Suppliers: VPX Single Board Computers

Wolf Advanced Technology

Rugged High-Performance Computing & Video I/O Modules: 6U and 3U VPX, XMC, and VNX+ for Defense Applications

Extreme Engineering Solutions, Inc

Rugged Systems, FPGA Modules, Ethernet Switches & SBCs for Military and Defense Applications

Aitech

Industry-Leading Rugged Embedded Computing Solutions for Harsh Military & Aerospace Applications

Brandywine Communications

Advanced Precision Timing and Frequency Synchronization Solutions for Mission-Critical Networks and Systems

EIZO Rugged Solutions

High-Performance Video Graphics, GPGPU, AI/ML Processing & Display Solutions for Mission Critical Environments

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Products

15 Cutting-edge Solutions
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VPX3U-THOR-SBC (WOLF-16T1)

3U VPX computing module with NVIDIA IGX Thor™ GPU for defense AI & mission computing

3U VPX computing module with NVIDIA IGX Thor™ GPU for defense AI & mission computing
The VPX3U-THOR-SBC (WOLF-16T1) is a rugged 3U VPX computing module built for next-generation defense... ...the VPX3U-THOR-SBC provides deterministic performance and mission endurance under −40 °C to +85...
VPX3U-THOR-CX7-PAY (WOLF-16TZ)

3U VPX AI payload module with NVIDIA IGX Thor™ GPU & ConnectX®-7 SmartNIC for C5ISR systems

3U VPX AI payload module with NVIDIA IGX Thor™ GPU & ConnectX®-7 SmartNIC for C5ISR systems
...OSA-aligned 3U VPX module is optimized for embedded defense applications where reliability and...
VPX3U-THOR-CX7-SBC (WOLF-16T5)

3U VPX SBC with NVIDIA IGX Thor™ GPU & ConnectX®-7 SmartNIC for defense AI workloads

3U VPX SBC with NVIDIA IGX Thor™ GPU & ConnectX®-7 SmartNIC for defense AI workloads
The VPX3U-THOR-CX7-SBC (WOLF-16T5) delivers secure, high-performance embedded computing for military...
VPX3U-THOR-CX7-FGX2-SBC (WOLF-16T0)

3U VPX SBC with NVIDIA IGX Thor™, ConnectX®-7 SmartNIC & FGX2 video I/O for ISR systems

3U VPX SBC with NVIDIA IGX Thor™, ConnectX®-7 SmartNIC & FGX2 video I/O for ISR systems
...-THOR-CX7-FGX2-SBC (WOLF-16T0) integrates NVIDIA® IGX Thor™, ConnectX®-7 SmartNIC networking,... ...-THOR-CX7-FGX2-SBC employs WOLF’s advanced thermal system for efficient heat dissipation over 100...
XPedite7870

Rugged VPX Single-Board Computer

Rugged VPX Single-Board Computer
...gh-performance single-board computer (SBC) designed for rugged defense and aerospace systems. Built... ...S) is a robust single-board computer engineered to deliver high-performance computing in harsh...
XPedite7683

3U VPX Module | 32 GB of DDR4 | XMC Support | SecureCOTS™ | Intel® Xeon® D-1500 Processor-Based

3U VPX Module | 32 GB of DDR4 | XMC Support | SecureCOTS™ | Intel® Xeon® D-1500 Processor-Based
...3U OpenVPX™, single board computer based on the Intel® Xeon® D-1500 family of processors. The...
XPedite7677

3U VPX-REDI Module | Dual 10GbE & Kintex® UltraScale™ FPGA | Intel® Xeon® D-1500 Family

3U VPX-REDI Module | Dual 10GbE & Kintex® UltraScale™ FPGA | Intel® Xeon® D-1500 Family
...lti-processing single board computer ideal for ruggedized systems requiring high-bandwidth...
U-C850x

