APT50GN60BG Microsemi Power Products Group, APT50GN60BG Datasheet

IGBT 600V 107A 366W TO247

APT50GN60BG

Manufacturer Part Number
APT50GN60BG
Description
IGBT 600V 107A 366W TO247
Manufacturer
Microsemi Power Products Group
Datasheet

Specifications of APT50GN60BG

Igbt Type
Trench and Field Stop
Voltage - Collector Emitter Breakdown (max)
600V
Vce(on) (max) @ Vge, Ic
1.85V @ 15V, 50A
Current - Collector (ic) (max)
107A
Power - Max
366W
Input Type
Standard
Mounting Type
Through Hole
Package / Case
TO-247
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
APT50GN60BGMI
APT50GN60BGMI

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
APT50GN60BG
Manufacturer:
CADDOC
Quantity:
2 000
TYPICAL PERFORMANCE CURVES
Utilizing the latest Field Stop and Trench Gate technologies, these IGBT's have ultra
low V
conduction loss. Easy paralleling is a result of very tight parameter distribution and a
slightly positive V
design and minimizes losses.
• Trench Gate: Low V
• Easy Paralleling
• 6µs Short Circuit Capability
• 175°C Rated
Applications: Welding, Inductive Heating, Solar Inverters, SMPS, Motor drives, UPS
MAXIMUM RATINGS
STATIC ELECTRICAL CHARACTERISTICS
V
Symbol
Symbol
T
V
V
600V Field Stop
SSOA
R
(BR)CES
V
J
CE(ON)
GE(TH)
I
I
V
I
,T
I
I
GES
P
CES
G(int)
T
CES
CM
C1
C2
GE
CE(ON)
D
L
STG
CAUTION: These Devices are Sensitive to Electrostatic Discharge. Proper Handling Procedures Should Be Followed.
and are ideal for low frequency applications that require absolute minimum
Parameter
Collector-Emitter Voltage
Gate-Emitter Voltage
Continuous Collector Current
Continuous Collector Current @ T
Pulsed Collector Current
Switching Safe Operating Area @ T
Total Power Dissipation
Operating and Storage Junction Temperature Range
Max. Lead Temp. for Soldering: 0.063" from Case for 10 Sec.
Characteristic / Test Conditions
Collector-Emitter Breakdown Voltage (V
Gate Threshold Voltage
Collector-Emitter On Voltage (V
Collector-Emitter On Voltage (V
Collector Cut-off Current (V
Collector Cut-off Current (V
Gate-Emitter Leakage Current (V
Intergrated Gate Resistor
CE(ON)
CE(on)
temperature coefficient. Low gate charge simplifies gate drive
1
(V
CE
CE
CE
@ T
8
= V
= 600V, V
= 600V, V
APT Website - http://www.advancedpower.com
@ T
®
GE
GE
C
C
GE
GE
= 175°C
J
= 110°C
= 15V, I
= 15V, I
C
= 175°C
= ±20V)
, I
= 25°C
C
GE
= 800µA, T
GE
GE
C
C
= 0V, I
= 0V, T
= 0V, T
= 50A, T
= 50A, T
C
j
j
j
= 4mA)
= 25°C)
= 125°C)
= 25°C)
j
j
= 25°C)
= 125°C)
All Ratings: T
2
2
*G Denotes RoHS Compliant, Pb Free Terminal Finish.
C
= 25°C unless otherwise specified.
1.05
MIN
600
5.0
APT50GN60B(G)
150A @ 600V
-55 to 175
1.45
TYP
600
±30
107
150
366
300
N/A
5.8
1.7
64
APT50GN60B
APT50GN60BG*
G
APT50GN60B(G)
G
C
600V
E
MAX
TBD
1.85
600
6.5
25
C
E
Amps
Watts
UNIT
Units
Volts
Volts
°C
µA
nA

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APT50GN60BG Summary of contents

Page 1

... 600V 0V 25° 600V 0V 125° ±20V) GE APT Website - http://www.advancedpower.com 600V APT50GN60B(G) APT50GN60B APT50GN60BG* *G Denotes RoHS Compliant, Pb Free Terminal Finish 25°C unless otherwise specified. C APT50GN60B(G) 600 ±30 107 64 150 150A @ 600V 366 -55 to 175 300 MIN TYP MAX 600 5 ...

Page 2

Characteristic Symbol C Input Capacitance ies C Output Capacitance oes C Reverse Transfer Capacitance res Gate-to-Emitter Plateau Voltage V GEP 3 Q Total Gate Charge g Q Gate-Emitter Charge ge Q Gate-Collector ("Miller ") Charge gc Switching Safe Operating Area ...

Page 3

V , COLLECTER-TO-EMITTER VOLTAGE (V) CE FIGURE 1, Output Characteristics(T J 160 250µs PULSE TEST<0.5 % DUTY CYCLE 140 120 100 GATE-TO-EMITTER VOLTAGE (V) ...

Page 4

I , COLLECTOR TO EMITTER CURRENT (A) CE FIGURE 9, Turn-On Delay Time vs Collector Current 120 100 ...

Page 5

TYPICAL PERFORMANCE CURVES 5,000 1,000 500 100 COLLECTOR-TO-EMITTER VOLTAGE (VOLTS) CE Figure 17, Capacitance vs Collector-To-Emitter Voltage 0.45 0. 0.9 0.35 0.7 0.30 0.25 0.5 0.20 0.15 0.3 0.10 0.1 ...

Page 6

APT40DQ60 D.U.T. Figure 21, Inductive Switching Test Circuit 90% Gate Voltage t d(off) 90% Collector Voltage t f 10% 0 Collector Current Switching Energy Figure 23, Turn-off Switching Waveforms and Definitions T = ...

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