VNN1NV04TR-E

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Mfr.Part #
VNN1NV04TR-E
Manufacturer
STMicroelectronics
Package / Case
TO-261-4, TO-261AA
Datasheet
Download
Description
IC PWR MOSFET N-CHAN 1:1 SOT223
Stock
8,063
In Stock :
8,063

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Manufacturer :
STMicroelectronics
Product Category :
Power Distribution Switches, Load Drivers
Rds On (Typ) :
250mOhm (Max)
Resistance :
250mOhm
Drain to Source Resistance :
250mOhm
Switch Type :
GENERAL PURPOSE
Number of Pins :
3
Output Current per Channel :
1.7A
RoHS Status :
ROHS3 Compliant
Lead Free :
Lead Free
Supplier Device Package :
SOT-223
Max Output Current :
3.5A
Package / Case :
TO-261-4, TO-261AA
Number of Outputs :
1
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Output Type :
N-Channel
Nominal Supply Current :
100μA
Input Type :
Non-Inverting
Voltage - Supply (Vcc/Vdd) :
Not Required
Output Configuration :
Low Side
Max Power Dissipation :
7W
Mount :
Surface Mount
Ratio - Input:Output :
1:1
Continuous Drain Current (ID) :
1.8A
Output Current :
2.6A
Series :
OMNIFET II™, VIPower™
Operating Temperature :
-40°C~150°C TJ
Power Dissipation :
7W
REACH SVHC :
Unknown
Packaging :
Tape and Reel (TR)
Radiation Hardening :
No
Voltage - Load :
36V Max
Max Operating Temperature :
150°C
Base Part Number :
VNN1NV
Min Operating Temperature :
-40°C
Drain to Source Breakdown Voltage :
40V
Interface :
On/Off
Current - Output (Max) :
1.7A
Fault Protection :
Current Limiting (Fixed), Over Temperature, Over Voltage
Mounting Type :
Surface Mount
Drain to Source Voltage (Vdss) :
223V
Datasheets
VNN1NV04TR-E
Introducing Power Distribution Switches, Load Drivers STMicroelectronics VNN1NV04TR-E from Chip IC,where excellence meets affordability. This product stands out with its Number of Pins:3, Package / Case:TO-261-4, TO-261AA, Operating Temperature:-40°C~150°C TJ, Base Part Number:VNN1NV, Mounting Type:Surface Mount, VNN1NV04TR-E pinout, VNN1NV04TR-E datasheet PDF, VNN1NV04TR-E amp .Beyond Power Distribution Switches, Load Drivers STMicroelectronics VNN1NV04TR-E ,we also offer AP22966DC8-7, AP22800HB-7, AP22653W6-7, Our vast inventory has you covered. Contact us now for immediate solutions.

STMicroelectronics VNN1NV04TR-E


Power Distribution Switches, Load Drivers STMicroelectronics VNN1NV04TR-E Overview

This STMicroelectronics VNN1NV04TR-E Integrated Circuit is a high-performance power MOSFET designed for efficient power distribution and load driving applications. With its compact SOT223 package, this MOSFET offers a reliable solution for various electronic systems requiring precise power management.

Featuring advanced technology and robust construction, the VNN1NV04TR-E ensures exceptional performance and durability in demanding environments. Its low ON-resistance and high switching speed make it ideal for controlling power flow in automotive, industrial, and consumer electronics applications.

Whether used in power distribution switches or load drivers, this versatile MOSFET delivers outstanding efficiency and reliability, making it a preferred choice for B2B customers seeking high-quality components for their products.

VNN1NV04TR-E Features

  • Integrated power MOSFET for efficient power distribution
  • Compact SOT223 package for space-constrained applications
  • Low ON-resistance and high switching speed for enhanced performance
  • Robust construction for durability in harsh environments
  • Ideal for automotive, industrial, and consumer electronics applications

VNN1NV04TR-E Applications

  • Automotive Power Distribution Systems: The VNN1NV04TR-E MOSFET is used in automotive power distribution systems to efficiently manage power flow, ensuring optimal performance and reliability in vehicles.
  • Industrial Motor Control: This MOSFET is employed in industrial motor control systems to drive and control motors with precision, enabling efficient operation and increased productivity in manufacturing processes.
  • Consumer Electronics Power Management: In consumer electronics devices such as smartphones, tablets, and laptops, the VNN1NV04TR-E regulates power distribution to various components, enhancing battery life and overall device performance.
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