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APT30GS60KR Datasheet, PDF (4/7 Pages) Microsemi Corporation – Thunderbolt High Speed NPT IGBT
TYPICAL PERFORMANCE CURVES
25
20
VGE = 15V
15
10
5 VCE = 400V
TJ = 25°C, TJ =125°C
RG = 9.1Ω
L = 100µH
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 9, Turn-On Delay Time vs Collector Current
70
RG = 9.1Ω, L = 100µH, VCE = 400V
60
TJ = 25 or 125°C,VGE = 15V
50
40
30
20
10
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 11, Current Rise Time vs Collector Current
4000
VCE = 400V
VGE = +15V
RG = 9.1Ω
3000
TJ = 125°C,VGE =15V
2000
1000
TJ = 25°C,VGE =15V
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 13, Turn-On Energy Loss vs Collector Current
5
VCE = 400V
VGE = +15V
TJ = 125°C
4
3 Eon2,60A
Eoff,60A
2
Eon2,30A
1
Eoff,30A
Eoff,15A
0
Eon2,15A
0
10
20
30
40
50
RG, GATE RESISTANCE (OHMS)
FIGURE 15, Switching Energy Losses vs. Gate Resistance
APT30GS60KR(G)
500
400
300
VGE =15V,TJ=125°C
VGE =15V,TJ=25°C
200
100
VCE = 400V
RG = 9.1Ω
L = 100µH
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 10, Turn-Off Delay Time vs Collector Current
60
RG = 9.1Ω, L = 100µH, VCE = 400V
50
40
30
TJ = 125°C, VGE = 15V
20
TJ = 25°C, VGE = 15V
10
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 12, Current Fall Time vs Collector Current
1600
1400
VCE = 400V
VGE = +15V
RG = 9.1Ω
1200
TJ = 125°C, VGE = 15V
1000
800
600
400
200
TJ = 25°C, VGE = 15V
0
0 10 20 30 40 50 60 70
ICE, COLLECTOR TO EMITTER CURRENT (A)
FIGURE 14, Turn Off Energy Loss vs Collector Current
4
VCE = 400V
VGE = +15V
RG = 9.1Ω
3
Eon2,60A
2
Eoff,60A
1 Eon2,30A
Eoff,30A
Eon2,15A
0
Eoff,15A
0
25
50
75
100 125
TJ, JUNCTION TEMPERATURE (°C)
FIGURE 16, Switching Energy Losses vs Junction Temperature