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RFD14N05L

Fairchild Semiconductor
Part Number RFD14N05L
Manufacturer Fairchild Semiconductor
Description N-Channel Logic Level Power MOSFET
Published Mar 9, 2021
Detailed Description Data Sheet RFD14N05L, RFD14N05LSM October 2013 N-Channel Logic Level Power MOSFET 50 V, 14 A, 100 mΩ These are N-chann...
Datasheet PDF File RFD14N05L PDF File

RFD14N05L
RFD14N05L


Overview
Data Sheet RFD14N05L, RFD14N05LSM October 2013 N-Channel Logic Level Power MOSFET 50 V, 14 A, 100 mΩ These are N-channel power MOSFETs manufactured using the MegaFET process.
This process, which uses feature sizes approaching those of LSI integrated circuits, gives optimum utilization of silicon, resulting in outstanding performance.
They were designed for use in applications such as switching regulators, switching converters, motor drivers and relay drivers.
This performance is accomplished through a special gate oxide design which provides full rated conductance at gate bias in the 3V-5V range, thereby facilitating true on-off power control directly from logic level (5V) integrated circuits.
Formerly developmental type TA09870.
Ordering Information PART NUMBER PACKAGE BRAND RFD14N05L TO-251AA 14N05L RFD14N05LSM TO-252AA 14N05L RFD14N05LSM9A TO-252AA 14N05L NOTE: When ordering, use the entire part number.
Add the suffix 9A to obtain the TO-252AA variant in the tape and reel, i.
e.
, RFD14N05LSM9A.
Features • 14A, 50V • rDS(ON) = 0.
100Ω • Temperature Compensating PSPICE® Model • Can be Driven Directly from CMOS, NMOS, and TTL Circuits • Peak Current vs Pulse Width Curve • UIS Rating Curve • 175oC Operating Temperature • Related Literature - TB334 “Guidelines for Soldering Surface Mount Components to PC Boards” Symbol D G S Packaging JEDEC TO-251AA DRAIN (FLANGE) SOURCE DRAIN GATE JEDEC TO-252AA GATE SOURCE DRAIN (FLANGE) ©2004 Fairchild Semiconductor Corporation RFD14N05L, RFD14N05LSM Rev.
C0 RFD14N05L, RFD14N05LSM Absolute Maximum Ratings TC = 25oC, Unless Otherwise Specified Drain to Source Voltage (Note 1).
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VDSS Drain to Gate Voltage (RGS = 20kΩ) (Note 1) .
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VDGR Gate to Source Voltage .
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VGS Continuous Drain Current .
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