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Q8RFG3

Powerful Third Generation RFSoC SDR/Processor Card

Based on the original Q8RF, the Xiphos Q8RFG3 uses the third generation Zynq UltraScale+ RFSoCs (RF System-on-Chip) devices which add upgrades to the digitization portion of the architecture, the RF input bandwidth and the ability to synchronize multiple Q8RFG3s together for applications such as digital beam forming. These Zynq devices are highly integrated system-on-chip devices from AMD Xilinx that combine high-speed RF-class ADCs and DACs, programmable FPGA logic, and embedded ARM processors on a single chip.

This architecture enables direct RF sampling and real-time digital signal processing without the need for external data converters or complex analog front ends. By tightly coupling processing and conversion resources, RFSoCs significantly reduce system size, weight, power, and latency—making them ideal for advanced RF applications that demand high channel density, wide bandwidth, and low-latency signal chain control.

Xiphos has combined these RFSoC devices with its fault-tolerant space architecture that has been developed over more than two decades to ensure trouble-free operation in-orbit.

 

Q8RFG3 Applications and Use Cases for Advanced Space Missions

Why did we make our latest RF space processor? What do people do with it? In this video, Xiphos explores Q8RFG3 applications and use cases, offering a closer look at the mission needs driving onboard RF processing and the role it can play in enabling more capable spacecraft systems. Watch to learn how these capabilities can support your next mission.

Q8RFG3 RFSoC offers the following key features:

Model Q8RFG3
Environmental Characteristics
Temperature (operating) De-rated to -40 to +60 °C
Size 100 mm x 100 mm x 20 mm
Weight 200 g
Power (Typ.) 25-35 W @ 5-15 V
Memory
Memory
  • 4 GB PS LPDDR4 DRAM (with EDAC)
  • 4 GB PL DDR4 DRAM
  • 2x 256 MB QSPI Flash (NOR)
Storage 2x 128 GB eMMC
MPSoC
Model ZU48DR
Application Processing Unit Quad-core ARM Cortex A53 Application Processing Unit at up to 1.2 GHz
Real-Time Processing Unit Dual-core ARM Cortex-R5 @ 500 MHz
ADCs 8, each 5.0 GSPS max; 14-bit
RF Input Frequency, max 6 GHz
DACs 8, each 9.85 GSPS max; 14-bit
Decimation/ Interpolation 1x, 2x, 3x, 4x, 5x, 6x, 8x, 10x, 12x, 16x, 20x, 24x, 40x
System Logic Cells 930,000
CLB Flip Flops 850,000
CLB LUTs 425,000
DSP Slices 4,272
Model Q8RFG3
Control FPGA
  Microchip ProASIC3
Operating System
  Yocto Linux BSP (LTS distribution)
Bottom RF Mezzanine Connector
 
  • 8x Transmit + 8x Receive RF
  • Ext Ref Clock(s) In, Ref Clock Out
Bottom I/O Mezzanine Connector
 
  • 46x LVDS or 92x 1.8V GPIO, 39x 3.3V GPIO
  • 16x 28.21 Gbps GTY transceivers supporting PCIe Gen 3 & 100G Ethernet
  • 3x GTR transceivers supporting PCIe Gen 2 & SATA

Specific Use

The Q8RF family is ideal for space applications that require high performance, wide bandwidth, multi-channel SDR payloads. It is often used for applications such as broadband communications, Internet of Things (IoT), RF sensing & SIGINT, beam-forming, and Synthetic Aperture Radar (SAR).

Did you know

In addition to our standard daughterboards, we offer application-specific development integrating our powerful Q-Card processors with the interfacing options and application-specific electronics you require. Contact our team to learn more about customization.

Explore Custom Solutions

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