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What is AUIRF7669L2TR?

This electronic component, produced by the manufacturer "Infineon", performs the same function as "Power MOSFET ( Transistor )".


AUIRF7669L2TR Datasheet PDF - Infineon

Part Number AUIRF7669L2TR
Description Power MOSFET ( Transistor )
Manufacturers Infineon 
Logo Infineon Logo 


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AUTOMOTIVE GRADE
AUIRF7669L2TR
Advanced Process Technology
Optimized for Automotive Motor Drive, DC-DC and
other Heavy Load Applications
Exceptionally Small Footprint and Low Profile
High Power Density
Low Parasitic Parameters
Dual Sided Cooling
175°C Operating Temperature
Repetitive Avalanche Capability for Robustness and Reliability
Lead free, RoHS and Halogen free
 Automotive Qualified *
Automotive DirectFET® Power MOSFET
V(BR)DSS
RDS(on) typ.
max.
ID (Silicon Limited)
Qg (typical)
100V
3.5m
4.4m
114A
81nC
 
D
S
S
GS
S
S
S
D
S
S
 
Applicable DirectFET® Outline and Substrate Outline
L8 DirectFET® ISOMETRIC
SB SC
M2 M4
L4 L6 L8
Description
The AUIRF7669L2TR combines the latest Automotive HEXFET® Power MOSFET Silicon technology with the advanced DirectFETTM packaging to
achieve the lowest on-state resistance in a package that has the footprint of a DPak (TO-252AA) and only 0.7 mm profile. The DirectFET package is
compatible with existing layout geometries used in power applications, PCB assembly equipment and vapor phase, infra-red or convection soldering
techniques, when application note AN-1035 is followed regarding the manufacturing methods and processes. The DirectFET package allows dual
sided cooling to maximize thermal transfer in automotive power systems.
This HEXFET® Power MOSFET is designed for applications where efficiency and power density are essential. The advanced DirectFET packaging
platform coupled with the latest silicon technology allows the AUIRF7669L2TR to offer substantial system level savings and performance improvement
specifically in motor drive, high frequency DC-DC and other heavy load applications on ICE, HEV and EV platforms. This MOSFET utilizes the latest
processing techniques to achieve low on-resistance and low Qg per silicon area. Additional features of this MOSFET are 175°C operating junction
temperature and high repetitive peak current capability. These features combine to make this MOSFET a highly efficient, robust and reliable device for
high current automotive applications..
Base Part Number  
Package Type  
Standard Pack
Form
Quantity
Orderable Part Number  
AUIRF7669L2
DirectFET Large Can
Tape and Reel
4000
AUIRF7669L2TR
Absolute Maximum Ratings
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only; and
functional operation of the device at these or any other condition beyond those indicated in the specifications is not implied. Exposure to absolute-
maximum-rated conditions for extended periods may affect device reliability. The thermal resistance and power dissipation ratings are measured under
board mounted and still air conditions. Ambient temperature (TA) is 25°C, unless otherwise specified.
VDS
VGS
ID @ TC = 25°C
ID @ TC = 100°C
ID @ TA = 25°C
ID @ TC = 25°C
IDM
PD @TC = 25°C
PD @TA = 25°C
EAS
EAS (tested)
IAR
EAR
TP
TJ
TSTG
Parameter
Drain-to-Source Voltage
Gate-to-Source Voltage
Continuous Drain Current, VGS @ 10V (Silicon Limited)
Continuous Drain Current, VGS @ 10V (Silicon Limited)
Continuous Drain Current, VGS @ 10V (Silicon Limited)
Continuous Drain Current, VGS @ 10V (Package Limited)
Pulsed Drain Current
Power Dissipation
Power Dissipation
Single Pulse Avalanche Energy (Thermally Limited)
Single Pulse Avalanche Energy (Tested Value)
Avalanche Current
Repetitive Avalanche Energy
Peak Soldering Temperature
Operating Junction and
Storage Temperature Range
Max.
100
±20
114
81
19
375
460
100
3.3
260
850
See Fig. 16, 17, 18a, 18b
260
-55 to + 175
Units
V
A
W
mJ
A
mJ
°C  
HEXFET® is a registered trademark of Infineon.
*Qualification standards can be found at www.infineon.com
1 2015-11-16

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AUIRF7669L2TR equivalent
 
6.0
5.0
4.0
AUIRF7669L2TR
1000
VGS = 0V
TJ = -40°C
100
TJ = 25°C
TJ = 175°C
3.0
ID = 250µA
2.0
ID = 1.0mA
ID = 1.0A
1.0
-75 -50 -25 0 25 50 75 100 125 150 175
TJ , Temperature ( °C )
Fig. 7 Typical Threshold Voltage vs.
Junction Temperature
250
TJ = 25°C
200
150
TJ = 175°C
100
50
0
0
VDS = 10V
20µs PULSE WIDTH
25 50 75 100 125 150 175 200
ID,Drain-to-Source Current (A)
Fig 9. Typical Forward Trans conductance vs. Drain Current
14.0
12.0
10.0
8.0
ID= 68A
VDS= 80V
VDS= 50V
VDS= 20V
6.0
4.0
2.0
0.0
0
20 40 60 80 100
QG, Total Gate Charge (nC)
120
Fig 11. Typical Gate Charge vs.
Gate-to-Source Voltage
 5
10
1.0
0.0
0.2 0.4 0.6 0.8 1.0
VSD, Source-to-Drain Voltage (V)
1.2
Fig 8. Typical Source-Drain Diode Forward Voltage
100000
10000
VGS = 0V, f = 1 MHZ
Ciss = C gs + Cgd, C ds SHORTED
Crss = Cgd
Coss = Cds + Cgd
Ciss
Coss
1000
Crss
100
1
10
VDS, Drain-to-Source Voltage (V)
100
Fig 10. Typical Capacitance vs. Drain-to-Source Voltage
120
100
80
60
40
20
0
25
50 75 100 125 150
TC , Case Temperature (°C)
175
Fig 12. Maximum Drain Current vs. Case Temperature
2015-11-16


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