Power Supply CookbookElsevier, 13 Ιουν 2001 - 280 σελίδες Power Supply Cookbook, Second Edition provides an easy-to-follow, step-by-step design framework for a wide variety of power supplies. With this book, anyone with a basic knowledge of electronics can create a very complicated power supply design in less than one day. With the common industry design approaches presented in each section, this unique book allows the reader to design linear, switching, and quasi-resonant switching power supplies in an organized fashion. Formerly complicated design topics such as magnetics, feedback loop compensation design, and EMI/RFI control are all described in simple language and design steps. This book also details easy-to-modify design examples that provide the reader with a design template useful for creating a variety of power supplies. This newly revised edition is a practical, "start-to-finish" design reference. It is organized to allow both seasoned and inexperienced engineers to quickly find and apply the information they need. Features of the new edition include updated information on the design of the output stages, selecting the controller IC, and other functions associated with power supplies, such as: switching power supply control, synchronization of the power supply to an external source, input low voltage inhibitors, loss of power signals, output voltage shut-down, major current loops, and paralleling filter capacitors. It also offers coverage of waveshaping techniques, major loss reduction techniques, snubbers, and quasi-resonant converters. - Guides engineers through a step-by-step design framework for a wide variety of power supplies, many of which can be designed in less than one day - Provides easy-to-understand information about often complicated topics, making power supply design a much more accessible and enjoyable process |
Περιεχόμενα
| 1 | |
| 11 | |
Chapter 3 Pulsewidth Modulated Switching Power Supplies | 21 |
Chapter 4 Waveshaping Techniques to Improve Switching Power Supply Efficiency | 135 |
Appendix A Thermal Analysis and Design | 187 |
Appendix B Feedback Loop Compensation | 196 |
Appendix C Power Factor Correction | 220 |
Appendix D Magnetism and Magnetic Components | 232 |
Appendix E Noise Control and Electromagnetic Interference | 241 |
Appendix F Miscellaneous Information | 250 |
References | 255 |
| 257 | |
Άλλες εκδόσεις - Προβολή όλων
Συχνά εμφανιζόμενοι όροι και φράσεις
application Bmax Bode plot buck converter capacitance closed-loop compensation components core material corner frequency Cout current waveform current-mode control design example diode drive efficiency EMI filter Equation Error Amp error amplifier filter capacitor filter pole flux density flyback converter forward-mode converter Frequency Hz function heatsink inductor input voltage L-C filter leakage inductance linear regulator load current magnetic maximum method minimum needed noise Npri number of turns off-line ohms output power output rectifier output voltage overcurrent peak current percent phase power factor power factor correction power MOSFET power supply design power switch primary winding PWM switching power quasi-resonant refer to Section resistor ripple current Schottky diodes secondary seen in Figure shown in Figure snubber switching loss switching power supply synchronous rectifier tank circuit temperature topologies toroid transformer transistor turn-off typical Vin(min voltage feedback voltage-mode controlled Vout waveform wire zero
Δημοφιλή αποσπάσματα
Σελίδα 5 - When developing the design specification, the power supply designer must keep in mind what is a reasonable requirement and what is an idealistic requirement.
Σελίδα 5 - The design specification acts as the performance goal that the ultimate power supply must meet in order for the entire product to meet its overall performance specification.
Σελίδα 8 - The linear power supplies, though, because of the maturity of the technology and the level of integration offered by the semiconductor manufacturers, will be presented mainly via examples.
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