IGBT MOD DUAL 1200V 400A NFH SER

CM400DU-24NFH

Manufacturer Part NumberCM400DU-24NFH
DescriptionIGBT MOD DUAL 1200V 400A NFH SER
ManufacturerPowerex Inc
SeriesIGBTMOD™
TypeIGBT Module
CM400DU-24NFH datasheet
 

Specifications of CM400DU-24NFH

ConfigurationHalf BridgeVoltage - Collector Emitter Breakdown (max)1200V
Vce(on) (max) @ Vge, Ic6.5V @ 15V, 400ACurrent - Collector (ic) (max)400A
Current - Collector Cutoff (max)1mAInput Capacitance (cies) @ Vce63nF @ 10V
Power - Max1040WInputStandard
Ntc ThermistorNoMounting TypeChassis Mount
Package / CaseModuleTransistor PolarityN Channel
Dc Collector Current400ACollector Emitter Voltage Vces1.2kV
Power Dissipation Pd1.04kWCollector Emitter Voltage V(br)ceo1.2kV
Voltage1200VCurrent400A
Circuit ConfigurationDualRohs CompliantYes
Recommended Gate DriverVLA502Recommended Dc To Dc ConverterVLA106-15242 or VLA106-24242
Interface Circuit Ref DesignBG2A-NFHLead Free Status / RoHS StatusLead free / RoHS Compliant
For Use WithBG2C-5015 - KIT DEV BOARD 5A FOR IGBTBG2C-3015 - KIT DEV BOARD 3A FOR IGBTBG2A-NFH - KIT DEV BOARD FOR IGBTIgbt Type-
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Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
www.pwrx.com
A
M
D
L
E
C2E1
E2
U
W
Y
L
Q
Q
S - NUTS (3 TYP)
T - (4 TYP)
AA
AA
Z
Z
K
K
C
LABEL
C2E1
E2
Outline Drawing and Circuit Diagram
Dimensions
Inches
Millimeters
A
4.33
110.0
B
3.15
80.0
C
1.14+0.04/-0.01 29.0+1.0/-0.5
D
3.66±0.01
93.0±0.25
E
2.44±0.01
62.0±0.25
F
0.83
21.2
G
0.16
4.0
H
0.24
6.0
J
0.59
15.0
K
0.55
14.0
L
0.35
9.0
M
0.33
8.5
N
0.69
17.5
3/11 Rev. 1
T C MEASUREMENT POINT
M
V
H
J
V
B
C1
H
R
V
V
N
X
G
P
Z
K
M
F
G2
E2
C1
E1
G1
Dimensions
Inches
Millimeters
P
0.85
21.5
Q
0.98
25.0
R
0.86
21.75
S
M6 Metric
M6
T
0.26 Dia.
6.5 Dia.
U
0.4
10.0
V
0.02
0.5
W
0.87
22.2
X
0.72
18.25
Y
0.36
9.25
Z
0.71
18.0
AA
0.28
7.0
CM400DU-24NFH
Dual IGBTMOD™
NFH-Series Module
400 Amperes/1200 Volts
Description:
Powerex IGBTMOD™ Modules are
designed for use in high
frequency applications; 30 kHz
for hard switching applications
and 60 to 70 kHz for soft switching
applications. Each module
consists of two IGBT Transistors
in a half-bridge configuration with
each transistor having a reverse-
connected super-fast recovery
free-wheel diode. All components
and interconnects are isolated from
the heat sinking baseplate, offering
simplified system assembly and
thermal management.
Features:
£ Low E SW(off)
£ Discrete Super-Fast Recovery
Free-Wheel Diode
£ Isolated Baseplate for Easy
Heat Sinking
Applications:
£ Power Supplies
£ Induction Heating
£ Welders
Ordering Information:
Example: Select the complete
part module number you desire
from the table below -i.e.
CM400DU-24NFH is a 1200V
(V CES ), 400 Ampere Dual
IGBTMOD™ Power Module.
Type
Current Rating
V CES
Amperes
Volts (x 50)
CM
400
24
1

CM400DU-24NFH Summary of contents

  • Page 1

    ... Power Supplies £ Induction Heating £ Welders Ordering Information: Example: Select the complete part module number you desire from the table below -i.e. CM400DU-24NFH is a 1200V (V CES ), 400 Ampere Dual IGBTMOD™ Power Module. Type Current Rating V CES Amperes Volts (x 50) ...

  • Page 2

    ... Test Conditions C ies C oes 10V res t d(on 600V 400A, t d(off) V GE1 = V GE2 = 15V 0.78Ω Inductive Load t rr Switching Operation 400A Symbol CM400DU-24NFH T j –40 to 150 T stg –40 to 125 V CES 1200 V GES ± 400* Amperes I CM 800* Amperes I E 400* Amperes ...

  • Page 3

    ... Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com CM400DU-24NFH Dual IGBTMOD™ NFH-Series Module 400 Amperes/1200 Volts Thermal and Mechanical Characteristics °C unless otherwise specified Characteristics Thermal Resistance, Junction to Case Thermal Resistance, Junction to Case Thermal Resistance, Junction to Case ...

  • Page 4

    ... Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com CM400DU-24NFH Dual IGBTMOD™ NFH-Series Module 400 Amperes/1200 Volts HALF-BRIDGE SWITCHING CHARACTERISTICS (TYPICAL d(off) t d(on 600V ±15V 0.78Ω 125°C j Inductive Load COLLECTOR CURRENT (AMPERES) C SWITCHING LOSS VS. COLLECTOR CURRENT ...