By Roubik Gregorian, Gabor C. Temes
Describes the working rules of analog MOS built-in circuits and the way to layout and use such circuits. The preliminary part explores common houses of analog MOS built-in circuits and the mathematics and physics historical past required. the rest of the booklet is dedicated to the layout of circuits. comprises such units as switched-capacitor filters, analog-to-digital and digital-to-analog converters, amplifiers, modulators, oscillators, and others. Tables and numerical layout examples make clear the step by step tactics involved.
An Instructor's handbook providing precise ideas to all of the difficulties within the ebook is obtainable from the Wiley editorial division.
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Additional resources for Analog MOS Integrated Circuits for Signal Processing (Wiley Series on Filters: Design, Manufacturing and Applications)
Switches can be reflective (high impedance in the off state) or absorptive (matched in both on-and off-state). The two major classes of technologies used to implement switches are PIN diodes and FETs. PIN diode switches are often capable of providing superior RF performance to FET switches but the performance can come at a cost of power efficiency. PIN diodes require a constant DC bias current in the on state while FET switches draw current only during the switching operation. Another important emerging technology for microwave switching is the micro-electro-mechanical systems (MEMS) switch.
14 will route signals at the transmission frequency from the PA to the antenna while isolating that signal from the low noise amplifier (LNA). It will also route signals at the receive frequency from the antenna to the LNA. For some systems, input and output signals are separated in time instead of frequency. In these systems, an RF switch is used instead of a duplexer. Matching elements and other passive frequency selective circuit elements are used internally to all of the components shown in the figure.
1 Semiconductor Materials for RF and Microwave Applications In addition to consideration of unique properties of metal and dielectric materials, the radio frequency (RF) and microwave engineer must also make semiconductor choices based on how existing semiconductor properties address the unique requirements of RF and microwave systems. Although semiconductor materials are exploited in virtually all electronics applications today, the unique characteristics of RF and microwave signals requires that special attention be paid to specific properties of semiconductors which are often neglected or of second-order importance for other applications.
Analog MOS Integrated Circuits for Signal Processing (Wiley Series on Filters: Design, Manufacturing and Applications) by Roubik Gregorian, Gabor C. Temes