Incorporating Active-Clamp Technology to Maximize Efficiency in Flyback and Forward Designs

Size: px
Start display at page:

Download "Incorporating Active-Clamp Technology to Maximize Efficiency in Flyback and Forward Designs"

Transcription

1 Topic 2 Incorporating Active-Clamp Technology to Maximize Efficiency in Flyback and Forward Designs Bing Lu

2 Agenda 1. Basic Operation of Flyback and Forward Converters 2. Active Clamp Operation and Benefits 3. Active Clamp Flyback Design 4. Active Clamp Forward Design 5. Test Results Texas Instruments 2010 Power Supply Design Seminar 2-2

3 Basic Power Stages D2 D3 L1 R1 C1 D1 + V OUT _ R1 C1 D1 D4 + V OUT _ Flyback Transformer stores energy R1 dissipates leakage and some magnetizing energy Typically 2 to 5% of output power Forward Transformer transfers energy Storage is in L1 R1 dissipates magnetizing plus leakage energy Typically 3 to10% of output power How can we avoid loss in R1? Texas Instruments 2010 Power Supply Design Seminar 2-3

4 Secondary Winding Currents Forward Secondary Current (A) I OUT Flyback Secondary Current (A) I OUT D T (1 D) T Assuming 50% duty cycle and CCM Synchronous rectifiers force CCM T RMS flyback current = 2 X RMS forward current For low voltage/high current output, forward is best choice Texas Instruments 2010 Power Supply Design Seminar 2-4

5 Output Capacitor Currents Forward Capacitor Current (A) Flyback Capacitor Current (A) I OUT D/(1 D) I OUT D T (1 D) T T Flyback output capacitors see much higher current Higher RMS current increases heating Higher peak current requires much lower ESR Result is more, higher quality capacitors in flyback Texas Instruments 2010 Power Supply Design Seminar 2-5

6 Agenda 1. Basic Operation of Flyback and Forward Converters 2. Active Clamp Operation and Benefits 3. Active Clamp Flyback Design 4. Active Clamp Forward Design 5. Test Results Texas Instruments 2010 Power Supply Design Seminar 2-6

7 Active Clamp Operation L mag L mag L mag L mag L leakage L leakage L leakage L leakage OFF ON OFF OFF ON OFF OFF OFF L mag and L leakage Current commutes Current resonates, Current commutes are energized to body diode changes direction to body diode or C oss D T sw t delay (1-D) T sw tdelay Texas Instruments 2010 Power Supply Design Seminar 2-7

8 Active Clamp Configurations L mag L mag L leakage L leakage P-Channel Clamp N-Channel Clamp + Easy to drive clamp FET - Higher capacitor voltage - P-channel FET - Floating gate drive + Lower capacitor voltage + N-channel FET Texas Instruments 2010 Power Supply Design Seminar 2-8

9 Active Clamp Benefits RCD Clamp Most of leakage energy is dissipated as heat Hard switching results in power losses More difficult implementation of self-driven synchronous rectifiers with Forward Voltage spike on drain at turn off can be EMI issue Active Clamp Most of leakage energy is reclaimed Zero voltage switching reduces losses Simple Implementation of selfdriven synchronous rectifiers with forward No voltage spike on drain at turn off Nearly lossless recovery of magnetizing energy in forward Texas Instruments 2010 Power Supply Design Seminar 2-9

10 Agenda 1. Basic Operation of Flyback and Forward Converters 2. Active Clamp Operation and Benefits 3. Active Clamp Flyback Design 4. Active Clamp Forward Design 5. Test Results Texas Instruments 2010 Power Supply Design Seminar 2-10

11 Active Clamp Flyback Design + V OUT _ 1 ON OFF V DS_ +V clamp L leakage Q3 2 OFF V DS_ ON V clamp 4 I pri (1 A/div) Time (1 µs/div) Operation same as RCD flyback during on time No leakage spike at turn off; leakage energy controlled by clamp Magnetizing energy transferred to secondary Leakage current is steered by body diodes during dead times Reduces switching losses Dead times occur between ON and OFF states Texas Instruments 2010 Power Supply Design Seminar 2-11

12 Flyback Clamp Circuit + V OUT _ C clamp L leakage Q3 4 V DS C oss C oss I clamp (2 A/div) 1 f clamp 1 = 2 π L C leakage clamp Time (1 µs/div) Peak current is I I pri clamp = Ipri _ pk cos(2 π fclamp t) RMS current much higher 1D 1 2 than forward I F clamp_ rms (D) = I clamp (t) dt T 0 Clamp current must flow from source to drain in when turns on Reverse recovery of body diode Choose C clamp for f clamp 20% lower than switching frequency Texas Instruments 2010 Power Supply Design Seminar 2-12

13 Flyback Soft Switching Turn-Off + V OUT _ 1 V DS_ 2 I (2 A/div) L leakage Q3 3 V DS_ 4 I (2 A/div) Turns Off Delay Turns On Magnetizing energy transfers to secondary Delay from turn-off to turn-on Leakage energy flows in body diode Zero voltage switching of Not load or line dependent Texas Instruments 2010 Power Supply Design Seminar 2-13

14 Flyback Soft Switching Turn-On Heavy Loads + C clamp L leakage C oss C oss Q3 V OUT _ V DS_ I (2 A/div) V DS_ 4 I (2 A/div) Turns Off Delay Clamp current flowing source to drain in Turns On turns off, clamp current flows in C oss Partial zero voltage switching of Load dependent Texas Instruments 2010 Power Supply Design Seminar 2-14

15 Flyback Soft Switching Turn-On Light Loads + V OUT _ V DS_ C clamp L leakage Q3 1 2 I (2 A/div) C oss C oss 3 V DS_ Less energy in leakage Voltage is higher on at turn on Farther away from ZVS 4 I (2 A/div) Turns Off Delay Turns On Texas Instruments 2010 Power Supply Design Seminar 2-15

16 Flyback Synchronous Rectifiers Narrow Input Range Q3 + V OUT _ Wide Input Range T1 D2 R2 Q3 + V OUT R2 D5 C pf D5 D6 R kω Q5 Self-driven from transformer winding for low cost Leakage inductance limits shoot-through current Sync FET must turn off fast Conditioning circuit Some adjustment of turn-on and turn-off times Texas Instruments 2010 Power Supply Design Seminar 2-16

17 Agenda 1. Basic Operation of Flyback and Forward Converters 2. Active Clamp Operation and Benefits 3. Active Clamp Flyback Design 4. Active Clamp Forward Design 5. Test Results Texas Instruments 2010 Power Supply Design Seminar 2-17

