Lynx to Feature Advanced MOSA and Edge AI Demonstrations and Lead Cyber Resilience Panel at the 2026 MOSA Industry and Government Summit
Interactive Demonstrations at Booth No. 423 Highlight Synthetic Flight Displays, EO/IR Camera Control, and Joint
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SAN JOSE, Calif., Sept. 16, 2026 (GLOBE NEWSWIRE) — Lynx, a leader in safe and secure software platforms for mission-critical edge systems, today announced it will showcase interactive technology demonstrations highlighting secure, deterministic computing at the edge—from AI and graphics to real-time and mixed-criticality workloads, during the 2026 MOSA Industry and Government Summit at booth No. 423. During the summit, Lynx experts will also lead an industry panel on achieving cyber resilience through open systems architecture.
Featured Interactive Demonstrations
Project leaders who oversee edge deployments in aerospace, defense and rugged industrial settings need to control critical workloads, deploy graphics and AI where they perform best, and build a trusted path from development and simulation to mission deployment. Visitors to the Lynx booth can view hands-on demonstrations featuring Lynx software, including the newly announced Lynx RenderCore, executing mixed-criticality and AI workloads on modern hardware platforms:
- Synthetic Primary Flight Display (PFD) Demo: Consolidate mission-critical cockpit workloads.
- Visitors will see how Lynx, running on Intel Tiger Lake, enables superior next-generation cockpit display performance while cutting development costs through flexible software deployment across CPUs, GPUs, or both, for maximum flexibility and choice. See how to securely consolidate mixed-criticality workloads on a single ruggedized unit with heterogeneous operating environments, without sacrificing performance or safety certification.
- EO/IR Camera Control Demo: Turn sensor data into real-time mission awareness.
- This demo will show how Lynx, running on Intel Tiger Lake, can support critical defense and surveillance operations that require situational awareness and live payload control. See how live video streams, thermal imaging, and AI processing integrate seamlessly into a single, high-reliability mission display built for rugged field environments.
- Helicopter Emergency Stopping Demo: From AI model to trusted deployed control.
- In partnership with Ansys, and running on Intel Tiger Lake, this demo uses a Helicopter Emergency Stopping scenario to show how engineering teams can safely design, simulate, verify and deploy AI-driven controls. Discover how to dramatically accelerate time-to-market by catching AI failures early in digital simulation and automatically generating verifiable, field-ready software.
- Next-generation Avionics Demo: Faster modernization and lower lifecycle integration cost
- Collins Aerospace will present an integrated MOSA ecosystem demo in booth 523. This demonstration showcases 15 MOSA use cases utilizing Collins’ open-systems building blocks, including ARINC661 for cockpit display interoperability, the FACE Technical Standard for portable software components, and modular data-distribution services to enable seamless integration across the architecture. LynxOS-178, is a foundational element of Collins avionics products, including the air vehicle computer (AVC) and the Collins MFD-268.
Panel Session Overview
Topic: Achieving Cyber Resilience Through Modular Open Systems Architecture (MOSA)
When: Sept. 22, 2026, 2:30 p.m. ET
Where: Gaylord National Resort & Convention Center (Baltimore 5 Room)
As defense and aerospace systems grow more software-defined and interconnected, cybersecurity can no longer be treated as a perimeter function. Modular Open Systems Architecture offers a path toward building security directly into system architecture through strong partitioning, modular design, and controlled integration of components. Panelists will discuss how separation kernels, virtualization, and modular software frameworks allow safety-critical, security-critical, and general-purpose applications to coexist while maintaining strong boundaries between them.
Grounded in real-world examples from aerospace and defense programs, the discussion will also explore how modular architectures enable faster security patching, technology refresh, and algorithm upgrades without requiring a full system redesign. Additional topics include securing heterogeneous compute platforms (CPU/GPU), managing supply-chain risk through component modularity, and enabling zero-trust architectural approaches in mission systems.
Panelists:
- Moderator: Ethan Salehi, Technical Account Manager, Lynx
- Guilherme Goretkin, Principal Engineer for Safety and Embedded Software, Ansys (part of Synopsys)
- Trey Franklin, Senior Embedded Engineer and Team Lead, DESE Research
- Mohamed Eladl, Chief Executive Officer and Co-Founder, Metavonics
- Doug Britton, Executive Vice President and Chief Strategy Officer, RunSafe Security
To learn more about how Lynx delivers MOSA-compliant systems with lower certification risk and zero vendor lock-in:
- Visit Lynx experts at Booth 423. To register for the summit, visit https://events.techconnect.org/MOSA_2026/register.html
- Gain insights and best practices on how to deploy safe and secure AI at the edge, through the recently unveiled Closing the AI Deployment Gap Initiative
- Read about the principles Lynx and other industry leaders believe will define the next phase of AI at the edge, in the AI Deployment Gap Manifesto
About Lynx
Lynx delivers a safe, secure, and modular software platform for edge computing in aerospace, defense, industrial, and autonomous mission-critical systems. Purpose-built for real-time, mixed-criticality environments, Lynx enables CPU- and GPU-based workloads, including AI, to coexist without interference on a single mission computer. Its MOSA-aligned architecture reduces certification scope, accelerates deployment, and sustains systems across 10- to 30-year lifecycles. Backed by decades of proven deployment on the world’s most demanding programs, Lynx enables engineers to build, certify, and deploy advanced mission-critical and AI-enabled applications across highly regulated industries. Visit www.lynx.com to learn more.
Lynx and MOSA.ic product names are trademarks of Lynx Software Technologies, Inc. Other brand or product names are registered trademarks or trademarks of the respective holders.
Media Contact:
Lynx@BOCAMarketing.com



