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SOT-363
Integrated Circuits (ICs)

MIC94070YC6-TR

Active
Microchip Technology

POWER LOAD DISTRIBUTION SWITCH IC, HIGH SIDE, 1 CHANNEL, 5.5 V, 285 MILLIOHMS, 6 PINS, SC-70

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SOT-363
Integrated Circuits (ICs)

MIC94070YC6-TR

Active
Microchip Technology

POWER LOAD DISTRIBUTION SWITCH IC, HIGH SIDE, 1 CHANNEL, 5.5 V, 285 MILLIOHMS, 6 PINS, SC-70

Technical Specifications

Parameters and characteristics for this part

SpecificationMIC94070YC6-TR
Current - Output (Max) [Max]1.2 A
Input TypeNon-Inverting
InterfaceOn/Off
Mounting TypeSurface Mount
Number of Outputs1
Operating Temperature [Max]125 ¯C
Operating Temperature [Min]-40 °C
Output ConfigurationHigh Side
Output TypeP-Channel
Package / Case6-TSSOP, SC-88, SOT-363
Ratio - Input:Output [custom]1:1
Rds On (Typ)120 mOhm
Supplier Device PackageSC-70-6
Switch TypeGeneral Purpose
Voltage - Load [Max]5.5 V
Voltage - Load [Min]1.7 V
Voltage - Supply (Vcc/Vdd)False

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 0.48
25$ 0.38
100$ 0.38
Digi-ReelÛ 1$ 0.48
25$ 0.38
100$ 0.38
Tape & Reel (TR) 3000$ 0.38
Microchip DirectT/R 1$ 0.48
25$ 0.38
100$ 0.36
1000$ 0.35
NewarkEach (Supplied on Cut Tape) 1$ 0.50
10$ 0.45

Description

General part information

MIC94070 Series

The MIC94070-73 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 1.2A of continuous current. The MIC94071 and MIC94073 feature an active load discharge circuit which insures capacitive loads retain no charge when the main switch is in an OFF state.

MIC94070-71 feature rapid turn on while MIC94072-73 provide a slew rate controlled Soft-Start turn-on of 800µs (typical) to prevent in-rush current from glitching supply rails.

An active pull-down on the enable input keeps MIC94070-73 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.