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ZXMN2AM832

Zetex Semiconductors
Part Number ZXMN2AM832
Manufacturer Zetex Semiconductors
Description DUAL 20V N-CHANNEL MOSFET
Published Oct 2, 2015
Detailed Description OBSOLETE - PLEASE USE ZXMN2AMCTA ZXMN2AM832 MPPS™ Miniature Package Power Solutions DUAL 20V N-CHANNEL ENHANCEMENT MOD...
Datasheet PDF File ZXMN2AM832 PDF File

ZXMN2AM832
ZXMN2AM832


Overview
OBSOLETE - PLEASE USE ZXMN2AMCTA ZXMN2AM832 MPPS™ Miniature Package Power Solutions DUAL 20V N-CHANNEL ENHANCEMENT MODE MOSFET SUMMARY V(BR)DSS = 20V; RDS(ON) = 0.
12 ; ID= 3A DESCRIPTION Packaged in the new innovative 3mm x 2mm MLP(Micro Leaded Package) outline this dual 20V N channel Trench MOSFET utilizes a unique structure combining the benefits of Low on-resistance with fast switching speed.
This makes them ideal for high efficiency, low voltage power management applications.
Users will also gain several other key benefits: Performance capability equivalent to much larger packages Improved circuit efficiency & power levels PCB area and device placement savings Reduced component count 3x2mm Dual Die MLP FEATURES • Low On - Resistance • Fast switching speed • Low threshold • Low gate drive • 3mm x 2mm MLP APPLICATIONS • DC-DC Converters • Power Management Functions • Disconnection switches • Motor Control PINOUT 7 ORDERING INFORMATION DEVICE REEL TAPE WIDTH ZXMN2AM832TA 7’‘ 8mm ZXMN2AM832TC 13’‘ 8mm QUANTITY PER REEL 3000 units 10000 units DEVICE MARKING DNA 3mm x 2mm Dual MLP underside view ISSUE 3 - JANUARY 2005 1 SEMICONDUCTORS OBSOLETE - PLEASE USE ZXMN2AMCTA ZXMN2AM832 ABSOLUTE MAXIMUM RATINGS.
PARAMETER SYMBOL N-Channel UNIT Drain-Source Voltage Gate-Source Voltage Continuous Drain Current @VGS=10V; TA=25ЊC (b) (f) @VGS=10V; TA=70ЊC (b) (f) @VGS=10V; TA=25ЊC (a) (f) Pulsed Drain Current Continuous Source Current (Body Diode) (b) (f) Pulsed Source Current (Body Diode) Power Dissipation at TA=25°C (a) (f) Linear Derating Factor Power Dissipation at TA=25°C (b) (f) Linear Derating Factor Power Dissipation at TA=25°C (c) (f) Linear Derating Factor Power Dissipation at TA=25°C (d) (f) Linear Derating Factor Power Dissipation at TA=25°C (d) (g) Linear Derating Factor Power Dissipation at TA=25°C (e) (g) Linear Derating Factor VDSS VGS ID IDM IS ISM PD PD PD PD PD PD 20 Ϯ12 3.
7 3.
0 2.
9 13 3.
0 13 1.
5 12 2.
45 19.
6 1 8 1.
13 9 1...



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