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TAS5756MDCAR Datasheet(PDF) 4 Page - Texas Instruments

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Part # TAS5756MDCAR
Description  Digital Input, Closed-Loop Class-D Amplifier
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

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TAS5756M
SLAS988B – JUNE 2014 – REVISED AUGUST 2015
www.ti.com
Pin Functions
PIN
INTERNAL
TYPE(1)
DESCRIPTION
TERMINATION
NAME
NO.
ADR0
26
DI
Sets the LSB of the I2C address to 0 if pulled to GND, to 1 if pulled to DVDD
Figure 11
ADR1
20
DI
Sets the second LSB of the I2C address to 0 if pulled to GND, to 1 if pulled to DVDD
10
AGND
G
Ground reference for analog circuitry(2)
15
AVDD
14
P
Figure 2
Power supply for internal analog circuitry
Connection point for the SPK_OUTA– bootstrap capacitor which is used to create a power supply for
BSTRPA–
1
P
the high-side gate drive for SPK_OUTA–
Connection point for the SPK_OUTA+ bootstrap capacitor which is used to create a power supply for
BSTRPA+
5
P
the high-side gate drive for SPK_OUTA
Figure 3
Connection point for the SPK_OUTB– bootstrap capacitor which is used to create a power supply for
BSTRPB–
48
P
the high-side gate drive for SPK_OUTB–
Connection point for the SPK_OUTB+ bootstrap capacitor which is used to create a power supply for
BSTRPB+
44
P
the high-side gate drive for SPK_OUTB+
CN
34
P
Figure 15
Negative pin for capacitor connection used in the line--driver charge pump
CP
32
P
Figure 14
Positive pin for capacitor connection used in the line-driver charge pump
CPVDD
31
P
Figure 2
Power supply for charge pump circuitry
CPVSS
35
P
Figure 15
–3.3-V supply generated by charge pump for the DAC
DAC_OUTA
13
AO
Single-ended output for Channel A of the DAC
Figure 8
DAC_OUTB
36
AO
Single-ended output for Channel B of the DAC
DGND
29
G
Ground reference for digital circuitry. Connect this pin to the system ground.
DVDD
30
P
Figure 2
Power supply for the internal digital circuitry
Voltage regulator derived from DVDD supply for use for internal digital circuitry. This pin is provided
DVDD_REG
28
P
Figure 16
as a connection point for filtering capacitors for this supply and must not be used to power any
external circuitry.
GND
33
G
Ground pin for device. This pin should be connected to the system ground.
GPIO0
18
General purpose input/output pins (GPIOx) which can be incorporated in a HybridFlow for a given
purpose. Refer to documentation of target HybridFlow to determine if any of these pins are required
GPIO1
19
DI/O
Figure 11
by the HybridFlow and, if so, how they are to be used. In most HybridFlows, presentation of a serial
audio signal, called SDOUT, is done through GPIO2.
GPIO2
21
Voltage regulator derived from PVDD supply to generate the voltage required for the gate drive of
GVDD_REG
8
P
Figure 5
output MOSFETs. This pin is provided as a connection point for filtering capacitors for this supply and
must not be used to power any external circuitry.
Word select clock for the digital signal that is active on the serial port's input data line. In I2S, LJ, and
LRCK/FS
25
DI/O
RJ, this corresponds to the left channel and right channel boundary. In TDM mode, this corresponds
Figure 12
to the frame sync boundary.
MCLK
22
DI
Master clock used for internal clock tree and sub-circuit and state machine clocking
3
PGND
39
G
Ground reference for power device circuitry. Connect this pin to the system ground.
46
6
7
PVDD
41
P
Figure 1
Power supply for internal power circuitry
42
43
SCL
17
DI
Figure 10
I2C serial control port clock
SCLK
23
DI/O
Figure 12
Bit clock for the digital signal that is active on the input data line of the serial data port
SDA
16
DI/O
Figure 9
I2C serial control port data
SDIN
24
D1
Figure 12
Data line to the serial data port
SPK_INA–
11
AI
Negative pin for differential speaker amplifier input A
SPK_INA+
12
AI
Positive pin for differential speaker amplifier input A
Figure 7
SPK_INB–
38
AI
Negative pin for differential speaker amplifier input B
SPK_INB+
37
AI
Positive pin for differential speaker amplifier input B
(1)
AI = Analog input, AO = Analog output, DI = Digital Input, DO = Digital Output, DI/O = Digital Bi-directional (input and output), P =
Power, G = Ground (0 V)
(2)
This pin should be connected to the system ground.
4
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