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LXDC2HL11G-306 - Micro DC-DC converter

Download the LXDC2HL11G-306 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.

General 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.

Key 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 for LXDC2HL11G-306 (Reference)

Note: Below is a high-fidelity text extraction (approx. 800 characters) for LXDC2HL11G-306. For precise diagrams, and layout, please refer to the original PDF.

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...

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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