The NXP SSTVF16859BS is a high-performance, 2.5V to 3.3V compatible, 13-bit to 26-bit configurable registered buffer designed for use in server and workstation memory modules, as well as in communication systems. With its versatility and advanced features, it is engineered to meet the demands of high-speed signal processing while maintaining signal integrity across various applications.
Key Features
- Compatibility: The SSTVF16859BS operates with a supply voltage range of 2.5V to 3.3V, making it suitable for a wide array of systems and ensuring compatibility with both existing and new designs.
- Flexibility: It offers a 13-bit to 26-bit configurable registered buffer, providing designers with the flexibility to tailor the device to their specific needs, whether for memory modules or high-speed communication systems.
- Performance: Designed for high-speed operation, the SSTVF16859BS can facilitate faster data processing, contributing to improved overall system performance.
- Enhanced Signal Integrity: The device includes features that help maintain signal integrity, even at high speeds, thus ensuring reliable operation and reducing the likelihood of data errors.
Applications
The SSTVF16859BS is ideal for a variety of applications, including:
- Server and workstation memory modules, where reliable high-speed data transfer is critical.
- Communication systems that require robust signal integrity for data integrity and throughput.
- High-speed signal processing applications, where the device's performance can be leveraged to handle complex tasks efficiently.
Technical Specifications
The technical specifications of the SSTVF16859BS include:
- Supply Voltage (VCC): 2.5V to 3.3V
- Configurable 13-bit to 26-bit registered buffer
- Bus Hold on data inputs eliminates the need for external pull-up/pull-down resistors
- Flow-through pinout simplifies PCB layout
Overall, the NXP SSTVF16859BS registered buffer is a powerful component that provides a blend of flexibility, performance, and reliability, making it an excellent choice for a multitude of high-speed data processing applications.