Transcription of Dual 2-Input NAND Gate With Schmitt-Trigger Inputs ...
1 See mechanical drawings for PACKAGE(TOP VIEW)DCU PACKAGE(TOP VIEW)YZP PACKAGE(BOTTOM VIEW) FEBRUARY2004 REVISEDDECEMBER2013 Dual 2-InputNANDGate With schmitt -TriggerInputsCheckfor Samples:SN74 LVC2G1321 FEATURESDESCRIPTIONT hisdual2-inputNAND gatewithSchmitt-trigger2 Availablein TexasInstrumentsNanoFree inputsis designedfor Supports5-V VCCO perationperformsthe BooleanfunctionY = A B or Y = A + B InputsAcceptVoltagesto Vin two Maxtpdof ns at Vindependentinverters,but becauseof Schmittaction,it has differentinputthresholdlevelsfor positive-going LowPowerConsumption,10- A MaxICC(VT+) and negative-going(VT-) signals. 24-mAOutputDriveat VNanoFree packagetechnologyis a major TypicalVOLP(OutputGroundBounce)< V atbreakthroughin IC packagingconcepts,usingthe dieVCC= V, TA= 25 Cas the package. TypicalVOHV(OutputVOHU ndershoot)>2 V atThis devicecan be triggeredfromthe slowestof inputVCC= V, TA= 25 Crampsand still give cleanjitter-freeoutputsignals.
2 IoffSupportsLiveInsertion,PartialPowerDo wnMode,and BackDriveProtectionThisdeviceis fullyspecifiedfor partial-power-downapplicationsusingIoff. TheIoffcircuitrydisablesthe SupportTranslationDown(5V to ,preventingdamagingcurrentbackflowto )throughthe devicewhenit is powereddown. Latch-UpPerformanceExceeds100 mA PerJESD78, ClassII ESDP rotectionExceedsJESD22 2000-VHuman-BodyModel(A114-A) 200-VMachineModel(A115-A) 1000-VCharged-DeviceModel(C101)1 Pleasebe awarethat an importantnoticeconcerningavailability,st andardwarranty,and use in criticalapplicationsofTexasInstrumentsse miconductorproductsand disclaimerstheretoappearsat the end of this a trademarkof currentas of 2004 2013,TexasInstrumentsIncorporatedProduct sconformto specificationsper the termsof the all FEBRUARY2004 leadsshouldbe shortedtogetheror the deviceplacedin conductivefoamduringstorageor handlingto preventelectrostaticdamageto the (EachGate)INPUTSOUTPUTYABLLHLHHHLHHHLL ogicDiagram(PositiveLogic)AbsoluteMaximu mRatings(1)overoperatingfree-airtemperat urerange(unlessotherwisenoted)MINMAXUNIT VCCS upplyvoltagerange (2)
3 Any outputin the high-impedanceor power-offstate(2) any outputin the high or low state(2) (3) + < 0 50mAIOKO utputclampcurrentVO< 0 50mAIOC ontinuousoutputcurrent 50mAContinuouscurrentthroughVCCor GND 100mADCT package220 JAPackagethermalimpedance(4)DCUpackage22 7 C/WYZP package102 TstgStoragetemperaturerange 65150 C(1)Stressesbeyondthoselistedunder"absol utemaximumratings" may causepermanentdamageto the stressratingsonly,and functionaloperationof the deviceat theseor any otherconditionsbeyondthoseindicatedunder "recommendedoperatingconditions" is not absolute-maximum-ratedconditionsfor extendedperiodsmay affectdevicereliability.(2)The inputand outputnegative-voltageratingsmay be exceededif the inputand outputcurrentratingsare observed.(3)The valueof VCCis providedin the recommendedoperatingconditionstable.(4)T he packagethermalimpedanceis calculatedin accordancewith JESD51-72 SubmitDocumentationFeedbackCopyright 2004 2013, FEBRUARY2004 REVISEDDECEMBER2013 RecommendedOperatingConditions(1) 4 VCC= V 8 IOHHigh-leveloutputcurrent 16mAVCC= 3 V 24 VCC= V 32 VCC= V8 IOLLow-leveloutputcurrent16mAVCC= 3 V24 VCC= V32 TAOperatingfree-airtemperature 40125 C(1)All unusedinputsof the devicemustbe held at VCCor GNDto the TI applicationreport,Implicationsof Slowor FloatingCMOSI nputs, 2004 2013,TexasInstrumentsIncorporatedSubmitD ocumentationFeedback3 ProductFolderLinks.
