MOSFET IPI029N06N. OptiMOS TM Power-Transistor,60V
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1 MOSFET OptiMOS TM PowerTransistor,6V Features OptimizedforhighperformanceSMPS,e.g.sync.rec. 1%avalanchetested Superiorthermalresistance Nchannel QualifiedaccordingtoJEDEC 1) fortargetapplications Pbfreeleadplating;RoHScompliant HalogenfreeaccordingtoIEC I²PAK tab Table1KeyPerformanceParameters Parameter Value Unit VDS 6 V RDS(on),max 2.9 mω ID 136 A Qoss 65 nc Qg(V..1V) 56 nc Gate Pin 1 Drain Pin 2, Tab Source Pin 3 Type/OrderingCode Package Marking RelatedLinks PGTO N6N 1) JSTD2 and JESD22 1 Rev.2.5,217927
2 OptiMOS TM PowerTransistor,6V TableofContents Description Maximum ratings Thermal characteristics Electrical characteristics Electrical characteristics diagrams Package Outlines Revision History Trademarks Disclaimer Rev.2.5,217927
3 OptiMOS TM PowerTransistor,6V 1Maximumratings atta=25 C,unlessotherwisespecified Table2Maximumratings Parameter Symbol Unit Note/TestCondition Continuous drain current ID Pulsed drain current 1) ID,pulse 544 A TC=25 C A VGS=1V,TC=25 C VGS=1V,TC=1 C VGS=1V,TA=25 C,RthJA=5K/W Avalanche energy, single pulse 2) EAS 11 mj ID=1A,RGS=25Ω Gate source voltage VGS 2 2 V Power dissipation Ptot Operating and storage temperature Tj,Tstg C W TC=25 C TA=25 C,RthJA=5K/W IEC climatic category; DIN IEC 681: 55/175/56 2Thermalcharacteristics Table3Thermalcharacteristics Parameter Symbol Unit Note/TestCondition Thermal resistance, junction case, bottom Device on PCB, minimal footprint RthJC K/W RthJA 62 Device on PCB, 6 cm² cooling area 3) RthJA 4 Soldering temperature, wave and reflow soldering are allowed Tsold 26 C Reflow MSL1 1) See Diagram 3 for more detailed information 2) See Diagram 13 for more detailed information 3) Device on 4 mm x 4 mm x 1.5 mm epoxy PCB FR4 with 6 cm 2 (one layer, 7 µm thick) copper area for drain connection. PCB is vertical in still air. 3 Rev.2.5,217927
4 OptiMOS TM PowerTransistor,6V 3Electricalcharacteristics Table4Staticcharacteristics Parameter Symbol Unit Note/TestCondition Drainsource breakdown voltage V(BR)DSS 6 V VGS=V,ID=1mA Gate threshold voltage VGS(th) V VDS=VGS,ID=75µA Zero gate voltage drain current IDSS µa VDS=6V,VGS=V,Tj=25 C VDS=6V,VGS=V,Tj=125 C Gatesource leakage current IGSS 1 1 na VGS=2V,VDS=V Drainsource onstate resistance RDS(on) Gate resistance 1) RG Ω mω VGS=1V,ID=1A VGS=6V,ID=25A Transconductance gfs 8 16 S VDS >2 ID RDS(on)max,ID=1A Table5Dynamiccharacteristics 1) Parameter Symbol Unit Note/TestCondition Input capacitance Ciss pf VGS=V,VDS=3V,f=1MHz Output capacitance Coss pf VGS=V,VDS=3V,f=1MHz Reverse transfer capacitance Crss pf VGS=V,VDS=3V,f=1MHz Turnon delay time td(on) 17 ns Rise time tr 15 ns Turnoff delay time td(off) 3 ns Fall time tf 8 ns VDD=3V,VGS=1V,ID=1A, RG,ext,ext=3Ω VDD=3V,VGS=1V,ID=1A, RG,ext,ext=3Ω VDD=3V,VGS=1V,ID=1A, RG,ext,ext=3Ω VDD=3V,VGS=1V,ID=1A, RG,ext,ext=3Ω Table6Gatechargecharacteristics 2) Parameter Symbol Unit Note/TestCondition Gate to source charge Qgs 2 nc VDD=3V,ID=1A,VGS=to1V Gate charge at threshold Qg(th) 11 nc VDD=3V,ID=1A,VGS=to1V Gate to drain charge 1) Qgd nc VDD=3V,ID=1A,VGS=to1V Switching charge Qsw 19 nc VDD=3V,ID=1A,VGS=to1V Gate charge total 1) Qg nc VDD=3V,ID=1A,VGS=to1V Gate plateau voltage Vplateau 4.8 V VDD=3V,ID=1A,VGS=to1V Gate charge total, sync. FET Qg(sync) 49 nc VDS=.1V,VGS=to1V Output charge 1) Qoss nc VDD=3V,VGS=V 1) Defined by design. Not subject to production test 2) See Gate charge waveforms for parameter definition 4 Rev.2.5,217927
5 OptiMOS TM PowerTransistor,6V Table7Reversediode Parameter Symbol Unit Note/TestCondition Diode continuous forward current IS 18 A TC=25 C Diode pulse current IS,pulse 544 A TC=25 C Diode forward voltage VSD V VGS=V,IF=1A,Tj=25 C Reverse recovery time 1) trr ns VR=3V,IF=1A,diF/dt=1A/µs Reverse recovery charge Qrr 77 nc VR=3V,IF=1A,diF/dt=1A/µs 1) Defined by design. Not subject to production test 5 Rev.2.5,217927
6 OptiMOS TM PowerTransistor,6V 4Electricalcharacteristicsdiagrams Diagram1:Powerdissipation 16 Diagram2:Draincurrent Ptot[W] TC[ C] Ptot=f(TC) TC[ C] ID=f(TC);VGS 1V Diagram3:Safeoperatingarea 1 3 Diagram4:Max.transientthermalimpedance µs 1 µs µs DC 1 ms 1 ms ZthJC[K/W] single pulse VDS[V] ID=f(VDS);TC=25 C;D=;parameter:tp tp[s] ZthJC=f(tp);parameter:D=tp/T 6 Rev.2.5,217927
