User's Guide
SLOU286–December 2009
TAS5611/13PHD2EVM
This user’s guide describes the operation of the evaluation module for the TAS5613 150W (TAS5611
125W) Stereo Feedback Analog-Input Digital Amplifiers from Texas Instruments. The user’s guide also
provides measurement data and design information including the schematic, BOM, and PCB layout.
Contents
1
2
Overview ..................................................................................................................... 2
1.1
1.2
TAS5611/13PHD2EVM Features ................................................................................ 3
PCB Key Map ...................................................................................................... 3
Quick Setup Guide .......................................................................................................... 5
2.1
2.2
2.3
2.4
2.5
2.6
Electrostatic Discharge Warning ................................................................................. 5
Unpacking the EVM ................................................................................................ 5
Power Supply Setup ............................................................................................... 5
Applying Input Signal .............................................................................................. 5
Speaker Connection ............................................................................................... 6
Output configuration BTL and PBTL ............................................................................ 6
3
4
Protection .................................................................................................................... 7
3.1
3.2
Related Documentation from Texas Instruments ....................................................................... 8
4.1
Short-Circuit Protection and Fault-Reporting Circuitry ........................................................ 7
Fault Reporting ..................................................................................................... 8
Additional Documentation ......................................................................................... 8
Appendix A Design Documents ................................................................................................. 8
List of Figures
1
2
3
Integrated PurePath™ Digital Amplifier System ........................................................................
Physical Structure for the TAS53630PHDEVM (Approximate Layout) ..............................................
Figure 3. PBTL Mode Configuration......................................................................................
List of Tables
1
2
3
4
TAS5611/13PHD2EVM Specification ....................................................................................
Recommended Supply Voltages..........................................................................................
TAS5611/13 Warning/Error Signal Decoding ...........................................................................
Related Documentation from Texas Instruments .......................................................................
PurePath is a trademark of Texas Instruments.
1
SLOU286–December 2009
TAS5611/13PHD2EVM
Copyright © 2009, Texas Instruments Incorporated
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Overview
This document covers EVM specifications, audio performance and power efficiency measurements
graphs, and design documentation that includes schematics, parts list, layout, and mechanical design.
1.1 TAS5611/13PHD2EVM Features
•
•
•
•
Stereo PurePath™ Premier Pro evaluation module.
Self-contained protection system (short circuit and thermal).
Standard 1VRMS single ended line input or differential input.
Double-sided, plated-through PCB layout.
+12 V Fan Out
Control
2 Channel
Speaker Output
TAS5611/13PHD2EVM
MODULE
2 x Analog Input
Power Supply
Figure 1. Integrated PurePath™ Digital Amplifier System
1.2 PCB Key Map
3
SLOU286–December 2009
TAS5611/13PHD2EVM
Copyright © 2009, Texas Instruments Incorporated
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Overview
LEFT
SPEAKER
OUTPUT
(J11)
RIGHT
SPEAKER
OUTPUT
(J13)
(SW1)
(SW2)
BTL PBTL
BTL PBTL
PVDD
(J15)
RESET
(SW11)
DIFF INPUT DIFF INPUT
(J24) (J25)
JUMPER1
JUMPER2
+12V FAN
OUT
CONTROL
(J22)
Figure 2. Physical Structure for the TAS53630PHDEVM (Approximate Layout)
4
TAS5611/13PHD2EVM
SLOU286–December 2009
Copyright © 2009, Texas Instruments Incorporated
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Quick Setup Guide
2
Quick Setup Guide
This chapter describes the TAS5611/13PHD2EVM board in regards to power supply and system
interfaces. The chapter provides information regarding handling and unpacking, absolute operating
conditions, and a description of the factory default switch and jumper configuration.
This section provides a step–by–step guide to configuring the TAS5611/13PHD2EVM for device
evaluation
2.1 Electrostatic Discharge Warning
Many of the components on the TAS5611/13PHD2EVM are susceptible to damage by electrostatic
discharge (ESD). Customers are advised to observe proper ESD handling precautions when unpacking
and handling the EVM, including the use of a grounded wrist strap at an approved ESD workstation.
CAUTION
Failure to observe ESD handling procedures may result in damage to EVM
components.
2.2 Unpacking the EVM
On opening the TAS5611/13PHD2EVM package, ensure that the following items are included:
•
1 pc. TAS5611/13PHD2EVM board using one TAS5611PHD or one TAS5613PHD.
If any of the items are missing, contact the Texas Instruments Product Information Center nearest you to
inquire about a replacement.
2.3 Power Supply Setup
To power up the EVM, one power supply are needed. An onboard switched voltage regulator is supplying
system power, logic and gate-drive. Power supply is connected to the EVM using connector J15.
NOTE: While powering up set switch SW11 to the RESET position.
