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16N25E

Motorola
Part Number 16N25E
Manufacturer Motorola
Description MTB16N25E
Published Sep 2, 2013
Detailed Description MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MTB16N25E/D Designer's TMOS E-FET .™ High Energy Power ...
Datasheet PDF File 16N25E PDF File

16N25E
16N25E


Overview
MOTOROLA SEMICONDUCTOR TECHNICAL DATA Order this document by MTB16N25E/D Designer's TMOS E-FET .
™ High Energy Power FET D 2 PAK for Surface Mount N–Channel Enhancement–Mode Silicon Gate The D2PAK package has the capability of housing a larger die than any existing surface mount package which allows it to be used in applications that require the use of surface mount components with higher power and lower RDS(on) capabilities.
This advanced TMOS E–FET is designed to withstand high energy in the avalanche and commutation modes.
The new energy efficient design also offers a drain–to–source diode with a fast recovery time.
Designed for low voltage, high speed switching applications in power supplies, converters and PWM motor controls, these devices are particularly well suited for bridge circuits where diode speed and commutating safe operating areas are critical and offer additional safety margin against unexpected voltage transients.
• Avalanche Energy Specified • Source–to–Drain Diode Recovery Time Comparable to a Discrete Fast Recovery Diode • Diode is Characterized for Use in Bridge Circuits • IDSS and VDS(on) Specified at Elevated Temperature • Short Heatsink Tab Manufactured — Not Sheared • Specially Designed Leadframe for Maximum Power Dissipation • Available in 24 mm 13–inch/800 Unit Tape & Reel, Add –T4 Suffix to Part Number G S ™ Data Sheet MTB16N25E Motorola Preferred Device TMOS POWER FET 16 AMPERES 250 VOLTS RDS(on) = 0.
25 OHM ® D CASE 418B–02, Style 2 D2PAK MAXIMUM RATINGS (TC = 25°C unless otherwise noted) Rating Drain–Source Voltage Drain–Gate Voltage (RGS = 1.
0 MΩ) Gate–Source Voltage — Continuous Gate–Source Voltage — Non–Repetitive (tp ≤ 10 ms) Drain Current — Continuous Drain Current — Continuous @ TC = 100°C Drain Current — Single Pulse (tp ≤ 10 µs) Total Power Dissipation @ TC = 25°C Derate above 25°C Total Power Dissipation @ TA = 25°C, when mounted with the minimum recommended pad size Operating and Storage Temperature Range Single Pu...



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