IPA65R190C7 [INFINEON]

英飞凌的 CoolMOS™ C7 超结 MOSFET 系列是技术的一次突破性进步,在全球范围内实现了低 RDS(on)/封装,并且得益于其低开关损耗,可在全负载范围内提高效率。;
IPA65R190C7
型号: IPA65R190C7
厂家: Infineon    Infineon
描述:

英飞凌的 CoolMOS™ C7 超结 MOSFET 系列是技术的一次突破性进步,在全球范围内实现了低 RDS(on)/封装,并且得益于其低开关损耗,可在全负载范围内提高效率。

开关
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IPA65R190C7  
MOSFET  
PG-TOꢀ220ꢀFP  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
CoolMOS™ꢀisꢀaꢀrevolutionaryꢀtechnologyꢀforꢀhighꢀvoltageꢀpower  
MOSFETs,ꢀdesignedꢀaccordingꢀtoꢀtheꢀsuperjunctionꢀ(SJ)ꢀprincipleꢀand  
pioneeredꢀbyꢀInfineonꢀTechnologies.  
CoolMOS™ꢀC7ꢀseriesꢀcombinesꢀtheꢀexperienceꢀofꢀtheꢀleadingꢀSJ  
MOSFETꢀsupplierꢀwithꢀhighꢀclassꢀinnovation.ꢀTheꢀproductꢀportfolio  
providesꢀallꢀbenefitsꢀofꢀfastꢀswitchingꢀsuperjunctionꢀMOSFETsꢀoffering  
betterꢀefficiency,ꢀreducedꢀgateꢀcharge,ꢀeasyꢀimplementationꢀand  
outstandingꢀreliability.  
Features  
•ꢀIncreasedꢀMOSFETꢀdv/dtꢀruggedness  
•ꢀBetterꢀefficiencyꢀdueꢀtoꢀbestꢀinꢀclassꢀFOMꢀRDS(on)*EossꢀandꢀRDS(on)*Qg  
•ꢀBestꢀinꢀclassꢀRDS(on)ꢀ/package  
Drain  
Pin 2  
•ꢀEasyꢀtoꢀuse/drive  
•ꢀPb-freeꢀplating,ꢀhalogenꢀfreeꢀmoldꢀcompound  
*1  
Gate  
Pin 1  
Source  
Pin 3  
Benefits  
*1: Internal body diode  
•ꢀEnablingꢀhigherꢀsystemꢀefficiency  
•ꢀEnablingꢀhigherꢀfrequencyꢀ/ꢀincreasedꢀpowerꢀdensityꢀsolutions  
•ꢀSystemꢀcostꢀ/ꢀsizeꢀsavingsꢀdueꢀtoꢀreducedꢀcoolingꢀrequirements  
•ꢀHigherꢀsystemꢀreliabilityꢀdueꢀtoꢀlowerꢀoperatingꢀtemperatures  
Potentialꢀapplications  
PFCꢀstagesꢀandꢀhardꢀswitchingꢀPWMꢀstagesꢀforꢀe.g.ꢀComputing,ꢀServer,  
Telecom,ꢀUPSꢀandꢀSolar.  
Productꢀvalidation  
FullyꢀqualifiedꢀaccordingꢀtoꢀJEDECꢀforꢀIndustrialꢀApplications  
Pleaseꢀnote:ꢀForꢀMOSFETꢀparallelingꢀtheꢀuseꢀofꢀferriteꢀbeadsꢀonꢀtheꢀgate  
orꢀseparateꢀtotemꢀpolesꢀisꢀgenerallyꢀrecommended.  
