PTD08A010W TI | Alldatasheet
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www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010 10-A,4.75-Vto14-VINPUT,NON-ISOLATED, WIDE-OUTPUT,DIGITALPOWERTRAIN™ MODULE Check forSamples: PTD08A010W 1FEATURES APPLICATIONS
- DigitalPower Systems2• Up to10-A Output Current using UCD9XXX DigitalControllers• 4.75-Vto14-V InputVoltage
- Programmable Wide-Output Voltage (0.7V to3.6V)
- Efficienciesup to96%
- DigitalI/O – PWM signal – INHIBIT – Currentlimitflag(FAULT) – Sychronous RectifierEnable (SRE)
- Analog I/O – Temperature – Output currrent
- SafetyAgency Approvals:(Pending) – UL/IEC/CSA-C22.260950-1
- OperatingTemperature:–40°C to85°C
DESCRIPTION
The PTD08A010W isa high-performance10-A rated,non-isolateddigitalPowerTrainmodule.Thismodule isthe power conversionsectionofa digitalpower system which incorporatesTI's UCD7230 MOSFET driverIC.The PTD08A010W must be used inconjunctionwitha digitalpower controllersuch as theUCD9240 or UCD9110 family.The PTD08A010W receivescontrolsignalsfromthedigitalcontrollerand providesparametricand status informationback to the digitalcontroller.Together,PowerTrainmodules and a digitalpower controllerform a sophisticated,robust,and easilyconfiguredpower management solution. Operatingfrom an inputvoltagerange of 4.75 V to 14 V, the PTD08A010W providesstep-down power conversionto a wide range of outputvoltagesfrom,0.7 V to 3.6 V. The wide inputvoltagerange makes the PTD08A010W particularlysuitablefor advanced computing and serverapplicationsthatutilizea loosely regulated8-V,9.6-Vor 12-V intermediatedistributionbus.Additionally,thewide inputvoltagerange increases designflexibilityby supportingoperationwithtightlyregulated5-V or12-V intermediatebus architectures. The module incorporatesoutputover-currentand temperaturemonitoringwhichprotectsagainstmost loadfaults. Output currentand module temperaturesignalsare providedforthe digitalcontrollerto permituser defined over-currentand over-temperaturewarningand faultscerarios. The module uses double-sidedsurfacemount constructionto providea low profileand compact footprint. Package optionsincludeboththrough-holeand surfacemount configurationsthatarelead(Pb)-freeand RoHS compatible. Pleasebe aware thatan importantnoticeconcerningavailability,standardwarranty,and use incriticalapplicationsofTexas Instrumentssemiconductorproductsand disclaimerstheretoappearsattheend ofthisdatasheet. 2POWERTRAIN isa trademarkofTexas Instruments. PRODUCTION DATA informationiscurrentas ofpublicationdate. Copyright© 2007–2010,Texas InstrumentsIncorporatedProductsconform to specificationsper the terms of the Texas Instrumentsstandardwarranty.Productionprocessingdoes not necessarilyincludetestingofallparameters.
(Recommended) VO VO 4 AGND 75 6 IOUTTEMP GND GND PTD08A010W VI INH VBIAS CI2 22 /c109F (Required) L O A D GND VI GND CO1 47 /c109F (Required) FAULT SRE PWM CI1 330 /c109F (Recommended) Digital Lines To/From Digital Controller Analog Lines To Digital Controller UDG-07054 [A] [A] PTD08A010W SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com This integratedcircuitcan be damaged by ESD. Texas Instrumentsrecommends thatallintegratedcircuitsbe handled with appropriateprecautions.Failuretoobserveproperhandlingand installationprocedurescan cause damage. ESD damage can rangefromsubtleperformancedegradationtocompletedevicefailure.Precisionintegratedcircuitsmay be more susceptibletodamage because verysmallparametricchanges couldcause thedevicenottomeet itspublishedspecifications. Standard PTD08A010W Application A. C I2and C O1 areoptionalwhen theoperatingfrequencyisgreaterthan500 kHz.
