25V, N ch NexFET MOSFET™, dual common source WLP1.7x2.3, 42mOhm



Product details


VDS (V) 25 Configuration Dual Common Source Rds(on) max at VGS=4.5 V (mOhms) 42 IDM, max pulsed drain current (Max) (A) 4.5 QG typ (nC) 3.1 QGD typ (nC) 0.33 Package (mm) WLP1.7x2.3 VGS (V) 10 VGSTH typ (V) 1 ID, silicon limited at Tc=25degC (A) 4.5 Logic level Yes open-in-new Find other N-channel MOSFET transistors

Package | Pins | Size

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  • Dual N-Ch MOSFETs
  • Common Source Configuration
  • Small Footprint 1.7 mm × 2.3 mm
  • Ultra Low Qg and Qgd
  • Pb Free
  • RoHS Compliant
  • Halogen Free
    • Battery Management
    • Battery Protection
    • DC-DC Converters

open-in-new Find other N-channel MOSFET transistors


The device has been designed to deliver the lowest on resistance and gate charge in the smallest outline possible with thermal characteristics in an ultra low profile. Low on resistance and gate charge coupled with the small footprint and low profile make the device ideal for battery operated space constrained application in load management as well as DC-DC converter applications

open-in-new Find other N-channel MOSFET transistors

Technical documentation

= Top documentation for this product selected by TI
No results found. Please clear your search and try again. View all 5
Type Title Date
* Datasheet Dual N-Channel NexFET Power MOSFET datasheet May 04, 2010
Technical articles Understanding the benefits of “lead-free” power MOSFETs Feb. 07, 2019
Selection guides Power Management Guide 2018 (Rev. R) Jun. 25, 2018
Technical articles When to use load switches in place of discrete MOSFETs Feb. 03, 2016
Technical articles 48V systems: Driving power MOSFETs efficiently and robustly Oct. 08, 2015

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Design tools & simulation

SLLM124A.ZIP (8 KB) - PSpice Model
Buck Converter NexFET™ Selection Tool
FETPWRCALC — This tool is designed to assist engineers in the selection of Texas Instruments’ discrete power MOSFET and Power Block devices for their synchronous buck design. Users can input the conditions for their power supply and compare various discrete and power block solutions by power loss, relative (...)
  • Vary power supply conditions and observe TI’s most efficient solutions for any set of input parameters
  • Select from a pre-established list of TI controllers or enter your own custom IC
  • Rank solutions by effective power loss and compare by relative 1k price, device package, and total PCB footprint
  • (...)
Power loss calculation tool for non-synchronous boost converter
NONSYNC-BOOST-FET-LOSS-CALC — MOSFET power loss calculator for non-synchronous boost converter
  • Calculates power loss for TI MOSFETs
SLPC015.ZIP (66 KB)

CAD/CAE symbols

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Ordering & quality

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