Tableꢀ1ꢀꢀꢀꢀꢀKeyꢀPerformanceꢀParameters  
Parameter  
VDS @ Tj,max  
RDS(on),max  
Qg.typ  
Value  
700  
190  
23  
Unit  
V
m  
nC  
A
ID,pulse  
49  
Eoss@400V  
Body diode di/dt  
2.7  
µJ  
55  
A/µs  
Typeꢀ/ꢀOrderingꢀCode  
Package  
PG-TO220 FullPAK  
Marking  
RelatedꢀLinks  
IPA65R190C7  
65C7190  
see Appendix A  
Final Data Sheet  
1
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
TableꢀofꢀContents  
Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1  
Maximum ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3  
Thermal characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4  
Electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5  
Electrical characteristics diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7  
Test Circuits . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11  
Package Outlines . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12  
Appendix A . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13  
Revision History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14  
Trademarks . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14  
Disclaimer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14  
Final Data Sheet  
2
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
1ꢀꢀꢀꢀꢀMaximumꢀratings  
atꢀTjꢀ=ꢀ25°C,ꢀunlessꢀotherwiseꢀspecified  
Tableꢀ2ꢀꢀꢀꢀꢀMaximumꢀratings  
Values  
Typ.  
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
Max.  
-
-
-
-
8
5
TC=25°C  
A
Continuous drain current1)  
ID  
TC=100°C  
Pulsed drain current2)  
ID,pulse  
EAS  
EAR  
IAS  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
49  
A
TC=25°C  
Avalanche energy, single pulse  
Avalanche energy, repetitive  
Avalanche current, single pulse  
MOSFET dv/dt ruggedness  
Gate source voltage (static)  
Gate source voltage (dynamic)  
Power dissipation  
-
57  
mJ  
mJ  
A
ID=5.4A; VDD=50V; see table 10  
-
0.29  
5.4  
100  
20  
ID=5.4A; VDD=50V; see table 10  
-
-
dv/dt  
VGS  
VGS  
Ptot  
Tstg  
Tj  
-
V/ns VDS=0...400V  
-20  
-30  
-
V
static;  
30  
V
AC (f>1 Hz)  
30  
W
°C  
°C  
TC=25°C  
Storage temperature  
-55  
-55  
-
150  
150  
50  
-
-
Operating junction temperature  
Mounting torque  
-
Ncm M2.5 screws  
Continuous diode forward current  
Diode pulse current2)  
IS  
-
8
A
A
TC=25°C  
IS,pulse  
-
49  
TC=25°C  
VDS=0...400V,ꢀISD<=IS,ꢀTj=25°Cꢀꢀꢀꢀꢀꢀꢀꢀ  
see table 8  
Reverse diode dv/dt3)  
dv/dt  
-
-
1
V/ns  
VDS=0...400V,ꢀISD<=IS,ꢀTj=25°Cꢀꢀꢀꢀꢀꢀꢀꢀ  
see table 8  
Maximum diode commutation speed  
Insulation withstand voltage  
dif/dt  
-
-
-
-
55  
A/µs  
VISO  
2500  
V
Vrms,ꢀTC=25°C,ꢀt=1min  
1) Limited by Tj max  
.
2) Pulse width tp limited by Tj,max  
3)ꢀIdenticalꢀlowꢀsideꢀandꢀhighꢀsideꢀswitchꢀwithꢀidenticalꢀRG  
Final Data Sheet  
3
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
2ꢀꢀꢀꢀꢀThermalꢀcharacteristics  
Tableꢀ3ꢀꢀꢀꢀꢀThermalꢀcharacteristics  
Values  
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
Typ.  
Max.  
4.21  
80  
Thermal resistance, junction - case  
RthJC  
-
-
-
-
°C/W -  
Thermal resistance, junction - ambient RthJA  
°C/W leaded  
Thermal resistance, junction - ambient  
for SMD version  
RthJA  
-
-
-
-
-
°C/W n.a.  
Reflow soldering temperature  
Tsold  
260  
°C  
1.6mm (0.063 in.) from case for 10s  
Final Data Sheet  
4
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
3ꢀꢀꢀꢀꢀElectricalꢀcharacteristics  
atꢀTj=25°C,ꢀunlessꢀotherwiseꢀspecified  
Tableꢀ4ꢀꢀꢀꢀꢀStaticꢀcharacteristics  
Values  
Typ.  