7 OptiMOS TM PowerTransistor,6V Diagram5:Typ.outputcharacteristics 4 1 V 7 V V Diagram6:Typ.drainsourceonresistance 8 5 V 5.5 V 6 V V 5 V RDS(on)[mΩ] V 1 V VDS[V] ID=f(VDS);Tj=25 C;parameter:VGS RDS(on)=f(ID);Tj=25 C;parameter:VGS Diagram7:Typ.transfercharacteristics 4 Diagram8:Typ.forwardtransconductance gfs[s] C 25 C VGS[V] ID=f(VGS); VDS >2 ID RDS(on)max;parameter:Tj gfs=f(id);tj=25 C 7 Rev.2.5,217927
8 OptiMOS TM PowerTransistor,6V Diagram9:Drainsourceonstateresistance 7. Diagram1:Typ.gatethresholdvoltage RDS(on)[mΩ] max typ VGS(th)[V] µa 75 µa Tj[ C] RDS(on)=f(Tj);ID=1A;VGS=1V Tj[ C] VGS(th)=f(Tj);VGS=VDS Diagram11:Typ.capacitances 1 4 Diagram12:Forwardcharacteristicsofreversediode 1 3 Ciss 1 3 Coss 1 2 C[pF] IF[A] C 25 C Crss VDS[V] C=f(VDS);VGS=V;f=1MHz VSD[V] IF=f(VSD);parameter:Tj 8 Rev.2.5,217927
9 OptiMOS TM PowerTransistor,6V Diagram13:Avalanchecharacteristics 1 3 Diagram14:Typ.gatecharge V 3 V 48 V IAV[A] 1 C 125 C 25 C VGS[V] tav[µs] IAS=f(tAV);RGS=25Ω;parameter:Tj(start) Qgate[nC] VGS=f(Qgate);ID=1Apulsed;parameter:VDD Diagram15:Drainsourcebreakdownvoltage 7 Gate charge waveforms VBR(DSS)[V] Tj[ C] VBR(DSS)=f(Tj);ID=1mA 9 Rev.2.5,217927
10 OptiMOSTM PowerTransistor, 6 V 5 Package Outlines Figure 1 Outline PGTO 2623, dimensions in mm/inches 1 Rev. 2.5,
11 OptiMOSTM PowerTransistor, 6 V Revision History Revision: , Rev. 2.5 Previous Revision Revision Date Subjects (major changes since last revision) Rev Update product current Trademarks of Infineon Technologies AG AURIX, C166, CanPAK, CIPOS, CoolGaN, CoolMOS, CoolSET, CoolSiC, CORECONTROL, CROSSAVE, DAVE, DIPOL, DrBlade, EasyPIM, EconoBRIDGE, EconoDUAL, EconoPACK, EconoPIM, EiceDRIVER, eupec, FCOS, HITFET, HybridPACK, Infineon, ISOFACE, IsoPACK, iwafer, MIPAQ, ModSTACK, myd, NovalithIC, OmniTune, OPTIGA, OptiMOS, ORIGA, POWERCODE, PRIMARION, PrimePACK, PrimeSTACK, PROFET, PROSIL, RASIC, REAL3, ReverSave, SatRIC, SIEGET, SIPMOS, SmartLEWIS, SOLID FLASH, SPOC, TEMPFET, thinq, TRENCHSTOP, TriCore. Trademarks updated August 215 Other Trademarks All referenced product or service names and trademarks are the property of their respective owners. We Listen to Your Comments Any information within this document that you feel is wrong, unclear or missing at all? Your feedback will help us to continuously improve the quality of this document. Please send your proposal (including a reference to this document) to: erratum@infineon.com Published by Infineon Technologies AG München, Germany 217 Infineon Technologies AG All Rights Reserved. Legal Disclaimer The information given in this document shall in no event be regarded as a guarantee of conditions or characteristics ( Beschaffenheitsgarantie ). With respect to any examples, hints or any typical values stated herein and/or any information regarding the application of the product, Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind, including without limitation warranties of noninfringement of intellectual property rights of any third party. In addition, any information given in this document is subject to customer s compliance with its obligations stated in this document and any applicable legal requirements, norms and standards concerning customer s products and any use of the product of Infineon Technologies in customer s applications. The data contained in this document is exclusively intended for technically trained staff. It is the responsibility of customer s technical departments to evaluate the suitability of the product for the intended application and the completeness of the product information given in this document with respect to such application. Information For further information on technology, delivery terms and conditions and prices please contact your nearest Infineon Technologies Office ( Warnings Due to technical requirements, components may contain dangerous substances. For information on the types in question, please contact the nearest Infineon Technologies Office. The Infineon Technologies component described in this Data Sheet may be used in lifesupport devices or systems and/or automotive, aviation and aerospace applications or systems only with the express written approval of Infineon Technologies, if a failure of such components can reasonably be expected to cause the failure of that lifesupport, automotive, aviation and aerospace device or system or to affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body or to support and/or maintain and sustain and/or protect human life. If they fail, it is reasonable to assume that the health of the user or other persons may be endangered. 11 Rev. 2.5,
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