Part | RoHS | Manufacturer | Brand Name | Product Line | Product Model | Product Type | Limited Warranty | Environmental Certification | Environmentally Friendly | Depth | Form Factor | Width | Application/Usage | Weight (Approximate) | Height | Product Name | Country of Origin |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Xilinx Inc. |
Xilinx |
Alveo |
U250 |
FPGA Accelerator Card |
Plug-in Card |
Alveo U250 FPGA Accelerator Card |
Malaysia |
||||||||||
Xilinx Inc. |
Xilinx |
Alveo |
U250 |
FPGA Accelerator Card |
WEEE, Taiwan RoHS, RoHS |
Yes |
1.52 " |
Plug-in Card |
11.4 " |
Server |
1122 g |
4.381 " |
Alveo U250 FPGA Accelerator Card with Active Cooling |
Malaysia |
|||
Xilinx Inc. |
Xilinx |
Alveo |
U250 |
FPGA Accelerator Card |
Plug-in Card |
Alveo U250 FPGA Accelerator Card |
Malaysia |
||||||||||
Xilinx Inc. |
Xilinx |
Alveo |
U250 |
FPGA Accelerator Card |
WEEE, Taiwan RoHS, RoHS |
Yes |
1.44 " |
Plug-in Card |
9.2 " |
Server |
1066 g |
4.381 " |
Alveo U250 FPGA Accelerator Card with Passive Cooling |
Malaysia |
|||
Hewlett Packard Enterprise |
HPE |
Alveo |
U250 |
FPGA Accelerator Card |
1.54 " |
Plug-in Card |
9.21 " |
Server |
2 kg |
4.38 " |
Xilinx Alveo U250 Accelerator for HPE |
CPU accelerators and system cache controllers are integral components of modern computing systems, enhancing performance and efficiency. These components work in tandem to optimize the flow of data between the central processing unit (CPU) and other system resources. CPU accelerators, also known as coprocessors or accelerators, are specialized hardware units designed to offload specific computational tasks from the CPU, thereby accelerating overall system performance. They excel at handling tasks like graphics processing, artificial intelligence computations, and cryptographic operations. By using a buffer amplifier, the high output impedance of the first device is isolated from the second device, ensuring that the signal is transferred with minimal distortion. The buffer amplifier acts as a bridge between the two devices, allowing them to operate independently. System cache controllers, on the other hand, manage the CPU's cachememory, which is a small but extremely fast type of memory used to temporarily store frequently accessed data and instructions. These controllers optimize cache performance by prefetching data, managing cache coherence, and dynamically allocating cache space based on program behavior. Together, CPU accelerators and system cache controllers play a crucial role in improving system responsiveness, reducing latency, and maximizing computational efficiency in a wide range of applications.