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User's Guide SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM Thisuser’s guideprovidesspecificationsfortheevaluationmodule (EVM) forTAS5612L and TAS5614L DigitalInputClass-DPower Stages withthe TAS5538 DigitalAudio ProcessorwithPWM Outputfrom Texas Instruments.The user’s guidealsodescribesoperationoftheEVM and providesdesigninformation includingschematic,billofmaterials,and PCB layout.

Contents

PurePathisa trademarkofTexas Instruments. I2C isa trademarkofNXP B.V.Corp Netherlands. 1SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

Introduction www.ti.com

1 Introduction

The TAS5612L-TAS5614LDDVEVM PurePath™ EVM demonstratesthecurrentversionofTAS5612LDDV orTAS5614LDDV integratedcircuitpower stagewithTAS5538DGG fromTexas Instruments(TI). The TAS5612L and TAS5614L arehigh-performance,integratedStereoFeedback DigitalAmplifierPower Stagesdesignedtodrive4Ω speakersatup to150W perchannelforTAS5614LDDV and 125W per channelforTAS5612LDDV. They requireonlya passivedemodulationfiltertodeliverefficienthighquality audioamplification. TAS5538DGG isa highperformance32 bit(24bitinput)multichannelPurePath™ DigitalPulseWidth Modulator(PWM) withfullysymmetricalAD modulationscheme. The devicealsohas DigitalAudio Processing(DAP) thatprovides48 bitsignalprocessing,advanced performanceand a highlevelof systemintegration. ThisEVM can be configuredas 2 BTL channelsforstereoevaluationor1 PBTL (parallelBTL) channelfor subwooferevaluation.Togetherwitha TIInput-USBBoard 3,itprovidesa completestereodigitalaudio amplifiersystemwhichincludesdigitalinput(S/PDIF),analoginputs,interfacetoPC and DAP features likedigitalvolume control,inputand outputmixers,automute,tonecontrols,loudness,EQ filtersand dynamicrangecompression(DRC).Thereareconfigurationoptionsforpower stagefailureprotection. NOTE: TAS5612L-TAS5614LDDVEVM ISSHIPPED WITH THE CURRENT VERSION OF TAS5614L INSTALLED. TO EVALUATE THE CURRENT VERSION OF TAS5612L PLEASE VISITTHE PRODUCT FOLDER AT www.ti.com AND REQUEST A FREE SAMPLE; AND, REPLACE THE TAS5614L WITH TAS5612L. Table1.TAS5612L-TAS5614LDDVEVM Specification Key Parameters Values TAS5614L Power SupplyVoltage 12 -38 Vdc TAS5612L Power SupplyVoltage 12 -34 Vdc Number ofChannels 2 x BTL or1 x PBTL Load Impedance BTL 4-8Ohm Load Impedance PBTL 2-4Ohm TAS5614L Outputpower BTL 150W /4Ohm /10%THD+N TAS5614L Outputpower PBTL 300W /2Ohm /10%THD+N TAS5612L Outputpower BTL 125W /4Ohm /10%THD+N TAS5612L Outputpower PBTL 250W /2Ohm /10%THD+N Dynamic Range (DNR) >105 dB PWM Processor TAS5538DGG OutputStage TAS5614LDDV orTAS5612LDDV NOTE: The heatsinkinTAS5612L-TAS5614LDDVEVM isdesignedtocomplywithtime requirementsofthe“AmplifierRule”,US FederalTradeCommission 16 CFR 432,when the EVM isoperatedatpower levelsspecifiedabove.Ifcontinuousoperationatspecifiedoutput power isrequireditisnecessarytoprovideforcedairflowthroughtheheatsink. (TheFTC regulationspecifiesoperationin25°C ambienttemperatureforone hourat1/8 specifiedoutputpower (18.75W perchannelforTAS5614LDDVEVM, 15.63W perchannel forTAS5612LDDVEVM) and thenfor5 minutesatspecifiedoutputpower (150W perchannel forTAS5614LDDVEVM, 125W perchannelforTAS5612LDDVEVM). Then distortionvs. outputpower can be measured.TAS5612L-TAS5614LDDVEVM providesspecifiedoutput power forseveralminutesormore withoutthermalshutdown.THD isnotspecifiedforthis testbutistypicallynear10%.)

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www.ti.com Introduction Figure1.TAS5612L-TAS5614LDDVEVM 3SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

Introduction www.ti.com Figure2.Input-USB Board3 Gerber(layout)filesareavailableat:http://www.ti.com. The EVM isdeliveredwithcablesand a TIInput-USBBoard 3 toconnecttoan inputsourceand toa PC forcontrol.Refertothesection"UnpackingtheEVM" below.

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Example: TI Input - USB Board 3

8 Channel

www.ti.com Introduction

1.1 TAS5612L-TAS5614LDDVEVM Features

  • StereoPurePathDigital™ evaluationmodule.
  • Self-containedprotectionsystem(overcurrent,overtemperature,undervoltageand missingPWM input).
  • StandardI2S and I2C ™ /ControlconnectorforTIinputboard
  • Double-sidedplated-throughPCB layout. Figure3.IntegratedPurePath Digital™ AmplifierSystem

1.2 EVM PhysicalStructure

PhysicalstructureoftheTAS5612L-TAS5614LDDVEVM isillustratedinFigure4. 5SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

(+12 to +36 Vdc) + LEFT SPEAKER OUTPUTS – LOUT+ LOUT– + RIGHT SPEAKER OUTPUTS – ROUT+ ROUT– HEATSINK LEFT CHANNEL OUTPUT FILTERS RIGHT CHANNEL OUTPUT FILTERS INPUT SIGNAL & CONTROL INTERFACE (J1) TAS5538 TAS5612L TAS5614L MODE PINSS1 +3.3Vdc REGULATOR Reset LED STATUS LEDs RESET NORMAL PBTL – BTL QuickSetupGuide www.ti.com Figure4.PhysicalStructureoftheTAS5612L-TAS5614LDDVEVM (ApproximateLayout)

2 Quick Setup Guide

ThissectiondescribestheTAS5612L-TAS5614LDDVEVM power suppliesand systeminterfaces.It providesinformationregardinghandlingand unpacking,absoluteoperatingconditions,and switchand jumperpositions.Italsoprovidesa step-by-stepguidetosettingup theTAS5612L-TAS5614LDDVEVM for deviceevaluation.

2.1 ElectrostaticDischargeWarning

Many ofthecomponents oftheTAS5612L-TAS5614LDDVEVM aresusceptibletodamage by electrostatic discharge(ESD).CustomersareadvisedtoobserveproperESD handlingprecautionswhen unpacking and handlingtheEVM, includingtheuse ofa groundedwriststrapatan approvedESD workstation.

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www.ti.com QuickSetupGuide CAUTION Failureto observe ESD handlingprocedurescan resultin damage to EVM components.

2.2 Unpacking theEVM

Upon openingtheTAS5612L-TAS5614LDDVEVM package,checktomake surethatthefollowingitems areincluded:

  • 1 pc.TAS5612L-TAS5614LDDVEVM using1 TAS5538DGG and 1 TAS5612LDDV orTAS5614LDDV.
  • 1 pc.TIInput-USBBoard 3 forinterfacingTAS5612L-TAS5614LDDVEVM toSPDIF/analogsources and PC forcontrol.
  • 1 pc.Signaland ControlInterfaceIDC cableforconnectiontoan I2S front-endliketheInput-USB Board 3.
  • 1 pc.CableforconnectingInput-USBBoard 3 toa USB porton a PC forTAS5538 controlby software.
  • Ifany oftheseitemsaremissing,contactthenearestTexas InstrumentsProductInformationCenterto inquireabouta replacement. ConnecttheInput-USBBoard 3 totheTAS5612L/14LDDVEVM usingthedeliveredIDC cable.

2.3 Power Supply Setup

2 power suppliesareneeded topower theTAS5612L-TAS5614LDDVEVM. Voltageand current requirementsforthePVDD power supplyareshown inthetablebelow.Connectthispower supplytothe EVM usingbanana cablesorwiressecuredtothepower supplybindingpostsPVDD and GND. A second power supply,12Vdc at500mA, isrequiredtopower Input-USBBoard 3.Connectthe12V power supply totheInput-USBBoard 3 usingbanana cablesorwiressecuredtothepower supplybindingposts+12V and GND. Table2.Recommended PVDD Power Supply Voltages Description VoltageRange CurrentRequirements BindingPost TAS5614L Power SupplyVoltage 12 -38 Vdc 16 A PVDD TAS5612L Power SupplyVoltage 12 -34 Vdc 14 A PVDD CAUTION NOTE: Applyingvoltagesabove specificationsinTable2 can cause permanent damage to the hardware.Verifypolarityof power supplyconnectionsbefore poweringtheEVM. NOTE: The lengthofthepower supplycablemust be minimized.IncreasinglengthofPSU cableis likelytoincreasedistortionfortheamplifierathighoutputlevelsand lowfrequencies.

