Datasheet4U Logo Datasheet4U.com

MPQ2013A - Low Quiescent Current Linear Regulator

Datasheet Summary

Description

The MPQ2013A is a low power linear regulator that supplies power to systems with high voltage batteries.

It includes a wide 2.5V to 40V input range, low dropout voltage and low quiescent supply current.

The low quiescent current and low dropout voltage allow operations at extremely low power levels.

Features

  • 2.5V to 40V Input Range.
  • 3.3µA Quiescent Supply Current.
  • Stable With Low-value Output Ceramic Capacitor (> 0.47 μF).
  • 150mA Specified Current for QFN-6 and QFN-8 Packages.
  • 620mV Dropout at 150mA Load.
  • Available in Fixed and Adjustable Output (1.215 V to 15 V) Versions.
  • Output ±2% Accuracy for QFN-8 Package Output ±4% Accuracy for QFN-6 Package.
  • Specified Current Limit.
  • Thermal Shutdown.
  • -40°C to +150°C Specified Junction Temperature Range.
  • A.

📥 Download Datasheet

Datasheet preview – MPQ2013A

Datasheet Details

Part number MPQ2013A
Manufacturer MPS
File Size 613.89 KB
Description Low Quiescent Current Linear Regulator
Datasheet download datasheet MPQ2013A Datasheet
Additional preview pages of the MPQ2013A datasheet.
Other Datasheets by MPS

Full PDF Text Transcription

Click to expand full text
The Future of Analog IC Technology DESCRIPTION The MPQ2013A is a low power linear regulator that supplies power to systems with high voltage batteries. It includes a wide 2.5V to 40V input range, low dropout voltage and low quiescent supply current. The low quiescent current and low dropout voltage allow operations at extremely low power levels. Therefore, the MPQ2013A are ideal for the low power microcontrollers and the battery-powered equipments. The MPQ2013A provides wide variety of fixed output voltage options (if request): 1.8V, 1.9V, 2.3V, 2.5V, 3.0V, 3.3V, 3.45V, 5.0V; and also provides the output adjustable option (from 1.215V to 15V). The regulator output current is internally limited and the device is protected against over-load and over-temperature conditions.
Published: |