Manufacturer Part Number
MC74VHC259DTR2G
Manufacturer
onsemi
Introduction
The MC74VHC259DTR2G is a high-performance, high-speed CMOS 1-of-8 addressable latch. It features independent latches, standard logic-level outputs, and a wide operating voltage range. This device is designed to provide reliable and efficient performance in a wide range of digital circuit applications.
Product Features and Performance
1-of-8 addressable latch
Independent latches
Standard logic-level outputs
Wide operating voltage range from 2V to 5.5V
High-speed operation with a propagation delay of 4.9ns
High output current capability of 8mA for both high and low states
Wide operating temperature range from -55°C to 125°C
Surface mount package for compact design
Product Advantages
Versatile and adaptable to various digital circuit applications
Efficient power consumption with wide operating voltage range
Reliable and high-performance operation
Compact surface mount package for space-saving designs
Key Reasons to Choose This Product
Robust and dependable performance for critical applications
Flexibility to integrate into diverse digital systems
Cost-effective solution for high-volume projects
Excellent value proposition with advanced features and capabilities
Quality and Safety Features
Manufactured using onsemi's reliable and proven semiconductor technology
Compliant with industry safety and reliability standards
Rigorous quality control measures during production
Compatibility
The MC74VHC259DTR2G is compatible with a wide range of digital logic circuits and systems, making it a versatile component for various applications.
Application Areas
Digital control and interface circuits
Data processing and storage systems
Industrial automation and control equipment
Telecommunications and networking equipment
Consumer electronics and appliances
Product Lifecycle
The MC74VHC259DTR2G is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation. Customers can contact our website's sales team for information on any potential equivalent or alternative models that may become available in the future.