The NXP SSTUM32865ET/G,518 is a robust, high-performance 1.8 V configurable registered buffer designed to meet the demands of high-speed signal processing in advanced computing and communication systems. This state-of-the-art component from NXP Semiconductors is engineered to enhance the signal integrity of high-speed bus lines, making it an ideal choice for applications requiring reliable data transfer and integrity.
Key Features
- Enhanced Signal Integrity: The SSTUM32865ET/G,518 is designed to provide improved signal integrity for high-speed data lines, ensuring clean and stable signals for reliable operations.
- Low-Voltage Operation: Operating at a low voltage of 1.8V, this device helps to reduce the overall power consumption of the system, making it suitable for energy-efficient designs.
- Configurable Buffers: With configurable input and output buffers, the device offers flexibility in system design, allowing designers to tailor the buffer strength to specific application requirements.
- High Data Bandwidth: The device supports high data bandwidth, making it suitable for applications that require fast data processing and transfer, such as high-performance computing and networking equipment.
- Robust Thermal Performance: Encased in a thermally efficient package, the SSTUM32865ET/G,518 is capable of operating within a wide temperature range, ensuring performance stability across diverse operating conditions.
Applications
The NXP SSTUM32865ET/G,518 is highly versatile and can be deployed in a range of applications, including:
- High-performance servers and workstations
- Networking and telecommunications equipment
- Data storage systems
- Signal processing units
- Industrial control systems
Technical Specifications
| Parameter |
Value |
| Supply Voltage (VCC) |
1.8V ±0.1V |
| Operating Temperature |
-40°C to +85°C |
| Package Type |
TSSOP |
| Pin Count |
56 |
In summary, the NXP SSTUM32865ET/G,518 is a high-quality registered buffer that offers designers the performance, flexibility, and reliability needed to build advanced electronic systems. Its low-voltage operation, configurable design, and robust thermal performance make it a top choice for a wide array of applications.