Transcription of Wideband, Voltage-Feedback Operational Amplifier …
1 R420 R520 C320pFC620pFC410 FC5 THS104010-Bit40 MSPSAIN+AIN-V= 1 VREFC28 OPA690324R1+ FCopyright 2016, Texas Instruments IncorporatedProductFolderSample &BuyTechnicalDocumentsTools &SoftwareSupport &CommunityAn IMPORTANTNOTICEat the end of this datasheetaddressesavailability,warranty, changes,use in safety-criticalapplications,intellectual propertymattersand DECEMBER2001 REVISEDAUGUST2016 OPA690 Wideband, Voltage-FeedbackOperationalAmpl ifierWith Disable11 Features1 FlexibleSupplyRange: 5-V to 12-VSingleSupply 5-V DualSupply Unity-GainStable:500 MHz(G = 1) HighOutputCurrent:190 mA OutputVoltageSwing: 4 V HighSlewRate:1800V/ s Low mA Low DisableCurrent:100 A Wideband5-V Operation:220 MHz(G = 2)2 Applications VideoLine Drivers xDSLLine Driversand Receivers High-SpeedImagingChannels ADCB uffers PortableInstruments TransimpedanceAmplifiers ActiveFilters3 DescriptionThe OPA690devicerepresentsa majorstepforwardin unity-gainstable,voltage-feedbackop and full-powerbandwidthpreviouslyfoundonlyin Wideband, current-feedbackop newoutputstagearchitecturedelivershighcu rrentswitha single5-V supply,the OPA690can delivera 1-V to 4-V outputswingwith over150 mA drivecurrentand 150 featuresmakestheOPA690an idealRGBline driveror single-supplyAnalog-to-DigitalConverter( ADC) the OPA690ispreciselytrimmedat 25 C.
2 Thistrim,alongwith lowtemperaturedrift, reducedfurtherusingthe optionaldisablecontrolpin. Leavingthis disablepin open,or holdingit HIGH,operatesthe pulledLOW,theOPA690supplycurrentdropsto lessthan100 Awhilethe outputgoesto a be usedfor (1)PARTNUMBERPACKAGEBODYSIZE(NOM)OPA690 SOIC(8) (6) (1) For all availablepackages,see the orderableaddendumatthe end of the DECEMBER2001 :OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporatedTableof Contents1 Pin Configurationand :VS= 5 :VS= 5 Applicationand Deviceand Mechanical,Packaging,and RevisionHistoryNOTE:Pagenumbersfor previousrevisionsmay differfrompagenumbersin the (February2010)to RevisionGPage AddedESDR atingstable,FeatureDescriptionsection,De viceFunctionalModes,ApplicationandImplem entationsection,PowerSupplyRecommendatio nssection,Layoutsection,DeviceandDocumen tationSupportsection,andMechanical,Packa ging, DeletedOrderingInformationtable,see POAat the end of the (November2008)to RevisionFPage Changeddatasheetformatto AddedFigure25, (August2008)to RevisionEPage Input+VSDISI nverting InputOAEI123654 Pin Orientation/Package Marking12348765 NCInverting InputNoninverting Input-VSDIS+VSOutputNCNOTE: NC = not DECEMBER2001 REVISEDAUGUST2016 ProductFolderLinks.
3 OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporated5 DeviceComparisonTableSINGLESDUALSTRIPLES V oltage-feedback OPA2690 OPA3690 Current-feedbackOPA691 OPA2691 OPA3691 FixedgainOPA692 OPA36926 Pin Configurationand FunctionsD Package8-PinSOICTop ViewDRBP ackage6-PinSOT-23 Top View(1)I = Input,O = Output,P = PowerPin FunctionsPINTYPE(1)DESCRIPTIONNAMESOICSO T-23 DIS85 IDisablethe op amp(low = disable,high = enable)IN 24 IInvertinginputIN+33 INoninvertinginputNC1, 5 No connectionOutput61 OOutputof Amplifier VS42 PNegativepowersupply+VS76 PPositivepowersupply4 OPA690 SBOS223G DECEMBER2001 :OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporated(1)Stre ssesbeyondthoselistedunderAbsoluteMaximu mRatingsmay causepermanentdamageto the stressratingsonly,whichdo not implyfunctionaloperationof the deviceat theseor any otherconditionsbeyondthoseindicatedunder RecommendedOperatingConditions. Exposureto absolute-maximum-ratedconditionsfor extendedperiodsmay (unlessotherwisenoted)(1)MINMAXUNITP owersupply VSVJ unctiontemperature,TJ175 CStoragetemperature,Tstg 65125 C(1)JEDEC documentJEP155statesthat 500-VHBM allowssafe manufacturingwith a standardESDcontrolprocess.
