The SN74LVC863ADBR is a high-performance, 9-bit bus transceiver from Texas Instruments designed with two distinct purposes: to transfer data from one bus to another with speed and precision, and to drive high-capacity bus lines with low static and dynamic power consumption. This product is part of the LVC family, which is known for its low-voltage operation and compatibility with mixed-voltage system environments.
Key Features:
- Operational Voltage: The device operates at a voltage range of 2.7V to 3.6V, making it suitable for interfacing with 3.3V logic levels while also maintaining 5V tolerant inputs.
- High-Speed Data Transfer: With its capability to handle data speeds of up to 240 Mbps, the SN74LVC863ADBR is ideal for high-speed data transfer applications.
- Drive Capability: The device can drive up to 24 mA of current, ensuring strong signal transmission that can overcome the capacitance on long bus lines.
- Bus Hold Data Inputs: The bus hold feature on data inputs eliminates the need for external pull-up/pull-down resistors, simplifying board design and reducing component count.
- Multiple Package Options: The SN74LVC863ADBR comes in a SSOP (Shrink Small Outline Package) that is RoHS compliant and designed for space-saving on PCBs.
Applications:
The SN74LVC863ADBR is versatile in its usage and can be found in a variety of applications such as:
- Telecommunications
- Computers and Computer Peripherals
- Data Communications
- Networking Equipment
- Industrial Control Systems
Quality and Reliability:
Texas Instruments is renowned for their commitment to quality and reliability. The SN74LVC863ADBR is no exception, and it undergoes rigorous testing to ensure it meets the industry standards for performance and longevity. This device is suitable for commercial-grade applications and is backed by Texas Instruments' support and expertise.
For more detailed information, including operating parameters and electrical characteristics, please refer to the official datasheet of the SN74LVC863ADBR provided by Texas Instruments.