1U Rugged Edge Server
5th / 4th Gen Intel® Xeon® Scalable Processors

GAP is a product family of Rugged aluminium Servers and Workstations designed for Edge applications that require a robust MIL-GRADE certified computing platform, suitable for operations in critical environments.
The GAP S8 Series Rugged Edge Servers are powered by single and dual socket 5th / 4th Gen Intel® Xeon® Scalable Processors, renowned for their robust architecture with enhanced AI acceleration and advanced security capabilities. Offering improved performance and efficiency, these servers are tailored to meet the demanding requirements of modern computing environments at the Edge. The integrated IPMI services support monitoring, control, and management functions, sending alarm notifications in case of critical events.
Built to meet MIL-STD-810F standards for temperature and shock resistance, as well as MIL-STD-167-1A standards for vibration tolerance, GAP Rugged Edge Servers ensure reliable operation under the challenging conditions often found at the Edge. Additionally, they can optionally be configured to comply with MIL-STD-461 standards for EMI/EMC, featuring MIL-grade connectors for either the power input or both the I/O connectors and power supply inputs.



Sealed conduction-cooled systems eliminate ingress risk but require thermal interface planning. Air-cooled systems offer higher compute density. This guide helps you choose based on your platform constraints.
Read MoreA practical framework for defence engineers to define the right operating temperature range, mechanical envelope, power budget, I/O requirements and qualification standards before issuing an RFQ.
Read MoreUnderstanding conducted and radiated emissions limits, CS101/CS114/RS103 test methods, and how to work with your rugged computer supplier to ensure EMC compliance from day one.
Read MoreAt GOMA Rugged Solutions, you talk to engineers - not salespeople. Tell us about your program requirements and we will identify the right platform, configuration and qualification path.