4 (2)JEDEC documentJEP157statesthat 250-VCDM allowssafe manufacturingwith a (ESD)ElectrostaticdischargeHuman-bodymod el(HBM),per ANSI/ESDA/JEDECJS-001(1) 2000 VCharged-devicemodel(CDM),per JEDEC specificationJESD22-C101(2) 1500 Machine-model(MM) (unlessotherwisenoted)MINNOMMAXUNITVST otalsupplyvoltage 5 6 VTAO peratingtemperature 4085 C(1)For moreinformationabouttraditionaland new thermalmetrics,see (1)OPA690 UNITD (SOIC)DRB(SOT-23)8 PINS6 PINSR JAJunction-to-ambientthermalresistance12 5150 C/WR JC(top)Junction-to-case(top) C/WR C/W C/W C/WR JC(bot)Junction-to-case(bottom)thermalre sistance DECEMBER2001 REVISEDAUGUST2016 ProductFolderLinks:OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporated(1)Typi calvalueonly for information.(2)Junctiontemperature= ambientfor 25 C specifications(3)Junctiontemperature= ambientat low temperaturelimits;junctiontemperature= ambient10 C at high temperaturelimit for :VS= 5 Vat RF= 402 , RL= 100 , G = 2, see Figure36 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNITAC PERFORMANCE(SEEF igure36)Small-signalbandwidthG = 1, VO= VPP, RF= 25 500(1)MHzG = 2, VO= VPPTA= 25 C(2)165220TA= 0 C to 70 C(3)160TA= 40 C to 85 C(3)150G = 10, VO= VPPTA= 25 C(2)2030TA= 0 C to 70 C(3)19TA= 40 C to 85 C(3)18 GainbandwidthproductG 10TA= 25 C(2)200300 MHzTA= 0 C to 70 C(3)190TA= 40 C to 85 C(3)180 Bandwidthfor = 2, VO< VPP30(1)MHzPeakingat a gain of 1VO< VPP4(1)dBLarge-signalbandwidthG = 2, VO< VPP200(1)MHzSlewrateG = 2, 4-V stepTA= 25 C(2)14001800V/ sTA= 0 C to 70 C(3)1200TA= 40 C to 85 C(3)900 Rise-and-falltimeG = 2, VO= (1)nsG = 2, VO= 5-V (1) ,G = 2, VO= 2-V step12(1) ,G = 2, VO= 2-V step8(1)Harmonicdistortion2nd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL= 100 TA= 25 C(2) 68 64dBcTA= 0 C to 70 C(3) 62TA= 40 C to 85 C(3) 602nd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL 500 TA= 25 C(2)
5 77 70dBcTA= 0 C to 70 C(3) 68TA= 40 C to 85 C(3) 663rd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL= 100 TA= 25 C(2) 70 68dBcTA= 0 C to 70 C(3) 66TA= 40 C to 85 C(3) 643rd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL 500 TA= 25 C(2) 81 78dBcTA= 0 C to 70 C(3) 76TA= 40 C to 85 C(3) 75 Inputvoltagenoisef > 1 (1)nV/ HzInputcurrentnoisef > 1 (1)pA/ HzDifferentialgainG = 2, NTSC,VO= VP, RL= 150 (1)DifferentialphaseG = 2, NTSC,VO= VP, RL= 150 (1) 6 OPA690 SBOS223G DECEMBER2001 :OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporatedElectri calCharacteristics:VS= 5 V (continued)at RF= 402 , RL= 100 , G = 2, see Figure36 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNIT(4)Currentis consideredpositiveout of node.(5)Tested< 3 dB belowminimumspecifiedCMRRat PERFORMANCE(4)AOLOpen-loopvoltagegainVO= 0 V, RL= 100 TA= 25 C(2)5869dBTA= 0 C to 70 C(3)56TA= 40 C to 85 C(3)54 InputoffsetvoltageVCM= 0 VTA= 25 C(2) 1 4mVTA= 0 C to 70 C(3) 40 C to 85 C(3) 0 VTA= 0 C to 70 C(3) 10 V/ CTA= 40 C to 85 C(3) 10 Inputbias currentVCM= 0 VTA= 25 C(2) 3 10 ATA= 0 C to 70 C(3) 11TA= 40 C to 85 C(3) 12 Averagebias currentdrift(magnitude)VCM= 0 VTA= 0 C to 70 C(3) 20nA/ CTA= 40 C to 85 C(3) 40 InputoffsetcurrentVCM= 0 VTA= 25 C(2) 1 ATA= 0 C to 70 C(3) 40 C to 85 C(3) 0 VTA= 0 C to 70 C(3) 7nA/ CTA= 40 C to 85 C(3) 9 INPUTCMIRC ommon-modeinputvoltage(5)TA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 1 VTA= 25 C(2)6065dBTA= 0 C to 70 C(3)57TA= 40 C to 85 C(3)56 InputimpedanceDifferentialmode,VCM= 0 V190 || (1)k || pFCommon-mode,VCM= 0 || (1)M || pFOUTPUTV oltageoutputswingNo loadTA= 25 C(2) 4 VTA= 0 C to 70 C(3) 40 C to 85 C(3)
