Spice

by ;
Edition: 2nd
Format: Paperback
Pub. Date: 1996-09-19
Publisher(s): Oxford University Press
  • Free Shipping Icon

    This Item Qualifies for Free Shipping!*

    *Excludes marketplace orders.

List Price: $145.58

Buy New

Arriving Soon. Will ship when available.
$138.65

Buy Used

Arriving Soon. Will ship when available.
$103.99

Rent Textbook

Select for Price
There was a problem. Please try again later.

Digital

Rent Digital Options
Online:180 Days access
Downloadable:180 Days
$53.99
Online:365 Days access
Downloadable:365 Days
$62.30
Online:1460 Days access
Downloadable:Lifetime Access
$83.06
$64.79

How Marketplace Works:

  • This item is offered by an independent seller and not shipped from our warehouse
  • Item details like edition and cover design may differ from our description; see seller's comments before ordering.
  • Sellers much confirm and ship within two business days; otherwise, the order will be cancelled and refunded.
  • Marketplace purchases cannot be returned to eCampus.com. Contact the seller directly for inquiries; if no response within two days, contact customer service.
  • Additional shipping costs apply to Marketplace purchases. Review shipping costs at checkout.

Summary

SPICE ( Simulation Program with Integrated Circuit Emphasis ) has become the industry standard for computer-aided circuit analysis for microelectronic circuits, and is used by the majority of IC designers in North America today. Unlike most SPICE books, which simply present SPICE in a how-to-use fashion, this volume outlines how SPICE is used in the process of design itself. It features methodologies for analyzing transistor and op amp circuits, over 100 SPICE examples, and numerous chapter problems. Intended to accompany Sedra & Smith's Microelectronic Circuits, 4/e , this book can also stand alone as a manual for computer-aided circuit analysis for microelectronic circuits. SPICE decks and the examples in this book, as well as examples from the first edition, are all available on-line via the World Wide Web at http://www.macs.ece.mcgill.ca/~roberts/ROBERTS/SPICE/. Most circuit examples can be simulated using a student version of PSpice running on a low cost PC. This new second edition improves upon the first by tightening up the language and shortening the volume's length by almost fifty percent in order to make the materials more useful as a supplement to Microelectronic Circuits 3/e , by Sedra and Smith. Also available from Oxford University Press to accompany Sedra/Smith Microelectronic Circuits 3/E : Laboratory Manual by K.C. Smith (University of Toronto) ISBN 0-19-511103-6 Additional Problems With Solutions by K. C. Smith ISBN 0-19-510586-9 1995 Problems Supplement by K.C. Smith ISBN 0-19-510367-X

