • @EngineeringFunda
      @EngineeringFunda  2 ปีที่แล้ว +1

      Your positive comments motivates me.
      Teachers like me just wants positive comment from student.
      Love from you guys means a lot to me.
      My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.

  • @euelfantaye1403
    @euelfantaye1403 3 ปีที่แล้ว +1

    Simple to understand and precise. Thank you again!!
    Is the next video #11 in the playlist a continuation of this?

    • @EngineeringFunda
      @EngineeringFunda  3 ปีที่แล้ว

      Continues but I am going to upgrade it by next 15days, so after 15 days it will be much better then this.

  • @sanskarkumar6484
    @sanskarkumar6484 2 ปีที่แล้ว +1

    thanks Sir🙏💚

  • @k7iq
    @k7iq 3 ปีที่แล้ว +1

    Great as always !

    • @EngineeringFunda
      @EngineeringFunda  3 ปีที่แล้ว

      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 🙏

  • @rupankarroy6802
    @rupankarroy6802 3 ปีที่แล้ว +1

    We need more content like that sir🙏

  • @aniketrajapure4060
    @aniketrajapure4060 10 หลายเดือนก่อน

    Sir in starting reflected voltage should be Vr raise minus and then e raised to rz ?

  • @user-fe5oq8bj2i
    @user-fe5oq8bj2i 2 ปีที่แล้ว +1

    A question here,
    why the reflection coefficeint there should be replaced in absolute value?
    Thanks in advance
    Ray

    • @EngineeringFunda
      @EngineeringFunda  2 ปีที่แล้ว +1

      Reflection Coefficient explains that how much voltage will get reflected based on input. It is based on transmission line, it doesn't depends on input or output.

  • @rohanchaurasiab7242
    @rohanchaurasiab7242 ปีที่แล้ว

    Sir I have been reading it through a book and it has a very vastly written with heavy expressions and equation
    Does these hold some importance

  • @syed_taha_ahmed
    @syed_taha_ahmed 11 หลายเดือนก่อน

    Can SWR studied for 50 Hz short line or long line transmission line

  • @polytechnicguruarpita6578
    @polytechnicguruarpita6578 ปีที่แล้ว

    6:13
    Sir in Vmax equation where is the e power-gamma z

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  • @ankit_yadav11
    @ankit_yadav11 6 หลายเดือนก่อน

    maximum and minimum impedence kaise nikale ho aap yar direct lih dete ho aap

    • @EngineeringFunda
      @EngineeringFunda  5 หลายเดือนก่อน

      Impedance is V / I,
      So Max Impedance is Vmax / Imin

  • @manishagopal8339
    @manishagopal8339 2 ปีที่แล้ว

    1. A hollow rectangular waveguide has dimensions a = 1.5 cm and b = 1 cm. Calculate the amount of attenuation if the frequency of the signal is 6 GHZ.
    A) 1453.23 dB/m B) 1500 dB/m C) 1400 dB/m D) 1475.23 dB/m
    2. A rectangular cavity resonator in it’s dominant mode with dimensions 5 x 4 x 2.5 cm will resonate at which of the following frequency?
    A) 6.71 GHZ B) 7.71 GHZ C) 9.7 GHZ D) 5 GHZ
    3. Double minimum method is used to determine the VSWR value on a waveguide. If the separation between two nulls is 3.5 cm and that between twice minimum power point is 2.5 mm, determine the value of VSWR.A) 2 B) 4 C) 8.9126 D) 6
    4. If the incident power of a 10 dB directional coupler is 250mW, what is the output power in it’s auxillary arm?
    A)25 mW B) 30 mW C) 50 mW D) 100 mW
    5.TE 10 wave is transmitting inside a transmission system operating at 10 GHZ. Dimensions of waveguide are 4cm * 2.5cm distance measured between twice minimum power points is 1 mm on a slotted line. Calculate the SWR of transmission system.
    A) 10.3 B) 11 C) 9 D) 10.7
    Sir can you solve it? this question because it is difficult to solve the question

  • @subhajitpaulroll-0828
    @subhajitpaulroll-0828 ปีที่แล้ว

    prof. dholokia bajao dholak