Datasheet Texas Instruments SN74AHC32Q-Q1 — Ficha de datos

FabricanteTexas Instruments
SerieSN74AHC32Q-Q1
Datasheet Texas Instruments SN74AHC32Q-Q1

Catálogo automotriz Puertas cuádruples positivas de 2 entradas

Hojas de datos

Quadruple 2-Input Positive-OR Gate datasheet
PDF, 808 Kb, Revisión: A, Archivo publicado: abr 29, 2008
Extracto del documento

Precios

Estado

SN74AHC32QDRG4Q1SN74AHC32QDRQ1SN74AHC32QPWRG4Q1SN74AHC32QPWRQ1
Estado del ciclo de vidaActivo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)Activo (Recomendado para nuevos diseños)
Disponibilidad de muestra del fabricanteNo

Embalaje

SN74AHC32QDRG4Q1SN74AHC32QDRQ1SN74AHC32QPWRG4Q1SN74AHC32QPWRQ1
N1234
Pin14141414
Package TypeDDPWPW
Industry STD TermSOICSOICTSSOPTSSOP
JEDEC CodeR-PDSO-GR-PDSO-GR-PDSO-GR-PDSO-G
Package QTY2500250020002000
CarrierLARGE T&RLARGE T&RLARGE T&RLARGE T&R
Device MarkingAHC32QAHC32QHA32QHA32Q
Width (mm)3.913.914.44.4
Length (mm)8.658.6555
Thickness (mm)1.581.5811
Pitch (mm)1.271.27.65.65
Max Height (mm)1.751.751.21.2
Mechanical DataDescargarDescargarDescargarDescargar

Paramétricos

Parameters / ModelsSN74AHC32QDRG4Q1
SN74AHC32QDRG4Q1
SN74AHC32QDRQ1
SN74AHC32QDRQ1
SN74AHC32QPWRG4Q1
SN74AHC32QPWRG4Q1
SN74AHC32QPWRQ1
SN74AHC32QPWRQ1
Bits4444
F @ Nom Voltage(Max), Mhz70707070
ICC @ Nom Voltage(Max), mA0.020.020.020.02
Operating Temperature Range, C-40 to 125-40 to 125-40 to 125-40 to 125
Output Drive (IOL/IOH)(Max), mA50/-5050/-5050/-5050/-50
Package GroupSOICSOICTSSOPTSSOP
Package Size: mm2:W x L, PKG14SOIC: 52 mm2: 6 x 8.65(SOIC)14SOIC: 52 mm2: 6 x 8.65(SOIC)14TSSOP: 32 mm2: 6.4 x 5(TSSOP)14TSSOP: 32 mm2: 6.4 x 5(TSSOP)
RatingAutomotiveAutomotiveAutomotiveAutomotive
Schmitt TriggerNoNoNoNo
Technology FamilyAHCAHCAHCAHC
VCC(Max), V5.55.55.55.5
VCC(Min), V2222
Voltage(Nom), V3.3,53.3,53.3,53.3,5
tpd @ Nom Voltage(Max), ns13,8.513,8.513,8.513,8.5

Plan ecológico

SN74AHC32QDRG4Q1SN74AHC32QDRQ1SN74AHC32QPWRG4Q1SN74AHC32QPWRQ1
RoHSObedienteObedienteObedienteObediente

Notas de aplicación

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    PDF, 115 Kb, Archivo publicado: dic 1, 1997
    This application report explores the possibilities for migrating to 3.3-V and 2.5-V power supplies and discusses the implications.Customers are successfully using a wide range of low-voltage 3.3-V logic devices. These devices are within Texas Instruments (TI) advanced low-voltage CMOS (ALVC) crossbar technology (CBT) crossbar technology with integrated diode (CBTD) low-voltage crossbar techn
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    PDF, 359 Kb, Archivo publicado: nov 1, 2002
    Portable and consumer electronic systems? needs present greater challenges today than ever before. Engineers strive to design smaller faster lower-cost systems to meet the market demand. Consequently the semiconductor industry faces a growing need to increase operating speed minimize power consumption and reduce packaging size. Texas Instruments manufactures a variety of Little Logic semicond
  • Benefits & Issues of Migrating 5-V and 3.3-V Logic to Lower-Voltage Supplies (Rev. A)
    PDF, 154 Kb, Revisión: A, Archivo publicado: sept 8, 1999
    In the last few years the trend toward reducing supply voltage (VCC) has continued as reflected in an additional specification of 2.5-V VCC for the AVC ALVT ALVC LVC LV and the CBTLV families.In this application report the different logic levels at VCC of 5 V 3.3 V 2.5 V and 1.8 V are compared. Within the report the possibilities for migration from 5-V logic and 3.3-V logic families
  • Advanced High-Speed CMOS (AHC) Logic Family (Rev. C)
    PDF, 102 Kb, Revisión: C, Archivo publicado: dic 2, 2002
    The Texas Instruments (TI) advanced high-speed CMOS (AHC) logic family provides a natural migration for high-speed CMOS (HCMOS) users who need more speed for low-power and low-drive applications. Unlike many other advanced logic families AHC does not have the drawbacks that come with higher speed e.g. higher signal noise and power consumption. The AHC logic family consists of gates medium-sca

Linea modelo

Clasificación del fabricante

  • Semiconductors> Logic> Gate> OR Gate