Manufacturer Part Number
DM74LS533N
Manufacturer
rochester-electronics
Introduction
The DM74LS533N is a high-performance logic buffer, driver, receiver, and transceiver device. It is designed to provide universal logic signal conditioning and interface capabilities. This device can be used in a wide range of digital electronics applications, from industrial control systems to consumer electronics.
Product Features and Performance
High-speed operation with typical propagation delays of 8-12 ns
Supports 5V TTL/CMOS logic levels
Capable of driving up to 24 LSTTL loads
Operates over a wide temperature range of -40°C to +85°C
Low power consumption with typical ICC of 8 mA
Product Advantages
Universal logic signal conditioning and interface capabilities
High-speed performance for fast digital systems
Robust TTL/CMOS compatibility
Able to drive multiple loads for efficient signal distribution
Wide operating temperature range for use in diverse environments
Key Reasons to Choose This Product
Proven reliability and long-term availability from a trusted manufacturer
Versatile functionality for a wide range of digital logic applications
High-performance specifications to meet the demands of modern electronics
Cost-effective solution for signal conditioning and interfacing needs
Quality and Safety Features
Rigorous quality control and testing procedures
Compliance with relevant industry standards and regulations
Robust design for reliable and safe operation
Compatibility
The DM74LS533N is compatible with 74LS, 74ALS, 74F, and 74HC logic families.
Application Areas
Industrial control systems
Computer and peripheral equipment
Telecommunications equipment
Consumer electronics
Automotive electronics
Product Lifecycle
The DM74LS533N is an active product, with no plans for discontinuation. There are equivalent and alternative models available from other manufacturers, such as the 74LS533, 74ALS533, and 74HC533. Customers are advised to contact our sales team through our website for more information on product availability and alternatives.