Table 2. Recommended Supply Voltages
Description
Voltage Limitations
Current Requirement
Cable
TAS5613 Output stage power
supply
18V - 36V
16 A
J15 (marked PVDD)
TAS5611 Output stage power
supply
16V - 32.5V
16A
J15 (marked PVDD)
CAUTION
damage to your hardware
NOTE: The length of power supply cable must be minimized. Increasing length of PSU cable is
equal to increasing the distortion for the amplifier at high output levels and low frequencies.
2.4 Applying Input Signal
It is possible to apply either a single ended input signal to J20 and J21 or a differential input signal to J24
and J25.
5
SLOU286–December 2009
TAS5611/13PHD2EVM
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Quick Setup Guide
NOTE: If a single ended input signal is applied please insert jumpers in the header J24 and J25.
PVDD
(J15)
RESET
(SW11)
DIFF INPUT DIFF INPUT
(J24)
(J25)
JUMPER1
JUMPER2
+12V FAN
OUT
CONTROL
(J22)
2.5 Speaker Connection
CAUTION
Both positive and negative speaker outputs are floating and may not be
connected to ground (e.g., through an oscilloscope).
2.6 Output configuration BTL and PBTL
When changing mode e.g. from BTL to PBTL make sure that RESET switch (SW11) is activated before
changing the state of mode switches SW1 and SW2. Switch SW1 and SW2 has to be synchronized in
state BTL or PBTL.
Input signal to RCA connector J20 when operating PBTL mode. J21 is disabled.
6
TAS5611/13PHD2EVM
SLOU286–December 2009
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Protection
LEFT BTL
SPEAKER
OUTPUT
(J11)
RIGHT BTL
SPEAKER
OUTPUT
(J13)
(SW1)
(SW2)
BTL PBTL
BTL PBTL
PVDD
(J15)
RESET
(SW11)
PBTL Mode.:
Input
Signal
Figure 3. Figure 3. PBTL Mode Configuration
3
Protection
This section describes the short-circuit protection and fault-reporting circuitry of the TAS5611 and
TAS5613 devices.
3.1 Short-Circuit Protection and Fault-Reporting Circuitry
The TAS5611 and TAS5613 is self-protecting devices that provides fault reporting (including
high-temperature protection and short-circuit protection). TAS5611 and TAS5613 is configured in
back-end auto-recovery mode, and therefore; resets automatically after all errors (M1, M2, and M3 is set
low); see the data sheet (SLAS681) (SLAS676) for further explanation. This mean that the device restart
itself after an error occasion and report through the SD error signal.
7
SLOU286–December 2009
TAS5611/13PHD2EVM
Copyright © 2009, Texas Instruments Incorporated
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Related Documentation from Texas Instruments
3.2 Fault Reporting
The OTW and SD outputs from TAS5611/13 indicate fault conditions. See the
TAS5611PHD/TAS5613PHD data manual for a description of these pins.
Table 3. TAS5611/13 Warning/Error Signal Decoding
SD
0
OTW1
OTW2
Device Condition
0
0
0
1
High-temperature error and/or high-current error
0
Undervoltage lockout or high current error. 100°C
temperature warning.
0
1
1
1
1
0
0
1
1
0
1
1
Undervoltage lockout or high-current error
125°C temperature warning
100°C temperature warning
Normal operation, no errors/warnings
The shutdown signals together with the temperature warning signal give chip-state information as
4
Related Documentation from Texas Instruments
Table 4 contains a list of data manuals that have detailed descriptions of the integrated circuits used in the
Table 4. Related Documentation from
Texas Instruments
Part Number
TAS5611
Literature Number
TAS5613
OPA1632D
LM317M
TL2575HV-15I
4.1 Additional Documentation
1. System Design Considerations for True Digital Audio Power Amplifiers application report (SLAA117)
Appendix A Design Documents
This appendix comprises design documents pertaining to the TAS5611/13PHD2EVM evaluation module.
The documents are presented in the following order.
•
•
•
•
•
•
Schematic (4 pages)
Parts List (1 pages)
PCB Specification (1 page)
PCB Layers (6 pages)
Heat-Sink Drawing (1 page)
Inductor (1 page)
8
Design Documents
SLOU286–December 2009
Copyright © 2009, Texas Instruments Incorporated
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Evaluation Board/Kit Important Notice
Texas Instruments (TI) provides the enclosed product(s) under the following conditions:
This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION, OR EVALUATION
PURPOSES ONLY and is not considered by TI to be a finished end-product fit for general consumer use. Persons handling the
product(s) must have electronics training and observe good engineering practice standards. As such, the goods being provided are
not intended to be complete in terms of required design-, marketing-, and/or manufacturing-related protective considerations,
including product safety and environmental measures typically found in end products that incorporate such semiconductor
components or circuit boards. This evaluation board/kit does not fall within the scope of the European Union directives regarding
electromagnetic compatibility, restricted substances (RoHS), recycling (WEEE), FCC, CE or UL, and therefore may not meet the
technical requirements of these directives or other related directives.