18 Active Clamp Forward Design L mag Q5 + V OUT _ 1 2 OFF V DS_ V DS_ ON ON OFF Q4 No Load 4 I pri (1 A/div) Time (1 µs/div) Reflected primary voltage during reset time allows self driven sync rectifiers No leakage spike at turn off Primary current resets to third quadrant resulting in better core utilization Unlike flyback, clamp resonant frequency is determined by magnetizing inductance and C clamp Texas Instruments 2010 Power Supply Design Seminar 2-18

19 Forward Clamp Circuit V hump f clamp 1 = 2 π L C magnetizing clamp V V D (1 D) in hump = 2 8 Lmagnetizing fsw Cclamp I _RMS V D 1 D (Peak current is I in mag ; = RMS clamp current is 2 3 Lmagnetizing fsw much less than flyback) Texas Instruments 2010 Power Supply Design Seminar 2-19

20 Forward Soft Switching Turn-Off L mag Q5 + V OUT _ 1 V DS_ I (1 A/div) 2 Q4 3 V DS_ 4 I (1 A/div) Magnetizing and reflected load current flowing in Transfers to body diode Turns Off Delay Turns On Delay from turn-off to turn-on Zero voltage switching of Not load or line dependent Texas Instruments 2010 Power Supply Design Seminar 2-20

21 Forward Soft Switching Turn-On Light Loads L mag Q5 + V OUT _ 1 2 V DS_ I (1 A/div) Q4 3 4 V DS_ I (1 A/div) Turns Off Turns On Delay No current in Q4 or Q5 during delay time Allows to achieve ZVS Texas Instruments 2010 Power Supply Design Seminar 2-21

22 Forward Soft Switching Turn-On Heavy Loads L mag + 0 V Q5 + V OUT _ 1 2 V DS_ I (1 A/div) Q4 3 4 V DS_ I (1 A/div) Turns Off Turns On Delay Current flows in body diodes of Q4 and Q5 during delay time drain voltage = when turns On Partial zero voltage switching Texas Instruments 2010 Power Supply Design Seminar 2-22

23 Forward Synchronous Rectifiers Output Voltage PRI:SEC Turn Ratio MAX Sync FET V DS Stress Sync FET V DS Rating 3.3 V 6: V 20 V 5 V 4.5:1 17 V 30 V 12 V 1.88:1 40 V 60 V Turn ratios and voltages for telecom 35- to 75-VDC input FET gate rating of 20 V or less 3.3-V output can be driven directly from transformer winding D7 DRV R3 Q6 D8 Outputs >3.3 V require gate protection Texas Instruments 2010 Power Supply Design Seminar 2-23

24 Agenda 1. Basic Operation of Flyback and Forward Converters 2. Active Clamp Operation and Benefits 3. Active Clamp Flyback Design 4. Active Clamp Forward Design 5. Test Results Texas Instruments 2010 Power Supply Design Seminar 2-24

25 Test Results 3.3-V/7.6-A Sync Flyback Efficiency (%) Active Clamp RCD Clamp Output Current, I OUT (A) =48V 6 7 Active clamp increases efficiency 4% at 7.5-A load 1.37-W of extra power to deliver to load Texas Instruments 2010 Power Supply Design Seminar 2-25

26 Test Results 12-V/2.1-A Flyback Efficiency (%) RCD Clamp with Schottky Rectifier Active Clamp with Synchronous Rectifier Output Current, I OUT (A) Efficiency same at maximum load Low leakage transformer and no current shoot through RCD better at light loads No circulating clamp current, DCM No current shoot through =48V Texas Instruments 2010 Power Supply Design Seminar 2-26

27 Test Results 3.3-V/7.6-A Sync Forward Efficiency (%) Active Clamp Forward with Synchronous Rectifier 80 Active Clamp Flyback with 78 Synchronous Rectifier Load Current (A) Efficiency with active clamp and sync rectifiers 2 to 3% better than flyback More difficult implementation of self-driven synchronous rectifiers with RCD clamp Texas Instruments 2010 Power Supply Design Seminar 2-27

28 Test Results 12-V/2.1-A Forward Active Clamp with Synchronous Rectifier Efficiency (%) RCD Clamp with Diode Rectifier Load Current (A) Active clamp increases efficiency 5% at 2.1-A load Gate conditioning circuit limits efficiency gain Texas Instruments 2010 Power Supply Design Seminar 2-28

29 Flyback versus Forward Efficiency Efficiency (%) V 5V 3.3 V Output Pow er (W) Synchronous Forward Converter with Active Clamp Synchronous Flyback Converter with Active Clamp Diode-Rectified Flyback Converter with RCD Clamp Diode and RCD clamp for low power, low cost Either topology is option for mid-range power, with forward delivering better efficiency Flyback good for multiple outputs Forward can be scaled to higher output power with same results Texas Instruments 2010 Power Supply Design Seminar 2-29

30 Flyback vs. Forward Size Flyback with active clamp and sync FETs Forward with active clamp and sync FETs Flyback: larger transformer and clamp FET, more output capacitors Forward: bias inductor, larger output inductor Texas Instruments 2010 Power Supply Design Seminar 2-30

31 Active Clamp Forward 3.3-V/7.6-A, 25-W POE Converter Using TPS to 57 VDC + + V OUT 3.3 V at 7.6 A PoE Input from Diode Bridges Texas Instruments 2010 Power Supply Design Seminar 2-31

32 Summary Adding active clamp and sync rectifiers improves efficiency of flyback and forward up to 5% (Efficiencies >90%) Forward provides best efficiency due to lower conduction losses than flyback Forward can be scaled to higher output power with similar results Flyback for multiple outputs or when cost is most important Diode rectified flyback with RCD clamp for low power and low cost Texas Instruments 2010 Power Supply Design Seminar 2-32

Under the Hood of Flyback SMPS Designs

Under the Hood of Flyback SMPS Designs Topic 1 Under the Hood of Flyback SMPS Designs Bing Lu Agenda 1. Basics of Flyback Topology 2. Impact of Transformer Design on Power Supply Performance 3. Power Supply Current Limiting 4. Summary Texas

More information

Presentation Content Review of Active Clamp and Reset Technique in Single-Ended Forward Converters Design Material/Tools Design procedure and concern

