6MBP150TEA060

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 ci...

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SeekIC No. : 004238740 Detail

6MBP150TEA060: 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 overheatin...

floor Price/Ceiling Price

Part Number:
6MBP150TEA060
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/29

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Product Details

Description



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



Specifications

<
Item Symbol
Rating
Unit
Min.
Max.
Bus voltage DC VDC
0
450
V
Surge VDC(surge)
0
500
V
Short operating VSC
200
400
V
Collector-Emitter voltage *1 VCES
0
600
V
Inverter Collector current DC IC
-
150
A
1ms ICP
-
300
A
Duty=68.2% *2 -IC
-
150
A
Collector power dissipation One transistor *3 PC
-
431
W
Supply voltage of Pre-Driver *4 VCC
-0.5
20
V
Input signal voltage *5 Vin
-0.5
VCC+0.5
V
Input signal current Iin
--
3
mA
Alarm signal voltage *6 VALM
-0.5
VCC
V
Alarm signal current *7 IALM
-
20
mA
Junction temperature Tj
-
150
Operating case temperature Topr
-20
100
Storage temperature Tstg
-40
125
Solder temperature *8 Tsol
-
260
 
Isolating voltage (Terminal to base 50/60Hz sine wave 1min.) Viso
-
AC2500
V
Screw torque Mounting (M5)  
-
3.5
N`m

Note
*1 : Vces shall be applied to the input voltage between terminal P and U or ‚u or W, N and U or V or W
*2 : 125°C/FWD Rth(j-c)/(Ic x VF MAX)=125/0.47/(150 x 2.6) x 100=68.2%
*3 : Pc=125°C/IGBT Rth(j-c)=125/0.29=431W [Inverter]
*4 : VCC shall be applied to the input voltage between terminal No.4 and 1, 8 and 5, 12 and 9, 14 and 13
*5 : Vin shall be applied to the input voltage between terminal No.3 and 1, 7 and 5, 11 and 9, 16,17,18 and 13.
*6 :VALM shall be applied to the voltage between terminal No.2 and 1, No6 and 5, No10 and 9, No.19 and 13.
*7 : IALMshall be applied to the input current to terminal No.2,6,10 and 19.
*8 : Immersion time 10±1sec.



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