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Operation

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Power Supply

A single power supply is required to power up the EVM. Since most of the pins are PVCC compliant, the
PVCC supply can also be used to power the analog supply (AV

CC

) and can be used to pull up the logic

pins for shutdown (SD) control, fault detection (FAULT), gain (GAIN0 and GAIN1), and PBTL as long as
the voltage slew rate is limited to 10 V/ms. GVDD is an internally generated supply for the output FETs
and is also used to power the PLIMIT voltage divider circuit on the EVM. PLIMIT is GVDD compliant, but
not PVCC compliant. PLIMIT can also be powered by an external supply connected to the PLIMIT pin.
Take care not to power the PLIMIT pin (or connect power to the GVDD pin inadvertently through the
PLIMIT network) when the PVCC supply is turned off. This can cause damage to the IC.

Table 2. Power Supply Requirements

Description

Voltage Range

Current Requirements

Minimum Wire Size

PVCC

8 to 26 V

3 A

24 AWG

Evaluation Module Preparations

1. Ensure that the external power source is set to OFF.
2. Connect the external regulated power supply adjusted from 8V to 26V to the module PVCC and GND

banana jacks taking care to observe marked polarity.

Inputs and Outputs

1. For a BTL Configuration, connect a Load(s) across the outputs (LEFT+ and LEFT-) and (RIGHT+ and

RIGHT-). For PBTL configuration, connect a single load from one of the left speaker jacks to one of the
right speaker jacks depending on how the filters are loaded.

2. Connect audio inputs, either differential or single-ended, to the LIN and RIN RCA phono plugs for BTL

operation. For PBTL operation, apply a single input, differential or single-ended, to the RIN RCA phono
plug.

Control Inputs

1. Ensure the mode jumpers, PBTL, GAIN0, GAIN1, are set correctly depending on the desired operating

state. Also, make sure to connect the left outputs together and the right outputs together at the LEFT
and RIGHT molex connectors if PBTL operation is desired.

Power Up

1. Verify correct voltage and input polarity and turn the external power supplies ON

The EVM should begin operation.

2. Adjust the audio source for the correct volume and enjoy!

Table 3. TPA3113D2 Control Guide

Control

Function

Options

Notes

JP1

Allow amp to self reset after

Insert jumper for self reset.

For latched SC fault, cycle power to reset the fault

short-circuit protection event

Leave off for latched SC fault latch.

GAIN1/GAIN0

Controls amp gain

Insert jumper for zero state

00 = 20 dB (GAIN1, GAIN0)

(low), Leave off for one state

01 = 26 dB

(high)

10 = 32 dB
11 = 36 dB

JP2

Defeats PLIMIT function and allows

Insert jumper for PLIMIT

JP2 connects PLIMIT directly to GVDD

amp to run at full power.

defeat

R7

Adjust PLIMIT (an external voltage can

Remove JP2 to allow PLIMIT The output voltage rails will be limited to

also be applied to the PLIMIT test

operation

approximately 4X the voltage at the PLIMIT pin.

point)

Take care not to apply power to PLIMIT when the
PVCC source is off.

4

TPA3113D2 EVM Audio Amplifier Evaluation Board

SLOU271A – September 2009 – Revised July 2010

Copyright © 2009–2010, Texas Instruments Incorporated

Summary of Contents for TPA3113D2

Page 1: ... 3 Schematic Layout and Bill of Materials 6 3 1 TPA3113D2 EVM Schematic 6 3 2 TPA3113D2 EVM PCB Layers 7 3 3 TPA3113D2 Bill of Materials 9 List of Figures 1 TI TPA3113D2 EVM Audio Power Amplifier Top View 2 2 TI TPA3113D2 EVM Audio Power Amplifier Bottom View 3 3 TPA3113D2 EVM Schematic 6 4 TPA3113D2 EVM Top Side Layout 7 5 TPA3113D2 EVM Bottom Side Layout 8 List of Tables 1 Key Parameters 3 2 Pow...

Page 2: ...n module demonstrates the integrated circuit TPA3113D2 from Texas Instruments Figure 1 TI TPA3113D2 EVM Audio Power Amplifier Top View 2 TPA3113D2 EVM Audio Amplifier Evaluation Board SLOU271A September 2009 Revised July 2010 Copyright 2009 2010 Texas Instruments Incorporated ...

