IW_VU13P_100G15 — XCVU13P Algorithm Evaluation Board, 15x 100G QSFP28
Brand: Interwiser
EIC Product Code:
Off-the-shelf large-scale data-processing evaluation board built on the AMD XCVU13P FPGA, featuring 15x 100Gbps QSFP28 interfaces and 64-bit DDR4 memory for radar, communications infrastructure, HPC, AI inference and data-center acceleration applications.
The IW_VU13P_100G15 Algorithm Evaluation Board is a large-scale data-processing card built around the AMD Zynq UltraScale+ series XCVU13P-FHGB2104 FPGA. Fabricated on a 16nm FinFET+ process with an ASIC-class, multi-processor SoC architecture, the XCVU13P provides 1,728K configurable logic blocks, 3,780K system logic cells, 94.5 Mbit of embedded memory, and 76 GTY transceivers at up to 32.75 Gb/s. The board expands this with 64-bit DDR4 memory (2666MT/s), two QSPI NOR Flash devices (2Gbit each) and - most notably - 15x 100Gbps QSFP28 optical interfaces that can be used individually or combined for very high aggregate throughput. A 10/100/1000 Ethernet port, USB Type-C, USB-JTAG, USB-UART and a J30J-GPIO connector round out the I/O. As a ready-to-ship, off-the-shelf product it lets engineering teams begin algorithm development on high-channel-count optical/data-processing designs immediately, without board bring-up lead time.
Features:
- AMD XCVU13P FPGA: 1,728K logic cells, 76x GTY transceivers up to 32.75 Gb/s
- 15x 100Gbps QSFP28 high-speed optical interfaces
- 64-bit DDR4 (2666MT/s) expansion memory, dual 2Gbit QSPI NOR Flash
- USB Type-C, 10/100/1000 Ethernet, J30J GPIO expansion
- Off-the-shelf availability - no long production lead time
- MAGI Project IP collaboration for faster design/verification cycles
Applications:
- Optical communication and wireless network bridging (15x 100G)
- Satellite communication waveform/modulation processing
- Radar signal processing and high-throughput data links
- Data-center acceleration, compute, and storage nodes
Documentations
| iw_vu13p_100g15_algorithm_evaluation_board_hardware_manual.pdf | PDF · 1 MB | Download |
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