IS31AP2005-DLS2-EB: 2.6W x 1 @ 4Ω, 2.7 ~ 5.5V in

Summary

The IS31AP2005 evaluation board is a fully assembled and tested PCB that uses the IS31AP2005 Class-D power amplifier to drive an 8Ω or 4Ω speaker in portable audio applications. Designed to operate from a 2.7V to 5.5V DC power supply, the evaluation board accepts a single-ended or differential input signal. The evaluation board will drive a BTL output capable of delivering 2.6W of 5V continuous power into a 4Ω speaker.

The IS31AP2005 is a high efficiency, 2.95W mono Class-D audio power amplifier. A low noise, filter-less PWM architecture eliminates the output filter, reducing external component count, system cost, and simplifying design.

Operating in a single 5V supply, IS31AP2005 is capable of driving 4Ω speaker load at a continuous average output of 2.95W with 10% THD+N. The IS31AP2005 has high efficiency with speaker load compared to a typical Class-AB amplifier.

In cellular handsets, the earpiece, speaker phone, and melody ringer can each be driven by the IS31AP2005. The gain of IS31AP2005 is externally configurable which allows independent gain control from multiple sources by summing signals from each function.

Specifications

Manufacturer ISSI, Integrated Silicon Solution Inc
Category Audio Amplifiers
Eval Board Board not Stocked
Amplifier Type Class D
Number of Outputs Mono
Output Power (RMS) @ Load 2.6 W @ 4 Ω
Voltage In 2.7 ~ 5.5 V
THD+N (1kHz) @ Conditions < 0.031% @ 1.2 W (4 Ω, 5V)
Features Differential Inputs
Filterless Output
Short Circuit Protection
Shutdown, Enable, Standby
Thermal Protection
Turn On/Off Depop
Efficiency @ Conditions >88%, 5V in, 0.3 ~ 1.8 W @ 8 Ω
>82%, 5V in, 0.3 ~ 2.8 W @ 4 Ω
Standby Current [Typical] - Not Given
Quiescent Current [Typical] 1.2 mA
Component Count + Extras 8 + 0
Application / Target Market Audio: MP3 Players
Audio: Powered Speakers
Cell Phones
DVD/Blu-ray Players
Handheld games
Portable Devices
Design Author ISSI
Main I.C. Base Part IS31AP2005
Quiescent Current [Maximum] 2.6 mA
Standby Current [Maximum] 1 µA
Date Created By Author 2012-03
Date Added To Library 2013-11