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DIODES BSP75GQTARoHS

Manufacturer
MPN
BSP75GQTA
LCSC Part #
C174046
Packaging
SOT-223
Customer #
Key Attributes
BSP75GQ Self-protected Low-side MOSFET
Datasheetpdf iconDIODES BSP75GQTA
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QtyUnit Price(Reference Only)Total Amount
1+$ 1.6054$ 1.61
10+$ 1.3872$ 13.87
30+$ 1.2684$ 38.05
100+$ 1.1332$ 113.32
500+$ 1.073$ 536.50
1,000+$ 1.0453$ 1045.30
Standard Packaging1000/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Power Management (PMIC)/Power Distribution Switches, Load Drivers
ManufacturerDIODES
PackagingSOT-223
Operating Temperature-40℃~+150℃
FeaturesOvercurrent Protection;Short-Circuit Protection;Over temperature protection;Overvoltage protection;Load dump protection
number of channels1
Control Input LogicActive High
Maximum Continuous Current1.6A
Operating Voltage60V
RDS(on)550mΩ
TypeLow Side Switch

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging1000
Sales UnitPiece

Introduction

AI Translation

The BSP75GQ is a Self-protected low-side MOSFET. It features monolithic over temperature, over current, over voltage (active clamp) and ESD protected logic level functionality. It is intended as a general purpose switch.

Features

AI Translation
  • Short Circuit Protection with Auto Restart
  • Over Voltage Protection (Active Clamp)
  • Thermal Shutdown with Auto Restart
  • Over-Current Protection
  • Input Protection (ESD)
  • Load Dump Protection (Actively Protects Load)
  • Logic Level Input
  • High Continuous Current Rating
  • Lead-Free Finish; RoHS Compliant
  • Halogen and Antimony Free. “Green” Device
  • Qualified to AEC-Q101 Standards for High Reliability PPAP Capable

Applications

AI Translation
  • Especially Suited for Loads with a High In-Rush Current such as Lamps and Motors
  • All Types of Resistive, Inductive and Capacitive Loads in Switching Applications
  • μc Compatible Power Switch for 12V and 24V DC Applications
  • Automotive Rated Replaces Electromechanical Relays and Discrete Circuits
  • Linear Mode Capability - the current-limiting protection circuitry is designed to de-activate at low VDS to in order not to compromise the load current during normal operation. The maximum DC operating current is therefore determined by the thermal capability of the package/board combination, rather than by the protection circuitry.