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Field Effect Transistor Working in Tamil 

EEE VIDS
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FET- Field-Effect Transistor Construction and working principle of Operation.
A Field Effect Transistor (FET) is a three-terminal semiconductor device. Its operation is based on a controlled input voltage. By appearance JFET and bipolar transistors are very similar. However, BJT is a current controlled device and JFET is controlled by input voltage. Most commonly two types of FETs are available.
Junction Field Effect Transistor (JFET)
Metal Oxide Semiconductor FET (IGFET)
Junction Field Effect Transistor
The functioning of Junction Field Effect Transistor depends upon the flow of majority carriers (electrons or holes) only. Basically, JFETs consist of an N type or P type silicon bar containing PN junctions at the sides. Following are some important points to remember about FET −
Gate − By using diffusion or alloying technique, both sides of N type bar are heavily doped to create PN junction. These doped regions are called gate (G).
Source − It is the entry point for majority carriers through which they enter into the semiconductor bar.
Drain − It is the exit point for majority carriers through which they leave the semiconductor bar.
Channel − It is the area of N type material through which majority carriers pass from the source to drain.
There are two types of JFETs commonly used in the field semiconductor devices: N-Channel JFET and P-Channel JFET.
N-Channel JFET
It has a thin layer of N type material formed on P type substrate. Following figure shows the crystal structure and schematic symbol of an N-channel JFET. Then the gate is formed on top of the N channel with P type material. At the end of the channel and the gate, lead wires are attached and the substrate has no connection.
When a DC voltage source is connected to the source and the drain leads of a JFET, maximum current will flow through the channel. The same amount of current will flow from the source and the drain terminals. The amount of channel current flow will be determined by the value of VDD and the internal resistance of the channel.
A typical value of source-drain resistance of a JFET is quite a few hundred ohms. It is clear that even when the gate is open full current conduction will take place in the channel. Essentially, the amount of bias voltage applied at ID, controls the flow of current carriers passing through the channel of a JFET. With a small change in gate voltage, JFET can be controlled anywhere between full conduction and cutoff state.
Thank you for watching

