Low Voltage Power Conversion and Distributed Power Systems (Volume IX)
- About the Book
- Table of Contents
- 9.1.01 : "Investigation of Candidate VRM Topology for Future Microprocessors"
- 9.1.02 : "VRM Transient Study and Output Filter Design for Future Processors"
- 9.1.03 : "A High Power Density, High Efficiency and Fast Transient Voltage Regulator Module with a Novel Current Sensing and Current Sharing Technique"
- 9.1.04 : "A Novel High-Input-Voltage, High Efficiency and Fast Transient Voltage Regulator Module - Push-Pull Forward Converter"
- 9.1.05 : "Low Voltage Power Devices for Future VRM"
- 9.1.06 : "The Impact of Voltage Scaling on Power MOSFET Performance in Future VRM"
- 9.1.07 : "An 0.35-µm, 6-mO, 43 µO-cm 2 Lateral Power MOSFET for Low-Voltage, Megahertz Switching Power Applications"
- 9.1.08 : "Improve Light Load Efficiency for Synchronous Rectifier Buck Converter"
- 9.1.09 : "Integrated Planar Inductor Scheme for Multi-Module Interleaved Quasi-Square Wave (QSW) DC/DC Converter"
- 9.1.10 : "Fast VRM with High Input Voltage"
- 9.1.11 : "Single-Shot Transient Suppressor (SSTS) for High Current High Slew Rate Microprocessor"
- 9.1.12 : "Commutation Analysis of Self-Driven Synchronous Rectifiers in an Active-Clamp Forward Converter"
- 9.1.13 : "Design Considerations and Performance Evaluations of Synchronous Rectification in Flyback Converters"
- 9.1.14 : "Optimizing Design for Low Voltage DC-DC Converter"
- 9.1.15 : "Design of High Efficiency, Low Profile, Low Voltage Converter with Integrated Magnetics"
- 9.1.16 : "Large-Signal Transient Analysis of Forward Converter with Active-Clamp Reset"
- 9.1.17 : "Using Simulation for Design Verification of Bias Power Supply in a DC/DC Converter System"
- 9.1.18 : "Design Considerations of Transformer DC Bias of Forward Converter with Active-Clamp Reset"
- 9.1.19 : "Design of a High Frequency Switching Amplifier for Smart Material Actuators with Improved Current Mode Control"
- 9.1.20 : "Single-Switch Soft-Switching Flyback Converter"
- 9.1.21 : "Leading-edge Modulation Voltage-mode Control with Flux Unbalance Correction for Push-pull Converter"
- 9.1.22 : "Design of an ASIC Control Chip for a Forward Active-Clamp Converter"
- 9.1.23 : "A Novel Integrated Current Doubler Rectifier"
- 9.2.01 : "Review of Power Factor Correction Techniques"
- 9.2.02 : "An Improved ’Charge Pump’ Electronic Ballast with Low THD and Low Crest Factor"
- 9.2.03 : "Investigation of Charge-Pump-Controlled High Power Factor Correction AC-DC Converters"
- 9.2.04 : "Analysis, Design and Experiments of a High Power Factor Electronic Ballast"
- 9.2.05 : "Current Source Charge Pump Power Factor Correction Electronic Ballast"
- 9.2.06 : "Charge Pump High Power Factor Dimming Electronic Ballast"
- 9.2.07 : "A New Continuous Input Current Charge Pump Power Factor Correction (CIC-CPPFC) Electronic Ballast"
- 9.2.08 : "A Single-Stage Electronic Ballast with Power Factor Correction and Low Crest Factor for Fluorescent Lamps"
- 9.2.09 : "New Charge Pump Power Factor Correction Electronic Ballast with a Wide Range of Line Input Voltage"
- 9.2.10 : "A Comparative Study of a Family of Charge Pump Power Factor Correction Electronic Ballasts"
- 9.2.11 : "A Self-oscillating Drive for Single-Stage Charge-Pump Power-Factor-Correction Electronic Ballast"
- 9.2.12 : "A Critical-Conduction-Mode Single-Stage Power-Factor-Correction Electronic Ballast"
- 9.2.13 : "An Interleaved Single-Stage Power-Factor-Correction Electronic Ballast"
- 9.2.14 : "Optimization of Combined Voltage-Source-Current-Source Charge-Pump Power-Factor-Correction Electronic Ballast"
- 9.2.15 : "A Cost-Effective High-Power Density Electronic Ballast For Automotive HID Lamps"
- 9.2.16 : "An Equivalent Circuit Model of Radial Vibration Mode Piezoelectric Transformers"
- 9.2.17 : "Characterization of Piezoelectric Transformers"
- 9.2.18 : "High-Voltage Applications of Piezoelectric Transformers"
- 9.2.19 : "Primary-Side Dimming Control Driver for Cold-Cathode Fluorescent Lamps"
