Product details

VDS (V) 20 Configuration Single Rds(on) max at VGS=4.5 V (mOhms) 1460 IDM - pulsed drain current (Max) (A) 1.6 QG typ (nC) 0.216 QGD typ (nC) 0.027 QGS typ (nC) 0.077 Package (mm) LGA 0.7x0.6mm VGS (V) 10 VGSTH typ (V) 1.1 ID - silicon limited at Tc=25degC (A) 0.5 ID - package limited (A) 0.5 Logic level Yes
VDS (V) 20 Configuration Single Rds(on) max at VGS=4.5 V (mOhms) 1460 IDM - pulsed drain current (Max) (A) 1.6 QG typ (nC) 0.216 QGD typ (nC) 0.027 QGS typ (nC) 0.077 Package (mm) LGA 0.7x0.6mm VGS (V) 10 VGSTH typ (V) 1.1 ID - silicon limited at Tc=25degC (A) 0.5 ID - package limited (A) 0.5 Logic level Yes
  • Ultra-low CiSS and COSS
  • Ultra-low Qg and Qgd
  • Ultra-small footprint
    • 0.73 mm × 0.64 mm
  • Ultra-low profile
    • 0.36-mm max height
  • Integrated ESD protection diode
    • Rated > 4-kV HBM
    • Rated > 2-kV CDM
  • Lead and halogen free
  • RoHS compliant
  • Ultra-low CiSS and COSS
  • Ultra-low Qg and Qgd
  • Ultra-small footprint
    • 0.73 mm × 0.64 mm
  • Ultra-low profile
    • 0.36-mm max height
  • Integrated ESD protection diode
    • Rated > 4-kV HBM
    • Rated > 2-kV CDM
  • Lead and halogen free
  • RoHS compliant

This 20-V, 990-mΩ, N-Channel FemtoFET™ MOSFET is designed and optimized to minimize the footprint in many handheld and mobile applications. Ultra-low capacitance improves switching speeds. When used in data line applications, the low capacitance minimizes noise coupling. This technology is capable of replacing standard small signal MOSFETs while providing a substantial reduction in footprint size.

This 20-V, 990-mΩ, N-Channel FemtoFET™ MOSFET is designed and optimized to minimize the footprint in many handheld and mobile applications. Ultra-low capacitance improves switching speeds. When used in data line applications, the low capacitance minimizes noise coupling. This technology is capable of replacing standard small signal MOSFETs while providing a substantial reduction in footprint size.

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Technical documentation

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Type Title Date
* Data sheet CSD15380F3 20-V N-Channel FemtoFET MOSFET datasheet (Rev. B) PDF | HTML 07 Sep 2021
Application note MOSFET Support and Training Tools PDF | HTML 29 Aug 2022
Application note Tips for Successfully Paralleling Power MOSFETs PDF | HTML 31 May 2022
Technical article What’s not in the power MOSFET data sheet part 2: voltage-dependent leakage currents 23 Jul 2021
More literature WCSP Handling Guide 07 Nov 2019
Technical article Understanding the benefits of “lead-free” power MOSFETs 08 Feb 2019
EVM User's guide Ultra-Small Footprint N-Channel FemtoFET™ MOSFET Test EVM 06 Dec 2017
Design guide FemtoFET Surface Mount Guide (Rev. D) 07 Jul 2016
Technical article FemtoFET MOSFETs: small as sand but it’s all about that pitch 27 Jun 2016
Application note Semiconductor and IC Package Thermal Metrics (Rev. C) PDF | HTML 19 Apr 2016
Technical article When to use load switches in place of discrete MOSFETs 03 Feb 2016

Design & development

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

Evaluation board

CSD1FNCHEVM-889 — FemtoFET N-ch Evaluation Module

This FemtoFET N-ch EVM includes seven daughter cards, each card containing a different FemtoFET N-ch part number.  The daughter cards allow the engineer to easily connect and test these tiny devices.  The seven FemtoFETs range from 12V to 40V Vds, and the size of the devices include F3 (...)
User guide: PDF
Not available on TI.com
Simulation model

CSD15380F3 Unencrypted PSpice Model (Rev. B)

SLPM179B.ZIP (3 KB) - PSpice Model
Simulation model

CSD15380F3 TINA-TI Spice Model

SLPM197.ZIP (3 KB) - TINA-TI Spice Model
Calculation tool

NONSYNC-BOOST-FET-LOSS-CALC — Power loss calculation tool for non-synchronous boost converter

MOSFET power loss calculator for non-synchronous boost converter
Calculation tool

SYNC-BUCK-FET-LOSS-CALC — MOSFET power loss calculator for synchronous buck converter applications

Quickly trade off size, cost and performance to select the optimal MOSFET based on application conditions.
Reference designs

TIDM-02010 — Dual motor control with digital interleaved PFC for HVAC reference design

The TIDM-02010 reference design is a 1.5-kW dual motor drive and PFC control reference design for varaible frequency air conditioner outdoor unit controller in HVAC applications, which illustrates a method to implement sensorless 3-phase PMSM vector control for compressor and fan motor drive, and (...)
Reference designs

TIDA-01081 — LED-Lighting Control Reference Design for Machine Vision

This LED lighting control reference design demonstrates a unique approach to drive and control a string of multiple high-power light-emitting diodes (LEDs). This reference design is targeted for industrial machine vision systems and is also suitable for other industrial or automotive lighting (...)
Schematic: PDF
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