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10-FZ062PA200SA01-P996F18 Datasheet, PDF (8/15 Pages) Vincotech – Trench Fieldstop IGBT technology
Output Inverter
FZ06 / F0062PA200SA01
preliminary datasheet
Figure 17
Typical rate of fall of forward
and reverse recovery current as a
function of collector current
dI0/dt,dIrec/dt = f(IC)
10000
dI0/dt
8000
dIrec/dt
6000
Output inverter FRED
di0/dtHigh T
dIo/dtLow T
dIrec/dtLow T
Figure 18
Typical rate of fall of forward
and reverse recovery current as a
function of IGBT turn on gate resistor
dI0/dt,dIrec/dt = f(Rgon)
10000
8000
6000
Tj = 25°C
Tj = Tjmax - 25°C
Output inverter FRED
dI0/dt
dIrec/dt
4000
2000
dIrec/dtHigh T
4000
2000
0
0
100
200
At
Tj =
VCE =
VGE =
Rgon =
25/150 °C
300
V
±15
V
2
Ω
Figure 19
IGBT transient thermal impedance
as a function of pulse width
ZthJH = f(tp)
100
300
I C (A)
400
0
0
4
8
12
16 R gon ( Ω ) 20
At
Tj =
VR =
IF =
VGE =
25/150 °C
300
V
200
A
±15
V
Output inverter IGBT
Figure 20
FRED transient thermal impedance
as a function of pulse width
ZthJH = f(tp)
100
Output inverter FRED
10-1
10-2
10-5
10-4
10-3
10-2
At
D=
RthJH =
tp / T
0,33
K/W
IGBT thermal model values
10-1
D = 0,5
0,2
0,1
0,05
0,02
0,01
0,005
0.000
10-2
10-1
100 t p (s)
1011
10-5
10-4
10-3
10-2
At
D=
RthJH =
tp / T
0,47
K/W
FRED thermal model values
D = 0,5
0,2
0,1
0,05
0,02
0,01
0,005
0.000
10-1
100
t p (s) 1011
R (C/W)
0,01
0,07
0,12
0,09
0,02
0,02
Tau (s)
9,3E+00
1,4E+00
1,9E-01
4,7E-02
2,5E-03
2,9E-04
R (C/W)
0,02
0,08
0,15
0,15
0,03
0,03
Tau (s)
9,4E+00
1,2E+00
1,5E-01
4,0E-02
3,0E-03
3,3E-04
Copyright by Vincotech
8
Revision: 1