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MC74AC14 - Hex Inverter Schmitt Trigger

Semiconductor Components Industries, LLC, 2015 January, 2015 Rev. 101 Publication Order Number: MC74AC14 /DMC74AC14, MC74 ACT14 Hex Inverter SchmittTriggerHigh Performance Silicon Gate CMOSThe MC74AC14 /74 ACT14 contains six logic inverters whichaccept standard CMOS input signals (TTL levels for MC74 ACT14)and provide standard CMOS output levels. They are capable oftransforming slowly changing input signals into sharply defined,jitter free output signals. In addition, they have a greater noise marginthen conventional MC74AC14 /74 ACT14 has hysteresis between thepositive going and negative going input thresholds (typically V)which is determined internally by transistor ratios and is essentiallyinsensitive to temperature and supply voltage Schmitt Trigger Inpu

MC74AC14, MC74ACT14 www.onsemi.com 2 MAXIMUM RATINGS Symbol Parameter Value Unit VCC DC Supply Voltage 0.5 to 7.0 V VI DC Input Voltage 0.5 VI VCC 0.5 V VO DC Output Voltage (Note 1) 0.5 VO VCC 0.5 V

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Transcription of MC74AC14 - Hex Inverter Schmitt Trigger

1 Semiconductor Components Industries, LLC, 2015 January, 2015 Rev. 101 Publication Order Number: MC74AC14 /DMC74AC14, MC74 ACT14 Hex Inverter SchmittTriggerHigh Performance Silicon Gate CMOSThe MC74AC14 /74 ACT14 contains six logic inverters whichaccept standard CMOS input signals (TTL levels for MC74 ACT14)and provide standard CMOS output levels. They are capable oftransforming slowly changing input signals into sharply defined,jitter free output signals. In addition, they have a greater noise marginthen conventional MC74AC14 /74 ACT14 has hysteresis between thepositive going and negative going input thresholds (typically V)which is determined internally by transistor ratios and is essentiallyinsensitive to temperature and supply voltage Schmitt Trigger Inputs Outputs Source/Sink 24 mA MC74 ACT14 Has TTL Compatible Inputs NLV Prefix for Automotive and Other Applications RequiringUnique Site and Control Change Requirements.

2 AEC Q100 Qualified and PPAP Capable These Devices are Pb Free, Halogen Free/BFR Free and are detailed ordering and shipping information in the packagedimensions section on page 5 of this data INFORMATION1314121110982134567 GNDVCC(Top View)Figure 1. Pinout: 14 Lead PackagesConductorsFUNCTION TABLEI nputAOutputOLHHLMARKINGDIAGRAMSxxx= AC or ACTA= Assembly LocationWL or L = Wafer LotY= YearWW or W = Work WeekG or G= Pb Free PackageTSSOP 14DT SUFFIXCASE 948 Gxxx14 ALYWGG114 SOIC 14D SUFFIXCASE 751A114114xxx14 GAWLYWW114(Note: Microdot may be in either location) MC74AC14 , RATINGSS ymbolParameterValueUnitVCCDC Supply Voltage* to ) input Voltage* v VI v VCC ) Output Voltage(Note 1)* v VO v VCC ) input Diode Current$20mAIOKDC Output Diode Current$50mAIODC Output Sink/Source Current$50mAICCDC Supply Current per Output Pin$50mAIGNDDC Ground Current per Output Pin$50mATSTGS torage Temperature Range*65 to )150 CTLLead temperature, 1 mm from Case for 10 Seconds260 CTJJ unction temperature under Bias)150 CqJAThermal Resistance (Note 2)

3 SOICTSSOP125170 C/WPDP ower Dissipation in Still Air at 85 CSOICTSSOP125170mWMSLM oisture SensitivityLevel 1 FRFlammability RatingOxygen Index: 30% 35%UL 94 V 0 @ inVESDESD Withstand VoltageHuman Body Model (Note 3)Machine Model (Note 4)Charged Device Model (Note 5)> 2000> 200> 1000 VILatch UpLatch Up PerformanceAbove VCC and Below GND at 85 C (Note 6)$100mAStresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionalityshould not be assumed, damage may occur and reliability may be IO absolute maximum rating must be The package thermal impedance is calculated in accordance with JESD51 Tested to EIA/JESD22 A114 Tested to EIA/JESD22 A115 Tested to JESD22 C101 Tested to OPERATING CONDITIONSS ymbolParameterMinTypMaxUnitVCCS upply Voltage , VoutDC input Voltage, Output Voltage (Ref.)

