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This text discusses sigma- delta- type function circuits, peak
detecting function circuits, and peak sampling function circuits in
a detailed manner. It further covers all the function circuits
designed by using the basic principles of the six building blocks:
integrator, the 555 timer integrated circuit, switch, low pass fi
lter, peak detector, and sample and hold circuit. It is a useful
reference text for senior undergraduate and graduate students in
the fi elds of electrical engineering and electronics and
communication engineering. This book is accompanied by teaching
resources, including a solution manual for the instructors. *
Discusses function circuits such as multipliers, dividers, and
multiplier cum dividers using the 555 timer. * Explains how
function circuits are developed with a simple integrator and the
555 timer. * Extends the applications of 555 timers to perform in
function circuits. * Covers important topics such as monostable
multivibrator, inverting amplifi er, and peak responding divider. *
Presents function circuit conversion such as multiplier to square
root and divider to a multiplier. This comprehensive book covers
the design of function circuits with the help of 555 timer
integrated circuits in a single volume. It further discusses how
derived function circuits are implemented with integrator,
comparator, low pass fi lter, peak detector, and sample and hold
circuits.
Discusses function circuit types implemented with low pass filter,
peak detector, and sample and hold circuits. Analyzing complete
architecture of a function circuit. Applications of operational
amplifiers are extended to perform function circuits. Covers how
function circuits are developed with simple integrators and
comparators.
This reference text discusses principles, design, and applications
of various types of multiplier-cum-divider circuits (MCDs), and
covers applications of operational amplifiers to perform as MCDs
circuits The text covers principles of multiplying circuits,
dividing circuits, square rooting, and vector magnitude circuits in
detail. It discusses how multiplier-cum-divider circuits are
developed with saw tooth and triangular waves. It covers important
topics including non-linear op-amp circuits, triangular wave
referenced multiplier-cum-divider with multiplexes, saw tooth wave
referenced MCD with analog switches, peak responding MCD with
analog switches and triangular wave referenced MCD with analog
switches. The text will be useful for senior undergraduate,
graduate students, and professionals in the fields of electrical
engineering, and electronics and communication engineering.
Design of analog multipliers discusses what an analog multiplier
and its related types is, how different types of analog multipliers
are implemented with analog two to one multiplexers and op-amps,
and how the types of analog multipliers are implemented with
transistors and op-amps. Describing forty-eight analog multiplier
circuits, book explains six building blocks as integrator,
comparator, switch, low pass filter, peak detector and sample &
hold circuit. All analog multiplier circuits presented in this book
use a maximum of four operational amplifiers which will enable the
readers to simulate the multipliers with minimum number of
components and use for their application at low cost.
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