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TAS5731MPHPR 数据表(PDF) 69 Page - Texas Instruments |
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TAS5731MPHPR 数据表(HTML) 69 Page - Texas Instruments |
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69 / 81 page ![]() TAS5731M www.ti.com SLOS838C – JULY 2013 – REVISED AUGUST 2015 11 Power Supply Recommendations The TAS5731M requires two power supplies; a low voltage 3.3 V nominal for the pins DVDD, AVDD, and DRVDD and a high power supply, 8 V to 24 V for the pin PVDD. There is no requirement for power up sequencing of low and high power supplies, however is recommended to put the PDN pin to low before removing the low voltage power supplies in order to protect the outputs. 11.1 DVDD and AVDD Supplies The AVDD Supply is used to power the analog internal circuit of the device, and needs a well regulated and filtered 3.3-V supply voltage. The DVDD Supply is used to power the digital circuitry. DVDD needs a well regulated and filtered 3.3-V supply voltage. 11.2 PVDD Power Supply The TAS5731M class-D audio amplifier requires adequate power supply decoupling to ensure the output total harmonic distortion (THD) and noise is as low as possible. A good low equivalent-series-resistance (ESR) ceramic capacitor, typically 1 µF, placed as close as possible to the device PVDD leads works best. For filtering lower frequency noise signals, a 10 µF or greater capacitor placed near the audio power amplifier is recommended. 12 Layout 12.1 Layout Guidelines Class-D switching edges are fast and switched currents are high so it is necessary to take care when planning the layout of the printed circuit board. The following suggestions will help to meet audio, thermal and EMC requirements. • TAS5731M uses the PCB for heat sinking therefore the PowerPAD needs to be soldered to the PCB and adequate copper area and copper vias connecting the top, bottom and internal layers must be used. • Decoupling capacitors: the high-frequency decoupling capacitors must be placed as close to the supply pins as possible; on the TAS5731M a 1-µF high-quality ceramic capacitor is used. Large (10 μF or greater) bulk power supply decoupling capacitors must be placed near the TAS5731M on the PVDD supplies. • Keep the current loop from each of the outputs through the output inductor and the small filter cap and back to GND as small and tight as possible. The size of this current loop determines its effectiveness as an antenna. • Grounding: A big common GND plane is recommended. The PVDD decoupling capacitors must connect to GND. The TAS5731M PowerPAD must be connected to GND. • Output filter: remember to select inductors that can handle the high short circuit current of the device. The LC filter must be placed close to the outputs. The EVM product folder (TAS5731EVM) and User’s Guide (SLOU331) available on www.ti.com show schematic, bill of material, gerber files, and more detailed layout plots. Copyright © 2013–2015, Texas Instruments Incorporated Submit Documentation Feedback 69 Product Folder Links: TAS5731M |
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