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TAS5805MPWPR bảng dữ liệu(PDF) 21 Page - Texas Instruments

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tên linh kiện TAS5805MPWPR
Giải thích chi tiết về linh kiện  23-W, Inductor-Less, Digital Input, Stereo, Closed-Loop Class-D Audio Amplifier with Enhanced Processing and Low Idle Power Dissipation
PDF  86 Pages
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Trang chủ  http://www.ti.com
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TAS5805MPWPR bảng dữ liệu(HTML) 21 Page - Texas Instruments

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Serial Audio
Interface (Input)
DSP
(Including
interpolator)
Delta Sigma
Modulator
DAC
Audio In
LRCLK/FS
DSPCLK
OSRCLK
DACCLK
21
TAS5805M
www.ti.com
SLASEH5A – MAY 2018 – REVISED JULY 2018
Product Folder Links: TAS5805M
Submit Documentation Feedback
Copyright © 2018, Texas Instruments Incorporated
9.3 Feature Description
9.3.1 Power Supplies
To facilitate system design, TAS5805M needs only a 3.3-V or 1.8-V supply in addition to the (typical) 12-V or 24-
V power-stage supply. Two internal voltage regulators provide suitable voltage levels for the gate drive circuitry
and internal circuitry. The external pins are provided only as a connection point for off-chip bypass capacitors to
filter the supply. Connecting external circuitry to these regulator outputs may result in reduced performance and
damage to the device. Additionally, all circuitry requiring a floating voltage supply, e.g., the high-side gate drive,
is accommodated by built-in bootstrap circuitry requiring only a few external capacitors. In order to provide good
electrical and acoustical characteristics, the PWM signal path for the output stage is designed as identical,
independent half-bridges. For this reason, each half-bridge has separate bootstrap pins (BST_x). The gate drive
voltages (AVDD) are derived from the PVDD voltage. Special attention should be paid to placing all decoupling
capacitors as close to their associated pins as possible. In general, inductance between the power-supply pins
and decoupling capacitors must be avoided. For a properly functioning bootstrap circuit, a small ceramic
capacitor must be connected from each bootstrap pin (BST_x) to the power-stage output pin (OUT_x). When the
power-stage output is low, the bootstrap capacitor is charged through an internal diode connected between the
gate-drive regulator output pin (AVDD) and the bootstrap pin. When the power-stage output is high, the bootstrap
capacitor potential is shifted above the output potential and thus provides a suitable voltage supply for the high-
side gate driver.
9.3.2 Device Clocking
The TAS5805M devices have flexible systems for clocking. Internally, the device requires a number of clocks,
mostly at related clock rates to function correctly. All of these clocks can be derived from the Serial Audio
Interface.
Figure 55. Audio Flow with Respective Clocks
Figure 55 shows the basic data flow and clock distribution.
The Serial Audio Interface typically has 3 connection pins which are listed as follows:
•
SCLK (Bit Clock)
•
LRCLK/FS (Left Right Word Clock and Frame Sync)
•
SDIN (Input Data)
The device has an internal PLL that is used to take SCLK and create the higher rate clocks required by the DSP
and the DAC clock.
The TAS5805M device has an audio sampling rate detection circuit that automatically senses the sampling
frequency. Common audio sampling frequencies of 32 kHz, 44.1kHz – 48 kHz, 88.2 kHz – 96 kHz with ±5%
tolerance are supported. The sampling frequency detector sets the clock for DAC and DSP automatically.
9.3.3 Serial Audio Port – Clock Rates
The serial audio interface port is a 3-wire serial port with the signals LRCLK/FS, SCLK, and SDIN. SCLK is the
serial audio bit clock, used to clock the serial data present on SDIN into the serial shift register of the audio
interface. Serial data is clocked into the TAS5805M device on the rising edge of SCLK. The LRCK/FS pin is the
serial audio left/right word clock or frame sync when the device is operated in TDM Mode.



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