Integrated Circuits, MOSFETs, Op-Amps and their Applications
Integrated Circuits, MOSFETs, Op-Amps and their Applications
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lec59 - Experiment: Peak detector circuit using Op-Amp
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มุมมอง: 4 969

วีดีโอ

lec58 - Experiment: Active band reject filter
มุมมอง 2.1K6 ปีที่แล้ว
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lec57 - Experiment: Introduction to experimental set-up for band reject filter
มุมมอง 1.4K6 ปีที่แล้ว
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lec56 - Experiment: Passive and active band pass filter
มุมมอง 2.2K6 ปีที่แล้ว
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lec55 - Experiment: Introduction to experimental set-up of band pass filter
มุมมอง 1.5K6 ปีที่แล้ว
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lec54 - Experiment: Passive and active high pass filter
มุมมอง 2.9K6 ปีที่แล้ว
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lec53 - Experiment: Op-amp based active low pass filter
มุมมอง 4.1K6 ปีที่แล้ว
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lec50 - Experiment: To study op-amp based comparator
มุมมอง 3.3K6 ปีที่แล้ว
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lec52 - Experiment: Study of passive low pass filter
มุมมอง 2.4K6 ปีที่แล้ว
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lec51 - Experiment: To study op-amp based integrator and differentiator
มุมมอง 8K6 ปีที่แล้ว
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mod11 -Experiment: Summing amplifier using op-amp
มุมมอง 6K6 ปีที่แล้ว
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lec43 - Experiment: Op-Amp Characteristics: Input Offset Voltage
มุมมอง 9K6 ปีที่แล้ว
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lec44 - Experiment: Op-Amp as Inverting Amplifier
มุมมอง 7K6 ปีที่แล้ว
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lec45 - Experiment: Op-Amp as Non-Inverting Amplifier
มุมมอง 4.3K6 ปีที่แล้ว
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lec46 - Experiment: To study input and output voltage range of an Op-Amp
มุมมอง 2K6 ปีที่แล้ว
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lec47 - Experiment: Differential amplifier using op-amp
มุมมอง 7K6 ปีที่แล้ว
lec47 - Experiment: Differential amplifier using op-amp
lec48 - Experiment: To study the gain of instrumentation amplifier
มุมมอง 3.6K6 ปีที่แล้ว
lec48 - Experiment: To study the gain of instrumentation amplifier
lec42 - Experiment: Op-Amp Characteristics: Input Offset Current
มุมมอง 3.8K6 ปีที่แล้ว
lec42 - Experiment: Op-Amp Characteristics: Input Offset Current
lec41 - Experiment: Op-Amp Characteristics: Input Bias Current
มุมมอง 6K6 ปีที่แล้ว
lec41 - Experiment: Op-Amp Characteristics: Input Bias Current
lec40 - Experiment: Working with Laboratory Equipment: Function Generator, Oscilloscope
มุมมอง 2.9K6 ปีที่แล้ว
lec40 - Experiment: Working with Laboratory Equipment: Function Generator, Oscilloscope
lec39 - Experiment: Working with Laboratory Equipment: Power Supply
มุมมอง 1.9K6 ปีที่แล้ว
lec39 - Experiment: Working with Laboratory Equipment: Power Supply
lec38 - Experiment: Measurement of Active and Passive elements using Multimeter
มุมมอง 3.2K6 ปีที่แล้ว
lec38 - Experiment: Measurement of Active and Passive elements using Multimeter
lec37 - Experiment: Introduction to Laboratory Equipment
มุมมอง 3.2K6 ปีที่แล้ว
lec37 - Experiment: Introduction to Laboratory Equipment
lec36 - Analysis of Data Sheets of an Op-Amp Contd…
มุมมอง 1.8K6 ปีที่แล้ว
lec36 - Analysis of Data Sheets of an Op-Amp Contd…
lec35 - Analysis of Data Sheets of an Op-Amp Contd…
มุมมอง 1.9K6 ปีที่แล้ว
lec35 - Analysis of Data Sheets of an Op-Amp Contd…
lec34 - Analysis of Data Sheets of an Op-Amp
มุมมอง 3.6K6 ปีที่แล้ว
lec34 - Analysis of Data Sheets of an Op-Amp
lec33 - Introduction to Noise and its Types
มุมมอง 3.8K6 ปีที่แล้ว
lec33 - Introduction to Noise and its Types
lec32 - Construction and Operation of UJT Relaxation Oscillators
มุมมอง 4.7K6 ปีที่แล้ว
lec32 - Construction and Operation of UJT Relaxation Oscillators
lec31 - Working of Crystal Oscillators
มุมมอง 9K6 ปีที่แล้ว
lec31 - Working of Crystal Oscillators
lec26 - Operational Amplifier as a Band Pass and Band Reject Filter
มุมมอง 8K6 ปีที่แล้ว
lec26 - Operational Amplifier as a Band Pass and Band Reject Filter