Should this evaluation board/kit not meet the specifications indicated in the User’s Guide, the board/kit may be returned within 30
days from the date of delivery for a full refund. THE FOREGOING WARRANTY IS THE EXCLUSIVE WARRANTY MADE BY
SELLER TO BUYER AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED, OR STATUTORY, INCLUDING
ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE.
The user assumes all responsibility and liability for proper and safe handling of the goods. Further, the user indemnifies TI from all
claims arising from the handling or use of the goods. Due to the open construction of the product, it is the user’s responsibility to
take any and all appropriate precautions with regard to electrostatic discharge.
EXCEPT TO THE EXTENT OF THE INDEMNITY SET FORTH ABOVE, NEITHER PARTY SHALL BE LIABLE TO THE OTHER
FOR ANY INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES.
TI currently deals with a variety of customers for products, and therefore our arrangement with the user is not exclusive.
TI assumes no liability for applications assistance, customer product design, software performance, or infringement of
patents or services described herein.
Please read the User’s Guide and, specifically, the Warnings and Restrictions notice in the User’s Guide prior to handling the
product. 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 or services might be or are used.
FCC Warning
This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION, OR EVALUATION
PURPOSES ONLY and is not considered by TI to be a finished end-product fit for general consumer use. It generates, uses, and
can radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to part 15
of FCC rules, which are designed to provide reasonable protection against radio frequency interference. Operation of this
equipment in other environments may cause interference with radio communications, in which case the user at his own expense
will be required to take whatever measures may be required to correct this interference.
EVM Warnings and Restrictions
It is important to operate this EVM within the input voltage range of 0 V to 32.5 V for the TAS5611; 0 V to 36 V for the TAS5613
and the output voltage range of 0 V to 32.5 V for the TAS5611; 0 V to 36 V for the TAS5613.
Exceeding the specified input range may cause unexpected operation and/or irreversible damage to the EVM. If there are
questions concerning the input range, please contact a TI field representative prior to connecting the input power.
Applying loads outside of the specified output range may result in unintended operation and/or possible permanent damage to the
EVM. Please consult the EVM User's Guide prior to connecting any load to the EVM output. If there is uncertainty as to the load
specification, please contact a TI field representative.
During normal operation, some circuit components may have case temperatures greater than 90°C. The EVM is designed to
operate properly with certain components above 125°C as long as the input and output ranges are maintained. These components
include but are not limited to linear regulators, switching transistors, pass transistors, and current sense resistors. These types of
devices can be identified using the EVM schematic located in the EVM User's Guide. When placing measurement probes near
these devices during operation, please be aware that these devices may be very warm to the touch.
Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265
Copyright © 2009, Texas Instruments Incorporated
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5
4
3
2
1
NOTE1
SCHEMATIC DISCLAIMER
The preliminary schematic information and materials ("Materials") provided here are provided by Texas Instruments
Incorporated ("TI") as a service to its customers and/or suppliers, and may be used for informational purposes only, and
only subject to the following terms. By downloading or viewing these Materials, you are signifying your assent to these
terms.
TI
D
C
B
A
D
C
B
1.) These preliminary evaluation schematics are intended for use for PRELIMINARY ENGINEERING
DEVELOPMENT AND EVALUATION PURPOSES ONLY and are not considered by Texas Instruments to be fit as a
basis for establishing production products or systems. This information may be incomplete in several respects, including
but not limited to information relating to required design, marketing, and/or manufacturing-related protective
considerations and product safety measures typically found in the end-product incorporating the
goods.
TAS5613PHD2EVM
Mass Market EVM
A858-SCH-001.DSN
1.00
Design Name:
Type:
File Name:
Version:
Date:
Design Engineer:
2.) Accordingly, neither TI nor its suppliers warrant the accuracy or completeness of the information, text,
graphics, links or other items contained within the Materials. TI may make changes to the Materials, or to the products
described therein, at any time without notice. TI makes no commitment to update the Materials.
24.Oct. 2009
Jonas Holm
3.) TI assumes no liability for applications assistance, customer product design, software performance, or services
that may be described or referenced in the Materials. The user assumes all responsibility and liability for proper and safe
design and handling of goods. Accordingly, the user indemnifies TI from all claims arising from its use of the Materials.
Audio Configuration: PurePath Premire Pro Digital Amplifier Design
1 x TAS5613PHD
4.) TI currently deals with various customers for products, and therefore our arrangement with the user will not be
exclusive. TI makes no representations regarding the commercial availability of non-TI components that may be
referenced in the Materials.
5.) No license is granted under any patent right or other intellectual property right of TI covering or relating to any
combination, machine, or process in which such TI products or services might be or are used. Except as expressly
provided herein, TI and its suppliers do not grant any express or implied right to you under any patents, copyrights,
trademarks, or trade secret information.
6.) Performance tests and ratings, to the extent referenced in the Materials, are measured using specific computer
systems and/or components and reflect the approximate performance of TI products as measured by those tests. Any
difference in system hardware or software design or configuration may affect actual performance. Buyers should consult
other sources of information to evaluate the performance of systems or components they are considering purchasing.