Low-SWaP 3U VPX SBC with Intel 11th Gen CPU & integrated GPU

Low-SWaP 3U VPX SBC with Intel 11th Gen CPU & integrated GPU
...x Series of 3U VPX single-board computers is based around the Intel Tiger Lake UP3 CPU and also...
U-C8770

High-performance 3U VPX SBC with Intel Xeon-D CPU & integrated FPGA

High-performance 3U VPX SBC with Intel Xeon-D CPU & integrated FPGA
The U-C8770 3U VPX single-board computer is based around the Intel Xeon-D 1500 series CPU and also...
U-C9140

SOSA-aligned 3U VPX SBC with PowerPC processor & FACE-conformant OS

SOSA-aligned 3U VPX SBC with PowerPC processor & FACE-conformant OS
...nVPX-compliant single-board computer is based around the NXP QorIQ T1/T2 Series SoC, featuring...
C878

Cybersecure 3U VPX SBC with Intel Xeon D or Pentium D CPU

Cybersecure 3U VPX SBC with Intel Xeon D or Pentium D CPU
The C878 3U VPX single-board computer provides Intel Xeon-D 1500 series or Pentium D CPU options,...
VPX Timing Card

SOSA-aligned 3U VPX timing module for all PNT requirements

SOSA-aligned 3U VPX timing module for all PNT requirements
...ications’ 3U VPX Assured Position, Navigation & Timing (aPNT) Radial Clock module is designed for...
Condor AGX-ORIN64-HPC

Embedded 3U VPX Single Board Computer with NVIDIA Jetson AGX Orin 64GB

Embedded 3U VPX Single Board Computer with NVIDIA Jetson AGX Orin 64GB
...is a rugged 3U VPX high-performance single board computer (SBC) designed for both autonomous and...
Condor AGX-IOX

Rugged SOSA-aligned SBC based on NVIDIA Jetson AGX Orin

Rugged SOSA-aligned SBC based on NVIDIA Jetson AGX Orin
...GX-IOX is a 3U VPX high-performance SBC based around the NVIDIA Jetson AGX Orin system-on-module and...
Condor GR5-A2000

OpenVPX 3U Graphics & GPGPU Card

OpenVPX 3U Graphics & GPGPU Card
The Condor GR5-A2000 is a rugged OpenVPX 3U form factor card based on NVIDIA Ampere architecture and...

VPX / OpenVPX Single Board Computers

Sarah Simpson

Updated:

Introduction to VPX and OpenVPX Single Board Computers

VPX and OpenVPX represent the latest evolution in high-performance embedded computing standards, defining the architecture for modern military VPX boards and rugged single board computer systems. Defined by the VITA (VMEbus International Trade Association), VPX (VITA 46) introduced high-speed serial interconnects and advanced backplane architectures designed to meet the extreme data throughput and environmental demands of modern military systems. OpenVPX (VITA 65) formalized the interoperability rules, ensuring that modules from multiple vendors can integrate seamlessly within a standardized architecture.

VPX SBC by WOLF Advanced Technology

VPX3U-THOR-SBC (WOLF-16T1) from WOLF Advanced Technology

In defense computing environments, where processing, networking, and sensor fusion must occur under mission-critical conditions, the VPX single board computer provides the modular foundation that supports rapid upgrades, long service life, and scalable system performance.

Evolution from Legacy Architectures

VPX emerged as the necessary successor to VMEbus and CompactPCI. While these legacy architectures offered impressive reliability, their parallel bus topologies could no longer sustain the multi-gigabit serial data rates demanded by today’s sensors, AI-enhanced applications, and networking requirements. VPX was also driven by the necessity for a Commercial Off-the-Shelf (COTS) standard capable of leveraging high-speed serial fabrics like PCI Express (PCIe), Ethernet, and Serial RapidIO.

By replacing shared parallel backplanes with point-to-point serial fabrics, VPX systems achieve higher bandwidth, lower latency, and improved fault isolation. This architectural leap enables true modular computing, allowing processing, I/O, and switching to evolve independently without redesigning the core platform.