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www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010
ORDERING INFORMATION
For themost currentpackage and orderinginformation,see thePackage Option Addendum attheend ofthisdatasheet,or see theTIwebsiteatwww.ti.com. DATASHEET TABLE OF CONTENTS DATASHEET SECTION PAGE NUMBER ENVIRONMENTAL AND ABSOLUTE MAXIMUM RATINGS 3 ELECTRICAL CHARACTERISTICS TABLE 4 TERMINAL FUNCTIONS 5 TYPICAL CHARACTERISTICS (VI= 12V) 6 TYPICAL CHARACTERISTICS (VI= 5V) 8 TYPICAL APPLICATION SCHEMATIC 10 GRAPHICAL USER INTERFACE VALUES 11 TRAY DRAWINGS 12 ENVIRONMENTAL AND ABSOLUTE MAXIMUM RATINGS (VoltagesarewithrespecttoGND) UNIT VI Inputvoltage 16 V VB Biasvoltage 16 V TA Operatingtemperaturerange Over VIrange –40 to85 Surfacetemperatureofmodule body orpinsTwave Wave solderingtemperature suffixAD 260 °Cfor5 secondsmaximum Tstg Storagetemperature –55 to125(1) Per Mil-STD-883D,Method 2002.3,1 msec, suffixAD 200Mechanicalshock 1/2sine,mounted G Mechanicalvibration Mil-STD-883D,Method 2007.2,20-2000Hz 15 Weight 3.9 grams MTBF Reliability Per TelcordiaSR-332,50% stress,TA = 40°C, groundbenign 9.4 106 Hr Flammability Meets UL94V-O (1) The shippingtrayortapeand reelcannotbe used tobake partsattemperatureshigherthan65°C. Copyright© 2007–2010,Texas InstrumentsIncorporated SubmitDocumentationFeedback 3 ProductFolderLink(s):PTD08A010W
SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com
ELECTRICAL CHARACTERISTICS
TA= 25°C, FSW = 350kHz,VI= 12 V,VO = 3.3V,VB= VI,C I1= 330 µF,C I2= 22 µF ceramic,C O1 = 47 µF ceramic,C O2 = 330 µF, and IO = IO(max) (unlessotherwisestated) PARAMETER TEST CONDITIONS PTD08A010W UNIT MIN TYP MAX IO Outputcurrent Over VO range 25°C, naturalconvection 0 10 A VI Inputvoltagerange Over IO range 4.75 14(1) V VOADJ Outputvoltageadjustrange Over IO range 0.7(1) 3.6 V VO = 3.3V 95% VO = 2.5V 92% VI= VB = 5 V VO = 1.8V 89% h Efficiency IO = 10 A, VO = 1.5V 88%fs = 350 kHz VO = 1.2V 86% VO = 1.0V 84% VOPP VO Ripple(peak-to-peak) 20-MHz bandwidth 20 mV PP VB Biasvoltage 4.75 14 V Inhibit(pin8)toAGND Standby 4 IB Biascurrent mA Switching 34 VIH High-levelinputvoltage 2.0 5.5 SRE, INH,& PWM inputlevels V VIL Low-levelinputvoltage 0.8 Frequencyrange 300 1000 kHz PWM input Pulsewidthlimits 130 ns Range -40 125 °C Accuracy,-40°C ≤ TA ≤ 85°C -4 6 °C TEMP output Slope 10 mV/°C Offset,TA = 0°C 500 mV VOH High-leveloutputvoltage,IFAULT = 4mA 2.7 3.3 V VOL FAULT output Low-leveloutputvoltage,IFAULT = 4mA 0 0.6 ILIM Overcurrentthreshold;Reset,followedby auto-recovery 20 A Range 0.15 3.5 V Gain 70 100 130 mV/A IOUT output Offset,IO = 0A,VO = 1.2V 0.44 0.6 0.76 V OutputImpedance 10 15 21 kΩ Nonceramic 330 (2) C I Externalinputcapacitance µF Ceramic 22 (2) Nonceramic 330 (3) 5000(4) CapacitanceValue µF C O Externaloutputcapacitance Ceramic 47 (3) (3) Equivalentseriesresistance(non-ceramic) 1(5) m Ω (1) The maximum inputvoltageisdutycyclelimitedto(VO /(130ns× FSW ))or14 V,whicheverisless.The maximum allowableinputvoltage isa functionofswitchingfrequency. (2) A 22 µF ceramicinputcapacitorisrequiredforproperoperation.An additional330 µF bulkcapacitorratedfora minimum of500mA rms ofripplecurrentisrecommended. When operatingatfrequencies> 500kHz the22 µF ceramiccapacitorisonlyrecommended. Referto theUCD9240 controllerdatasheetand userinterfaceforapplicationspecificcapacitorspecifications. (3) A 47 µF ceramicoutputcapacitorisrequiredforbasicoperation.An additional330 µF bulkcapacitorisrecommended forimproved transientresponse.When operatingatfrequencies> 500kHz the47 µF ceramiccapacitorisonlyrecommended. RefertotheUCD9240 controllerdatasheetand userinterfaceforapplicationspecificcapacitorspecifications. (4) 5,000µF isthecalculatedmaximum outputcapacitancegivena 1V/msec outputvoltagerisetime.Additionalcapacitanceorincreasing theoutputvoltageriseratemay triggertheovercurrentthresholdatstart-up.RefertotheUCD9240 controllerdatasheetand user interfaceforapplicationspecificcapacitorspecifications. (5) Thisistheminimum ESR forallnon-ceramicoutputcapacitance.RefertotheUCD9240 controllerdatasheetand userinterfacefor applicationspecificcapacitorspecifications.
