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MAX9016 - nanoPower Comparators

Download the MAX9016 datasheet PDF. This datasheet also covers the MAX9015 variant, as both devices belong to the same nanopower comparators family and are provided as variant models within a single manufacturer datasheet.

General Description

The single MAX9015/MAX9016 and dual MAX9017

MAX9020 nanoPower comparators in space-saving SOT23 packages feature Beyond-the-Rails™ inputs and are guaranteed to operate down to 1.8V.

The A-grade packages feature an on-board 1.236V ±1% reference, while the B-grade packages feature a 1.24V ±1.

Key Features

  • Ultra-Low Total Supply Current.
  • 0.85μA (MAX9019/MAX9020).
  • 1.0μA (MAX9015A/MAX9016A).
  • 1.2μA (MAX9017/MAX9018).
  • Guaranteed Operation Down to 1.8V.
  • Precision VOS < 5mV (max).
  • Internal 1.236V ±1% Reference (A Grade).
  • Input Voltage Range Extends 200mV Beyond-the-Rails.
  • CMOS Push-Pull Output with ±6mA Drive Capability (MAX9015/MAX9017/MAX9019).
  • Open-Drain Output Versions Available (MAX9016/MAX9018/MAX9020.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (MAX9015-MaximIntegrated.pdf) that lists specifications for multiple related part numbers.

Full PDF Text Transcription for MAX9016 (Reference)

Note: Below is a high-fidelity text extraction (approx. 800 characters) for MAX9016. For precise diagrams, and layout, please refer to the original PDF.

Click here for production status of specific part numbers. MAX9015–MAX9020 General Description The single MAX9015/MAX9016 and dual MAX9017– MAX9020 nanoPower comparators ...

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ingle MAX9015/MAX9016 and dual MAX9017– MAX9020 nanoPower comparators in space-saving SOT23 packages feature Beyond-the-Rails™ inputs and are guaranteed to operate down to 1.8V. The A-grade packages feature an on-board 1.236V ±1% reference, while the B-grade packages feature a 1.24V ±1.75% reference. An ultra-low supply current of 0.85μA (MAX9019/ MAX9020), 1μA (MAX9015/MAX9016), or 1.2μA (MAX9017/ MAX9018) makes this product family of comparators ideal for all 2-cell battery monitoring/management applications. The unique design of the devices output stage limits supplycurrent surges while switching, which virtually elimin