• Become a member
  • Log In
The Institution of Electronics
  • Home
  • About us
    • Our Objectives
    • Our History
    • Governance of the Institution
  • The Electron Magazine
    • 2024
      • 2024 – Winter
      • 2024 – Spring
      • 2024 – Summer
      • 2024 – Autumn
    • 2025
      • 2025 – Winter
      • 2025 – Spring
      • 2025 – Summer
      • 2025 – Autumn
    • 2026
      • 2026 – Winter
  • Members
    • Membership Grades and Fees
    • Members’ Resources
      • The Electron Newsletter
      • The Archives
  • Education and Projects
    • National Electronics Competition
    • Student Members’ Projects
    • Arkwright Engineering Scholarships
  • News
  • Contact Us
  • Menu Menu
Uncategorised

SoC FPGA advances wideband RF processing

Altera is now sampling its Agilex 9 Direct RF AGRW039 wideband SoC FPGA for aerospace, defense, and communication systems. According to Altera, the device delivers a 40% increase in compute capability per square millimeter. It also provides 45% greater logic and DSP density than the previous generation and supports DDR5 and LPDDR5 memory technologies.

With integrated 64-Gsample/s wideband RF and increased compute and memory resources, the programmable device eliminates the need for multichip designs and enables advanced beamforming, radar, and data cube processing. The AGRW039 provides high-bandwidth signal capture and generation, allowing customers to scale performance while maintaining design flexibility.

Agilex 9 Direct RF SoC FPGAs combine high-speed data converters, programmable logic, and processing elements in a single package. The integrated architecture helps reduce system complexity and power consumption for wideband RF applications that require real-time performance.

Production silicon and development kits for the Agilex 9 Direct RF AGRW039 are expected to be available in Q3 2026.

Agilex 9 Direct RF series

Altera

The post SoC FPGA advances wideband RF processing appeared first on EDN.

10 June 2026
http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png 0 0 whdsolutions http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png whdsolutions2026-06-10 21:44:582026-06-10 21:44:58SoC FPGA advances wideband RF processing

Latest news

  • Analog uncertainty-aware design: How it replaces Monte Carlo with certifiable yield intelligence11 August 2026 - 16:31
  • Automotive low side output switch architecture suitable for 8 to 48 volt buses and beyond11 August 2026 - 13:26
  • Inference 2.0: How enterprise AI is reshaping AI system architectures11 August 2026 - 07:19
  • Dissecting third-party camera batteries, part 2: Swelling10 August 2026 - 14:00
  • Component and layout rules for USB-C, PD, and CMTI10 August 2026 - 07:53
  • Bear on a power pole7 August 2026 - 13:46
  • Why software-defined systems require a dynamic data layer7 August 2026 - 10:42
  • Paper-based passives show impact of re-thinking substrate6 August 2026 - 16:22
  • Drone bans harm customers and don’t actually close the door6 August 2026 - 13:20
  • BMICs enable scalable battery monitoring6 August 2026 - 04:16
IOE LOGO 2

Become a member

click here

Become a member

click here

Become a subscriber

click here

Become a sponsor

click here

© Copyright - The Institution of Electronics | Website by WHD Solutions
  • Link to LinkedIn
  • Link to Facebook
  • Link to X
Link to: NVIDIA chip powers local AI workloads Link to: NVIDIA chip powers local AI workloads NVIDIA chip powers local AI workloads Link to: TO-247 SiC package boosts high-voltage isolation Link to: TO-247 SiC package boosts high-voltage isolation TO-247 SiC package boosts high-voltage isolation
Scroll to top Scroll to top Scroll to top