A Definitive Guide to Logic Circuits and Advanced Circuits Mastering Digital Electronics


Book Description

Introduction The Aims and Objectives of the Book My main aim in writing this book is to introduce you to the exciting and challenging field of digital electronics. I want to develop your desire and ability to understand how digital circuits work. After reading this book, you should be able to do some or all of the following: • You will understand what TTL and CMOS mean and appreciate their main differences. • You should know what the five main logic gates are and their respective symbols and Boolean expressions. • You should know the basics of Boolean algebra and use it to simplify logic expressions and circuits. • You should know what Karnaugh maps are and how to use them to simplify logic circuits and expressions. • You should know how to implement the 1st and 2nd canonical formats for Karnaugh maps. • You will know how the JK flip flop works and how it was born out of the SR latch. • You should be able to use the JK flip flop and the D-type latch to create a series of counters and different shift registers such as SIPO, SISO, PIPO, and PISO. • You should understand the difference between sequential and combinational logic. • You should be able to use a range of design techniques, that is, state diagrams, transition tables, etc. • You should be able to create a range of combinational logic circuits such as half and full adders, binary subtractors, multiplexers, etc. • You should understand how the 555-timer IC works and how to configure it in a range of different applications such as the monostable, the astable, and PWM. • You should be able to design a range of logic circuits. • You should be able to use the ECAD software TINA 12.




A Definitive Guide To Logic Circuits And Advanced Circuits


Book Description

Introduction The Aims and Objectives of the Book My main aim in writing this book is to introduce you to the exciting and challenging field of digital electronics. I want to develop your desire and ability to understand how digital circuits work. After reading this book, you should be able to do some or all of the following: •You will understand what TTL and CMOS mean and appreciate their main differences. •You should know what the five main logic gates are and their respective symbols and Boolean expressions. •You should know the basics of Boolean algebra and use it to simplify logic expressions and circuits. •You should know what Karnaugh maps are and how to use them to simplify logic circuits and expressions. •You should know how to implement the 1st and 2nd canonical formats for Karnaugh maps. •You will know how the JK flip flop works and how it was born out of the SR latch. •You should be able to use the JK flip flop and the D-type latch to create a series of counters and different shift registers such as SIPO, SISO, PIPO, and PISO. •You should understand the difference between sequential and combinational logic. •You should be able to use a range of design techniques, that is, state diagrams, transition tables, etc. •You should be able to create a range of combinational logic circuits such as half and full adders, binary subtractors, multiplexers, etc. •You should understand how the 555-timer IC works and how to configure it in a range of different applications such as the monostable, the astable, and PWM. •You should be able to design a range of logic circuits. •You should be able to use the ECAD software TINA 12.




Mastering Digital Electronics


Book Description

Discover the essential knowledge and practical skills to excel in the dynamic field of digital electronics with "Mastering Digital Electronics." From the fundamentals of diode resistor logic to unraveling the intricacies of TTL and CMOS logic gates, this book takes you on a journey through the evolution of digital electronics. Starting with the humble SR latch and progressing to the revolutionary JK flip flop that powers today's computer technology, you'll gain a solid foundation in binary arithmetic, Boolean algebra, and the representation and optimization of digital circuits. The book gives a firm understanding of digital electronics, then moves on to using standard design methods, such as state diagrams, to design everyday logic circuits such as counters, shift registers, PISO, and SIPO registers. It delves into how to design some challenging digital circuits such as a crossroad set of traffic lights with a pelican crossing and how to use the 555 timer to control a variety of applications. At every stage of the book, you will be learning how to use TINA version 12, an industry standard ECAD and many of its functions. Moreover, the book ventures into using the software to simulate and so confirm all the circuits you design. For readers interested in advancing to the practical implementation of the circuits discussed, the book provides opportunities to design PCB circuit boards for selected circuits using the software. This book will suit any student of digital electronics at any level and provide them with essential reference material for them to start a career in digital electronics. What You'll Learn What logic gates are, and the difference between sequential and combinational logic. How to use binary numbers and how to perform all arithmetic operations Learn about the five basic logic gates; AND, NAND, OR, NOR and EXOR gates. How to minimize logic circuits using Boolean algebra and Karnaugh maps. How to state diagrams to design logic circuits. How to design a range of logic circuits. Learn about combinational circuits and the half and full adder as well as a logic circuit to subtract binary numbers. Learn about the 555 timer and how to apply it to a range of logic circuits. Who This Book Is For Students who are studying for an engineering qualification. Hobbyist who wants to design digital circuits Engineers who need a go-to reference book on digital electronics.




Digital Electronics: A Primer - Introductory Logic Circuit Design


Book Description

This practical introduction explains exactly how digital circuits are designed, from the basic circuit to the advanced system. It covers combinational logic circuits, which collect logic signals, to sequential logic circuits, which embody time and memory to progress through sequences of states. The primer also highlights digital arithmetic and the integrated circuits that implement the logic functions.Based on the author's extensive experience in teaching digital electronics to undergraduates, the book translates theory directly into practice and presents the essential information in a compact, digestible style. Worked problems and examples are accompanied by abbreviated solutions, with demonstrations to ensure that the design material and the circuits' operation are fully understood.This is essential reading for any electronic or electrical engineering student new to digital electronics and requiring a succinct yet comprehensive introduction.