2.4 Speaker Connection

Both positiveand negativespeaker outputsare floatingand cannot be connectedtoground (e.g.throughan oscilloscope).To measure a BTL output connectan oscilloscopeprobetoeach sideoftheoutput,connectbothground clipsto EVM ground and use the oscilloscopemath functionsto show the differencebetween the2 probesignals. 7SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

(+12 to +36 Vdc) + LEFT SPEAKER OUTPUTS – + RIGHT SPEAKER OUTPUTS – HEATSINK LEFT CHANNEL OUTPUT FILTERS RIGHT CHANNEL OUTPUT FILTERS INPUT SIGNAL & CONTROL INTERFACE (J1) TAS5538 TAS5612L TAS5614L MODE PINSS1 +3.3Vdc REGULATOR Reset LED STATUS LEDs RESET NORMAL PBTL – BTL QuickSetupGuide www.ti.com

2.5 Output ConfigurationBTL and PBTL

When changingmode fromBTL toPBTL, make surethattheAMP_RESET switchissettoRESET before changingshuntson Mode headersM3, D and C. -ForBTL mode placea shunton pins1 and 2 ofeach header,atthepositionsmarked BTL. -ForPBTL mode placea shunton pins3 and 2 ofeach header,atthepositionsmarked PBTL. InPBTL mode theloadmust be connectedaccordingtoFigure5: Figure5.PBTL Mode Configuration

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www.ti.com QuickSetupGuide

2.6 GUI SoftwareInstallationand EVM Startup

The TAS5612L-TAS5614LDDVEVM iscontrolledby theInput-USBBoard 3 withtheTAS5538 GUI.The TAS5538 GUI providescontrolofallregistersinTAS5538. Download thecurrentversionoftheGUI zip file"TAS5538_xxxx.zip"fromtheTAS5612LDDVEVM folderortheTAS5614LDDVEVM folderon http://www.ti.comtoa convenientlocationon thehostPC. Createa new folderata convenientlocation and extractthefilesfromthezipfiletothenew folder.Be suretocheckthebox labeled“Use folder names ”duringextraction.Then connecttheUSB cablebetween thehostPC and jackUSB-IN on the Input-USBBoard 3.Then turnon the12V power supplyand thePVDD power supplyinthatorder. StarttheGUI by opening"TAS55XX_GUI.exe" inthenew folder.Startupwilltakea few secondsand the followingwindow willopen. ClickCONNECT and thenREAD, toverifythatthedatainregister0x00 read6C . Figure6.TAS5538 GUI Window NOTE: Iftheaddressthatisreadisnot6C ,make suretheUSB isconnectedtothePC and check forHID enumeration. – Open thePC devicemanager.Right-clickMy Computer on desktopand open Properties, thenHardware,thenDeviceManager. – Expand "Human InterfaceDevices". – Plugand unplugtheUSB cablefromInput-USBBoard 3 and confirmthatan HID icon appears. Uncheck "ShutDown"and clickthe"MasterVolume" icontoopen thefollowingwindow. 9SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

QuickSetupGuide www.ti.com Figure7.Channel and Master Volume GUI Uncheck mute and increasevolume tothedesiredlevel,and closethewindow.Then presstheMUTE switchon Input-USBBoard 3 toextinguishtheMUTE LED. The EVM shouldnow operate. NOTE: Insome caseswhen power iscycledon theDUT orInput-USBBoard 3 buttheGUI isnot closed,itwillbe necessarytotakean actionlikecheckingand uncheckingmute toforceI2C communicationtorefreshTAS5538. Insome casesthestartupprocessmust be repeated. An SPDIF inputmay be providedtoInput-USBBoard 3 by coax tojackCOAX orby opticalconnectionto jackOPTO. Alternativelyan analoginputmay be connectedtojackADC1_IN. An analoginputwill overridean SPDIF input.

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www.ti.com RelatedDocumentationfromTexas Instruments

2.7 Self-Protectionand FaultReporting

The TAS5612L and TAS5614L areself-protectingdevicesthatprovideovertemperature,overcurrent, undervoltageand missing-PWM-inputprotection,withextensivefaultreporting.Forfulldescriptionsof thesefunctionsconsultdatasheetSLAS847 forTAS5612LA and datasheetSLAS846 forTAS5614LA.

3 RelatedDocumentation from Texas Instruments

The followingtablelistsdatasheetsthatprovidedetaileddescriptionsofintegratedcircuitsfromTIthatare used intheTAS5612L-TAS5614LDDVEVM. These datasheetscan be obtainedathttp://www.ti.com. Table3.RelatedDocumentation from Texas Instruments PartNumber LiteratureNumber TAS5538 SLES255 TAS5612LA SLAS847 TAS5614LA SLAS846 TPS3825-33 SLVS165 TLV1117-33C SLVS561

3.1 AdditionalDocumentation

  1. System DesignConsiderationsforTrueDigitalAudioPower Amplifiers(SLAA117 ) 2. DigitalAudioMeasurements (SLAA114 ) 3. PSRR forPurePathDigitalAudioAmplifiers(SLEA049 ) 4. Power RatinginAudioAmplifier(SLEA047 ) 5. PurePathDigitalAM InterferenceAvoidance(SLEA040 ) 6. Click& Pop Measurements Technique(SLEA044 ) 7. Power SupplyRecommendations forDVD-Receivers(SLEA027 ) 8. ImplementationofPower SupplyVolume Control(SLEA038 ) 11SLAU375 –May 2012 TAS5612L-TAS5614LDDVEVM SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

www.ti.com Appendix A Design Information This appendix includesdesign informationforthe TAS5612L-TAS5614LDDVEVM. This informationis presentedinthefollowingorder.

  • Table4 BillofMaterialsforTAS5614LDDVEVM
  • SectionA.1EVM Custom Component Vendors
  • SectionA.2TAS5612L-TAS5614LDDVEVM PCB SPECIFICATION
  • SectionA.3EVM PCB Layers
  • SectionA.4EVM and Input-USBBoard 3 Schematics Table4.BillofMaterialsforTAS5614LDDVEVM Manu PartNo. Qty. Ref Des Vendor PartNo. Description Vendor Manu. TI-SEMICONDUCTORS TAS5614LDDV 1 U1 TAS5614LDDV 150W-STEREO/300W-MONO PUREPATH Texas Texas DIGITAL AMP HTSSOP44-DDV ROHS Instruments Instruments TAS5538DGG 1 U2 TAS5538DGG 8 CHANNEL HD COMPATIBLE AUDIO Texas Texas PROCESSOR TSSOP56-DGG ROHS Instruments Instruments TPS3825-33DBVT 1 U3 296-2636-1 PROCESSOR SUPERVISORY CIRCUITS Digi-Key Texas 2.93V200ms SOT23-DBV5 ROHS Instruments TLV1117-33CDCYR 1 VR1 296-21112-1-ND VOLT REG LDO 3.3V800mA SOT223-DCY Digi-Key Texas ROHS Instruments SEMICONDUCTORS 2N7002 4 Q1, Q2, Q3, Q4 2N7002NCT N-FET 60V 115mA 200mW 7.5OHM@10V Digi-Key Fairchild SOT23-DBV3 ROHS SML-LXT0805SRW-TR 3 125C, FAULT, 67-1555-1 LED, RED 2.0VSMD0805 ROHS Digi-Key Lumex Opto AMP_RESET SML-LXT0805YW-TR 1 CLIP 67-1554-1 LED, YELLOW 2.0VSMD0805 ROHS Digi-Key Lumex Opto CAPACITORS C1206C102K1RACTU 4 C21, C24, C27, 399-1222-1 CAP SMD1206 CERM 1000PFD 100V 1% Digi-Key Kemet C30 C0G ROHS GRM188R71H472KA01D 2 C54, C55 490-1506-1 CAP SMD0603 CERM 4700PFD 50V 10% Digi-Key Murata X7R ROHS GRM21BR72A103KA01L 5 C22, C25, C28, 490-1652-1 CAP SMD0805 CERM 0.01UFD 100V 10% Digi-Key Murata C31, C70 X7R ROHS GRM188R71H333KA61D 4 C16, C17, C18, 490-3286-1-ND CAP SMD0603 CERM 0.033UFD 50V 10% Digi-Key Murata C19 X7R ROHS GRM188R71C473KA01D 2 C56, C57 490-1529-1 CAP SMD0603 CERM 0.047UFD 16V 10% Digi-Key Murata ROHS GRM188R71C104KA01D 17 C2, C3, C4, C7, 490-1532-1-ND CAP SMD0603 CERM 0.1UFD 16V 10% Digi-Key Murata C32, C50, C52, X7R ROHS C53, C59, C60, C62, C63, C64, C65, C74, C76, C77 MKP4 -.68/250/20 4 C20, C23, C26, MKP4 -0.68/250/20 CAP POLYPRO FILM MKP4 0.68UFD 250V WIMA WIMA C29 20% ROHS C1608X7R1C105K 2 C5, C6 445-1604-1 CAP SMD0603 CERM 1.0UFD 16V 10% Digi-Key TDK X7R ROHS GRM21BR71H105KA12L 5 C8, C9, C10, 490-4736-1-ND CAP SMD0805 CERM 1.0UFD 50V 10% Digi-Key Murata C11, C71 X7R ROHS GRM21BR61C106KE15L 3 C58, C61, C66 490-3886-1 CAP SMD0805 CERM 10UFD 16V 10% Digi-Key Murata X5R ROHS CAPACITORS EEU-FC1C470 4 C1, C51, C73, P11196 CAP 47UFD 16V RAD ALUM ELEC FC Digi-Key Panasonic C75 ROHS UKZ1H470MPM 1 C72 493-3194 CAP ALUM ELEC KZ RADIAL 47UFD 50V Digi-Key Nichicon 20% ROHS EEU-FC1H102 2 C12, C14 P10333-ND CAP ALUM ELEC FC RADIAL 1000UFD Digi-Key Panasonic 50V 20% ROHS