Interfaces:
J20-J21: Single Ended Analog Audio Input
J11, J13: Banana Bindingposts For Speakers
J15: Banana Bindingpost For H-Bridge Supply
Setup:
4 Ohm (BTL) Speaker Loads
+36 V H-Bridge Supply Voltage
7.) Resale of TI's products or services with statements different from or beyond the parameters stated by TI for that
product or service in official TI data books or data sheets voids all express and any implied warranties for the associated
TI product or service, and is an unfair and deceptive business practice, and TI is not responsible for any such use.
Performance:
2 x 150 W / 4 Ohm (BTL) 10% THD+N
> 102 dB Dynamic Range
8.) The Materials are copyrighted and any unauthorized use may violate copyright, trademark, and other laws. You
may only download one copy for your internal use only, unless you are specifically licensed to do otherwise by TI in
writing. This is a license, not a transfer of title, and is subject to the following restrictions: You may not: (a) modify the
Materials (including any associated warranties, conditions, limitations or notices) or use them for any commercial
purpose, or any public display, performance, sale or rental; (b) decompile, reverse engineer, or disassemble software
Materials except and only to the extent permitted by applicable law; (c) remove any copyright or other proprietary notices
from the Materials; (d) transfer the Materials to another person. You agree to prevent any unauthorized copying of the
Materials. TI may terminate this license at any time if you are in breach of the terms of this Agreement. Upon termination,
you will immediately destroy the Materials.
Page
9.) THE MATERIALS ARE PROVIDED "AS IS" WITHOUT ANY EXPRESS OR IMPLIED
WARRANTY OF ANY KIND INCLUDING WARRANTIES OF MERCHANTABILITY,
1/4: Front Page and Schematic Disclaimer
2/4: TAS5613 Amplifier
3/4: Input Stage
NONINFRINGEMENT OF INTELLECTUAL PROPERTY, OR FITNESS FOR ANY PARTICULAR
PURPOSE. IN NO EVENT SHALL TI OR ITS SUPPLIERS BE LIABLE FOR ANY DAMAGES
WHATSOEVER (INCLUDING, WITHOUT LIMITATION, DAMAGES FOR LOSS OF PROFITS, BUSINESS
INTERRUPTION, LOSS OF INFORMATION) ARISING OUT OF THE USE OF OR INABILITY TO USE
THE MATERIALS, EVEN IF TI HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
4/4: Mechanics
Not Used
A
/
TAS5613 Parts list 1.00
AUDIO/IMAGING GROUP
Home Audio Amplifiers
ALL RIGHTS RESERVED
TEXAS INSTRUMENTS INCORPORATED
TI
Project: TAS5613PHD2EVM
Page Title: Disclaimer
Rev: 1.00
Size: A3
Copyright 2008 Texas Instruments, Inc - All rights reserved - The TI and PurePath Digital logos are trademarks of Texas Instruments.
File Name: A858-SCH-001.DSN
Date: Monday, October 26, 2009
Engineer: Jonas L. Holm
Page: 1 of
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1
5
4
3
2
1
C28, C30, C97 and C98: It is important to choose either a
1206 or 1210 footprint for these decoupling capacitors to
have the posibility to take the audio output trace directly
under the capacitor in layout!
+12V
R29
1
2
1
3.3R
R30
C25
33nF
1
2
3.3R
C18
C19
100nF
PVDD
2
10uF
C21
100nF
C22
100nF
OUT_A
OUT_LM
1
2
C26
1uF
50V
C96
1uF
50V
D
C
B
A
D
C
B
A
GND GND
R33
3.3R
C20
C33
1000uF
50V
GND
0805