6 100 TA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) ,VO= 0 VTA= 25 C(2)160190mATA= 0 C to 70 C(3)140TA= 40 C to 85 C(3)100 Sinking,VO= 0 VTA= 25 C(2) 160 190mATA= 0 C to 70 C(3) 140TA= 40 C to 85 C(3) 100 Short-circuitcurrentlimitVO= 0 V 250(1)mAClosed-loopoutputimpedanceG = 2, f = 100 (1) DECEMBER2001 REVISEDAUGUST2016 ProductFolderLinks:OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporatedElectri calCharacteristics:VS= 5 V (continued)at RF= 402 , RL= 100 , G = 2, see Figure36 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNITDISABLE(DISABLEDLOW)+V SPower-downsupplycurrentVDIS= 0 VTA= 25 C(2) 100 200 ATA= 0 C to 70 C(3) 240TA= 40 C to 85 C(3) 260 DisabletimeVIN= 1 VDC200(1)nsEnabletimeVIN= 1 VDC25(1)nsOff isolationG = 2, RL= 150 , VIN= 0 V70(1)dBOutputcapacitancein disableG = 2, RL= 150 , VIN= 0 V4(1)pFTurnonglitch 50(1)mVTurnoffglitch 20(1)mVEnablevoltageTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) inputbias currentVDIS= 0 VTA= 25 C(2)75130 ATA= 0 C to 70 C(3)150TA= 40 C to 85 C(3)160 POWERSUPPLYS pecifiedoperatingvoltage 5(1)VMaximumoperatingvoltageTA= 25 C(2), TA= 0 C to 70 C(3),and TA= 40 C to 85 C(3) 6 VMaximumquiescentcurrentVS= 5 VTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 5 VTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3)
7 +PSRRP ower-supplyrejectionratioInput-referredT A= 25 C(2)6875dBTA= 0 C to 70 C(3)66TA= 40 C to 85 C(3)648 OPA690 SBOS223G DECEMBER2001 :OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporated(1)Typi calvalueonly for information.(2)Junctiontemperature= ambientfor 25 C specifications.(3)Junctiontemperature= ambientat low temperaturelimits;junctiontemperature= ambient10 C at high temperaturelimit for :VS= 5 VRF= 402 , RL= 100 , and G = 2; see Figure37 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNITAC PERFORMANCE(SEEF igure37)Small-signalbandwidthG = 1, VO= VPP, RF= 25 400(1)MHzG = 2, VO< VPPTA= 25 C(2)150190TA= 0 C to 70 C(3)145TA= 40 C to 85 C(3)140G = 10, VO< VPPTA= 25 C(2)1825TA= 0 C to 70 C(3)17TA= 40 C to 85 C(3)16 GainbandwidthproductG 10TA= 25 C(2)180250 MHzTA= 0 C to 70 C(3)170TA= 40 C to 85 C(3)160 Bandwidthfor = 2, VO< VPP20(1)MHzPeakingat a gain of +1VO< VPP5(1)dBLarge-signalbandwidthG = 2, VO= 2 VPP220(1)MHzSlewrateG = 2, 2-V stepTA= 25 C(2)7001000V/ sTA= 0 C to 70 C(3)670TA= 40 C to 85 C(3)550 Rise-and-falltimeG = 2, VO= (1)nsG = 2, VO= 2-V step2(1) ,G = 2, VO= 2-V step12(1) ,G = 2, VO= 2-V step8(1)Harmonicdistortion2nd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL= 100 to VS/2TA= 25 C(2) 65 60dBcTA= 0 C to 70 C(3) 59TA= 40 C to 85 C(3) 562nd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL 500 to VS/2TA= 25 C(2)
8 75 70TA= 0 C to 70 C(3) 68TA= 40 C to 85 C(3) 663rd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL= 100 to VS/2TA= 25 C(2) 68 64TA= 0 C to 70 C(3) 62TA= 40 C to 85 C(3) 603rd-harmonic,G = 2,f = 5 MHz,VO= 2 VPP,RL 500 to VS/2TA= 25 C(2) 77 73TA= 0 C to 70 C(3) 71TA= 40 C to 85 C(3) 70 Inputvoltagenoisef > 1 (1)nV/ HzInputcurrentnoisef > 1 (1)pA/ HzDifferentialgainG = 2, NTSC,VO= VP, RL= 150 to (1)DifferentialphaseG = 2, NTSC,VO= VP, RL= 150 to (1) DECEMBER2001 REVISEDAUGUST2016 ProductFolderLinks:OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporatedElectri calCharacteristics:VS= 5 V (continued)RF= 402 , RL= 100 , and G = 2; see Figure37 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNIT(4)Currentis consideredpositiveout of node.