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www.ti.com AppendixA Table4.BillofMaterialsforTAS5614LDDVEVM (continued) Manu PartNo. Qty. Ref Des Vendor PartNo. Description Vendor Manu. RESISTORS RMCF0402ZT0R00 2 R12, R13 RMCF0402ZT0R00CT ZERO OHM JUMPER SMT 0402 0 OHM Digi-Key Stackpole 1/16W,5% ROHS Electronics ERJ-3GEY0R00V 1 R51 P0.0GCT RESISTOR SMD0603 0.0OHM 5% THICK Digi-Key Panasonic FILM 1/10W ROHS ERJ-3GEYJ1R0V 1 R50 P1.0GCT RESISTOR SMD0603 1.0OHMS 1% Digi-Key Panasonic THICK FILM 1/10W ROHS ERJ-3GEYJ3R3V 8 R1, R7, R8, R9, P3.3GCT RESISTOR SMD0603 3.3OHMS 5% 1/10W Digi-Key Panasonic R10, R11, R14, ROHS R60 ERJ-3GEYJ470V 19 R27, R28, R29, P47GCT RESISTOR SMD0603 47 OHMS 5% 1/10W Digi-Key Panasonic R30, R31, R32, ROHS R33, R34, R35, R36, R37, R38, R39, R40, R54, R55, R56, R57, R58 CRCW0603100RFKEA 3 R4, R5, R6 541-100HCT RESISTOR SMD0603 100 OHM 1/10W 1% Digi-Key Vishay ROHS ERJ-3GEYJ471V 2 R48, R49 P470GCT RESISTOR SMD0603 470 OHMS 5% Digi-Key Panasonic 1/10W ROHS ERJ-3GEYJ472V 4 R61, R62, R63, P4.7KGCT RESISTOR SMD0603 4.7KOHMS 5% Digi-Key Panasonic R65 1/10W ROHS ERJ-3EKF1002V 14 R20, R21, R22, P10.0KHCT RESISTOR SMD0603 10.0K1% THICK Digi-Key Panasonic R23, R24, R25, FILM 1/10W ROHS R26, R41, R42, R43, R44, R45, R46, R47 RMCF0603FT15K0 1 R52 RMCF0603FT15K0CT RESISTOR SMD0603 15.0KOHMS 1% Digi-Key Stackpole 1/10W ROHS Electronics RC0603FR-0718KL 1 R53 311-18.0KHRCT RESISTOR SMD0603 THICK FILM 18.0K Digi-Key Yageo OHMS 1% 1/10W ROHS RC0603FR-0730KL 1 R2 311-30.0KHRCT RESISTOR SMD0603 THICK FILM 30.0K Digi-Key Yageo 1% 1/10W ROHS ERJ-3GEYJ473V 1 R3 P47KGCT RESISTOR SMD0603 47K OHMS 5% Digi-Key Panasonic 1/10W ROHS INDUCTORS MA5172-AE 4 L1,L2,L3,L4 MA5172-AE SHIELDED POWER INDUCTOR 10uH 10A CoilCraft CoilCraft ROHS HEADERS N2526-6002-RB 1 J1 MHC26K-ND HEADER SHROUDED 100LS MALE GOLD Digi-Key 3M 2X13 PINS ROHS PBC02SAAN 1 JP1 S1011E-02-ND HEADER THRU MALE 2 PIN 100LS GOLD Digi-Key Sullins ROHS PBC03SAAN 3 C, D, M3 S1011E-03-ND HEADER THRU MALE 3 PIN 100LS GOLD Digi-Key Sullins ROHS TESTPOINTS AND SWITCHES 5003 1 ET2 5003K PC TESTPOINT, ORANGE, ROHS Digi-Key Keystone Electronics G12AP-RO 1 S1 360-1758 SWITCH THRU SPDT STRAIGHT ULTRA Digi-Key NKK MINIATURE ROHS BINDING POSTS 5018-0 3 GND, LOUT-, 565-5018-0 BINDING POST, BLACK 60V 30A GOLD Mouser Pomona ROUT- ROHS 5018-2 3 PVDD, LOUT+, 565-5018-2 BINDING POST, RED 60V 30A GOLD Mouser Pomona ROUT+ ROHS SHUNTS SPC02SYAN 4 JP1,C(1-2), S9001 SHUNT, BLACK AU FLASH 0.100LS Digi-Key Sullins D(1-2),M3(1-2) HEAT SINKS AND HARDWARE ATSTI1OP-563-C1-R0 1 HS1 ATSTI1OP-563-C1-R0 HEATSINK ALUMINUM ATS 36x54mm ATS ATS 36.8mm PITCH ROHS 13SLAU375 –May 2012 DesignInformation SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