0805
2
1
GND
C52
680nF
C40
1nF
VREG
330pF
C44
10nF
J11
-
LEFT
R39
47k
GND
1
2
4 OHM BTL
SPEAKER
OUTPUT
R11
2
1
/RESET
C73
100pF
100R
C45
10nF
GND
GND
R12
+
2
2
1
1
1
48
47
46
45
44
43
42
41
40
39
38
37
36
35
34
33
GND
GND
OC_ADJ
/RESET
C_STARTUP
INPUT_A
INPUT_B
VI_CM
GND_A
GND_B
GND_B
OUT_B
OUT_B
PVDD_B
PVDD_B
BST_B
30.0k
C11
C37
680nF
C41
1nF
2
C14
R34
3.3R
R40
1
1
2
2
2
2
1
3
4
L_IN_P
L_IN_N
GND
C58
10uF
C15
100R
4.7nF
C12
OUT_B
OUT_LP
3
4
100pF
C28
1uF
50V
C97
1uF
50V
1206
C27
L11
Not Used
DAEPWG-M251
5
33nF
PVDD
R51
PVDD
1
2
1
6
High Power
supply
GND
1206
C59
10uF
100R
1nF
J15
7
GND
100pF
R37
3.3R
1
2
PVDD
GND
VREG
SW1
1
3
6
4
U11
PTAS5613PHD
C34
1000uF
50V
C57
47uF
8
AGND
GND
2
C13
VREG
GND
C48
1uF
50V
63V
1
2
9
GND
VREG
BST_C
C16
C49
R52
100nF
10nF
1
1
2
2
2
2
1
10
11
12
13
14
15
16
R_IN_P
R_IN_N
INPUT_C
INPUT_D
FREQ_ADJ
OSC_IO+
OSC_IO-
/SD
PVDD_C
PVDD_C
OUT_C
OUT_C
GND_C
GND_C
GND_D
GND
C60
10uF
C17
100R
C30
1uF
50V
C98
1uF
50V
1206
C29
GND
GND
GND
100pF
VREG
33nF
R14
GND
5
2
1
1206
R59
Not Used
OUT_C
OUT_RM
1
1
2
Switch
R15
2
C72
10uF
100R
R35
3.3R
1
1
GND
100pF
PVDD
10k
GND
R16
OSC_IOP
C35
C38
680nF
C42
1nF
2
2
1
1
/OTW1
J19
1000uF
50V
C46
10nF
R18
2
100R
R17
1
2
J13
-
Optional
Sync signal
RIGHT
100R
1
2
Header
OSC_IOM
GND
4 OHM BTL
SPEAKER
OUTPUT
R19
1
2
100R
/SD
C47
10nF
GND
100R
2
/SD
/OTW1
/OTW2
/CLIP
+
GND
R20
100R
/OTW1
/OTW2
/CLIP
1
C32
1uF
50V
C99
1uF
50V
R21
C36
1000uF
50V PVDD
C39
680nF
C43
1nF
R36
3.3R
2
1
R22
100R
0805
0805
2
1
GND
READY
100R
OUT_D
OUT_RP
3
4
READY
L12
Not Used
DAEPWG-M251
VREG
SW2
1
2
1
33nF
C31
2
5
3
6
4
GND
+12V
1
+12V
3.3R
3.3R
R32
Switch
2
2
1
R31
100nF
C23
100nF
C24
GNDGND
3 OHM LOAD OPERATION:
OUTPUT INDUCTOR STUFFING OPTION:
1) Mount Schottky diodes (D24, D25, D26 and D27)
2) Change ROC = 22kOhm (R12)
OUT_A
OUT_LM
OUT_C
OUT_RM
1
2
1
2
L16
10uH
OUT_A
OUT_B
OUT_C
OUT_D
OUT_LM
OUT_LP
OUT_RM
OUT_RP
1
1
1
1
2
2
2
2
OUT_A
D24
OUT_B
D25
OUT_C
D26
OUT_D
D27
L17
10uH
L18
10uH
Not Used
Not Used
Not Used
Not Used
L19
10uH
GND
GND
GND
GND
OUT_B
OUT_LP
OUT_D
OUT_RP
3
4
3
4
L20
Not Used
L22
Not Used
/
TAS5613 Parts list 1.00
AUDIO/IMAGING GROUP
Home Audio Amplifiers
ALL RIGHTS RESERVED
TEXAS INSTRUMENTS INCORPORATED
TI
Project: TAS5613PHD2EVM
Rev: 1.00
Size: A2
Page Title: Main Schematic
File Name: A858-SCH-001.DSN
Date: Thursday, October 29, 2009
1
Engineer: Jonas L. Holm
Page:
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1
+15V
U13
+12V
+12V
LM317
3
2
4
IN
OUT
OUT
SW11
C55
C56
R47 C53
C54
J22
U12
LM317
10uF
100nF
10uF
100nF
1
3
6
4
560R
1
2
+12V
HeaderFAN
Optional
+15V
R43
4.7k
R44
4.7k
R45
4.7k
2
5
+12V
3
2
4
IN
OUT
OUT
D
C
B
A
D
C
B
GND GND
R48
1.2k
GND GND
D11
Green
D12
Yellow
D13
Red
C61
470uF
C62
100nF
GND
R42
560R
C64
10uF
C65
100nF
Switch
R49
1.00k
GND
Q15
2N7002
R46
4.7k
1
/OTW1
GND
Q12
2N7002
Q1G3ND
2N7002
/RESET
GND GND
R41
C63
10uF
GND GND
D15
1
100 degC
4.7k
1
Chip temp Yellow
/SD
D14
Red
Q14
2N7002
GND
1
/CLIP
READY
Q11
2N7002
GND
GND
R50
820R
1
GND
GND
Q16
2N7002
D16
Red
1
/OTW2
125 degC
Chip temp
GND
12V lin regulator
STATUS MONITOR
ON/OFF Control
3 speed FAN Control
& Temp Indicator
GND
1
2
C77 150pF
1
2
R62 10.0k
C79
+12V
1
