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74LVT162244MTDX
Integrated Circuits (ICs)

74VCX162373MTDX

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ON Semiconductor

LOW VOLTAGE 16-BIT TRANSPARENT LATCH WITH 3.6V TOLERANT INPUTS AND OUTPUTS AND 26 OHM SERIES RESISTORS IN OUTPUTS

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74LVT162244MTDX
Integrated Circuits (ICs)

74VCX162373MTDX

Active
ON Semiconductor

LOW VOLTAGE 16-BIT TRANSPARENT LATCH WITH 3.6V TOLERANT INPUTS AND OUTPUTS AND 26 OHM SERIES RESISTORS IN OUTPUTS

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Technical Specifications

Parameters and characteristics for this part

Specification74VCX162373MTDX
Circuit [custom]8
Circuit [custom]8
Current - Output High, Low [custom]12 mA
Current - Output High, Low [custom]12 mA
Delay Time - Propagation1 ns
Independent Circuits2
Logic TypeD-Type Transparent Latch
Mounting TypeSurface Mount
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Output TypeTri-State
Package / Case48-TFSOP
Package / Case0.24 in
Package / Case [custom]6.1 mm
Supplier Device Package48-TSSOP
Voltage - Supply [Max]3.6 V
Voltage - Supply [Min]1.4 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBulk 239$ 1.26

Description

General part information

74VCX162373 Series

The VCX162373 contains sixteen non-inverting latches with 3-STATE outputs and is intended for bus oriented applications. The device is byte controlled. The flip-flops appear to be transparent to the data when the Latch enable (LE) is HIGH. When LE is LOW, the data that meets the setup time is latched. Data appears on the bus when the Output Enable (OE#) is LOW. When OE# is HIGH, the outputs are in a high impedance state. The VCX162373 is also designed with 26ohm resistors in the outputs. This design reduces line noise in applications such as memory address drivers, clock drivers and bus transceivers/transmitters. The 74VCX162373 is designed for low voltage (1.4V to 3.6V) VCCapplications with I/O compatibility up to 3.6V. The 74VCX162373 is fabricated with an advanced CMOS technology to achieve high speed operation while maintaining low CMOS power dissipation.