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SDR Based on ZU48DR RFSoC

SDR Based on ZU48DR RFSoC

iG-G60-SDR-8T8R

  • High sample rate analog-to-digital converter and digital-to-analog converter.
  • High speed data communication between GNU radio from host PC to RFSoC through PCIe and vice versa
  • Supports capturing ADC input data to the Host PC’s SSD and transmitting the recorded data to the card for reconstruction into an analog signal via the DAC.
  • GNU Radio–enabled software stack offering a complete DSP ecosystem
  • Support for advanced protocol and research toolkits, expanding capabilities into wireless, satellite, TV broadcast, and IoT domains.
  • User-friendly control framework to configure frequencies, channels, and signal chains through host drivers.

RFSoC ADC/DAC Specifications & Signal Processing Capabilities

  • Supports up to 8 independent channels for simultaneous signal conversion with 14 bit resolution, providing high precision and dynamic range from each converter.
  • ADC sampling up to 5 GSPS with a tuning range from near DC to 2.5 GHz for wideband signal acquisition.
  • DAC sampling up to 10 GSPS with a tuning range from near DC to 5 GHz for wideband signal generation
  • Support for multi-tile synchronization (MTS) with SYSREF inputs to enable deterministic phase and timing alignment across multiple ADC/DAC tiles
  • Programmable digital signal processing feature such as interpolation and decimation directly within converter

Host Interface

  • PCIe Gen 3, x8 lane with a total maximum theoretical bandwidth of 64Gbps.
  • Full-Height Half-Length PCIe form factor, suitable for integration into Host PC systems.
  • Linux OS (above 20.04), 16GB RAM minimum
  • CPU 8 Core Minimum.

Software Feature

  • Supports configuring input and output frequencies directly through host-side drivers.
  • Enables management of multiple input and output channels with flexible control.
  • GNU Radio–Based Signal Processing Support
    The system leverages GNU Radio to implement a wide range of standard and custom DSP functions
  • Supports capturing ADC input data to the Host PC’s SSD and transmitting the recorded data to the card for reconstruction into an analog signal via the DAC.
  • Core Signal Processing Capabilities of Filtering, Digital Modulation, Analog Modulation, Synchronization, Channel Coding, Equalization and Utility DSP Tools
  • The system works with several GNU Radio modules such as gr-digital for simple digital communication, gr-ieee802-11 for Wi-Fi testing, gr-ieee802-15-4 for Zigbee.
  • User-friendly graphical interface to design and visualize flowgraphs through drag-and-drop blocks
  • The system supports easy scripting and software integration, using Python to build and control flowgraphs for quick testing and automation, C++ to develop high-performance DSP blocks, and gr_modtool to create custom blocks and extend functionality.

Custom Design Sevices

iWave provides end-to-end ODM services, from concept to production, leveraging our in-house expertise in hardware design, software development, FPGA design, and mechanical enclosure design. The FPGA expertise at iWave includes RTL, high speed bus interface and transceivers, storage, video, networking, and high-speed ADC/DAC with the entire product lifecycle, from initial concept to mass production and ongoing support.

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