Presentation Content Review of Active Clamp and Reset Technique in Single-Ended Forward Converters Design Material/Tools Design procedure and concern Active Clamp Forward Converters Design Using UCC2897 Hong Huang August 2007 1 Presentation Content Review of Active Clamp and Reset Technique in Single-Ended Forward Converters Design Material/Tools Design

More information

The First Step to Success Selecting the Optimal Topology Brian King

The First Step to Success Selecting the Optimal Topology Brian King The First Step to Success Selecting the Optimal Topology Brian King 1 What will I get out of this session? Purpose: Inside the Box: General Characteristics of Common Topologies Outside the Box: Unique

More information

Interleaved PFC technology bring up low ripple and high efficiency

Interleaved PFC technology bring up low ripple and high efficiency Interleaved PFC technology bring up low ripple and high efficiency Tony Huang 黄福恩 Texas Instrument Sept 12,2007 1 Presentation Outline Introduction to Interleaved transition mode PFC Comparison to single-channel

More information

Constant-Frequency Soft-Switching Converters. Soft-switching converters with constant switching frequency

Constant-Frequency Soft-Switching Converters. Soft-switching converters with constant switching frequency Constant-Frequency Soft-Switching Converters Introduction and a brief survey Active-clamp (auxiliary-switch) soft-switching converters, Active-clamp forward converter Textbook 20.4.2 and on-line notes

More information

CHAPTER 3. SINGLE-STAGE PFC TOPOLOGY GENERALIZATION AND VARIATIONS

CHAPTER 3. SINGLE-STAGE PFC TOPOLOGY GENERALIZATION AND VARIATIONS CHAPTER 3. SINGLE-STAGE PFC TOPOLOG GENERALIATION AND VARIATIONS 3.1. INTRODUCTION The original DCM S 2 PFC topology offers a simple integration of the DCM boost rectifier and the PWM DC/DC converter.

More information

CHAPTER 3 DC-DC CONVERTER TOPOLOGIES

CHAPTER 3 DC-DC CONVERTER TOPOLOGIES 47 CHAPTER 3 DC-DC CONVERTER TOPOLOGIES 3.1 INTRODUCTION In recent decades, much research efforts are directed towards finding an isolated DC-DC converter with high volumetric power density, low electro

More information

AC-DC SMPS: Up to 15W Application Solutions

AC-DC SMPS: Up to 15W Application Solutions AC-DC SMPS: Up to 15W Application Solutions Yehui Han Applications Engineer April 2017 Agenda 2 Introduction Flyback Topology Optimization Buck Topology Optimization Layout and EMI Optimization edesignsuite

More information

LeMeniz Infotech. 36, 100 Feet Road, Natesan Nagar, Near Indira Gandhi Statue, Pondicherry Call: , ,

LeMeniz Infotech. 36, 100 Feet Road, Natesan Nagar, Near Indira Gandhi Statue, Pondicherry Call: , , Analysis of the Interleaved Isolated Boost Converter with Coupled Inductors Abstract Introduction: A configuration with many parallel-connected boostflyback converters sharing a single active clamp has

More information

Simulation Comparison of Resonant Reset Forward Converter with Auxiliary Winding Reset Forward Converter

Simulation Comparison of Resonant Reset Forward Converter with Auxiliary Winding Reset Forward Converter Simulation Comparison of Resonant Reset Forward Converter with Auxiliary Winding Reset Forward Converter Santosh B L 1, Dr.P.Selvan M.E. 2 1 M.E.(PED),ESCE Perundurai, (India) 2 Ph.D,Dept. of EEE, ESCE,

More information

Designing High-Efficiency ATX Solutions. Practical Design Considerations & Results from a 255 W Reference Design

Designing High-Efficiency ATX Solutions. Practical Design Considerations & Results from a 255 W Reference Design Designing High-Efficiency ATX Solutions Practical Design Considerations & Results from a 255 W Reference Design Agenda Regulation and Market Requirements Target Specification for the Reference Design Architectural

More information

새로운무손실다이오드클램프회로를채택한두개의트랜스포머를갖는영전압스위칭풀브릿지컨버터

새로운무손실다이오드클램프회로를채택한두개의트랜스포머를갖는영전압스위칭풀브릿지컨버터 새로운무손실다이오드클램프회로를채택한두개의트랜스포머를갖는영전압스위칭풀브릿지컨버터 윤현기, 한상규, 박진식, 문건우, 윤명중한국과학기술원 Zero-Voltage Switching Two-Transformer Full-Bridge PWM Converter With Lossless Diode-Clamp Rectifier H.K. Yoon, S.K. Han, J.S.

More information

LLC Resonant Half Bridge Converter

LLC Resonant Half Bridge Converter LLC Resonant Half Bridge Converter Asia Tech-Day August 17 to 7, 009 Hong Huang Applications Engineer Outline Introduction to LLC resonant half bridge converter Benefits Operation principle Design challenges

More information

High-Efficiency Forward Transformer Reset Scheme Utilizes Integrated DC-DC Switcher IC Function

High-Efficiency Forward Transformer Reset Scheme Utilizes Integrated DC-DC Switcher IC Function High-Efficiency Forward Transformer Reset Scheme Utilizes Integrated DC-DC Switcher IC Function Author: Tiziano Pastore Power Integrations GmbH Germany Abstract: This paper discusses a simple high-efficiency

More information

Design Considerations of Highly-Efficient Active Clamp Flyback Converter Using GaNFast Power ICs

Design Considerations of Highly-Efficient Active Clamp Flyback Converter Using GaNFast Power ICs Design Considerations of Highly-Efficient Active Clamp Flyback Converter Using GaNFast Power ICs Lingxiao (Lincoln) Xue March 29 th 2017 How to Improve Power Adapter Density? Traditional Travel Adapter

More information

Vishay Siliconix AN724 Designing A High-Frequency, Self-Resonant Reset Forward DC/DC For Telecom Using Si9118/9 PWM/PSM Controller.

