Equivalent Circuit of Induction Motor

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  • Опубликовано: 23 янв 2025

Комментарии • 16

  • @FutureofEEE
    @FutureofEEE  4 года назад +2

    You can download the PPT & PDF - Link given in the description - Pls like, share and subscribe - Thank you.

  • @aryangiri1161
    @aryangiri1161 Месяц назад +1

    the clarity of explanation is just insane.

  • @jimpowang
    @jimpowang 3 года назад +1

    This video is too good. The best in terms of explaining the theory.

  • @lucasflaviocota8756
    @lucasflaviocota8756 Год назад

    You're very good explaining, thank you for the video!

  • @mayurmhaske545
    @mayurmhaske545 7 месяцев назад

    Really Nice and informative videos. Thank you very much...!!

  • @dr.varatharajm54
    @dr.varatharajm54 4 года назад +1

    Nice sir. Waiting for upcoming videos... Great..

    • @FutureofEEE
      @FutureofEEE  4 года назад

      Thank you sir ... Ill upload it soon sir..

  • @subramaniyanv4576
    @subramaniyanv4576 4 месяца назад

    Good explanation keep it up sir

  • @vinothkrish7890
    @vinothkrish7890 4 года назад

    Nice initiative Siddharthan.

  • @md.shuheburrahman4002
    @md.shuheburrahman4002 Месяц назад

    epic one.

  • @AyushAgarwal-y9n
    @AyushAgarwal-y9n Год назад

    really appreciate it! but a little confused as to why core losses in stator are taken in parallel to magnetic flux ? why not in series ??

  • @vinodj7285
    @vinodj7285 Год назад

    Hello sir ... I know q axis inductance and d axis inductance flux linkage and stator resistance can I draw a equivalent circuit of the motor ...please help me to solve this..

  • @ronalerquinigoagurto555
    @ronalerquinigoagurto555 Год назад

    I have been reading about pump and the rotor resistir is analogous yo the impeller diameter

  • @MrMaaa62
    @MrMaaa62 3 года назад

    question?, how to know the squirrel cag ratio, can you explain to me. thanks

    • @FutureofEEE
      @FutureofEEE  3 года назад

      usually turns ratio is the terminology used in transformers = N1 (# turns in primary)/ N2 *# turns in secondary) . It is used to find the secondary winding parameters R2', X2'... In Induction motor X2' is assumed to be equal to X1 and R2' = (X2'+Xm/Xm)2 * R.