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IP5306 Integrated Charging and Discharging 5V2A Lithium Battery Management Module (Surface Mount Available)

 
Overview
Project Description:
This surface-mount lithium battery charging and discharging integrated circuit was created for future design of other boards. It's a stable and high-quality power module that facilitates subsequent design processes.
Instructions for Use:

After connecting the battery, press the button to start 5V output; the LED will light up. (Note: Output is not initiated by default when the battery is connected; it only starts after the button is pressed.) Double-click to stop output; the LED will turn off.
When connected to 5V, the LED will flash, indicating charging. The LED will remain constant, indicating the battery is fully charged or not connected. (The LED will not remain off after the module is powered by 5V.) Product Showcase:


Hardware Selection:
The IP5306 is a highly integrated mobile power bank SOC capable of 2.1A charging and 2.4A discharging. Easy to use, this chip provides a 5V, 2A boost output while charging lithium batteries.
It boasts several advantages:
synchronous switching charging and discharging;

2.4A synchronous boost conversion; 2.1A synchronous switching charging
boost efficiency up to 92%;
charging efficiency up to 91%;
built-in power path management supporting simultaneous charging and discharging;

adaptive charging current adjustment; adapter
support for 4.20/4.30/4.35/4.40V; battery level display

with 4, 3, 2, and 1 LEDs; rich functionality; button power-on ; built

-in
lighting driver;
automatic detection of phone insertion and removal;
low power consumption
; intelligent load identification for automatic standby mode (
standby power consumption less than 100 μA); minimalist

power MOS built-in; single inductor for
multiple charging and discharging protections; high reliability; output
overcurrent, overvoltage, and short circuit protection;
input overvoltage, overcharge, over-discharge, and overcurrent discharge protection;
overall over-temperature protection;
ESD 4KV; instantaneous withstand voltage 12V.
This chip is ideal for low-power DIY projects, offering simple design and ease of use. Problem:
Due to the chip's design, there is a brief power outage when switching between battery input and 5V input (this is just a placeholder, I might fill it in later).

参考设计图片
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