Why VPX/OpenVPX Matters in Modern Defense Embedded Computing

Defense systems, from radar and electronic warfare (EW) suites to unmanned aerial vehicle (UAV) mission computers, require embedded processing that can keep pace with exponential increases in sensor data. VPX single board computer architectures offer a rugged, open, and scalable foundation capable of integrating heterogeneous processors, GPUs, and FPGAs within a compact, high-reliability form factor. The standardized 3U VPX computer and 6U VPX SBC options provide the flexibility necessary for diverse platforms.

This modularity directly supports long-term defense programs by allowing technology refresh without wholesale platform redesign. This approach significantly reduces lifecycle cost, accelerates deployment, and aligns perfectly with government mandates for interoperability and vendor competition.

VPX and OpenVPX Architecture

Core Technical Framework

VPX Computer by Aitech

U-C9140 OpenVPX-compliant single-board computer from Aitech

VPX defines the mechanical and electrical structure of modular computing cards using standardized form factors, most commonly 3U (100mm x 160mm) and 6U (233.35mm x 160mm), that slide into a high-speed backplane. The architecture employs multi-gigabit serial interconnects to facilitate low-latency communication between modules.

The VITA 46, 48, and 65 standards govern the backplane topology, connector design, and cooling approaches. Within an OpenVPX system, slots are defined by payload, switch, and data plane profiles, ensuring that each module performs a defined role within the networked system. Deterministic latency and signal integrity are central engineering challenges in demanding Intelligence, Surveillance, Reconnaissance (ISR) and C4ISR systems.

OpenVPX Extensions for Interoperability

OpenVPX (VITA 65) extends the VPX baseline by introducing detailed system interoperability rules. The standard defines how different slot and module profiles interconnect, providing a unified reference for system designers. This level of standardization, particularly the detailed backplane slot profiles, is crucial. It ensures multi-vendor interoperability and prevents the vendor lock-in that plagued previous architectures by defining explicit mechanical, electrical, and logical compatibility requirements. This significantly reduces integration risk and accelerates development cycles.

Hardware Design and Construction

Mechanical and Environmental Engineering

VPX Single Board Computer by EIZO Rugged Solutions

Condor AGX-IOX, a 3U VPX high-performance single board computer, from EIZO Rugged Solutions

Rugged OpenVPX boards are engineered for survival in extreme military environments, including high vibration, intense temperature swings, and severe electromagnetic interference (EMI). Ruggedization includes conformal coating, robust machined aluminum enclosures, and high-reliability connectors designed for demanding operational lifecycles.

Two primary cooling strategies dominate the ruggedized single board computer landscape:

  1. Conduction-cooled modules: Often mandated under the VITA 48.2 (REDI/CC) standard for sealed or airborne systems where active airflow is restricted.
  2. Air-cooled modules: Used for chassis with active ventilation in more benign or ground-based environments.

Electrical and Signal Integrity

The electrical design of VPX boards prioritizes both power stability and signal integrity. VITA 62 power supply modules deliver regulated, filtered power across the backplane, designed for MIL-STD-704 and MIL-STD-1275 compliance to handle vehicle power transients.

At data rates that now commonly reach 25 Gb/s (for 100GbE) and 32 Gb/s (for PCIe Gen 4/5) per lane, maintaining impedance control, minimizing crosstalk, and managing trace length differentials are critical. Advanced backplane materials and controlled-impedance connectors ensure the signal fidelity required for real-time applications such as radar processing and AI-based target recognition.

Processing and I/O Technologies

Modern military VPX processor systems integrate a wide spectrum of compute technologies. Intel Xeon, ARM, and PowerPC processors are the backbone of general-purpose processing, while GPUs and AI accelerators bring parallel performance for image analysis, deep learning, and ISR workloads. FPGA-enabled VPX cards deliver deterministic, ultra-low-latency performance for Digital Signal Processing (DSP) and EW applications.