-
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
650  
3
Max.  
Drain-source breakdown voltage  
Gate threshold voltage  
V(BR)DSS  
V(GS)th  
-
V
V
VGS=0V,ꢀID=1mA  
3.5  
4
VDS=VGS,ꢀID=0.29mA  
-
-
-
10  
1
-
VDS=650,ꢀVGS=0V,ꢀTj=25°C  
VDS=650,ꢀVGS=0V,ꢀTj=150°C  
Zero gate voltage drain current  
Gate-source leakage current  
Drain-source on-state resistance  
Gate resistance  
IDSS  
µA  
nA  
IGSS  
-
-
100  
VGS=20V,ꢀVDS=0V  
-
-
0.168 0.190  
0.404  
VGS=10V,ꢀID=5.7A,ꢀTj=25°C  
VGS=10V,ꢀID=5.7A,ꢀTj=150°C  
RDS(on)  
RG  
-
-
1.1  
-
f=1MHz,ꢀopenꢀdrain  
Tableꢀ5ꢀꢀꢀꢀꢀDynamicꢀcharacteristics  
Values  
Typ.  
1150  
17  
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
Max.  
Input capacitance  
Output capacitance  
Ciss  
-
-
-
-
pF  
pF  
VGS=0V,ꢀVDS=400V,ꢀf=250kHz  
VGS=0V,ꢀVDS=400V,ꢀf=250kHz  
Coss  
Effective output capacitance, energy  
related1)  
Co(er)  
Co(tr)  
td(on)  
tr  
-
-
-
-
-
-
34  
374  
11  
11  
54  
9
-
-
-
-
-
-
pF  
pF  
ns  
ns  
ns  
ns  
VGS=0V,ꢀVDS=0...400V  
Effective output capacitance, time  
related2)  
ID=constant,ꢀVGS=0V,ꢀVDS=0...400V  
VDD=400V,ꢀVGS=13V,ꢀID=5.7A,  
RG=10;ꢀseeꢀtableꢀ9  
Turn-on delay time  
Rise time  
VDD=400V,ꢀVGS=13V,ꢀID=5.7A,  
RG=10;ꢀseeꢀtableꢀ9  
VDD=400V,ꢀVGS=13V,ꢀID=5.7A,  
RG=10;ꢀseeꢀtableꢀ9  
Turn-off delay time  
Fall time  
td(off)  
tf  
VDD=400V,ꢀVGS=13V,ꢀID=5.7A,  
RG=10;ꢀseeꢀtableꢀ9  
Tableꢀ6ꢀꢀꢀꢀꢀGateꢀchargeꢀcharacteristics  
Values  
Typ.  
6
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
Max.  
Gate to source charge  
Gate to drain charge  
Gate charge total  
Qgs  
-
-
-
-
-
-
-
-
nC  
nC  
nC  
V
VDD=400V,ꢀID=5.7A,ꢀVGS=0ꢀtoꢀ10V  
VDD=400V,ꢀID=5.7A,ꢀVGS=0ꢀtoꢀ10V  
VDD=400V,ꢀID=5.7A,ꢀVGS=0ꢀtoꢀ10V  
VDD=400V,ꢀID=5.7A,ꢀVGS=0ꢀtoꢀ10V  
Qgd  
7
Qg  
23  
Gate plateau voltage  
Vplateau  
5.4  
1)Co(er)ꢀisꢀaꢀfixedꢀcapacitanceꢀthatꢀgivesꢀtheꢀsameꢀstoredꢀenergyꢀasꢀCossꢀwhileꢀVDSꢀisꢀrisingꢀfromꢀ0ꢀtoꢀ400V  
2)Co(tr)ꢀisꢀaꢀfixedꢀcapacitanceꢀthatꢀgivesꢀtheꢀsameꢀchargingꢀtimeꢀasꢀCossꢀwhileꢀVDSꢀisꢀrisingꢀfromꢀ0ꢀtoꢀ400V  
Final Data Sheet  
5
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
Tableꢀ7ꢀꢀꢀꢀꢀReverseꢀdiodeꢀcharacteristics  
Values  
Typ.  
