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PDF APTGF100DA120T Data sheet ( Hoja de datos )

Número de pieza APTGF100DA120T
Descripción Boost chopper NPT IGBT Power Module
Fabricantes Advanced Power Technology 
Logotipo Advanced Power Technology Logotipo



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No Preview Available ! APTGF100DA120T Hoja de datos, Descripción, Manual

APTGF100DA120T
Boost chopper
NPT IGBT Power Module
VCES = 1200V
IC = 100A @ Tc = 80°C
VBUS SENSE
VBUS
NT C2
CR1
Q2
G2
E2
0/VBU S
OUT
NT C1
VBUS
VBUS
SENSE
G2
E2
0/VBUS
E2
G2
OUT
OUT
NTC2
NTC1
Application
· AC and DC motor control
· Switched Mode Power Supplies
· Power Factor Correction
Features
· Non Punch Through (NPT) FAST IGBT
- Low voltage drop
- Low tail current
- Switching frequency up to 50 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
· Internal thermistor for temperature monitoring
· High level of integration
Benefits
· Outstanding performance at high frequency
operation
· Stable temperature behavior
· Very rugged
· Direct mounting to heatsink (isolated package)
· Low junction to case thermal resistance
· Solderable terminals both for power and signal for
easy PCB mounting
· Easy paralleling due to positive TC of VCEsat
· Low profile
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
Tc = 25°C
Tc = 80°C
Tc = 25°C
Tc = 25°C
Tj = 150°C
Max ratings
1200
150
100
300
±20
568
300A @ 1200V
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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APTGF100DA120T pdf
Turn-On Delay Time vs Collector Current
45
VCE = 600V
40 RG = 2.5
VGE = 15V
35
30
25
0
50 100 150 200 250
ICE, Collector to Emitter Current (A)
Current Rise Time vs Collector Current
180
VCE = 600V
140 RG = 2.5
100
60 VGE=15V
20
0
50 100 150 200 250
ICE, Collector to Emitter Current (A)
Turn-On Energy Loss vs Collector Current
56
48
VCE = 600V
RG = 2.5
TJ=125°C,
VGE=15V
40
32
24 TJ=25°C,
16 VGE=15V
8
0
0 50 100 150 200 250
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Gate Resistance
36
32
VCE = 600V
VGE = 15V
Eon, 100A
28 TJ= 125°C
24
20 Eoff, 100A
16
12 Eon, 50A
8
4 Eoff, 50A
0
0 5 10 15 20 25
Gate Resistance (Ohms)
APTGF100DA120T
Turn-Off Delay Time vs Collector Current
400
VGE=15V,
350 TJ=125°C
300
250
VCE = 600V
RG = 2.5
200
VGE=15V,
TJ=25°C
0 50 100 150 200
ICE, Collector to Emitter Current (A)
250
Current Fall Time vs Collector Current
50
TJ = 125°C
40
30
20
0
TJ = 25°C
VCE = 600V, VGE = 15V, RG = 2.5
50 100 150 200 250
ICE, Collector to Emitter Current (A)
Turn-Off Energy Loss vs Collector Current
16
VCE = 600V
12
VGE = 15V
RG = 2.5
TJ = 125°C
8
TJ = 25°C
4
0
0 50 100 150 200 250
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Junction Temp.
16
VCE = 600V
VGE = 15V
Eon, 100A
12 RG = 2.5
8
Eoff, 100A
4
Eon, 50A
Eoff, 50A
0
0 25 50 75 100 125
TJ, Junction Temperature (°C)
APT website – http://www.advancedpower.com
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