Manufacturer Part Number
SN74AUP2G241YFPR
Manufacturer
Texas Instruments
Introduction
The SN74AUP2G241YFPR is a dual non-inverting 3-state buffer integrated circuit from Texas Instruments. It is designed to provide high-speed, low-power buffering and 3-state output control for digital logic applications. The device features high-performance CMOS technology, making it suitable for a wide range of applications requiring reliable and efficient signal conditioning.
Product Features and Performance
Dual non-inverting 3-state buffer
High-speed operation
Low power consumption
Wide operating voltage range of 0.8V to 3.6V
Operating temperature range of -40°C to 85°C
Supports output current of 4mA (high and low)
Utilizes high-performance CMOS technology
Product Advantages
Efficient signal conditioning for digital logic applications
Versatile voltage range allows for use in various system designs
Robust operating temperature range for reliable performance
3-state output control enables flexible interface with other components
Key Reasons to Choose This Product
High-speed and low-power buffering capabilities
Reliable and consistent performance across a wide range of operating conditions
Flexible 3-state output control for improved system integration
Proven CMOS technology from a trusted manufacturer, Texas Instruments
Quality and Safety Features
Rigorously tested for quality and reliability
Complies with industry standards for safety and environmental regulations
Compatibility
The SN74AUP2G241YFPR is compatible with a wide range of digital logic circuits and can be used in various electronic systems and applications.
Application Areas
Digital logic circuits
Signal conditioning and buffering
Interface control
General-purpose digital electronics
Product Lifecycle
The SN74AUP2G241YFPR is an active product, and there are no immediate plans for discontinuation. Our website's sales team may offer equivalent or alternative models in the future, but customers are advised to contact our website's sales team for the latest product information and availability.