The SN74GTLP1395DWR is a high-performance, low-voltage 16-bit universal bus transceiver from Texas Instruments, designed for bi-directional communication between data buses. This transceiver is part of the GTLP (Gunning Transceiver Logic Plus) family and is ideal for applications that require low power consumption and high-speed data transfer.
Key Features
- Versatile Bus Interface: The SN74GTLP1395DWR can operate as a 16-bit transceiver or as two 8-bit transceivers, providing flexibility for a variety of system designs.
- Low Voltage Operation: This device is optimized for 3.3V operation with 5V tolerant I/Os, allowing it to interface with both 3.3V and 5V logic levels without the need for external level shifters.
- High-Speed Data Transfer: With its GTLP technology, it ensures fast data transfer rates, making it suitable for high-performance computing and networking applications.
- Flow-Through Pinout: The flow-through architecture simplifies PCB layout by reducing signal skew and minimizing the need for additional routing layers.
- Power-Down Mode: An integrated power-down mode significantly reduces power consumption when the transceiver is not in active use.
Applications
The SN74GTLP1395DWR is widely used in a range of applications that require efficient and reliable data transfer, including:
- Server and Workstation Backplanes
- Networking Equipment
- Telecommunication Systems
- Data Acquisition Systems
- High-Speed Data Processing
Package and Quality
This device is offered in a 24-pin SOIC (DWR) package, providing a compact footprint for space-constrained applications. Texas Instruments is committed to high-quality manufacturing and reliability, ensuring that the SN74GTLP1395DWR meets stringent industry standards for performance and longevity.
Ordering and Availability
For pricing, ordering, and availability information, please visit the Texas Instruments website or contact an authorized distributor. The SN74GTLP1395DWR is available in tape and reel packaging, facilitating efficient assembly for high-volume production.