4 SN74 LVC2G132SN74 LVC2G132 SCES547D FEBRUARY2004 (unlessotherwisenoted) 40 C to 85 C 40 C to 125 CUNIPARAMETERTESTCONDITIONSVCCTMINTYP(1) MAXMINTYP(1) +Positive-going3 Negative-going3 VTHysteresis3 (VT+ VT ) 100 to VVCC 4 8 16 VIOH= 24 32 100 to 4 8 16 VIOL= 24 32 or B inputsVI= V or to V 1 1 AIoffVIor VO= V0 10 10 AICCVI= VCCor GND,IO= to V1010 AOne inputat VCC V, ICC3 V to V500500 AOtherinputsat VCCor GNDCIVI= VCCor (1)All typicalvaluesare at VCC= V, TA= 25 2004 2013, FEBRUARY2004 REVISEDDECEMBER2013 SwitchingCharacteristicsoverrecommendedo peratingfree-airtemperaturerange,CL= 15 pF (unlessotherwisenoted)(seeFigure1)SN74 LVC2G132 40 C to 85 CFROMTOPARAMETERVCC= VVCC= VVCC= VVCC= 5 VUNIT( input )(OUTPUT) V V VMINMAXMINMAXMINMAXMINMAXtpdA or ,CL= 30 pF or 50 pF (unlessotherwisenoted)(seeFigure2)SN74 LVC2G132 40 C to 85 CFROMTOPARAMETERVCC= VVCC= VVCC= VVCC= 5 VUNIT( input )(OUTPUT) V V VMINMAXMINMAXMINMAXMINMAXtpdA or ,CL= 30 pF or 50 pF (unlessotherwisenoted)(seeFigure2)SN74 LVC2G132 40 C to 125 CFROMTOPARAMETERVCC= VVCC= VVCC= VVCC= 5 VUNIT( input )(OUTPUT) V V VMINMAXMINMAXMINMAXMINMAXtpdA or 25 CVCC= VVCC= VVCC= VVCC= 5 VTESTPARAMETERUNITCONDITIONSTYPTYPTYPTYP CpdPowerdissipationcapacitancef = 10 MHz17181820pFCopyright 2004 2013,TexasInstrumentsIncorporatedSubmitD ocumentationFeedback5 ProductFolderLinks.
5 SN74 LVC2G132thtsuFrom OutputUnder TestC(see Note A)LLOAD CIRCUITS1 VLOADOpenGNDRLData InputTiming Input0 V0 V0 VtWInput0 VInputOutputWaveform 1S1 at V(see Note B)LOADO utputWaveform 2S1 at GND(see Note B)VOLVOH0 V 0 VOutputOutputt V V V V V V 5 V V 1 MW1 MW1 MW1 MWVCCRL2 VCC2 VCC6 V2 VCCVLOADCL15 pF15 pF15 pF15 VVD3 VVIVCC/2 VVCC/2VM 2 ns 2 ns ns nsINPUTSRLt /trfVCCVCCVCCVLOADt /tPLZPZLGNDt /tPHZPZHVOLTAGE WAVEFORMSENABLE AND DISABLE TIMESLOW- AND HIGH-LEVEL ENABLINGVOLTAGE WAVEFORMSPROPAGATION DELAY TIMESINVERTING AND NONINVERTING OUTPUTSNOTES: A. C includes probe and jig Waveform 1 is for an output with internal conditions such that the output is low, except when disabled by the output 2 is for an output with internal conditions such that the output is high, except when disabled by the output All input pulses are supplied by generators having the following characteristics: PRR 10 MHz, Z = 50.
6 D. The outputs are measured one at a time, with one transition per tand tare the same as t .F. tand tare the same as t .G. tand tare the same as t .H. All parameters and waveforms are not applicable to all WVOLTAGE WAVEFORMSPULSE DURATIONVOLTAGE WAVEFORMSSETUP AND HOLD TIMESVIVIVIVMVMV/2 LOADtPZLtPLZtPHZtPZHV VOHDV + VOLDVMVMVMVMVOLVOHVIVIVOHVOLVMVMVMVMtPLH tPHLtPLHtPHLSN74 LVC2G132 SCES547D FEBRUARY2004 LoadCircuitand VoltageWaveforms6 SubmitDocumentationFeedbackCopyright 2004 2013,TexasInstrumentsIncorporatedProduct FolderLinks:SN74 LVC2G132thtsuFrom OutputUnder TestC(see Note A)LLOAD CIRCUITS1 VLOADOpenGNDRLData InputTiming Input0 V0 V0 VtWInput0 VInputOutputWaveform 1S1 at V(see Note B)LOADO utputWaveform 2S1 at GND(see Note B)VOLVOH0 V 0 VOutputOutputTESTS1t V V V V V V 5 V V 1 kW500W500W500 WVCCRL2 VCC2 VCC6 V2 VCCVLOADCL30 pF30 pF50 pF50 VVD3 VVIVCC/2 VVCC/2VM 2 ns 2 ns ns nsINPUTSRLt /trfVCCVCCVCCVLOADt /tPLZPZLGNDt /tPHZPZHVOLTAGE WAVEFORMSENABLE AND DISABLE TIMESLOW- AND HIGH-LEVEL ENABLINGVOLTAGE WAVEFORMSPROPAGATION DELAY TIMESINVERTING AND NONINVERTING OUTPUTSNOTES: A.