PVDD
U17
+15V
TL2575HV-15I
2
C69
4
2
R61
2.2k
R63
2.2k
LEFT Input
FB
10uF
U15
3
R53
0R
100nF
OPA1632
GND
2
2
1
1
2
1
1
1
2
2
1
1
2
2
1
1
2
3
VIN
OUTPUT
Phono socket
V+
L15
1mH
4
3
2
1
8
2
5
L_IN_N
L_IN_P
R57
C67
1nF
R73
100k
C75
470pF
22
1
C85
330uF
63V
C86
C50
V_OCM
J24
Shunt Header
470uF
16V
2.2uF
100V
0R
R75
10R
D18
30BQ060
1
4
J20
GND
R54
0R
EN V-
2
1
2
1
1
R64
2.2k
R65
2.2k
7
6
C66
10uF
R66 10.0k
1
GND
GND
2
+15V Switcher
C78 150pF
1
Jumper J24 & J25 pin 1-2
For single inded input
2
For ballanced input use J24 & J25
1
2
C82 150pF
1
2
R68 10.0k
C84
+12V
1
2
C70
R67
2.2k
R69
2.2k
RIGHT Input
10uF
U16
3
R55
0R
100nF
OPA1632
GND
2
2
1
1
2
1
1
1
1
2
2
1
1
2
2
3
Phono socket
V+
4
8
5
R_IN_N
R_IN_P
3
2
1
R58
0R
C68
1nF
R74
100k
C76
470pF
22
1
2
1
V_OCM
J25
Shunt Header
4
J21
GND
R56
0R
EN V-
2
1
R70
2.2k
R71
2.2k
7
6
C71
10uF
A
/
TAS5613 Parts list 1.00
R72 10.0k
GND
1
2
AUDIO/IMAGING GROUP
Home Audio Amplifiers
Single ended or ballanced input
1st order high pass at 1.6Hz
& 2nd order active low pass at 80kHz
C83 150pF
ALL RIGHTS RESERVED
TI
TEXAS INSTRUMENTS INCORPORATED
1
2
Project: TAS5613PHD2EVM
Page Title: Input Stage
Rev: 1.00
Size: A3
File Name: A858-SCH-001.DSN
Date: Monday, October 26, 2009
Engineer: Jonas L. Holm
Page: 3 of
4
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5
4
3
2
1
5
4
3
2
1
MECHANICS
SCREW11
SCREW12
SCREW13
SCREW14
D
C
B
A
D
MH11
MH14
1
1
Mounting Hole
Mounting Hole
MH12
1
MH15
1
HEATSINK11
M3x6
M3x6
M3x6
M3x6
Mounting Hole
Mounting Hole
MH13
1
MH16
1
HEAT SINK
WASHER11
WASHER12
WASHER13
WASHER14
TIC-HSINK-068_1.00
Mounting Hole
Mounting Hole
M3
M3
M3
M3
GND
C
SCREW15
SCREW16
F11
PCB11
1
1
1
1
1
Not Used
F12
M3x6
M3x6
1
PCB
WASHER15
WASHER16
A858-PCB-001_1.00
Not Used
F13
B
1
JUMPER2
JUMPER1
M3
M3
Not Used
F14
STANDOFF11
STANDOFF12
STANDOFF13
STANDOFF14
1
Not Used
Black
Black
M3x10
M3x10
M3x10
M3x10
/
TAS5613 Parts list 1
AUDIO/IMAGING GROUP
A
Home Audio Amplifiers
ALL RIGHTS RESERVED
TEXAS INSTRUMENTS INCORPORATED
TI
Project: TAS5613PHD2EVM
Page Title: Mechanics
Rev: 1.00
Size: A4
File Name: A858-SCH-001.DSN
Engineer: Jonas L. Holm
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Date: Wednesday, October 28, 2009
2
Page: 4 of
1
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5
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3
TAS5611_13PHD2EVM Parts List (1.00).xls
TI
Qty Part Reference
Description
0R / 5% / 0603 Thick Film Resistor
Manufacture
Yageo
First Mfr P/N
RC0603JR-070RL
6
R53 R54 R55 R56 R57 R58
12 R40 R51 R52 R59
100R / 100mW / 5% / 0603 Thick Film Resistor Yageo
RC0603JR-07100RL
1
1
4
2
1
1
8
R49
R15
1.00k / 100mW / 1% / 0603 Thick Film Resistor Yageo
RC0603FR-071KL
RC0603JR-0710KL
RC0603FR-0710KL
RC0603JR-07100KL
RC0603JR-0710RL
RC0603JR-071K2L
RC0603JR-072K2L
10k / 100mW / 5% / 0603 Thick Film Resistor
Yageo
R62 R66 R68 R72
R73 R74
R75
10.0k / 100mW / 1% / 0603 Thick Film Resistor Yageo
100k / 100mW / 5% / 0603 Thick Film Resistor Yageo
10R / 100mW / 5% / 0603 Thick Film Resistor
1.2k / 100mW / 5% / 0603 Thick Film Resistor
Yageo
Yageo
Yageo
R48
R61 R63 R64 R65 R67 R69 R70 R71 2.2k / 100mW / 5% / 0603 Thick Film Resistor
1
9
5
