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HyperRF-KCU115 High-Performance Signal Processing Platform

This high‑performance RF acquisition and data‑processing platform is implemented using one KU115 FPGA and one RFSOC 47DR. It features eight RF input channels and eight RF output channels, supports four NVMe SSDs, and incorporates substantial DDR4 memory resources on both the RFSOC 47DR and the KCU115. The platform provides a rich set of peripheral interfaces, including two USB 3.0 ports, one Ethernet port, two 40G QSFP optical ports, two clustered PCI Express x4 slots, and one 10G SFP optical port. A large number of I/O resources and eight pairs of GTY transceiver interfaces connect the KCU115 and the RFSOC 47DR. By employing a dual‑FPGA architecture, the platform enables scalable logic resources and, through chip‑to‑chip interconnect technology, allows unified management of all board‑level and DSP resources. It offers excellent support for computationally intensive 8×8 MIMO scenarios. Additionally, the platform adopts a core‑board design, facilitating hardware modularization and heterogeneous system integration.

Model: IW_RFSOC_KU115

Category:

Zynq UltraScale+ RFSOC Development Board

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  • Product Details
  • Product Specifications
  • Product Features and Applications
  • Shipping List
    • Commodity name: HyperRF-KCU115 High-Performance Signal Processing Platform
    • 型号: IW_RFSOC_KU115

    This high‑performance RF acquisition and data‑processing platform is implemented using one KU115 FPGA and one RFSOC 47DR. It features eight RF input channels and eight RF output channels, supports four NVMe SSDs, and incorporates substantial DDR4 memory resources on both the RFSOC 47DR and the KCU115. The platform provides a rich set of peripheral interfaces, including two USB 3.0 ports, one Ethernet port, two 40G QSFP optical ports, two clustered PCI Express x4 slots, and one 10G SFP optical port. A large number of I/O resources and eight pairs of GTY transceiver interfaces connect the KCU115 and the RFSOC 47DR. By employing a dual‑FPGA architecture, the platform enables scalable logic resources and, through chip‑to‑chip interconnect technology, allows unified management of all board‑level and DSP resources. It offers excellent support for computationally intensive 8×8 MIMO scenarios. Additionally, the platform adopts a core‑board design, facilitating hardware modularization and heterogeneous system integration.

    This high-performance RF acquisition and data-processing platform is implemented using one KU115 FPGA and one RFSOC 47DR FPGA. The platform features eight RF input channels and eight RF output channels, supports four NVMe storage drives, and deploys substantial DDR4 memory resources on both the RFSOC 47DR and the KCU115. It also includes a pair of USB 3.0 ports, one Ethernet port, two 40G QSFP optical interfaces, two bundled PCI‑Express x4 slots, and one 10G SFP optical interface, among other peripheral connectors. A rich set of I/O resources and eight pairs of GTY transceivers link the KCU115 and the RFSOC 47DR. By employing a dual-FPGA architecture, the platform expands its logic resources and enables unified management of all board‑level and DSP resources through chip‑to‑chip interconnect technology. It provides robust support for demanding 8×8 MIMO scenarios involving complex algorithms. Furthermore, the platform adopts a core‑board design, facilitating hardware disassembly and heterogeneous system integration for customers.
  • Performance Metrics

    Main chip

    XCZU47DR

    Size

    90mm * 80.5mm

    Expand memory

    PS DDR4 64-bit

    PL DDR4 32-bit

    Storage

    Nor Flash 1Gbit *2

    eMMC

    PS eMMC 32 GB

    Indicator light

    INIT_B and DONE, two status indicator lights

    PS_ERR_OUT and PS_ERR_STATUS: two status indicator lights

    Board power supply

    ● The baseboard supplies 12 V power (via connector J4)

    Power consumption

    ● 60W (actual measured value, depending on the application)

    Ambient temperature requirements

    ● Operating temperature: -40°C to 110°C

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    Communication application scenarios

    • 5G and LTE Wireless technology: via Zynq RFSoC , wireless infrastructure manufacturers can achieve significant reductions in board footprint and power consumption, which are critical for the advancement of next-generation communications.
    • Satellite communication: Designers can, by implementing in… Zynq UltraScale+ RFSoC Use directly in Chinese RF Sampling, high flexibility, reconfigurable logic, and software programmability enable the development of high‑speed, multifunctional instruments for signal generation and signal analysis.

     

     

     

     

     

     

     

    Radar Application Scenarios

                       · Radar signal processing and data links: featuring 8 Channel ADC and 8 Channel DAC , which can meet broader application requirements and enable low‑latency transmission and reception in early‑warning scenarios, delivering optimal response times.

     

     

     

     

     

     

          

     

     

     

     

    Testing and Measurement Application Scenarios
    · Designers can leverage RF sampling, highly flexible and reconfigurable logic, and software programmability within the Zynq UltraScale+ RFSoC to build high‑speed, multifunctional instruments for signal generation and signal analysis.

     

  • Serial number

    Product Name

    Product model

    Accessories

    Quantity

    Unit

    Note

    1

    RFSOC ZU47DR Core Board

    IW-RFSOM-47DR

    47DR Core Board

    1

    pieces

     

    Cooling fan

    1

    pieces

    Installed

    Data USB drive

    1

    portion

     

    2

    KU115 Evaluation Carrier Board

    IW-RFSOC_KU115

    KU115 carrier board

    1

    pieces

     

    Cooling fan

    1

    pieces

    Installed

    SD card

    1

    pieces

     

    Ethernet cable

    1

    pieces

     

    Type-C cable

    1

    pieces

     

    Power adapter

    1

    pieces

     

    Power adapter cable

    1

    pieces

     

    SMA cable

    8

    pieces

     

    Data USB drive

    1

    portion

     

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