ความคิดเห็น

  • @LaibaFQ
    @LaibaFQ 5 วันที่ผ่านมา

    Sir please upload more lectures related to electronics and other physics subjects

  • @akinladeadewale5874
    @akinladeadewale5874 13 วันที่ผ่านมา

    Which component is considered fundamental in the fabrication of ICs ?

  • @likhithgowdahl1174
    @likhithgowdahl1174 3 หลายเดือนก่อน

    Can u people provide this in kannada

  • @manishaswain6941
    @manishaswain6941 3 หลายเดือนก่อน

    Sir is this the frequency domain analysis

  • @shivamverma80819.
    @shivamverma80819. 4 หลายเดือนก่อน

    love you sir

  • @renukaatri1206
    @renukaatri1206 5 หลายเดือนก่อน

    Best lectures for mosfet understanding 👌.

  • @chetansingh529
    @chetansingh529 6 หลายเดือนก่อน

    Thank you very much sir ji.

  • @sankistudio1771
    @sankistudio1771 8 หลายเดือนก่อน

    Excellent professor with great Motivation & Teaching

  • @aerodynamico6427
    @aerodynamico6427 8 หลายเดือนก่อน

    Scribbling so much with poor handwriting onto a single sheet of paper makes it impossible to follow what is going on.

  • @aerodynamico6427
    @aerodynamico6427 8 หลายเดือนก่อน

    You are HORRIBLE. You don't explain the "t" and you don't explain the "mu" and just pop them into a formula!

  • @SiddharthKamila.
    @SiddharthKamila. 8 หลายเดือนก่อน

    which textbook or reference book should we follow for this subject ?

  • @amarsinghkushwaha6578
    @amarsinghkushwaha6578 9 หลายเดือนก่อน

    how capacitor and indutor can be design on a ic

  • @kidanealemu9473
    @kidanealemu9473 ปีที่แล้ว

    very nice

  • @mohammedmostefabelhadjmost417
    @mohammedmostefabelhadjmost417 ปีที่แล้ว

    Sir, what kind of Amplio are you using ؟

  • @mohammedmostefabelhadjmost417
    @mohammedmostefabelhadjmost417 ปีที่แล้ว

    When I combine a sine wave with direct voltage, the electronic circuit does not change ؟

  • @vikashkushwaha6860
    @vikashkushwaha6860 ปีที่แล้ว

    Sabse ghatiya bol kyse rah hai . Total time waste. 😡😡

  • @abdokamal4133
    @abdokamal4133 ปีที่แล้ว

    Is it appropriate to use copper instead of gold?

  • @amanraibole7184
    @amanraibole7184 ปีที่แล้ว

    Professor hardik pandeya 🏏

  • @MSbabasayee
    @MSbabasayee ปีที่แล้ว

    Baba 25+2.( ? 27)

    • @MSbabasayee
      @MSbabasayee ปีที่แล้ว

      Barat wali barat wilian

  • @MSbabasayee
    @MSbabasayee ปีที่แล้ว

    We special thanks appreciate reminder 7 we electricity shook Mom wasn't around Auntie fameha means hameedah use woods For safety both sides hands really brins alot then we transfer kasur again kot Ali garh thanks Khudian choke jewan . Tree jamo we no friends even 1God blessed

  • @chaitanyaenekepalli2680
    @chaitanyaenekepalli2680 ปีที่แล้ว

    Best lecture ever really superb 👌 👏

  • @praveenameda9413
    @praveenameda9413 ปีที่แล้ว

    GOOD ONE ...ONE DOUBT CAN WE USE SAME VALEU OF INDUCATANCE

  • @mirwaiz9619
    @mirwaiz9619 ปีที่แล้ว

    absolute rubbish teacher! no ethical behaviour sneezing and coughing during the videos like a chain smoker and has no idea of what he teaches just reading slides to camera. what a waste of time and energy on making this course

  • @mirwaiz9619
    @mirwaiz9619 ปีที่แล้ว

    absolute rubbish no explanations at all I wonder how this guy is a IISc professor

  • @mirwaiz9619
    @mirwaiz9619 ปีที่แล้ว

    Rubbish! Just reading of from the slides which we can do by ourselves it seems he has no more of knowledge of the subject than we do.

