100307 TI1 | Alldatasheet
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www.ti.com SNOS121A –OCTOBER 2009–REVISED APRIL 2013 100307LowPowerQuintExclusiveOR/NORGate Check forSamples: 100307 1FEATURES DESCRIPTION The 100307 is monolithicquintexclusive-OR/NOR 2• Low Power Operation gate.The Functionoutputisthe wire-OR of allfive• 2000V ESD Protection exclusive-ORoutputs.Allinputshave 50 kΩ pull-
- Pin/FunctionCompatible with100107 down resistors.
- VoltageCompensated OperatingRange = −4.2Vto−5.7V
- AvailabletoIndustrialGrade Temperature Range
- AvailabletoStandard MicrocircuitDrawing – (SMD) 5962-9459001 Logic EquationLogic Symbol F = (D1a + D 2a)+ (D 1b + D 2b)+ (D1c + D 2c)+ (D1d + D 2d)+ (D1e + D 2e) (1) Table1.Pin Descriptions Pin Names Description D na–D ne Data Inputs F FunctionOutput O a–O e Data Outputs O a–O e Complementary Data Outputs Pleasebe aware thatan importantnoticeconcerningavailability,standardwarranty,and use incriticalapplicationsof Texas Instrumentssemiconductorproductsand disclaimerstheretoappearsattheend ofthisdatasheet. 2Alltrademarksarethepropertyoftheirrespectiveowners. PRODUCTION DATA informationiscurrentas ofpublicationdate. Copyright© 2009–2013,Texas InstrumentsIncorporatedProductsconform to specificationsper the terms of the Texas Instrumentsstandardwarranty.Productionprocessingdoes not necessarilyincludetestingofallparameters.
SNOS121A –OCTOBER 2009–REVISED APRIL 2013 www.ti.com Connection Diagram Figure1.24-PinCERDIP Figure2. 24-PinCPGA See NAQ0024C Package These deviceshave limitedbuilt-inESD protection.The leadsshouldbe shortedtogetherorthedeviceplacedinconductivefoam duringstorageorhandlingtopreventelectrostaticdamage totheMOS gates. ABSOLUTE MAXIMUM RATINGS (1)(2) Above whichtheusefullifemay be impaired StorageTemperature(TSTG ) −65°C to+150°C Maximum JunctionTemperature(TJ) Ceramic +175°C Plastic +150°C VEE PinPotentialtoGround Pin −7.0Vto+0.5V InputVoltage(DC) VEE to+0.5V OutputCurrent(DC OutputHIGH) −50 mA ESD (3) ≥2000V (1) AbsoluteMaximum Ratingsarethosevaluesbeyond whichthedevicemay be damaged orhave itsusefullifeimpaired.Functional operationundertheseconditionsisnotimplied. (2) IfMilitary/Aerospacespecifieddevicesarerequired,pleasecontacttheTIOffice/Distributorsforavailabilityand specifications. (3) ESD testingconformstoMIL-STD-883,Method 3015. RECOMMENDED OPERATING CONDITIONS Case Temperature(TC ) Military −55°C to+125°C SupplyVoltage(VEE ) −5.7Vto−4.2V
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www.ti.com SNOS121A –OCTOBER 2009–REVISED APRIL 2013 DC ELECTRICAL CHARACTERISTICS -MILITARY VERSION VEE = −4.2Vto−5.7V,VCC = VCCA = GND, TC = −55°C to+125°C Symbol Parameter Min Max Units TC Conditions Notes VOH OutputHIGH Voltage −1025 −870 mV 0°C to +125°C −1085 −870 mV −55°C VIN = VIH (Max) Loadingwith See (1)(2)(3) orVIL(Min) 50Ω to−2.0VVOL OutputLOW Voltage −1830 −1620 mV 0°C to +125°C −1830 −1555 mV −55°C VOHC OutputHIGH Voltage −1035 mV 0°C to +125°C −1085 mV −55°C VIN = VIH (Min) Loadingwith See (1)(2)(3) orVIL(Max) 50Ω0 to−2.0VVOLC OutputLOW Voltage −1610 mV 0°C to +125°C −1555 mV −55°C VIH InputHIGH Voltage −1165 −870 mV −55°C to EnsuredHIGH Signal See (1)(2)(3)(4) +125°C forAllInputs VIL InputLOW Voltage −1830 −1475 mV −55°C to EnsuredLOW Signal See (1)(2)(3)(4) +125°C forAllInputs IIL InputLOW Current 0.50 μA −55°C to VEE = −4.2V See (1)(2)(3) +125°C VIN = VIL(Min) IIH InputHighCurrent D 2a–D 2e 250 μA 0°C to See (1)(2)(3) D 1a–D 1e 350 +125°C VEE = −5.7V D 2a–D 2e 350 μA −55°C VIN = VIH (Max) D 1a–D 1e 500 IEE Power SupplyCurrent −75 −25 mA −55°C to InputsOpen See (5)(6)(7) +125°C (1) F100K 300 Seriescoldtemperaturetestingisperformedby temperaturesoaking(toensurejunctiontemperatureequals−55°C),then testingimmediatelywithoutallowingforthejunctiontemperaturetostabilizedue toheatdissipationafterpower-up.Thisprovides“cold start”specswhichcan be considereda worstcase conditionatcoldtemperatures. (2) Screentested100% on each deviceat−55°C, +25°C, and +125°C, Subgroups1,2 3,7,and 8 (3) Sample tested(Method5005,TableI)on each manufacturedlotat−55°C, +25°C, and +125°C, SubgroupsA1,2,3,7,and 8. (4) Ensuredby applyingspecifiedinputconditionand testingVOH /VOL . (5) F100K 300 Seriescoldtemperaturetestingisperformedby temperaturesoaking(toensurejunctiontemperatureequals−55°C),then testingimmediatelywithoutallowingforthejunctiontemperaturetostabilizedue toheatdissipationafterpower-up.Thisprovides“cold start”specswhichcan be considereda worstcase conditionatcoldtemperatures. (6) Screentested100% on each deviceat−55°C, +25°C, and +125°C, Subgroups1,2 3,7,and 8 (7) Sample tested(Method5005,TableI)on each manufacturedlotat−55°C, +25°C, and +125°C, SubgroupsA1,2,3,7,and 8. Copyright© 2009–2013,Texas InstrumentsIncorporated SubmitDocumentationFeedback 3 ProductFolderLinks:100307
SNOS121A –OCTOBER 2009–REVISED APRIL 2013 www.ti.com AC ELECTRICAL CHARACTERISTICS VEE = −4.2Vto−5.7V,VCC = VCCA = GND Symbol Parameter TC = −55°C TC = +25°C TC = +125°C Units Conditions Notes Min Max Min Max Min Max tPHL D 2a–D 2e toO, O tPHL D 1a–D 1e toO, O See Figure3 and tPHL Data toF tTHL 20% to80%, 80% to20% (1) F100K 300 Seriescoldtemperaturetestingisperformedby temperaturesoaking(toensurejunctiontemperatureequals−55°C),then testingimmediatelywithoutallowingforthejunctiontemperaturetostabilizedue toheatdissipationafterpower-up.Thisprovides“cold start”specswhichcan be considereda worstcase conditionatcoldtemperatures. (2) Screentested100% on each deviceat−55°C, +25°C, and +125°C, Subgroups1,2 3,7,and 8 (3) Sample tested(Method5005,TableI)on each manufacturedlotat−55°C, +25°C, and +125°C, SubgroupsA1,2,3,7,and 8. (4) Ensuredby applyingspecifiedinputconditionand testingVOH /VOL . TEST CIRCUITRY VCC ,VCCA = +2V, VEE = −2.5V L1 and L2 = equallength50Ω impedance lines R T = 50Ω terminatorinternaltoscope Decoupling0.1μF fromGND toVCC and VEE Allunused outputsareloadedwith50Ω toGND C L = Fixtureand straycapacitance≤ 3 pF Figure3. AC TestCircuit
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www.ti.com SNOS121A –OCTOBER 2009–REVISED APRIL 2013 SwitchingWaveforms Figure4. PropagationDelay and TransitionTimes Copyright© 2009–2013,Texas InstrumentsIncorporated SubmitDocumentationFeedback 5 ProductFolderLinks:100307
SNOS121A –OCTOBER 2009–REVISED APRIL 2013 www.ti.com
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