Razavi Electronics 1, Lec 33, Large-Signal & Small-Signal Operation

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Large-Signal & Small-Signal Operation
(for next series, search for Razavi Electronics 2 or longkong)
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We train every new designer with these courses. Thank you Dr. Razavi. - Arlo Aude

ArloAude
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I study Mtech in IIT and trust me there are some teachers who are shame to this society. I wish we had Teacher like you sir...

himadridebnath
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I hope professor uploads more lectures if he can. He is doing gods work.

tejas
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I can't resist myself from liking these lectures...thankyou professor❣️❣️

San-ixki
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Just Marvelous and awesome.. You are literally the GOD of Analog electronics to many people in the world.. each detail u teach and the style u have in teaching are just unparalleled and we are so much grateful for you Sir for making seemingly difficult subject so interesting.. Much Love from India !

chinthalaadireddy
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You're way of teaching is phenomenal... And you got a sense of humor too.. so overall you got a package...

shankysays
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Thanks a lot for this great lecture, I hoped we had such skilled teaching professor at the university instead of the selfish ones we had

sonlinesonline
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Sir you have saved me for my Electronic Circuits course

mariafernandacarranza
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A good methodology of teaching. Thank Professor.

phuha-van
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at 21:00 if we use the last equation for gm we obtain the same result (new gm = 2 x old gm) because W/L doubles but doubles also Id, because the new Id to be considered is the sum of Id1 and Id2 (that have the same value)

stefano.a
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i will write u r the greatest in every video i watch too much love <3

buvlywahba
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I learnt a whole new approach to small signal analysis thanks to this phenomenal explanation!! Thank you, Sir.

Sourav_Soumyajit
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He teaches, Calculus, electronics, mathematical reasoning etc. all in one lesson. Who is this teacher?

jos
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Circuit is Messi but you're Ronaldo (GOAT)

ayushmeena
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why don't other professors are like u and the worst part is Why I am paying them

ayushkumar
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59:00 my goodness, i screammed out. It's gm!

zjwang
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in the small-signal model, I think it should be (Vo+Vmike -Vth)^2. Am I right?

reemalshanbari
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In 47.00 he says it's sort of open. Does that mean that we analyze it mathematically as an open circuit?

kavouras
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@58:00 and after, shouldn't it be (V0-Vth) instead of (Vgs-Vth) in the denominator?

PunitJain
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sir, at 58:02, it is 2ID / "Vo"-Vth not "Vgs"-Vth right ?

ayushnarayanaganta