EMP100E12APBF International Rectifier, EMP100E12APBF Datasheet - Page 4

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EMP100E12APBF

Manufacturer Part Number
EMP100E12APBF
Description
Power Integrated Module
Manufacturer
International Rectifier
Datasheet
Symbol
Q
Q
Q
E
E
E
E
E
E
td (on)
Tr
td (off)
Tf
C
C
C
RBSOA
SCSOA
E
Trr
Irr
Rth
Rth
Rth
Switching Characteristics:
For proper operation the device should be used within the recommended conditions.
T
www.irf.com
on
off
tot
on
off
tot
REC
ies
oes
res
g
ge
gc
EMP25P12B
J
JC_T
JC_D
C-H
= 25°C (unless otherwise specified)
Total Gate Charge (turn on)
Gate – Emitter Charge (turn on)
Gate – Collector Charge (turn on)
Turn on Switching Loss
Turn off Switching Loss
Total Switching Loss
Turn on Switching Loss
Turn off Switching Loss
Total Switching Loss
Turn on delay time
Rise time
Turn off delay time
Fall time
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Reverse Bias Safe Operating Area
Short Circuit Safe Operating Area
Diode reverse recovery energy
Diode reverse recovery time
Peak reverse recovery current
Each IGBT to copper plate thermal resistance
Each Diode to copper plate thermal resistance
Module copper plate to heat sink thermal
resistance. Silicon grease applied = 0.1mm
I27149 08/07
Parameter Definition
Min
10
FULL SQUARE
2200
1820
Typ
169
192
213
210
210
300
1.9
1.3
3.2
2.7
2.0
4.7
19
82
33
85
25
2400
0.65
0.95
0.03
254
123
210
227
379
3.6
2.0
5.6
4.6
2.3
6.9
Max
29
49
32
Units
º C/W
º C/W
º C/W
nC
mJ
mJ
PF
ns
µs
µJ
ns
A
I
V
V
I
V
Tail and Diode Rev. Recovery included
I
V
Tail and Diode Rev. Recovery included
I
V
V
V
f = 1MHz
T
V
T
V
T
I
V
See also fig.24 and 25
C
C
C
C
F
J
J
J
CC
GE
GE
GE
GE
CC
GE
CC
CC
= 25A, V
GE
= 25A
= 25A, V
= 25A, V
= 25A, V
= 150 º C, I
= 150 º C, V
= 125 º C
= 600V
= 15V
= 15V, R
= 15V, R
= 15V, R
= 30V
= 0V
= 1000V, V
= 1000V, Vp= 1200V, R
= 15V, R
CC
CC
CC
CC
= 600V,
G
G
G
G
= 600V, T
= 600V, T
= 600V, T
C
Test Conditions
GE
=20Ω, L = 200µH
=20Ω, L = 200µH
=20Ω, L = 200µH
=100A, V
=20Ω, L = 200µH
p
= 1200V, R
= 15V to 0V
J
J
J
GE
= 25 º C
= 125 º C
= 125 º C
= 15V to 0V
G
G
= 5Ω
= 5Ω
17,18
Fig.
14,16
19,20
24,25
WF1
WF2
WF1
WF2
WF1
WF2
WF4
WF3
CT1
CT4
CT4
CT4
CT2
CT3
CT4
13,
23
15
22
21
4
4

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