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ISL88003 - Ultra Low Power 3 Ld Voltage Supervisors

Download the ISL88003 datasheet PDF. This datasheet also covers the ISL88001 variant, as both devices belong to the same ultra low power 3 ld voltage supervisors family and are provided as variant models within a single manufacturer datasheet.

Description

PIN FUNCTION Ground IC reference.

The RST pin is an active-low reset output that is pulled to GND (LOW) when reset is asserted.

The ISL88001 is push-pull while the ISL88002 is open drain.

Features

  • Single Voltage Monitoring Supervisors.
  • Fixed-Voltage Options Allow Precise Monitoring of +1.8V, +2.5V, +3.0V, +3.3V, and +5.0V Power Supplies.
  • Ultra Low 160nA Supply Current.
  • ±1.2% Voltage Threshold Accuracy.
  • 190ms Power-On Reset Timeout.
  • Reset Signal Valid Down to VDD = 1V.
  • No External Components Necessary.
  • Immune to Power-Supply Transients.
  • Available in Small 3 Ld SC-70 and 3 Ld SOT-23 Pb-free Packages.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (ISL88001-Renesas.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number ISL88003
Manufacturer Renesas
File Size 775.22 KB
Description Ultra Low Power 3 Ld Voltage Supervisors
Datasheet download datasheet ISL88003 Datasheet

Full PDF Text Transcription

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DATASHEET ISL88001, ISL88002, ISL88003 Ultra Low Power 3 Ld Voltage Supervisors in SC-70 and SOT-23 Packages FN6174 Rev 3.00 Feb 10, 2021 The ISL88001, ISL88002, ISL88003 supervisors are extremely low power 160nA voltage supervisors that help to monitor the power supply voltages in a wide variety of applications. By providing Power-On Reset and supply voltage supervision in small 3 Ld SC-70 and SOT-23 packages, the ISL88001, ISL88002, ISL88003 devices can help to lower system cost, reduce board space requirements and increase the reliability of systems. The most popular voltage trip points are available for standard power supplies from 1.8V to 5.0V (see “Ordering Information” on page 3). These reset threshold voltages are accurate to within ±1.
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