Thnq so much for these informative vedios 👌 helpful to many students who doesn't affort tutions 👌 God bless u all who are helping students in studies by making these vedios
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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.
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.
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.
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 🙏
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 🙏
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Plzz snd all the notes of power electronics..bcz ur explanation is very good so it's very easy to get read all the notes..for all units of power electronics..
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I have one question sir ...........i think gate current(Ig) is zero bc of the silicon oxide material insulating the gate to allow currenr but u mentioned as Vg gets higher current also rises
Mam I am final years student of electrical engineering ... I take project on the basis of igbt .which is the compenent of vfd.. I need your help plzzzzz...I am waiting of your reply...
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It is easy to get confused because a mosfet is usually show to have a saturated region where the bipolar is shown to have an active region. The igbt is usually shown to have the characteristics of a bipolar transistor so the saturated region is on the left and the active region in the middle, before breakdown region. This tutorial shows something completely different.
Around 4:06, you mention "Low ON state power loss" as in BJT. But depending on current, BJT actually has worse power losses than FET. Right? I think a voltage drop vs current chart comparing BJT, FET and IGBT, (and SiC FETs), would be in place to judge regions where they are the best. Also for a good measure add a Schottky diode curve, i.e. in rectification scenarios.
At about timestamp 3:40 you labeled the arrow of the transistor as collector. Earlier, you stated thatarrow was emitter...confusing to me...is this an error?
Well understood sir. Thanks for sharing this wonderful explanation. 👌Sir, I have a question... In O/p characteristics graph, why the Ohmic region, Active region, saturation region differs in MOSFET and IGBT? looks both graph are literally same.
When that particular area of p region gains electrons....the electrons becomes the majority carriers of that particular section...so that section eventually becomes an N REGION. So their is a clear path to flow current from...P to N...i.e from collector to emitter
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Excellent video, thorough explanation - better than any other demo / document found in the web.
জাযাকাল্লাহু খইর (আল্লাহ পাক আপনায় উত্তম বিনিময় দান করুক)
I really liked it very much. In one word very clear and Cut explanation.
Pls add switching characteristics also. And thank you for making such good videos.
Thank You sir for explaining it so nicely,Love from Indian Navy 🇮🇳
Jai hind 🇮🇳 🇮🇳 🇮🇳
Thnq so much for these informative vedios 👌
helpful to many students who doesn't affort tutions 👌
God bless u all who are helping students in studies by making these vedios
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.
whoa thank you so much! was like a complete class
Thanks ❤❤❤❤❤
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Super clear i I understand thanks for this video
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@@EngineeringFunda OK
Great vedio 😊
Thanks for this amazing vedio
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Great explanation sir i appreciate your efforts thankyou
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Too good explanation
Your positive comments motivates me.
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@@EngineeringFunda sure
Electrical guru. Thank u so much
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its pleaser to gets clear concept, thanks
Your positive comments motivates me, Thanks and welcome 🙏
weel explained ....sir..hats off...Great...
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@@EngineeringFunda Definitely i will do sir
Sir has taken pains to make things simple-
Thx for genuine efforts!
Very nice lecture tkq
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Excellent lecture.
Your welcome 🙏
Ek no. Video
u have very good teaching skill
thanks
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Osm explanation sir
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Thank you very much for this great explanation
Your positive comments motivates me, Thanks and welcome 🙏
Good 👍 👍 👍 👍
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good explen 👍👍
Your positive comments motivates me.
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Thanks a lot. Awesome explanation
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thank you sir for this video👍
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Nice Explanation Sir.
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Great work , thankyou sir 😊😊
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Awesome sir
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Video accha samjh me aaya....
Very very thanks sir for making such a good conceptual vedio
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Bhai jabardast video hai
Sir,
During explaining the igbt's equivalent circuit you have added direction along with collector terminal.
extremely high explanation very good sir salute you thnks
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bhut aacha smjta ho sr
Lovely Video , simple explanation. 👌👌
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GREAT VIDEO. GOOD EXPLANATION
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Thank u so much sir for such a nyc video thanx alot
Love and happiness of students is my ultimate goal, God bless you 🙏, keep learning and keep progressing.
Clear explination !if you me permit to ask; What is the use of the active region! Is it to modulate the I/P ? Thank you so much 🙏
Yeah
bhai c language nhi hai yeh " ; " mt laga comment me. ab yeh mt khahiyo ki mene bhi toh lagaya hai. me laga skta hun kyuki me laga skta hu prr tu nhi;
@@rohityadav-iq5hm noob c++ h ye. c++ me v ";" lagta h. itna v nai pata h.
Active region is used in ampflier ckt
Tq sir. This video helps lot for exam. I subscribed to our chanel
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Niccccccccccc video tq... sirrrrr😊😊😊
Your welcome
Nice explanation
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So nice
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explanation i was looking for, thanks
Great going u r
Helpful video, thanks ! :)
Your positive comments motivates me, Thanks and welcome 🙏
Plzz snd all the notes of power electronics..bcz ur explanation is very good so it's very easy to get read all the notes..for all units of power electronics..
