OSS wins $400K contract for missile defense simulation with US contractor

Summary

OSS has received a $400,000 contract from a major U.S. defense contractor to aid missile defense modeling and simulation for the U.S. Missile Defense Agency. The system will feature OSS's 4UP Max platform equipped with eight Nvidia RTX PRO 6000 Blackwell GPUs, marking the first time this configuration is deployed with the customer. This setup is tailored for intensive computation tasks that demand high GPU density, power, and cooling. In 2026, OSS has also secured additional contracts to support U.S. Department of Defense intelligence and reconnaissance programs, further underscoring their involvement in defense applications.

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$OSS$NVDA

Analysis

OSS: One Stop Systems, Inc. designs and manufactures ruggedized high-performance computing systems, high-speed fabrics, and storage solutions optimized for edge applications in AI/ML, sensor processing, and autonomy, with emphasis on defense and commercial customers. The company has expanded its defense business through multiple contracts in 2026 supporting intelligence and reconnaissance platforms. In this news, OSS secured a contract to supply its 4UP Max platform configured with Nvidia Blackwell GPUs for missile defense modeling and simulation. Nvidia: NVIDIA develops graphics processing units and AI computing technologies, including the RTX PRO 6000 Blackwell series GPUs built on the Blackwell architecture for professional workloads such as AI, simulations, and visual computing. These GPUs feature high memory capacity and performance optimized for dense, power-intensive deployments. The news highlights the first customer deployment of eight RTX PRO 6000 Blackwell GPUs in OSS’s 4UP Max platform for defense simulation tasks. Defense Applications: OSS has secured additional contracts in 2026 to deliver rugged compute and storage systems supporting U.S. Department of Defense intelligence and reconnaissance programs. Technology Integration: NVIDIA’s Blackwell architecture GPUs are being integrated into edge computing platforms for high-density, compute-intensive simulation and AI workloads in defense environments.

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