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adlsongForwardConverterForwardConverter1开关管导通
LdiL/dt=Vin–Vo
I=(Vin–Vo)ton/L2开关管关断
LdiL/dt=–Vo
I=–Votoff/LI:输出电感伏秒平衡.输出电压:Vo=Vin1Conventionalclamp&resettechnical–MagnetizingcurrentresetbyanextrawindingthatinparallelwithPri-winding2RCDtypeclamp&resettechnicalLosslesssnubber-LCDSnubberCircuitSelfresonantresetSoftSwitching–ActiveClamp/ResetTheforwardconvertertransfersdirectlytheenergyfromtheinputsourcetotheloadduringtheon-timeofthepowerswitch.Duringoff-timeofthepowerswitch,theenergyisfreewheelingthroughtheoutputinductorandtherectifierD2,likeinachopperAforwardregulatorcanberealizedwithasingleswitchstructureorwithadoubleswitchstructure,accordingtothewaytheenergystoredinthetransformerprimaryinductanceisdemagnetized.Forward
convertersarecommonlyusedforoutputpowerupto250WNVinVout=dVinsingleswitches,andupto1kWindoubleswitchstructures.Singleswitchvs.doubleswitchforwardForwardConverterInthesingleswitchforward,themagnetizingenergystoredintheprimaryinductanceisrestoredtotheinputsourcebyademagnetizationwindingNd.Mostcommonly,theprimaryandthedemagnetizationwindingshavethesamenumberofturns.So,atturn-off,thepowerswitchhastowithstandtwicetheinputvoltageduringthedemagnetizationtime,andthen,oncetheinputvoltage.Thedemagnetizationandprimarywindingshavetobetightlycoupledtoreducethevoltagespike-morethanthetheoretical2Vin-occuringatturn-offacrossthepowerswitch.ForwardConverterForwardConverterPowerSwitch:VDDS>Vinmax(1+n)+leakageinductancespikeIDrms>1.2Pin/VinminDmaxIDrms>1.2Pin/VinminDmax1/2Rectifiers:ForwardD1:VRRM>Vinmax/n+leakageinductancespikeIF(AV)>IoDmaxFreewheelingD2:VRRM>Vinmax(Vo+VFD)/VinminDmaxIF(AV)>IoDemagnetizationD3:VRRM>(1+N3/Np)Vinmax(Vo+VFD)/VinminDmaxIF(AV)>ImagpeakDmax/2ForwardConverterDoubleswitchforward,alsocalledasymmetricalhalfbridgeforward,themagnetizingenergystoredintheprimaryinductanceisautomaticallyreturnedtothebulkcapacitorbythetwodemagnetizationdiodesD1andD2.ThetwopowerswitchesanddemagnetizationdiodeshavetowithstandonlyoncetheinputvoltageVin.Asforthedoubleswitchflyback,theasymmetricalhalfbridgeneedsafloatinggatedriveforthehighsideswitch.PowerSwitch:VDDS>VinmaxIDrms>1.2Pin/VinminD1/2Rectifiers:ForwardD1:VRRM>Vinmax(Vo+VFD)/VinminDmaxIF(AV)>IoDmaxFreewheelingD2:VRRM>Vinmax(Vo+VFD)/VinminDmaxIF(AV)>IoForwardConverterDualSwitchesConverters
SelfReverseVoltageClamp&
MagnetismCurrentResetMaxDutybeenlimitsandnotexceeds50%becauseofthemagnetizingcurrentresetLm=LPondualswitchesconvertersForwardConverterTheForwardConverterAReviewofTransformers:Voltageappliedacrossprimaryistransformedintoavoltageacrossthesecondary,withpolarityfollowingthedottedterminals,inaccordancewiththerelation:Vp/Vs=Np/NsCurrentgoingintothedottedprimaryterminalistransformedandgoesoutofthesecondaryterminal,followingtherelation:Ip/Is=Ns/NpAnidealtransformerdoesnotstoreenergy,hence:Pin=PoutorPp=Ps.ForwardConverterTheforwardtopologyisoneofthemostcommonlyused,andhasseveralvariations,themostbasicofwhichisshowninFigure1.9.Theforwardconverterisessentiallyanisolatedversionofthebuckconverteroperatinginthedirectmodeandthebasicsingleswitchversionshowncanbesuccessfullyoperatedoverawidepowerrange.Duetothetransformer,theforwardtopologycanbeusedaseitheranuporadownconverter,althoughthemostcommonapplicationisdownconversion.Thepowertransferredtothesecondaryduringtheon-timeisconductedthroughdiodeD1totheoutputLCfilter.Duringtheoff-time,thesecondarycurrentcirculatesthroughdiodeD2.Thetransformerisresetduringtheofftimebymeansoftheauxiliarywinding,Naux,anddiodeD3.Themainadvantagesoftheforwardtopologyareitssimplicityandflexibility.OutputRippleFrequencyFRelativeCostLowOnecommonvariationontheforwardconverteristhetwotransistorforward.Thisconfigurationaddsanotherswitchelementontheothersideofthetransformerprimaryandtwoclampingdiodes,onefromeachsideoftheprimarytotheoppositeinputvoltageterminal.Inexchangeforthisadditionalcomplexitythetwotransistorforwardreducesthevoltagestressontheswitchelements.ForwardConverter辅助绕组复位减小Dmax可以开关管的最大电压,但会导致次级二极管的电压应力大.宽电压输入时:
