6MBP50TEA060 FE, 6MBP50TEA060 Datasheet

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6MBP50TEA060

Manufacturer Part Number
6MBP50TEA060
Description
Econo IPM series 600V / 50A 6 in one-package
Manufacturer
FE
Datasheet

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6MBP50TEA060
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6MBP50TEA060-50
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6MBP50TEA060
Econo IPM series
Item
Bus voltage
Collector-Emitter voltage *1
Supply voltage of Pre-Driver *4
Input signal voltage *5
Input signal current
Alarm signal voltage *6
Alarm signal current *7
Junction temperature
Operating case temperature
Storage temperature
Solder temperature *8
Isolating voltage (Terminal to base, 50/60Hz sine wave 1min.)
Screw torque
Note
· Temperature protection provided by directly detecting the junction
· 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
temperature of the IGBTs
built-in control circuit
Absolute maximum ratings(at Tc=25°C unless otherwise specified)
Features
Maximum ratings and characteristics
*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
*4 : VCC shall be applied to the input voltage between terminal No.4 and 1, 8 and 5, 12 and 9, 14 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.
Collector current
*3 : Pc=125
Collector power dissipation One transistor *3
*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.
*8 : Immersion time 10
°C
/FWD Rth(j-c)/(Ic x VF MAX)=125/1.263/(50 x 2.6) x 100=76.1%
°C
/IGBT Rth(j-c)=125/0.87=144W [Inverter]
±
1sec.
Mounting (M5)
DC
1ms
Surge
Duty=76.1% *2
Short operating
DC
Symbol
V
V
V
V
I
I
-I
P
V
V
I
V
I
T
T
T
T
V
CP
in
ALM
C
opr
stg
C
C
j
sol
DC
DC(surge)
CES
ALM
iso
SC
CC
in
200
Min.
-20
-40
0
0
0
-
-
-
-
-
-
-
-
-
-
-0.5
-0.5
-0.5
Rating
600V / 50A 6 in one-package
AC2500
Vcc+0.5
450
500
400
600
100
144
150
100
125
260
Vcc
Max.
20
50
50
20
3
3.5
Unit
V
V
V
V
A
A
A
W
V
V
mA
V
mA
°C
°C
°C
°C
V
N·m

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6MBP50TEA060 Summary of contents

Page 1

... Econo IPM series 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 ...

Page 2

... Electrical characteristics (at Tc=Tj=25°C, Vcc=15V unless otherwise specified.) Main circuit Item Collector current at off signal input Collector-Emitter saturation voltage Forward voltage of FWD Turn-on time Turn-off time Reverse recovery time Maximum Avalanche Energy (A non-repetition) Control circuit Item Supply current of P-line side pre-driver(one unit) ...

Page 3

... Vin Vin Vin(th) Vin(th /Vin /Vin Vge (Inside IPM ) Vge (Inside IPM ) Fault (Inside IPM Fault (Inside IPM ) ) normal normal /ALM /ALM ALM ALM VccU VccU P P 20k 20k IPM IPM DC DC VinU VinU U U 15V 15V ...

Page 4

... Block diagram VccU VccU VinU VinU 1.5k 1.5k ALM ALM Vz Vz GNDU GNDU 1 1 Vcc V Vcc VinV VinV 1.5k 1.5k ALM ALM Vz Vz GNDV GNDV 5 5 VccW VccW 12 12 VinW VinW 11 11 ...

Page 5

... Characteristics Control circuit characteristics (Respresentative) P ower sup ply current vs. Switching frequency Tc=1 25°C 60 P-sid e N-sid Switch ing frequency : Hz) Under voltage vs. Junction temp erature tion (°C) Alarm hold tim e vs ...

Page 6

... Main circuit characteristics (Respresentative) Collector curren t vs. Collector-Em itter voltag e Tj= 17V llector-Em itter vo lta Vce (V) Collector curren t vs. Collector-Em itter voltag e Tj=125°C(Chip llector-Em itter vo lta Vce (V) Forward current vs ...

Page 7

... Switching Loss vs.Collector Current Edc=30 0V,Vcc=15 V,Tj=25° Collec tor cu rren (A) Power derating for IG BT (per device Case Tem p eratu (°C) Eon Eoff ...

Page 8

... Switching tim e vs. Collector current E dc=300V,Vcc=15V,Tj=25 10 000 1 000 100 Col lector cu rren (A) Reverse recovery characteristics trr,Irr vs. ard cu rren t:IF(A) ° trr125°C trr2 5° C Irr12 5° ...

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