Switching Power Supply Design, Third Edition

Switching Power Supply Design, Third Edition
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Price: $113.00
Product ID : SKU16845



Recognized worldwide as the definitive guide to power supply design for over 25 years, Switching Power Supply Design has been updated to cover the latest innovations in technology, materials, and components. This Third Edition presents the basic principles of the most commonly used topologies, providing you with the essential information required to design cutting-edge power supplies. Using a tutorial, how-and-why approach, this expert resource is filled with design examples, equations, and charts.
The Third Edition of Switching Power Supply Design features:
* Designs for many of the most useful switching power supply topologies
* The core principles required to solve day-to-day design problems
* A strong focus on the essential basics of transformer and magnetics design
* New to this edition: a full chapter on choke design and optimum drive conditions for modern fast IGBTs Get Everything You Need to Design a Complete Switching Power Supply: Fundamental Switching Regulators
* Push-Pull and Forward Converter Topologies
* Half- and Full-Bridge Converter Topologies
* Flyback Converter Topologies
* Current-Mode and Current-Fed Topologies
* Miscellaneous Topologies
* Transformer and Magnetics Design
* High-Frequency Choke Design
* Optimum Drive Conditions for Bipolar Power Transistors, MOSFETs, Power Transistors, and IGBTs
* Drive Circuits for Magnetic Amplifiers
* Postregulators
* Turn-on, Turn-off Switching Losses and Low Loss Snubbers
* Feedback-Loop Stabilization
* Resonant Converter Waveforms
* Power Factor and Power Factor Correction
* High-Frequency Power Sources for Fluorescent Lamps, and Low-Input-Voltage Regulators for Laptop Computers and Portable Equipment

From the Back Cover
A practical guide to state-of-the-art power supply design Nowhere else can you find, in one book, all the information you need to design a switching power supply. And no other book on the subject is as practical, yet mathematically sufficient, without being unnecessarily academic. Using a tutorial, how-to-do-it approach, Pressman first explains basic principles and why thigs are done as they are. With a knowledge of basic principles, the engineer can easily cope with new design requirements and evaluate alternative design decisions. The topics covered represent all those areas where a design decision has to be made in commencing a new design. These include: Topology Descriptions -- A quantitative description of the roughly 15 commonly used topologies. Maximum current and voltage stress on power transistors for specified input voltage-output powers are described. The discussion permits selection of an optimum topology for the specified input-output voltages, output powers, and the selection of the power transistors; High-Frequency Magnetics Fundamentals--Ferrite core hysteresis, coil skin effect, and proximity effect losses; Transformer Design--Derivation of equation for transformer core selection for available output power as a function of frequency, flux density, iron and bobbin area, and topology; novel charts derived from the equations, permitting core selection at a glance; core, coil, total transformer loss, and temperature rise calculations; transformer design examples in major topologies; DC Current Biased Inductor Design -- Design of inductors carrying DC bias currents using ferrite, MPP, Koolmu, and powered iron cores; Magnetic Amplifier, Snubber Designs, and Resonant Converters; Feedbak Look Stabilization; Critical Polaroid Waveforms in Major Topologies. 

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