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21 окт 2024

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Комментарии : 56   
@Kristy-m5h
@Kristy-m5h Год назад
We spend the money for the college,but I learned the concept only by this type of videos😅
@ragapriyakarthikeyan3139
@ragapriyakarthikeyan3139 Год назад
Perfect video for last day preparation for exams💯
@sivaadeesh7724
@sivaadeesh7724 3 года назад
Sir, i am studying in PSG college of technology, coimbatore. I joined the college late and i was nervous that I don't know the topics held in analog and digital electronics. After watching all ur videos i got a clear explanation about the topics . Thank you sir❤️.
@arjun_edits143
@arjun_edits143 3 года назад
Me too....From same college Sir,currently preparing for semester...Very well explained,easily understandable in mother tongue Sir!❤
@longdistancerelation2465
@longdistancerelation2465 2 года назад
Me from CIT Coimbatore 🙂
@ffvloger1138
@ffvloger1138 Год назад
Me from Pakistan iit😅
@velumani632
@velumani632 Год назад
@@longdistancerelation2465 me from gct
@m.k.barathdass
@m.k.barathdass Год назад
I got an opportunity to see this nobleman lively 😍 thanks to God 🙏 for blessing me with such a kind hearted man..
@Teenu
@Teenu 2 года назад
sir best explanation, very helpful for basic electrical engineering semester 2
@pratheepk5082
@pratheepk5082 4 года назад
Ur the master piece in the world superb..... Sir lv u soo much ur teaching plz continue sir
@dhayasekar8787
@dhayasekar8787 2 года назад
Even though my Professor Take this topic in Advanced English... I love this man😉
@birundha6407
@birundha6407 3 года назад
Crystal clear explanation sir. Thank you for sharing your videos sir
@Unicorn-yz1bq
@Unicorn-yz1bq 3 года назад
Ippa dan sir ellamae puryudu. Romba nandri sir.
@TheMariapparaj
@TheMariapparaj Год назад
Your teaching learning process is very good sir. Thank you.
@NIRMAL-rw6zn
@NIRMAL-rw6zn Год назад
The bestest EEE Teacher ever!
@jimgilmour2336
@jimgilmour2336 3 года назад
Awesome explanation sir 🔥🔥🔥 it was more simple to understand thank you soo much sir ❤
@AJAYKUMAR-ul8im
@AJAYKUMAR-ul8im 2 года назад
Thank you for your clear explanation sir 👍
@mahalakshmiv5964
@mahalakshmiv5964 3 года назад
Thank you for clear explanation sir
@manivelrmanivel5305
@manivelrmanivel5305 4 года назад
ஆசானுக்கு வணக்கம்,மிக நன்று, நன்றி ஐயா.
@sriramjayaraman7722
@sriramjayaraman7722 Год назад
Such a beautiful lecture I have ever seen this 😍
@EEEVIDS
@EEEVIDS Год назад
Thanks a lot 😊
@pradeep6690
@pradeep6690 4 года назад
Nice explanation sir.. Pls continue ur support..
@r-a-aarura2151
@r-a-aarura2151 15 дней назад
Excellent sir... Thank you
@vigneshrajan4297
@vigneshrajan4297 2 года назад
really perfect teaching
@dhanabalanm3112
@dhanabalanm3112 Год назад
Master of electrical subject
@zohoaddicts2941
@zohoaddicts2941 2 года назад
Hello sir, I am having doubt, whether this video is for JFET
@VinothkumarKalimuthu
@VinothkumarKalimuthu 3 года назад
Well explained sir.
@dvksmilyboy
@dvksmilyboy 11 месяцев назад
Great explain sir✨
@yasinsherif8875
@yasinsherif8875 2 года назад
Very useful sir💞
@deeeptjagadeesanp2325
@deeeptjagadeesanp2325 Год назад
தெய்வமே.....
@abishavigneshwaran3576
@abishavigneshwaran3576 3 года назад
Great job sir
@hariharan-yi8tf
@hariharan-yi8tf 4 года назад
Conventional "I" flow from + to - then how can you get o/p in drain? 8086 no lecture on this yet, sir
@tnpsc-es4yb
@tnpsc-es4yb Год назад
Sir vgs negative voltage kudukura apo namakku drain current decrease aaguthu sir , vgs ah increase pandra apo depletion layer um increase aagum so namaku apovum drain current kammiya than kidaikum ah sir
@freeenergyelectricity3999
@freeenergyelectricity3999 4 года назад
சுண்ணாம்பு நீாில் (நோ் மின்னோட்டம்) மின்சாரம் உற்பத்தி செய்யமுடியும் டிரான்சிஸ்டர் மூலம் ஆம்பியர் அதிகப்படுத்த முடியுமா? விளக்கம் தேவை ஐயா!
@arjunmohan2908
@arjunmohan2908 3 года назад
Sir Inga neenga solra depletion width n channel and p channel meet aagra point la form aagratha?
@ridafathimawajid4058
@ridafathimawajid4058 2 года назад
Thankyou sir!
@salaijanagaraj9880
@salaijanagaraj9880 3 года назад
Thank you so much sir
@n.punithapunitha4141
@n.punithapunitha4141 4 года назад
Thanku sir for posting this
@Basilica2003
@Basilica2003 2 года назад
This is jfet ha sir?
@madhankumars4671
@madhankumars4671 2 года назад
24 volt circuit explain on mechanical please sir
@rajabalaji1404
@rajabalaji1404 3 года назад
Thank you sir
@ponventhanvetri8805
@ponventhanvetri8805 3 года назад
Why vgs = -ve(value)
@ECNISHOKAP
@ECNISHOKAP 3 года назад
Because it is reverse biased
@subimask6214
@subimask6214 2 года назад
07:25 If the width of the Depletion layer increses ,the current will be reduced.....
@cruze3148
@cruze3148 Год назад
Yes u are correct
@vincys8217
@vincys8217 3 года назад
Thankyou sir
@ap_sp
@ap_sp 3 года назад
Thank u sir
@its_msCool
@its_msCool 7 месяцев назад
clear sir
@Manikandan-sv7qx
@Manikandan-sv7qx 10 месяцев назад
Sir difference between JFET and FET
@Rainbowcolours09
@Rainbowcolours09 10 месяцев назад
I think simply FET is called as JFET..two r same...
@Manikandan-sv7qx
@Manikandan-sv7qx 10 месяцев назад
But known one rise in staff
@pragadeeshsaravanan8566
@pragadeeshsaravanan8566 4 года назад
Sir jfet explain pannuga
@NevadaSeppa-v9r
@NevadaSeppa-v9r 10 дней назад
Conroy Park
@Ragul2305-fm3iv
@Ragul2305-fm3iv 10 месяцев назад
Thank you sirrr
@archanas7782
@archanas7782 Год назад
Thankyou sir
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