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PDF IRGPC40K Data sheet ( Hoja de datos )

Número de pieza IRGPC40K
Descripción INSULATED GATE BIPOLAR TRANSISTOR
Fabricantes International Rectifier 
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PD - 9.1077
INSULATED GATE BIPOLAR TRANSISTOR
Features
• Short circuit rated - 10µs @ 125°C, VGE = 15V
• Switching-loss rating includes all "tail" losses
• Optimized for high operating frequency (over
5kHz) See Fig. 1 for Current vs. Frequency
curve
C
G
E
n-channel
IRGPC40K
Short Circuit Rated
UltraFast IGBT
VCES = 600V
VCE(sat) 3.2V
@VGE = 15V, IC = 25A
Description
Insulated Gate Bipolar Transistors (IGBTs) from International Rectifier
have higher usable current densities than comparable bipolar transistors,
while at the same time having simpler gate-drive requirements of the
familiar power MOSFET. They provide substantial benefits to a host of
high-voltage, high-current applications.
These new short circuit rated devices are especially suited for motor
control and other applications requiring short circuit withstand capability.
Absolute Maximum Ratings
TO -2 47 AC
VCES
IC @ TC = 25°C
IC @ TC = 100°C
ICM
ILM
tsc
VGE
EARV
PD @ TC = 25°C
PD @ TC = 100°C
TJ
TSTG
Parameter
Collector-to-Emitter Voltage
Continuous Collector Current
Continuous Collector Current
Pulsed Collector Current 
Clamped Inductive Load Current ‚
Short Circuit Withstand Time
Gate-to-Emitter Voltage
Reverse Voltage Avalanche Energy ƒ
Maximum Power Dissipation
Maximum Power Dissipation
Operating Junction and
Storage Temperature Range
Soldering Temperature, for 10 sec.
Mounting torque, 6-32 or M3 screw.
Max.
600
42
25
84
84
10
±20
15
160
65
-55 to +150
300 (0.063 in. (1.6mm) from case)
10 lbf•in (1.1N•m)
Units
V
A
µs
V
mJ
W
°C
Thermal Resistance
RθJC
RθCS
RθJA
Wt
Parameter
Junction-to-Case
Case-to-Sink, flat, greased surface
Junction-to-Ambient, typical socket mount
Weight
Min.
------
------
------
------
Typ.
------
0.24
------
6 (0.21)
Max.
0.77
------
40
------
Units
°C/W
g (oz)

1 page




IRGPC40K pdf
IRGPC40K
2500
2000
1500
1000
VGE = 0V,
f = 1MHz
Cies = Cge + C gc , Cce SHORTED
Cres = C gc
Coes = C ce + C gc
Cie s
C oe s
500
Cre s
0A
1 10 100
VCE, Collector-to-Emitter Voltage (V)
Fig. 7 - Typical Capacitance vs.
Collector-to-Emitter Voltage
2.2
VCC = 480V
VGE = 15V
2.1
TC
IC
= 25°C
= 25A
2.0
1.9
1.8
1.7
1.6
0
A
10 20 30 40 50 60
RG , Gate Resistance ()
Fig. 9 - Typical Switching Losses vs. Gate
Resistance
20
VCE = 400V
IC = 25A
16
12
8
4
0
0 20 40 60
Qg , Total Gate Charge (nC)
Fig. 8 - Typical Gate Charge vs.
Gate-to-Emitter Voltage
A
80
10
IC = 50A
IC = 25A
1 IC = 13A
RG = 10
VGE = 15V
0.1 VCC = 480V
-60 -40 -20 0
A
20 40 60 80 100 120 140 160
TC, Case Temperature (°C)
Fig. 10 - Typical Switching Losses vs.
Case Temperature

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