Datasheet Texas Instruments SN74AVC16373

ManufacturerTexas Instruments
SeriesSN74AVC16373
Datasheet Texas Instruments SN74AVC16373

16-Bit Transparent D-Type Latch With 3-State Outputs

Datasheets

16-Bit Transparent D-Type Latch With 3-State Outputs datasheet
PDF, 873 Kb, Revision: H, File published: Sep 12, 2008
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Prices

Status

74AVC16373DGGRG4SN74AVC16373DGGRSN74AVC16373DGVRSN74AVC16373ZQLR
Lifecycle StatusActive (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)Active (Recommended for new designs)
Manufacture's Sample AvailabilityYesYesYesYes

Packaging

74AVC16373DGGRG4SN74AVC16373DGGRSN74AVC16373DGVRSN74AVC16373ZQLR
N1234
Pin48484856
Package TypeDGGDGGDGVZQL
Industry STD TermTSSOPTSSOPTVSOPBGA MICROSTAR JUNIOR
JEDEC CodeR-PDSO-GR-PDSO-GR-PDSO-GR-PBGA-N
Package QTY2000200020001000
CarrierLARGE T&RLARGE T&RLARGE T&RLARGE T&R
Device MarkingAVC16373AVC16373CVA373CVA373
Width (mm)6.16.14.44.5
Length (mm)12.512.59.77
Thickness (mm)1.151.151.05.75
Pitch (mm).5.5.4.65
Max Height (mm)1.21.21.21
Mechanical DataDownloadDownloadDownloadDownload

Parametrics

Parameters / Models74AVC16373DGGRG4
74AVC16373DGGRG4
SN74AVC16373DGGR
SN74AVC16373DGGR
SN74AVC16373DGVR
SN74AVC16373DGVR
SN74AVC16373ZQLR
SN74AVC16373ZQLR
3-State OutputYesYesYesYes
Bits16161616
F @ Nom Voltage(Max), Mhz200200200200
ICC @ Nom Voltage(Max), mA0.040.040.040.04
Operating Temperature Range, C-40 to 85-40 to 85-40 to 85-40 to 85
Output Drive (IOL/IOH)(Max), mA12/-1212/-1212/-1212/-12
Package GroupTSSOPTSSOPTVSOPBGA MICROSTAR JUNIOR
Package Size: mm2:W x L, PKG48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48TSSOP: 101 mm2: 8.1 x 12.5(TSSOP)48TVSOP: 62 mm2: 6.4 x 9.7(TVSOP)56BGA MICROSTAR JUNIOR: 32 mm2: 4.5 x 7(BGA MICROSTAR JUNIOR)
RatingCatalogCatalogCatalogCatalog
Schmitt TriggerNoNoNoNo
Technology FamilyAVCAVCAVCAVC
VCC(Max), V3.63.63.63.6
VCC(Min), V1.41.41.41.4
Voltage(Nom), V1.2,1.5,1.8,2.5,3.31.2,1.5,1.8,2.5,3.31.2,1.5,1.8,2.5,3.31.2,1.5,1.8,2.5,3.3
tpd @ Nom Voltage(Max), ns5.8,6.8,5.7,3.3,2.85.8,6.8,5.7,3.3,2.85.8,6.8,5.7,3.3,2.85.8,6.8,5.7,3.3,2.8

Eco Plan

74AVC16373DGGRG4SN74AVC16373DGGRSN74AVC16373DGVRSN74AVC16373ZQLR
RoHSCompliantCompliantCompliantCompliant

Application Notes

  • Dynamic Output Control (DOC) Circuitry Technology And Applications (Rev. B)
    PDF, 126 Kb, Revision: B, File published: Jul 7, 1999
    Texas Instruments (TI[TM]) next-generation logic is called the Advanced Very-low-voltage CMOS (AVC) family. The AVCfamily features TI?s Dynamic Output Control (DOC[TM]) circuit (patent pending). DOC circuitry automatically lowers the outputimpedance of the circuit at the beginning of a signal transition, providing enough current to achieve high signaling speeds, thensubsequently raises the i
  • AVC Logic Family Technology and Applications (Rev. A)
    PDF, 148 Kb, Revision: A, File published: Aug 26, 1998
    Texas Instruments (TI?) announces the industry?s first logic family to achieve maximum propagation delays of less than 2 ns at 2.5 V. TI?s next-generation logic is the Advanced Very-low-voltage CMOS (AVC) family. Although optimized for 2.5-V systems, AVC logic supports mixed-voltage systems because it is compatible with 3.3-V and 1.8-V devices. The AVC family features TI?s Dynamic Output Control (
  • Voltage Translation Between 3.3-V, 2.5-V, 1.8-V, and 1.5-V Logic Standards (Rev. B)
    PDF, 390 Kb, Revision: B, File published: Apr 30, 2015
  • 16-Bit Widebus Logic Families in 56-Ball 0.65-mm Pitch Very Thin Fine-Pitch BGA (Rev. B)
    PDF, 895 Kb, Revision: B, File published: May 22, 2002
    TI?s 56-ball MicroStar Jr.E package registered under JEDEC MO-225 has demonstrated through modeling and experimentation that it is an optimal solution for reducing inductance and capacitance improving thermal performance and minimizing board area usage in integrated bus functions. Multiple functions released in the 56-ball MicroStar Jr.E package have superior performance characteristics compa
  • Selecting the Right Level Translation Solution (Rev. A)
    PDF, 313 Kb, Revision: A, File published: Jun 22, 2004
    Supply voltages continue to migrate to lower nodes to support today's low-power high-performance applications. While some devices are capable of running at lower supply nodes others might not have this capability. To haveswitching compatibility between these devices the output of each driver must be compliant with the input of the receiver that it is driving. There are several level-translati
  • Power-Up Behavior of Clocked Devices (Rev. A)
    PDF, 34 Kb, Revision: A, File published: Feb 6, 2015

Model Line

Manufacturer's Classification

  • Semiconductors> Logic> Flip-Flop/Latch/Register> D-Type Latch