EVM Custom Component Vendors www.ti.com Table4.BillofMaterialsforTAS5614LDDVEVM (continued) Manu PartNo. Qty. Ref Des Vendor PartNo. Description Vendor Manu. 92000A118 2 HS1 92000A118 PHILIPS PANHEAD SCREW M3x8mm McMaster- McMaster- STAINLESS STEEL ROHS Carr Carr 92148A150 2 HS1 92148A150 SPLIT WASHER M3 STAINLESS STEEL McMaster- McMaster- ROHS Carr Carr STANDOFFS AND HARDWARE 94868A178 4 NA 94868A178 STANDOFF M3x25mm 4.5mm DIA HEX McMaster- McMaster- STAINLESS STEEL F-F ROHS Carr Carr 92000A118 4 NA 92000A118 PHILIPS PANHEAD SCREW M3x8mm McMaster- McMaster- STAINLESS STEEL ROHS Carr Carr 92148A150 4 NA 92148A150 SPLIT WASHER M3 STAINLESS STEEL McMaster- McMaster- ROHS Carr Carr Component Count: 163 COMPONENTS NOT ASSEMBLED CR1, CR2, CR3, CR4, L+,L-,OA, OB, OC, OD, R+, R-,PVDD_AB, PVDD_CD, M1, M2, GNDx2, PSVC A.1 EVM Custom Component Vendors TAS5612LDDVEVM and TAS5614LDDVEVM includeinductorsand heatsinksfrom2 custom component vendorsdesignedspecificallyfortheEVMs. These vendorscarrystockforsmallorderson theirshelves. Advanced ThermalSolutions(ATS),inNorwood,MA, USA, providea heatsinkoptimizedfortheseEVMs, ATS-TI1OP-563-C1.Informationon thisheatsinkcan be obtainedfromLeonardAlteratlalter@qats.com. ATS designand manufacturea largelineofoff-the-shelfand patentedhighperformanceheatsinks.They alsodesignand manufactureresearchqualitythermaltestand measurement equipmentand offerthermal evaluationand designservices.Informationabouttheirproductsand servicesisavailableat www.qats.com. Coilcraft,inCary,IL,USA, providea 10µH inductoroptimizedfortheseEVMs, MA5172-AE. Information on thiscomponent can be foundinthedatasheetfortheMA5172 inductorfamilyatwww.coilcraft.com. Coilcraftmake a varietyofotherinductorsforClassD amplifiers,most ofwhichareAEC-Q200 Grade 1 certifiedforautomotiveapplications.Freeevaluationsamplesand on-lineorderingareavailableat www.coilcraft.com. A.2 TAS5612L-TAS5614LDDVEVM PCB SPECIFICATION PCB IDENTIFICATION: TAS5612L-TAS5614LDDVEVM_RevA PCB TYPE: DOUBLE-SIDED PLATED-THROUGH PCB SIZE: 142 x 96 mm LAMINATE TYPE: FR4 LAMINATE THICKNESS: 1.6mm COPPER THICKNESS: 70 μm (2ounce)(INCLUDING PLATING EXTERIOR LAYER) COPPER PLATING IN HOLES: 70 μm (2ounce) MINIMUM HOLE DIAMETER: 0.3mm (12mils) SILKSCREEN: WHITE -REMOVE SILKSCREEN FROM SOLDER & PRE-TINNED AREAS SOLDER MASK: BLUE APPROX. HOLE COUNT: 570 PROTECTIVE COATING: ENIG (ELECTROLESS NICKEL /IMMERSION GOLD) ELECTRICAL TEST: PCB MUST BE ELECTRICAL TESTED COMMENTS: FAB NOTES ARE IN THE DRILL DRAWING FILE

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www.ti.com EVM PCB Layers A.3 EVM PCB Layers Figure8.Top Composite PCB Layer 15SLAU375 –May 2012 DesignInformation SubmitDocumentationFeedback Copyright© 2012,Texas InstrumentsIncorporated

EVM and Input-USBBoard 3 Schematics www.ti.com Figure9.Bottom Composite PCB Layer A.4 EVM and Input-USB Board 3 Schematics The EVM and Input-USBBoard 3 schematicsareappended tothisUser'sGuide PDF.

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PWM_P_2 PWM_M_2 PWM_P_1 PWM_M_1 INPUT_A INPUT_C INPUT_D INPUT_B VALID 10.0K 0603 R41 GND 0603 R27 10.0K 0603 R20 10.0K 0603 R21 10.0K 0603 R22 10.0K 0603 R23 10.0K 0603 R24 10.0K 0603 R25 10.0K 0603 R26 0603 R28 0603 R29 0603 R30 0603 R33 0603 R35 0603 R38 0603 R39 0603 R40 47ufd/16V FC C51+ 0.1ufd/16V

0603 X7R

0.1ufd/16V 10.0K 0603 R42 10.0K 0603 R43 10.0K 0603 R44 10.0K 0603 R45 10.0K 0603 R46 10.0K 0603 R47 GND 0603 R37 0603 R36 0603 R34 200ms SOT23-DBV5 TPS3825-33DBVT 3 2 GND 0603 R31 0603 R32 0.1ufd/16V 0.1ufd/16V 0.0 0603 R51 18.0K 0603 R53 4700pfd/50V 0.047ufd/16V 0.047ufd/16V

0805 X7R

0.1ufd/16V 0.1ufd/16V 0.1ufd/16V 0.1ufd/16V GND15.0K 0603 R52 1.0 0603 R50 GND 0.1ufd/16V 0.1ufd/16V +12V +3.3V +3.3V +5V AVDD AVSS +3.3V +3.3V +3.3V +3.3V STEPHEN CRUMP TAS5612L-6500567 / TAS5614L-6524655 MARCH 7, 2012 TAS5612L-TAS5614LDDVEVM_RevA.sbk LDN A A TIDESIGN LEAD PAGE INFO: FILENAME DATE DRAWN BY SHEET PCB REV SCH REV OF EDGE # DNP TAS5612LDDV/TAS5614LDDV EVALUATION BOARD

1 DIGITAL AUDIO PROCESSOR I/O

INPUT_D INPUT_C OUT_B OUT_C OUT_A OUT_D OUT_D OUT_C OUT_A OUT_B INPUT_B INPUT_AGND 1000pfd/100V

1206 COG

0.68ufd/250V MKP4-15 C20 GND GND 1000pfd/100V 0.68ufd/250V MKP4-15 C23 GND GND 1000pfd/100V 0.68ufd/250V MKP4-15 C26 GND GND 1000pfd/100V 0.68ufd/250V MKP4-15 C29 GND Red LOUT+ Black LOUT- Red ROUT+ Black ROUT- 1000ufd/50V FC C12+ GND 1.0ufd/50V 1.0ufd/50V 0.033ufd/50V 0.033ufd/50V 1.0ufd/50V 0.033ufd/50V 0.033ufd/50V 1.0ufd/50V 0.1ufd/16V PVDD_AB GND GND 60V/790mV@3A SMC 30BQ060 CR1 GND 60V/790mV@3A SMC CR2 30BQ060 GND 60V/790mV@3A SMC CR3 30BQ060 GND 60V/790mV@3A SMC 30BQ060 CR4 GND OA OB OC OD PVDD_CD 1000603 R5 1000603 1000603 GND30.0K 0603 0.1ufd/16V 1.0ufd/16V 1.0ufd/16V C 120TAIL 100LS D GND 120TAIL 100LS 0.00402 R12 0.00402 R13 GND 0.01ufd/100V 0.01ufd/100V 3.3 0603 3.3 0603 3.3 0603 R10 3.3 0603 R11 0.01ufd/100V 0.01ufd/100V 3.3 0603 0.1ufd/16V 0.1ufd/16V 3.3 0603 R14 GND 3.3 0603 47ufd/16V FC C1 + GND HS1 1 2 GND PVDD PVDD +12V +3.3V +3.3V +12V +12V +12V STEPHEN CRUMP TAS5612L-6500567 / TAS5614L-6524655 MARCH 7, 2012 TAS5612L-TAS5614LDDVEVM_RevA.sbk LDN A A TIDESIGN LEAD PAGE INFO: FILENAME DATE DRAWN BY SHEET PCB REV SCH REV OF EDGE # HTSSOP44-DDV TAS5612LDDV/TAS5614LDDV 1-2 = BTL 2-3 = PBTL 1. MOUNT CR1-CR4 2. CHANGE ROC = 22K Ohms (R2)

3 OHM LOAD OPERATION:

2 POWER AMPLIFIER

TAS5612LDDV/TAS5614LDDV EVALUATION BOARD TO STATUS MONITOR FROM ON/RESET CONTROL 1-2 = BTL 2-3 = PBTL GNDGND

4.7K 0603 R63 GND Red/2,0V 0805 FAULT GND 4.7K 0603 R62 GND Yellow/2,0V 0805 CLIP Red PVDD Black GND GND 1.0ufd/50V 0.1ufd/16V 0.1ufd/16V 0.1ufd/16V S G D 60V/115mA SOT23-DBV3 2N7002 Q3 S G D GND 4.7K 0603 R61 GND 60V/115mA SOT23-DBV3 2N7002 Q1 S G D 47ufd/16V FC C73+ GND 3.3V 800mA SOT223-DCY VR1 2 3 TLV1117-33 GND VIN VOUT Red/2,0V 0805 125C 47ufd/16V M C75+ GND 4.7K 0603 R65 GND Red/2,0V 0805 AMP_RESET 60V/115mA SOT23-DBV3 Q42N7002 S G D G12AP3 1S1 3.3 0603 R60 0.01ufd/100V +12V +12V PVDD +3.3V +5V +12V+12V STEPHEN CRUMP TAS5612L-6500567 / TAS5614L-6524655 MARCH 7, 2012 TAS5612L-TAS5614LDDVEVM_RevA.sbk A A LDN TIDESIGN LEAD PAGE INFO: FILENAME DATE DRAWN BY SHEET PCB REV SCH REV OF EDGE # GND M3x25 M3x8 GND M3x25 GND M3x25 GND M3x25 M3M3M3 M3M3 M3x8M3x8M3x8 M3x8M3x8 AMP RESET ON RESET 1-2/6-5 3-2/4-5 S3 SETTINGS TO U1 FROM MODULATOR 5V TO 3.3V DC-DC CONVERTER MAIN POWER IN PVDD RANGE= xxV-38V ON/RESET CONTROL STATUS MONITORS CLIP FAULT POWER SUPPLY, STATUS MONITORS, ON/OFF CONTROL3 TAS5612LDDV/TAS5614LDDV EVALUATION BOARD FROM U1 OTW HARDWARE STANDOFFS WASHERS SCREWS HEAT SINK STAND OFFS

