4 awesome application of op-amps in circuits

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  • Опубликовано: 1 фев 2025

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  • @arp_catchall
    @arp_catchall 10 месяцев назад +11

    By far the best video and clearest explanation of these "mysterious" chips. Thanks!

    • @elewizard
      @elewizard  9 месяцев назад

      Wow, thanks! It's comments like yours that make creating content so fulfilling.

  • @HusainAlBlooshi
    @HusainAlBlooshi Год назад +3

    Thanks!

    • @elewizard
      @elewizard  Год назад

      You are very welcome husain ❤️❤️

  • @inductr
    @inductr Год назад +2

    Nice work!

    • @elewizard
      @elewizard  Год назад

      Thanks a million for your support❤️

  • @sisupat
    @sisupat 4 дня назад

    Thanks!

    • @elewizard
      @elewizard  5 часов назад

      Welcome and thanks for the 10$ Super thanks ❤️❤️❤️

  • @newstar346
    @newstar346 7 дней назад +1

    5:15 Comparators
    18:13 Simple Amplifier
    27:33 Differential Amplifier
    46:37 Voltage to current converter

  • @johnmea5140
    @johnmea5140 Год назад +3

    Your examples of applying the use of the devices is very good!! Thank you for the great content! I hope you continue to grow your channel.

    • @elewizard
      @elewizard  Год назад +2

      I hope so too! Thank you so much ❤️

  • @genadigospodinov5467
    @genadigospodinov5467 Год назад +1

    Thank you! It's the best video I've ever seen about op-amps. I would be glad if you could create more content on op-amps, covering topics like filters, impedance converters, or even ECG.

    • @elewizard
      @elewizard  Год назад +1

      Grateful for the Super Thanks, you're amazing!❤️ Surly I will make more videos on this subject 👍

  • @bayareapianist
    @bayareapianist Год назад +5

    One objection to your last application. The idea sounds great. But the resistance of the ADC input is in mega ohms like a voltmeter. The rsistance of a mile of wires could be in 100s of ohms which is neglectable to the ADC's. The noise on the lines however will not let you measure the current accurately. These days the data transmission lines have become differential despite the short application distances. One of the great applicantion of opamps is in differential transmission which i believe you were getting to next in the future.

    • @elewizard
      @elewizard  Год назад +2

      Yes, thank you for your feedback, I will cover differential transmission in other videos

  • @GOLD33N13
    @GOLD33N13 3 месяца назад

    This is by far one of the best videos I watched about AmpOps. So much thanks!

    • @elewizard
      @elewizard  3 месяца назад

      Glad it was helpful!🍻

  • @nataliealliepage7155
    @nataliealliepage7155 6 месяцев назад +1

    I love your talent for clearly explaining how these ubiquitous and versatile components work.

    • @elewizard
      @elewizard  6 месяцев назад +1

      Thanks for the compliment ☺️

  • @peterlethbridge7859
    @peterlethbridge7859 Год назад +17

    Once again, you have managed to explain a complex subject in easy to understand examples. Thank you so much for your videos, they really are very informative and helpful.

    • @elewizard
      @elewizard  Год назад +2

      Glad you like them! Cheers 🍻

  • @eric_d
    @eric_d Год назад +1

    Most informative video on op amps I've ever seen! It's a shame this video doesn't allow me the option of adding to a playlist, or even to watch later, so I can remember to watch it again. This video answers questions that I've had for decades!

    • @elewizard
      @elewizard  Год назад +1

      Glad it was helpful!
      Is it a restriction from my channel?

    • @flomojo2u
      @flomojo2u Год назад +1

      ​@elewizard Pretty sure this is user error, I had no issues adding the video to my playlist.

    • @eric_d
      @eric_d Год назад

      ​@@elewizardIt's most likely YT punishing me for having an ad blocker installed.

    • @eric_d
      @eric_d Год назад

      ​@@flomojo2uWhich ad blocker do you use? When I have ABP running a lot of features on YT don't work.

  • @viniciusvbf22
    @viniciusvbf22 6 месяцев назад

    I know I'm just adding to the choir here, but your videos are always amazing. Thank you for taking the time to make and publish them!
    I'm still at the start of the video, but already in the first example, the Op Amp is acting like a Analog-to-Digital Converter (ADC). That is amazing!

    • @elewizard
      @elewizard  6 месяцев назад

      Great, Glad you like them!