Vishay Siliconix AN724 Designing A High-Frequency, Self-Resonant Reset Forward DC/DC For Telecom Using Si9118/9 PWM/PSM Controller. AN724 Designing A High-Frequency, Self-Resonant Reset Forward DC/DC For Telecom Using Si9118/9 PWM/PSM Controller by Thong Huynh FEATURES Fixed Telecom Input Voltage Range: 30 V to 80 V 5-V Output Voltage,

More information

A Novel Concept in Integrating PFC and DC/DC Converters *

A Novel Concept in Integrating PFC and DC/DC Converters * A Novel Concept in Integrating PFC and DC/DC Converters * Pit-Leong Wong and Fred C. Lee Center for Power Electronics Systems The Bradley Department of Electrical and Computer Engineering Virginia Polytechnic

More information

Maximizing efficiency of your LLC power stage: design, magnetics and component selection. Ramkumar S

Maximizing efficiency of your LLC power stage: design, magnetics and component selection. Ramkumar S Maximizing efficiency of your LLC power stage: design, magnetics and component selection Ramkumar S What will I get out of this session? In this session we will look at the design considerations for developing

More information

Soft-Switching Two-Switch Resonant Ac-Dc Converter

Soft-Switching Two-Switch Resonant Ac-Dc Converter Soft-Switching Two-Switch Resonant Ac-Dc Converter Aqulin Ouseph 1, Prof. Kiran Boby 2,, Prof. Dinto Mathew 3 1 PG Scholar,Department of Electrical and Electronics Engineering, Mar Athanasius College of

More information

Exclusive Technology Feature. Leakage Inductance (Part 2): Overcoming Power Losses And EMI. Leakage Inductance-Induced Ringing. ISSUE: November 2015

Exclusive Technology Feature. Leakage Inductance (Part 2): Overcoming Power Losses And EMI. Leakage Inductance-Induced Ringing. ISSUE: November 2015 Leakage Inductance (Part 2): Overcoming Power Losses And EMI by Ernie Wittenbreder, Technical Witts, Flagstaff, Ariz ISSUE: November 2015 Part 1 of this article series focused on the science and math of

More information

GaN in Practical Applications

GaN in Practical Applications in Practical Applications 1 CCM Totem Pole PFC 2 PFC: applications and topology Typical AC/DC PSU 85-265 V AC 400V DC for industrial, medical, PFC LLC 12, 24, 48V DC telecomm and server applications. PFC

More information

The Quest for High Power Density

The Quest for High Power Density The Quest for High Power Density Welcome to the GaN Era Power Conversion Technology Drivers Key design objectives across all applications: High power density High efficiency High reliability Low cost 2

More information

S. General Topological Properties of Switching Structures, IEEE Power Electronics Specialists Conference, 1979 Record, pp , June 1979.

S. General Topological Properties of Switching Structures, IEEE Power Electronics Specialists Conference, 1979 Record, pp , June 1979. Problems 179 [22] [23] [24] [25] [26] [27] [28] [29] [30] J. N. PARK and T. R. ZALOUM, A Dual Mode Forward/Flyback Converter, IEEE Power Electronics Specialists Conference, 1982 Record, pp. 3-13, June

More information

AN-6203 Applying SG6203 to Control a Synchronous Rectifier of a Flyback Power Supply

AN-6203 Applying SG6203 to Control a Synchronous Rectifier of a Flyback Power Supply www.fairchildsemi.com AN-6203 Applying SG6203 to Control a Synchronous Rectifier of a Flyback Power Supply Abstract This application note describes a detailed design strategy for a high-efficiency compact

More information

Soft switching of multioutput flyback converter with active clamp circuit

Soft switching of multioutput flyback converter with active clamp circuit Soft switching of multioutput flyback converter with active clamp circuit Aruna N S 1, Dr S G Srivani 2, Balaji P 3 PG Student, Dept. of EEE, R.V. College of Engineering, Bangalore, Karnataka, India 1

More information

CONTENTS. Chapter 1. Introduction to Power Conversion 1. Basso_FM.qxd 11/20/07 8:39 PM Page v. Foreword xiii Preface xv Nomenclature

CONTENTS. Chapter 1. Introduction to Power Conversion 1. Basso_FM.qxd 11/20/07 8:39 PM Page v. Foreword xiii Preface xv Nomenclature Basso_FM.qxd 11/20/07 8:39 PM Page v Foreword xiii Preface xv Nomenclature xvii Chapter 1. Introduction to Power Conversion 1 1.1. Do You Really Need to Simulate? / 1 1.2. What You Will Find in the Following

More information

Simplified Analysis and Design of Seriesresonant LLC Half-bridge Converters

Simplified Analysis and Design of Seriesresonant LLC Half-bridge Converters Simplified Analysis and Design of Seriesresonant LLC Half-bridge Converters MLD GROUP INDUSTRIAL & POWER CONVERSION DIVISION Off-line SMPS BU Application Lab Presentation Outline LLC series-resonant Half-bridge:

More information

Comparison Between two Single-Switch Isolated Flyback and Forward High-Quality Rectifiers for Low Power Applications

Comparison Between two Single-Switch Isolated Flyback and Forward High-Quality Rectifiers for Low Power Applications Comparison Between two ingle-witch Isolated Flyback and Forward High-Quality Rectifiers for Low Power Applications G. piazzi,. Buso Department of Electronics and Informatics - University of Padova Via

More information

Synchronous rectifier in DC/DC converters

Synchronous rectifier in DC/DC converters 1 Portál pre odborné publikovanie ISSN 1338-0087 Synchronous rectifier in DC/DC converters Šaštinský Peter Elektrotechnika, Študentské práce 05.10.2009 This paper is presented design of synchronous rectifiers

More information

CURRENT-FED dc dc converters have recently seen resurgence

CURRENT-FED dc dc converters have recently seen resurgence IEEE TRANSACTIONS ON POWER ELECTRONICS, VOL. 22, NO. 2, MARCH 2007 461 Current-Fed Dual-Bridge DC DC Converter Wei Song, Member, IEEE, and Brad Lehman, Member, IEEE Abstract A new isolated current-fed

More information

Designing for High Efficiency with the Active Clamp UCC2891 PWM Controller

Designing for High Efficiency with the Active Clamp UCC2891 PWM Controller Application Report April 004 Designing for High Efficiency with the Active Clamp UCC891 PWM Controller Steve Mappus ABSTRACT Systems Power The UCC891 Current Mode Active Clamp PWM Controller offers a highly

More information

3. PARALLELING TECHNIQUES. Chapter Three. high-power applications to achieve the desired output power with smaller size power

3. PARALLELING TECHNIQUES. Chapter Three. high-power applications to achieve the desired output power with smaller size power 3. PARALLELING TECHNIQUES Chapter Three PARALLELING TECHNIQUES Paralleling of converter power modules is a well-known technique that is often used in high-power applications to achieve the desired output

More information

AN Analog Power USA Applications Department

AN Analog Power USA Applications Department Using MOSFETs for Synchronous Rectification The use of MOSFETs to replace diodes to reduce the voltage drop and hence increase efficiency in DC DC conversion circuits is a concept that is widely used due

More information

20.25W Offline Flyback Converter Using MAX17595

20.25W Offline Flyback Converter Using MAX17595 0.5W Offline Flyback Converter Using MAX7595 MAXREFDES06 Introduction The MAX7595 is a peak-current-mode controller for designing wide input-voltage flyback regulators. The MAX7595 offers optimized input

More information

Zero Voltage Switching In Practical Active Clamp Forward Converter

Zero Voltage Switching In Practical Active Clamp Forward Converter Zero Voltage Switching In Practical Active Clamp Forward Converter Laishram Ritu VTU; POWER ELECTRONICS; India ABSTRACT In this paper; zero voltage switching in active clamp forward converter is investigated.