A A TAS5612L-TAS5614LDDVEVM_RevA.sbk TAS5612L-6500567 / TAS5614L-6524655 STEPHEN CRUMP MARCH 7, 2012 EDGE # OF SCH REV PCB REV SHEET DRAWN BY DATE FILENAME PAGE INFO: DESIGN LEAD TI TAS5612LDDV/TAS5614LDDV EVALUATION BOARD

4 REVISION HISTORY

REVISION HISTORY

REVISION DESCRIPTION DATE APPROVAL A INITIAL RELEASE MARCH 7, 2012 SC

(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. TEXAS INSTRUMENTS DISCLAIMER TI 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. 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. 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. 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. The 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. 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. 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. 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. 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: 9.) THE MATERIALS ARE PROVIDED "AS IS" WITHOUT ANY EXPRESS OR IMPLIED WARRANTY OF ANY KIND INCLUDING WARRANTIES OF MERCHANTABILITY, 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.

600 Ohms/2A

27.4 0603 R104 27.4 0603 R105 27pfd/50V 0603 C101 27pfd/50V 0603 C102 100pfd/50V 0603 C103 1000pfd/50V 0603 C104 3.09K 0603 R106 4.99K 0603 R110 4.99K 0603 R111 A02 0.1ufd/16V 0603 C100 0.1ufd/16V 0603 C116 0.1ufd/16V 0603 C117 0.1ufd/16V 0603 C118 0.1ufd/16V 0603 C119 0603 R112 0603 R113 +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB +3.3V-USB 1.0ufd/25V 0603 C109 0.1ufd/16V 0603 C108 +3.3V-USB 0.1ufd/16V 0603 C113 0.1ufd/16V 0603 C114 0.1ufd/16V 0603 C115 0.1ufd/16V 0603 C112 15.0K 0603 R102 1.50K 0603 R103 USB MINIB USB-IN NC NC Case Case Case Case Data+ GND ID_NC Data- TQFP48-PFB TAS1020BPFB 47 46 45 44 43 41 42 4039 38 37 23 24 13 14 15 17 18 19 20 22 3.3V/400mA SOT230DBV5 VR1 TPS73633DBVT 4 3 64K SOP8-D(SOIC) EPROM 5 4 GND SOT23-DBV5 AND1 74LVC1G08 B VCC Y GND A 200ms SOT23-DBV5 TPS3825-33DBV GND 4.99K 0603 R108 GND GND 0.1ufd/16V 0603 C122 Orange RESET GNDGNDGND GND GND GND GND GND GND GND GND GNDGNDGNDGND GND GND GND GND GNDGNDGND GNDGND GND +3.3V-USBGND 2WE GND A A LDN InputUsbBoard3.sbk JULY 12, 2011

6527708 TUAN LUUEDGE #

PAGE INFO: DESIGN LEAD TI 0.1ufd/16V 0603 C123 GND 40V,1A SOT23-DBV3 MMBT2222A 4.7 1/4W 0805 R10 10ufd/10V 0805 C120 GND 0.1ufd/16V 0603 C121 GND +3.3V-USB 10ufd/10V 0805 C110 GND 0.1ufd/16V 0603 C111 GND Orange MCLK1 Orange SCLK1 Orange LRCLK1 Orange DOUT1 +3.3VD Yellow 0805 I2C SOT23-DBV3 Q3 4.7K C B E GND 357 0603 R404 +3.3VD4 SDA 10.0K 0603 R114 +3.3VD +3.3V SCL 10.0K 0603 R10010.0K 0603 R101 10.0K 0603 R107 10.0K 0603 R109 470603 R115 470603 R116 470603 R117 R118 0603 R119 0603 ABMM

6.0 MHz

INPUT-USB BOARD #3 USB INTERFACE, RESET1 MiniB USB INPUT USB TO EVMs FROM EVMs SDIN I2C ACTIVITY

TORX147PL(F,T) SHIELD GND Vcc OUT R206 0603 470 R212 0603 100 C212 0603 4700pfd/50VC213 0603 0.068ufd/16V R217 0603 680 DIR9001PW TSSOP28-PW C207 0603 0.1ufd/16V C211 0603 0.1ufd/16V C204 0603 0.1ufd/16V C210 0805 10ufd/10V C208 0603 18pfd/50V C209 0603 18pfd/50V ABM8G

12.288 MHz

A A InputUsbBoard3.sbk JULY 12, 2011 PAGE INFO: DESIGN LEAD TI 4.7KQ2 SOT23-DBV3 C B E SPDIF-LOCK 0805 Blue R211 0603 392 GND GND R200 0603 75 1 INV1 SN74LVC1GU04DBV SOT23-DBV5 R202 0603 1.0M C201 0603 1.0ufd/10V R203 0603 2.00K C203 0603 1.0ufd/10V R204 0603 7.50K INV2 SN74LVC1GU04DBV SOT23-DBV5 C202 0603 0.047ufd/16V R201 0603 100 C200 0603 0.047ufd/16V MUX1 74LVC2G157DCT VCC GND SSOP8-DCTGND GND S21 GND GNDGND R207 0603 10.0K R210 0603 10.0K R208 0603 DNP R209 0603 DNP C205 0603 0.1ufd/16V GND GND GND GND GND GND GND GND +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 +3.3VD1 MCLK2Orange SCLK2Orange LRCLK2Orange DOUT2Orange C206 0603 0.1ufd/16V GND +3.3VD1 R214 0603 R215 0603 R216 0603 R218 0603 0.0 R219 0603 0.0 Green 0805 COAX SOT23-DBV3 Q8 4.7K C B E GND 357 0603 R220 OPTO 0805Green GND R221 0603 357 +3.3VD1 R205 0603 49.9 +3.3VD1 2-3 = COAX 1-2 = OPTO FROM SYSTEM RESET OPTICAL SPDIF

2 SPDIF INTERFACE

INPUT-USB BOARD #3 SPDIF LOCK TO ADC MUXES MCLK-SPDIF SCLK-SPDIF LRCLK-SPDIF COAX SPDIF SPDIF SELECTTO ADCs / I2S SELECT PSK Select SPDIF SELECT LEDs

