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MBZ5234B 2N1054 AD7393AR AT220 LLBAT42 23PN010 A332J TOP246
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94.0 80 0.25
12.0 11.0 12.0 11.0 12.0
48.0 16.0 14.0
(C2E1) 1
(E2) 2
(C1) 3
7(G2) 6(E2)
2-O6.5 1 2 3
7 6
3-M5
23.0
23.0
17.0
4-fasten tab #110 t=0.5 21.2 7.5 7
14
9
14
9
14
30 +1.0 - 0 .5
LABEL
4
Dimension:mm ollector-mitter oltage ate-mitter oltage ollector urrent ollector ower issipation unction emperature ange torage emperature ange (erminal to ase ,inute) solation oltage odule ase to eatsink ounting orque usbar to ain erminal (kgfcm)
, . .
ise urn-on all urn-off ime ime ime ime = 600V, = 0V = 20V,= 0V = 200A,= 15V = 5V,= 200mA = 10V,= 0V,= 1MH = = = = 300V 1.5 3.6 15V . . . . 10,000 . . . . . . . . . . . . .
ollector-mitter ut-ff urrent ate-mitter eakage urrent ollector-mitter aturation oltage ate-mitter hreshold oltage nput apacitance witching ime
orward urrent eak orward oltage everse ecovery ime

= 200A,= 0V = 200A,= -10V i/t= 400A/s . . . . . . .


hermal mpedance iode th(j-c) Junction to Case Tc . . . . .
00
Fig.1- Output Characteristics (Typical)
400
Fig.2- Output Characteristics (Typical)
TC=25C
400
TC=125C VGE=20V 12V
VGE=20V
350 300 250 200 150 100 50 0
12V 11V
15V
350 300 250 200 150 100
15V 11V
Collector Current I C (A)
Collector Current I C (A)
10V
10V
9V
9V
8V 8V
50 0
0
1
2
3
4
5
0
1
2
3
4
5
Collector to Emitter Voltage VCE (V)
Collector to Emitter Voltage VCE (V)
Fig.3- Collector to Emitter On Voltage vs. Gate to Emitter Voltage (Typical)
16 14 12 10 8 6 4 2 0
Fig.4- Collector to Emitter On Voltage vs. Gate to Emitter Voltage (Typical)
TC=25C
16 14 12 10 8 6 4 2 0
TC=125C IC=100A 200A 400A
IC=100A 200A
400A
Collector to Emitter Voltage V CE (V)
0
4
8
12
16
20
Collector to Emitter Voltage V CE (V)
0
4
8
12
16
20
Gate to Emitter Voltage VGE (V)
Gate to Emitter Voltage VGE (V)
Fig.5- Gate Charge vs. Collector to Emitter Voltage (Typical)
400 350
Fig.6- Capacitance vs. Collector to Emitter Voltage (Typical)
16 14 30000 100000
RL=1.5 TC=25C
Collector to Emitter Voltage V CE (V)
VGE=0V f=1MHZ TC=25C Cies
Gate to Emitter Voltage VGE (V)
300 250 200 150 100 50 0
12 10
Capacitance C (pF)
10000
VCE=300V 200V 100V
8 6 4 2 0 800
3000
Coes Cres
1000
300
0
200
400
600
100 0.1
0.2
0.5
1
2
5
10
20
50
100
200
Total Gate Charge Qg (nC)
Collector to Emitter Voltage VCE (V)
00
Fig.7- Collector Current vs. Switching Time (Typical)
1
Fig.8- Series Gate Impedance vs. Switching Time (Typical)
10 5
0.8
tOFF
VCC=300V RG=3.6 VGE=15V TC=25C Resistive Load
2
VCC=300V IC=200A VGE=15V TC=25C Resistive Load
Switching Time t (s)
Switching Time t (s)
0.6
1 0.5
tf
0.4
toff ton tr(V CE) tf
0.2 0.1 0.05
0.2
tON tr(VCE)
0
0
50
100
150
200
250
300
0.02
1
3
10
30
100
Collector Current IC (A)
Series Gate Impedance RG ( )
Fig.9- Collector Current vs. Switching Time
10
Fig.10- Series Gate Impedance vs. Switching Time
10 5
1
Switching Time t (s)
Switching Time t (s)
tOFF tON
VCC=300V RG=3.6 VGE=15V TC=125C Inductive Load
2 1 0.5
VCC=300V IC=200A VGE=15V TC=125C Inductive Load
0.1
tf tr(Ic)
toff ton tf
0.2 0.1 0.05
0.01
tr(IC )
0.001 0 50 100 150 200 250 300 0.02 1 3 10 30 100
Collector Current IC (A)
Series Gate Impedance RG ( )
Fig.11- Collector Current vs. Switching Loss
20
Fig.12- Series Gate Impedance vs. Switching Loss
300
Switching Loss ESW (mJ/Pulse)
EOFF
12
Switching Loss ESW (mJ/Pulse)
16
VCC=300V RG=3.6 VGE=15V TC=125C Inductive Load
100
VCC=300V IC=200A VGE=15V TC=125C Inductive Load
EON
30
EOFF
EON
8
10
ERR
4
ERR
3
0
0
50
100
150
200
250
300
1
1
3
10
30
Collector Current IC (A)
Series Gate Impedance RG ( )
00
400 350 300 250 200 150 100 50 0
Fig.13- Forward Characteristics of Free Wheeling Diode (Typical)
TC=25C TC=125C
Fig.14- Reverse Recovery Characteristics (Typical)
1000
Peak Reverse Recovery Current I RrM (A) Reverse Recovery Time trr (ns)
500
IF=200A TC=25C TC=125C trr
Forward Current I F (A)
200
100
50
IRrM
20
0
1
2
3
4
10
0
200
400
600
800
1000
1200
Forward Voltage VF (V)
-di/dt (A/s)
Fig.15- Reverse Bias Safe Operating Area
1000 500 200
RG=3.6 , VGE=15V, TC<125C
Collector Current I C (A)
100 50 20 10 5 2 1 0.5 0.2 0.1 0 200 400 600 800
Collector to Emitter Voltage V CE (V)
Fig.16- Transient Thermal Impedance
3
Transient Thermal Impedance Rth (J-C) (C/W)
1
FRD
3x10 -1 1x10
-1
IGBT
3x10 -2 1x10 -2 3x10 -3 1x10 -3 3x10 -4 10 -5
TC=25C 1 Shot Pulse
10-4 10-3 10 -2 10 -1 1 10 1
Time t (s)
00


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