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20-SOIC 0.295
Integrated Circuits (ICs)

NLV74HC573ADWR2G

Obsolete
ON Semiconductor

OCTAL 3-STATE NON-INVERTING TRANSPARENT LATCH

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20-SOIC 0.295
Integrated Circuits (ICs)

NLV74HC573ADWR2G

Obsolete
ON Semiconductor

OCTAL 3-STATE NON-INVERTING TRANSPARENT LATCH

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationNLV74HC573ADWR2G
Circuit1:8
Current - Output High, Low [custom]7.8 mA
Current - Output High, Low [custom]7.8 mA
Delay Time - Propagation26 ns
GradeAutomotive
Independent Circuits1
Logic TypeD-Type Transparent Latch
Mounting TypeSurface Mount
Operating Temperature [Max]125 °C
Operating Temperature [Min]-55 °C
Output TypeTri-State
Package / Case20-SOIC
Package / Case [y]0.295 in
Package / Case [y]7.5 mm
QualificationAEC-Q100
Supplier Device Package20-SOIC
Voltage - Supply [Max]6 V
Voltage - Supply [Min]2 V

Pricing

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

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Description

General part information

MC74HC573A Series

The MM74HC573 high speed octal D-type latches utilize advanced silicon-gate P-well CMOS technology. They possess the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads. Due to the large output drive capability and the 3-STATE feature, these devices are ideally suited for interfacing with bus lines in a bus organized system. When the LATCH ENABLE(LE) input is HIGH, the Q outputs will follow the D inputs. When the LATCH ENABLE goes LOW, data at the D inputs will be retained at the outputs until LATCH ENABLE returns HIGH again. When a HIGH logic level is applied to the OUTPUT CONTROL OC input, all outputs go to a HIGH impedance state, regardless of what signals are present at the other inputs and the state of the storage elements. The 74HC logic family is speed, function and pinout compatible with the standard 74LS logic family. All inputs are protected from damage due to static discharge by internal diode clamps to VCCand ground.

Documents

Technical documentation and resources