4.99K 0603 R305 JP300 JP301 4.99K 0603 R308 470pfd/50V 0603 C300 470pfd/50V 0603 C303 100 0603 R307 100 0603 R310 4.99K 0603 R306 4.99K 0603 R309 1.0ufd/16V 0603 C301 1.0ufd/16V 0603 C304 AGND AGND AGND AGND 0.1ufd/16V 0603 C309 0.1ufd/16V 0603 C307 0.022ufd/25V 0603 C302 0.022ufd/25V 0603 C305 AGND AGND AGND 0.0 0603 R312 AGNDAGND +5V 1.0 0603 R311 10ufd/10V 0805 C306 10ufd/10V 0805 C308 GND 0.1ufd/16V 0603 C311 TSSOP14-PW PCM1808PW 10ufd/10V 0805 C310 GND GND 100 0603 R313 GND 0.1ufd/16V 0603 C323 TSSOP14-PW PCM1808PW 10ufd/10V 0805 C322 GND GND 100 0603 R322 GND 0.1ufd/16V 0603 C335 TSSOP14-PW PCM1808PW 10ufd/10V 0805 C334 GND GND 100 0603 R331 GND 4.99K 0603 R314 JP302 JP303 4.99K 0603 R317 100 0603 R316 100 0603 R319 4.99K 0603 R315 4.99K 0603 R318 1.0ufd/16V 0603 C313 1.0ufd/16V 0603 C316 AGND AGND 0.1ufd/16V 0603 C321 0.1ufd/16V 0603 C319 0.022ufd/25V 0603 C314 0.022ufd/25V 0603 C317 AGND AGND AGND 0.0 0603 R321 AGNDAGND +5V 1.0 0603 R320 10ufd/10V 0805 C318 10ufd/10V 0805 C320 GND 4.99K 0603 R323 JP304 JP305 4.99K 0603 R326 100 0603 R325 100 0603 R328 4.99K 0603 R324 4.99K 0603 R327 1.0ufd/16V 0603 C325 1.0ufd/16V 0603 C328 AGND AGND 0.1ufd/16V 0603 C333 0.1ufd/16V 0603 C331 0.022ufd/25V 0603 C326 0.022ufd/25V 0603 C329 AGND AGND AGND 0.0 0603 R330 AGNDAGND +5V 1.0 0603 R329 10ufd/10V 0805 C330 10ufd/10V 0805 C332 GND 470pfd/50V 0603 C312 470pfd/50V 0603 C315 AGND AGND 470pfd/50V 0603 C324 470pfd/50V 0603 C327 AGND AGND InputUsbBoard3.sbk JULY 12, 2011 TUAN LUU6527708 A A LDN SCH REV PCB REV SHEET DRAWN BY OF DATE FILENAME TI PAGE INFO: DESIGN LEADEDGE # 0.1ufd/16V 0603 C347 TSSOP14-PW PCM1808PW 10ufd/10V 0805 C346 GND GND 100 0603 R340 GND 4.99K 0603 R332 JP306 JP307 4.99K 0603 R335 100 0603 R334 100 0603 R337 4.99K 0603 R333 4.99K 0603 R336 1.0ufd/16V 0603 C337 1.0ufd/16V 0603 C340 AGND AGND 0.1ufd/16V 0603 C345 0.1ufd/16V 0603 C343 0.022ufd/25V 0603 C338 0.022ufd/25V 0603 C341 AGND AGND AGND 0.0 0603 R339 AGNDAGND +5V 1.0 0603 R338 10ufd/10V 0805 C342 10ufd/10V 0805 C344 GND SSOP8-DCT MUX2 74LVC2G157DCT VCC GND GND GND SSOP8-DCT GND VCC 74LVC2G157DCT MUX3 GND GND SSOP8-DCT GND VCC 74LVC2G157DCT MUX4 GND GND SSOP8-DCT MUX5 74LVC2G157DCT VCC GND GND GND ADC1-IN NO NC R L Shield 0.0 0603 R300 0.0 0603 R301 ADC2-IN NO NC R L Shield ADC3-IN NO NC R L Shield 0.0 0603 R302 0.0 0603 R303 ADC4-IN NO NC R L Shield AGND AGND AGND AGND 0.0 0603 R304 1.00K 0603 R341 470pfd/50V 0603 C336 AGND 470pfd/50V 0603 C339 AGND 0.1ufd/16V 0603 C348 GND 0.1ufd/16V 0603 C349 GND 0.1ufd/16V 0603 C350 GND 0.1ufd/16V 0603 C351 GND 4.7 1/4W 0805 R12 +3.3V 4.7 1/4W 0805 R13 +3.3V 4.7 1/4W 0805 R14 +3.3V 4.7 1/4W 0805 R15 +3.3V +3.3VD2 +3.3VD2 +3.3VD2 +3.3VD2 0.1ufd/16V 0603 C352 GND Orange SDOUT1 Orange SDOUT2 Orange SDOUT3 Orange SDOUT4 +3.3VD2Green 0805 ANALOG SOT23-DBV3 Q9 4.7K C B E GND 357 0603 R342 +3.3VD2 +3.3VD2 357 0603 R343 DIGITAL 0805Green FROM SPDIF ANALOG INPUTS TO PSIA DATA SELECT ADC INPUTS3 INPUT-USB BOARD #3 DOUT-SPDIF DOUT-SPDIF DOUT-SPDIF DOUT-SPDIF ADC-EN ADC-EN ADC-EN ADC-EN ADC MUXESTO I2S SELECT (ADC1) (ADC2) (ADC3) (ADC4) ADC/SPDIF SELECT LEDs

+5V +12V GND GNDC410 0603 0.1ufd/16V GND C411 0603 0.1ufd/16V OTW 0805Red 4.7KQ4 SOT23-DBV3 C B E GND R405 0603 357 SHUTDOWN 0805Red Q5 4.7K SOT23-DBV3 C B E GND R406 0603 357 1 SN74LVC2G74DCT FF1 SSOP8-DCT A A LDN InputUsbBoard3.sbk JULY 12, 2011 PAGE INFO: DESIGN LEAD TI 74LVC1G14DBV INV3 4 3 SOT23-DBV5 GND GND GND C403 0603 0.1ufd/16V GND R401 0603 10.0K C402 0603 0.1ufd/16V C404 0603 0.1ufd/16V R400 0603 10.0K C400 0805 4.7ufd/16V C401 0603 0.1ufd/16V GNDGND GND VCC 74LVC2G157DCT MUX6 SSOP8-DCTGND GND MUX7 74LVC2G157DCT VCC GND SSOP8-DCTGND GND GND VCC 74LVC2G157DCT MUX8 SSOP8-DCTGND GND MUX9 74LVC2G157DCT VCC GND SSOP8-DCTGND GND GND +3.3VD3 +3.3VD3 +3.3VD3 +3.3VD3 C405 0603 0.1ufd/16V GND +3.3VD3 C406 0603 0.1ufd/16V GND C407 0603 0.1ufd/16V GND +3.3VD3 C408 0603 0.1ufd/16V GND C409 0603 0.1ufd/16V GND SCLKOOrange SDATA1Orange SDATA2Orange SDATA3Orange SDATA4Orange SDINOrange GND +3.3V +3.3V GND MCLKOOrange LRCLKOOrange GNDGND FAULT 0805Red 4.7KQ6 SOT23-DBV3 C B E GND R407 0603 357 R403 0603 357 GND MUTE 0805Yellow +3.3VD4 +3.3VD4 +3.3VD4 +3.3VD4 +3.3VD4 +3.3VD4 PVDD Red MCLK1 1SCLK LRCLK1 1ADC1 ADC21 ADC31 1ADC4 GND R411 0603 0.0 R410 0603 10.0K +3.3VD4 R412 0603 100K +3.3VD4 R413 0603 100K +3.3VD4 R414 0603 100K +3.3VD4 PDN 0805Yellow Q7 4.7K SOT23-DBV3 C B E GND R409 0603 357 GND R408 0603 10.0K +3.3VD4 +3.3VD4 SPDIF 0805Green 4.7KQ10 SOT23-DBV3 C B E GND R415 0603 357 Green 0805 USB GND 357 0603 R416 +3.3VD3 R402 0603 49.9 +3.3VD3 POWER DOWN SDOUT4 SDOUT3 SDOUT2 PSIA OUT = 1/2, PSIA IN = 3/4 JUMPER 2-3 FOR PASS-THRU PSIA DATA SELECT PSIA CLOCK SELECTTo EVMs MUTEFAULT TO USB I2S SELECT 2-3 = SPDIF 1-2 = USB SDATA4 SDATA3 SDATA2 SDATA1 LRCLK-OUT SCLK-OUT MCLK-OUT PSIA OUT = 1/2, PSIA IN = 3/4 JUMPER 2-3 FOR PASS-THRU INPUT-USB BOARD #3 FROM ADC MUXES FROM USB SCL SDA PSIA INPUT, DATA SELECT, EVM CONNECTOR4 OTWSHUT DOWN FROM SYSTEM RESET FROM USB FROM SPDIF LRCLK-USB MCLK-USB SCLK-USB SCLK-SPDIF MCLK-SPDIF LRCLK-SPDIF SDOUT-USB I2S-SEL CTRL I2S-SEL I2S-SEL I2S-SEL I2S-SEL

0.5in0.5in Green 0805 GND 560 0603 0.5in0.5in GND 220ufd/16V M C1 + GND Red +12V Black GND Green 0805 3.3V GND 374 0603 +5V+3.3V +5V 10.0K 0603 3.16K 0603 0.01ufd/50V 0603 SOP8-D TPS5410D VR2 NC VSENSE PH VIN ENA NC GND BOOT 47ufd/16V FC C4 + 2A 40V SMA CR2 B240A-13-F 4.7ufd/16V 0805 15uH DG6045C +3.3V 3.3V/400mA SOT230DBV5 VR3 TPS73633DBVT 4 3 0.1ufd/10V 0603 0.1ufd/10V 0603 +5V GND GND GNDGND GND GND GND GNDGND Green 0805 12V GND 13.0K 0603 JULY 12, 2011 TUAN LUU 6527708 InputUsbBoard3.sbk A A LDN TIDESIGN LEAD PAGE INFO: FILENAME DATE DRAWN BY SHEET PCB REV SCH REV OF EDGE # +12V +12V +12V GND 2.2ufd/10V 0603 47ufd/16V FC C6 + 4.7 1/4W 0805 R11 10ufd/10V 0805 C11 GND +3.3V +3.3VD1 4.7 1/4W 0805 R16 10ufd/10V 0805 C12 GND +3.3V +3.3VD2 4.7 1/4W 0805 R17 10ufd/10V 0805 C13 GND +3.3V +3.3VD3 4.7 1/4W 0805 R18 10ufd/10V 0805 C14 GND +3.3V +3.3VD4 50V 2A SMA ES2AA CR1 PVDD TO 5V SWITCHER 5V TO 3.3V DC-DC CONVERTER INPUT-USB BOARD #3