More information

Exclusive Technology Feature. Power Supply Topology Selection It s Not Just About Power

Exclusive Technology Feature. Power Supply Topology Selection It s Not Just About Power Power Supply opology Selection It s Not Just About Power By Frank Cathell, ON Semiconductor, Phoenix, Ariz. ISSUE: May 2010 When discussing power circuit topologies, most application notes, power component

More information

New lossless clamp for single ended converters

New lossless clamp for single ended converters New lossless clamp for single ended converters Nigel Machin & Jurie Dekter Rectifier Technologies Pacific 24 Harker St Burwood, Victoria, 3125 Australia information@rtp.com.au Abstract A clamp for single

More information

Designing AC to DC Forward Converters using TOPSwitch-GX. Filename: GX Forward ppt

Designing AC to DC Forward Converters using TOPSwitch-GX. Filename: GX Forward ppt Designing AC to DC Forward Converters using TOPSwitch-GX 141 Agenda TOPSwitch-GX Advantages in Forward Forward Basics Transformer Reset and DC MAX reduction TOPSwitch-GX Forward Converter Design Methodology

More information

Designers Series XII. Switching Power Magazine. Copyright 2005

Designers Series XII. Switching Power Magazine. Copyright 2005 Designers Series XII n this issue, and previous issues of SPM, we cover the latest technologies in exotic high-density power. Most power supplies in the commercial world, however, are built with the bread-and-butter

More information

ECE514 Power Electronics Converter Topologies. Part 2 [100 pts] Design of an RDC snubber for flyback converter

ECE514 Power Electronics Converter Topologies. Part 2 [100 pts] Design of an RDC snubber for flyback converter ECE514 Power Electronics Converter Topologies Homework Assignment #4 Due date October 31, 2014, beginning of the lecture Part 1 [100 pts] Redo Term Test 1 (attached) Part 2 [100 pts] Design of an RDC snubber

More information

A HIGHLY EFFICIENT ISOLATED DC-DC BOOST CONVERTER

A HIGHLY EFFICIENT ISOLATED DC-DC BOOST CONVERTER A HIGHLY EFFICIENT ISOLATED DC-DC BOOST CONVERTER 1 Aravind Murali, 2 Mr.Benny.K.K, 3 Mrs.Priya.S.P 1 PG Scholar, 2 Associate Professor, 3 Assistant Professor Abstract - This paper proposes a highly efficient

More information

Zero Voltage Switching in a Low Voltage High Current DC-DC Converter

Zero Voltage Switching in a Low Voltage High Current DC-DC Converter Zero Voltage Switching in a Low Voltage High Current DC-DC Converter Ms. Poornima. N M.Tech Student,Dept of EEE, The National Institute of Engineering (Autonomous institute under VTU, Belagavi) Mysuru,

More information

A LLC RESONANT CONVERTER WITH ZERO CROSSING NOISE FILTER

A LLC RESONANT CONVERTER WITH ZERO CROSSING NOISE FILTER A LLC RESONANT CONVERTER WITH ZERO CROSSING NOISE FILTER M. Mohamed Razeeth # and K. Kasirajan * # PG Research Scholar, Power Electronics and Drives, Einstein College of Engineering, Tirunelveli, India

More information

Conventional Single-Switch Forward Converter Design

Conventional Single-Switch Forward Converter Design Maxim > Design Support > Technical Documents > Application Notes > Amplifier and Comparator Circuits > APP 3983 Maxim > Design Support > Technical Documents > Application Notes > Power-Supply Circuits

More information

FSFR-XS Series Fairchild Power Switch (FPS ) for Half-Bridge Resonant Converters

FSFR-XS Series Fairchild Power Switch (FPS ) for Half-Bridge Resonant Converters February 203 FSFR-XS Series Fairchild Power Switch (FPS ) for Half-Bridge Resonant Converters Features Variable Frequency Control with 50% Duty Cycle for Half-Bridge Resonant Converter Topology High Efficiency

More information

Keywords: No-opto flyback, synchronous flyback converter, peak current mode controller

Keywords: No-opto flyback, synchronous flyback converter, peak current mode controller Keywords: No-opto flyback, synchronous flyback converter, peak current mode controller APPLICATION NOTE 6394 HOW TO DESIGN A NO-OPTO FLYBACK CONVERTER WITH SECONDARY-SIDE SYNCHRONOUS RECTIFICATION By:

More information

Question 1. Reverse Recovery Time (t rr ) (a) SB V, 5 A X X* X (b) UF V, 3 A, 75 ns X - - (c) 1N V, 3 A, 2000

Question 1. Reverse Recovery Time (t rr ) (a) SB V, 5 A X X* X (b) UF V, 3 A, 75 ns X - - (c) 1N V, 3 A, 2000 Puzzler 1 The schematic below shows a Flyback power supply built with a TOPSwitch -GX power conversion IC. The following questions concern the selection of the output diode (D3) and the clamp diode (D1).

