Datasheet Texas Instruments 74AC11032

ManufacturerTexas Instruments
Series74AC11032
Datasheet Texas Instruments 74AC11032

Quadruple 2-Input Positive-OR Gates

Datasheets

Quadruple 2-Input Positive-OR Gate datasheet
PDF, 1.4 Mb, Revision: C, File published: Apr 1, 1996
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Prices

Status

74AC11032D74AC11032DBLE74AC11032DBR74AC11032DE474AC11032DRE474AC11032N74AC11032NSR
Lifecycle StatusActive (Recommended for new designs)Obsolete (Manufacturer has discontinued the production of the device)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 AvailabilityNoNoNoNoNoNoNo

Packaging

74AC11032D74AC11032DBLE74AC11032DBR74AC11032DE474AC11032DRE474AC11032N74AC11032NSR
N1234567
Pin16161616161616
Package TypeDDBDBDDNNS
Industry STD TermSOICSSOPSSOPSOICSOICPDIPSOP
JEDEC CodeR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-GR-PDIP-TR-PDSO-G
Package QTY40200040252000
CarrierTUBELARGE T&RTUBETUBELARGE T&R
Device MarkingAC11032AE032AC1103274AC11032NAC11032
Width (mm)3.915.35.33.913.916.355.3
Length (mm)9.96.26.29.99.919.310.3
Thickness (mm)1.581.951.951.581.583.91.95
Pitch (mm)1.27.65.651.271.272.541.27
Max Height (mm)1.75221.751.755.082
Mechanical DataDownloadDownloadDownloadDownloadDownloadDownloadDownload

Parametrics

Parameters / Models74AC11032D
74AC11032D
74AC11032DBLE
74AC11032DBLE
74AC11032DBR
74AC11032DBR
74AC11032DE4
74AC11032DE4
74AC11032DRE4
74AC11032DRE4
74AC11032N
74AC11032N
74AC11032NSR
74AC11032NSR
Approx. Price (US$)0.94 | 1ku0.94 | 1ku
Bits44444
Bits(#)44
F @ Nom Voltage(Max), Mhz100100100100100
F @ Nom Voltage(Max)(Mhz)100100
ICC @ Nom Voltage(Max), mA0.040.040.040.040.04
ICC @ Nom Voltage(Max)(mA)0.040.04
Input TypeCMOS
Operating Temperature Range, C-40 to 85-40 to 85-40 to 85-40 to 85-40 to 85
Operating Temperature Range(C)-40 to 85-40 to 85
Output Drive (IOL/IOH)(Max), mA24/-2424/-2424/-2424/-2424/-24
Output Drive (IOL/IOH)(Max)(mA)24/-2424/-24
Output TypeCMOS
Package GroupSOICSSOPSSOPSOICSOICPDIPSO
Package Size: mm2:W x L, PKG16SOIC: 59 mm2: 6 x 9.9(SOIC)16SSOP: 48 mm2: 7.8 x 6.2(SSOP)16SOIC: 59 mm2: 6 x 9.9(SOIC)See datasheet (PDIP)16SO: 80 mm2: 7.8 x 10.2(SO)
Package Size: mm2:W x L (PKG)See datasheet (PDIP)See datasheet (PDIP)
RatingCatalogCatalogCatalogCatalogCatalogCatalogCatalog
Schmitt TriggerNoNoNoNoNoNoNo
Technology FamilyACACACACACACAC
VCC(Max), V5.55.55.55.55.5
VCC(Max)(V)5.55.5
VCC(Min), V33333
VCC(Min)(V)33
Voltage(Nom), V3.3,53.3,53.3,53.3,53.3,5
Voltage(Nom)(V)3.3
5
3.3
5
tpd @ Nom Voltage(Max), ns9.7,6.79.7,6.79.7,6.79.7,6.79.7,6.7
tpd @ Nom Voltage(Max)(ns)9.7
6.7
9.7
6.7

Eco Plan

74AC11032D74AC11032DBLE74AC11032DBR74AC11032DE474AC11032DRE474AC11032N74AC11032NSR
RoHSCompliantNot CompliantCompliantCompliantNot CompliantCompliantCompliant
Pb FreeNoYesNo

Application Notes

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    PDF, 150 Kb, File published: Oct 1, 1996
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    PDF, 614 Kb, Revision: C, File published: Dec 2, 2015
  • Semiconductor Packing Material Electrostatic Discharge (ESD) Protection
    PDF, 337 Kb, File published: Jul 8, 2004
    Forty-eight-pin TSSOP components that were packaged using Texas Instruments (TI) standard packing methodology were subjected to electrical discharges between 0.5 and 20 kV as generated by an IEC ESD simulator to determine the level of ISD protection provided by the packing materials. The testing included trays tape and reel and magazines. Additional units were subjected to the same discharge
  • TI IBIS File Creation Validation and Distribution Processes
    PDF, 380 Kb, File published: Aug 29, 2002
    The Input/Output Buffer Information Specification (IBIS) also known as ANSI/EIA-656 has become widely accepted among electronic design automation (EDA) vendors semiconductor vendors and system designers as the format for digital electrical interface data. Because IBIS models do not reveal proprietary internal processes or architectural information semiconductor vendors? support for IBIS con
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    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
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    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
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    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
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    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
  • Shelf-Life Evaluation of Lead-Free Component Finishes
    PDF, 1.3 Mb, File published: May 24, 2004
    The integrated circuit (IC) industry is converting to lead (Pb)-free termination finishes for leadframe-based packages. IC component users need to know the maximum length of time that components can be stored prior to being soldered. This study predicts shelf life of the primary Pb-free finishes being proposed by the industry. Components were exposed to a controlled environment, with known aging a

Model Line

Manufacturer's Classification

  • Semiconductors> Logic> Gate> OR Gate
EMS supplier