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PDF APTGU30H120T3 Data sheet ( Hoja de datos )

Número de pieza APTGU30H120T3
Descripción Full bridge
Fabricantes Advanced Power Technology 
Logotipo Advanced Power Technology Logotipo



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No Preview Available ! APTGU30H120T3 Hoja de datos, Descripción, Manual

APTGU30H120T3
www.DataSheet4U.com
Full - Bridge
PT IGBT Power Module
13 14
Q1 Q3
18 CR1 CR3
19
22 7
23 8
Q2 Q4
26 CR2 CR4
27
11
10
4
3
29 30
15
31 32
16
R1
28 27 26 25
29
30
23 22
20 19 18
16
15
31
32
234
78
14
13
10 11 12
All multiple inputs and outputs must be shorted together
Example: 13/14 ; 29/30 ; 22/23 …
VCES = 1200V
IC = 30A @ Tc = 80°C
Application
Welding converters
Switched Mode Power Supplies
Uninterruptible Power Supplies
Motor control
Features
Power MOS 7® Punch Through (PT) IGBT
- Low conduction loss
- Ultra fast tail current shutoff
- Low gate charge
- Switching frequency capability in the 200kHz
range
- Soft recovery parallel diodes
- Low diode VF
Kelvin emitter for easy drive
Very low stray inductance
- Symmetrical design
Internal thermistor for temperature monitoring
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
Low profile
Each leg can be easily paralleled to achieve a phase
leg of twice the current capability
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
45
30
105
±20
208
105A @ 960V
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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APTGU30H120T3 pdf
Turn-On Delay Time vs Collector Current
40
VGE =10V
30
VGE =15V
20
10
0
0
TJ = 25°C
VCE = 600V
RG = 5
20 40 60
ICE, Collector to Emitter Current (A)
80
Current Rise Time vs Collector Current
60
VGE=10V
40
VGE=15V
20
0
0
VCE = 600V
RG = 5
20 40 60
ICE, Collector to Emitter Current (A)
80
Turn-On Energy Loss vs Collector Current
5
TJ=125°C,
VGE=15V
4 TJ=125°C,
VGE=10V
3
TJ=25°C,
VGE=10V
2
TJ=25°C,
VGE=15V
1 VCE = 600V
RG = 5
0
0 20 40 60 80
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Gate Resistance
8
6
4
2
0
0
Eon2, 60A
Eoff, 60A
Eon2, 30A
Eoff, 30A
Eoff, 15A
VCE = 600V
VGE = 15V
TJ= 125°C
Eon2, 15A
20 40
Gate Resistance (Ohms)
60
APTGU30H120T3
www.DataSheet4U.com
Turn-Off Delay Time vs Collector Current
200
VGE=15V,
160 TJ=125°C
VGE=10V,
120 TJ=125°C
80
40 VCE = 600V
RG = 5
0
VGE=10V, VGE=15V,
TJ=25°C TJ=25°C
0 20 40 60
ICE, Collector to Emitter Current (A)
80
Current Fall Time vs Collector Current
100
TJ=125°C
80
60
40
TJ = 25°C
20
0
0
VCE = 600V, VGE = 15V, RG = 5
20 40 60
ICE, Collector to Emitter Current (A)
80
Turn-Off Energy Loss vs Collector Current
4
TJ=125°C
3 TJ = 25°C
2
1 VCE = 600V
VGE = 15V
RG = 5
0
0 20 40 60 80
ICE, Collector to Emitter Current (A)
Switching Energy Losses vs Junction Temp.
6
VCE = 600V
VGE = 15V
RG = 5
4 Eon2, 60A
Eoff, 60A
2 Eon2, 30A
Eoff, 30A
Eon2, 15A
Eoff, 15A
0
0 25 50 75 100 125
TJ, Junction Temperature (°C)
APT website – http://www.advancedpower.com
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