DRF2580 Direct RF FPGA System on Module Solutions

Direct RF — Ready Today for Tomorrow’s Needs

Wide spectrum direct RF digitization powered by Intel® Agilex® 9 SoC FPGA

In today’s complex communications environment, EW, radar, and SIGINT applications demand the low-latency, real-time processing that only direct RF solutions deliver. The edge-ready form factors based on the DRF2580 A/D and D/A direct RF module enable the direct processing and digitization of broadband signals to accelerate the critical timeline from data to decision.

Flexible Design for Faster Deployment

New technology designs can take years to develop, and custom designs utilizing those technologies extend development time even more. The unique system-on-module approach can be used in a range of form factors including custom, SOSA aligned 3U VPX, PCIe, and small-form factor enclosures, saving development time and reducing critical time to field use.

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DRF2580 system on module with heatsink

Intel-Based Direct RF SoC FPGA

64 GSPS
ADCs and DACs
Up to 32 GHz
Signal Bandwidth
4 CH
A/D and D/A converters
4+
Form Factors

Direct RF SoC FPGA Agilex 9 Portfolio

Direct RF SoC Agilex 9-based Family Tree
Specifications
  • Based on Intel Agilex 9 SoC FPGA AGRW014
  • Four 64 GSPS A/D and D/A converters with 10bit resolution
  • 32GHz Max Input Frequency 
  • 16 GB of DDR4 SDRAM
  • Ruggedized and conduction-cooled versions available
  • Includes a suite of IP functions and example applications
  • Board Support Package (BSP) for software development
  • Unique system-on-module approach enables deployment in custom form factors
  • LVDS connections to the Agilex 9 FPGA for custom I/O
  • GT connections for gigabit serial communication
  • FPGA Design Kit (FDK) for custom IP development

 

Explore Products

Model Form Factor SOSA View Datasheet
DRF2580 SOM  

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DRF5580 3U VPX Yes

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DRF7580 PCIe   Coming soon
DRF4580 SFF Box   Coming soon
DRF4580L SFF Module  

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4806 Carrier Design Kit  

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The Undoable is Now Doable

Groundbreaking direct RF technology with wide bandwidth and a low-latency A/D to D/A processing path allows larger portions of the RF spectrum to be efficiently captured, processed, and transmitted expediently at the edge.

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