5 POWER INPUTS AND SUPPLIES

JULY 12, 2011 TUAN LUU 6527708 InputUsbBoard3.sbk A A LDN TIDESIGN LEAD PAGE INFO: FILENAME DATE DRAWN BY SHEET PCB REV SCH REV OF EDGE # REVISION HISTORY6 TL JULY 12, 2011 INITIAL RELEASEA APPROVAL DATE DESCRIPTIONREVISION INPUT-USB BOARD #3

(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. TEXAS INSTRUMENTS DISCLAIMER TI 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. 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. 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. 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. The 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. 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. 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. 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. 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: 9.) THE MATERIALS ARE PROVIDED "AS IS" WITHOUT ANY EXPRESS OR IMPLIED WARRANTY OF ANY KIND INCLUDING WARRANTIES OF MERCHANTABILITY, 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.

EVALUATION BOARD/KIT/MODULE (EVM) ADDITIONAL TERMS Texas Instruments(TI)providestheenclosedEvaluationBoard/Kit/Module(EVM) underthefollowingconditions: The userassumes allresponsibilityand liabilityforproperand safehandlingofthegoods.Further,theuserindemnifiesTIfromallclaims arisingfromthehandlingoruse ofthegoods. Shouldthisevaluationboard/kitnotmeet thespecificationsindicatedintheUser’s Guide,theboard/kitmay be returnedwithin30 days from thedateofdeliveryfora fullrefund.THE FOREGOING LIMITED WARRANTY ISTHE EXCLUSIVE WARRANTY MADE BY SELLER TO BUYER AND ISIN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED,OR STATUTORY, INCLUDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE. 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. PleasereadtheUser's Guide and,specifically,theWarningsand RestrictionsnoticeintheUser's Guide priortohandlingtheproduct.This noticecontainsimportantsafetyinformationabouttemperaturesand voltages.Foradditionalinformationon TI's environmentaland/orsafety programs,pleasevisitwww.ti.com/eshorcontactTI. No licenseisgrantedunderany patentrightorotherintellectualpropertyrightofTIcoveringorrelatingtoany machine,process,or combinationinwhichsuch TIproductsorservicesmightbe orareused.TIcurrentlydealswitha varietyofcustomersforproducts,and thereforeourarrangementwiththeuserisnotexclusive.TIassumes no liabilityforapplicationsassistance,customerproductdesign, softwareperformance,orinfringementofpatentsorservicesdescribedherein. REGULATORY COMPLIANCE INFORMATION As notedintheEVM User’s Guide and/orEVM itself,thisEVM and/oraccompanyinghardwaremay ormay notbe subjecttotheFederal CommunicationsCommission (FCC) and IndustryCanada (IC)rules. ForEVMs not subjecttotheabove rules,thisevaluationboard/kit/moduleisintendedforuse forENGINEERING DEVELOPMENT, DEMONSTRATION OR EVALUATION PURPOSES ONLY and isnotconsideredby TItobe a finishedend productfitforgeneralconsumer use.Itgenerates,uses,and can radiateradiofrequencyenergyand has notbeen testedforcompliancewiththelimitsofcomputing devicespursuanttopart15 ofFCC orICES-003 rules,whicharedesignedtoprovidereasonableprotectionagainstradiofrequency interference.Operationoftheequipmentmay cause interferencewithradiocommunications,inwhichcase theuserathisown expense will be requiredtotakewhatevermeasures may be requiredtocorrectthisinterference. GeneralStatementforEVMs includinga radio User Power/FrequencyUse Obligations:Thisradioisintendedfordevelopment/professionaluse onlyinlegallyallocatedfrequencyand power limits.Any use ofradiofrequenciesand/orpower availabilityofthisEVM and itsdevelopmentapplication(s)must complywithlocal lawsgoverningradiospectrumallocationand power limitsforthisevaluationmodule.Itistheuser’s soleresponsibilitytoonlyoperatethis radioinlegallyacceptablefrequencyspace and withinlegallymandated power limitations.Any exceptionstothisarestrictlyprohibitedand unauthorizedby Texas Instrumentsunlessuserhas obtainedappropriateexperimental/developmentlicensesfromlocalregulatory authorities,whichisresponsibilityofuserincludingitsacceptableauthorization. For EVMs annotatedas FCC – FEDERAL COMMUNICATIONS COMMISSION Part15 Compliant Caution Thisdevicecomplieswithpart15 oftheFCC Rules.Operationissubjecttothefollowingtwo conditions:(1)Thisdevicemay notcause harmfulinterference,and (2)thisdevicemust acceptany interferencereceived,includinginterferencethatmay cause undesiredoperation. Changes ormodificationsnotexpresslyapprovedby thepartyresponsibleforcompliancecouldvoidtheuser's authoritytooperatethe equipment. FCC InterferenceStatementforClass A EVM devices Thisequipmenthas been testedand foundtocomplywiththelimitsfora ClassA digitaldevice,pursuanttopart15 oftheFCC Rules. These limitsaredesignedtoprovidereasonableprotectionagainstharmfulinterferencewhen theequipmentisoperatedina commercial environment.Thisequipmentgenerates,uses,and can radiateradiofrequencyenergyand,ifnotinstalledand used inaccordancewiththe instructionmanual,may cause harmfulinterferencetoradiocommunications.Operationofthisequipmentina residentialareaislikelyto cause harmfulinterferenceinwhichcase theuserwillbe requiredtocorrecttheinterferenceathisown expense.

FCC InterferenceStatementforClass B EVM devices Thisequipmenthas been testedand foundtocomplywiththelimitsfora ClassB digitaldevice,pursuanttopart15 oftheFCC Rules. These limitsaredesignedtoprovidereasonableprotectionagainstharmfulinterferenceina residentialinstallation.Thisequipment generates,uses and can radiateradiofrequencyenergyand,ifnotinstalledand used inaccordancewiththeinstructions,may cause harmfulinterferencetoradiocommunications.However,thereisno guaranteethatinterferencewillnotoccurina particularinstallation.If thisequipmentdoes cause harmfulinterferencetoradioortelevisionreception,whichcan be determinedby turningtheequipmentoffand on,theuserisencouragedtotrytocorrecttheinterferenceby one ormore ofthefollowingmeasures:

  • Reorientorrelocatethereceivingantenna.
  • Increasetheseparationbetween theequipmentand receiver.
  • Connecttheequipmentintoan outleton a circuitdifferentfromthattowhichthereceiverisconnected.
  • Consultthedealeroran experiencedradio/TVtechnicianforhelp. For EVMs annotatedas IC – INDUSTRY CANADA Compliant ThisClassA orB digitalapparatuscomplieswithCanadianICES-003. Changes ormodificationsnotexpresslyapprovedby thepartyresponsibleforcompliancecouldvoidtheuser’s authoritytooperatethe equipment. Concerning EVMs includingradiotransmitters ThisdevicecomplieswithIndustryCanada licence-exemptRSS standard(s).Operationissubjecttothefollowingtwo conditions:(1)this devicemay notcause interference,and (2)thisdevicemust acceptany interference,includinginterferencethatmay cause undesired operationofthedevice. Concerning EVMs includingdetachableantennas Under IndustryCanada regulations,thisradiotransmittermay onlyoperateusingan antennaofa typeand maximum (orlesser)gain approvedforthetransmitterby IndustryCanada. To reducepotentialradiointerferencetootherusers,theantennatypeand itsgainshould Thisradiotransmitterhas been approvedby IndustryCanada tooperatewiththeantennatypeslistedintheuserguidewiththemaximum permissiblegainand requiredantennaimpedance foreach antennatypeindicated.Antennatypesnotincludedinthislist,havinga gain greaterthanthemaximum gainindicatedforthattype,arestrictlyprohibitedforuse withthisdevice. Cet appareilnum ériquede laclasseA ou B estconformeà lanorme NMB-003 du Canada. Les changements ou lesmodificationspas expressément approuvés parlapartieresponsablede laconformité ontpu viderl’autorité de l'utilisateurpouractionnerl'équipement. Concernant lesEVMs avec appareilsradio Le présentappareilestconformeaux CNR d'IndustrieCanada applicablesaux appareilsradioexempts de licence.L'exploitationest autorisée aux deux conditionssuivantes:(1)l'appareilne doitpas produirede brouillage,et(2)l'utilisateurde l'appareildoitacceptertout brouillageradioélectriquesubi,m ême silebrouillageestsusceptibled'en compromettrelefonctionnement. Concernant lesEVMs avec antennes détachables Conformément à laréglementationd'IndustrieCanada, leprésentémetteurradiopeutfonctionneravec une antenned'un typeetd'un gain maximal(ouinférieur)approuvé pourl'émetteurparIndustrieCanada. Dans lebutde réduirelesrisquesde brouillageradioélectriqueà l'intentiondes autresutilisateurs,ilfautchoisirletyped'antenneetson gainde sorteque lapuissanceisotroperayonnée équivalente Le présentémetteurradioa été approuvé parIndustrieCanada pourfonctionneravec lestypesd'antenneénum érés dans lemanuel d’usage etayantun gainadmissiblemaximaletl'impédance requisepourchaque typed'antenne.Les typesd'antennenon inclusdans cetteliste,ou dontlegainestsupérieurau gainmaximalindiqué,sontstrictementinterditspourl'exploitationde l'émetteur. SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER

【【ImportantNoticeforUsers ofthisProduct inJapan】】 Thisdevelopment kitisNOT certifiedas ConfirmingtoTechnicalRegulationsofRadio Law ofJapan Ifyou use thisproductinJapan,you arerequiredby RadioLaw ofJapan tofollowtheinstructionsbelowwithrespecttothisproduct: 1. Use thisproductina shieldedroom orany othertestfacilityas definedinthenotification#173 issuedby MinistryofInternalAffairsand Communicationson March 28,2006,based on Sub-section1.1ofArticle6 oftheMinistry’s RuleforEnforcementofRadioLaw of Japan, 2. Use thisproductonlyafteryou obtainedthelicenseofTestRadioStationas providedinRadioLaw ofJapan withrespecttothis product,or 3. Use ofthisproductonlyafteryou obtainedtheTechnicalRegulationsConformityCertificationas providedinRadioLaw ofJapan with respecttothisproduct.Also,pleasedo nottransferthisproduct,unlessyou givethesame noticeabove tothetransferee.Pleasenote thatifyou couldnotfollowtheinstructionsabove,you willbe subjecttopenaltiesofRadioLaw ofJapan. Texas InstrumentsJapan Limited (address)24-1,Nishi-Shinjuku6 chome, Shinjuku-ku,Tokyo, Japan http://www.tij.co.jp 【ご使用にあたっての注】 本開発キットは技術基準適合証明を受けておりません。 本製品のご使用に際しては、電波法遵守のため、以下のいずれかの措置を取っていただく必要がありますのでご注意ください。 1. 電波法施行規則第6条第1項第1号に基づく平成18年3月28日総務省告示第173号で定められた電波暗室等の試験設備でご使用いただく。 2. 実験局の免許を取得後ご使用いただく。 3. 技術基準適合証明を取得後ご使用いただく。 なお、本製品は、上記の「ご使用にあたっての注意」を譲渡先、移転先に通知しない限り、譲渡、移転できないものとします。 上記を遵守頂けない場合は、電波法の罰則が適用される可能性があることをご留意ください。 日本テキサス・インスツルメンツ株式会社 東京都新宿区西新宿6丁目24番1号 西新宿三井ビル http://www.tij.co.jp SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER SPACER

EVALUATION BOARD/KIT/MODULE (EVM) WARNINGS, RESTRICTIONS AND DISCLAIMERS For FeasibilityEvaluationOnly,inLaboratory/DevelopmentEnvironments.Unlessotherwiseindicated,thisEVM isnota finished electricalequipmentand notintendedforconsumer use.Itisintendedsolelyforuse forpreliminaryfeasibilityevaluationin laboratory/developmentenvironmentsby technicallyqualifiedelectronicsexpertswho arefamiliarwiththedangersand applicationrisks associatedwithhandlingelectricalmechanicalcomponents,systemsand subsystems.Itshouldnotbe used as allorpartofa finishedend product. Your SoleResponsibilityand Risk.You acknowledge,representand agreethat: 1. You have uniqueknowledgeconcerningFederal,Stateand localregulatoryrequirements(includingbutnotlimitedtoFood and Drug Administrationregulations,ifapplicable)whichrelatetoyourproductsand whichrelatetoyouruse (and/orthatofyouremployees, affiliates,contractorsordesignees)oftheEVM forevaluation,testingand otherpurposes. 2. You have fulland exclusiveresponsibilitytoassurethesafetyand complianceofyourproductswithallsuch lawsand otherapplicable regulatoryrequirements,and alsotoassurethesafetyofany activitiestobe conductedby you and/oryouremployees,affiliates, contractorsordesignees,usingtheEVM. Further,you areresponsibletoassurethatany interfaces(electronicand/ormechanical) between theEVM and any human body aredesignedwithsuitableisolationand means tosafelylimitaccessibleleakagecurrentsto minimizetheriskofelectricalshockhazard. 3. You willemploy reasonablesafeguardstoensurethatyouruse oftheEVM willnotresultinany propertydamage, injuryordeath,even iftheEVM shouldfailtoperformas describedorexpected. 4. You willtakecareofproperdisposaland recyclingoftheEVM ’s electroniccomponents and packingmaterials. CertainInstructions.ItisimportanttooperatethisEVM withinTI’s recommended specificationsand environmentalconsiderationsperthe userguidelines.ExceedingthespecifiedEVM ratings(includingbutnotlimitedtoinputand outputvoltage,current,power,and environmentalranges)may cause propertydamage, personalinjuryordeath.Iftherearequestionsconcerningtheseratingspleasecontact a TIfieldrepresentativepriortoconnectinginterfaceelectronicsincludinginputpower and intendedloads.Any loadsappliedoutsideofthe specifiedoutputrangemay resultinunintendedand/orinaccurateoperationand/orpossiblepermanentdamage totheEVM and/or interfaceelectronics.PleaseconsulttheEVM User's Guide priortoconnectingany loadtotheEVM output.Ifthereisuncertaintyas tothe loadspecification,pleasecontacta TIfieldrepresentative.Duringnormaloperation,some circuitcomponents may have case temperatures greaterthan60°C as longas theinputand outputaremaintainedata normalambientoperatingtemperature.These components include butarenotlimitedtolinearregulators,switchingtransistors,pass transistors,and currentsense resistorswhichcan be identifiedusingthe EVM schematiclocatedintheEVM User's Guide.When placingmeasurement probesnearthesedevicesduringnormaloperation,please be aware thatthesedevicesmay be verywarm tothetouch.As withallelectronicevaluationtools,onlyqualifiedpersonnelknowledgeable inelectronicmeasurement and diagnosticsnormallyfoundindevelopmentenvironmentsshoulduse theseEVMs. Agreement toDefend,Indemnifyand Hold Harmless.You agreetodefend,indemnifyand holdTI,itslicensorsand theirrepresentatives harmlessfromand againstany and allclaims,damages, losses,expenses,costsand liabilities(collectively,"Claims")arisingoutoforin connectionwithany use oftheEVM thatisnotinaccordancewiththetermsoftheagreement.ThisobligationshallapplywhetherClaims ariseunderlawoftortorcontractorany otherlegaltheory,and even iftheEVM failstoperformas describedorexpected. Safety-Criticalor Life-CriticalApplications.Ifyou intendtoevaluatethecomponents forpossibleuse insafetycriticalapplications(such as lifesupport)where a failureoftheTIproductwouldreasonablybe expectedtocause severepersonalinjuryordeath,such as devices whichareclassifiedas FDA ClassIIIorsimilarclassification,thenyou must specificallynotifyTIofsuch intentand enterintoa separate Assuranceand IndemnityAgreement. MailingAddress:Texas Instruments,PostOfficeBox 655303,Dallas,Texas 75265 Copyright© 2012,Texas InstrumentsIncorporated

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