4 To GND)0 VCCVtr, tfInput Rise and Fall Time (Note 1) AC Devices except Schmitt InputsVCC @ V 150 VCC @ V 40 ns/VVCC @ V 25 tr, tfInput Rise and Fall Time (Note 2) ACT Devices except Schmitt InputsVCC @ V 10 ns/VVCC @ V TJJunction Temperature (PDIP) 140 CTAO perating Ambient Temperature Range 402585 CIOHO utput Current High 24mAIOLO utput Current Low 24mAFunctional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyondthe Recommended Operating Ranges limits may affect device Vin from 30% to 70% VCC; see individual Data Sheets for devices that differ from the typical input rise and fall Vin from V to V.

5 See individual Data Sheets for devices that differ from the typical input rise and fall , CHARACTERISTICSS ymbolParameterVCC(V)74AC74 ACUnitConditionsTA = +25 CTA = 40 C to +85 CTypGuaranteed LimitsVOHM inimum High Level Output = 50 *VIN = VIL or 12 24 24 mAVOLM aximum Low Level Output = 50 *VIN = VIL or mAIINM aximum input Leakage = VCC, GNDIOLD Minimum Dynamic Output 75mAVOLD = V 75mAVOHD = V MinICCM aximum Quiescent Supply = VCC or GNDP roduct parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted.

6 Productperformance may not be indicated by the Electrical Characteristics if operated under different conditions.*All outputs loaded; thresholds on input associated with output under test. Maximum test duration ms, one output loaded at a :IIN and ICC @ V are guaranteed to be less than or equal to the respective limit @ V CHARACTERISTICSS ymbolParameterVCC*(V) = +25 C CL = 50 pFTA = 40 C to+85 C CL = 50 pFMinTypMaxMinMaxtPLHP ropagation *Voltage Range V is V V. Voltage Range V is V , CHARACTERISTICS (unless otherwise specified)SymbolParameterVCC(V)74AC74 ACTTest ConditionsMaximum Positive Vt + = Worst Case Negative Vt = Worst Vh(max)Maximum = Worst Vh(min)Minimum = Worst CHARACTERISTICSS ymbolParameterVCC(V)

7 74 ACT74 ACTUnitConditionsTA = +25 CTA = 40 C to +85 CTypGuaranteed LimitsVOHM inimum High Level Output = 50 *VIN = VIL or 24 24 mAVOLM aximum Low Level Output = 50 *VIN = VIL or mAIINM aximum input Leakage = VCC, GNDDICCTA dditional Max. = VCC VIOLD Minimum Dynamic Output 75mAVOLD = V 75mAVOHD = V MinICCM aximum Quiescent Supply = VCC or GNDP roduct parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Productperformance may not be indicated by the Electrical Characteristics if operated under different conditions.

8 *All outputs loaded; thresholds on input associated with output under test. Maximum test duration ms, one output loaded at a CHARACTERISTICSS ymbolParameterVCC*(V) = +25 C CL = 50 pFTA = 40 C to+85 C CL = 50 pFMinTypMaxMinMaxtPLHP ropagation 5tPHLP ropagation 5*Voltage Range V is V TypUnitTest ConditionsCINI nput = VCPDP ower Dissipation Capacitance25pFVCC = VMC74AC14, INFORMATIOND evicePackageShipping MC74AC14 DGSOIC 14(Pb Free)55 Units / RailMC74AC14DR2G2500 / Tape & ReelNLV74AC14DR2G*2500 / Tape & ReelMC74AC14 DTR2 GTSSOP 14(Pb Free)

9 2500 / Tape & ReelMC74 ACT14 DGSOIC 14(Pb Free)55 Units / RailMC74 ACT14DR2G2500 / Tape & ReelMC74 ACT14 DTR2 GTSSOP 14(Pb Free)2500 / Tape & Reel For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel PackagingSpecifications Brochure, BRD8011/D.*NLV Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC Q100 Qualified and , DIMENSIONSSOIC 14 NBCASE 751A 03 ISSUE KNOTES:1. DIMENSIONING AND TOLERANCING PERASME , CONTROLLING DIMENSION: DIMENSION b DOES NOT INCLUDE DAMBARPROTRUSION.

10 ALLOWABLE PROTRUSIONSHALL BE TOTAL IN EXCESS OF ATMAXIMUM MATERIAL DIMENSIONS D AND E DO NOT INCLUDEMOLD MAXIMUM MOLD PROTRUSION ALA3 DETAIL 7 0 7 : MILLIMETERS1 PITCHSOLDERING FOOTPRINT**For additional information on our Pb Free strategy and solderingdetails, please download the ON Semiconductor Soldering andMounting Techniques Reference Manual, , DIMENSIONSTSSOP 14 CASE 948 GISSUE BSCM0 8 0 8 NOTES:1.


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