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AP91350H Series

SAS Disable +5V Efuse With Integrated Isofet

Manufacturer: Diodes Inc

Catalog

SAS Disable +5V Efuse With Integrated Isofet

Key Features

SAS Disable1V Signal Disables the eFuseESD Compliant to 2kV HBM and 1kV CDM
1V Signal Disables the eFuse
ESD Compliant to 2kV HBM and 1kV CDM
Integrated ISOFET That Latches Off When Reverse Current is Detected. Latch Off is Reset byVOUTFalling Below VCCUVLO TriggerEN/FAULT Pin
VOUTFalling Below VCC
UVLO Trigger
EN/FAULT Pin
Input Tolerant of Continuous +12V
50mΩ Typical Total On-Resistance
Fixed 2.5A Overcurrent Protection (OCP)
Overvoltage Protection (OVP)
Fixed 13ms +/- 20% Slew Rate Control (SRC)
Overtemperature Protection (OTP)
Undervoltage Lockout (UVLO)
Thermally Efficient Low Profile Package, W-QFN3020-12
Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
Halogen and Antimony Free. "Green" Device (Note 3)
For automotive applications requiring specific change control (i.e. parts qualified to AEC-Q100/101/104/200, PPAP capable, and manufactured in IATF 16949 certified facilities), pleasecontact usor your local Diodes representative.https://www.diodes.com/quality/product-definitions/

Description

AI
The eFuse is a 5V protection device with a bidirectional switch that incorporates input slew rate control to reduce input surge current and reverse current detection to prevent discharge to VCC from VOUT. The eFuse protection features include undervoltage lockout, a fixed 2.5A current limit, trimmed fast response overvoltage protection and thermal shutdown. The EN/FAULT line is a tri-state bidirectional interface that can be used to disable the output by pulling the line low through an external open-drain device. If a thermal fault occurs, the voltage on the pin will go to an intermediate voltage indicating a fault and it can be connected to another device to cause simultaneous shutdown. The SAS pin is an ESD protected interface that allows direct external control of the eFuse. Driving the SAS pin high pulls the enable line low causing the eFuse to shut down and enter a low quiescent current state.