Manufacturer Part Number
74AUP2G07FW3-7
Manufacturer
diodes
Introduction
The 74AUP2G07FW3-7 is a dual non-inverting buffer from diodes that offers high-speed, low-power operation and a wide supply voltage range of 0.8V to 3.6V. It is designed to provide reliable and efficient buffering for digital logic signals in a variety of applications.
Product Features and Performance
Dual non-inverting buffer configuration
Operates across a wide supply voltage range of 0.8V to 3.6V
Supports high-speed operation with propagation delays as low as 1.4ns
Low power consumption with typical ICC of 2μA
Capable of sinking up to 4mA of output current
Operating temperature range of -40°C to 125°C
Product Advantages
Wide supply voltage range provides design flexibility
High-speed operation enables efficient signal transmission
Low power consumption contributes to energy-efficient designs
Robust performance across a wide temperature range
Key Reasons to Choose This Product
Reliable and efficient buffering for digital logic signals
Versatile design suitable for a wide range of applications
Optimized for low-power, high-speed performance
Proven quality and safety features from a trusted manufacturer
Quality and Safety Features
ESD protection exceeding 2kV (HBM)
Compliance with relevant industry standards
Rigorous testing and quality control measures
Compatibility
The 74AUP2G07FW3-7 is designed to be compatible with a variety of digital logic circuits and systems, making it a versatile choice for a wide range of applications.
Application Areas
Microcontroller and processor interfaces
Data communication and transmission systems
Low-power digital logic circuits
Consumer electronics and portable devices
Product Lifecycle
The 74AUP2G07FW3-7 is an active product, and our website's sales team continues to manufacture and support this model. There are equivalent or alternative models available, such as the 74AUP2G07FW3-7 and the 74AUP2G07FW3-13. For more information about these options or the product lifecycle, please contact our website's sales team.