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HFS644

SemiHow
Part Number HFS644
Manufacturer SemiHow
Description 250V N-Channel MOSFET
Published Jun 7, 2015
Detailed Description HFS644 Dec 2005 HFS644 250V N-Channel MOSFET BVDSS = 250 V RDS(on) typ ȍ ID = 14 A FEATURES ‰ Originative New...
Datasheet PDF File HFS644 PDF File

HFS644
HFS644



Overview
HFS644 Dec 2005 HFS644 250V N-Channel MOSFET BVDSS = 250 V RDS(on) typ ȍ ID = 14 A FEATURES ‰ Originative New Design ‰ Superior Avalanche Rugged Technology ‰ Robust Gate Oxide Technology ‰ Very Low Intrinsic Capacitances ‰ Excellent Switching Characteristics ‰ Unrivalled Gate Charge : 42 nC (Typ.
) ‰ Extended Safe Operating Area ‰ Lower RDS(ON) ȍ 7\S #9GS=10V ‰ 100% Avalanche Tested TO-220F 12 3 1.
Gate 2.
Drain 3.
Source Absolute Maximum Ratings TC=25୅ unless otherwise specified Symbol Parameter Value VDSS ID IDM VGS EAS IAR EAR dv/dt Drain-Source Voltage Drain Current Drain Current Drain Current – Continuous (TC = 25ఁ͚ – Continuous (TC = 100ఁ͚ – Pulsed (Note 1) Gate-Source Voltage Single Pulsed Avalanche Energy (Note 2) Avalanche Current (Note 1) Repetitive Avalanche Energy (Note 1) Peak Diode Recovery dv/dt (Note 3) 250 14* 8.
9* 56* ρͤ͡ 480 14 13.
9 5.
5 PD Power Dissipation (TC = 25ఁ͚ ͞ ͵ΖΣΒΥΖ͑ΒΓΠΧΖ͑ͣͦఁ TJ, TSTG Operating and Storage Temperature Range TL Maximum lead temperature for soldering purposes, 1/8” from case for 5 seconds * Drain current limited by maximum junction temperature 43 0.
35 -55 to +150 300 Thermal Resistance Characteristics Symbol RșJC RșJA Junction-to-Case Parameter Junction-to-Ambient Typ.
--- Max.
2.
89 62.
5 Units V A A A V mJ A mJ V/ns W W/ఁ ఁ ఁ Units ఁ͠Έ క ΄Ͷ;ͺ͹΀Έ͑΃Ͷ·͟Ͳ͡͝͵ΖΔ͑ͣͦ͡͡ HFS644 Electrical Characteristics TC=25 qC unless otherwise specified Symbol Parameter Test Conditions Min On Characteristics VGS RDS(ON) Gate Threshold Voltage Static Drain-Source On-Resistance VDS = VGS, ID = 250 Ꮃ VGS = 10 V, ID = 7.
0 A 2.
0 -- Off Characteristics BVDSS ԩBVDSS /ԩTJ IDSS IGSSF IGSSR Drain-Source Breakdown Voltage Breakdown Voltage Temperature Coefficient Zero Gate Voltage Drain Current Gate-Body Leakage Current, Forward Gate-Body Leakage Current, Reverse VGS = 0 V, ID = 250 Ꮃ ID = 250 Ꮃ͑͝΃ΖΗΖΣΖΟΔΖΕ͑ΥΠͣͦఁ VDS = 250 V, VGS = 0 V VDS = 200 V, TC = 125ఁ VGS = 30 V, VDS = 0 V VGS = ...



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