Transcription of MC74VHC1G32 - Single 2-Input OR Gate
1 Semiconductor Components Industries, LLC, 2011 November, 2018 Rev. 211 Publication Order Number:MC74 VHC1G32/DMC74 VHC1G32,MC74 VHC1GT32 Single 2-Input OR GateThe MC74 VHC1G32 / MC74 VHC1GT32 is a Single 2 input ORGate in tiny footprint packages. The MC74 VHC1G32 hasCMOS level input thresholds while the MC74 VHC1GT32 hasTTL level input structures provide protection when voltages up to Vare applied, regardless of the supply voltage. This allows the device tobe used to interface 5 V circuits to 3 V circuits. The output structuresalso provide protection when VCC = 0 V and when the output voltageexceeds VCC. These input and output structures help prevent devicedestruction caused by supply voltage input /output voltage mismatch,battery backup, hot insertion, Designed for V to V VCC Operation ns tPD at 5 V (typ) Inputs/Outputs Over Voltage Tolerant up to V IOFF Supports Partial Power Down Protection Source/Sink 8 mA at V Available in SC 88A, SC 74A, TSOP 5, SOT 553, SOT 953 andUDFN6 Packages Chip Complexity < 100 FETs NLV Prefix for Automotive and Other Applications RequiringUnique Site and Control Change Requirements; AEC Q100 Qualified and PPAP Capable These Devices are Pb Free, Halogen Free/BFR Free and are RoHSCompliantFigure 1.
2 Logic SymbolOUT Y 1IN BIN ASee detailed ordering, marking and shipping information in thepackage dimensions section on page 7 of this data 88A DF SUFFIXCASE 419 ASOT 553XV5 SUFFIXCASE 463 BXX MGGXX= Specific Device CodeM= Date Code*G= Pb Free PackageXX MGG15XX MGGTSOP 5DT SUFFIXCASE 48315(Note: Microdot may be in either location)*Date Code orientation and/or position mayvary depending upon manufacturing x 517 BXX M1 SOT 953P5 SUFFIXCASE 527 AEX M1 XXX MGGSC 74 ADBV SUFFIXCASE x 517AQ1 MARKINGDIAGRAMSMC74 VHC1G32, 2. Pinout (Top View)VCCBAYGND12345 (SC 88A/SOT 553/TSOP 5/ SC 74A)VCCBAYGND12354 SOT 953 VCCBAYGND123546 NCUDFN6 PIN ASSIGNMENT(SC 88A/SOT 553/ TSOP 5/SC 74A)Pin12345 FunctionBAGNDYVCCPIN ASSIGNMENT (SOT 953)Pin12345 FunctionAGNDBYVCCPIN ASSIGNMENT (UDFN)Pin12345 FunctionBAGNDYNC6 VCCI nputFUNCTION TABLEBLHLO utputYLHHALLHHHHMC74 VHC1G32, RATINGSS ymbolCharacteristicsValueUnitVCCDC Supply VoltageTSOP 5, SC 88A (NLV)SC 74A, SC 88A, UDFN6, SOT 553, SOT 953 to + to + input VoltageTSOP 5, SC 88A (NLV)SC 74A, SC 88A, UDFN6, SOT 553, SOT 953 to + to + Output VoltageActive Mode (High or Low State)TSOP 5, SC 88A (NLV)Tri State Mode (Note 1)
3 Power Down Mode (VCC = 0 V) to VCC + to + to + Output VoltageActive Mode (High or Low State)SC 74A, SC 88A, UDFN6, SOT 553, SOT 953 Tri State Mode (Note 1)Power Down Mode (VCC = 0 V) to VCC + to + to + input Diode CurrentVIN < GND 20mAIOKDC Output Diode CurrentVOUT < GND 20mAIOUTDC Output Source/Sink Current or IGNDDC Supply Current per Supply Pin or Ground Pin 25mATSTGS torage Temperature Range 65 to +150 CTLLead Temperature, 1 mm from Case for 10 secs260 CTJJ unction Temperature Under Bias+150 CqJAThermal Resistance (Note 2)SC 88 ASC 74 ATSOP 5 SOT 553 SOT 953 UDFN6659555555562560382 C/WPDP ower Dissipation in Still AirSC 88 ASC 74 ATSOP 5 SOT 553 SOT 953 UDFN6190225225222223327mWMSLM oisture SensitivityLevel 1 FRFlammability RatingOxygen Index: 28 to 34UL 94 V 0 @ in VESDESD Withstand Voltage (Note 3)Human Body ModelCharged Device Model20001000 VILatchupLatchup Performance (Note 4)$100mAStresses exceeding those listed in the Maximum Ratings table may damage the device.
