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SBOS251E – JULY 2002 – REVISED DECEMBER 2008 …

, ultra -Low noise , voltage -FeedbackOPERATIONAL amplifier with ShutdownAPPLICATIONS HIGH DYNAMIC RANGE ADC PREAMPS LOW noise , WIDEBAND, TRANSIMPEDANCEAMPLIFIERS WIDEBAND, HIGH GAIN AMPLIFIERS LOW noise DIFFERENTIAL RECEIVERS ULTRASOUND CHANNEL AMPLIFIERS IMPROVED UPGRADE FOR THE OPA687,CLC425, AND LMH6624 FEATURES HIGH GAIN BANDWIDTH: LOW INPUT voltage noise : Hz VERY LOW DISTORTION: 105dBc (5 MHz) HIGH SLEW RATE: 950V/ s HIGH DC ACCURACY: VIO < 100 V LOW SUPPLY CURRENT: LOW shutdown POWER: 2mW STABLE FOR GAINS 12 ultra -High Dynamic RangeDifferential ADC DriverDESCRIPTIONThe OPA847 combines very high gain bandwidth and largesignal performance with an ultra -low input noise voltage ( Hz) while using only 18mA supply current.

www.ti.com Wideband, Ultra-Low Noise, Voltage-Feedback OPERATIONAL AMPLIFIER with Shutdown APPLICATIONS HIGH DYNAMIC RANGE ADC PREAMPS LOW NOISE, WIDEBAND, TRANSIMPEDANCE

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  Ultra, With, Operational, Noise, Feedback, Voltage, Shutdown, Amplifier, Ultra low noise, Voltage feedback operational amplifier with shutdown

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Transcription of SBOS251E – JULY 2002 – REVISED DECEMBER 2008 …

1 , ultra -Low noise , voltage -FeedbackOPERATIONAL amplifier with ShutdownAPPLICATIONS HIGH DYNAMIC RANGE ADC PREAMPS LOW noise , WIDEBAND, TRANSIMPEDANCEAMPLIFIERS WIDEBAND, HIGH GAIN AMPLIFIERS LOW noise DIFFERENTIAL RECEIVERS ULTRASOUND CHANNEL AMPLIFIERS IMPROVED UPGRADE FOR THE OPA687,CLC425, AND LMH6624 FEATURES HIGH GAIN BANDWIDTH: LOW INPUT voltage noise : Hz VERY LOW DISTORTION: 105dBc (5 MHz) HIGH SLEW RATE: 950V/ s HIGH DC ACCURACY: VIO < 100 V LOW SUPPLY CURRENT: LOW shutdown POWER: 2mW STABLE FOR GAINS 12 ultra -High Dynamic RangeDifferential ADC DriverDESCRIPTIONThe OPA847 combines very high gain bandwidth and largesignal performance with an ultra -low input noise voltage ( Hz) while using only 18mA supply current.

2 Wherepower saving is critical, the OPA847 also includes an op-tional power shutdown pin that, when pulled low, disables theamplifier and decreases the supply current to < 1% of thepowered-up value. This optional feature may be left discon-nected to ensure normal amplifier operation when no power-down is combination of very low input voltage and current noise ,along with a gain bandwidth product, make theOPA847 an ideal amplifier for wideband transimpedanceapplications. As a voltage gain stage, the OPA847 is opti-mized for a flat frequency response at a gain of +20V/V andis stable down to gains as low as +12V/V.

3 New externalcompensation techniques allow the OPA847 to be used atany inverting gain with excellent frequency response this technique in a differential Analog-to-Digital Con-verter (ADC) interface application, shown below, can deliverone of the highest dynamic-range interfaces JULY 2002 REVISED DECEMBER be aware that an important notice concerning availability, standard warranty, and use in critical applications ofTexas Instruments semiconductor products and disclaimers thereto appears at the end of this data 2002-2008, Texas Instruments Incorporated+5V 5 VOPA847+5V+5V 5V850 39pF100 20 2k 2k 20 F1.

4 250 Source< GainFrequency (MHz)DIFFERENTIAL OPA847 DRIVER DISTORTIONH armonic Distortion (dBc)10 70 75 80 85 90 95 100 105 110203040502 VPP, at converter RELATED PRODUCTSINPUT NOISEGAIN BANDWIDTHSINGLESVOLTAGE (nV/ Hz)PRODUCT (MHz) DATA information is current as of publication conform to specifications per the terms of Texas Instrumentsstandard warranty. Production processing does not necessarily includetesting of all trademarks are the property of their respective CONFIGURATIONSTop ViewSOABSOLUTE MAXIMUM RATINGS(1)Power Supply.