More information

Survey of Resonant Converter Topologies

Survey of Resonant Converter Topologies Power Supply Design Seminar Survey of Resonant Converter Topologies Reproduced from 18 Texas Instruments Power Supply Design Seminar SEM3, TI Literature Number: SLUP376 18 Texas Instruments Incorporated

More information

Getting the Most From Your Portable DC/DC Converter: How To Maximize Output Current For Buck And Boost Circuits

Getting the Most From Your Portable DC/DC Converter: How To Maximize Output Current For Buck And Boost Circuits Getting the Most From Your Portable DC/DC Converter: How To Maximize Output Current For Buck And Boost Circuits Upal Sengupta, Texas nstruments ABSTRACT Portable product design requires that power supply

More information

International Journal of Current Research and Modern Education (IJCRME) ISSN (Online): & Impact Factor: Special Issue, NCFTCCPS -

International Journal of Current Research and Modern Education (IJCRME) ISSN (Online): & Impact Factor: Special Issue, NCFTCCPS - HIGH VOLTAGE BOOST-HALF- BRIDGE (BHB) CELLS USING THREE PHASE DC-DC POWER CONVERTER FOR HIGH POWER APPLICATIONS WITH REDUCED SWITCH V. Saravanan* & R. Gobu** Excel College of Engineering and Technology,

More information

Zero Voltage Switching Scheme for Flyback Converter to Ensure Compatibility with Active Power Decoupling Capability

Zero Voltage Switching Scheme for Flyback Converter to Ensure Compatibility with Active Power Decoupling Capability Zero oltage Switching Scheme for Flyback Converter to Ensure Compatibility with Active Power Decoupling Capability Hiroki Watanabe 1*, Jun-ichi toh 1 1 Department of Electrical, Electronics and nformation

More information

Voltage Fed DC-DC Converters with Voltage Doubler

Voltage Fed DC-DC Converters with Voltage Doubler Chapter 3 Voltage Fed DC-DC Converters with Voltage Doubler 3.1 INTRODUCTION The primary objective of the research pursuit is to propose and implement a suitable topology for fuel cell application. The

More information

Chapter 9 Zero-Voltage or Zero-Current Switchings

Chapter 9 Zero-Voltage or Zero-Current Switchings Chapter 9 Zero-Voltage or Zero-Current Switchings converters for soft switching 9-1 Why resonant converters Hard switching is based on on/off Switching losses Electromagnetic Interference (EMI) because

More information

Server Power System for Highest Efficiency and Density: Practical Approach Step by Step

Server Power System for Highest Efficiency and Density: Practical Approach Step by Step 2012 IBM Power Technology Symposium Server Power System for Highest Efficiency and Density: Practical Approach Step by Step Rais Miftakhutdinov and John Stevens Texas Instruments, High Performance Isolated

More information

Under the Hood of Flyback SMPS Designs

Under the Hood of Flyback SMPS Designs Under the Hood of Flyback SMPS Designs Jean Picard Abstract A basic review of the flyback switching topology will be presented with an emphasis on not-so-obvious design issues, such as effects of parasitics,

More information

Texas Instruments. System Power Design for Wall-Powered Application. Dec, 18 th -22 th, 2006 Kevin Lin HPA Asia Market Development

Texas Instruments. System Power Design for Wall-Powered Application. Dec, 18 th -22 th, 2006 Kevin Lin HPA Asia Market Development Texas Instruments System Power Design for Wall-Powered Application Dec, 18 th -22 th, 2006 Kevin Lin HPA Asia Market Development Utility AC Line-Powered Systems Consumer Industrial Communication Computing

More information

Lecture 4 ECEN 4517/5517

Lecture 4 ECEN 4517/5517 Lecture 4 ECEN 4517/5517 Experiment 3 weeks 2 and 3: interleaved flyback and feedback loop Battery 12 VDC HVDC: 120-200 VDC DC-DC converter Isolated flyback DC-AC inverter H-bridge v ac AC load 120 Vrms

More information

HIGH SPEED, 100V, SELF OSCILLATING 50% DUTY CYCLE, HALF-BRIDGE DRIVER

HIGH SPEED, 100V, SELF OSCILLATING 50% DUTY CYCLE, HALF-BRIDGE DRIVER Data Sheet No. 60206 HIGH SPEED, 100V, SELF OSCILLATING 50% DUTY CYCLE, HALF-BRIDGE DRIVER Features Simple primary side control solution to enable half-bridge DC-Bus Converters for 48V distributed systems

More information

Implementation of an Interleaved High-Step-Up Dc-Dc Converter with A Common Active Clamp

Implementation of an Interleaved High-Step-Up Dc-Dc Converter with A Common Active Clamp International Journal of Engineering Science Invention ISSN (Online): 2319 6734, ISSN (Print): 2319 6726 Volume 2 Issue 5 ǁ May. 2013 ǁ PP.11-19 Implementation of an Interleaved High-Step-Up Dc-Dc Converter

More information

CHAPTER 3 MODIFIED FULL BRIDGE ZERO VOLTAGE SWITCHING DC-DC CONVERTER

CHAPTER 3 MODIFIED FULL BRIDGE ZERO VOLTAGE SWITCHING DC-DC CONVERTER 53 CHAPTER 3 MODIFIED FULL BRIDGE ZERO VOLTAGE SWITCHING DC-DC CONVERTER 3.1 INTRODUCTION This chapter introduces the Full Bridge Zero Voltage Switching (FBZVSC) converter. Operation of the circuit is

More information

A Comparison between Different Snubbers for Flyback Converters

A Comparison between Different Snubbers for Flyback Converters Western University Scholarship@Western Electronic Thesis and Dissertation Repository January 2018 A Comparison between Different Snubbers for Flyback Converters Adel Alganidi The University of Western

More information

Doing More with Buck Regulator ICs

Doing More with Buck Regulator ICs White Paper Doing More with Buck Regulator ICs Lokesh Duraiappah, Renesas Electronics Corp. June 2018 Introduction One of the most popular switching regulator topologies is the buck or step-down converter.

More information

Fundamentals of Power Electronics

Fundamentals of Power Electronics Fundamentals of Power Electronics SECOND EDITION Robert W. Erickson Dragan Maksimovic University of Colorado Boulder, Colorado Preface 1 Introduction 1 1.1 Introduction to Power Processing 1 1.2 Several

More information

Application Note, V1.1, Apr CoolMOS TM. AN-CoolMOS-08 SMPS Topologies Overview. Power Management & Supply. Never stop thinking.