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(Top View) Texas Instruments PTD08A010W www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010 TERMINAL FUNCTIONS TERMINAL NAME NO. VI 1 The positiveinputvoltagepower node tothemodule,whichisreferencedtocommon GND. GND Thisisthecommon groundconnectionfortheVIand VO power connections. VO 4 The regulatedpositivepower outputwithrespecttoGND. TEMP 5 Temperaturesense output.The voltagelevelon thispinrepresentsthetemperatureofthemodule. IOUT 6 Currentsense output.The voltagelevelon thispinrepresentstheaverageoutputcurrentofthemodule. AGND 7 Analoggroundreturn.Itisthe0 Vdc referenceforthecontrolinputs. The inhibitpinisa negativelogicinputthatisreferencedtoAGND. Applyinga low-levelsignaltothispindisablestheINH (1) 8 module and turnsofftheoutputvoltage.A 10 kΩ pull-upto3.3V or5 V isrequirediftheINH signalisnotused. Currentlimitflag.The Faultsignalisa 3.3V digitaloutputwhichislatchedhighafteran over-currentcondition.TheFAULT 9 Faultisresetaftertwo completePWM cycleswithoutan over-currentcondition(thirdrisingedge ofthePWM). SynchronousRectifierEnable.Thispinisa highimpedance digitalinput.A 3.3V or5 V logiclevelsignalsisused to SRE 10 enablethesynchronousrectifierswitch.When thissignalishigh,themodule willsourceand sinkoutputcurrent.When thissignalislow,themodule willonlysourcecurrent. PWM 11 ThisisthePWM inputpin.Itisa highimpedance digitalinputthataccepts3.3V or5 V logiclevelsignalsup to1 MHz. VBIAS 12 Biasvoltagesupplyrequiredtopower internalcircuitry.ForoptimalperformanceconnectVBIAS toVI. (1) Denotesnegativelogic:High= Normal operation,Low = Functionactive Copyright© 2007–2010,Texas InstrumentsIncorporated SubmitDocumentationFeedback 5 ProductFolderLink(s):PTD08A010W
fSW = 350 kHz 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO IO – Ouput Current – A /c104– Efficiency – % 0 108642 IO – Ouput Current – A 100 /c104– Efficiency – % 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 500 kHz 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 750 kHz 100 /c104– Efficiency – % 0 108642 IO – Ouput Current – A 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V fSW = 1 MHz 0 108642 IO – Ouput Current – A 100 /c104– Efficiency – % 0 108642 fSW = 350 kHz 3.3V 2.5V 1.8V 1.2V 0.8V VO IO – Ouput Current – A 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V PD – Power Dissipation – W 0 108642 IO – Ouput Current – A 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 500 kHz 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V PD – Power Dissipation – W 1000900700600400 fSW – Switching Frequency – kHz 300 IBIAS – Input Bias Current – mA 500 800 VI = 12 V 0 108642 IO – Ouput Current – A 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 750 kHz 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V PD – Power Dissipation – W 0 108642 IO – Ouput Current – A PD – Power Dissipation – W 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 1 MHz 1.2 V 0.8 V 3.3 V 2.5 V 1.8 V PTD08A010W SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com TYPICAL CHARACTERISTICS (VI = 12 V) (1) EFFICIENCY vs EFFICIENCY vs EFFICIENCY vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure1. Figure2. Figure3. EFFICIENCY vs POWER DISSIPATION vs POWER DISSIPATION vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure4. Figure5. Figure6. POWER DISSIPATION vs POWER DISSIPATION vs INPUT BIAS CURRENT vs LOAD CURRENT LOAD CURRENT SWITCHING FREQUENCY Figure7. Figure8. Figure9. (1) The electricalcharacteristicdatahas been developedfromactualproductstestedat25°C. Thisdataisconsideredtypicalforthe converter.