4 If any of these limits are exceeded, device functionalityshould not be assumed, damage may occur and reliability may be Applicable to devices with outputs that may be tri Measured with minimum pad spacing on an FR4 board, using 10mm by 1inch, 2 ounce copper trace no air HBM tested to ANSI/ESDA/JEDEC JS 001 2017. CDM tested to EIA/JESD22 C101 F. JEDEC recommends that ESD qualification toEIA/JESD22 A115 A (Machine Model) be discontinued per Tested to EIA/JESD78 Class , OPERATING CONDITIONSS ymbolCharacteristicsMinMaxUnitVCCP ositive DC Supply input Output VoltageTSOP 5, SC 88A (NLV)0 VCCVDC Output VoltageSC 74A, SC 88A, UDFN6, SOT 553, SOT 953 Active Mode (High or Low State)Tri State Mode (Note 1)Power Down Mode (VCC = 0 V) Temperature Range 55+125 Ctr , tfInput Rise and Fall TimeTSOP 5, SC 88A (NLV)
5 VCC = V to VVCC = V to V0010020ns/VInput Rise and Fall TimeSC 74A, SC 88A, UDFN6, SOT 553, SOT 953 VCC = V to VVCC = V to VVCC = V to VVCC = V to V00002020105 Functional 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 ELECTRICAL CHARACTERISTICS (MC74 VHC1G32)SymbolParameterTest ConditionsVCC(V)TA = 25 C 40 C TA 85 C 55 C TA 125 CUnitMinTypMaxMinMaxMinMaxVIHHigh Level Level Level Output VoltageVIN = VIH or VILIOH = 50 mAIOH = 50 mAIOH = 50 mAIOH = 4 mAIOH = 8 Level Output VoltageVIN = VIH or VILIOL = 50 mAIOL = 50 mAIOL = 50 mAIOL = 4 mAIOL = 8 Leakage CurrentVIN = V * $ Off Leakage CurrentVIN = V or VOUT = SupplyCurrentVIN = VCC *Guaranteed by , ELECTRICAL CHARACTERISTICS (MC74 VHC1GT32)SymbolParameterTest ConditionsVCC(V)
6 TA = 25 C 40 C TA 85 C 55 C TA 125 CUnitMinTypMaxMinMaxMinMaxVIHHigh Level Level Level Output VoltageVIN = VIH or VILIOH = 50 mAIOH = 50 mAIOH = 50 mAIOH = 4 mAIOH = 8 Level Output VoltageVIN = VIH or VILIOL = 50 mAIOL = 50 mAIOL = 50 mAIOL = 4 mAIOL = 8 Leakage Cur-rentVIN = V * $ Off Leakage CurrentVIN = V or VOUT = SupplyCurrentVIN = VCC in Quies-cent Supply Currentper input PinOne input : VIN= V; OtherInput at VCC *Guaranteed by ELECTRICAL CHARACTERISTICS ( input tr = tf = ns)SymbolParameterConditionsVCC (V)TA = 25 C 40 C TA 85 C 55 C TA 125 CUnitMinTypMaxMinMaxMinMaxtPLH,tPHLP ropagation Delay,A to Y(Figures 3 and 4)CL = 15 to = 50 = 15 to = 50 CapacitanceOutput Dissipation Capacitance (Note 5)Typical @ 25 C, VCC = CPD is defined as the value of the internal equivalent capacitance which is calculated from the operating current consumption without operating current can be obtained by the equation: ICC(OPR) = CPD VCC fin + ICC.