1
R12
R37
30.0k / 100mW / 1% / 0603 Thick Film Resistor Yageo
3.3R / 100mW / 5% / 0603 Thick Film Resistor Yageo
RC0603FR-0730KL
RC0603JR-073R3L
RC0603JR-074K7L
RC0603JR-0747KL
R41 R43 R44 R45 R46
R39
4.7k / 100mW / 5% / 0603 Thick Film Resistor
Yageo
47k / 100mW / 5% / 0603 Thick Film Resistor
Yageo
2
1
R42 R47
R50
560R / 100mW / 5% / 0603 Thick Film Resistor Yageo
820R / 100mW / 5% / 0603 Thick Film Resistor Yageo
RC0603JR-07560RL
RC0603JR-07820RL
5
5
C44 C45 C46 C47 C49
C26 C32 C48 C96 C99
Ceramic 10nF / 100V / 20% X7R 0805 Capacitor BC Components
Ceramic 1uF / 50V / 10% X7R 0805 Capacitor Murata
0805B103M101NT
GRM21BR71H105KA12L
1
4
4
C11
Ceramic 4.7nF / 50V / 10% X7R 0805 Capacitor BC Components
Ceramic 1nF / 100V / 10% NP0 1206 Capacitor BC Components
Ceramic 1uF / 50V / 10% X7R 1206 Capacitor TDK
Ceramic 2.2uF / 100V / 20% X7R 1210
0805B472K500NT
1206N102K101NT
C3216X7R1H105K
C40 C41 C42 C43
C28 C30 C97 C98
1
1
C50
C12
Capacitor
Murata
GRM32ER72A225KA35L
0805N102K500NT
Ceramic 1nF / 50V / 10% NP0 0805 Capacitor BC Components
C13 C19 C21 C22 C23 C24 C54 C56
12 C62 C65 C79 C84
Ceramic 100nF / 16V / 20% X7R 0603 Capacitor Vishay
VJ0603Y104MXJ
0603B333M250NT
0603N101K500NT
0603N102K500NT
0603N151K500NT
0603N331K500NT
0603N471K500NT
4
5
2
4
1
2
C25 C27 C29 C31
C58 C59 C60 C72 C73
C67 C68
Ceramic 33nF / 25V / 20% X7R 0603 Capacitor BC Components
Ceramic 100pF / 50V / 10% NP0 0603 Capacitor BC Components
Ceramic 1nF / 50V / 10% NP0 0603 Capacitor BC Components
C77 C78 C82 C83
C20
Ceramic 150pF / 50V / 10% NP0 0603 Capacitor BC Components
Ceramic 330pF / 50V / 10% NP0 0603 Capacitor BC Components
Ceramic 470pF / 50V / 10% NP0 0603 Capacitor BC Components
Metal Film 680nF / 250V / 20% Polypropylene
C75 C76
4
C37 C38 C39 C52
15mm (W:8mm L:18mm) Capacitor
Wima
MKP 4 0.68uF/20%/250Vdc PCM15
ECA1CM100
C14 C15 C16 C17 C18 C53 C55 C63 Electrolytic 10uF / 16V / 20% Aluminium 2mm
13 C64 C66 C69 C70 C71
ø5mm M Series - General Purpose Capacitor
Electrolytic 1000uF / 50V / 20% Aluminium
7.5mm ø16mm FC Series - Low Impedance
Capacitor
Panasonic
Panasonic
4
C33 C34 C35 C36
EEUFC1H102
Electrolytic 330uF / 63V / 20% Aluminium 5mm
1
1
C85
C57
ø10mm FC Series - Low Impedance Capacitor Panasonic
Electrolytic 47uF / 63V / 20% Aluminium 5mm
EEUFC1J331L
2222 136 68479
ø10mm Capacitor
BC Components
Electrolytic 470uF / 16V / 20% Aluminium
1
1
C86
C61
3.5mm ø8mm Low ESR Capacitor
Rubycon
16ZL470M8x16
EEUFC1E471L
3.5mm ø8mm FC Series - Low Impedance
1mH / 0.55A 20% (1.68R) Ferrite Inductor
(12.8x12.8x8.0)
Panasonic
1
4
1
3
1
2
L15
Epcos
Toko
Int. Rectifier
Toshiba
Toshiba
Toshiba
B82477G4105M000
C3B-A0336
30BQ060PBF
TLSU1008
TLGU1008
TLYU1008
L16 L17 L18 L19
D18
D13 D14 D16
D11
10uH / Ferrite Inductor
3A / 60V Schottky 30BQ060 Diode (SMC)
Light Emitting Red Red LED (0603)
Light Emitting Green Green LED (0603)
Light Emitting Yellow Yellow LED (0603)
0.115A / 60V N-ch Power 2N7002 Mosfet (SOT-
23)
D12 D15
6
Q11 Q12 Q13 Q14 Q15 Q16
Fairchild
2N7002
TAS5611PHD or TAS5613PHD / Stereo Analog
Audio PWM Power Output Stage (PHD64)
OPA1632 / High-Performance, Fully-Differential
Audio Opamp (SO8)
LM317 / 0.5A Positive Adjustable Regulator
