Product Overview: CD74AC373M Octal Transparent Latch from Texas Instruments
The CD74AC373M is a high-performance, CMOS octal transparent latch designed by Texas Instruments to provide efficient and reliable data storage in digital systems. This integrated circuit features eight latches with 3-state outputs for bus-oriented applications, making it an ideal choice for temporary data storage and transfer operations.
Key Features
- Logic Type: Octal D-Type Transparent Latch
- Output Type: 3-State, allowing for bus connection with minimal conflict or power consumption
- IC Package Type: SOIC, an industry-standard small-outline integrated circuit with 20 pins
- Operating Voltage: 1.5V to 5.5V, compatible with a variety of logic levels and suitable for battery-operated and low-voltage applications
- High-Speed Performance: tPD 5.5ns (Max) at 5V, providing swift response times for critical operations
- Temperature Range: -55°C to 125°C, ensuring reliable performance under extreme conditions
Applications
The CD74AC373M is versatile and can be used in a wide range of applications, including:
- Temporary data storage
- Data multiplexing
- Memory address latching
- System control
- Buffering digital signals
Product Advantages
This octal transparent latch is designed with advanced silicon-gate CMOS technology, which provides high speed without the high power consumption typically associated with speed. Its 3-state outputs can drive bus lines or buffer memory address registers, making the CD74AC373M an excellent choice for system designers who require a transparent latch with high-drive capabilities.
Furthermore, the latch's wide operating voltage range and robust temperature tolerance make it suitable for demanding environments and various interfacing requirements. The CD74AC373M is not only powerful but also practical, as its SOIC package ensures ease of integration into a multitude of PCB designs.
In conclusion, the CD74AC373M from Texas Instruments is a reliable and efficient solution for designers who need a transparent latch with high-speed performance and low power consumption. Its advanced features and versatility in applications make it a valuable component in any digital logic system.