0.9  
Parameter  
Symbol  
Unit Noteꢀ/ꢀTestꢀCondition  
Min.  
Max.  
Diode forward voltage  
Reverse recovery time  
VSD  
trr  
-
-
V
VGS=0V,ꢀIF=5.7A,ꢀTj=25°C  
VR=400V,ꢀIF=8A,ꢀdiF/dt=55A/µs;ꢀsee  
table 8  
-
-
-
830  
6.5  
18  
-
-
-
ns  
VR=400V,ꢀIF=8A,ꢀdiF/dt=55A/µs;ꢀsee  
table 8  
Reverse recovery charge  
Qrr  
Irrm  
µC  
A
VR=400V,ꢀIF=8A,ꢀdiF/dt=55A/µs;ꢀsee  
table 8  
Peak reverse recovery current  
Final Data Sheet  
6
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
4ꢀꢀꢀꢀꢀElectricalꢀcharacteristicsꢀdiagrams  
Diagramꢀ1:ꢀPowerꢀdissipation  
Diagramꢀ2:ꢀSafeꢀoperatingꢀarea  
30  
102  
1 µs  
10 µs  
100 µs  
1 ms  
10 ms  
25  
20  
15  
10  
5
101  
DC  
100  
10-1  
10-2  
10-3  
10-4  
0
0
25  
50  
75  
100  
125  
150  
100  
101  
102  
103  
TCꢀ[°C]  
VDSꢀ[V]  
Ptot=f(TC)  
ID=f(VDS);ꢀTC=25ꢀ°C;ꢀD=0;ꢀparameter:ꢀtp  
Diagramꢀ3:ꢀSafeꢀoperatingꢀarea  
Diagramꢀ4:ꢀMax.ꢀtransientꢀthermalꢀimpedance  
102  
101  
10 µs  
1 µs  
100 µs  
1 ms  
10 ms  
101  
100  
0.5  
DC  
100  
0.2  
0.1  
10-1  
10-2  
10-3  
10-4  
0.05  
0.02  
10-1  
0.01  
single pulse  
10-2  
100  
101  
102  
103  
10-5  
10-4  
10-3  
10-2  
10-1  
100  
VDSꢀ[V]  
tpꢀ[s]  
ID=f(VDS);ꢀTC=80ꢀ°C;ꢀD=0;ꢀparameter:ꢀtp  
ZthJCꢀ=f(tP);ꢀparameter:ꢀD=tp/T  
Final Data Sheet  
7
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
Diagramꢀ5:ꢀTyp.ꢀoutputꢀcharacteristics  
Diagramꢀ6:ꢀTyp.ꢀoutputꢀcharacteristics  
50  
30  
20 V  
10 V  
20 V  
8 V  
8 V  
6 V  
10 V  
7 V  
25  
20  
15  
10  
5
40  
7 V  
30  
20  
10  
5.5 V  
6 V  
5 V  
5.5 V  
5 V  
4.5 V  
4.5 V  
0
0
0
5
10  
15  
20  
0
5
10  
15  
20  
VDSꢀ[V]  
VDSꢀ[V]  
ID=f(VDS);ꢀTj=25ꢀ°C;ꢀparameter:ꢀVGS  
ID=f(VDS);ꢀTj=125ꢀ°C;ꢀparameter:ꢀVGS  
Diagramꢀ7:ꢀTyp.ꢀdrain-sourceꢀon-stateꢀresistance  
Diagramꢀ8:ꢀDrain-sourceꢀon-stateꢀresistance  
0.7  
0.50  
5.5 V  
6 V  
6.5 V  
7 V  
0.45  
0.40  
0.35  
0.30  
0.6  
0.5  
0.4  
0.3  
20 V  
10 V  
98%  
0.25  
0.20  
0.15  
0.10  
typ  
0
5
10  
15  
20  
25  
30  
-50  
-25  
0
25  
50  
75  
100  
125  
150  
IDꢀ[A]  
Tjꢀ[°C]  
RDS(on)=f(ID);ꢀTj=125ꢀ°C;ꢀparameter:ꢀVGS  
RDS(on)=f(Tj);ꢀID=5.7ꢀA;ꢀVGS=10ꢀV  
