Product Overview: SN74ABT821ANSRG4 by Texas Instruments
The SN74ABT821ANSRG4 is a high-performance, 10-bit bus interface flip-flop designed by Texas Instruments, which is renowned for its expertise in semiconductor technology. This integrated circuit is part of the ABT family, which stands for Advanced BiCMOS Technology, indicating that it combines the high speed of bipolar transistors with the low power consumption of CMOS technology.
Key Features
- Interface Type: The device is equipped with a two-port bus interface, allowing for efficient communication and data transfer between different parts of a system.
- Logic Type: It functions as a D-type flip-flop, a fundamental building block in digital circuits used for storing and transferring data.
- Bit Size: With a 10-bit width, the SN74ABT821ANSRG4 can handle multiple data lines simultaneously, making it suitable for parallel data processing tasks.
- Output Type: The flip-flop features 3-state outputs, which provide the ability to go into a high impedance state, effectively disconnecting the output from the circuit.
- Operating Temperature: It is designed to operate reliably over a wide temperature range, ensuring stable performance in various environmental conditions.
- Mounting Type: The device comes in a surface-mount package, which is ideal for modern high-density printed circuit boards (PCBs).
- Supply Voltage: It operates at a nominal supply voltage that is compatible with other 5V logic families, facilitating integration into diverse systems.
Applications
The SN74ABT821ANSRG4 is particularly well-suited for applications that require high-speed data transfer and storage, such as:
- Data communication systems
- Computer systems and servers
- Signal processing units
- Networking equipment
Quality and Reliability
Texas Instruments is committed to delivering products that meet the highest standards of quality and reliability. The SN74ABT821ANSRG4 is no exception, as it has undergone rigorous testing and quality control procedures to ensure its performance and durability in demanding applications.