CM1400DU-24NF Powerex Inc, CM1400DU-24NF Datasheet - Page 4

IGBT MOD DUAL 1200V 1400A MEGA

CM1400DU-24NF

Manufacturer Part Number
CM1400DU-24NF
Description
IGBT MOD DUAL 1200V 1400A MEGA
Manufacturer
Powerex Inc
Series
IGBTMOD™r
Type
IGBT Moduler
Datasheet

Specifications of CM1400DU-24NF

Configuration
Half Bridge
Voltage - Collector Emitter Breakdown (max)
1200V
Vce(on) (max) @ Vge, Ic
2.5V @ 15V, 1400A
Current - Collector (ic) (max)
1400A
Current - Collector Cutoff (max)
1mA
Input Capacitance (cies) @ Vce
220nF @ 10V
Power - Max
3900W
Input
Standard
Ntc Thermistor
No
Mounting Type
Chassis Mount
Package / Case
Module
Transistor Polarity
N Channel
Dc Collector Current
1.4kA
Collector Emitter Voltage Vces
1.2kV
Power Dissipation Pd
3.9kW
Collector Emitter Voltage V(br)ceo
1.2kV
Distributorinventory
View
Voltage
1200V
Current
1400A
Circuit Configuration
Dual
Rohs Compliant
No
Recommended Gate Driver
VLA500
Interface Circuit Ref Design
BG2A-NF
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
For Use With
BG2B-5015 - KIT DEV BOARD 2CN 5A FOR IGBTBG2B-3015 - KIT DEV BOARD 2CN 3A FOR IGBTBG2B-1515 - KIT DEV BOARD 1.5A FOR IGBTBG2A-NF - KIT DEV BOARD FOR IGBT
Igbt Type
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
Other names
835-1007

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CM1400DU-24NF
Manufacturer:
MITSUBISHI/三菱
Quantity:
20 000
Part Number:
CM1400DU-24NF
Quantity:
55
4
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com
CM1400DU-24NF
Mega Power Dual™ IGBTMOD
1400 Amperes/1200 Volts
10
10
10
10
10
10
10
10
10
10
10
10
-1
-2
-3
3
2
1
4
3
2
1
1
0
10
10
0
2
-3
Per Unit Base
R
R
Single Pulse
T
C
th(j-c)
th(j-c)
IMPEDANCE CHARACTERISTICS
t
d(off)
COLLECTOR CURRENT, I
EXTERNAL GATE RESISTANCE, R
SWITCHING CHARACTERISTICS
= 25°C
EXTERNAL GATE RESISTANCE
0.5
10
SWITCHING ENERGY VS.
= 0.032°C/W (IGBT)
= 0.053°C/W (FWDi)
TRANSIENT THERMAL
-2
(IGBT & FWDi)
HALF-BRIDGE
1.0
(TYPICAL)
(TYPICAL)
TIME, (s)
10
10
t
10
r
-1
-5
3
t
f
1.5
t
d(on)
C
, (AMPERES)
V
V
R
T
Inductive Load
Inductive Load
V
V
T
I
CC
GE
j
G
C
= 125°C
10
j
CC
GE
10
= 125°C
= 0.22Ω
= 1400A
= 600V
= 15V
2.0
-4
0
= 600V
= 15V
E
E
G
, (Ω)
SW(off)
SW(on)
10
10
10
2.5
-3
4
1
10
10
10
10
10
10
10
10
10
10
3
2
1
0
3
2
1
3
2
1
SWITCHING LOSS VS. COLLECTOR CURRENT
10
10
0
REVERSE RECOVERY CHARACTERISTICS
2
2
REVERSE RECOVERY ENERGY VS.
COLLECTOR CURRENT, I
EXTERNAL GATE RESISTANCE, R
EXTERNAL GATE RESISTANCE
EMITTER CURRENT, I
0.5
1.0
(TYPICAL)
(TYPICAL)
(TYPICAL)
10
10
3
3
1.5
I
E
t
rr
rr
, (AMPERES)
C
, (AMPERES)
V
V
R
T
Inductive Load
Inductive Load
Inductive Load
V
V
T
R
V
V
T
I
j
CC
GE
G
C
CC
GE
j
CC
GE
j
= 125°C
G
= 125°C
= 125°C
= 1400A
= 0.22Ω
= 0.22Ω
= 600V
= 15V
2.0
= 600V
= 15V
= 600V
= 15V
E
E
G
, (Ω)
SW(on)
SW(off)
10
2.5
10
4
4
10
10
10
3
2
1
10
10
10
10
20
16
12
8
4
0
3
2
1
0
10
0
2
Inductive Load
V
V
T
R
I
C
REVERSE RECOVERY ENERGY VS.
CC
GE
j
G
= 125°C
= 1400A
= 0.22Ω
2000
EMITTER CURRENT, I
= 600V
= 15V
GATE CHARGE, V GE
GATE CHARGE, Q
EMITTER CURRENT
4000
V
(TYPICAL)
CC
10
= 400V
3
6000
E
, (AMPERES)
G
, (nC)
V
CC
8000
= 600V
02/10 Rev. 1
10000
10
4

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