Page 3: ...Ω connect series inductors if using with ferrite bead filters Output Power BTL 6 W per channel Output Power PBTL 12 W 2 Operation 2 1 Quick Start List for Stand Alone Operation Follow these steps to use the TPA3113D2 EVM stand alone or when connecting it into existing circuits or equipment Connections to the EVM module can be made by inserting stripped wire or banana plugs for the power supply and...

Page 4: ...filters are loaded 2 Connect audio inputs either differential or single ended to the LIN and RIN RCA phono plugs for BTL operation For PBTL operation apply a single input differential or single ended to the RIN RCA phono plug Control Inputs 1 Ensure the mode jumpers PBTL GAIN0 GAIN1 are set correctly depending on the desired operating state Also make sure to connect the left outputs together and t...

Page 5: ...NR to each other This can be done by shorting the two pins of the molex connectors labeled LEFT and RIGHT JP3 JP4 JP5 Connects LC filters to outputs The LC filters are not installed in this version of and JP6 the EVM However the inductors are shipped with the EVM package They can be installed and used as normal reconstruction filters or to smooth the audio waveforms for measurement They can also b...

Page 6: ...in 0 875in 0 875in 0 875in Red PVCC Black GND JP3 2 1 1 2 JP4 1 2 JP5 1 2 JP6 1 2 JP2 S1 2 1 L1 22uH DS104C2 2 1 DS104C2 22uH L2 2 1 DS104C2 22uH L3 2 1 DS104C2 22uH L4 1812 8A 125ohms 100MHz FB1 FB2 8A 125ohms 100MHz 1812 1812 8A 125ohms 100MHz FB3 FB4 8A 125ohms 100MHz 1812 FB5 8A 125ohms 100MHz 1812 1812 8A 125ohms 100MHz FB6 GND 100ufd 35V C13 VS D8 100ufd 35V C19 VS D8 0603 330pfd 50V C14 C15...

Page 7: ...nd Bill of Materials 3 2 TPA3113D2 EVM PCB Layers Figure 4 TPA3113D2 EVM Top Side Layout 7 SLOU271A September 2009 Revised July 2010 TPA3113D2 EVM Audio Amplifier Evaluation Board Copyright 2009 2010 Texas Instruments Incorporated ...

Page 8: ... and Bill of Materials www ti com Figure 5 TPA3113D2 EVM Bottom Side Layout 8 TPA3113D2 EVM Audio Amplifier Evaluation Board SLOU271A September 2009 Revised July 2010 Copyright 2009 2010 Texas Instruments Incorporated ...

Page 9: ...HS 8 EEE 1VA101XP 2 C13 C19 PCE3951CT CAP SMD ELECT 100ufd 35V DIGI KEY PANASONIC 20 VS D8 ROHS RESISTORS 9 ERJ 8GEY0R00V 4 RL1 RL2 RL3 RL4 P0 0ECT RESISTOR SMD1206 0 0 OHM DIGI KEY PANASONIC 5 1 4W ROHS 10 ESR10EZPJ100 4 R9 R10 R11 R12 RHM10KCT RESISTOR SMD0805 10 OHM DIGI KEY ROHM 1 1 4W ROHS 11 ERJ 8ENF10R0 1 R5 P10 0FCT RESISTOR SMD1206 10 0 OHM DIGI KEY PANASONIC 1 1 4W ROHS 12 RC0603FR 071KL...

Page 10: ... KEY E SWITCH 4X3MM ROHS BINDING POSTS 24 3760 2 2 LEFT RIGHT 565 3760 2 BINDING POST RED 60V 15A MOUSER POMONA TIN ROHS 25 3760 0 2 LEFT RIGHT 565 3760 0 BINDING POST BLACK MOUSER POMONA 60V 15A TIN ROHS 26 3750 2 1 PVCC 565 3750 2 BINDING POST RED 60V 15A MOUSER POMONA GOLD ROHS 27 3750 0 1 GND 565 3750 0 BINDING POST BLACK MOUSER POMONA 60V 15A GOLD ROHS SHUNTS 28 SPC02SYAN 11 JP1 JP2 JP3 JP4 J...

Page 11: ...duct This notice contains important safety information about temperatures and voltages For additional information on TI s environmental and or safety programs please contact the TI application engineer or visit www ti com esh No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine process or combination in which such TI products o...

Page 12: ...ch statements TI products are not authorized for use in safety critical applications such as life support where a failure of the TI product would reasonably be expected to cause severe personal injury or death unless officers of the parties have executed an agreement specifically governing such use Buyers represent that they have all necessary expertise in the safety and regulatory ramifications o...

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