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LXDC2HL25G-341 - Micro DC-DC converter

Download the LXDC2HL25G-341 datasheet PDF. This datasheet also covers the LXDC2HL-G variant, as both devices belong to the same micro dc-dc converter family and are provided as variant models within a single manufacturer datasheet.

Description

The LXDC2HL series is a low power step-down DCDC converter, which is suitable for a space-limited or a noise-sensitive application.

The device utilizes an inductor-embedded ferrite substrate, and the substrate eliminates radiated EMI noise and conduction noise efficiently.

Features

  • Low EMI noise and small footprint (5mm2) using inductor-embedded ferrite substrate.
  • PFM/PWM automatic mode switching function.
  • Smooth mode transient between PFM mode and PWM mode with low-ripple-voltage PFM mode.
  • 2% DC voltage accuracy over full load current range.
  • Wide input voltage range : 2.3~5.5V.
  • Fixed output voltage : 0.8V.
  • 2. 5V (factory setting).
  • Internal soft start, overcurrent protection 2.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (LXDC2HL-G-Murata.pdf) that lists specifications for multiple related part numbers.

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
LXDC2HL-G Series Micro DC-DC converter 1. Features  Low EMI noise and small footprint (5mm2) using inductor-embedded ferrite substrate  PFM/PWM automatic mode switching function  Smooth mode transient between PFM mode and PWM mode with low-ripple-voltage PFM mode  2% DC voltage accuracy over full load current range  Wide input voltage range : 2.3~5.5V  Fixed output voltage : 0.8V – 2. 5V (factory setting)  Internal soft start, overcurrent protection 2. Description The LXDC2HL series is a low power step-down DCDC converter, which is suitable for a space-limited or a noise-sensitive application. The device utilizes an inductor-embedded ferrite substrate, and the substrate eliminates radiated EMI noise and conduction noise efficiently.