Electronic circuit analysis and design
This junior-level electronics text provides a foundation for analyzing and designing analog and digital electronic circuits. Computer analysis and design are recognized as significant factors in electronics throughout the book. The use of computer tools is presented carefully, alongside the important hand analysis and calculations. The author, Don Neamen, has many years experience as an enginering educator and an engineer. His experience shines through each chapter of the book, rich with realistic examples and practical rules of thumb.The book is divided into three parts. Part 1 covers semiconductor devices and basic circuit applications. Part 2 covers more advanced topics in analog electronics, and Part 3 considers digital electronic circuits.
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active load Assume bandwidth base current bipolar transistor Bode plot capacitance capacitor cascode chapter circuit in Figure circuit shown class-AB closed-loop gain collector current common-source computer simulation configuration Consider the circuit current gain current source Darlington pair Design the circuit Determine the small-signal device diff-amp differential-mode voltage gain drain current Early voltage electrons emitter Equation Example feedback circuit ideal input resistance input signal input voltage inverting JFET linear load current load line loop gain magnitude maximum midband MOSFET n-channel NMOS noninverting offset voltage op-amp op-amp circuit open-loop gain output resistance output signal output stage output voltage pn junction pnp transistor power dissipated PSpice quiescent ratio resistor saturation region semiconductor shown in Figure sinusoidal small-signal equivalent circuit small-signal voltage gain terminal Test Your Understanding transconductance transfer function transistor parameters Zener diode zero