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74ALVCH16374DGG

2.5 V/3.3 V 16-bit edge-triggered D-type flip-flop; 3-state

The 74ALVCH16374 is a 16-bit edge-triggered D-type flip-flop with bus hold inputs and 3-state outputs. The device can be used as two 8-bit flip-flops or one 16-bit flip-flop. The device features two clocks (1CP and 2CP) and two output enables (1OE and 2OE), each controlling 8-bits. The flip-flops will store the state of their individual D-inputs that meet the set-up and hold time requirements on the LOW-to-HIGH clock (nCP) transition. A HIGH on nOE causes the outputs to assume a high-impedance OFF-state. Operation of the nOE input does not affect the state of the flip-flops.

This device is fully specified for partial power down applications using IOFF. The IOFF circuitry disables the output, preventing the potentially damaging backflow current through the device when it is powered down.

Orderable parts

Type number Orderable part number Ordering code (12NC) Package Buy from distributors
74ALVCH16374DGG 74ALVCH16374DGG:11 935205130118 SOT362-1 Order product

Features and benefits

  • Wide supply voltage range from 1.2 V to 3.6 V

  • CMOS low power dissipation

  • MULTIBYTE™ flow-through standard pin-out architecture

  • Low inductance multiple VCC and GND pins for minimum noise and ground bounce

  • Direct interface with TTL levels

  • All data inputs have bus hold

  • Latch-up performance exceeds 100 mA per JESD 78 Class II.A

  • Output drive capability 50 Ω transmission lines at 85 °C

  • IOFF circuitry provides partial Power-down mode operation

  • Current drive ±24 mA at VCC = 3.0 V

  • Complies with JEDEC standards:
    • JESD8-7 (1.65 V to 1.95 V)

    • JESD8-5 (2.3 V to 2.7 V)

    • JESD8C/JESD36 (2.7 V to 3.6 V)

  • ESD protection:
    • HBM ANSI/ESDA/JEDEC JS-001 Class 2 exceeds 2 kV
    • CDM ANSI/ESDA/JEDEC JS-002 Class C3 exceeds 1 kV
  • 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)fmax (MHz)Power dissipation considerationsTamb (°C)Rth(j-a) (K/W)Ψth(j-top) (K/W)Rth(j-c) (K/W)Package name
74ALVCH16374DGGProduction1.2 - 3.6TTL± 242.3350low-40~85821.835TSSOP48

PCB Symbol, Footprint and 3D Model

Model NameDescription

Package

Type numberOrderable part number, (Ordering code (12NC))StatusMarkingPackagePackage informationReflow-/Wave solderingPacking
74ALVCH16374DGG74ALVCH16374DGG:11
( 9352 051 30118 )
ActiveALVCH16374
TSSOP48
(SOT362-1)
SOT362-1SSOP-TSSOP-VSO-WAVE
SOT362-1_118

Environmental information

Type numberOrderable part numberChemical contentRoHSRHF-indicator
74ALVCH16374DGG74ALVCH16374DGG:1174ALVCH16374DGG
Quality and reliability disclaimer

Documentation (5)

File nameTitleTypeDate
74ALVCH163742.5 V/3.3 V 16-bit edge-triggered D-type flip-flop; 3-stateData sheet2021-11-23
alvch16374alvch16374 IBIS modelIBIS model2013-04-07
74ALVCH16374DGG_Nexperia_Product_Reliability74ALVCH16374DGG Nexperia Product ReliabilityQuality document2023-05-29
SSOP-TSSOP-VSO-WAVEFootprint for wave solderingWave soldering2009-10-08
SOT362-1_118TSSOP48; Reel pack for SMD, 13''; Q1/T1 product orientationPacking information2020-04-21

Support

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Models

File nameTitleTypeDate
alvch16374alvch16374 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
74ALVCH16374DGG74ALVCH16374DGG:11935205130118SOT362-1_118- Order product

Sample

As a Nexperia customer you can order samples via our sales organization or directly via our Online Sample Store: https://extranet.nexperia.com.

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.