IRGP4063DPBF International Rectifier, IRGP4063DPBF Datasheet - Page 2

IGBT PDP N-CH 600V 96A TO-247AC

IRGP4063DPBF

Manufacturer Part Number
IRGP4063DPBF
Description
IGBT PDP N-CH 600V 96A TO-247AC
Manufacturer
International Rectifier
Datasheet

Specifications of IRGP4063DPBF

Igbt Type
Trench
Voltage - Collector Emitter Breakdown (max)
600V
Vce(on) (max) @ Vge, Ic
2.14V @ 15V, 48A
Current - Collector (ic) (max)
96A
Power - Max
330W
Input Type
Standard
Mounting Type
Through Hole
Package / Case
TO-247-3 (Straight Leads), TO-247AC
Channel Type
N
Configuration
Single
Collector-emitter Voltage
600V
Collector Current (dc) (max)
96A
Gate To Emitter Voltage (max)
±20V
Package Type
TO-247AC
Pin Count
3 +Tab
Mounting
Through Hole
Operating Temperature (min)
-55C
Operating Temperature (max)
175C
Operating Temperature Classification
Military
Transistor Type
IGBT
Dc Collector Current
96A
Collector Emitter Voltage Vces
600V
Power Dissipation Pd
330W
Collector Emitter Voltage V(br)ceo
600V
Operating Temperature Range
-55°C To +175°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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IRGP4063DPbF
Notes:

ƒ
Electrical Characteristics @ T
V
ΔV
V
V
ΔV
gfe
I
V
I
Switching Characteristics @ T
Q
Q
Q
E
E
E
t
t
t
t
E
E
E
t
t
t
t
C
C
C
RBSOA
SCSOA
Erec
t
I
CES
GES
d(on)
r
d(off)
f
d(on)
r
d(off)
f
rr
rr
(BR)CES
CE(on)
GE(th)
FM
on
off
total
on
off
total
ies
oes
res
g
ge
gc
(BR)CES
GE(th)
V
This is only applied to TO-247AC package.
Pulse width limited by max. junction temperature.
Refer to AN-1086 for guidelines for measuring V
2
CC
/ΔTJ
= 80% (V
/ΔT
J
CES
Collector-to-Emitter Breakdown Voltage
Temperature Coeff. of Breakdown Voltage
Collector-to-Emitter Saturation Voltage
Gate Threshold Voltage
Threshold Voltage temp. coefficient
Forward Transconductance
Collector-to-Emitter Leakage Current
Diode Forward Voltage Drop
Gate-to-Emitter Leakage Current
Total Gate Charge (turn-on)
Gate-to-Emitter Charge (turn-on)
Gate-to-Collector Charge (turn-on)
Turn-On Switching Loss
Turn-Off Switching Loss
Total Switching Loss
Turn-On delay time
Rise time
Turn-Off delay time
Fall time
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
Reverse Recovery Energy of the Diode
Diode Reverse Recovery Time
Peak Reverse Recovery Current
), V
GE
= 20V, L = 200μH, R
Parameter
Parameter
J
J
= 25°C (unless otherwise specified)
G
= 25°C (unless otherwise specified)
= 10Ω.
(BR)CES
safely.
Min.
Min.
600
4.0
FULL SQUARE
5
Typ.
Typ.
1275
1900
1625
1585
3210
3025
0.30
1.65
2.05
1.95
1.45
450
625
145
165
245
845
115
-21
2.0
1.0
60
55
90
40
32
95
28
35
40
35
45
45
Max. Units
Max. Units
1000
1141
1481
2622
2.14
2.91
±100
150
140
176
6.5
53
78
42
56
46
mV/°C V
V/°C V
μA
nA
nC
pF
μJ
ns
μJ
ns
μs
μJ
ns
V
V
V
S
V
A
V
I
I
I
V
V
V
V
I
I
V
I
V
V
I
R
Energy losses include tail & diode reverse recovery
I
R
I
R
Energy losses include tail & diode reverse recovery
I
R
T
V
V
f = 1.0Mhz
T
V
Rg = 10Ω, V
V
Rg = 10Ω, V
T
V
V
C
C
C
F
F
C
C
C
C
C
J
J
J
GE
GE
CE
CE
CE
GE
GE
GE
GE
CC
G
G
G
G
GE
CC
CC
CC
CC
GE
= 48A
= 48A, T
= 48A, V
= 48A, V
= 48A, V
= 48A
= 48A, V
= 48A, V
= 48A, V
= 48A, V
=10Ω, L=200μH, L
= 175°C
= 175°C, I
= 175°C
= 10Ω, L = 200μH, L
= 10Ω, L = 200μH, L
= 10Ω, L = 200μH, L
= V
= V
= 50V, I
= 400V
= 30V
= 480V, Vp =600V
= 400V, Vp =600V
= 400V, I
= 0V, I
= 0V, I
= 0V, V
= 0V, V
= ±20V
= 15V
= 0V
= 15V, Rg = 10Ω, L =200μH, L
Conditions
GE
GE
, I
, I
J
C
C
GE
GE
GE
CC
CC
CC
CC
C
C
CE
CE
C
= 175°C
GE
GE
= 150μA
= 1mA (25°C-175°C)
C
= 1.4mA
= 1.0mA (25°C - 175°C)
F
= 48A, PW = 80μs
= 15V, T
= 15V, T
= 15V, T
= 400V, V
= 400V, V
= 400V, V
= 400V, V
= 600V
= 600V, T
= 192A
= 48A
= +15V to 0V
= +15V to 0V
Conditions
S
=150nH, T
J
J
J
= 25°C
= 150°C
= 175°C
GE
S
GE
S
GE
GE
S
J
= 150nH, T
= 150nH, T
= 150nH
= 175°C
=15V
= 15V
= 15V
= 15V
J
= 175°C
s
= 150nH
J
J
= 25°C
= 25°C
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WF1, WF2
17, 18, 19
22, CT3
Ref.Fig
9,10,11
Ref.Fig
11, 12
13, 15
14, 16
20, 21
9, 10,
5,6,7
WF1
WF2
WF4
CT6
CT6
CT1
CT4
CT4
CT4
CT4
CT2
WF3
24
23
8
4

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