Application Note, V1.1, Apr CoolMOS TM. AN-CoolMOS-08 SMPS Topologies Overview. Power Management & Supply. Never stop thinking. Application Note, V1.1, Apr. 2002 CoolMOS TM AN-CoolMOS-08 Power Management & Supply Never stop thinking. Revision History: 2002-04 V1.1 Previous Version: V1.0 Page Subjects (major changes since last revision)

More information

Single-Stage Power Electronic Converters with Combined Voltage Step-Up/Step-Down Capability

Single-Stage Power Electronic Converters with Combined Voltage Step-Up/Step-Down Capability Western University Scholarship@Western Electronic Thesis and Dissertation Repository January 2013 Single-Stage Power Electronic Converters with Combined Voltage Step-Up/Step-Down Capability Navid Golbon

More information

Chapter 6: Converter circuits

Chapter 6: Converter circuits Chapter 6. Converter Circuits 6.1. Circuit manipulations 6.2. A short list of converters 6.3. Transformer isolation 6.4. Converter evaluation and design 6.5. Summary of key points Where do the boost, buck-boost,

More information

Chapter 2 Buck PWM DC DC Converter

Chapter 2 Buck PWM DC DC Converter Chapter 2 Buck PWM DC DC Converter H. Wang, Power Management and High-speed I/O in CMOS Systems 1/25 Buck Circuit and Its equivalent circuits CCM: continuous conduction mode DCM: discontinuous conduction

More information

Frequency, where we are today, and where we need to go

Frequency, where we are today, and where we need to go Frequency, where we are today, and where we need to go Ionel Dan Jitaru Rompower Energy Systems Inc. 6262 N. Swan Rd., Suite 200 Tucson, Arizona 85718 OUTLINE Directions in topologies and operation frequency

More information

Analysis, design and implementation of a zero voltage switching two-switch CCM flyback converter

Analysis, design and implementation of a zero voltage switching two-switch CCM flyback converter IET Circuits, Devices & Systems Research Article Analysis, design and implementation of a zero voltage switching two-switch CCM flyback converter ISSN 1751-858X Received on 28th October 2014 Revised on

More information

A Merged Interleaved Flyback PFC Converter with Active Clamp and ZVZCS

A Merged Interleaved Flyback PFC Converter with Active Clamp and ZVZCS A Merged Interleaved Flyback PFC Converter with Active Clamp and ZVZCS Mehdi Alimadadi, William Dunford Department of Electrical and Computer Engineering University of British Columbia (UBC), Vancouver,

More information

MAXREFDES121# Isolated 24V to 3.3V 33W Power Supply

MAXREFDES121# Isolated 24V to 3.3V 33W Power Supply System Board 6309 MAXREFDES121# Isolated 24V to 3.3V 33W Power Supply Maxim s power-supply experts have designed and built a series of isolated, industrial power-supply reference designs. Each of these

More information

Improvements of LLC Resonant Converter

Improvements of LLC Resonant Converter Chapter 5 Improvements of LLC Resonant Converter From previous chapter, the characteristic and design of LLC resonant converter were discussed. In this chapter, two improvements for LLC resonant converter

More information

FSFA2100 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters

FSFA2100 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters FSFA200 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters Features Optimized for Complementary Driven Half-Bridge Soft-Switching Converters Can be Applied to Various Topologies: Asymmetric PWM

More information

Architectures, Topologies, and Design Methods for Miniaturized VHF Power Converters

Architectures, Topologies, and Design Methods for Miniaturized VHF Power Converters Massachusetts Institute of Technology Laboratory for Electromagnetic and Electronic Systems Architectures, Topologies, and Design Methods for Miniaturized VHF Power Converters David J. Perreault PwrSOC

More information

A Double ZVS-PWM Active-Clamping Forward Converter: Analysis, Design, and Experimentation

A Double ZVS-PWM Active-Clamping Forward Converter: Analysis, Design, and Experimentation IEEE TRANSACTIONS ON POWER ELECTRONICS, VOL. 16, NO. 6, NOVEMBER 2001 745 A Double ZVS-PWM Active-Clamping Forward Converter: Analysis, Design, and Experimentation René Torrico-Bascopé, Member, IEEE, and

More information

Positive to Negative Buck-Boost Converter Using LM267X SIMPLE SWITCHER Regulators

Positive to Negative Buck-Boost Converter Using LM267X SIMPLE SWITCHER Regulators Positive to Negative Buck-Boost Converter Using LM267X SIMPLE SWITCHER Regulators Abstract The 3rd generation Simple Switcher LM267X series of regulators are monolithic integrated circuits with an internal

More information

A Color LED Driver Implemented by the Active Clamp Forward Converter

A Color LED Driver Implemented by the Active Clamp Forward Converter A Color LED Driver Implemented by the Active Clamp Forward Converter C. H. Chang, H. L. Cheng, C. A. Cheng, E. C. Chang * Power Electronics Laboratory, Department of Electrical Engineering I-Shou University,

More information

Designing a 99% Efficient Totem Pole PFC with GaN. Serkan Dusmez, Systems and applications engineer

Designing a 99% Efficient Totem Pole PFC with GaN. Serkan Dusmez, Systems and applications engineer Designing a 99% Efficient Totem Pole PFC with GaN Serkan Dusmez, Systems and applications engineer 1 What will I get out of this session? Purpose: Why GaN Based Totem-pole PFC? Design guidelines for getting

More information

Chapter 2 LITERATURE REVIEW

Chapter 2 LITERATURE REVIEW 28 Chapter 2 LITERATURE REVIEW S. No. Name of the Sub-Title Page No. 2.1 Introduction 29 2.2 Literature 29 2.3 Conclusion 33 29 2.1 Introduction This chapter deals with the literature reviewed for different

More information

Power Supply Design Seminar. power.ti.com

Power Supply Design Seminar. power.ti.com 010-011 Power Supply Design Seminar power.ti.com i Past Power Seminar topics and on-line power-training modules are available at: power.ti.com/seminars ii Contents 1 Under the Hood of Flyback SMPS Designs

More information

Design of a QR Adapter with Improved Efficiency and Low Standby Power

Design of a QR Adapter with Improved Efficiency and Low Standby Power Design of a QR Adapter with Improved Efficiency and Low Standby Power Agenda 1. Quasi-Resonance (QR) Generalities 2. The Valley Lockout Technique 3. The NCP1379/1380 4. Step by Step Design Procedure 5.

More information

Simulation of a novel ZVT technique based boost PFC converter with EMI filter

Simulation of a novel ZVT technique based boost PFC converter with EMI filter ISSN 1746-7233, England, UK World Journal of Modelling and Simulation Vol. 4 (2008) No. 1, pp. 49-56 Simulation of a novel ZVT technique based boost PFC converter with EMI filter P. Ram Mohan 1 1,, M.