  • @KarldorisLambley
    @KarldorisLambley Год назад +1

    this video was a breakthrough experience for me. thanks to it i was able to use a microwave motion detector's reference and output voltages with a 741 as a comparator. thank you.

    • @elewizard
      @elewizard  Год назад

      Great job! It is so exciting to make new things out of stuff like that 😃

    • @KarldorisLambley
      @KarldorisLambley Год назад

      @@elewizard too right mr wizard. for me you are up there with the famous people, like bigclive or mehdi. i love the way you always include fairly simple examples in your vids.

  • @soulslayer59
    @soulslayer59 4 месяца назад

    Oh man i am in love with your videos ❤❤... As a mechatronics engineering dropout due to lack of practical knowledge...these kind of videos r a game changer for the new generation....simply love it ❤❤

  • @lucsteffens
    @lucsteffens Год назад +5

    A little support compared to the effort. Enjoy the holidays!

    • @elewizard
      @elewizard  Год назад

      Your Super Thanks is like a burst of positivity - thank you! ❤️

    • @soulslayer59
      @soulslayer59 4 месяца назад

      I so wish I could also support you but I am broke af and jobless😢😢 ... But really I can't thank you enough 🙏🙏🙏....hoping soon I shall get a a new job and help support this beautiful channel

  • @Mexzot
    @Mexzot Год назад +11

    An exceptional ability to explain something complex and teach actual understanding through examples.
    Thank you so much for your work!

    • @elewizard
      @elewizard  Год назад +2

      Wow, thank you. Glad you think so 😃

  • @Gwijiy
    @Gwijiy 11 месяцев назад

    You are a genius , because it requires an outstanding person to explain difficult concepts in a simple way 🙏

    • @elewizard
      @elewizard  11 месяцев назад

      Thanks a million! Your support is awesome.
      Your positive feedback made my day!😃

  • @user-mr3mf8lo7y
    @user-mr3mf8lo7y Год назад

    Stunning video. Much obliged. I understand it may differ application to application, however, for reference purposes, what (short) list of Op-Amp's you would recommend to keep in our inventories? Thanks,.

    • @elewizard
      @elewizard  Год назад +1

      Your support means everything to me!
      Lm339, lm324 and lm741.
      These are what I always have in my workshop 👍

  • @pabloderossi8418
    @pabloderossi8418 11 месяцев назад

    I like the way that you explain, with a good vibe and emotion, great job!

    • @elewizard
      @elewizard  10 месяцев назад

      So kind of you dude 😊

  • @carlosdelaincera6709
    @carlosdelaincera6709 7 месяцев назад

    Great videos and great examples - This is by far the best example of applied electronics

    • @elewizard
      @elewizard  7 месяцев назад

      Glad you think so!🥂

  • @qzorn4440
    @qzorn4440 Год назад +1

    Wow. The LM741 OP-AMP is a wonderful old time device to learn and study many examples. It is a good op-amp to make designs with, as other devices become obsolete the LM741 is still around. 😎 Thank you for the great info.

    • @elewizard
      @elewizard  Год назад +1

      Yes, LM741 is a great device and is used in nowadays designs. Thank you for watching ❤️😊

  • @RexxSchneider
    @RexxSchneider Год назад +1

    The problem with the differential amplifier used at 44:22 to amplify the load cell is that a gain of 10,000 is very ambitious using an ordinary opamp. The input offset voltage of an LM741 can be as much as 5mV, which if you multiply it by 10,000 will certainly drive the opamp to one of the rails. In addition, its open loop gain can be as small as 50,000 leading to very little feedback for linearising the output. Finally, the circuit you built uses a single supply rail of 5V but the differential amp really requires a dual supply to function properly without creating a virtual ground.
    More modern opamps can improve on that considerably, but you really should be noting that very specialised opamps are needed to successfully work with such large gains.

    • @elewizard
      @elewizard  Год назад

      Thank you so much for the points 👍🌷

  • @NTMMFTS
    @NTMMFTS 9 месяцев назад

    The real-world application explanations are really great!

    • @elewizard
      @elewizard  9 месяцев назад +1

      Yes, examples make concepts very easy to understand 👍

  • @amir2010r
    @amir2010r Год назад +1

    you are great teacher. thank you so much. please keep going and teaching in this manner.