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IO – Ouput Current – A TA – Ambient Temperature – °C fSW = 350 kHz VO = 3.3 V 400LFM 200LFM 100LFM Nat conv
200 LFM
100 LFM
400 LFM
IO – Ouput Current – A TA – Ambient Temperature – °C fSW = 500 kHz VO = 3.3 V 400LFM 200LFM 100LFM Nat conv 108642 IO – Ouput Current – A TA – Ambient Temperature – °C Nat Conv Nat conv fSW = 350 kHz VO = 1.2 V 108642 IO – Ouput Current – A TA – Ambient Temperature – °C fSW = 500 kHz VO = 1.2 V 200LFM 100LFM Nat conv
100 LFMNat Conv
IO – Ouput Current – A TA – Ambient Temperature – °C fSW = 750 kHz VO = 1.2 V 400LFM 200LFM 100LFM Nat conv
100 LFM 200 LFM
www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010 TYPICAL CHARACTERISTICS (VI = 12 V) Safe OperatingArea (1) AMBIENT TEMPERATURE vs AMBIENT TEMPERATURE vs AMBIENT TEMPERATURE vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure10. Figure11. Figure12. AMBIENT TEMPERATURE vs AMBIENT TEMPERATURE vs LOAD CURRENT LOAD CURRENT Figure13. Figure14. (1) The temperaturederatingcurvesrepresenttheconditionsatwhichinternalcomponents areatorbelowthemanufacturer's maximum operatingtemperatures.Deratinglimitsapplytomodules soldereddirectlytoa 100 mm x 100 mm double-sidedPCB with2 oz.copper. Pleaserefertothemechanicalspecificationformore information. Copyright© 2007–2010,Texas InstrumentsIncorporated SubmitDocumentationFeedback 7 ProductFolderLink(s):PTD08A010W
fSW = 350 kHz 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO IO – Ouput Current – A 100 /c104– Efficiency – % 0 108642 IO – Ouput Current – A 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 500 kHz 100 /c104– Efficiency – % 0 108642 IO – Ouput Current – A 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 750 kHz 100 /c104– Efficiency – % 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 1 MHz 0 108642 IO – Ouput Current – A 100 /c104– Efficiency – % 3.3 V 2.5 V 1.8 V 1.2 V 0.8 V 0 108642 fSW = 350 kHz 3.3V 2.5V 1.8V 1.2V 0.8V VO IO – Ouput Current – A 1.0 2.0 3.0 0.8 V PD – Power Dissipation – W Others 0.5 1.5 2.5 0 108642 IO – Ouput Current – A 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 500 kHz Others 1.0 2.0 3.0 PD – Power Dissipation – W 0.5 1.5 2.5 1 8 V 2.5 V 1000900700600400 fSW – Switching Frequency – kHz 300 IBIAS – Input Bias Current – mA 500 800 VI = 5 V 0 108642 IO – Ouput Current – A 1.0 2.0 3.0 PD – Power Dissipation – W 0.5 1.5 2.5 0.8 V 3.3 V 1 8 V 2.5 V 1.2 V 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 750 kHz 0 108642 IO – Ouput Current – A 3.3V 2.5V 1.8V 1.2V 0.8V VO fSW = 1 MHz All 1.0 2.0 3.0 PD – Power Dissipation – W 0.5 1.5 2.5 PTD08A010W SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com TYPICAL CHARACTERISTICS (VI = 5 V) (1) EFFICIENCY vs EFFICIENCY vs EFFICIENCY vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure15. Figure16. Figure17. EFFICIENCY vs POWER DISSIPATION vs POWER DISSIPATION vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure18. Figure19. Figure20. POWER DISSIPATION vs POWER DISSIPATION vs INPUT BIAS CURRENT vs LOAD CURRENT LOAD CURRENT SWITCHING FREQUENCY Figure21. Figure22. Figure23. (1) The electricalcharacteristicdatahas been developedfromactualproductstestedat25°C. Thisdataisconsideredtypicalforthe converter.
