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PDF APTGF90TDU60P Data sheet ( Hoja de datos )

Número de pieza APTGF90TDU60P
Descripción Triple dual Common Source NPT IGBT Power Module
Fabricantes Advanced Power Technology 
Logotipo Advanced Power Technology Logotipo



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No Preview Available ! APTGF90TDU60P Hoja de datos, Descripción, Manual

APTGF90TDU60Pwww.DataSheet4U.com
Triple dual Common Source
NPT IGBT Power Module
VCES = 600V
IC = 90A @ Tc = 80°C
C1
G1
E1
E2
G2
C2
C3
G3
E1/E2
E3
E4
G4
C4
C5
G5
E3/E4
E5
E6
G6
C6
C1
E1/E2
G1
E1
E2
G2
C2
C3
E3 /E4
G3
E3
E4
G4
C4
C5
E5 /E 6
G5
E5
E6
G6
C6
Absolute maximum ratings
Symbol
Parameter
VCES Collector - Emitter Breakdown Voltage
IC Continuous Collector Current
ICM
VGE
PD
RBSOA
Pulsed Collector Current
Gate – Emitter Voltage
Maximum Power Dissipation
Reverse Bias Safe Operating Area
Application
AC Switches
Switched Mode Power Supplies
Uninterruptible Power Supplies
E5/E6 Features
Non Punch Through (NPT) THUNDERBOLT IGBT®
- Low voltage drop
- Low tail current
- Switching frequency up to 100 kHz
- Soft recovery parallel diodes
- Low diode VF
- Low leakage current
- Avalanche energy rated
- RBSOA and SCSOA rated
Kelvin emitter for easy drive
Very low stray inductance
- Symmetrical design
- Lead frames for power connections
High level of integration
Benefits
Outstanding performance at high frequency
operation
Direct mounting to heatsink (isolated package)
Low junction to case thermal resistance
Solderable terminals both for power and signal for
easy PCB mounting
Very low (12mm) profile
Easy paralleling due to positive TC of VCEsat
Each leg can be easily paralleled to achieve a dual
common source configuration of three times the
current capability
Tc = 25°C
Tc = 80°C
Tc = 25°C
Tc = 25°C
Tj = 150°C
Max ratings
600
110
90
315
±20
416
315A @ 600V
Unit
V
A
V
W
These Devices are sensitive to Electrostatic Discharge. Proper Handing Procedures Should Be Followed.
APT website – http://www.advancedpower.com
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APTGF90TDU60P pdf
Turn-On Delay Time vs Collector Current
35
30
VGE = 15V
25
20
15
25
Tj = 25°C
VCE = 400V
RG = 5
50 75 100 125
ICE, Collector to Emitter Current (A)
150
Current Rise Time vs Collector Current
80
VCE = 400V
60 RG = 5
40 VGE=15V,
TJ=125°C
20
0
25 50 75 100 125 150
ICE, Collector to Emitter Current (A)
Turn-On Energy Loss vs Collector Current
8
VCE = 400V
6 RG = 5
4
TJ=125°C,
VGE=15V
2
TJ=25°C,
VGE=15V
0
0 25 50 75 100 125 150
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Gate Resistance
16
VCE = 400V
VGE = 15V
Eon, 180A
Eoff, 180A
12 TJ= 125°C
Eoff, 90A
8 Eon, 90A
Eoff, 45A
4
Eon, 45A
0
0 10 20 30 40 50
Gate Resistance (Ohms)
APTGF90TDU60Pwww.DataSheet4U.com
Turn-Off Delay Time vs Collector Current
250
200 VGE=15V,
TJ=125°C
150
100
50
25
VCE = 400V
RG = 5
50
75
VGE=15V,
TJ=25°C
100 125 150
ICE, Collector to Emitter Current (A)
Current Fall Time vs Collector Current
80
VCE = 400V, VGE = 15V, RG = 5
60
TJ = 125°C
40
20 TJ = 25°C
0
25 50 75 100 125
ICE, Collector to Emitter Current (A)
150
Turn-Off Energy Loss vs Collector Current
6
5
VCE = 400V
VGE = 15V
4 RG = 5
TJ = 125°C
3 TJ = 25°C
2
1
0
0 25 50 75 100 125 150
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Junction Temp.
10
VCE = 400V
VGE = 15V
8 RG = 5
Eon, 180A
6 Eoff, 180A
4 Eon, 90A
2
Eoff, 45A
Eoff, 90A
Eon, 45A
0
0 25 50 75 100 125
TJ, Junction Temperature (°C)
APT website – http://www.advancedpower.com
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