Product Overview: 74HC75PW by NXP
The 74HC75PW is a high-quality, quad bistable transparent latch integrated circuit (IC) produced by NXP Semiconductors, a leader in the fabrication of advanced semiconductor solutions. Designed for general-purpose storage applications in digital systems, it operates as part of the 74HC family, which is well-known for its high-speed CMOS technology.
Key Features
- Logic Family: The 74HC75PW is part of the high-speed CMOS family, offering low power consumption and a robust performance profile.
- Latch Type: This IC is a quad bistable transparent latch, meaning it has four individual latches with a transparent mode of operation.
- Package: Housed in a TSSOP16 (Thin Shrink Small Outline Package) with 16 leads, the 74HC75PW is designed for space-saving on PCBs while maintaining excellent thermal and electrical performance.
- Operating Voltage: It has a wide operating voltage range from 2.0V to 6.0V, making it versatile for various applications and compatible with TTL levels.
- Data Retention: The device can hold data with the latch enable (LE) input high, and the data is retained as long as the LE is held high, even if the input changes.
Performance and Applications
The 74HC75PW is designed to support high-performance data storage and retention in digital circuits. Its fast switching speeds and low power consumption make it an excellent choice for a wide range of applications, from simple data storage and buffering to more complex state holding requirements in computational and control systems.
It is commonly used in:
- Computers and computer peripherals
- Communication devices
- Control systems
- Data acquisition systems
Quality and Reliability
NXP Semiconductors ensures that the 74HC75PW meets rigorous quality and reliability standards. The device is tested thoroughly for performance across different temperatures and operating conditions to guarantee its reliability in various environments. This dedication to quality makes the 74HC75PW a trusted component in critical and commercial systems worldwide.