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IGW60T120InfineonN/a2avaiIGBTs & DuoPacks


IGW60T120 ,IGBTs & DuoPacksapplications offers :- very tight parameter distributionP-TO-247-3-1- high ruggedness, temperature ..
IGW75N60T ,1200V IGBT for frequencies up to 10kHz for hard switching applications and up to 30kHz for soft switching. Combined Trench- and Fieldstop-Technology. ...applications offers : - very tight parameter distribution P-TO-247-3-1 (TO-220AC) - high ruggedn ..
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IGW60T120
IGBTs & DuoPacks
IGW60T120TrenchStop Series
Low Loss IGBT in Trench and Fieldstop technologyBest in class TO247Short circuit withstand time – 10μsDesigned for :
- Frequency Converters- Uninterrupted Power SupplyTrench and Fieldstop technology for 1200 V applications offers :- very tight parameter distribution
- high ruggedness, temperature stable behaviorNPT technology offers easy parallel switching capability due topositive temperature coefficient in VCE(sat)
• Low EMILow Gate ChargeComplete product spectrum and PSpice Models : http://www.infineon.com/igbt/
Maximum Ratings

IGW60T120TrenchStop Series
Thermal Resistance
Characteristic
Electrical Characteristic, at Tj = 25 °C, unless otherwise specified
Static Characteristic
IGW60T120TrenchStop Series
Dynamic Characteristic
Switching Characteristic, Inductive Load, at Tj=25 °C
IGBT Characteristic
Switching Characteristic, Inductive Load, at Tj=150 °CParameter
IGBT Characteristic

Turn-on delay time
Turn-off delay time
Turn-off energy
IGW60T120TrenchStop Series
COLLE
OR CURRE
25A
50A
75A
100A
125A
150A
COLLE
OR CURRE10V100V1000V
0,1A
10A
100A
f, SWITCHING FREQUENCYVCE, COLLECTOR-EMITTER VOLTAGE
Figure 1.Collector current as a function ofswitching frequency

(Tj ≤ 150°C, D = 0.5, VCE = 600V,
VGE = 0/+15V, RG = 10Ω)
Figure 2.Safe operating area

(D = 0, TC = 25°C,
Tj ≤150°C;VGE=15V)
tot
ISS0W
50W
100W
150W
200W
250W
300W
350W
COLLE
OR CURRE
25°C75°C
20A
40A
60A
80A
TC, CASE TEMPERATURETC, CASE TEMPERATURE
Figure 3.Power dissipation as a function of
case temperature

(Tj ≤ 150°C)
Figure 4.Collector current as a function of
case temperature

(VGE ≥ 15V, Tj ≤ 150°C)
IGW60T120TrenchStop Series
COLLE
OR CURRE
25A
50A
75A
100A
125A
COLLE
OR CURRE
25A
50A
75A
100A
125A
VCE, COLLECTOR-EMITTER VOLTAGEVCE, COLLECTOR-EMITTER VOLTAGE
Figure 5.Typical output characteristic
(Tj = 25°C)Figure 6.Typical output characteristic(Tj = 150°C)
COLLE
OR CURRE2V4V6V8V10V12V0A
25A
50A
75A
100A
at),
COLLE
CTOR
ITT SAT
VO
-50°C0°C50°C100°C
0,0V
0,5V
1,0V
1,5V
2,0V
2,5V
3,0V
3,5V
VGE, GATE-EMITTER VOLTAGETJ, JUNCTION TEMPERATURE
Figure 7.Typical transfer characteristic

(VCE=20V)
Figure 8.Typical collector-emitter
saturation voltage as a function ofjunction temperature

(VGE = 15V)
IGW60T120TrenchStop Series
t,
ITC
TI
20A40A60A80A1ns
10ns
100ns
t,
ITC
TI15Ω25Ω35Ω45Ω1 ns
10 ns
100 ns
1000 ns
IC, COLLECTOR CURRENTRG, GATE RESISTOR
Figure 9.Typical switching times as afunction of collector current

(inductive load, TJ=150°C,VCE=600V, VGE=0/15V, RG=10Ω,
Dynamic test circuit in Figure E)
Figure 10.Typical switching times as afunction of gate resistor

(inductive load, TJ=150°C,VCE=600V, VGE=0/15V, IC=60A,
Dynamic test circuit in Figure E)
t,
ITC
TI
0°C50°C100°C150°C10ns
100ns
(th
),
D VO
-50°C0°C50°C100°C150°C0V
TJ, JUNCTION TEMPERATURETJ, JUNCTION TEMPERATURE
Figure 11.Typical switching times as a
function of junction temperature
(inductive load, VCE=600V,
VGE=0/15V, IC=60A, RG=10Ω,Dynamic test circuit in Figure E)
Figure 12.Gate-emitter threshold voltage as
a function of junction temperature
(IC = 2.0mA)
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