    • @elewizard
      @elewizard  Год назад +2

      Thank you, I will❤️

  • @SamadSheep
    @SamadSheep 8 месяцев назад

    Hey, You're video is really great, i can now finally understand op amps

    • @elewizard
      @elewizard  8 месяцев назад

      Glad to hear that!😃

  • @CPStudio13
    @CPStudio13 Год назад

    Excellent information as usual. One request. Can you please create video on IC 555 and its inner working principles and application. Thanks and appreciate your work.

    • @elewizard
      @elewizard  Год назад

      Thanks for watching. Yeah, will do

  • @fredflickinger643
    @fredflickinger643 Год назад

    Good synopsis and covering the most used cases for Op Amps.

  • @abhinabgogoi2000
    @abhinabgogoi2000 Год назад

    Please do create a playlist for these videos. Although I know the basic working of most of the components, I have never inplemented in a real project. Thank you

  • @کامیاب-و7ز
    @کامیاب-و7ز 2 месяца назад

    it was really great
    and absolutly worth my time even though I was so busy
    could you also introduce some useful and practical documents?
    \

  • @SoilHealthpk
    @SoilHealthpk 8 месяцев назад

    Brilliant - Very good presentation. Thank you

    • @elewizard
      @elewizard  8 месяцев назад

      Thank you, for watching ❤️

  • @saarike
    @saarike Год назад

    Absolutely great video about op amps!!!! My humble thanks.

    • @elewizard
      @elewizard  Год назад +1

      It's wonderful to hear that you enjoyed the video. Thank you for watching ❤️

  • @mikejones-vd3fg
    @mikejones-vd3fg Год назад +2

    thank you, i wanted to know how to measure teensy weensy tiney bitsy currents and ran away when heard to use an op-amp because it sounded complicated, not so much now.

    • @elewizard
      @elewizard  Год назад +2

      Glad to hear that. 👍

    • @mikejones-vd3fg
      @mikejones-vd3fg Год назад

      I had to watch the video a few times but im starting to understand better now, have some more questions like that 1k divider network for the shunt example, is that because youre trying to cut the supply voltage to the op amp in half as well? You mention the source voltage for the op amp maybe to high , i assume this was the solution. Anyway thanks again for the useful examples and i like seeing the powersupply you made in use all the time. I made a simliar one with a buck converter and amp meter but wouuld like to add a current contorll. Apparenly theres an easy mod to that 2amp buck converter (lm something something) everyone uses. I think it uses and op amp to do it, yeah it does. Would be cool if you would upgrade yours and show us that mod works in more detail, the videos ive seen just have dance music, albeit the connections are clear, id like to know whats going on you know? ruclips.net/video/iwnanQsR32Y/видео.htmlsi=HW4IcL-GYewCpuXZ Thanks again this is my only education in electronics so I appreciate all the information. @@elewizard​

  • @sweetblues3230
    @sweetblues3230 10 месяцев назад

    general-purpose operational amplifiers (op-amps) can be used as comparators in certain applications. While op-amps are primarily designed for amplification and signal conditioning, they can also be used as comparators in certain cases where the speed and accuracy requirements are not critical.
    Op-amps have high gain and are designed to operate in a linear mode, where the output voltage is proportional to the input voltage. However, they can be used as comparators by configuring them in an open-loop configuration, where the feedback loop is not used. In this configuration, the op-amp operates in a saturated mode, where the output voltage swings to its maximum positive or negative value based on the input voltage comparison.
    Using an op-amp as a comparator has some limitations compared to dedicated comparator ICs. Op-amps may have slower response times and higher offset voltages, which can affect the accuracy and speed of the comparison. Additionally, op-amps may not have hysteresis, which is a feature commonly found in dedicated comparators to prevent oscillation when the input voltages are close.
    Therefore, while op-amps can be used as comparators in certain applications, it is generally recommended to use dedicated comparator ICs for precise and high-speed voltage comparisons.

    • @elewizard
      @elewizard  10 месяцев назад

      Thank you for sharing your valuable knowledge. Thank you again for being a part of the community ❤️🌷

  • @InventorKM2007
    @InventorKM2007 Год назад

    You're my teacher and I am now able to use and understand transistors and op amps

    • @elewizard
      @elewizard  Год назад

      It my pleasure, thanks for watching bro ❤️

  • @vishalkumar040393
    @vishalkumar040393 Год назад

    I quick question: At 44:37 you used 10 MOhm and 1 kOhm, to 10k gain. What if you use 100Ohm and 1MOhm ?

    • @elewizard
      @elewizard  Год назад

      The gain will be the same, you will get 10,000x.