Final Data Sheet  
8
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
Diagramꢀ9:ꢀTyp.ꢀtransferꢀcharacteristics  
Diagramꢀ10:ꢀTyp.ꢀgateꢀcharge  
60  
12  
120 V  
400 V  
50  
10  
8
25 °C  
40  
30  
6
150 °C  
20  
10  
0
4
2
0
0
2
4
6
8
10  
12  
0
5
10  
15  
20  
25  
30  
VGSꢀ[V]  
Qgateꢀ[nC]  
ID=f(VGS);ꢀVDS=20V;ꢀparameter:ꢀTj  
VGS=f(Qgate);ꢀID=5.7Aꢀpulsed;ꢀparameter:ꢀVDD  
Diagramꢀ11:ꢀForwardꢀcharacteristicsꢀofꢀreverseꢀdiode  
Diagramꢀ12:ꢀAvalancheꢀenergy  
102  
60  
55  
50  
45  
40  
35  
30  
25  
20  
15  
10  
5
101  
125 °C  
25 °C  
100  
10-1  
0
0.0  
0.5  
1.0  
1.5  
25  
50  
75  
100  
125  
150  
VSDꢀ[V]  
Tjꢀ[°C]  
IF=f(VSD);ꢀparameter:ꢀTj  
EAS=f(Tj);ꢀID=5.4ꢀA;ꢀVDD=50ꢀV  
Final Data Sheet  
9
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
Diagramꢀ13:ꢀDrain-sourceꢀbreakdownꢀvoltage  
Diagramꢀ14:ꢀTyp.ꢀcapacitances  
760  
105  
740  
720  
700  
680  
660  
640  
620  
600  
580  
104  
Ciss  
103  
102  
Coss  
101  
Crss  
100  
-60  
-20  
20  
60  
100  
140  
180  
0
100  
200  
300  
400  
500  
Tjꢀ[°C]  
VDSꢀ[V]  
VBR(DSS)=f(Tj);ꢀID=1ꢀmA  
C=f(VDS);ꢀVGS=0ꢀV;ꢀf=250ꢀkHz  
Diagramꢀ15:ꢀTyp.ꢀCossꢀstoredꢀenergy  
4.0  
3.5  
3.0  
2.5  
2.0  
1.5  
1.0  
0.5  
0.0  
0
100  
200  
300  
400  
500  
VDSꢀ[V]  
Eoss=f(VDS  
)
Final Data Sheet  
10  
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
5ꢀꢀꢀꢀꢀTestꢀCircuits  
Tableꢀ8ꢀꢀꢀꢀꢀDiodeꢀcharacteristics  
Test circuit for diode characteristics  
Diode recovery waveform  
Rg1  
VDS  
Rg 2  
IF  
Rg1 = Rg 2  
Tableꢀ9ꢀꢀꢀꢀꢀSwitchingꢀtimes  
Switching times test circuit for inductive load  
Switching times waveform  
VDS  
90%  
10%  
VDS  
VGS  
VGS  
td(off)  
tf  
td(on)  
ton  
tr  
toff  
Tableꢀ10ꢀꢀꢀꢀꢀUnclampedꢀinductiveꢀload  
Unclamped inductive load test circuit  
Unclamped inductive waveform  
V(BR)DS  
ID  
VDS  
VDS  
VDS  
ID  
Final Data Sheet  
11  
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
6ꢀꢀꢀꢀꢀPackageꢀOutlines  
1
2
3
MILLIMETERS  
MIN.  
DIMENSIONS  
MAX.  
4.90  
2.85  
2.86  
0.90  
1.38  
1.51  
1.38  
1.51  
0.63  
16.15  
9.83  
10.65  
DOCUMENT NO.  
