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Analog Devices MAX1565ETJ — Power Management (PMIC / Gate Driver)

MAX1565ETJ Analog Devices Power Management IC, Active

MPNMAX1565ETJ
End of Life

Analog Devices MAX1565ETJ Power Management (PMIC / Gate Driver), 5-channel supervisor for digital camera power, Bulk package, active lifecycle.

$3.92Ref. price · indicative, final on quote
RoHSRoHS non-compliant
Series*
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

MAX1565ETJ specifications
ParameterValue
Series*
PackageBulk

Product details

5-channel supervisor for camera power rails

The MAX1565ETJ is a 5-channel supervisor IC from Analog Devices, purpose-built for sequencing and monitoring power rails in digital camera designs. It integrates the supervisory functions needed to bring up multiple voltage domains in the correct order and flag a reset if any rail falls out of tolerance.

RoHS non-compliance — a BOM-fit gate

This part is marked RoHS non-compliant. If your assembly line runs lead-free reflow profiles (260 °C peak, typical for SAC305 solder), the MAX1565ETJ's tin-lead finish may not wet properly or could cause reliability issues at the solder joint.

Bulk package — pick-and-place considerations

Shipped in Bulk rather than tape-and-reel, the MAX1565ETJ arrives loose in a bag or tube. For high-volume pick-and-place, this means the feeder setup is different — tube feeders or vibratory bowl feeders instead of tape reels. The Bulk format also means date codes may vary within a single order, so confirm the date-code spread if your quality plan requires a single lot.

Frequently asked questions

How can I order the MAX1565ETJ or check availability?

The MAX1565ETJ is sourced to order against an RFQ. Submit an RFQ for your target quantity and delivery window.

What compliance documentation does Analog Devices provide for the MAX1565ETJ?

The part is RoHS non-compliant. Confirm with your compliance team whether the non-RoHS finish is acceptable for your target market and assembly process.