AMD

Mercury's solutions tackle on-platform workloads at the edge by leveraging AMD’s most advanced technologies. The rugged boards and subsystems power a wide variety of critical defense and intelligence programs and incorporate the latest open architecture standards, such as OpenVPX and SOSA. Many boards integrate high-speed A/D and D/A blocks for low-latency signal processing.

  • Article: The Inside Story on Direct RF Data Converters

    Article: The Inside Story on Direct RF Data Converters

    This article discusses a new generation of “Direct RF” data converters, revolutionizing system architectures across a wide class of platform applications and radio bands.

    Read Now
  • White Paper: The Need for Direct RF in an Evolving Defense Environment

    White Paper: The Need for Direct RF in an Evolving Defense Environment

    This white paper describes next generation direct RF to redefine what’s possible in radar and software radio, from jamming to electronic intelligence to significant bandwidth performance.

    Read Now
  • RF Signal Acquisition Demo

    RF Signal Acquisition Demo

    Mercury supports the most critical application development with signal chain solutions from a single vendor that can be integrated with interchangeable tuners, data acquisition cards and recorder...

    Read Article
  • ×

    Sign up for our newsletter to get new content each month!

    First Name
    Last Name
    Company
    !
    Thank you for signing up!
    Error - something went wrong!
  • Delivering RF signal processing solutions to the edge with MOSA

    Delivering RF signal processing solutions to the edge with MOSA

    Today's pace of technology development means the traditional approach of custom-designed modules and subsystems is too slow, but Modular Open System Architecture (MOSA) approaches can deliver on...

    Read Article
  • White Paper: Designer's Journey: Navigating the Transition to AMD Versal™ Adaptive SoC

    White Paper: Designer's Journey: Navigating the Transition to AMD Versal™ Adaptive SoC

    Optimized to solve the most advanced radar, cognitive EW and AI challenges, learn how Mercury ’s ACAP-engineer-to-engineer designer’s journey is intended to assist other development teams.

    Read Now
  • White Paper: A Generational Leap in Edge Computing with the Versal ACAP

    White Paper: A Generational Leap in Edge Computing with the Versal ACAP

    SWaP-optimized and ruggedized for operation in harsh environments, learn how Mercury ’s ACAP-based solutions will bring new levels of application capability to the tactical edge.

    Read Now
  • White Paper: COTS Software Defined Radio for 5G Development

    White Paper: COTS Software Defined Radio for 5G Development

    COTS Software Defined Radio for 5G Development

    Read Now
  • White Paper: Strategies for Deploying AMD’s Zynq UltraScale+ RFSoC

    White Paper: Strategies for Deploying AMD’s Zynq UltraScale+ RFSoC

    AMD's new RFSoC brings a powerful and unique solution for addressing some of the most demanding requirements of high bandwidth and high channel count systems.

    Read Now
  • White Paper: Development Tactics & Techniques For Small Form Factor RF Signal Recorders

    White Paper: Development Tactics & Techniques For Small Form Factor RF Signal Recorders

    Development Tactics and Techniques for Small Form Factor RF Signal Recorders

    Read Now
  • White Paper: The New SiP Device Drives a Leap in RF Edge Processing

    White Paper: The New SiP Device Drives a Leap in RF Edge Processing

    Learn about radar and EW RF system design bottlenecks and how Mercury's new Direct RF system-in-package (SiP) multi-chip module technology solves this problem.

    Read Now
  • Why SOSA® is driving the future course of embedded military electronics

    Why SOSA® is driving the future course of embedded military electronics

    You can’t open an industry magazine or visit a website without seeing news about SOSA, open standards and their adoption. Read more about SOSA - its origins, benefits and what's next.

    Read Article
  • loading
    Loading More...