  • @sneharajput9575
    @sneharajput9575 ปีที่แล้ว

    Take care yourself sir😟😟😟😟

  • @mirwaisibrahimkhaildeptofe1640
    @mirwaisibrahimkhaildeptofe1640 ปีที่แล้ว

    where can we download the ppts?

  • @geetikathakur9362
    @geetikathakur9362 2 ปีที่แล้ว

    what is technical characterstics of data sheet? is electrical and technical characteristice same?

  • @getpositivity2260
    @getpositivity2260 2 ปีที่แล้ว

    Thank you sir

  • @Gurukul22
    @Gurukul22 2 ปีที่แล้ว

    Thanking uh very much sir! 😇🌼

  • @EngineeringLibraryAmir
    @EngineeringLibraryAmir 2 ปีที่แล้ว

    Scale of Integration of IC's in hindi th-cam.com/video/XBIDB4-sZXg/w-d-xo.html

  • @bhuvaneshbehara2315
    @bhuvaneshbehara2315 2 ปีที่แล้ว

    I expect this type of lecture in every college but there is no like this sir. Thanks very much sir for providing good lecture to everyone

  • @tatvamkrishnam6691
    @tatvamkrishnam6691 2 ปีที่แล้ว

    8:20

  • @salmacali3850
    @salmacali3850 2 ปีที่แล้ว

    Sir, your lucture is amazing , where can i find the course lecture notes

  • @user-jc3yo3on2b
    @user-jc3yo3on2b 2 ปีที่แล้ว

    🥺❤

  • @singhanjanikumarsantoshkum3630
    @singhanjanikumarsantoshkum3630 2 ปีที่แล้ว

    Sir nicely explained

  • @deepakr7242
    @deepakr7242 2 ปีที่แล้ว

    Learning in 2022 From nptel courses

  • @baalakbuddhi0
    @baalakbuddhi0 2 ปีที่แล้ว

    Good 😊😊

  • @meghanaa8600
    @meghanaa8600 2 ปีที่แล้ว

    Sir,can you please share this experiment pdf sir?

  • @sridharchitta7321
    @sridharchitta7321 2 ปีที่แล้ว

    Differential-mode and common-mode signals are important to understand in the design of complex signal-conditioning circuits which use operational amplifiers in medical diagnostic, industrial control and military applications. Operational amplifiers mainly excel in performance to provide a high common-mode rejection ratio and high gain. By using negative feedback, its overall gain, input impedance and bandwidth are determined by external components without these parameters being affected by the op-amp’s parameter variations due to external influences like temperature and so on. Most amplifiers built using discrete transistors will not be able to match the performance characteristics of an operational amplifier like CMRR, low drift, high input impedance and stability of gain. Engineers are so used to thinking and visualising currents as differential-mode in circuit analysis that they find it hard to switch their thinking to common-mode currents and their effects in say, amplifying circuits. It will be instructive to understand and visualise Current at its most fundamental level in the presence of electric fields in ordinary conductors. Electrostatics and circuits belong to one science not two. To learn the operation of circuits, Current and the conduction process, resistors and how discussing these topics makes it easier to understand the operation of capacitors, inductors, diodes and their operation in amplifier circuits and circuit theory watch these two videos i. th-cam.com/video/TTtt28b1dYo/w-d-xo.html and ii. th-cam.com/video/8BQM_xw2Rfo/w-d-xo.html Most common-mode signals originate because of sources external to the system, and the energy in them circulates annoyingly until it is dissipated in resistive portions. They can be generated internally if proper cables are not used for coupling signals at the frequencies of the signals they carry. Therefore the need arises for amplifiers to amplify only the useful differential signal and reject the common-mode component which does not belong to the signal conditioning system. Such an amplifier is used as the first stage of an operational amplifier which opens the door to allow a signal from a sensor ‘in’, so to say and so the importance given to this stage. Topics related to these aspects are discussed in chapters 3 and 5 of textbook 4 (see last frame References in video #1) and a power point presentation with animations “Basic Action of a Differential Amplifer-Heart of the Opamp” which explains differential amplifier with a U-tube manometer analogy of differential- and common- mode signals is included in the CD alongwith this book. Also in textbook 4 you will find descriptions using a unified approach towards an intuitive understanding of "circuit zero", "neutral", "ground" and "earth".