(5)Tested< 3 dB belowminimumspecifiedCMRRat PERFORMANCE(4)AOLOpen-loopvoltagegainVO= V, RL= 100 to VS/2TA= 25 C(2)5663dBTA= 0 C to 70 C(3)54TA= 40 C to 85 C(3)52 InputoffsetvoltageVCM= VTA= 25 C(2) 1 4mVTA= 0 C to 70 C(3) 40 C to 85 C(3) V, TA= 0 C to 70 C(3)and TA= 40 C to 85 C(3) 10 V/ CInputbias currentVCM= VTA= 25 C(2) 3 10 ATA= 0 C to 70 C(3) 11TA= 40 C to 85 C(3) 12 Averagebias currentdrift(magnitude)VCM= VTA= 0 C to 70 C(3) 20nA/ CTA= 40 C to 85 C(3) 40 InputoffsetcurrentVCM= VTA= 25 C(2) 1 ATA= 0 C to 70 C(3) 40 C to 85 C(3) VTA= 0 C to 70 C(3) 7nA/ CTA= 40 C to 85 C(3) 9 INPUTL eastpositiveinputvoltage(5)TA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) (5)TA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) V VTA= 25 C(2)5863dBTA= 0 C to 70 C(3)56TA= 40 C to 85 C(3)54 InputimpedanceDifferentialmode,VCM= V92 || (1)k || pFCommon-mode,VCM= || (1)
9 M || pFOUTPUTM ostpositiveoutputvoltageNo loadTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 100 to VTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) loadTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 100 to VTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) DECEMBER2001 :OPA690 SubmitDocumentationFeedbackCopyright 2001 2016,TexasInstrumentsIncorporatedElectri calCharacteristics:VS= 5 V (continued)RF= 402 , RL= 100 , and G = 2; see Figure37 for ac performanceonly (unlessotherwisenoted)PARAMETERTESTCONDI TIONSMINTYPMAXUNITC urrentoutputSourcingTA= 25 C(2)160120mATA= 0 C to 70 C(3)100TA= 40 C to 85 C(3)80 SinkingTA= 25 C(2) 120 160TA= 0 C to 70 C(3) 100TA= 40 C to 85 C(3) 80 Short-circuitcurrent 250(1)mAClosed-loopoutputimpedanceG = 2, f = (1) DISABLE(DISABLEDLOW)+VSPower-downsupplyc urrentVDIS= 0 VTA= 25 C(2) 100 200 ATA= 0 C to 70 C(3) 240TA= 40 C to 85 C(3) 260 Off isolationG = 2, 5 MHz65(1)dBOutputcapacitancein disable4(1)pFTurnonglitchG = 2, RL= 150 , VIN= VS/2 50(1)mVTurnoffglitchG = 2, RL= 150 , VIN= VS/2 20(1)mVEnablevoltageTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) inputbias currentVDIS= 0 VTA= 25 C(2)75130 ATA= 0 C to 70 C(3)150TA= 40 C to 85 C(3)160 POWERSUPPLYS pecifiedsingle-supplyoperatingvoltage5(1 )VMaximumsingle-supplyoperatingvoltageTA = 25 C(2), TA= 0 C to 70 C(3),and TA= 40 C to 85 C(3)
10 12 VMaximumquiescentcurrentVS= 5 VTA= 25 C(2) 0 C to 70 C(3) 40 C to 85 C(3) 5 VTA= 25 C(2) 0 C to 70 C(3)4TA= 40 C to 85 C(3) +PSRRP ower-supplyrejectionratioInput-referred7 2(1)dBdG/dP (%/degree)Number of 150 Pull- DownWith Pull- DownWOPA690402W-5V+5V75 WVideo DownFrequency (Hz)Feedthrough (dB)-45-50-55-60-65-70-75-80-85-90-95-10 0 ForwardReverseV= 0 DIS100k1M10M100 MTime (5ns/div)4003002001000-100-200-300-400G = +2V = Voltage (mV)Time (5ns/div)Output Voltage (V)43210-1-2-3-4G = +2V = (MHz)Gain (3dB/div)9630-3-6V = 4 VOPPV = 7 VOPPV = 2 VOPPV = 1 VOPPN ormalized Gain (dB)Frequency (MHz) = = +1R = 25 WFG = 2G = 5G = DECEMBER2001 REVISEDAUGUST2016 ProductFolderLinks:OPA690 SubmitDocumentationFeedbackCopyright 2001 2016, :VS= 5 VTA= 25 C, G = 2, RF= 402 , and RL= 100 ; see Figure36 for AC performanceonly (unlessotherwisenoted)Figure1. Small SignalFrequencyResponseFigure2. Large SignalF
