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ESP32-Aduio-Kit ESP32-A1S ESP32 Audio Development Board WiFi Module Low Power Dual-core 8M PSRAM

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Motherboard & Development Board for everyday users

The ESP32-Aduio-Kit ESP32-A1S ESP32 Audio Development Board WiFi Module Low Power Dual-core 8M PSRAM by Pricio is a mid-range motherboard & development board designed for everyday users.

₹2,433-16%
MRP:₹2,899Save ₹466
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Total: ₹2,433
Buying tip: A well-rounded choice at a fair price. Recommended for most buyers.
Estimated delivery: 4 Aug18 Aug
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SKU: bg-2022104Category: Motherboard & Development Board

About This Product

The ESP32-Aduio-Kit ESP32-A1S ESP32 Audio Development Board WiFi Module Low Power Dual-core 8M PSRAM by Pricio is a mid-range motherboard & development board designed for everyday users. It delivers reliable performance at an accessible price.

Why Buy from Pricio?

Pricio sources this product directly, cutting out multiple middlemen. Every order includes free shipping, a 15-day return policy, and secure payment via Razorpay.


Product Name: ESP32-Audio-Kit

Developed by: Ai-Thinker

Module: ESP32-A1S

Audio Codec Chip: ES8388

Audio Peripherals: TF card, headphone output, two microphone inputs, two speaker outputs

Supported Audio Formats: MP3, AAC, FLAC, WAV, OGG, AMR, TS, EQ, Downmixer, Sonic, ALC

Audio Sources: HTTP, HLS (HTTP Live Streaming), SPIFFS, SDCARD, A2DP source, A2DP receiver, HFP

Integrated Media Services: DLNA, VoIP, online and offline voice recognition, Alexa, DuerOS

Module Versions: ESP32-A1S-V1.3 (legacy), ESP32-A1S-V2.3 (current)

Compatibility: V2.3 interface compatible with V1.3

Audio Output Configuration:

Right channel: HPOUTR (positive) and SPORN (negative);

Left channel: HPOUTL (positive) and SPOLN (negative)

 

Features:


1. Comprehensive Audio Support: The ESP32-Audio-Kit supports a wide range of audio formats including MP3, AAC, FLAC, WAV, OGG, AMR, and more. This makes it highly versatile for developers working on different audio applications, be it music players, recorders, or other audio-related projects.

2. Multiple Audio Sources: This development board can play music from various sources such as HTTP, HLS (HTTP Live Streaming), SPIFFS, SDCARD, A2DP source, A2DP receiver, and HFP, offering extensive options for audio input and playback. Integrated media services like DLNA and VoIP further expand its functionality, making it a robust choice for network broadcasts and voice recognition applications.

3. Convenient Development Platform: Designed with developers in mind, the ESP32-Audio-Kit includes importantl audio peripherals such as TF card support, headphone outputs, multiple microphone inputs, and speaker outputs. This enables quick and flexible development and testing of audio applications, reducing development time and effort.

4. Updated Audio Codec: The current version (V2.3) of the ESP32-Audio-Kit features the ES8388 audio codec chip, replacing the previous AC101 version. This update not only addresses supply chain constraints but also ensures compatibility with the legacy interface of the V1.3 version, making it easy for developers to transition between versions.

5. Flexible Configuration: Both MIC1 and MIC2 can be used as line-in inputs, and their configurations can be adjusted via software. This flexibility allows developers to optimize their audio setups according to specific project needs, enhancing the adaptability and utility of the development board.

 

Package Included:


1 x ESP32-Audio-Kit



Product Safety Information

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.