  • @sridharchitta7321
    @sridharchitta7321 2 ปีที่แล้ว

    Differential-mode and common-mode signals are important to understand in the design of complex signal-conditioning circuits which use operational amplifiers in medical diagnostic, industrial control and military applications. Operational amplifiers mainly excel in performance to provide a high common-mode rejection ratio and high gain. By using negative feedback, its overall gain, input impedance and bandwidth are determined by external components without these parameters being affected by the op-amp’s parameter variations due to external influences like temperature and so on. Most amplifiers built using discrete transistors will not be able to match the performance characteristics of an operational amplifier like CMRR, low drift, high input impedance and stability of gain. Engineers are so used to thinking and visualising currents as differential-mode in circuit analysis that they find it hard to switch their thinking to common-mode currents and their effects in say, amplifying circuits. It will be instructive to understand and visualise Current at its most fundamental level in the presence of electric fields in ordinary conductors. Electrostatics and circuits belong to one science not two. To learn the operation of circuits, Current and the conduction process, resistors and how discussing these topics makes it easier to understand the operation of capacitors, inductors, diodes and their operation in amplifier circuits and circuit theory watch these two videos i. th-cam.com/video/TTtt28b1dYo/w-d-xo.html and ii. th-cam.com/video/8BQM_xw2Rfo/w-d-xo.html Most common-mode signals originate because of sources external to the system, and the energy in them circulates annoyingly until it is dissipated in resistive portions. They can be generated internally if proper cables are not used for coupling signals at the frequencies of the signals they carry. Therefore the need arises for amplifiers to amplify only the useful differential signal and reject the common-mode component which does not belong to the signal conditioning system. Such an amplifier is used as the first stage of an operational amplifier which opens the door to allow a signal from a sensor ‘in’, so to say and so the importance given to this stage. Topics related to these aspects are discussed in chapters 3 and 5 of textbook 4 (see last frame References in video #1) and a power point presentation with animations “Basic Action of a Differential Amplifer-Heart of the Opamp” which explains differential amplifier with a U-tube manometer analogy of differential- and common- mode signals is included in the CD alongwith this book. Also in textbook 4 you will find descriptions using a unified approach towards an intuitive understanding of "circuit zero", "neutral", "ground" and "earth".

  • @sridharchitta7321
    @sridharchitta7321 2 ปีที่แล้ว

    Differential-mode and common-mode signals are important to understand in the design of complex signal-conditioning circuits which use operational amplifiers in medical diagnostic, industrial control and military applications. Operational amplifiers mainly excel in performance to provide a high common-mode rejection ratio and high gain. By using negative feedback, its overall gain, input impedance and bandwidth are determined by external components without these parameters being affected by the op-amp’s parameter variations due to external influences like temperature and so on. Most amplifiers built using discrete transistors will not be able to match the performance characteristics of an operational amplifier like CMRR, low drift, high input impedance and stability of gain. Engineers are so used to thinking and visualising currents as differential-mode in circuit analysis that they find it hard to switch their thinking to common-mode currents and their effects in say, amplifying circuits. It will be instructive to understand and visualise Current at its most fundamental level in the presence of electric fields in ordinary conductors. Electrostatics and circuits belong to one science not two. To learn the operation of circuits, Current and the conduction process, resistors and how discussing these topics makes it easier to understand the operation of capacitors, inductors, diodes and their operation in amplifier circuits and circuit theory watch these two videos i. th-cam.com/video/TTtt28b1dYo/w-d-xo.html and ii. th-cam.com/video/8BQM_xw2Rfo/w-d-xo.html Most common-mode signals originate because of sources external to the system, and the energy in them circulates annoyingly until it is dissipated in resistive portions. They can be generated internally if proper cables are not used for coupling signals at the frequencies of the signals they carry. Therefore the need arises for amplifiers to amplify only the useful differential signal and reject the common-mode component which does not belong to the signal conditioning system. Such an amplifier is used as the first stage of an operational amplifier which opens the door to allow a signal from a sensor ‘in’, so to say and so the importance given to this stage. Topics related to these aspects are discussed in chapters 3 and 5 of textbook 4 (see last frame References in video #1) and a power point presentation with animations “Basic Action of a Differential Amplifer-Heart of the Opamp” which explains differential amplifier with a U-tube manometer analogy of differential- and common- mode signals is included in the CD alongwith this book. Also in textbook 4 you will find descriptions using a unified approach towards an intuitive understanding of "circuit zero", "neutral", "ground" and "earth".