5 Power Dissipation .. See Thermal Analysis SectionDifferential Input voltage .. voltage Range .. VSStorage Temperature Range: D, DBV .. 65 C to +125 CLead Temperature (soldering, 10s) .. +300 CJunction Temperature (TJ ) .. +150 CESD Rating (Human Body Model) .. 1500V(Charge Device Model) .. 1500V(Machine Model) .. 100 VNOTE: (1) Stresses above these ratings may cause permanent to absolute maximum conditions for extended periods may degradedevice reliability. These are stress ratings only, and functional operation of thedevice at these or any other conditions beyond those specified is not SENSITIVITYThis integrated circuit can be damaged by ESD.

6 Texas Instru-ments recommends that all integrated circuits be handled withappropriate precautions. Failure to observe proper handlingand installation procedures can cause damage can range from subtle performance degradationto complete device failure. Precision integrated circuits may bemore susceptible to damage because very small parametricchanges could cause the device not to meet its INFORMATION(1)SPECIFIEDPACKAGETEMPERATUR EPACKAGEORDERINGTRANSPORTPRODUCTPACKAGE- LEADDESIGNATORRANGEMARKINGNUMBERMEDIA, QUANTITYOPA847SO-8D 40 C to +85 COPA847 OPA847 IDRails, 100"" "" "OPA847 IDRTape and Reel, 2500 OPA847 SOT23-6 DBV 40 C to +85 COATIOPA847 IDBVTTape and Reel, 250"" "" "OPA847 IDBVRTape and Reel, 3000 Top ViewSOT12348765 NCInverting InputNoninverting Input VSDIS+VSOutputNCNC = No Connection12364+VSInverting InputOutput VS5 DISN oninverting InputOATI123654 Pin Orientation/Package MarkingNOTE.

7 (1) For the most current package and ordering information, see the Package Option Addendum located at the end of this document, or see the TI web siteat , IDBVTYPMIN/MAX OVER TEMPERATURE0 C to 40 C toMIN/TESTPARAMETERCONDITIONS+25 C+25 C(1)70 C(2)+85 C(2)UNITSMAXLEVEL(3)ELECTRICAL CHARACTERISTICS: VS = 5 VBoldface limits are tested at +25 = 100 , RF = 750 , RG = , and G = +20 (see Figure 1 for AC performance only), unless otherwise : (1) Junction temperature = ambient for +25 C specifications. (2) Junction temperature = ambient at low temperature limit: junction temperature = ambient +23 Cat high temperature limit for over temperature specifications.

8 (3) Test Levels: (A) 100% tested at 25 C. Over temperature limits by characterization and simulation.(B) Limits set by characterization and simulation. (C) Typical value only for information. (4) Current is considered positive out of node. VCM is the input common-modevoltage. (5) Tested < 3dB below minimum specified CMRR at CMIR PERFORMANCE (see Figure 1)Closed-Loop BandwidthG = +12, RG = , VO = 200mVPP600 MHztypCG = +20, RG = , VO = 200mVPP350230210195 MHzminBG = +50, RG = , VO = 200mVPP78636057 MHzminBGain Bandwidth Product (GBP)G +503900310030002800 MHzminBBandwidth for Gain FlatnessG = +20, RL = 100 60403530 MHzminBPeaking at a Gain of + DistortionG = +20, f = 5 MHz, VO = 2 VPP2nd-HarmonicRL = 100 74 70 69 68dBcmaxBRL = 500 105 90 89 88dBcmaxB3rd-HarmonicRL = 100 103 96 91 88dBcmaxBRL = 500 110 105 100 90dBcmaxB2-Tone, 3rd-Order InterceptG = +20.

9 F = 20 MHz39373635dBmminBInput voltage noise Densityf > HzmaxBInput Current noise Densityf > HzmaxBPulse ResponseRise-and-Fall Rate2V Step950700625535V/ sminBSettling Time to Step10121418nsmaxB1%2V Step681012nsmaxBDC PERFORMANCE(4)Open-Loop voltage Gain (AOL)VO = 0V98908988dBminAInput Offset VoltageVCM = 0V Offset voltage DriftVCM = 0V V/ Cmax BInput Bias CurrentVCM = 0V 19 39 41 42 AmaxAInput Bias Current Drift (magnitude)VCM = 0V 15 15 40 70nA/ Cmax BInput Offset CurrentVCM = 0V AmaxAInput Offset Current DriftVCM = 0V 2 Cmax BINPUTC ommon-Mode Input Range (CMIR)(5) Rejection Ratio (CMRR)

10 VCM = , Input-Referred110959390dBminAInput ImpedanceDifferentialVCM = || || pFtypCCommon-ModeVCM = || || pFtypCOUTPUTO utput voltage Swing 400 Load Load Output, SourcingVO = 0V100605652mAminACurrent Output, SinkingVO = 0V 75 60 56 52mAminAClosed-Loop Output ImpedanceG = +20, f = < typCPOWER SUPPLYS pecified Operating voltage 5 VtypCMaximum Operating voltage 6 6 6 6 VmaxAMaximum Quiescent CurrentVS = Quiescent CurrentVS = Rejection Ratio+PSRR, PSRR|VS| = to , Input-Referred100959390dBminAPOWER-DOWN (disabled low)(Pin 8 on SO-8.)


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