Creator Ray
Version 1.0.0
Created 2025-10-10
Availability 100%, 24/7
In Stock 20 units
Assets 2 files
Install this molecule

Paste this into Claude Code (VS Code panel, Adom editor, or terminal) to install:

Search the Adom Wiki for the molecule "Molecule_AP63357DV-7_v1" (slug: molecule-ap63357dv-7-v1-810000) at https://wiki-ufypy5dpx93o.adom.cloud/wiki/molecules/molecule-ap63357dv-7-v1-810000. Download its symbol (.kicad_sym), footprint (.kicad_mod), and 3D model (.glb/.step) assets into my current KiCad project under symbols/, footprints/, and 3dmodels/ directories. Register them in the project library tables. Show me the files once installed.

The Molecule_AP63357DV‑7_v2 is a breakout of the Diodes Incorporated AP63357DV‑7 synchronous buck converter, capable of taking input voltages from 3.8 V up to 32 V and delivering up to 3.5 A of continuous output current in a 13‑pin V‑DFN3020‑13 package. It features an adjustable output voltage from 0.8 V to 31 V, ultra‑low quiescent current (~22 µA typical), a 450 kHz switching frequency, built‑in proprietary gate‑driver and frequency spreading for enhanced EMI performance, and comprehensive protection including undervoltage lock‑out, output undervoltage protection, cycle‑by‑cycle current limiting, and thermal shutdown. The breakout includes the regulator, input/output filtering components, power‑good indicator, enable pin, and all essential support circuitry.

NSF Relevance

This molecule delivers a high-efficiency, configurable power rail in a plug‑and-play format, enabling rapid deployment of point‑of‑load power supplies without board redesign or discrete component sourcing.

Science Drivers

component_testing

Created by: abcdefgh Version: v1 Category: other

Description

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The Molecule_AP63357DV‑7_v2 is a breakout of the Diodes Incorporated AP63357DV‑7 synchronous buck converter, capable of taking input voltages from 3.8 V up to 32 V and delivering up to 3.5 A of continuous output current in a 13‑pin V‑DFN3020‑13 package. It features an adjustable output voltage from 0.8 V to 31 V, ultra‑low quiescent current (~22 µA typical), a 450 kHz switching frequency, built‑in proprietary gate‑driver and frequency spreading for enhanced EMI performance, and comprehensive protection including undervoltage lock‑out, output undervoltage protection, cycle‑by‑cycle current limiting, and thermal shutdown. The breakout includes the regulator, input/output filtering components, power‑good indicator, enable pin, and all essential support circuitry.

NSF Relevance

NSF

This molecule delivers a high-efficiency, configurable power rail in a plug‑and-play format, enabling rapid deployment of point‑of‑load power supplies without board redesign or discrete component sourcing.

3D Model

Files

Download ZIP
3D Molecule_AP63357DV-7_v1.glb 3D Model

AI Skill Technical Reference

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Molecule_AP63357DV-7_v1

Type: Adom Molecule Creator: abcdefgh Version: v1 Category: other Availability: 100%, 24/7

Overview

The Molecule_AP63357DV‑7_v2 is a breakout of the Diodes Incorporated AP63357DV‑7 synchronous buck converter, capable of taking input voltages from 3.8 V up to 32 V and delivering up to 3.5 A of continuous output current in a 13‑pin V‑DFN3020‑13 package. It features an adjustable output voltage from 0.8 V to 31 V, ultra‑low quiescent current (~22 µA typical), a 450 kHz switching frequency, built‑in proprietary gate‑driver and frequency spreading for enhanced EMI performance, and comprehensive protection including undervoltage lock‑out, output undervoltage protection, cycle‑by‑cycle current limiting, and thermal shutdown. The breakout includes the regulator, input/output filtering components, power‑good indicator, enable pin, and all essential support circuitry.

Science Drivers

  • component testing

NSF Relevance

This molecule delivers a high-efficiency, configurable power rail in a plug‑and-play format, enabling rapid deployment of point‑of‑load power supplies without board redesign or discrete component sourcing.

Integration Guide

To use Molecule_AP63357DV-7_v1 in your design:

  1. Download the schematic symbol and PCB footprint from the Files section
  2. Import into your EDA tool (KiCad or Fusion 360 / EAGLE)
  3. Place the molecule in your schematic and connect the interface pins
  4. Use the 3D model (.glb) for mechanical fit verification

Design Notes

Board design files (.brd, .sch, .f3d) are available for modification and reference.

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0 revisions · Molecule #11877518344846810000 · Updated 2026-03-02 17:31:36