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FQB20N06L

Fairchild Semiconductor

60V LOGIC N-Channel MOSFET - Fairchild Semiconductor


FQB20N06L
FQB20N06L

PDF File FQB20N06L PDF File



Description
FQB20N06L / FQI20N06L May 2001 QFET FQB20N06L / FQI20N06L 60V LOGIC N-Channel MOSFET General Description These N-Channel enhancement mode power field effect transistors are produced using Fairchild’s proprietary, planar stripe, DMOS technology.
This advanced technology has been especially tailored to minimize on-state resistance, provide superior switching performance, and withstand high energy pulse in the avalanche and commutation mode.
These devices are well suited for low voltage applications such as automotive, DC/ DC converters, and high efficiency switching for power management in portable and battery operated products.
D TM Features • • • • • • • 21A, 60V, RDS(on) = 0.
055Ω @VGS = 10 V Low gate charge ( typical 9.
5 nC) Low Crss ( typical 35 pF) Fast switching 100% avalanche tested Improved dv/dt capability 175°C maximum junction temperature rating D ! " G S G! ! " " " D2-PAK FQB Series G D S I2-PAK FQI Series ! S Absolute Maximum Ratings Symbol VDSS ID IDM VGSS EAS IAR EAR dv/dt PD TC = 25°C unless otherwise noted Parameter Drain-Source Voltage - Continuous (TC = 25°C) Drain Current - Continuous (TC = 100°C) Drain Current - Pulsed (Note 1) FQB20N06L / FQI20N06L 60 21 14.
7 84 ± 20 (Note 2) (Note 1) (Note 1) (Note 3) Units V A A A V mJ A mJ V/ns W W W/°C °C °C Gate-Source Voltage Single Pulsed Avalanche Energy Avalanche Current Repetitive Avalanche Energy Peak Diode Recovery dv/dt Power Dissipation (TA = 25°C) * 170 21 5.
3 7.
0 3.
75 53 0.
35 -55 to +175 300 TJ, TSTG TL Power Dissipation (TC = 25°C) - Derate above 25°C Operating and Storage Temperature Range Maximum lead temperature for soldering purposes, 1/8" from case for 5 seconds Thermal Characteristics Symbol RθJC RθJA RθJA Parameter Thermal Resistance, Junction-to-Case Thermal Resistance, Junction-to-Ambient * Thermal Resistance, Junction-to-Ambient Typ ---Max 2.
85 40 62.
5 Units °C/W °C/W °C/W * When mounted on the minimum pad size recommended (PCB Mount) ©2001 Fairchild Semiconduct...



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