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Analog Devices MAX16001ETE+ — Power Management (PMIC / Gate Driver)

MAX16001ETE+ Multi-Voltage Supervisor, 4 Channels

MPNMAX16001ETE+
End of Life

Analog Devices MAX16001ETE+ Multi-Voltage Supervisor, 4 monitored channels, Active Low reset, Open Drain output, Adjustable threshold and timeout, 16-TQFN (4x4), -40°C to +125°C.

$9.83Ref. price · indicative, final on quote
Packaging16-WQFN Exposed Pad
StockContact for availability
Lead timeIn Stock wk
MOQ1 pcs
  • 100% new & originalTraceable channels only — no refurbs, no pulls, no remarked parts.
  • Date & lot codes on quoteStated per line before you commit; label photos on request.
  • MSL-compliant ESD packingMoisture-sealed bags with indicator cards; reels photo-verified.
  • PayPal buyer protectionPay by T/T, PayPal or Payoneer — card payments covered end to end.

Specifications

MAX16001ETE+ Technical Specifications
ParameterValue
TypeMulti-Voltage Supervisor
Mounting typeSurface Mount
Voltage - thresholdAdjustable/Selectable
Number of voltages monitored4
Operating temperature-40°C ~ 125°C (TA)
ResetActive Low
OutputOpen Drain or Open Collector
PackageStrip
Reset timeoutAdjustable/Selectable
Case16-WQFN Exposed Pad

Product details

4-channel supervisor for multi-rail sequencing

The MAX16001ETE+ from Analog Devices monitors up to four voltage rails simultaneously, asserting an active-low reset when any rail falls outside the adjustable threshold window. This makes it a direct fit for systems that need a single supervisor to sequence and protect multiple power domains — think FPGA core, I/O, and auxiliary rails on the same board. The reset timeout is adjustable or selectable, so you can tune the power-up delay to match the downstream load's stabilization time without adding external timer components.

The 0.5 mm pitch demands careful solder-paste stencil design for void-free attach.

Frequently asked questions

What is the MAX16001ETE+ used for?

Typical applications include FPGA power sequencing, multi-rail processor boards, and industrial control modules where a single IC must guard several voltage domains.