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MIC94064
  • MIC94064
  • MIC94064

MIC94064

In Production

The MIC94064 and MIC94065 are high-side load switches designed for operation between 1.7V to 5.5V. The devices contain a low on-resistance P-channel MOSFET that supports over 2A of continuous current. The MIC94064/5 provides a slew rate controlled Soft-Start turn-on of 115µs (typical) to prevent in-rush current from glitching supply rails. The MIC94065 features an active load discharge circuit which insures capacitive loads retain no charge when the main switch is in an OFF state. An active pull-down on the enable input keeps MIC94064/5 in a default OFF state until the EN pin is pulled to a high level. Built-in level shift circuitry allows low voltage logic signals to switch higher supply voltages, or vice versa; high level logic signals can control low level voltages. The MIC940...

Microchip Technology MIC94064 Product Info

16 April 2026 0

Parameters

Driver Type

Single High-Side Load Switches

Vin Min (V)

1.7

Vin Max (V)

5.5

Max SW Current (A)

2

RDS ON @5V (mO)

77

Soft Start (µS)

115

Enable Logic

High True

VEN (V)

1.2

Oja (C/W)

240, 172

Features

    • 1.7V to 5.5V input voltage range
    • 2A continuous operating current
    • 77mO (typ) R DSON
    • Built-in level shift for control logic; can be operated by 1.5V logic.
    • Low 2µA quiescent current
    • Soft-Start: 115µs
    • Micro-power shutdown <1µA

Description

The MIC94064 and MIC94065 are high-side load switches designed for operation between 1.7V to 5.5V. The devices contain a low on-resistance P-channel MOSFET that supports over 2A of continuous current.

The MIC94064/5 provides a slew rate controlled Soft-Start turn-on of 115µs (typical) to prevent in-rush current from glitching supply rails.

The MIC94065 features an active load discharge circuit which insures capacitive loads retain no charge when the main switch is in an OFF state.

An active pull-down on the enable input keeps MIC94064/5 in a default OFF state until the EN pin is pulled to a high level. Built-in level shift circuitry allows low voltage logic signals to switch higher supply voltages, or vice versa; high level logic signals can control low level voltages.

The MIC94064/5's operating voltage range makes them suitable for 1-cell Lithium ion and 2- to 3-cell NiMH/NiCad/Alkaline powered systems, as well as all 5V applications. Their low operating current of 2µA and low shutdown current of <1µA maximize battery life.

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