Table of Contents

Preface xi
Introduction to Spice
1(42)
Computer Simulation of Electronic Circuits
1(3)
An Outline of Spice
4(17)
Types of Analysis Performed by Spice
4(1)
Input to Spice
5(12)
Output from Spice
17(4)
Output Postprocessing Using Probe
21(3)
Examples
24(12)
Spice Tips
36(2)
Bibliography
38(1)
Problems
38(5)
Operational Amplifiers
43(32)
Modeling an Ideal Op Amp with Spice
43(1)
Analyzing the Behavior of Ideal Op Amp Circuits
44(14)
Inverting Amplifier
44(2)
The Miller Integrator
46(3)
A Damped Miller Integrator
49(3)
The Unity-Gain Buffer
52(2)
Instrumentation Amplifier
54(4)
Nonideal Op Amp Performance
58(8)
Small-Signal Frequency Response of Op Amp Circuits
59(2)
Modeling the Large-Signal Behavior of Op Amps
61(5)
The Effects of Op Amp Large-Signal Nonidealities on Closed-Loop Behavior
66(6)
DC Transfer Characteristic of an Inverting Amplifier
66(1)
Slew-Rate Limiting
66(5)
Other Op Amp Nonidealities
71(1)
Spice Tips
72(1)
Bibliography
72(1)
Problems
72(3)
Diodes
75(30)
Describing Diodes to Spice
75(3)
Diode Element Description
75(1)
Diode Model Description
76(2)
Spice as a Curve Tracer
78(4)
Extracting the Small-Signal Diode Parameters
81(1)
Temperature Effects
82(1)
Zener Diode Modeling
82(7)
A Half-Wave Rectifier Circuit
89(6)
Limiting and Clamping Circuits
95(5)
A Diode Limiter Circuit
95(1)
A DC Restorer Circuit
96(1)
Voltage Doubler Circuit
97(3)
Spice Tips
100(1)
Problems
101(4)
Bipolar Junction Transistors (BJTs)
105(33)
Describing BJTs to Spice
105(4)
BJT Element Description
105(1)
BJT Model Description
106(2)
Verifying NPN Transistor Circuit Operation
108(1)
Using Spice as a Curve Tracer
109(1)
Spice Analysis of Transistor Circuits at DC
110(7)
Transistor Modes of Operation
112(3)
Computing DC Bias of a pnp Transistor Circuit
115(2)
BJT Transistor Amplifiers
117(4)
BJT Small-Signal Model
118(1)
Single-Stage Voltage-Amplifier Circuits
119(2)
DC Bias Sensitivity Analysis
121(6)
Sensitivity to Component Variations
121(5)
Sensitivity to Temperature Variations
126(1)
The Common-Emitter Amplifier
127(7)
Spice Tips
134(1)
Bibliography
135(1)
Problems
135(3)
Field-Effect Transistors (FETs)
138(63)
Describing MOSFETs to Spice
138(9)
MOSFET Element Description
138(1)
MOSFET Model Description
138(3)
An Enhancement-Mode N-Channel MOSFET Circuit
141(2)
Observing the MOSFET Current-Voltage Characteristics
143(4)
Spice Analysis of MOSFET Circuits at DC
147(8)
An Enhancement-Model P-Channel MOSFET Circuit
147(3)
A Depletion-Mode P-Channel MOSFET Circuit
150(3)
A Depletion-Mode N-Channel MOSFET Circuit
153(2)
Describing JFETs to Spice
155(6)
JFET Element Description
156(1)
JFET Model Description
156(1)
An N-Channel JFET Example
157(4)
FET Amplifier Circuits
161(11)
Effect of Bias Point on Amplifier Conditions
162(1)
Small-Signal Model of the FET
163(5)
A Basic FET Amplifier Circuit
168(4)
Investigating Bias Stability with Spice
172(6)
Integrated-Circuit MOS Amplifiers
178(6)
Enhancement-Load Amplifier Including the Body Effect
178(3)
CMOS Amplifier
181(3)
MOSFET Switches
184(7)
Describing MESFETs to PSpice
191(6)
MESFET Element Description
191(1)
MESFET Model Description
191(2)
Small-Signal MESFET Model
193(1)
A MESFET Biasing Example
194(3)
Spice Tips
197(1)
Bibliography
198(1)
Problems
198(3)
Differential and Multistage Amplifiers
201(32)
Input Excitation for the Differential Pair
201(4)
Small-Signal Analysis of the Differential Amplifier: Symmetric Conditions
205(9)
Small-Signal Analysis of the Differential Amplifier: Asymmetric Conditions
214(4)
Input Offset Voltage
214(2)
Input Bias and Offset Currents
216(2)
Current-Source Biasing in Integrated Circuits
218(2)
