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TAS5782M

Texas Instruments
Part Number TAS5782M
Manufacturer Texas Instruments
Description 30W Stereo Class-D Amplifier
Published Apr 26, 2020
Detailed Description Product Folder Order Now Technical Documents Tools & Software Support & Community TAS5782M SLASEG8A – MARCH 2016 – ...
Datasheet PDF File TAS5782M PDF File

TAS5782M
TAS5782M


Overview
Product Folder Order Now Technical Documents Tools & Software Support & Community TAS5782M SLASEG8A – MARCH 2016 – REVISED JULY 2017 TAS5782M 30 W Stereo Class-D Amplifier with 96-kHz Processing 1 Features •1 Flexible Audio I/O Configuration – Supports I2S, TDM, LJ, RJ Digital Input – Sample Rate Support – BD Amplifier Modulation – Supports 3-Wire Digital Audio Interface (No MCLK required) • High-Performance Closed-Loop Architecture (PVDD = 12 V, RSPK = 8 Ω, SPK_GAIN = 20 dB) – Closed-Loop = reduced component count/ smaller solution size – Idle Channel Noise = 62 µVrms (A-Wtd) – THD+N = 0.
2% (at 1 W, 1 kHz) – SNR = 103dB A-Wtd (Ref.
to THD+N = 1%) • Flexible Processing Features – 15 BiQuads / SmartEQ – 2 x 5 BiQuads for X-Over / EQ – 3-Band Advanced DRC + AGL – Dynamic EQ and SmartBass – Sound Field Spatializer (SFS) – 96-kHz Processor Sampling • Communication Features – Software Mode Control via I2C Port – Two Address Select Pins – Up to 4 Devices • Robustness and Reliability Features – Clock Error , DC, and Short-Circuit Protection – Overtemperature and Overcurrent Protection SPACE Simplified Block Diagram TAS5782M System PP Control and Status Digital Audio I2C P CDSP DAC Power Bridge CH1 CH2 Copyright © 2017, Texas Instruments Incorporated 2 Applications • LCD, LED TV, and Multi-Purpose Monitors • Sound Bars, Docking Stations, and PC Audio • Wireless Subwoofers, Bluetooth Speakers, and Active Speakers 3 Description The TAS5782M device is a high-performance, stereo closed-loop Class-D amplifier with integrated audio processor with up to 96-kHz architecture.
To convert from digital to analog, the device uses a high performance DAC with Burr Brown™ audio technology.
It requires only two power supplies: one DVDD for low-voltage circuitry and one PVDD for high-voltage circuitry.
It is controlled by a software control port using standard I2C communication.
An optimal mix of thermal performance and device cost is provided in the 90 mΩ rDS(on) of the o...



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