Home

Products

Integrated Circuits (ICs)

Power Management (PMIC)

OR Controllers, Ideal Diodes

LTC4358IFE

Banner
productimage

LTC4358IFE

IC POWER MANAGEMENT

Manufacturer: Analog Devices Inc.

Categories: OR Controllers, Ideal Diodes

Quality Control: Learn More

The Analog Devices Inc. LTC4358IFE is an N+1 ORing controller designed for robust power management in high-availability applications. This device facilitates seamless power source redundancy by enabling efficient power sharing between multiple input sources. Featuring integrated N-channel MOSFETs, the LTC4358IFE minimizes conduction losses, achieving a low quiescent current of 600 µA. Its inherent design supports rapid turn-off with a delay time of 300 ns, ensuring prompt isolation in fault conditions. The controller operates across a wide input voltage range of 9V to 26.5V and can manage an output current of up to 5A. Housed in a 16-TSSOP-EP package, it is suitable for surface mount applications. Industries benefiting from this component include telecommunications, industrial automation, and data centers, where uninterrupted power is critical.

Additional Information

Series: -RoHS Status: unknownManufacturer Lead Time: No lead time information availableProduct Status: ObsoletePackaging: Tube
Technical Details:
PackagingTube
Package / Case16-TSSOP (0.173"", 4.40mm Width) Exposed Pad
Mounting TypeSurface Mount
TypeN+1 ORing Controller
Operating Temperature-40°C ~ 85°C
Voltage - Supply9V ~ 26.5V
ApplicationsN+1 Power Supplies, High Availability
Internal Switch(s)Yes
FET TypeN-Channel
Delay Time - ON200 µs
Delay Time - OFF300 ns
Current - Output (Max)5A
Ratio - Input:OutputN:1
Supplier Device Package16-TSSOP-EP
Current - Supply600 µA

Request a Quote

Name (required)

Phone (required)

Work Email (required)

Country (required)

Company Name (required)

CAPTCHA

Clients Also Buy
product image
LTC4355IDE#PBF

IC OR CTRLR SRC SELECT 14DFN

product image
LTC4415IDHC#PBF

IC OR CTRLR SRC SELECT 16DFN

product image
LTC4355IS#PBF

IC OR CTRLR SRC SELECT 16SOIC