A BJT Multistage Amplifier Circuit
220(9)
Spice Tips
229(1)
Bibliography
230(1)
Problems
230(3)
Frequency Response
233(23)
Investigating Transfer Function Behavior Using PSpice
233(1)
Modeling Dynamic Effects in Semiconductor Devices
234(5)
The Low-Frequency Response of the Common-Source Amplifier
239(3)
High-Frequency Response Comparison of the Common-Emitter and Cascode Amplifiers
242(5)
High-Frequency Response of the CC-CE Amplifier
247(5)
Spice Tips
252(1)
Problems
253(3)
Feedback
256(31)
The General Feedback Structure
256(1)
Determining Loop Gain with Spice
257(5)
An Alternative Method
258(4)
Stability Analysis Using Spice
262(8)
Investigating the Range of Amplifier Stability
270(6)
The Effect of Phase Margin on Transient Response
276(2)
Frequency Compensation
278(3)
Spice Tips
281(3)
Bibliography
284(1)
Problems
284(3)
Output Stages and Power Amplifiers
287(16)
Emitter-Follower Output Stage
287(4)
Class B Output Stage
291(8)
Power Conversion Efficiency
291(5)
Transfer Characteristics and a Measure of Linearity
296(3)
Spice Tips
299(1)
Problems
299(4)
Analog Integrated Circuits
303(24)
A Detailed Analysis of the 741 Op Amp Circuit
303(16)
DC Analysis of the 741 Op Amp
304(7)
Gain and Frequency Response of the 741 Op Amp
311(3)
Slew-Rate Limiting of the 741 Op Amp
314(2)
Noise Analysis of the 741 Op Amp
316(1)
A Summary of the 741 Op Amp's Characteristics
317(2)
A CMOS Op Amp
319(5)
Spice Tips
324(1)
Bibliography
325(1)
Problems
325(2)
Filters and Tuned Amplifiers
327(24)
The Butterworth and Chebyshev Transfer Functions
327(3)
Second-Order Active Filters Based on Inductor Replacement
330(2)
Second-Order Active Filters Based on the Two-Integrator-Loop Topology
332(9)
Tuned Amplifiers
341(4)
Spice Tips
345(1)
Bibliography
346(1)
Problems
346(5)
Signal Generators and Waveform-Shaping Circuits
351(30)
Op Amp-RC Sinusoidal Oscillators
351(11)
The Wien Bridge Oscillator
352(5)
An Active Filter-Tuned Oscillator
357(5)
Multivibrator Circuits
362(7)
A Bistable Circuit
362(2)
Generation of a Square Wave Using an Astable Multivibrator
364(3)
The Monostable Multivibrator
367(2)
Precision Rectifier Circuits
369(5)
A Half-Wave Rectifier Circuit
369(4)
A Buffered Peak Detector
373(1)
A Clamping Circuit
374(1)
Spice Tips
374(2)
Bibliography
376(1)
Problems
376(5)
MOS Digital Circuits
381(23)
NMOS Inverter with Enhancement Load
381(9)
Dynamic Operation
384(6)
NMOS Inverter with Depletion Load
390(2)
The CMOS Inverter
392(6)
Dynamic Operation
392(6)
A Gallium-Arsenide Inverter Circuit
398(3)
Spice Tips
401(1)
Problems
401(3)
Bipolar Digital Circuits
404(27)
Transistor--Transistor Logic (TTL)
404(9)
Emitter-Coupled Logic (ECL)
413(10)
BiCMOS Digital Circuits
423(4)
Bibliography
427(1)
Problems
427(4)
Appendix A: Device Model Parameters 431(9)
Appendix B: Spice Options 440(2)
Index 442

An electronic version of this book is available through VitalSource.

This book is viewable on PC, Mac, iPhone, iPad, iPod Touch, and most smartphones.

By purchasing, you will be able to view this book online, as well as download it, for the chosen number of days.

Digital License

You are licensing a digital product for a set duration. Durations are set forth in the product description, with "Lifetime" typically meaning five (5) years of online access and permanent download to a supported device. All licenses are non-transferable.

More details can be found here.

A downloadable version of this book is available through the eCampus Reader or compatible Adobe readers.

Applications are available on iOS, Android, PC, Mac, and Windows Mobile platforms.

Please view the compatibility matrix prior to purchase.