More information

High-Power-Density 400VDC-19VDC LLC Solution with GaN HEMTs

High-Power-Density 400VDC-19VDC LLC Solution with GaN HEMTs High-Power-Density 400VDC-19VDC LLC Solution with GaN HEMTs Yajie Qiu, Lucas (Juncheng) Lu GaN Systems Inc., Ottawa, Canada yqiu@gansystems.com Abstract Compared to Silicon MOSFETs, GaN Highelectron-Mobility

More information

Latest fast diode technology tailored to soft switching applications

Latest fast diode technology tailored to soft switching applications AN_201708_PL52_024 600 V CoolMOS CFD7 About this document Scope and purpose The new 600 V CoolMOS TM CFD7 is Infineon s latest high voltage (HV) SJ MOSFET technology with integrated fast body diode. It

More information

MAXREFDES116# ISOLATED 24V TO 5V 40W POWER SUPPLY

MAXREFDES116# ISOLATED 24V TO 5V 40W POWER SUPPLY System Board 6283 MAXREFDES116# ISOLATED 24V TO 5V 40W POWER SUPPLY Overview Maxim s power supply experts have designed and built a series of isolated, industrial power-supply reference designs. Each of

More information

Exclusive Technology Feature

Exclusive Technology Feature ISSUE: February 2011 Primary-Side Current Monitoring Won t Stop Overcurrents In DCM-Operated Flybacks by John Bottrill, Senior Applications Engineer, and Lisa Dinwoodie, Applications Engineer, Power Management,

More information

Existing system: The Master of IEEE Projects. LeMenizInfotech. 36, 100 Feet Road, Natesan Nagar, Near Indira Gandhi Statue, Pondicherry

Existing system: The Master of IEEE Projects. LeMenizInfotech. 36, 100 Feet Road, Natesan Nagar, Near Indira Gandhi Statue, Pondicherry Secondary-Side-Regulated Soft-Switching Full-Bridge Three-Port Converter Based on Bridgeless Boost Rectifier and Bidirectional Converter for Multiple Energy Interface Introduction: Storage battery capable

More information

How to Design Multi-kW Converters for Electric Vehicles

How to Design Multi-kW Converters for Electric Vehicles How to Design Multi-kW Converters for Electric Vehicles Part 1: Part 2: Part 3: Part 4: Part 5: Part 6: Part 7: Part 8: Electric Vehicle power systems Introduction to Battery Charging Power Factor and

More information

Analog and Telecommunication Electronics

Analog and Telecommunication Electronics Politecnico di Torino - ICT School Analog and Telecommunication Electronics G3 - Switching regulators» PWM regulators» Buck,» Boost,» Buck-boost» Flyback 30/05/2012-1 ATLCE - G3-2011 DDC Lesson G3: Switching

More information

Comparison Between CCM Single-Stage And Two-Stage Boost PFC Converters *

Comparison Between CCM Single-Stage And Two-Stage Boost PFC Converters * Comparison Between CCM Single-Stage And Two-Stage Boost PFC Converters * Jindong Zhang 1, Milan M. Jovanoviü, and Fred C. Lee 1 1 Center for Power Electronics Systems The Bradley Department of Electrical

More information

FSFA2100 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters

FSFA2100 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters FSFA200 Fairchild Power Switch (FPS ) for Half-Bridge PWM Converters Features Optimized for Complementary Driven Half-Bridge Soft-Switching Converters Can be Applied to Various Topologies: Asymmetric PWM

More information

Cost effective resonant DC-DC converter for hi-power and wide load range operation.

Cost effective resonant DC-DC converter for hi-power and wide load range operation. Cost effective resonant DC-DC converter for hi-power and wide load range operation. Alexander Isurin(sashai@vanner.com) and Alexander Cook(alecc@vanner.com) Vanner Inc, Hilliard, Ohio Abstract- This paper

More information

Breaking Speed Limits with GaN Power ICs March 21 st 2016 Dan Kinzer, COO/CTO

Breaking Speed Limits with GaN Power ICs March 21 st 2016 Dan Kinzer, COO/CTO Breaking Speed Limits with GaN Power ICs March 21 st 2016 Dan Kinzer, COO/CTO dan.kinzer@navitassemi.com 1 Efficiency The Need for Speed Tomorrow? Today 100kHz 1MHz 10MHz Bulky, Heavy Small, Light & Expensive

More information

GaN Power ICs at 1 MHz+: Topologies, Technologies and Performance

GaN Power ICs at 1 MHz+: Topologies, Technologies and Performance GaN Power ICs at 1 MHz+: Topologies, Technologies and Performance PSMA Industry Session, Semiconductors Dan Kinzer, CTO/COO dan.kinzer@navitassemi.com March 2017 Power Electronics: Speed & Efficiency are

More information

1. The current-doubler rectifier can be used to double the load capability of isolated dc dc converters with bipolar secondaryside

1. The current-doubler rectifier can be used to double the load capability of isolated dc dc converters with bipolar secondaryside Highlights of the Chapter 4 1. The current-doubler rectifier can be used to double the load capability of isolated dc dc converters with bipolar secondaryside voltage. Some industry-generated papers recommend

More information

Wide ouput range power supply

Wide ouput range power supply Wide ouput range power supply Armond Gauthier Pierre Yves Droz I Introduction I Goal / Constraints of the project Offline power supply. Constraints: - cheap - wide output range application : Power supply

More information

A ZCS-PWM Full-Bridge Boost Converter for Fuel-Cell Applications

A ZCS-PWM Full-Bridge Boost Converter for Fuel-Cell Applications A ZCS-PWM Full-Bridge Boost Converter for Fuel-Cell Applications Ahmad Mousavi, Pritam Das and Gerry Moschopoulos University of Western Ontario Department of Electrical and Computer Engineering Thompson

More information

Not Recommended for New Designs

Not Recommended for New Designs Not Recommended for New Designs This product was manufactured for Maxim by an outside wafer foundry using a process that is no longer available. It is not recommended for new designs. The data sheet remains

More information

IR11662S ADVANCED SMART RECTIFIER TM CONTROL IC

IR11662S ADVANCED SMART RECTIFIER TM CONTROL IC Datasheet No - PD97468 March 23, 2010 Features Secondary side high speed SR controller DCM, CrCM flyback and Resonant half-bridge topologies 200V proprietary IC technology Max 500KHz switching frequency

More information

ECEN5817 Lecture 44. On-campus students: Pick up final exam Due by 2pm on Wednesday, May 9 in the instructor s office

ECEN5817 Lecture 44. On-campus students: Pick up final exam Due by 2pm on Wednesday, May 9 in the instructor s office ECEN5817 Lecture 44 On-campus students: Pick up final exam Due by 2pm on Wednesday, May 9 in the instructor s office Off-campus students: Pick up and submit the exam via D2L Exam is due in 5 days from

More information