zener diode as voltage regulator

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  • เผยแพร่เมื่อ 19 ก.ย. 2018
  • ZENER DIODE AS VOLTAGE REGULATOR
    Regulation:
    The process of keeping constant voltage across load regardless of variation of input voltage or load current is called regulation.
    Zener diode is a specially designed diode which has ability to maintain constant voltage across load.
    Therefore zener diode can be used to provide constant voltage across load.
    Need for Regulation:
    Due to increase in the source voltage if the voltage and current across the load increases.
    Then the load may be damaged due to over heating
    To protect the load, zener diode is connected in parallel to the load RL in reverse fashion.
    This circuit shows, zener diode as shunt voltage regulator
    Vin is unregulated input voltage and Vo is regulated output voltage.
    Zener diode is reverse connected across the input voltage Vin whose variations are to be regulated.
    The resistor Rs is used to limit the reverse current through the zener diode to safer value.
    The voltage source Vin and resistor Rs are so selected that the diode operates in breakdown region.
    The diode voltage in this region, is called as zener voltage Vz , which is also voltage across RL
    The current through the diode is Iz , current through series resistor is Is and current through load resistor is IL
    As long as voltage across the load resistor RL is less than zener voltage VZ, diode does not conduct.
    When the supply voltage Vin increases and the voltage across the load resistor Vo becomes greater than or equal to zener breakdown voltage VZ
    Zener diode starts conducting
    Zener Regulator can be explained under following heads:
    Regulation with varying input voltage Vin
    Regulation with varying load resistance RL
    Regulation with varying input voltage Vin
    Regulation with varying input voltage Vin
    Regulation with varying input voltage Vin
    As the input voltage increases,
    Input current Is also increases,
    This increases the current through zener diode Iz without affecting the load current IL,
    With the increase in input current the voltage drop across resistor Rs will also increase,
    Thereby keeping the load voltage Vo constant
    WORKING: When Vin decreases
    As the input voltage decreases,
    Input current Is also decreases,
    This decreases the current through zener diode Iz without affecting the load current IL,
    With the decrease in input current the voltage drop across resistor Rs will also decrease,
    ThWORKING: When RL increases
    As the load resistance increases,
    Load current IL decreases,
    This increases the current through zener diode Iz
    As a result of this the input current IS and voltage drop across RS remains constant,
    Thereby keeping the load voltage Vo constant
    WORKING: When RL decreases
    As the load resistance decreases,
    Load current IL increases,
    This decreases the current through zener diode Iz
    As a result of this the input current IS and voltage drop across RS remains constant,
    Thereby keeping the load voltage Vo constant

ความคิดเห็น • 31

  • @habtamusium8646
    @habtamusium8646 ปีที่แล้ว +4

    I am happy to understand the fact that zener is working for reverse bias condition in time of overvoltage it starts regulate constant V otherwise remains open ( silent ) . many thanks !

  • @justaperson2247
    @justaperson2247 3 ปีที่แล้ว +2

    Mam...apko na ham backbencher students ki bohot dua mil rahi hai...apne bacha liya hamko exams ke time par... thanks mamm... superb and easy to understand point to point nd with the concept explanation thanks alot🙏🙏

  • @rajeshreepatil4713
    @rajeshreepatil4713 2 ปีที่แล้ว +7

    Simplest clean easy explanation i have ever listened thank you mam

  • @vaibhavsrivastav4031
    @vaibhavsrivastav4031 4 ปีที่แล้ว +3

    Mam aaj apne ne mera physics exam bacha liya thank you very much ........milte hain phir kabhi....

  • @sanjaysingh-sw9kb
    @sanjaysingh-sw9kb 2 ปีที่แล้ว +1

    Mam can I use zener diods for eath and neutral voltage reducing and how can made the ckt. Please

  • @karangupta431
    @karangupta431 4 ปีที่แล้ว +1

    nice and easy explaination

  • @Electronics61
    @Electronics61 3 ปีที่แล้ว +2

    Good explanation lecture

  • @borutouzumaki5086
    @borutouzumaki5086 2 ปีที่แล้ว +2

    Thanks
    No one explained this in detail
    May be i am slow learner, anyways nice explanation

  • @mjb1552
    @mjb1552 2 ปีที่แล้ว +1

    Good 👍 keep it up.

  • @ankurkaushal3101
    @ankurkaushal3101 4 ปีที่แล้ว +1

    Waah..

  • @veereshyadav2203
    @veereshyadav2203 2 ปีที่แล้ว +1

    Useful,😍

  • @valarmathi4403
    @valarmathi4403 2 ปีที่แล้ว

    Why zener current decreases with increasing load current

  • @anchaljaiswal8437
    @anchaljaiswal8437 ปีที่แล้ว

    Thankyou 😊

  • @harshapatel8765
    @harshapatel8765 ปีที่แล้ว +1

    What is breakdown region??

  • @PriyaPriya-kf8qp
    @PriyaPriya-kf8qp ปีที่แล้ว

    Thank you mam🙏

  • @legendfbhojpuri8535
    @legendfbhojpuri8535 2 ปีที่แล้ว +1

    Thanks mamm

  • @hariesh6337
    @hariesh6337 4 ปีที่แล้ว +3

    Nice madam

  • @pullockdebnath457
    @pullockdebnath457 4 ปีที่แล้ว +15

    Its harsh to listen Vzero instead of Voutput , Vin instead of Vinput

  • @shireesh2209
    @shireesh2209 4 ปีที่แล้ว +7

    Play and say faster

  • @aliproduction5833
    @aliproduction5833 2 ปีที่แล้ว

    Great

  • @hecker3268
    @hecker3268 4 ปีที่แล้ว +13

    You're literally just reading out

  • @annonymoussi9sjs
    @annonymoussi9sjs ปีที่แล้ว +1

    Just reading
    Not explaining 🙄

  • @o.pbalugaming2991
    @o.pbalugaming2991 ปีที่แล้ว

    😢

  • @syxdgamingyt7336
    @syxdgamingyt7336 ปีที่แล้ว +1

    Isn't easy for reciting the notes 🤬

  • @shubhamshah8879
    @shubhamshah8879 ปีที่แล้ว +1

    😡😡😡kya hai ye

  • @sudeepreddy5130
    @sudeepreddy5130 3 ปีที่แล้ว +6

    Not nice mam

  • @radheradhe2300
    @radheradhe2300 ปีที่แล้ว +2

    🤮🤮

  • @karandeepsingh1434
    @karandeepsingh1434 3 ปีที่แล้ว +3

    Ma'am aapne sirf definitions ko repeat hi kiya, apni taraf se kuchh nai karaya. Sorry but a dislike from me!