PD412411
PD412411 is POW-R-BLOK Dual Diode Isolated Module (1100 Amperes / Up to 2400 Volts) manufactured by Powerex, Inc.
Description
:
Powerex Dual Diode Modules are designed for use in applications requiring rectification and isolated packaging. The modules are isolated for easy mounting with other ponents on a mon heatsink.
Features
:
T T T T Electrically Isolated Heatsinking pression Bonded Elements Metal Baseplate Low Thermal Impedance for Improved Current Capability
Benefits:
T No Additional Insulation ponents Required T Easy Installation T No Clamping ponents Required T Reduce Engineering Time
Applications:
T T T T T Bridge Circuits AC & DC Motor Drives Battery Supplies Power Supplies Large IGBT Circuit Front Ends
Ordering Information:
Select the plete eight-digit module part number from the table below. Example: PD412411 is a 2400 Volt, 1100A Average Dual Diode TM Isolated POW-R-BLOK Module
Type
PD41
Current Voltage Volts (x100) Amperes (x100)
18 20 22 24 11
11/06/2002
PRELIMINARY
Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (724) 925-7272
PD41__11
POW-R-BLOK Dual Diode Isolated Module 1100 Amperes / Up to 2400 Volts
Absolute Maximum Ratings
Characteristics Repetitive Peak Reverse Blocking Voltage Non-Repetitive Peak Blocking Voltage (t < 5 msec) RMS Current Per Diode (180 Conduction) o
Conditions
Symbol VRRM VRSM Up to 2400 VRRM + 100V 1885 1725 1570 1415 1200 1100 1000 900 50,890 46,400 33,925 30,935 44,250 40,350 29,500 26,900 23,690 18,615 3.63 x 10
6 6
Units V V A A A A A A A A A A A A A A A A A A A sec A sec °C °C in.
- Lb. Nm in.
- Lb. Nm g lb V
2 2
180° Conduction, TC=80° C 180° Conduction, TC=87° C 180° Conduction, TC=95° C 180° Conduction, TC=98° C 180° Conduction, TC=80° C 180° Conduction, TC=87° C 180° Conduction, TC=95° C 180° Conduction, TC=98° C 60 Hz 50 Hz 60 Hz 50 Hz 60 Hz 50 Hz 60 Hz 50 Hz 60 Hz, Tj = 125C, Vr = Vrrm 60 Hz, Tj = 125C, Vr = Vrrm 8.3 milliseconds 10 milliseconds
IF(RMS) IF(RMS) IF(RMS) IF(RMS) IF(AV) IF(AV) IF(AV) IF(AV) IFSM IFSM IFSM IFSM IFSM IFSM IFSM IFSM IFSM IFSM It It TJ Tstg
2 2
Average Forward Current...