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Implementation of boolean function using multiplexers | Hindi | One question with three types of mux

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Learn how to implement boolean function using multiplexer. This video explains how to implement logic function with 16 to 1, 8 to1 and 4 to 1 multiplexer.
Correction - In 16x1 multiplexer I have given 0 to 4 by mistake. It will be 1.1
TIME STAMPS
00:00 Intro and 16 to 1 MUX Solved Example
1:45 8 to 1 MUX Solved Example
5:00 4 to 1 MUX Solved Example
Watch till the end to understand it!
Subscribe karna mat bhulna !
Do like, comment and share this video if you want. #one_question_solved_with_three_mux
~ 8X1 MUX from 2X1 MUX -
~ Transient Analysis Solved Example -
~ Design MOD 13 Asynchronous Up Counter -
~ 16X1 MUX from 4X1 MUX -
~ 6X1 MUX from 2X1 MUX -
~ BCD Addition -
~ Subtraction using 2's complement -
~ Implementation of logic function using 8:1 multiplexer -
~ 5 Bit Magnitude Comparator using IC 7485-
~ 16 to 1 multiplexer using 8 to 1 multiplexer-
Reference books -
1. Fundamentals of digital circuits by Anand Kumar -
2. Modern digital electronics by R. P. Jain -
3. Digital Design by M. Morris Mano -
What do I use for making videos ?
.
.
.
.
Do you face difficulty in understanding concepts during lectures? Are you one of them, who learns quickly when a friend teaches moments before an exam? Then this channel will be your best friend.
Learn basic topics of subjects like Integrated circuits, Communication systems, Digital logic design and basic of electronics engineering.
I will help you to start with your academic subjects of electronics engineering by clearing basic concepts in the simplest language.
DISCLAIMER: Links included in this description might be affiliate links. If you purchase product or service with the links that I provide I may receive a small commission. There is no additional charge to you! Thank you for supporting Electronics Subjectified so I can continue to provide you with free educational content !
#implement_using_mux #electronics_subjectified
Correction - In 16x1 multiplexer I have given 0 to 4 by mistake. It will be 1.1
TIME STAMPS
00:00 Intro and 16 to 1 MUX Solved Example
1:45 8 to 1 MUX Solved Example
5:00 4 to 1 MUX Solved Example
Watch till the end to understand it!
Subscribe karna mat bhulna !
Do like, comment and share this video if you want. #one_question_solved_with_three_mux
~ 8X1 MUX from 2X1 MUX -
~ Transient Analysis Solved Example -
~ Design MOD 13 Asynchronous Up Counter -
~ 16X1 MUX from 4X1 MUX -
~ 6X1 MUX from 2X1 MUX -
~ BCD Addition -
~ Subtraction using 2's complement -
~ Implementation of logic function using 8:1 multiplexer -
~ 5 Bit Magnitude Comparator using IC 7485-
~ 16 to 1 multiplexer using 8 to 1 multiplexer-
Reference books -
1. Fundamentals of digital circuits by Anand Kumar -
2. Modern digital electronics by R. P. Jain -
3. Digital Design by M. Morris Mano -
What do I use for making videos ?
.
.
.
.
Do you face difficulty in understanding concepts during lectures? Are you one of them, who learns quickly when a friend teaches moments before an exam? Then this channel will be your best friend.
Learn basic topics of subjects like Integrated circuits, Communication systems, Digital logic design and basic of electronics engineering.
I will help you to start with your academic subjects of electronics engineering by clearing basic concepts in the simplest language.
DISCLAIMER: Links included in this description might be affiliate links. If you purchase product or service with the links that I provide I may receive a small commission. There is no additional charge to you! Thank you for supporting Electronics Subjectified so I can continue to provide you with free educational content !
#implement_using_mux #electronics_subjectified
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