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Medical Device Software

Software engineering for connected and regulated medical devices.

RTG supports medical-device teams with embedded platforms, Linux and Windows IoT software, cybersecurity hardening, secure updates, verification evidence, and 510(k)-supporting documentation.

Engineering Support

Build device software that product, quality, cybersecurity, and regulatory teams can review.

RTG helps with embedded medical-device platforms, secure connectivity, diagnostics, cybersecurity controls, release verification, and technical evidence. RTG provides engineering and documentation support within customer-led quality, verification, and regulatory processes.

Experience Areas

  • Linux and Windows IoT medical-device software
  • NVIDIA Jetson, NXP i.MX, Xilinx Zynq UltraScale+ MPSoCs, PetaLinux, QNX, and hardened Ubuntu
  • Cybersecurity hardening, secure updates, SBOMs, vulnerability tracking, and release evidence
  • 510(k)-supporting software and cybersecurity documentation in customer-led processes

Medical Device Context

Practical experience with surgical and diagnostic device software.

510(k)-Cleared Tools

Team experience includes engineering support for kidney stone removal tools that reached 510(k) clearance.

Diagnostic Scanning

Experience includes software-driven cancer scanning workflows for skin and breast cancer applications.

Cybersecurity Evidence

Threat models, SBOMs, vulnerability tracking, secure-update evidence, verification procedures, RCA, and technical documentation.

Platform Modernization

Production images, package reduction, boot-time improvement, release automation, update reliability, and integrity verification.

Representative Outcomes

Modernization work that reduces deployment and cybersecurity risk.

Medical-device platforms often remain in service for years. RTG helps modernize those systems while preserving critical behavior: reducing unnecessary packages, improving boot behavior, controlling updates, automating integrity checks, and making evidence easier to review.

Prior Engineering Outcomes

  • Reduced unnecessary operating-system packages by approximately 75%
  • Reduced embedded-device boot time by roughly two-thirds
  • Implemented repeatable production-image and field-update workflows
  • Automated binary, image, package, and partition integrity verification
  • Produced SBOM, cybersecurity, verification, and root-cause documentation