Switching Power Supply Design & Optimization
McGraw Hill Professional, 2005 - 395 Seiten
This is a rigorous, carefully explained and motivated “beginner’s bible” to power supply design. Between dense, mathematical textbooks on power electronics and tiny power supply “cookbooks” there exists no practical tutorial on the hazards of contemporary power supply design. Our Pressman book, the 800 lb gorilla in the field, is both mathematically dense and 7 years old. This new book, detailing cutting edge thermal management techniques, grouping key design equations in a special reference section, and containing a concise Design FAQ, will serve both as an invaluable tutorial and quick reference.
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DCDC Converters and Their Configurations
Reference Equations and Graphs for Converter Design
Discontinuous Conduction Mode Equations
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actually application assuming average basic boost buck buck-boost calculated called capacitance capacitor cause cell Chap circuit components conduction considered constant converter copper core current limit decrease depends diode dissipation duty cycle effective energy equation equivalent example fact factor failure Figure flux flyback forward frequency given ground higher increase inductance inductor input voltage keep load load current lower magnetic maximum means measured mode Note operating output percent possible power supply present primary rail ratio reduce reference resistance resistor ripple secondary shown side slope stage standard switch Table temperature topology trace transformer turns Type typical units usually waveform winding wire zener