Switched inductor power IC design / Gabriel Alfonso Rincón-Mora.
2023
TK7871.85
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Details
Title
Switched inductor power IC design / Gabriel Alfonso Rincón-Mora.
ISBN
9783030958992 (electronic bk.)
303095899X (electronic bk.)
9783030958985
303095899X (electronic bk.)
9783030958985
Published
Cham : Springer, [2023]
Copyright
©2023
Language
English
Description
1 online resource (xvi, 514 pages) : illustrations
Item Number
10.1007/978-3-030-95899-2 doi
Call Number
TK7871.85
Dewey Decimal Classification
621.3815/2
Summary
This textbook uses design insight, real-life examples, illustrative figures, easy-to-follow equations, and simple SPICE code to show how semiconductor devices (diodes, bipolar-junction transistors (BJTs), and metal-oxide-semiconductor (MOS) field-effect transistors (FETs) ) work independently and collectively in switched-inductor power supplies; how these power supplies transfer power, consume power, and react and respond across frequency; how feedback loops switch, control, and stabilize them; and how the building blocks that comprise them are implemented and designed. This book is focused and complete, with a holistic approach and perspective on power IC design that extends from semiconductor devices to fully-closed feedback systems. Readers will develop the insight needed to interpret, assess, and design switched inductor power ICs, which almost all electronic systems need, yet no other book addresses this way. Comprehensive Power IC Design textbook: from semiconductor devices to fully-looped feedback systems Provides insight, using plain language, focus on basic concepts, & application to realistic examples Includes SPICE code that readers can use to explore concepts .
Note
Includes index.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed July 12, 2022).
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Table of Contents
1. Diodes & BJTs
2. Field-Effect Transistors
3. Switched Inductors
4. Power Losses
5. Frequency Response
6. Feedback Control
7. Control Loops
8. Building Blocks.
2. Field-Effect Transistors
3. Switched Inductors
4. Power Losses
5. Frequency Response
6. Feedback Control
7. Control Loops
8. Building Blocks.