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IO – Ouput Current – A TA – Ambient Temperature – °C Nat Conv Nat conv fSW = 350 kHz VO = 3.3 V 108642 IO – Ouput Current – A TA – Ambient Temperature – °C Nat Conv fSW = 500 kHz VO = 3.3 V Nat conv 108642 IO – Ouput Current – A TA – Ambient Temperature – °C Nat Conv Nat conv fSW = 500 kHz VO = 1.2 V 108642 IO – Ouput Current – A TA – Ambient Temperature – °C Nat Conv fSW = 750 kHz VO = 1.2 V 200LFM 100LFM Nat conv www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010 TYPICAL CHARACTERISTICS (VI = 5 V) Safe OperatingArea (1) AMBIENT TEMPERATURE vs AMBIENT TEMPERATURE vs AMBIENT TEMPERATURE vs LOAD CURRENT LOAD CURRENT LOAD CURRENT Figure24. Figure25. Figure26. AMBIENT TEMPERATURE vs LOAD CURRENT Figure27. (1) The temperaturederatingcurvesrepresenttheconditionsatwhichinternalcomponents areatorbelowthemanufacturer's maximum operatingtemperatures.Deratinglimitsapplytomodules soldereddirectlytoa 100 mm x 100 mm double-sidedPCB with2 oz.copper. Pleaserefertothemechanicalspecificationformore information. Copyright© 2007–2010,Texas InstrumentsIncorporated SubmitDocumentationFeedback 9 ProductFolderLink(s):PTD08A010W
–Vsens-rail3 10 k/c87 0.1 /c109F FCX491A +3.3 V UCD9240RGC EAp1 EAn2 EAp2 EAn1 EAn4 EAp4 EAn3 EAp3 AddrSens1 AddrSens0 CS-1A(COMP1) CS-2A(COMP2) CS-2B CS-1B CS-4A(COMP4) CS-3A(COMP3) +Vsens-rail1 –Vsens-rail2 +Vsens-rail2 –Vsens-rail1 –Vsens-rail4 +Vsens-rail4 +Vsens-rail3 CS-rail2B CS-rail1A CS-rail4A CS-rail3A CS-rail2A CS-rail1B Temp Vtrack Vin/Iin PMBus-Data PMBus-Clk PowerGood (TMS) PMBus-Ctrl PMBus-Alert +3.3 V 52V33FB V33A V33D V33DIO-1 V33DIO-2 BPCap 4.7 /c109F DPWM-1A 15 k/c87 0.1 /c109F FAN-Tach36
41 FAN-PWM
9 RESET
+3.3 V PTD08A010W FAULT PWM SRE INH IOUT PTD08A010W FAULT PWM SRE INH IOUT Commutation UCD7230 Driver Logic FAULT PWM SRE INH IOUT Temp Sensor PTD08A020W Temp-rail1A INH +3.3 V VIN VO PTD08A020W FAULT PWM SRE INH IOUT Temp-rail1B CS-rail1A +Vsens-rail1 –Vsens-rail1 Temp-rail2A Temp-rail2B +Vsens-rail2 –Vsens-rail2 CS-rail1B CS-rail2A CS-rail2B PTD08A010W FAULT PWM SRE INH IOUT PTD08A010W FAULT PWM SRE INH IOUT Temp-rail3A Temp-rail4A +Vsens-rail4 –Vsens-rail4 CS-rail3A CS-rail4A +Vsens-rail3 –Vsens-rail3 82.5 k/c87 TEMP VOUT GND VBIAS TEMP GND TEMP VOUT GND TEMP VOUT GND TEMP VOUT GND TEMP VOUT GND VBIAS VIN VIN VBIAS VIN VIN VBIAS VIN VIN VBIAS VIN VIN VBIAS VIN VIN [A] UDG-08035 PTD08A010W SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com
APPLICATION INFORMATION
Figure28.TypicalApplicationSchematic B. Thisdiscretebiaspower circuitmay be substitutedwitha low dropoutregulator(LDO).For example,TPS715A33 can providebiaspower totheUCD9240. Figure28 shows theUCD9240 power supplycontrollerworkingina system whichrequirestheregulationoffour independentpower supplies.The loopforeach power supplyiscreatedby therespectivevoltageoutputsfeeding intotheErrorADC differentialinputs,and completedby DPWM outputsfeedingintotheUCD7230 driverswhich areshown on thePTD08A0x0W modules.
