Datasheet Texas Instruments SN54HC74

ManufacturerTexas Instruments
SeriesSN54HC74
Datasheet Texas Instruments SN54HC74

Dual D-type Positive-Edge-Triggered Flip-Flops With Clear And Preset

Datasheets

SNx4HC74 Dual D-Type Positive-Edge-Triggered Flip-Flops With Clear and Preset datasheet
PDF, 1.3 Mb, Revision: E, File published: Dec 31, 2015
Extract from the document

Prices

Status

84056012A8405601CA8405601DAJM38510/65302B2AJM38510/65302BCAJM38510/65302BDAM38510/65302B2AM38510/65302BCAM38510/65302BDASN54HC74JSNJ54HC74FKSNJ54HC74JSNJ54HC74W
Lifecycle StatusActive (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)
Manufacture's Sample AvailabilityNoNoNoNoNoNoNoNoNoNoNoNoNo

Packaging

84056012A8405601CA8405601DAJM38510/65302B2AJM38510/65302BCAJM38510/65302BDAM38510/65302B2AM38510/65302BCAM38510/65302BDASN54HC74JSNJ54HC74FKSNJ54HC74JSNJ54HC74W
N12345678910111213
Pin20141420141420141414201414
Package TypeFKJWFKJWFKJWJFKJW
Industry STD TermLCCCCDIPCFPLCCCCDIPCFPLCCCCDIPCFPCDIPLCCCCDIPCFP
JEDEC CodeS-CQCC-NR-GDIP-TR-GDFP-FS-CQCC-NR-GDIP-TR-GDFP-FS-CQCC-NR-GDIP-TR-GDFP-FR-GDIP-TS-CQCC-NR-GDIP-TR-GDFP-F
Package QTY1111111111111
CarrierTUBETUBETUBETUBETUBETUBETUBETUBETUBETUBETUBETUBETUBE
Device MarkingSNJ54HCSNJ54HC74JSNJ54HC74W65302B2A65302BCA65302BDA65302B2A65302BCAJM38510/SN54HC74JSNJ54HC8405601CASNJ54HC74W
Width (mm)8.896.675.978.896.675.978.896.675.976.678.896.675.97
Length (mm)8.8919.569.218.8919.569.218.8919.569.2119.568.8919.569.21
Thickness (mm)1.834.571.591.834.571.591.834.571.594.571.834.571.59
Pitch (mm)1.272.541.271.272.541.271.272.541.272.541.272.541.27
Max Height (mm)2.035.082.032.035.082.032.035.082.035.082.035.082.03
Mechanical DataDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownloadDownload

Parametrics

Parameters / Models84056012A
84056012A
8405601CA
8405601CA
8405601DA
8405601DA
JM38510/65302B2A
JM38510/65302B2A
JM38510/65302BCA
JM38510/65302BCA
JM38510/65302BDA
JM38510/65302BDA
M38510/65302B2A
M38510/65302B2A
M38510/65302BCA
M38510/65302BCA
M38510/65302BDA
M38510/65302BDA
SN54HC74J
SN54HC74J
SNJ54HC74FK
SNJ54HC74FK
SNJ54HC74J
SNJ54HC74J
SNJ54HC74W
SNJ54HC74W
3-State OutputNoNoNoNoNoNoNoNoNoNoNoNoNo
Bits2222222222222
F @ Nom Voltage(Max), Mhz28282828282828282828282828
ICC @ Nom Voltage(Max), mA0.040.040.040.040.040.040.040.040.040.040.040.040.04
Input TypeCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOS
Operating Temperature Range, C-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125-55 to 125
Output Drive (IOL/IOH)(Max), mA5.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.25.2/-5.2
Output TypeCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOSCMOS
Package GroupLCCCCDIPCFPLCCCCDIPCFPLCCCCDIPCFPCDIPLCCCCDIPCFP
Package Size: mm2:W x L, PKG20LCCC: 79 mm2: 8.89 x 8.89(LCCC)See datasheet (CDIP)See datasheet (CFP)20LCCC: 79 mm2: 8.89 x 8.89(LCCC)See datasheet (CDIP)See datasheet (CFP)20LCCC: 79 mm2: 8.89 x 8.89(LCCC)See datasheet (CDIP)See datasheet (CFP)See datasheet (CDIP)20LCCC: 79 mm2: 8.89 x 8.89(LCCC)See datasheet (CDIP)See datasheet (CFP)
RatingMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitaryMilitary
Technology FamilyHCHCHCHCHCHCHCHCHCHCHCHCHC
VCC(Max), V6666666666666
VCC(Min), V2222222222222
tpd @ Nom Voltage(Max), ns37373737373737373737373737