Dmax=0.45andNp=Nr.开关管的最大电压最大占空比RCD复位DissipativetypeClamp/ResettechnicalVerylowcostdesignofresetcircuitwithdiscretecomponentsR,CandDMax.operatingdutycouldbeslightlyhigherthan50%(upto55~65%),dependingthemagnetizingcurrentresetbyRCconstantCriticalpoint:Higherconsumptionbecausetheenergystorageon“C”shoulddissipatesbypassivecomponent“R”Thetransformervolt/secondbalanceshouldtradeoffbyadjustthevalueof“C”and“R”forClamp/ResetIncaseVDS≤2Vinbutverypossiblehigherthan2VINinworstcaseatopenloopoperatingandmaxdutyexceed50%ToavoidtransformersaturationneedtoevaluatetheDsetmaxofPWMincaseofshortcircuit
RCDresetThesnubbercapacitorvoltageisfixedandalmostindependentoftheinputvoltage,theMOSFETvoltagestresscanbereducedcomparedtotheresetwindingapproachwhentheconverterisoperatedwithawideinputvoltagerange.AnotheradvantageofRCDresetmethodisthatitispossibletosetthemaximumdutyratiolargerthan50%withrelativelylowvoltagestressonMOSFETcomparedtoauxiliarywindingresetmethod,whichresultsinreducedvoltagestressonthesecondaryside.ThemaximumvoltagestressthenominalsnubbercapacitorvoltageElementsofprimaryzenerclampcircuitD1currentPrimarywindingleakagecurrentwithreversecurrentpulloutduetoslowdiodeD1/C2LeakagespikeNormalizedandinvertedsecondarywindingvoltageMagnetizingvoltage
ringatdrainMagnetizingcurrentLCDResetSelfResonantReset要高压的MOSFETAddAuxiliarySwitchSaBasicRCDClampRemoveResistorComparedwithRCD,CccandischargetoinverselydeeplymagnetizethemagnetizationinductanceviaSc.ActiveClampResetForwardConverter
Sa:
auxiliaryswitch
S1:
mainswitch
Da:
intrinsicparasiticdiodeinsideSa
D1:intrinsicparasiticdiodeinsideS1
C1:intrinsicparasiticcapacitorinsideSa
andexternalcapacitorActiveClampResetForwardConverter
1.Usuallyneedhighsidedriveforhighsideactiveswitch.NeedPchannelMOSFETforLowsidedrive.2.Deadtimeadjustmentinbetweentwoswitches3.ResonantTransitionmodeneedcontroltheinductanceofthemaintransformer.4.ActiveswitchneedselecthighvoltageMOSFETbecausetheenergystoreinCc5.AllowmuchhigherefficiencyoperationbecauseenergyoftransformermagnetizingrecyclesandZVTofthemainswitch.6.Lowervoltageclampwouldreducedthevoltagestressonmainswitch,similarpowertransfertoconventionalsquarewaveswitching7.ReducedEMI/RFIviasoftswitching8.Operateatfixedswitchingfrequency9.Dutycyclesbeyond50%maxareobtainable10.ActivelyresetsmaintransformertothirdquadrantofBHcurveActiveClampResetForwardConverter
S1SavCsipimiCcVinVCcActiveClampResetForwardConverter
M1:t0~t1
S1/DrisonandSa/DcisoffActiveClampResetForwardConverter
LfissohighthatitcanbeactedasconstantcurrentsourceIoM2:t1~t2
S1/Sa/DcisoffandDrisonNormalPWM
Im:Risefrom–to0to+Resonant
Im:RiseM3:t2~t3
S1/Sa/DrisoffandDcison
VNpisnegativesoDrisoffandIocannotreflectedtoprimaryside.
C1andLmresonateandVc1resonateduptoVin+VCcatt3andDaison.ActiveClampResetForwardConverter
Resonant
Im:DownResonant
Im:DownM4:t3~t4
S1/DrisoffandDa/Dcison
VNpis–VCcsoImisdemagnetizedto0andDaisturnedoffnaturallyatt4.SaisZVSduringt3~t4.M5:t4~t5
Sa/DcisonandSa/Drisoff
VNpis-VCcandImincreasesinverselyfrom0.Saisturnedoffatt5.ActiveClampResetForwardConverter
Resonant
Im:RiseinverselyM6:t5~t6
S1/Sa/DrisoffandDcison
LmandC1resonateandC1dischargeandVC1declinedtoVinatt6.Resonant
Im:RiseinverselyM7(veryshort):t6~t7
Sa/S1isoffandDr/Drison
VNpispositivesoDrison.PrimarycurrentisnotenoughtoprovideloadcurrentsoDcisstillonandsecondarysideisshortcircuit.PrimaryinductanceismagnetizedbyVin-VC1andiLmincreasesfromnegative.LeakageinductanceLkismagnetizedbyVin-VC1anditscurrentrisessharplyandisreflectedtosecondaryside.SoiDrincreasesgraduall
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