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www.ti.com SLTS285E –MAY 2007–REVISED FEBRUARY 2010 UCD9240 GraphicalUser Interface(GUI) When usingthe UCD9240 digitalcontrolleralong withdigitalPowerTrainmodules to designa digitalpower system,severalinternalparametersofthemodules are requiredtorun theFusionDigitalPower DesignerGUI. See theplantparametersbelowforthePTD08A010W and PTD08A020W digitalPowerTrainmodules. Table1.PTD08A010W PlantParameters PTD08A010W PlantParameters L (µH) DCR (mΩ) Rds-on-hi(mΩ) Rds-on-lo(mΩ) 0.90 2.2 3.6 3.6 Table2.PTD08A020W PlantParameters PTD08A020W PlantParameters L (µH) DCR (mΩ) Rds-on-hi(mΩ) Rds-on-lo(mΩ) 1.0 1.5 5.0 2.5 Internaloutputcapacitanceispresenton the digitalPowerTrainmodules themselves.When usingthe GUI interfacethiscapacitanceinformationmust be includedalongwithany additionalexternalcapacitance.See the capacitorparametersbelowforthePTD08A010W and PTD08A020W digitalPowerTrainmodules. Table3.PTD08A010W CapacitorParameters PTD08A010W CapacitorParameters C (µF) ESR (mΩ) ESL (nH) Quantity 47 1.5 2.5 1 Table4.PTD08A020W CapacitorParameters PTD08A020W CapacitorParameters C (µF) ESR (mΩ) ESL (nH) Quantity 47 1.5 2.5 2 Copyright© 2007–2010,Texas InstrumentsIncorporated SubmitDocumentationFeedback 11 ProductFolderLink(s):PTD08A010W
SLTS285E –MAY 2007–REVISED FEBRUARY 2010 www.ti.com TRAY
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www.ti.com 2-Jun-2025 PACKAGING INFORMATION Orderable part number Status (1) Material type (2) Package | Pins Package qty | Carrier RoHS (3) Lead finish/ Ball material (4) MSL rating/ Peak reflow (5) Op temp (°C) Part marking (6) PTD08A010WAD Active Production Through-Hole Module (EGS) | 12 36 | TIW TRAY In-Work SN Level-1-235C-UNLIM/ Level-3-260C-168HRS -40 to 85 PTD08A010WAD.B Active Production Through-Hole Module (EGS) | 12 36 | TIW TRAY In-Work SN Level-1-235C-UNLIM/ Level-3-260C-168HRS -40 to 85 (1) Status: For more details on status, see our product life cycle. (2) Material type: When designated, preproduction parts are prototypes/experimental devices, and are not yet approved or released for full production. Testing and final process, including without limitation quality assurance, reliability performance testing, and/or process qualification, may not yet be complete, and this item is subject to further changes or possible discontinuation. If available for ordering, purchases will be subject to an additional waiver at checkout, and are intended for early internal evaluation purposes only. These items are sold without warranties of any kind. (3) RoHS values: Yes, No, RoHS Exempt. See the TI RoHS Statement for additional information and value definition. (4) Lead finish/Ball material: Parts may have multiple material finish options. Finish options are separated by a vertical ruled line. Lead finish/Ball material values may wrap to two lines if the finish value exceeds the maximum column width. (5) MSL rating/Peak reflow: The moisture sensitivity level ratings and peak solder (reflow) temperatures. In the event that a part has multiple moisture sensitivity ratings, only the lowest level per JEDEC standards is shown. Refer to the shipping label for the actual reflow temperature that will be used to mount the part to the printed circuit board. (6) Part marking: There may be an additional marking, which relates to the logo, the lot trace code information, or the environmental category of the part. Multiple part markings will be inside parentheses. Only one part marking contained in parentheses and separated by a "~" will appear on a part. If a line is indented then it is a continuation of the previous line and the two combined represent the entire part marking for that device. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. Addendum-Page 1
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