Z8B00003319  
A
A1  
A2  
b
4.50  
2.34  
2.42  
0.65  
0.95  
0.95  
0.65  
0.65  
0.40  
15.67  
8.97  
10.00  
REVISION  
10  
b1  
b2  
b3  
b4  
c
ISSUE DATE  
21.03.2019  
SCALE 5:1  
0
1
2
3
4
5mm  
D
D1  
E
e
2.54  
EUROPEAN PROJECTION  
H
28.70  
12.78  
2.83  
29.75  
13.75  
3.45  
L
L1  
øP  
Q
3.00  
3.30  
3.15  
3.50  
Figureꢀ1ꢀꢀꢀꢀꢀOutlineꢀPG-TO220ꢀFullPAK,ꢀdimensionsꢀinꢀmm  
Final Data Sheet  
12  
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
7ꢀꢀꢀꢀꢀAppendixꢀA  
Tableꢀ11ꢀꢀꢀꢀꢀRelatedꢀLinks  
IFXꢀCoolMOSTMꢀC7ꢀWebpage:ꢀwww.infineon.com  
IFXꢀCoolMOSTMꢀC7ꢀapplicationꢀnote:ꢀwww.infineon.com  
IFXꢀCoolMOSTMꢀC7ꢀsimulationꢀmodel:ꢀwww.infineon.com  
IFXꢀDesignꢀtools:ꢀwww.infineon.com  
Final Data Sheet  
13  
Rev.ꢀ2.1,ꢀꢀ2020-02-17  
650VꢀCoolMOSªꢀC7ꢀPowerꢀDevice  
IPA65R190C7  
RevisionꢀHistory  
IPA65R190C7  
Revision:ꢀ2020-02-17,ꢀRev.ꢀ2.1  
Previous Revision  
Revision Date  
Subjects (major changes since last revision)  
2.0  
2.1  
Release of final version  
2013-10-18  
2020-02-17  
Updated package drawing, symbol ID and product validation  
Trademarks  
Allꢀreferencedꢀproductꢀorꢀserviceꢀnamesꢀandꢀtrademarksꢀareꢀtheꢀpropertyꢀofꢀtheirꢀrespectiveꢀowners.  
WeꢀListenꢀtoꢀYourꢀComments  
Anyꢀinformationꢀwithinꢀthisꢀdocumentꢀthatꢀyouꢀfeelꢀisꢀwrong,ꢀunclearꢀorꢀmissingꢀatꢀall?ꢀYourꢀfeedbackꢀwillꢀhelpꢀusꢀtoꢀcontinuously  
improveꢀtheꢀqualityꢀofꢀthisꢀdocument.ꢀPleaseꢀsendꢀyourꢀproposalꢀ(includingꢀaꢀreferenceꢀtoꢀthisꢀdocument)ꢀto:  
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Publishedꢀby  
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81726ꢀMünchen,ꢀGermany  
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Withꢀrespectꢀtoꢀanyꢀexamples,ꢀhintsꢀorꢀanyꢀtypicalꢀvaluesꢀstatedꢀhereinꢀand/orꢀanyꢀinformationꢀregardingꢀtheꢀapplicationꢀofꢀthe  
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aerospaceꢀdeviceꢀorꢀsystemꢀorꢀtoꢀaffectꢀtheꢀsafetyꢀorꢀeffectivenessꢀofꢀthatꢀdeviceꢀorꢀsystem.ꢀLifeꢀsupportꢀdevicesꢀorꢀsystemsꢀare  
intendedꢀtoꢀbeꢀimplantedꢀinꢀtheꢀhumanꢀbodyꢀorꢀtoꢀsupportꢀand/orꢀmaintainꢀandꢀsustainꢀand/orꢀprotectꢀhumanꢀlife.ꢀIfꢀtheyꢀfail,ꢀitꢀis  
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Final Data Sheet  
14  
Rev.ꢀ2.1,ꢀꢀ2020-02-17  

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