Product Overview: SN74LVT244BNSR by Texas Instruments
The SN74LVT244BNSR is a high-performance, BiCMOS octal buffer and line driver designed by Texas Instruments to provide state-of-the-art solutions for bus interface and signal buffering needs in advanced digital systems. This device is part of the LVT family, which stands for Low-Voltage BiCMOS Technology, and is specifically engineered to operate with a 3.3V power supply while maintaining 5V tolerant inputs.
Key Features
- Octal Bus Interface: This device contains eight non-inverting buffers with 3-state outputs, making it ideal for interfacing with high-speed buses.
- Low-Voltage Operation: Designed to operate at 3.3V, the SN74LVT244BNSR is perfect for systems that require low power consumption without sacrificing performance.
- 5V Tolerant Inputs: Inputs can tolerate up to 5V, allowing for interface flexibility with both 3.3V and 5V logic levels without the need for external components.
- High Drive: The device can drive up to 64mA on the bus, ensuring strong signal transmission which is necessary for reliable data communication.
- Low Power Dissipation: With a typical ICC of only 70 µA, the SN74LVT244BNSR is designed for power-sensitive applications.
Applications
The SN74LVT244BNSR is versatile and can be used in a wide array of applications including:
- Bus Transceivers in Servers
- Memory Drivers
- Microprocessor or Microcontroller Interface
- Data Communication Systems
- Signal Buffering in Networking Equipment
Quality and Reliability
Texas Instruments is renowned for its commitment to quality and reliability. The SN74LVT244BNSR is no exception, with its robust design ensuring a long operational lifespan even under challenging conditions. The device is available in a 20-pin SSOP package, which is not only space-efficient but also offers excellent thermal performance.
Environmental and Regulatory Compliance
The SN74LVT244BNSR complies with RoHS standards, ensuring that it is free from harmful substances such as lead, making it an environmentally friendly choice for electronic designs.