7 CPD is used to determine the no load dynamicpower consumption; PD = CPD VCC2 fin + ICC , 3. Test CircuitCL includes probe and jig capacitanceRT is ZOUT of pulse generator (typically 50 W)f = 1 MHzCL*RLOUTPUTRTVCCDUTGNDOPENTestSwitchP ositionCL, pFRL, WtPLH / tPHLOpenSee AC Characteristics TableXtPLZ / tPZLVCC1 ktPHZ / tPZHGND1 kX = Don t Caretr = 3 nstPZHtPHZtPZLtPLZVmoVmoVmiFigure 4. Switching Waveforms90%10%90%10%INPUTOUTPUTOUTPUT~0 VINPUTOUTPUTOUTPUTtf = 3 nsVCCGNDVOHVOLVOHVOLVmoVmoVmitPHLtPLHtPL HtPHLVmoVmoVmiVmiVCCGNDVOLVOHVOH VYVOL + VY~VCCVCC, VVmi, VVmo, VVY, VtPLH, tPHLtPZL, tPLZ, tPZH, to (VOH VOL)/2 to (VOH VOL)/2 , INFORMATIOND evicePackagesSpecific Device CodePin 1 Orientation(See below)
8 Shipping MC74 VHC1G32 DFT1 GSC 88AV4Q23000 / Tape & ReelMC74 VHC1G32 DFT2 GSC 88AV4Q43000 / Tape & ReelNLVVHC1G32 DFT1G*SC 88AV4Q23000 / Tape & ReelNLVVHC1G32 DFT2G*SC 88AV4Q43000 / Tape & ReelM74 VHC1GT32 DFT1 GSC 88 AVNQ23000 / Tape & ReelM74 VHC1GT32 DFT2 GSC 88 AVNQ43000 / Tape & ReelNLVVHC1GT32 DFT2G*SC 88 AVNQ43000 / Tape & ReelNLVVHC1GT32 DFT1G*SC 88 AVNQ23000 / Tape & ReelMC74 VHC1G32 DBVT1G(In Development)SC 74 ATBDQ43000 / Tape & ReelMC74 VHC1GT32 DBVT1G(In Development)SC 74 ATBDQ43000 / Tape & ReelMC74 VHC1G32 DTT1 GTSOP 5V4Q43000 / Tape & ReelNLVVHC1G32 DTT1G*TSOP 5V4Q43000 / Tape & ReelNLV74 VHC1GT32 DTT1G*TSOP 5 VNRQ43000 / Tape & ReelM74 VHC1GT32 DTT1G*TSOP 5 VNQ43000 / Tape & ReelMC74 VHC1G32XV5T2G(In Development)SOT 553 TBDQ43000 / Tape & ReelMC74 VHC1GT32XV5T2G(In Development)SOT 553 TBDQ43000 / Tape & ReelMC74 VHC1G32P5T5G(In Development)SOT 953 TBDQ24000 / Tape & ReelMC74 VHC1GT32P5T5G(In Development)SOT 953 TBDQ24000 / Tape & ReelMC74 VHC1G32MU1 TCG(In Development)UDFN6, x , / Tape & ReelMC74 VHC1GT32MU1 TCG(In Development)UDFN6, x , / Tape & ReelMC74 VHC1G32MU3 TCG(In Development)
9 UDFN6, x , / Tape & ReelMC74 VHC1GT32MU3 TCG(In Development)UDFN6, x , / 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 1 Orientation in Tape and ReelMC74 VHC1G32, DIMENSIONSNOTES:1. DIMENSIONING AND TOLERANCINGPER ANSI , CONTROLLING DIMENSION: 419A 01 OBSOLETE. NEW STANDARD419A DIMENSIONS A AND B DO NOT INCLUDEMOLD FLASH, PROTRUSIONS, OR ( )MM12 345 AGSD 5 PLHCNJK B SC 88A (SC 70 5/SOT 353)CASE 419A 02 ISSUE L mminches SCALE 20 FOOTPRINT**For additional information on our Pb Free strategy and solderingdetails, please download the ON Semiconductor Soldering andMounting Techniques Reference Manual, , DIMENSIONSSC 74 ACASE 318 BQISSUE B*For additional information on our Pb Free strategy and solderingdetails, please download the ON Semiconductor Soldering andMounting Techniques Reference Manual, FOOTPRINT*NOTES:1.
10 DIMENSIONING AND TOLERANCING PER , CONTROLLING DIMENSION: MAXIMUM LEAD THICKNESS INCLUDES LEAD FINISHTHICKNESS. MINIMUM LEAD THICKNESS IS THEMINIMUM THICKNESS OF BASE DIMENSIONS A AND B DO NOT INCLUDE MOLDFLASH, PROTRUSIONS, OR GATE BURRS. MOLDFLASH, PROTRUSIONS, OR GATE BURRS SHALL NOTEXCEED PER 10 ATOP VIEWSIDE VIEWABEND : AMC74 VHC1G32, DIMENSIONSTSOP 5 CASE 483 02 ISSUE mminches SCALE 10 *For additional information on our Pb Free strategy and solderingdetails, please download the ON Semiconductor Soldering andMounting Techniques Reference Manual, FOOTPRINT*NOTES:1. DIMENSIONING AND TOLERANCING PER , CONTROLLING DIMENSION: MAXIMUM LEAD THICKNESS INCLUDES LEAD FINISHTHI