  • @7gurshaansingh6thmarigold58
    @7gurshaansingh6thmarigold58 Год назад

    Thanks sir for sharing this knowledge and understanding of opam. This is the best video on this subject. Thanks 🎉🎉

    • @elewizard
      @elewizard  Год назад

      So nice of you, you are very welcome 🌷

  • @dangdaeed-rh6je
    @dangdaeed-rh6je Год назад

    Subscribed.
    Excellent video sir. Thank you

  • @q12x
    @q12x Год назад

    Very good ! - make more circuits and examples like these !

  • @uni-byte
    @uni-byte Год назад

    The LM324 is also specialized. It is mainly intended to be used in single supply applications. Without special consideration it will produce cross-over distortion in dual supply applications.

    • @elewizard
      @elewizard  Год назад

      Thanks for the point about LM324 🌷

  • @DavidM-b2p
    @DavidM-b2p Год назад

    I can sum up my appreciation in two words. Thank you!

    • @elewizard
      @elewizard  Год назад

      So nice of you ❤️ you are most welcome 😊

  • @jaimerodriguez9141
    @jaimerodriguez9141 Год назад +1

    Very good explanation! Thank you.

  • @velutumbra
    @velutumbra Год назад +1

    What you have here the best video about opamps I have ever seen.

    • @elewizard
      @elewizard  Год назад +1

      Glad you enjoyed the video 😃

  • @petersdelucaaa2vg306
    @petersdelucaaa2vg306 Год назад

    I always learn from your videos. Thanks

  • @murtadhaalkenani3876
    @murtadhaalkenani3876 11 месяцев назад

    thanks for the valuable lessons.

    • @elewizard
      @elewizard  11 месяцев назад

      You are most welcome ❤️
      Thanks for watching

  • @soufbel3455
    @soufbel3455 10 дней назад

    Very nice 😀👍👍

  • @heavy-metal-biker
    @heavy-metal-biker Месяц назад

    whats that black power supply you are using?

    • @elewizard
      @elewizard  Месяц назад +1

      It is my handmade power supply.
      I have video in the channel about making it

  • @desaleasmaa642
    @desaleasmaa642 Месяц назад

    No body explain op-Amp like this.Thanks for the veodeo

    • @elewizard
      @elewizard  Месяц назад

      I'm glad you found it helpful!❤️🍻🍻🍻

  • @AlbertoNegri
    @AlbertoNegri 4 месяца назад

    Best explanation ever.

    • @elewizard
      @elewizard  3 месяца назад

      Glad you think so!

  • @AliReza-xl4zw
    @AliReza-xl4zw Год назад +1

    Did you use LM741 or UA741 to read the current?

    • @elewizard
      @elewizard  Год назад +1

      It's a UA741

    • @AliReza-xl4zw
      @AliReza-xl4zw Год назад +1

      what about the offset or zero drift capability?@@elewizard

  • @salahadinjafar1258
    @salahadinjafar1258 Год назад +1

    thank you so much for your video .very informative

  • @akilliez
    @akilliez Год назад +3

    Differential and intergrator would have been nice to classify in presentation. I'm only in the beginning so excuse me if you eventually do classify them lol.

    • @elewizard
      @elewizard  Год назад +2

      Good point!😅

    • @akilliez
      @akilliez Год назад +1

      @@elewizard I love your videos!

  • @dancollins1012
    @dancollins1012 Год назад

    Excellent! Looking forward to future vids. Please explain more about open collector op amps (pros, cons, calcs and considerations), and also introduce more modern op-amps

    • @elewizard
      @elewizard  Год назад

      Thank you for watching, the point is Noted!

  • @bones1225
    @bones1225 7 месяцев назад

    Best vid ever many thanks

    • @elewizard
      @elewizard  7 месяцев назад

      Glad you think so!👍

  • @alejandromackay3074
    @alejandromackay3074 Год назад

    Thanks so much!!

    • @elewizard
      @elewizard  Год назад

      You are very welcome 😊, cheers

  • @majharulislam5950
    @majharulislam5950 3 месяца назад

    Excellent projects with ckt diagrams.

    • @elewizard
      @elewizard  2 месяца назад

      Glad you like them!

