McGraw-Hill Core Concepts in Electrical Engineering Series.Of all the new technologies that have evolved recently, integrated circuit technology is the one that continues to experience phenomenal growth. The vast amount of material arising from innovative circuit designs and newer device technologies requires that the circuit analysis aspects of digital electronics be covered in a first course, separate from device design and chip layout. Consequently, Introduction to Digital Microelectronic Circuits emphasizes the analysis and performance comparison of different gate-level logic circuits and presents design examples based on logic-level requirements. It provides an introduction to the analysis of digital electronic circuits using discrete and integrated circuits.
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Students with a variety of mathematical backgrounds will find Introduction to Digital Microelectronic Circuits comprehendible.
Topics and the order in which they are presented have been carefully selected so students will understand how topics are interrelated.
The selection of topics is broad and up-to-date, including strong coverage of the history of logic families as well as current developments, like BiCMOS, PALs, and FPLAs.
Introduction to Digital Microelectronic Circuits contains complete treatment of bipolar logic gates from the early RTL, to TTL, to the advanced Schottky TTL families.
Comprehensive coverage of the basic, 10K, 10KH, 100K series of gates, and I2L gates is included.
Gopolan thoroughly explains the implementation of logic gates using different configurations of MOS devices and extends the analysis of digital IC families to cover the more recent BiMOS and GaAs technologies.
A balanced treatment of regenerative logic circuits gives students a sense of how the various circuits compare and are used.
The distinctive topical coverage in Introduction to Digital Microelectronic Circuits includes popular methods of analog-digital data conversions and LSI and VLSI systems with memories and gate arrays.
To relieve students of tedious calculations, Introduction to Digital Microelectronic Circuits incorporates PSPICE modeling and simulation.
Each chapter includes an Introduction, Key Points Summary, References, numerous worked-out Examples, Drill Exercises, Review Questions, and Problems of varying degrees of difficulty.
This work emphasizes the anlaysis and performance comparison of different gate-level logic circuits, and presents design examples based on logic-level requirements. Coverage includes the history of logic families, as well as current developments like BiMOS, PALS and FPLAs. The implementation of logic gates using different configurations of MOS devices is examined, and the analysis of digital IC families is extended to include the more recent BiMOS and GaAS technologies. Other topics include regeneration logic circuits, popular methods of analog-digital data conversions, and LDI and VLSI systems with memories and gate arrays.
"About this title" may belong to another edition of this title.
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