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1
IPD60R210CFD7
Rev.2.0,2018-04-20Final Data Sheet
DPAK
Drain
Pin 2, Tab
Gate
Pin 1
Source
Pin 3
MOSFET
600VCoolMOSªCFD7PowerTransistor
CoolMOS™isarevolutionarytechnologyforhighvoltagepower
MOSFETs,designedaccordingtothesuperjunction(SJ)principleand
pioneeredbyInfineonTechnologies.ThelatestCoolMOS™CFD7isthe
successortotheCoolMOS™CFD2seriesandisanoptimizedplatform
tailoredtotargetsoftswitchingapplicationssuchasphase-shiftfull-bridge
(ZVS)andLLC.Resultingfromreducedgatecharge(Q
g
),best-in-class
reverserecoverycharge(Q
rr
)andimprovedturnoffbehaviorCoolMOS™
CFD7offershighestefficiencyinresonanttopologies.AspartofInfineon’s
fastbodydiodeportfolio,thisnewproductseriesblendsalladvantagesof
afastswitchingtechnologytogetherwithsuperiorhardcommutation
robustness,withoutsacrificingeasyimplementationinthedesign-in
process.TheCoolMOS™CFD7technologymeetshighestefficiencyand
reliabilitystandardsandfurthermoresupportshighpowerdensity
solutions.Altogether,CoolMOS™CFD7makesresonantswitching
topologiesmoreefficient,morereliable,lighterandcooler.
Features
•Ultra-fastbodydiode
•Lowgatecharge
•Best-in-classreverserecoverycharge(Q
rr
)
•ImprovedMOSFETreversediodedv/dtanddi
F
/dtruggedness
•LowestFOMR
DS(on)
*Q
g
andR
DS(on)
*E
oss
•Best-in-classR
DS(on)
inSMDandTHDpackages
Benefits
•Excellenthardcommutationruggedness
•Highestreliabilityforresonanttopologies
•Highestefficiencywithoutstandingease-of-use/performancetradeoff
•Enablingincreasedpowerdensitysolutions
Potentialapplications
SuiteableforSoftSwitchingtopologies
Optimizedforphase-shiftfull-bridge(ZVS),LLCApplications–Server,
Telecom,EVCharging
ProductValidation:Qualifiedforindustrialapplicationsaccordingtothe
relevanttestsofJEDEC47/20/22
Pleasenote:ForMOSFETparallelingtheuseofferritebeadsonthegate
orseparatetotempolesisgenerallyrecommended.
Table1KeyPerformanceParameters
Parameter Value Unit
V
DS
@ T
j,max
650 V
R
DS(on),max
210 mΩ
Q
g,typ
23 nC
I
D,pulse
42 A
E
oss
@ 400V 2.6 µJ
Body diode di
F
/dt 1300 A/µs
Type/OrderingCode Package Marking RelatedLinks
IPD60R210CFD7 PG-TO 252-3 60R210F7 see Appendix A