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EVAL-SSM3582Z

 User Guide 

UG-934

 

Rev. B | Page 3 of 13 

SETTING UP THE HARDWARE 

INPUT CONFIGURATION 

There are several ways to source audio to th

SSM3582

 or the 

SSM3582A

 on the evaluation board. The EVAL-SSM3582Z can 

accept direct digital I

2

S/time division multiplex (TDM) data, or 

the EVAL-SSM3582Z can convert Sony/Philips digital interface 
(S/PDIF)/optical digital audio data to I

2

S data using an on-

board digital audio receiver (U6). 

Use the 3-way × 3-way header, J10, to connect either the on-board 
S/PDIF audio receiver circuitry or the external digital audio 
signals to the 

SSM3582

 or the 

SSM3582A

 device pins. The 

EVAL-SSM3582Z comes set with three jumpers for receiving 
the S/PDIF audio data.  

To use the external I

2

S/TDM data, remove the three jumpers on 

the J10 header and connect the signal sources (FSYNC, BCLK, 
and SDATA) to the center pins on the J10 header.  

If the user does not have a direct I

2

S or TDM source, the on-board 

digital audio receiver can accept S/PDIF data from a digital 
audio source, such as the digital audio output of a CD player. 
In this case, select either the optical or coaxial option using the 
S2 switch to properly connect the desired input to the digital 
audio receiver.  

I

2

C MODE 

The 

SSM3582

 or th

SSM3582A

 supports I

2

C control for setting 

the internal registers. In this mode, Switch S3 must be set to I

2

mode. The 10-way header, J1, connects the external I

2

C master 

controlling the evaluation board. The EVAL-SSM3582Z can be 
set for the desired I

2

C address using four headers: J18, J21, JP3, 

and JP4. The JP3 and JP4 headers set the pull-up or pull-down 
resistors to DVDD or GND, whereas the J18 and J21 headers 
can bypass either the R8 or R10 47 kΩ resistor. Refer to the data 
sheet for address selection options. Removing the jumper across 
Header J18 or Header J21 inserts either the R8 or R10 47 kΩ 
resistor in the signal path for pull-up or pull-down operation. 
To properly float the ADDRx pins to a no connect state, do not 
insert jumpers on the JP3, JP4, J18, and J21 headers. By default, 
the J18 and J21 headers are inserted and the JP3 and JP4 headers 
are pulled to GND. This sets the 7-bit device address to 0x10.  

STANDALONE MODE 

The 

SSM3582

 or th

SSM3582A

 also supports standalone mode 

operation. In this mode, Switch S3 must be set to standalone 
mode. In standalone mode, the ADDRx, SCL, and SDA pins 
configure the functionality of the 

SSM3582

 or the 

SSM3582A

including the I

2

S/TDM configuration and sample rate. Refer to 

th

SSM3582

 and the 

SSM3582A

 data sheets for a complete list 

of options. In standalone mode, the duty cycle of FSYNC 
dictates whether the device is in I

2

S or TDM mode. If the duty 

cycle is 50%, use I

2

S; otherwise, use TDM. 

The following is an example of the settings that select a 32 kHz 
to 48 kHz sample rate, utilizing TDM Slot 1 and Slot 2 or the 

left and right channels of an I

2

S stream, depending on the 

FSYNC duty cycle: 

 

Set Switch S1 so that SCL and SDA are pulled to GND.  

 

Set Header JP4 to GND and insert Header J21, leaving 
Header JP3 and Header J18 open.  

 

Set Switch S3 to standalone mode.  

OUTPUT CONFIGURATION 

The binding post output terminals, OUTL−, OUTL+, OUTR−, 
OUTR+, provide the option to connect the speakers with 
standard banana connectors. The OUTL± terminals are for the 
left channel and the OUTR± terminals are for the right channel. 
In addition, the 2-pin, 0.100 inch headers, J6 and J30, are 
provided as alternate options.  

To reduce the system radiated emission, especially if the speaker 
cable length exceeds 20 cm, it may be necessary to include an 
output filter. The recommended filter uses L2, L3, L6, and L7 
ferrite beads and the C1, C2, C39, and C40 capacitors. Refer to 
Figure 7 for more details.  

The addition of ferrite beads other than the type used on the 
EVAL-SSM3582Z may affect the total harmonic distortion 
(THD) and signal-to-noise ratio (SNR) performance as 
specified in th

SSM3582

 and th

SSM3582A

 data sheets. For 

best performance, the Murata ferrite bead type in Table 1 and 
Table 2 is recommended.  

POWER SUPPLY CONFIGURATION 

The J5 (PVDD) and J4 (GND) binding posts provide the power 
supply to the EVAL-SSM3582Z. Take care when connecting the 
dc power with correct polarity and voltage. Reverse polarity or 
overvoltage can damage the EVAL-SSM3582Z permanently. 
Permissible supply voltages range from 4.5 V to 16 V. Higher 
voltages may damage the amplifier. In addition, use the appropriate 
current rated power supply to the EVAL-SSM3582Z. Typically, a 
5 A rating supply is recommended if using 4 Ω speakers and 12 V. 

