Manufacturer Part Number
MM54HC646J/883
Manufacturer
rochester-electronics
Introduction
The MM54HC646J/883 is a high-performance, high-speed CMOS buffer/line driver/receiver/transceiver designed for use in military and aerospace applications. It features high-drive capability, low power consumption, and is suitable for a variety of digital logic applications.
Product Features and Performance
High-speed CMOS technology for fast data transmission
High drive capability with 24 mA sink/source current
Low power consumption with quiescent current less than 10 μA
Operating voltage range of 2.0 V to 6.0 V
Wide temperature range of -55°C to +125°C
Latch-up protection
Electrostatic discharge (ESD) protection
Product Advantages
Reliable performance in harsh environments
Suitable for a wide range of digital logic applications
Efficient power management with low power consumption
Robust design with protection against latch-up and ESD
Key Reasons to Choose This Product
Proven reliability and performance in military and aerospace applications
Versatile functionality as a buffer, line driver, receiver, or transceiver
Ability to operate across a wide temperature range and voltage supply
Robust protection features for reliable operation in challenging environments
Quality and Safety Features
Designed and tested to meet military and aerospace standards
Rigorous quality control and screening process
Latch-up and ESD protection for enhanced safety and reliability
Compatibility
The MM54HC646J/883 is compatible with a variety of CMOS and TTL logic families, making it suitable for integration into a wide range of digital systems.
Application Areas
Military and aerospace electronics
Industrial control systems
Data communication equipment
Test and measurement instrumentation
Product Lifecycle
The MM54HC646J/883 is an active product in the rochester-electronics portfolio. There are no known equivalent or alternative models available at this time. If you have any further questions or require additional information, please contact our sales team through our website.