- 9.2.20 : "Synchronous Dimming Control for a Cold-Cathode Fluorescent Lamp Driver"
- 9.2.21 : "A Novel High Power Factor Correction Rectifier with a Coupling Inductor"
- 9.2.22 : "A High Efficient Single Stage Single Switch High Power Factor AC/DC Converter with Universal Input"
- 9.2.23 : "Single-Stage Single-Switch Power Factor Correction (S 4-PFC) AC/DC Converters with DC Bus Voltage Feedback for Universal Line Applications"
- 9.2.24 : "Design Optimization of an Off-Line Input Harmonic Current Corrected Flyback Converter"
- 9.2.25 : "General Studies on Single-Stage Power-Factor-Correction Techniques"
- 9.2.26 : "Study and Analysis of a High-Frequency Current-Source Single-Stage Power-Factor-Correction Converter"
- 9.2.27 : "An Improved CCM Single-Stage PFC Converter with Auxiliary Switch"
- 9.2.28 : "Comparison Between CCM-Single-Stage PFC and Two-Stage Boost PFC Converters"
- 9.2.29 : "Single-Stage Input-Current-Shaping Technique with Voltage-Doubler-Rectifier Front End"
- 9.2.30 : "Single Magnetic, Unity Power Factor, Isolated Power Converter with Ripple Free Input Current"
- 9.2.31 : "A Generalized Technique for Derivation of Linear Average Current Mode Control Laws for Power Factor Correction without Input Voltage Sensing"
- 9.2.32 : "A Novel Control Method for BOOST PFC Converter in CCM Condition"
- 9.2.33 : "Design of a Power Factor Correction Circuit with Wide Output Voltage Range"
- 9.2.34 : "Comparison of High-Frequency Application of Silicon Rectifiers, GaAs Rectifier, and ZVT Technology in a PFC Boost Converter"
- 9.3.01 : "High-Frequency AC Distributed Power Systems, Part I: Conceptual Overview and Topology Considerations"
- 9.3.02 : "High-Frequency AC Distributed Power Systems, Part II: System Noise and Distribution Issues"
- 9.3.03 : "High-Frequency AC Distributed Power Systems, Part III: DC and AC Distributed Power System Comparison"
- 9.3.04 : "Characterization and Analysis of Electromagnetic Interference in a High Frequency AC Distributed Power System"
- 9.3.05 : "Modeling and Stability Analysis of a DC Power System with Solid State Power Controllers"
- 9.3.06 : "Stability of Large DC Power Systems Using Switching Converters, With Application to the International Space Station"
- 9.3.07 : "Analysis and Design of N Paralleled DC-DC Converters with MS Current-Sharing Control"
- 9.3.08 : "A Classification and Evaluation of Paralleling Methods for Power Supply Modules"
- 9.3.09 : "Multiple Levels of Complexity in Modeling and Simulation Power Supply Subsystems"
- 9.3.10 : "Stability Study of PC Power System"
- 9.3.11 : "Optimized Design of Power Distribution Systems for Next Generation Aircraft"
- 9.3.12 : "System Stability Analysis Based On Three-Dimensional Forbidden Region"
- 9.4.01 : "Characterization and Analysis of Parasitic Parameters and their Effects in Power Electronics Circuit"
- 9.4.02 : "Characterization of Dimensional Resonance Effects in Ferrite-Core Magnetic Devices"
- 9.4.03 : "Measurement Issues in the Characterization of Ferrite Magnetic Material"
- 9.4.04 : "Phase Error Compensation Method for Measurement of Low-power-factor High-frequency Inductors"
- 9.4.05 : "Improved Winding Design for Planar Inductors"
- 9.4.06 : "Applications of Half-Turn on E-Core in Switching Power Supplies"
- 9.5.01 : "Design and Analysis of Thermal Management for High-Power-Density Converters in Sealed Enclosures"
- 9.5.02 : "Integrated EMI/Thermal Design for Switching Power Supplies"
- 9.5.03 : "An Experimental Comparison of Conducted EMI Emissions Between Zero-Voltage Transition Circuit and a Hard-Switching Circuit"
- 9.5.04 : "Conducted EMI Analysis of a Boost PFC Circuit"
- 9.5.05 : "A New Method to Characterize EMI Filters"
- 9.5.06 : "A Procedure for Designing EMI Filters for Ac Line Applications"
- 9.5.07 : "Non-Intrinsic Differential Mode Noise Caused by Ground Current in an Off-Line Power Supply"
- 9.5.08 : "Measurement of Noise Source Impedance of Off-Line Converters"
- 9.5.09 : "Mixed-Mode EMI Noise and Its Implications for Filter Design in Offline Switching Power Supplies"





