HGTG20N100D2
Typical Performance Curves (Continued)
35
VGE = 15V
30
25
VGE = 10V
20
15
10
5
0
+25
+50
+75
+100
+125
+150
TC, CASE TEMPERATURE (oC)
FIGURE 3. DC COLLECTOR CURRENT vs CASE TEMPERATURE
6000
5000
f = 1MHz
4000
3000
2000
COSS
CISS
1000
CRSS
0
0
5
10
15
20
25
VCE, COLLECTOR-TO-EMITTER VOLTAGE (V)
FIGURE 5. CAPACITANCE vs COLLECTOR-EMITTER VOLTAGE
5
TJ = +150oC
4
3
2
1
VGE = 10V
VGE = 15V
2.5
VCE = 800V, TJ = +150oC,
VGE = 15V, RG = 25Ω, L = 50µH
2.0
1.5
1.0
0.5
0.0
1
10
40
ICE, COLLECTOR-EMITTER CURRENT (A)
FIGURE 4. FALL TIME vs COLLECTOR-EMITTER CURRENT
1000
750
10
RL = 29Ω
IG(REF) = 1.8mA
VCC = BVCES
GATE-
EMITTER
VOLTAGE
VGE = 10V
VCC = BVCES
500
5
0.75 BVCES 0.75 BVCES
0.50 BVCES 0.50 BVCES
250
0.25 BVCES 0.25 BVCES
COLLECTOR-EMITTER VOLTAGE
0
0
IG(REF)
20
IG(ACT)
TIME (µs)
IG(REF)
80
IG(ACT)
FIGURE 6. NORMALIZED SWITCHING WAVEFORMS AT CON-
STANT GATE CURRENT (REFER TO APPLICATION
NOTES AN7254 AND AN7260)
10
TJ = +150oC, VGE = 15V,
RG = 25Ω, L = 50µH
VCE = 800V, VGE = 10V, 15V
1.0
VCE = 400V, VGE = 10V, 15V
0
1
10
40
ICE, COLLECTOR-EMITTER CURRENT (A)
FIGURE 7. SATURATION VOLTAGE vs COLLECTOR-EMITTER
CURRENT
0.1
1
10
40
ICE, COLLECTOR-EMITTER CURRENT (A)
FIGURE 8. TURN-OFF SWITCHING LOSS vs COLLECTOR-
EMITTER CURRENT
3-95