Eco Plan

84056012A8405601CA8405601DAJM38510/65302B2AJM38510/65302BCAJM38510/65302BDAM38510/65302B2AM38510/65302BCAM38510/65302BDASN54HC74JSNJ54HC74FKSNJ54HC74JSNJ54HC74W
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Application Notes

  • CMOS Power Consumption and CPD Calculation (Rev. B)
    PDF, 89 Kb, Revision: B, File published: Jun 1, 1997
    Reduction of power consumption makes a device more reliable. The need for devices that consume a minimum amount of power was a major driving force behind the development of CMOS technologies. As a result CMOS devices are best known for low power consumption. However for minimizing the power requirements of a board or a system simply knowing that CMOS devices may use less power than equivale
  • Input and Output Characteristics of Digital Integrated Circuits
    PDF, 1.7 Mb, File published: Oct 1, 1996
    This report contains a comprehensive collection of the input and output characteristic curves of typical integrated circuits from various logic families. These curves go beyond the information given in data sheets by providing additional details regarding the characteristics of the components. This knowledge is particularly useful when for example a decision must be made as to which circuit shou
  • Selecting the Right Texas Instruments Signal Switch
    PDF, 769 Kb, File published: Sep 7, 2001
    Texas Instruments offers a wide variety of electronic switches (digital analog bilateral bilateral analog) in a variety of families including CBT CBTLV HC LV and LVC. Depending on the application the right solution may be an analog switch that passes digital signals or vice versa. This application report summarizes the various switching technologies and provides considerations for choosi
  • Power-Up Behavior of Clocked Devices (Rev. A)
    PDF, 34 Kb, Revision: A, File published: Feb 6, 2015
  • Designing With Logic (Rev. C)
    PDF, 186 Kb, Revision: C, File published: Jun 1, 1997
    Data sheets which usually give information on device behavior only under recommended operating conditions may only partially answer engineering questions that arise during the development of systems using logic devices. However information is frequently needed regarding the behavior of the device outside the conditions in the data sheet. Such questions might be:?How does a bus driver behave w
  • Using High Speed CMOS and Advanced CMOS in Systems With Multiple Vcc
    PDF, 43 Kb, File published: Apr 1, 1996
    Though low power consumption is a feature of CMOS devices sometimes this feature does not meet a designer?s system power supply constraints. Therefore a partial system power down or multiple Vcc supplies are used to meet the needs of the system. This document shows electrostatic discharge protection circuits. It also provides circuit and bus driver examples of partial system power down and curren
  • SN54/74HCT CMOS Logic Family Applications and Restrictions
    PDF, 102 Kb, File published: May 1, 1996
    The TI SN54/74HCT family of CMOS devices is a subgroup of the SN74HC series with the HCT circuitry modified to meet the interfacing requirements of TTL outputs to high-speed CMOS inputs. The HCT devices can be driven by the TTL circuits directly without additional components. This document describes the TTL/HC interface the operating voltages circuit noise and power consumption. A Bergeron anal

Model Line

Manufacturer's Classification

  • Semiconductors> Space & High Reliability> Logic Products> Flip-Flop/Latch/Registers