Product Overview: SN74LVTH646NSRG4
The SN74LVTH646NSRG4 is a high-performance integrated circuit from the renowned manufacturer Texas Instruments. This device is a part of the LVTH family and serves as a transceiver with non-inverting 3-state bus-compatible outputs. Designed to meet the demanding requirements of high-speed data transmission and signal integrity, the SN74LVTH646NSRG4 is ideal for use in a variety of applications, including telecommunications, computing, and industrial systems.
Key Features
- Technology: The SN74LVTH646NSRG4 utilizes Low-Voltage BiCMOS technology which provides robust performance while maintaining low power consumption.
- Logic Type: 3-state non-inverting bus transceiver allows for bidirectional communication with the ability to disconnect the output from the bus for multiplexing or isolation purposes.
- Voltage Range: This device operates at a nominal voltage of 3.3V, with a wide range of 2.7V to 3.6V, making it compatible with a variety of low-voltage logic levels.
- Speed: It features a high-speed data transfer capability that is essential for modern high-speed applications.
- Package: The SN74LVTH646NSRG4 is available in a 24-pin NSOP package, ensuring a compact footprint for space-constrained applications.
- Temperature Range: With an operating temperature range of -40°C to 85°C, it is suitable for industrial temperature environments.
Applications
The versatility of the SN74LVTH646NSRG4 makes it suitable for a wide range of applications. It is commonly used in:
- Data communication systems
- Networking equipment such as switches and routers
- Server farms and data centers
- Industrial control systems
- Signal bridging applications
Quality and Reliability
Texas Instruments is known for its commitment to quality and reliability, and the SN74LVTH646NSRG4 is no exception. It is designed to meet strict industry standards, ensuring high performance and durability for the end-user. With Texas Instruments' expertise in semiconductor design, customers can trust the SN74LVTH646NSRG4 for their critical applications.