This channel is about educating everyone and exploring the stuff that makes our daily life easier with the help of 3D Animation.
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Software's used: Animation : Blender Video Editing : DaVinci Resolve
One significant comment: only electrons are actually moving, "holes" just moving down on the animation just because electrons are moving up. This is major thing.
And this was all they could understand and figure out after they took them crashed space ships apart, well this and the touch screen, I was hoping for more stuff than this, A phone that never needed charging, That day will come.
This is wrong. Class B has biasing. Can see Class B with two diodes in the Douglas Self small signal amplifier book. The most popular amp in the world, NE5532, is Class B.
Very helpful video, thanks! I'll try the same approach for another project I'm working on ru-vid.com/video/%D0%B2%D0%B8%D0%B4%D0%B5%D0%BE-SygQA4KO56Q.htmlsi=tNEHy6ke3Zsm2XCD
That 260k ohm resistor in series doesn't make any sense if we have rms voltage of 220 volt then 84 microamp of current will pass. That means maximum 0.18 watts of power . So this video is completely wrong . The adapter have output of 5 volt 2 amp so 10 watt. Think again and improve your mistake
Why output is taken fron emitters of both pnp and npn transistor s?Is it not that output is taken from collector always ..be it npn or pnp?...Am I missing something here?pls help
I came here because mosfet devices were mentioned in the linked video on: PicoMiteVGA: Raspberry Pi Pico Boot-to-BASIC Microcomputer. (Which is also beyond my understanding, but it's fascinating anyway.) ru-vid.com/video/%D0%B2%D0%B8%D0%B4%D0%B5%D0%BE-kZaWYgIYgd8.html
A 260K resistor in series with the phase line? Ridiculous! And for information, 260K is not a standard value resistor. Actually, it should be a 5.6 ohm or 0.56ohm as per the colour code in the video. With a 560K in series with the supply, the circuit will not work