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74AHCT138D

3-to-8 line decoder/demultiplexer; inverting

The 74AHC138; 74AHCT138 are high-speed Si-gate CMOS devices and are pin compatible with Low power Schottky TTL (LSTTL). They are specified in compliance with JEDEC standard No. 7A.

The 74AHC138; 74AHCT138 is a 3-to-8 line decoder/demultiplexer. It accepts three binary weighted address inputs (A0, A1 and A2) and, when enabled, provides eight mutually exclusive outputs (Y0 to Y7) that are LOW when selected.

There are three enable inputs: two active LOW (E1 and E2) and one active HIGH (E3). Every output will be HIGH unless E1 and E2 are LOW and E3 is HIGH.

This multiple enable function allows easy parallel expansion of the device to a 1-of-32 (5 lines to 32 lines) decoder with just four 74AHC138; 74AHCT138 devices and one inverter. The 74AHC138; 74AHCT138 can be used as an eight output demultiplexer by using one of the active LOW enable inputs as the data input and the remaining enable inputs as strobes. Unused enable inputs must be permanently tied to their appropriate active HIGH or LOW state.

Orderable parts

Type number Orderable part number Ordering code (12NC) Package Buy from distributors
74AHCT138D 74AHCT138D,118 935262997118 SOT109-1 Order product

Features and benefits

  • Balanced propagation delays

  • All inputs have Schmitt-trigger action

  • Demultiplexing capability

  • Multiple input enable for easy expansion

  • Ideal for memory chip select decoding

  • Inputs accepts voltages higher than VCC

  • For 74AHC138 only: operates with CMOS input levels

  • For 74AHCT138 only: operates with TTL input levels

  • ESD protection:

    • HBM: ANSI/ESDA/JEDEC JS-001 class 2 exceeds 2000 V

    • CDM: ANSI/ESDA/JEDEC JS-002 class C3 exceeds 1000 V

  • Multiple package options

  • Specified from -40 °C to +85 °C and from -40 °C to +125 °C

Parametrics

Type numberProduct statusVCC (V)Logic switching levelsOutput drive capability (mA)tpd (ns)Power dissipation considerationsTamb (°C)Rth(j-a) (K/W)Ψth(j-top) (K/W)Rth(j-c) (K/W)Package name
74AHCT138DProduction4.5 - 5.5TTL± 84.4low-40~125939.752SO16

PCB Symbol, Footprint and 3D Model

Model NameDescription

Package

Type numberOrderable part number, (Ordering code (12NC))StatusMarkingPackagePackage informationReflow-/Wave solderingPacking
74AHCT138D74AHCT138D,118
( 9352 629 97118 )
Active74AHCT138D
SO16
(SOT109-1)
SOT109-1SO-SOJ-REFLOW
SO-SOJ-WAVE
SOT109-1_118

Environmental information

Type numberOrderable part numberChemical contentRoHSRHF-indicator
74AHCT138D74AHCT138D,11874AHCT138D
Quality and reliability disclaimer

Documentation (9)

File nameTitleTypeDate
74AHC_AHCT1383-to-8 line decoder/demultiplexer; invertingData sheet2023-09-04
AN11106Pin FMEA for AHC/AHCT familyApplication note2019-01-09
ahct138ahct138 IBIS modelIBIS model2013-04-07
74AHCT138D_Nexperia_Product_Reliability74AHCT138D Nexperia Product ReliabilityQuality document2023-05-29
SO-SOJ-REFLOWFootprint for reflow solderingReflow soldering2009-10-08
SO-SOJ-WAVEFootprint for wave solderingWave soldering2009-10-08
SOT109-1_118SO16; Reel pack for SMD, 13"; Q1/T1 product orientationPacking information2023-01-17
WAVE_BG-BD-1Wave soldering profileWave soldering2021-09-08
SOT109-1_112SO16; Tube pack; Standard product orientationPacking information2021-09-10

Support

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Models

File nameTitleTypeDate
ahct138ahct138 IBIS modelIBIS model2013-04-07

PCB Symbol, Footprint and 3D Model

Model NameDescription

Ordering, pricing & availability

Type numberOrderable part numberOrdering code (12NC)PackingPacking quantityBuy online
74AHCT138D74AHCT138D,118935262997118SOT109-1_118- Order product

Sample

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Sample orders normally take 2-4 days for delivery.

If you do not have a direct account with Nexperia our network of global and regional distributors is available and equipped to support you with Nexperia samples.

How does it work?

The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.