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Digital Circuits, Digital Logic Design, Switching Theory and Logic Design and Digital Electronics

What you will learn

Be able to learn the Basic concepts combinational circuits

Be able to design Multiplexer, Decoders and binary adders

Be able to learn the basic concept of Sequential Circuits like Flip Flops

Be able to learn the concepts of Counters and Registers

Be able to Design Synchronous and Asynchronous counters

Description

This course deals with Digital circuits like Combinational and Sequential Circuits.

Combinational circuits deals with Binary adders, Multiplexers, De Multiplexers, Decoders, Encoders and Comparators.

Design of above circuits.

Sequential Circuits deals with Flip Flops( SR, JK, Toggle, Delay and Master-Slave), Counters ( Ring, Twisted counter, Decade Counter)


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This course deals with Design of Counters and registers( SISO,SIPO,PIPO,PISO).

What you will learn :

  • Half adder and full adder
  • Parallel Adders and Subtractors
  • MULTIPLEXER and De-MULTIPLEXER
  • Decoders and Encoders
  • Sequential Circuits
  • Flip Flop Conversions
  • Counters
  • SYNCHRONOUS COUNTERS and REGISTERS
  • State Diagrams

Important information before you enroll!

  • If you find the course useless for your career, don’t forget you are covered by a 30-day money back guarantee.
  • Once enrolled, you have unlimited, 24/7, lifetime access to the course (unless you choose to drop the course during the first 30 days).
  • You will have instant and free access to any updates I’ll add to the course – video lectures, additional resources, quizzes, exercises.
  • You will benefit from my full support regarding any question you might have, This is not just a programming course, You will play with signals and systems.
  • Check out the promo video at the top of this page and some of the free preview lectures in the curriculum to get a taste of my teaching style and methods before making your decision
English
language

Content

Introduction

Introduction
Introduction to Digital Circuits
Half adder and Procedure to design combinational circuits
Half adder using NAND and NOR Gates
Half Subtractor
Full Adder
Full Adder using NAND gates
Full Subtractor

Parallel Adders and Subtractors

Parallel Adder
Parallel Subtractor
Parallel Adder/Subtractor
Delay of Parallel Adder
Look Ahead Carry Adder
Look Ahead Carry Adder – 1

MULTIPLEXER and De-MULTIPLEXER

Multiplexer introduction and 2:1 MUX
Design of all gates using MUX
4:1 Multiplexer
Problems on Multiplexers
Problems on Multiplexers – 1
4:1 MUX and 8:1 MUX using 2:1 MUX
16:1 MUX using 4:1 MUX
De-Multiplexer

DECODERS AND ENCODERS

Decoders ( 2:4 Decoders)
3 : 8 Decoder and Active Low output Decoder
Design of combinational circuit using decoders
Design of combinational circuit using decoders1
D4 : 16 decoder using 2 : 4 decoder
ENCODERS ( 4 : 2 Encoder)
Priority Encoder
Comparator Digital Circuit
Comparator Digital Circuit – 1

SEQUENTIAL CIRCUITS

Introduction
LATCH Circuit and Operation
NAND Latch
NOR Latch
NOR Latch – 1
Set-Reset (SR) Flip Flop
Set-Reset (SR) Flip Flop – 1
J K Flip Flop
J K Flip Flop – 1
J K Flip Flop – 2
T-FF (TOGGLE FLIP FLOP )
Delay Flip Flop ( D-FF)

Flip Flop Conversion

FLIP FLOP CONVESION ( JK-FF TO D-FF)
D-FF to others ( D-FF to J K, T )
SR-FF to JK-FF and D-FF to T-FF CONVERSION
T-FF TO JK-FF CONVERSION
TRIGGERING (CLOCK SIGNAL)
TRIGGERING (CLOCK SIGNAL)
RACE AROUND CONDITION ( RAC ) AND MASTER-SLAVE JK FF

COUNTERS

INTRODUCTION ( COUNTERS)
ASYNCHRONOUS COUNTERS ( 2-BIT RIPPLE COUNTER)
2-BIT RIPPLE COUNTER USING +VE AND -VE EDGE TRIGGERING
IMPORTANT POINTS FROM ASYNCHRONOUS COUNTERS
3 – bit ripple counter ( MOD – 8 Ripple Counter)
MOD – K Counter and Asynchronous inputs of flip flop
Problems on Asynchronous Counter

SYNCHRONOUS COUNTERS and REGISTERS

Introduction to Synchronous Counters
Ring Counter
TWISTED RING COUNTER( JOHNSON COUNTER)
DESIGN OF SYNCHRONOUS COUNTER
MOD – 6 BINARY COUNTER( SYNCHRONOUS) USING T-FF
SELF STARTING RING COUNTER
REGISTERS
SISO( Serial Input Serial Output)
TYPES OF REGISTERS(SIPO,PIPO,PISO)
UNIVERSAL SHIFT REGISTER
UNIVERSAL SHIFT REGISTER – 1
Problems on counters
Problems on counters-1

STATE DIAGRAMS

INTRODUCTION TO STATE DIAGRAMS
MEALY AND MOORE DIAGRAMS
STATE DIAGRAMS OF FLIPFLOPS
STATE DIAGRAMS OF FLIPFLOPS-1
PROBLEMS ON STATE DIAGRAMS
PROBLEMS ON STATE DIAGRAMS-1