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Drain to Source Voltage (Note 1) .......................... VDSS 60 V Drain to Gate Voltage (RGS = 20k) (Note 1) .................... VDGR 60 V Gate to Source Voltage ............................... VGS ±16 V Drain Current Continuous(TC= 25, VGS= 5V) .............................ID75 A Continuous (TA = 25, VGS = 10V) (Note 2)....................... ID75A Continuous (TC= 100, VGS= 5V) ............................ID75A Continuous (TA = 100, VGS = 4.5V) (Figure 2) ..................... ID75A Pulsed Drain Current................................IDM Figure 4 Pulsed Avalanche Rating...........................ULS Figure6,17,18 Power Dissipation ....................................PD260W Derate Above 25...................................1.75 W/ Operating and Storage Temperature ...................TJ, TSTG -55 to 175 Maximum Temperature for Soldering Leads at 0.063in (1.6mm) from Case for 10s ......................TL 300 Package Body for 10s, See Techbrief 334 ......................Tpkg 260 NOTE: 1. TJ = 25 to 150 CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. .
HUFA76443P3 Features
• Ultra Low On-Resistance - r DS(ON) = 0.008, VGS = 10V - r DS(ON) = 0.0095, VGS = 5V • Simulation Models - Temperature Compensated PSPICE® and SABER™ Electrical Models - Spice and SABER Thermal Impedance Models - www.fairchildsemi.com • Peak Current vs Pulse Width Curve • UIS Rating Curve • Switching Time vs RGS Curves
HUFA76443S3S Parameters
Technical/Catalog Information
HUFA76443S3S
Vendor
Fairchild Semiconductor
Category
Discrete Semiconductor Products
Mounting Type
Surface Mount
FET Polarity
N-Channel
Drain to Source Voltage (Vdss)
60V
Current - Continuous Drain (Id) @ 25° C
75A
Rds On (Max) @ Id, Vgs
8 mOhm @ 75A, 10V
Input Capacitance (Ciss) @ Vds
4115pF @ 25V
Power - Max
260W
Packaging
Tube
Gate Charge (Qg) @ Vgs
129nC @ 10V
Package / Case
D²Pak, SMD-220, TO-263 (2 leads + tab)
FET Feature
Logic Level Gate
Lead Free Status
Lead Free
RoHS Status
RoHS Compliant
Other Names
HUFA76443S3S HUFA76443S3S
HUFA76443S3S Maximum Ratings
Drain to Source Voltage (Note 1) .......................... VDSS 60 V Drain to Gate Voltage (RGS = 20k) (Note 1) .................... VDGR 60 V Gate to Source Voltage ............................... VGS ±16 V Drain Current Continuous(TC= 25, VGS= 5V) .............................ID75 A Continuous (TA = 25, VGS = 10V) (Note 2)....................... ID75A Continuous (TC= 100, VGS= 5V) ............................ID75A Continuous (TA = 100, VGS = 4.5V) (Figure 2) ..................... ID75A Pulsed Drain Current................................IDM Figure 4 Pulsed Avalanche Rating...........................ULS Figure6,17,18 Power Dissipation ....................................PD260W Derate Above 25...................................1.75 W/ Operating and Storage Temperature ...................TJ, TSTG -55 to 175 Maximum Temperature for Soldering Leads at 0.063in (1.6mm) from Case for 10s ......................TL 300 Package Body for 10s, See Techbrief 334 ......................Tpkg 260 NOTE: 1. TJ = 25 to 150 CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. .
HUFA76443S3S Features
• Ultra Low On-Resistance - r DS(ON) = 0.008, VGS = 10V - r DS(ON) = 0.0095, VGS = 5V • Simulation Models - Temperature Compensated PSPICE® and SABER™ Electrical Models - Spice and SABER Thermal Impedance Models - www.fairchildsemi.com • Peak Current vs Pulse Width Curve • UIS Rating Curve • Switching Time vs RGS Curves
HUFA76445P3 Parameters
Technical/Catalog Information
HUFA76445P3
Vendor
Fairchild Semiconductor
Category
Discrete Semiconductor Products
Mounting Type
Through Hole
FET Polarity
N-Channel
Drain to Source Voltage (Vdss)
60V
Current - Continuous Drain (Id) @ 25° C
75A
Rds On (Max) @ Id, Vgs
6.5 mOhm @ 75A, 10V
Input Capacitance (Ciss) @ Vds
4965pF @ 25V
Power - Max
310W
Packaging
Tube
Gate Charge (Qg) @ Vgs
150nC @ 10V
Package / Case
TO-220AB
FET Feature
Logic Level Gate
Lead Free Status
Lead Free
RoHS Status
RoHS Compliant
Other Names
HUFA76445P3 HUFA76445P3
HUFA76445P3 Maximum Ratings
Drain to Source Voltage (Note 1) .......................... VDSS 60 V Drain to Gate Voltage (RGS = 20k) (Note 1) .................... VDGR 60 V Gate to Source Voltage ............................... VGS ±16 V Drain Current Continuous(TC= 25, VGS= 5V) .............................ID75 A Continuous (TA = 25, VGS = 10V) (Note 2)....................... ID75A Continuous (TC= 100, VGS= 5V) ............................ID75A Continuous (TA = 100, VGS = 4.5V) (Figure 2) ..................... ID75A Pulsed Drain Current................................IDM Figure 4 Pulsed Avalanche Rating...........................ULS Figure6,17,18 Power Dissipation ...................................PD310W Derate Above 25 ..................................2.08 W/ Operating and Storage Temperature ...................TJ, TSTG -55 to 175 Maximum Temperature for Soldering Leads at 0.063in (1.6mm) from Case for 10s ......................TL 300 Package Body for 10s, See Techbrief 334 ......................Tpkg 260 NOTE: 1. TJ = 25 to 150 CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. .
HUFA76445P3 Features
• Ultra Low On-Resistance - r DS(ON)= 0.0065,VGS=10V - r DS(ON)= 0.0075,VGS=5V • Simulation Models - Temperature Compensated PSPICE® and SABER™Electrical Models - Spice and SABER Thermal Impedance Models - www.Intersil.com • Peak Current vs Pulse Width Curve • UIS Rating Curve • Switching Time vs RGS Curves