Digital Electronics Guidebook


Book Description

A practical guide that explains how TTL (Transistor to Transistor Logic) circuits are designed and interfaced to "real world" circuits. Includes over 20 projects to teach digital circuits design, including a design for a simple 8-bit computer system .Complete with a reusable PCB (Printed Circuit Board) that can be used for all the projects in the book.




Electronic Circuits


Book Description

***2nd Edition***Free bonus inside! (Right After Conclusion) - Get limited time offer, Get your BONUS right NOW! Your One Stop Guide to Electronic Circuits! Get a glimpse into the exciting world of electrical engineeringIn Electric Circuits: The Definitive Guide To Circuit Boards, Testing Circuits and Electricity Principles , you'll learn {the fundamentals of electricity and how to use them in different applications. You will also learn how to calculate different elements of electricity, from voltage to power outage. Discover why it is important to keep yourself focused on the final product when you are dealing with electronics. By the time you have completed this book you should know all about:*Electrical Units*Types of Electrical Circuits*Difference Between Circuits*Testing Methods*Circuit board Manufacturing MethodsLearning and understanding how to use electrical units you will gain a greater appreciation for the types of circuits that you will inevitably build after reading this book. Knowing the difference between circuits is also important, as is knowing the different testing methods that are employed when creating circuits, especially when manufacturing circuit boards Read this book for FREE on Kindle Unlimited - Download NOW! Be confident in the fact that there not one type of electrical circuit that you do not know or understand. Brag to your friends about the way you have manufactured your own circuit board for that all new accessory for your television. Make sure that your never caught flat footed around electronics again because now you can test your own circuits and understand all the different electrical units that are used to measure electricity Just scroll to the top of the page and select the BuyButton. Download Your Copy TODAY!




Digital Electronic Circuits - The Comprehensive View


Book Description

This book deals with key aspects of design of digital electronic circuits for different families of elementary electronic devices. Implementation of both simple and complex logic circuits are considered in detail, with special attention paid to the design of digital systems based on complementary metal-oxide-semiconductor (CMOS) and Pass-Transistor Logic (PTL) technologies acceptable for use in planar microelectronics technology. It is written for students in electronics and microelectronics, with exercises and solutions provided.Related Link(s)




Analog and Digital Electronic Circuits


Book Description

This book introduces the foundations and fundamentals of electronic circuits. It broadly covers the subjects of circuit analysis, as well as analog and digital electronics. It features discussion of essential theorems required for simplifying complex circuits and illustrates their applications under different conditions. Also, in view of the emerging potential of Laplace transform method for solving electrical networks, a full chapter is devoted to the topic in the book. In addition, it covers the physics and technical aspects of semiconductor diodes and transistors, as well as discrete-time digital signals, logic gates, and combinational logic circuits. Each chapter is presented as complete as possible, without the reader having to refer to any other book or supplementary material. Featuring short self-assessment questions distributed throughout, along with a large number of solved examples, supporting illustrations, and chapter-end problems and solutions, this book is ideal for any physics undergraduate lecture course on electronic circuits. Its use of clear language and many real-world examples make it an especially accessible book for students unfamiliar or unsure about the subject matter.




Digital Electronics


Book Description

A perfect guide for the electronic or computer hobbyist looking to gain hands-on experience through home experiments or the electronics student who needs to learn the fundamentals on his or her own time. Written in a `learning-by-doing' format, this Self-Teaching Guide assumes no previous experience with circuits or digital electronics. Experiments give practice using integrated circuits, advanced logic and arithmetic circuits, operational amplifiers, binary codes, transistor logic, and AND and NAND gates.




Digital Electronics


Book Description

DIGITAL ELECTRONICS, International Edition is your all-in-one guide to the exciting world of digital electronics, from basic electrical theory and digital logic to hands-on, high-tech applications. Designed to support Project Lead the Way®'s (PLTW) innovative DE course, this dynamic text prepares you for college and career success in STEM, (Science, Technology, Engineering, and Math. The text introduces key concepts such as electrical shop practices and electrical theory, lets you build confidence by exploring key principles and applying what you learn, and helps you develop strong skills in circuit analysis, design, and troubleshooting. A wealth of examples and exercises are included to support your learning, and many feature Multisim(tm) integration to help you visualize and analyze circuits--including combinational and sequential circuits--before you construct them. Other proven learning tools are provided to make mastering the material easier, including self-check problems in every chapter, "Bring it Home" questions covering the basics, and challenging "Extra Mile" problems to help you deepen your understanding and hone your skills. DIGITAL ELECTRONICS is an ideal choice to support your STEM success!