Manufacturer Part Number
MC74AC574DTR2G
Manufacturer
onsemi
Introduction
The MC74AC574DTR2G is a high-performance 8-bit D-type flip-flop with tri-state, non-inverted outputs. It features a maximum clock frequency of 95 MHz and a maximum propagation delay of 9.5 ns at 5V and 50 pF load capacitance. This device is part of the 74AC series and is designed for a wide range of digital logic applications.
Product Features and Performance
8-bit D-type flip-flop with tri-state, non-inverted outputs
Maximum clock frequency of 95 MHz
Maximum propagation delay of 9.5 ns at 5V and 50 pF load capacitance
Positive edge-triggered
2V to 6V supply voltage range
Low quiescent current of 8 µA
5 pF input capacitance
Operating temperature range of -40°C to 85°C
Product Advantages
High-speed operation for efficient digital logic design
Tri-state outputs for easy bus interfacing
Wide supply voltage range for versatile applications
Low power consumption for energy-efficient designs
Compact surface mount package for space-saving layouts
Key Reasons to Choose This Product
Reliable and high-performance digital logic solution
Flexible voltage and temperature range for diverse applications
Efficient power management with low quiescent current
Ease of integration with tri-state outputs and compact packaging
Quality and Safety Features
Compliant with industry standards for quality and safety
Rigorous testing and quality control measures
Robust design for reliable operation
Compatibility
The MC74AC574DTR2G is compatible with other 74AC series logic devices, enabling seamless integration into a wide range of digital systems.
Application Areas
Digital signal processing
Computer and peripheral equipment
Industrial automation and control systems
Telecommunications equipment
Automotive electronics
Product Lifecycle
The MC74AC574DTR2G is an active product and is currently in production. There are no direct equivalents or alternative models available at this time. If you have any questions or need further information, please contact our sales team through our website.