  • @vishalkumar040393
    @vishalkumar040393 Год назад

    Learnt a lot about OpAmps

    • @elewizard
      @elewizard  Год назад

      Glad to hear that, keep watching 😊

  • @ajajalam6690
    @ajajalam6690 Год назад

    You are an exceptional teacher. I am consistently amazed at how effortlessly you explain complex topics. I wish you could have been my electronic professor during college. Thank you so much!

    • @elewizard
      @elewizard  Год назад

      Glad to hear that, it is my pleasure to help you, cheers 🥂

  • @jlucasound
    @jlucasound Год назад +1

    You Silly Genius! You know so much more than I. I am 61. ❤

    • @elewizard
      @elewizard  Год назад +1

      So nice of you ❤️😃

  • @msg1956
    @msg1956 Год назад +4

    Excellent..!

    • @elewizard
      @elewizard  Год назад +1

      Many thanks!❤️❤️❤️

  • @migsvensurfing6310
    @migsvensurfing6310 2 месяца назад

    To say how an opamp works in a simpel way
    An opamp will do whatever is needed on the output to make the voltages on the inputs equal.

    • @elewizard
      @elewizard  2 месяца назад

      Exactly, perfect definition 👌

  • @bjornwolfhagen1098
    @bjornwolfhagen1098 Год назад

    Great video!

  • @relativenormality
    @relativenormality Год назад +1

    Excellent - practical examples instead of all theory.

  • @awaitingthetrumpetcall4529
    @awaitingthetrumpetcall4529 11 месяцев назад +1

    I like this guy.

    • @elewizard
      @elewizard  11 месяцев назад +1

      I like you all ❤️❤️❤️

  • @bakicandar4607
    @bakicandar4607 Год назад

    İt's usfeul contents for opamp

  • @jameskidd7906
    @jameskidd7906 Год назад

    The best place in yourube❤

    • @elewizard
      @elewizard  Год назад

      Wow, thank you ❤️❤️❤️😍

  • @gkdresden
    @gkdresden 11 месяцев назад

    The moral of the story is: an I2V converter is much easier to build than a V2I converter.

  • @ChandrashekarCN
    @ChandrashekarCN Год назад

    💖💖💖💖

    • @elewizard
      @elewizard  Год назад

      ❤️❤️❤️❤️

  • @RezaReza-nf4di
    @RezaReza-nf4di Год назад

    مهندس سلام - من فکر نمی کردم شما انگلیسی را مثل بلبل صحبت کنید من ترکی را بزور یاد گرفتم. خیلی خوشحال شدم .

    • @elewizard
      @elewizard  Год назад

      Glad you think so, I am trying to improve my skills 👍

  • @umesh.kumar.naik278
    @umesh.kumar.naik278 Год назад

    • @elewizard
      @elewizard  Год назад

      ❤️❤️❤️❤️❤️

  • @mjarefi
    @mjarefi Год назад

    سلام مهندس بیزحمت زیرنویس فارسی هم بزارید خیلی عالی میشه ممنون

    • @elewizard
      @elewizard  Год назад

      Will try, thank you for your comment 🌷😊

  • @ha13151
    @ha13151 6 месяцев назад

    +1

  • @jlucasound
    @jlucasound Год назад

    Flip-Flop Multivibrator! There. I said it. 😧🧐🤔🤭🤫🤣

    • @elewizard
      @elewizard  Год назад

      Yeah, its one of op-amp applications 👍

  • @mohamedaliouat
    @mohamedaliouat 5 месяцев назад

    Are you turkish?

  • @noor_enic
    @noor_enic 11 месяцев назад

    😍😂

  • @selim9220
    @selim9220 Год назад

    it is not how u pronounce "determine".

  • @โนรีคอกเบิร์น

    Zero point sixty nine & zero point seventy two and more crap spoken about the differential o/p.
    How anybody can believe they are any good at teaching electronics when they themselves have'nt yet learnt the very basics of being able to count is crazy.
    There are NO tens or hundreds or thousands to the right of the dp.
    Stop until you have learnt how to count properly.

    • @elewizard
      @elewizard  Год назад +1

      Thank you for your feedback ❤️

  • @JD-Reddev
    @JD-Reddev Год назад

    Now I would remind you, brothers, of the gospel I preached to you, which you received, in which you stand, and by which you are being saved, if you hold fast to the word I preached to you-unless you believed in vain.
    For I delivered to you as of first importance what I also received: that Christ died for our sins in accordance with the Scriptures, that he was buried, that he was raised on the third day in accordance with the Scriptures,
    ~1. Corinthians 15:1-4
    God bless you brother!