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6MBP50VDA060-50 Datasheet(PDF) 1 Page - Fuji Electric

Part No. 6MBP50VDA060-50
Description  IGBT MODULE (V series) 600V / 50A / IPM
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Maker  FUJI [Fuji Electric]
Homepage  http://www.fujielectric.co.jp/eng/fdt/scd
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6MBP50VDA060-50 Datasheet(HTML) 1 Page - Fuji Electric

   
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http://www.fujielectric.com/products/semiconductor/
6MBP50VDA060-50
IGBT Modules
IGBT MODULE (V series)
600V / 50A / IPM
Maximum Ratings and Characteristics
Absolute Maximum Ratings (TC=25ºC, VCC=15V unless otherwise specified)
Items
Symbol
Min.
Max.
Units
Collector-Emitter Voltage (*1)
VCES
0
600
V
Short Circuit Voltage
VSC
200
400
V
Collector Current
DC
IC
-
50
A
1ms
Icp
-
100
A
Duty=100% (*2)
-IC
-
50
A
Collector Power Dissipation 1 device (*3)
PC
-
201
W
Collector Current
DC
IC
-
-
A
1ms
Icp
-
-
A
Forward Current of Diode
IF
-
-
A
Collector Power Dissipation 1 device (*3)
PC
-
-
W
Supply Voltage of Pre-Driver (*4)
VCC
-0.5
20
V
Input Signal Voltage (*5)
Vin
-0.5
VCC+0.5
V
Alarm Signal Voltage (*6)
VALM
-0.5
VCC
V
Alarm Signal Current (*7)
IALM
-
20
mA
Junction Temperature
Tj
-
150
ºC
Operating Case Temperature
Topr
-20
110
ºC
Storage Temperature
Tstg
-40
125
ºC
Solder Temperature (*8)
Tsol
-
260
ºC
Isolating Voltage (*9)
Viso
-
AC2500
Vrms
Screw Torque
Terminal (M4)
-
-
1.7
Nm
Mounting (M4)
Note *1: VCES shall be applied to the input voltage between terminal P-(U,V, W) and (U,V, W, B)-N.
Note *2: Duty=125ºC/Rth(j-c)D /(IF×VF Max.)×100
Note *3: PC=125ºC/Rth(j-c)Q (Inverter & Brake)
Note *4: VCC shall be applied to the input voltage between terminal No.4 and 1, 8 and 5, 12 and 9, 14 and 13.
Note *5: Vin shall be applied to the input voltage between terminal No.3 and 1, 7 and 5, 11 and 9, 15~18 and 13.
Note *6: VALM shall be applied to the voltage between terminal No.2 and 1, 6 and 5, 10 and 9, 19 and 13.
Note *7: IALM shall be applied to the input current to terminal No.2,6,10 and 19.
Note *8: Immersion time 10±1sec. 1time.
Note *9: Terminal to base, 50/60Hz sine wave 1min. All terminals should be connected together during the test.
Features
• Temperature protection provided by directly detecting
the junction temperature of the IGBTs
• Low power loss and soft switching
• High performance and high reliability IGBT with overheating
protection
• Higher reliability because of a big decrease in number of
parts in built-in control circuit


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