Soon I am going to launch app where you can download all material which I have.
@@EngineeringFunda thanku..
such an useful video thanks mannnnnnnnnnnnnnnnnnnnn
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Nice video
Great great. So great.
Good.
I have small doubt..
When Vge increases Ic increases and Vce decreases...
Then the characteristic should be between Ic x-axis and Vce Y-axis na?
Thanks a lot! Useful and clear explanation.
Thanks brother
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@@EngineeringFunda you are welcome
❤
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Great explanation
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Great video.
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Great explanation. thanks
You are welcome!
Thank you very much sir
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very nice explanation
Your welcome
Thanks for sharing sir
Beautifully explained 😊
Please post practical uses of IGBT also.
Amazing
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sir sambar khake padhaya hai kya??
I have one question sir ...........i think gate current(Ig) is zero bc of the silicon oxide material insulating the gate to allow currenr but u mentioned as Vg gets higher current also rises
Thank you
Your positive comments motivates me, Thanks and welcome 🙏
What is the use of high input impedance pls explain,,, I worked in dubai metro project here we used igbt for DC output for train
High input imedance means lower loading effect, the voltage drop across the voltage source resistance will be negligible
Mam I am final years student of electrical engineering ...
I take project on the basis of igbt .which is the compenent of vfd..
I need your help plzzzzz...I am waiting of your reply...
It's reduces the unwanted noises...
@@mayankkr.246 Wow 😍 Thank you🙏🌹❤
Sir thank you so much. Please explain how J2 is removed to allow the flow of current?
thanks sir, thats verry useful to me.
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I think the saturation region is towards the left side of the output characteristics curve and the active region is the middle part of the curve.
It is right here
I also studied in book that saturation region is un left and active regiin is in right side.. I am confused now.
@@EngineeringFunda sir please check once and confirm it.. Because i saw it in two to three books
It is easy to get confused because a mosfet is usually show to have a saturated region where the bipolar is shown to have an active region. The igbt is usually shown to have the characteristics of a bipolar transistor so the saturated region is on the left and the active region in the middle, before breakdown region. This tutorial shows something completely different.
Nice
Nice plz used slides. Mention applications along with all issues occurs in technolgy..
Super
Around 4:06, you mention "Low ON state power loss" as in BJT. But depending on current, BJT actually has worse power losses than FET. Right? I think a voltage drop vs current chart comparing BJT, FET and IGBT, (and SiC FETs), would be in place to judge regions where they are the best. Also for a good measure add a Schottky diode curve, i.e. in rectification scenarios.
At about timestamp 3:40 you labeled the arrow of the transistor as collector. Earlier, you stated thatarrow was emitter...confusing to me...is this an error?
It is there in equivalent circuit dear
good
Is the equivalent circuit for bjt refers to the npn or pnp?
Because the arrow is with the collector rather than the emitter
In BJT, arrow is always there with emitter.
@@EngineeringFunda your drawing in the equivalent circuit for igbt. Your arrow is with the collector
Nice lecture
Please explain dear why arrow is marked in collector terminal in igbt instead of emitter terminal in bjt
In equivalent circuit
Your explanation is awesome....
Please add explanation for Turn-in and Turn-OFF methods of Thyristor.
Thank you
It's there in my power electronics playlist
Keep it up
Nice explanation sir... But why you didn't add the switching characteristics also???
At 9:25 is the semiconductor polarity correct or its me who is getting it mixed up..
It is perfectly correct
Thank you
Superrr... But not explaining about switching characteristics
very nic teaching Sir
please Sir power electronic ka topic by topic mcq vedio banaiye
Go through my playlist of power electronics
super
Sir please makes video on Gate drive circuits for mosfet and igbt, please
Sir plzzz also explain about switching characteristic which is also a important term in it
Sir..can u make a video on snubber circuits seperately...so that we were in a clear flow..of power electronics
It is there in my playlist.
Sir.. what is the VCC...
Is power dissipation of IGBT is a advantage or disadvantage??
Can you explain IGCT please?
Well understood sir. Thanks for sharing this wonderful explanation. 👌Sir, I have a question... In O/p characteristics graph, why the Ohmic region, Active region, saturation region differs in MOSFET and IGBT? looks both graph are literally same.
Many differences but it is difficult to explain by writing the comments. I will try to make video on it.
@@EngineeringFunda Really Thanks for your response sir.
didnt explain how current can flow when the P junction gains electrons.
When that particular area of p region gains electrons....the electrons becomes the majority carriers of that particular section...so that section eventually becomes an N REGION. So their is a clear path to flow current from...P to N...i.e from collector to emitter
Sir can u please explain about three phase fully controlled converter with resistive load
Sir very nice explanation but iam not educated but iam interested for power electronics please explain to Hindi
Sie due to voltage with respect to emmiter which current will flow
Which applications of IGBT are operated in the active region and saturation region ?
i don’t know why, but this is some damn good asmr😂😌
Isnt the area marked as active region supposed to be ohmic region Sir?