Product details

VDS (V) 60 Configuration Dual Rds(on) max at VGS=10 V (mOhms) 28 IDM - pulsed drain current (Max) (A) 46 QG typ (nC) 14 QGD typ (nC) 2.3 QGS typ (nC) 4.6 Package (mm) SO-8 VGS (V) 20 VGSTH typ (V) 3 ID - silicon limited at Tc=25degC (A) 11.7 ID - package limited (A) 15 Logic level No
VDS (V) 60 Configuration Dual Rds(on) max at VGS=10 V (mOhms) 28 IDM - pulsed drain current (Max) (A) 46 QG typ (nC) 14 QGD typ (nC) 2.3 QGS typ (nC) 4.6 Package (mm) SO-8 VGS (V) 20 VGSTH typ (V) 3 ID - silicon limited at Tc=25degC (A) 11.7 ID - package limited (A) 15 Logic level No
SOIC (D) 8 19 mm² 4.9 x 3.9
  • Ultra-Low Qg and Qgd
  • Avalanche Rated
  • Pb Free
  • RoHS Compliant
  • Halogen Free
  • Ultra-Low Qg and Qgd
  • Avalanche Rated
  • Pb Free
  • RoHS Compliant
  • Halogen Free

This dual SO-8, 60 V, 23 mΩ NexFET power MOSFET is designed to serve as a half bridge in low-current motor control applications.

This dual SO-8, 60 V, 23 mΩ NexFET power MOSFET is designed to serve as a half bridge in low-current motor control applications.

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CSD88537ND ACTIVE 60-V, N channel NexFET™ power MOSFET, dual SO-8, 15 mOhm Lower resistance

Technical documentation

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Type Title Date
* Data sheet CSD88539ND, 60-V Dual N-Channel NexFET™ Power MOSFET datasheet 10 Feb 2014
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 Understanding the benefits of “lead-free” power MOSFETs 08 Feb 2019
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
Technical article 48V systems: Driving power MOSFETs efficiently and robustly 08 Oct 2015

Design & development

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

Simulation model

CSD88539ND Unencrypted PSpice Model (Rev. A)

SLPM110A.ZIP (4 KB) - PSpice Model
Simulation model

CSD88539ND TINA-TI Spice Model

SLPM189.ZIP (21 KB) - TINA-TI Spice Model
Simulation model

CSD88539ND TINA-TI Reference Design

SLPM190.TSC (315 KB) - TINA-TI Reference Design
Calculation tool

MOTOR-DRIVE-FET-LOSS-CALC — MOSFET power loss calculator for motor drive applications

This is an Excel-based MOSFET power loss calculator for brushless DC motor drive applications.
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-BOOST-FET-LOSS-CALC — Power loss calculation tool for synchronous boost converter

MOSFET power loss calculator for synchronous boost converter applications.
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

PMP22504 — 12-VAC to 28-VAC, 7.5-W to 25-W ideal diode full-bridge rectifier reference design

This reference design implements the LM74610-Q1 zero IQ reverse polarity protection smart diode controller to control the high-side rectifier MOSFETs for both line and neutral inputs of a 12-VAC to 28-VAC power supply. The design was tested at loads from 7.5 W to 25 W. The use of low Rdson MOSFETs (...)
Schematic: PDF
Reference designs

TIDA-00447 — 24V, 100W/30W Dual Sensorless Brushless DC Motor Drive Reference Design

TIDA-00447 is a 24V, dual Brushless DC (BLDC) motor drive reference design to be used in major home appliances to drive low voltage BLDC motors such as pumps and fans, e.g. for circulation pump and drain pump of dishwashers. The power stages of motor drive are designed for 100W and 30W of (...)
Schematic: PDF
Reference designs

TIDA-00476 — Highly Efficient, Versatile Bi-Directional Power Converter for Energy Storage and DC Home Solutions

TIDA-00476 is comprised of a single DC-DC power stage, which can work as a synchronous buck converter or a synchronous boost converter, enabling bidirectional power flow between DC power source and energy storage system. Operating in synchronous buck mode, the system works as a MPPT controlled (...)
Schematic: PDF
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SOIC (D) 8 View options

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