(DCY)
1
2
2
U11
Texas Instruments
Texas Instruments
Texas Instruments
TAS5611PHD or TAS5613PHD
OPA1632D
U15 U16
U12 U13
LM317MDCY
TL2575HV-15I / 15V/1-A SIMPLE STEP-DOWN
1
U17
SWITCHING VOLTAGE REGULATORS (KTT5) Texas Instruments
TL2575HV-15IKTTR
1 of 2
17.Dec. 2009
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TAS5611_13PHD2EVM Parts List (1.00).xls
TI
SCREW11 SCREW12 SCREW13
SCREW14 SCREW15 SCREW16
6
M3x6 Pan Head, Pozidriv, A2 Screw
Bossard
BN 81882 M3x6
WASHER11 WASHER12 WASHER13
6
4
2
2
2
3
WASHER14 WASHER15 WASHER16 M3 Stainless Steel Spring Washer
STANDOFF11 STANDOFF12
Bossard
Ettinger
Molex
BN 760 M3
05.03.108
22-27-2021
15-29-1024
RJ843-4W
TPP-3CT
STANDOFF13 STANDOFF14
M3x10 Aluminium Stand-off
2 pins / 1 row / 2.54mm Pitch Vertical Male
Friction lock Pin header Header
2 pins / 1 row / 2.54mm Pitch Horizontal Female
Black Shunt Black
J19 J22
JUMPER1 JUMPER2
J20 J21
Molex
Horizontal Female w. Switch Coax Phono socket Chunfeng
2 pins / Vertical Female Banana Red and black
J11 J13 J15
banana socket
Cliff
3 pins / 1 row / 2.54mm Pitch Vertical Male
2
3
J24 J25
SW1 SW2 SW11
Shunt Header Shunt Header
Samtec
NKK-Nikkai
TSW-107-07-T-T
G-22-AP
Switch DPDT PCB Mount Switch
A858-PCB-001_1.00 / TAS5613PHD2EVM2
Printed Circuit Board (ver. 1.00)
TIC-HSINK-068_1.00 / Heatsink for 1 PHD
package, length 78 mm
1
1
PCB11
Elcon
A858-PCB-001(1.00)
TIC-HSINK-068(1.00)
HEATSINK11
Phonotech
2 of 2
17.Dec. 2009
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TI
A858-PCBSPEC-001(1.00).doc
Jonas Holm
TAS5613PHD2EVM
PCB SPECIFICATION
Version 1.00
BOARD IDENTIFICATION:
BOARD TYPE:
A858-PCB-001(1.00)
DOUBLE-SIDED PLATED-THROUGH BOARD
LAMINATE TYPE:
FR4
LAMINATE THICKNESS:
TOP LAYER COPPER THICKNESS:
1.6mm
70μm (INCL. PLATING EXTERIOR LAYER)
BOTTOM LAYER COPPER THICKNESS:
COPPER PLATING OF HOLES:
MINIMUM HOLE DIAMETER
SILKSCREEN COMPONENT SIDE:
SILKSCREEN SOLDER SIDE:
SOLDER MASK COMPONENT SIDE:
SOLDER MASK SOLDER SIDE:
PROTECTIVE COATING:
ELECTRICAL TEST:
70μm (INCL. PLATING EXTERIOR LAYER)
>25μm
0.3 mm
WHITE - REMOVE SILKSCREEN FROM SOLDER AREA & PRE-TINNED AREAS
None
GREEN
GREEN
SOLDER COATING AND CHEMICAL SILVER ON FREE COPPER
PCB MUST BE ELECTRICAL TESTED
PERFAG 2E (www.perfag.dk)
MANUFACTURED TO:
APERTURE TABLE:
PERFAG 10A (www.perfag.dk)
BOARD SIZE:
95 x 142 mm
Aprox. Number of holes
468
COMMENTS:
SEE DRILL INFORMATION FILE (A858-PCB-001(1.00).pdf)
Page 1 of 1
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Company Confidential
Inductor Specification
DWG no.:
TIC-INDC-020(1.00)
Text:
10µH / 5A / 30mΩ
Diagram:
1
2
Material:
Core:
Wire:
Micrometals T94-2
ø1.00mm Cu, one layer lacquer, 155°C
Foot-print top view
Mechanical:
Lead length: 8mm-12mm, stripped and pre-tinned.
Production: Step 1: N1, 35 turns ø1.00mm cu 2L, start 1, end 2
Step 2: bend and strip/pre-tin leads.
Test:
Inductance: pin 1 –2
9 – 11 µH @ 0.1Vrms/10kHz
Release date: 2005-04-12, Jonas Svendsen / Kim Madsen
Texas Instruments Denmark A/S
Lyngby Hovedgade 4
DK-2800 Kgs. Lyngby
Denmark
VAT-no.
Phone: +45 96 34 68 68
Fax: +45 38 88 78 99
20 53 16 73
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