
OrCAD PSpice with Circuit Analysis
Franz J. Monssen(Author)
Pearson (Publisher)
3rd Edition
Published on 30. April 2001
Book
Mixed media product
384 pages
978-0-13-017035-4 (ISBN)
Description
For one/two-semester courses in PSpice Simulation, Circuits: Electron Flow, Circuits: Conventional Flow, Circuit Analysis, and Introduction to Electrical Engineering.
Especially appropriate for those studying electrical engineering concepts, computers, and PSpice for the first time, this text introduces circuit topics and relevant PSpice features together using a highly effective complimentary approach. Comprehensive and substantive in coverage-yet well organized, concise, and accessible-it allows students to gain hands-on experience in applying the latest versions of PSpice to the many kinds of problems arising in electrical circuits.
Especially appropriate for those studying electrical engineering concepts, computers, and PSpice for the first time, this text introduces circuit topics and relevant PSpice features together using a highly effective complimentary approach. Comprehensive and substantive in coverage-yet well organized, concise, and accessible-it allows students to gain hands-on experience in applying the latest versions of PSpice to the many kinds of problems arising in electrical circuits.
More details
Edition
3rd edition
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
Professional and scholarly
Dimensions
Height: 277 mm
Width: 209 mm
Thickness: 18 mm
Weight
1120 gr
ISBN-13
978-0-13-017035-4 (9780130170354)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Previous edition
Franz J. Monssen
Use of PSPICE in Circuit Analysis
Book
08/1992
Merrill
€60.84
Article exhausted; check for reprint
Content
1. PSpice Analysis of DC Circuits.
2. DC Network Theorems.
3. Transients in RC and RL Circuits.
4. Sinusoidal Waveforms in Resistive Circuits.
5. Steady State Sinusoidal Response of RC, RL, and RLC Circuits.
6. The Total Response of RC, RL, and RLC Circuits with Sinusoidal Sources.
7. Alternating Current Network Theorems.
8. Power and Energy in Alternating Current Circuits.
9. Frequency Response of RC, RL, and RLC Circuits.
10. Circuits with Non-Sinusoidal Sources.
Index.
2. DC Network Theorems.
3. Transients in RC and RL Circuits.
4. Sinusoidal Waveforms in Resistive Circuits.
5. Steady State Sinusoidal Response of RC, RL, and RLC Circuits.
6. The Total Response of RC, RL, and RLC Circuits with Sinusoidal Sources.
7. Alternating Current Network Theorems.
8. Power and Energy in Alternating Current Circuits.
9. Frequency Response of RC, RL, and RLC Circuits.
10. Circuits with Non-Sinusoidal Sources.
Index.