  • @sridharchitta7321
    @sridharchitta7321 2 ปีที่แล้ว

    Differential-mode and common-mode signals are important to understand in the design of complex signal-conditioning circuits which use operational amplifiers in medical diagnostic, industrial control and military applications. Operational amplifiers mainly excel in performance to provide a high common-mode rejection ratio and high gain. By using negative feedback, its overall gain, input impedance and bandwidth are determined by external components without these parameters being affected by the op-amp’s parameter variations due to external influences like temperature and so on. Most amplifiers built using discrete transistors will not be able to match the performance characteristics of an operational amplifier like CMRR, low drift, high input impedance and stability of gain. Engineers are so used to thinking and visualising currents as differential-mode in circuit analysis that they find it hard to switch their thinking to common-mode currents and their effects in say, amplifying circuits. It will be instructive to understand and visualise Current at its most fundamental level in the presence of electric fields in ordinary conductors. Electrostatics and circuits belong to one science not two. To learn the operation of circuits, Current and the conduction process, resistors and how discussing these topics makes it easier to understand the operation of capacitors, inductors, diodes and their operation in amplifier circuits and circuit theory watch these two videos i. th-cam.com/video/TTtt28b1dYo/w-d-xo.html and ii. th-cam.com/video/8BQM_xw2Rfo/w-d-xo.html Most common-mode signals originate because of sources external to the system, and the energy in them circulates annoyingly until it is dissipated in resistive portions. They can be generated internally if proper cables are not used for coupling signals at the frequencies of the signals they carry. Therefore the need arises for amplifiers to amplify only the useful differential signal and reject the common-mode component which does not belong to the signal conditioning system. Such an amplifier is used as the first stage of an operational amplifier which opens the door to allow a signal from a sensor ‘in’, so to say and so the importance given to this stage. Topics related to these aspects are discussed in chapters 3 and 5 of textbook 4 (see last frame References in video #1) and a power point presentation with animations “Basic Action of a Differential Amplifer-Heart of the Opamp” which explains differential amplifier with a U-tube manometer analogy of differential- and common- mode signals is included in the CD alongwith this book. Also in textbook 4 you will find descriptions using a unified approach towards an intuitive understanding of "circuit zero", "neutral", "ground" and "earth".

  • @mamz687
    @mamz687 2 ปีที่แล้ว

    Nano amps or metre

  • @engineeringsuggestions8408
    @engineeringsuggestions8408 2 ปีที่แล้ว

    Very amazing lacture.......sir please provide Notes also

  • @ece49salonijain30
    @ece49salonijain30 2 ปีที่แล้ว

    Sir how can I get your notes in ppt format?

  • @kabandajamilu9036
    @kabandajamilu9036 2 ปีที่แล้ว

    So nice sir

  • @apandey4724
    @apandey4724 2 ปีที่แล้ว

    Can you provide your slides from which you have taught ?It will be very helpful to us.🙏🙏

  • @apandey4724
    @apandey4724 2 ปีที่แล้ว

    Sir, You have amazing teaching skill 🔥🔥🤩🤩🤩🙏🙏 thank so much for this lecture series 🤗🤗🤗 you have taught everything ( from basic to advance) in such a tremendous way 🔥🔥🔥

  • @avinandanpal
    @avinandanpal 2 ปีที่แล้ว

    We all love to listen to Stories, and this is exactly what he has done. He narrated a beautiful Story, out of all these tough-looking Topics. It's great to have come across this Playlist. And I loved the opening Music :)