Specification of XCVU9P-1FLGA2104I | |
---|---|
Status | Active |
Series | Virtex? UltraScale+? |
Package | Tray |
Supplier | AMD |
Digi-Key Programmable | Not Verified |
Number of LABs/CLBs | 147780 |
Number of Logic Elements/Cells | 2586150 |
Total RAM Bits | 391168000 |
Number of I/O | 832 |
Number of Gates | – |
Voltage – Supply | 0.825V ~ 0.876V |
Mounting Type | Surface Mount |
Operating Temperature | -40C ~ 100C (TJ) |
Package / Case | 2104-BBGA, FCBGA |
Supplier Device Package | 2104-FCBGA (47.5×47.5) |
Applications
The XCVU9P-1FLGA2104I is ideal for high-performance computing environments such as data centers and cloud computing platforms. It excels in applications requiring high-speed processing and large-scale parallel computing tasks. Additionally, it is suitable for automotive electronics systems due to its robustness and reliability under various environmental conditions.
Key Advantages
1. Operating Temperature Range: -40¡ãC to +85¡ãC
2. Advanced Architecture: Supports multiple processor cores for enhanced performance.
3. Power Efficiency: Consumes up to 30% less power than similar devices.
4. Certification Standards: Meets international safety and quality standards.
Frequently Asked Questions
Q1: What is the maximum operating temperature of the XCVU9P-1FLGA2104I?
A1: The maximum operating temperature of the XCVU9P-1FLGA2104I is +85¡ãC.
Q2: Can the XCVU9P-1FLGA2104I be used in automotive applications?
A2: Yes, the XCVU9P-1FLGA2104I is designed to meet automotive grade standards, making it suitable for automotive applications.
Q3: In which specific scenarios can the XCVU9P-1FLGA2104I be utilized effectively?
A3: The XCVU9P-1FLGA2104I is particularly effective in scenarios requiring high computational power and reliability, such as real-time signal processing in telecommunications infrastructure and advanced driver-assistance systems in vehicles.
Other people’s search terms
– High-performance computing solutions
– Automotive-grade processors
– Cloud computing hardware
– Data center processors
– Advanced processor architectures