SR Latch Circuit - Basic Introduction
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- เผยแพร่เมื่อ 23 ก.ค. 2022
- This video provides a basic introduction into the SR latch circuit. This circuit is a sequential circuit that stores memory - the output of the circuit doesn't depend only on the current state of the inputs but on the past history of the circuit as well.
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I left a comment asking one time for him to give a little breakdown of his history and what he does for work...never heard back but would be interesting to know
probably something like chemical engineering would make him take all these stem topics@@mikeearls126
Was struggling in calculus, you helped! Was struggling in digital design fundamentals and cant believe you got a video for that too!
I thought this was taught in computer science not calculus
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I clicked it really fast. These are the topics that struggles me as a computer engineering student.
@@robertmartens7839 okay edited
You might want to play with Minecraft. You can test logic circuits in-game. There are even Minecraft players building computers inside the Vanilla game, including 8-bit memory registers. It is kind of meh for professionals but you can do it as part of de-stressing from school/professional work.
There is something so perfect about how this fundamental unit of memory looks like somewhat like an infinity symbol. Symbolically representing a never-ending loop.
I appreciate you going through all the scenarios. It helps me to understand the concept better. I have watched other videos that go through it too fast. This was better !!
This is magic for a mechanical engineer.. And out of the world explanation! 🙏
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HEY !! Consider making one for all combinational logic circuits: adders, subtractors, comparitors, MUX, DEMUX,encoders,decoder and any more you could be interested in.it can be a series of short vids or one long 1/2 hour vid
....Thank you for making great content
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@@I_am_FRANCO At some point every thing will be archived on the internet in very interactive and accessible ways , not even including generative AI
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Thank you so much this is the best explanation i've found in the internet
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I watched few times and understood it.Thank you so muuuuuch for excellent presentation
I dunno why i get the topic everytime if he's the one explaining it
I don't even know engineering or whatever this is but im getting the process very quickly
Now i know where to actually watch about these type of stuff
This is digital electronics.
Thank you for saving me again.
7:17 ~Q=0 is a mistake.
I don't think it is. Because if r and s are both 0, thus results in q having no change. (Not sure, don't trust my hypnosis, I'm an idiot)
@@mengvang396 initially Q=0 & Q'=1 so it wouldn't change
Terrific keep it up, Thanks v much.Sir
Even though my course is near completion I request you to make a series for Digital Logic Design.... It will be very helpful for future students ❤️
Thank you, I have been trying to remember the name of this type of circuit for months but i just couldn't remember it.
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my school project is based on this circuit
i have implemenetd thuis circuit in Scratch for burglar alarm..... now my project has jus tbecome a wonder
thanks sir. I learned a lot
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This is helpful thank you
Good morning, please make SR latch with OR gate 🙏, more videos thank you for easy-to-use explanations
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I salute you Sir
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Can I put s and qbar on the top and r and q on the bottom and it still work the same?
At around the 10 minute mark, the very first of the rows of R,S,Q, 'Q(bar) shouldn't 'Q be 1?
how can it save bit if all input goes to q? or the idea of save is loop inside?
thank you
Thanks dude
Your video is for people who not good at math to develop themself
Got a test today , sending the results
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Thank u sir
Do you have video about Sequential Circuits?
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Out of curiosity, why does this schematic use two (inverse) outputs? For the record, I have very little knowledge of logic circuits, but there are two things that make this choice seem odd, which is why I'm asking for clarification. First, you hinted at it, but you don't know for sure what the initial state is going to be since it depends on which NOR gate feedbacks into the other one first. Second, we only need one output to represent all possible states because having both outputs be 1 or 0 at the same time isn't possible.
I didn't come up with this myself but saw a picture online, which is why I looked for more infos on the SR Latch in the first place. But it basically showed the S input simply leading into an OR gate, which then split up into the output and the other feeding back. Let's call the feedback F because this is confusing to write in text. Then the R input feeds into a NOT gate, which goes into an AND gate together with F, and the result goes into the OR gate from before. From what I can tell this should always initialize with the output as a 0, and it latches and resets all the same.
I have absolutely no problem with the explanation or anything. It's very helpful. I just wonder why it uses this format for the output.
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PLEASE!! Make the SAVE option for the video: Number Series Reasoning Tricks - The Easy Way! available!!
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Sir, make this kind video using transistor please.
You have a video on SR latches but none on Laplace Transforms…
No, You thank you!
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How can a piece of wire 'remember' if they're 1 or 0? how long can a wire even remember if it is 1 or 0 even
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Or not gate. The way I remember it 1970 class?
7:19 how can Q and Q' have the same value ?
Knew I couldn't be the only perosn who caught this
did you say 'reseted'? yes, you said it again.
Isn't this organic chem channel
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Why learn all this when you can program Arduino to do the same task?
Small error but at 7:16 you write Q' as 0 but it should be 1. If it were 0 then Q would become 1
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when you press both button your exam paper will reset
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R=0 s=0 Q=0 Qbar=0 !!!!!!!!????
Most importantly if q and q̃ are both 0 you can't revert it and won't get 1 on any of them ever again muhuhahaha
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ah... RS NOR latch....
redstone users know this well :D
(minecraft helps teach logic gates intuitively, if anyone's interested. just search youtube for "minecraft logic gates") 🙌
Thank you very much sir for this video just saw your number can we chat on Friday
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