7 C includes probe and jig Waveform 1 is for an output with internal conditions such that the output is low, except when disabled by the output 2 is for an output with internal conditions such that the output is high, except when disabled by the output All input pulses are supplied by generators having the following characteristics: PRR 10 MHz, Z = 50 .D. The outputs are measured one at a time, with one transition per tand tare the same as t .F. tand tare the same as t .G. tand tare the same as t .H. All parameters and waveforms are not applicable to all WVOLTAGE WAVEFORMSPULSE DURATIONVOLTAGE WAVEFORMSSETUP AND HOLD TIMESVIVIVIVMVMV/2 LOADtPZLtPLZtPHZtPZHV VOHDV + FEBRUARY2004 REVISEDDECEMBER2013 ParameterMeasurementInformationFigure2. LoadCircuitand VoltageWaveformsCopyright 2004 2013,TexasInstrumentsIncorporatedSubmitD ocumentationFeedback7 ProductFolderLinks:SN74 LVC2G132SN74 LVC2G132 SCES547D FEBRUARY2004 (January2007)to RevisionDPage Updateddocumentto new TI 2004 2013,TexasInstrumentsIncorporatedProduct FolderLinks.
8 SN74 LVC2G132 PACKAGE OPTION 1 PACKAGING INFORMATIONO rderable DeviceStatus(1)Package TypePackageDrawingPinsPackageQtyEco Plan(2)Lead finish/Ball material(6)MSL Peak Temp(3)Op Temp ( C)Device Marking(4/5)Samples74 LVC2G132 DCTRG4 ACTIVESM8 DCT83000 RoHS & GreenNIPDAUL evel-1-260C-UNLIM-40 to 125C3B(R, Z)74 LVC2G132 DCURG4 ACTIVEVSSOPDCU83000 RoHS & GreenNIPDAUL evel-1-260C-UNLIM-40 to 125C3BR74 LVC2G132 DCUTG4 ACTIVEVSSOPDCU8250 RoHS & GreenNIPDAUL evel-1-260C-UNLIMC3 BRSN74 LVC2G132 DCTRACTIVESM8 DCT83000 RoHS & GreenNIPDAUL evel-1-260C-UNLIM-40 to 125C3B(R, Z)SN74 LVC2G132 DCURACTIVEVSSOPDCU83000 RoHS & GreenNIPDAU | SNLevel-1-260C-UNLIM-40 to 125(3B, C3BR)CZSN74 LVC2G132 DCUTACTIVEVSSOPDCU8250 RoHS & GreenNIPDAU | SNLevel-1-260C-UNLIM-40 to 125(C3BJ, C3BR)SN74 LVC2G132 YZPRACTIVEDSBGAYZP83000 RoHS & GreenSNAGCUL evel-1-260C-UNLIM-40 to 85(D57, D5N) (1) The marketing status values are defined as follows:ACTIVE: Product device recommended for new : TI has announced that the device will be discontinued, and a lifetime-buy period is in : Not recommended for new designs.
9 Device is in production to support existing customers, but TI does not recommend using this part in a new : Device has been announced but is not in production. Samples may or may not be : TI has discontinued the production of the device. (2) RoHS: TI defines "RoHS" to mean semiconductor products that are compliant with the current EU RoHS requirements for all 10 RoHS substances, including the requirement that RoHS substancedo not exceed by weight in homogeneous materials. Where designed to be soldered at high temperatures, "RoHS" products are suitable for use in specified lead-free processes. TI mayreference these types of products as "Pb-Free".RoHS Exempt: TI defines "RoHS Exempt" to mean products that contain lead but are compliant with EU RoHS pursuant to a specific EU RoHS : TI defines "Green" to mean the content of Chlorine (Cl) and Bromine (Br) based flame retardants meet JS709B low halogen requirements of <=1000ppm threshold.
10 Antimony trioxide basedflame retardants must also meet the <=1000ppm threshold requirement. (3) MSL, Peak Temp. - The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. (4) There may be additional marking, which relates to the logo, the lot trace code information, or the environmental category on the device. (5) Multiple Device Markings will be inside parentheses. Only one Device Marking contained in parentheses and separated by a "~" will appear on a device. If a line is indented then it is a continuationof the previous line and the two combined represent the entire Device Marking for that device. PACKAGE OPTION 2(6) Lead finish/Ball material - Orderable Devices may have multiple material finish options. Finish options are separated by a vertical ruled line. Lead finish/Ball material values may wrap to twolines if the finish value exceeds the maximum column width.
