Datasheet Texas Instruments SN74AHCT240-Q1 — Ficha de datos

FabricanteTexas Instruments
SerieSN74AHCT240-Q1
Datasheet Texas Instruments SN74AHCT240-Q1

Catálogo Automotriz Buffers / controladores Octal con salidas de 3 estados

Hojas de datos

Octal Buffer/Driver With 3-State Outputs datasheet
PDF, 715 Kb, Revisión: B, Archivo publicado: abr 24, 2008
Extracto del documento

Precios

Estado

CAHCT240IPWRG4Q1SN74AHCT240IPWRQ1
Estado del ciclo de vidaActivo (Recomendado para nuevos diseños)Obsoleto (El fabricante ha interrumpido la producción del dispositivo)
Disponibilidad de muestra del fabricanteNoNo

Embalaje

CAHCT240IPWRG4Q1SN74AHCT240IPWRQ1
N12
Pin2020
Package TypePWPW
Industry STD TermTSSOPTSSOP
JEDEC CodeR-PDSO-GR-PDSO-G
Package QTY2000
CarrierLARGE T&R
Device MarkingAHCT240I
Width (mm)4.44.4
Length (mm)6.56.5
Thickness (mm)11
Pitch (mm).65.65
Max Height (mm)1.21.2
Mechanical DataDescargarDescargar

Paramétricos

Parameters / ModelsCAHCT240IPWRG4Q1
CAHCT240IPWRG4Q1
SN74AHCT240IPWRQ1
SN74AHCT240IPWRQ1
Approx. Price (US$)0.14 | 1ku
Bits8
Bits(#)8
F @ Nom Voltage(Max), Mhz70
F @ Nom Voltage(Max)(Mhz)70
ICC @ Nom Voltage(Max), mA0.04
ICC @ Nom Voltage(Max)(mA)0.04
Input TypeTTL
Operating Temperature Range, C-40 to 85
Operating Temperature Range(C)-40 to 85
Output Drive (IOL/IOH)(Max), mA-8/8
Output Drive (IOL/IOH)(Max)(mA)-8/8
Output TypeCMOS
Package GroupTSSOPTSSOP
Package Size: mm2:W x L, PKG20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP)
Package Size: mm2:W x L (PKG)20TSSOP: 42 mm2: 6.4 x 6.5(TSSOP)
RatingAutomotiveAutomotive
Schmitt TriggerNoNo
Technology FamilyAHCTAHCT
VCC(Max), V5.5
VCC(Max)(V)5.5
VCC(Min), V4.5
VCC(Min)(V)4.5
Voltage(Nom), V5
Voltage(Nom)(V)5
tpd @ Nom Voltage(Max), ns8.4
tpd @ Nom Voltage(Max)(ns)8.4

Plan ecológico

CAHCT240IPWRG4Q1SN74AHCT240IPWRQ1
RoHSObedienteDesobediente
Pb gratisNo

Notas de aplicación

  • Bus-Interface Devices With Output-Damping Resistors Or Reduced-Drive Outputs (Rev. A)
    PDF, 105 Kb, Revisión: A, Archivo publicado: agosto 1, 1997
    The spectrum of bus-interface devices with damping resistors or balanced/light output drive currently offered by various logic vendors is confusing at best. Inconsistencies in naming conventions and methods used for implementation make it difficult to identify the best solution for a given application. This report attempts to clarify the issue by looking at several vendors? approaches and discussi
  • How to Select Little Logic (Rev. A)
    PDF, 1.1 Mb, Revisión: A, Archivo publicado: jul 26, 2016
    TI Little Logic devices are logic-gate devices assembled in a small single- dual- or triple- gate package. Little Logic devices are widely used in portable equipment such as mobile phones MP3 players and notebook computers. Little Logic devices also are used in desktop computers and telecommunications. Little Logic gates are common components for easy PC board routing schematic design and b
  • Migration From 3.3-V To 2.5-V Power Supplies For Logic Devices
    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
  • Texas Instruments Little Logic Application Report
    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
  • Selecting the Right Level Translation Solution (Rev. A)
    PDF, 313 Kb, Revisión: A, Archivo publicado: 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
  • 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
  • CMOS Power Consumption and CPD Calculation (Rev. B)
    PDF, 89 Kb, Revisión: B, Archivo publicado: 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

Linea modelo

Serie: SN74AHCT240-Q1 (2)

Clasificación del fabricante

  • Semiconductors> Logic> Buffer/Driver/Transceiver> Inverting Buffer/Driver