The EVAL-SSM3582Z has an option to generate 5 V (AVDD), 
3.3 V, and 1.8 V (DVDD) supply voltages from the PVDD 
supply. These voltages are generated using the linear regulators 
on the EVAL-SSM3582Z: U3 for 5 V, U2 for 3.3 V, and U4 for 
1.8 V. The 5 V and 3.3 V regulators can be turned off using 
Header JP11 for 5 V and Header JP10 for 3.3 V. The 3.3 V 
supply is used for the on-board S/PDIF digital audio receiver. 
The 5 V and 1.8 V supplies can provide AVDD and DVDD to 
the 

SSM3582

 or the 

SSM3582A

, if required. By default, the 

EVAL-SSM3582Z is set up for generating 5 V and 1.8 V supplies 
from the 

SSM3582

 or th

SSM3582A

 internal regulators by 

removing the jumpers from the J17 and J23 headers.  

The JP8 and JP9 headers enable or disable th

SSM3582

 or the 

SSM3582A

 internal regulators. By default, these regulators are 

enabled. If using the on-board regulators or the external 5 V or 
1.8 V sources for the AVDD and DVDD pins, Jumper JP8 and 

Содержание SSM3582

Страница 1: ...V to 16 V supply The EVAL SSM3582Z is capable of delivering 14 67 W of continuous output power to a 4 load from a 12 V power supply with 1 THD N or 31 76 W into a 4 load from 16 V 10 THD N The SSM358...

Страница 2: ...de 4 Mono Operation 4 Component Selection 4 Getting Started 6 Suggested System Level and Audio Tests 6 Evaluation Board Schematics and Artwork 7 Ordering Information 12 Bill of Materials 12 REVISION H...

Страница 3: ...n I2 S or TDM mode If the duty cycle is 50 use I2 S otherwise use TDM The following is an example of the settings that select a 32 kHz to 48 kHz sample rate utilizing TDM Slot 1 and Slot 2 or the left...

Страница 4: ...the short must be less than 10 m To set this bit write a 0xB1 hexadecimal value to Register 0x04 to ensure the power stage turns on in mono operation Figure 3 Mono Mode Connection COMPONENT SELECTION...

Страница 5: ...PUT RIGHT OUTPUT RESET RX SERIAL INPUT SELECT S PDIF EXTERNAL DEVICE ADDRESS SETTING JUMPERS 1 8V REGULATOR INTERNAL EXTERNAL SELECT 1 8V LDO ENABLE DISABLE 3 3V REGULATOR INTERNAL EXTERNAL SELECT 3 3...

Страница 6: ...L SSM3582Z 9 Select the digital audio source for the SDATA FSYNC and BCLK pins of the SSM3582 or the SSM3582A By default the EVAL SSM3582Z is set for the S PDIF source Connect the optical or coaxial c...

Страница 7: ...2 TP2 1 TP1 TP12 TP14 TP18 TP1 0 1 PGND 2 PGND 3 AVDD_EN 4 SCL 5 SDA 6 FSYNC 7 SDATA 8 BCLK 9 PGND 10 PGND 1 1 BSTR 1 2 OUTR 1 3 OUTR 1 4 PVDD 1 5 PVDD 1 6 PVDD 1 7 PVDD 1 8 OUTR 1 9 OUTR 2 0 BSTR 21...

Страница 8: ...1 6 _ S PD I F_ RX C3 5 2 2 nF C3 6 1 0 nF R1 4 3 01k C3 0 0 1 0 F R1 2 4 7 k R1 5 R1 3 49 9k 49 9k 49 9k R1 6 R1 1 4 9 9 C3 4 4 7 F J1 3 CTP 0 2 1 A S YEL R7 750 R1 8 10k JP6 C3 8 0 1 0 F S 4 1 2 3 4...

Страница 9: ...NR U4 A3DP3335ARMZ 1 8 RL C2 4 1 0 nF R3 4 7 5 D 1 J5 J4 1 2 J7 A B JP1 1 2 J1 4 1 2 J2 4 A B JP5 A B JP2 1 2 J1 2 1 VOUT 2 SENSE 3 GND 5 EN UVLO 6 GND 7 PG 8 VI N 9 EP U3 ADP7 1 0 2 5 0 V_ LFCSP8 C8...

Страница 10: ...yer Copper Figure 13 EVAL SSM3582Z Second Layer Copper R2 THROUGH R30 NOT FITTED FOR STEREO R27 THROUGH R300OHM FOR MONO LEFT OUTPUT RIGHT OUTPUT J3 1 J32 L6 L7 C3 9 C4 0 1 2 J2 9 1 2 J30 J3 J2 L2 L3...

Страница 11: ...4 Rev B Page 11 of 13 Figure 14 EVAL SSM3582Z Third Layer Copper Figure 15 EVAL SSM3582Z Bottom Layer Copper Figure 16 EVAL SSM3582Z Top Silkscreen Figure 17 EVAL SSM3582Z Bottom Silkscreen 14262 013...

Страница 12: ...ding posts mini uninsulated base through hole Johnson 111 2223 001 9 J6 J7 J9 J12 J14 J19 J24 J29 J30 2 pin headers unshrouded jumper 0 10 use Tyco shunt 881545 2 Sullins Electronics Corp PBC02SAAN or...

Страница 13: ...madesubjecttothefollowingadditionallimitations Customer shall not i rent lease display sell transfer assign sublicense or distribute the Evaluation Board and ii permit anyThird Party to access the Eva...

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