Beyond the hardware, the ability to deploy secure virtualization and hypervisors on these modules is key, enabling multiple independent applications and operating systems (e.g., a hard RTOS and a Linux distribution) to run on a single physical VPX single board computer. This capability is vital for maximizing SWaP-C (Size, Weight, Power, and Cost) efficiency.

Software Environment and Security

Operating Systems and Middleware

VPX and OpenVPX modules rely on a combination of real-time operating systems (RTOS) such as VxWorks, Integrity, and LynxOS, as well as hardened Linux distributions. The software stack must guarantee deterministic behavior and strict task prioritization.

Middleware layers such as FACE (Future Airborne Capability Environment), DDS (Data Distribution Service), and CMOSS frameworks provide standardized data distribution and software portability. This allows mission applications to be upgraded or replaced without redesigning hardware, promoting system longevity and interoperability.

Security and Cyber Resilience

As defense computing becomes increasingly networked, cybersecurity is integral to the VPX system design. Features include secure boot, Trusted Platform Modules (TPM) for hardware authentication, and Hardware Root of Trust (HRoT) mechanisms that verify software integrity at startup. For defense engineering, the HRoT is directly tied to Supply Chain Risk Management (SCRM), ensuring the authenticity and integrity of all components from the start.

Partitioned architectures based on MILS (Multiple Independent Levels of Security) enforce data isolation between domains of differing classification, ensuring operational security even in contested cyber environments.

System Integration and Open Standards Compliance

MOSA, SOSA, and CMOSS Alignment

VPX and OpenVPX form the essential hardware foundation of the U.S. military’s open architecture initiatives. These initiatives, driven by the Modular Open Systems Approach (MOSA) mandate, provide a plug-and-play ecosystem that accelerates innovation.

  • SOSA Technical Standard: Defines module profiles for sensors, processors, and I/O interfaces that guarantee multi-vendor interoperability. Under this standard, the SOSA VPX processor and I/O cards are standardized to ensure functional compatibility across air, land, and sea platforms.
  • CMOSS Framework: Extends these principles to ground vehicles, enabling C4ISR and EW functions to share a single chassis. The CMOSS VPX processor is the consolidation point, improving SWaP efficiency and simplifying upgrades across the fleet.

These standards ensure that the interoperable VPX processor is now the backbone of modern military embedded computing, guaranteeing rapid technology refresh and long-term viability.

VPX & OpenVPX SBC Applications in Defense and Aerospace

VPX single board computers are now ubiquitous across defense domains:

  • Mission Computers and C4ISR Systems: Providing deterministic, real-time processing for command, control, and sensor fusion tasks.
  • Electronic Warfare (EW) and Radar Processing Platforms: Supporting ultra-low-latency signal processing and adaptive jamming on the 6U OpenVPX single board computer.
  • UAV and UGV Onboard Computing: Delivering compact, power-efficient processing for autonomy, navigation, and payload management via the 3U VPX single board computers.
  • Naval Combat and Sensor Fusion Systems: Integrating sonar, radar, and weapons systems into unified combat management networks.
  • Airborne ISR Payload Management and AI Acceleration: Enabling onboard analysis of multi-sensor data for situational awareness and rapid decision support.

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Aitech Unveils Rugged SBC for Advanced Space Computing

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CMOSS & SOSA Aligned Systems to Feature Secure Layer 3 Network Switching

Curtiss-Wright and Cisco have partnered to create a rugged 3U VPX module, reportedly the defense industry’s first designed for use with SOSA and CMOSS aligned systems

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As a result of delivering reliable, high-performance products and services for the aerospace and defense industries, EIZO Rugged Solutions has been awarded AS9100D certification

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EIZO Releases Rugged SOSA-Aligned VPX SBC

Based on the NVIDIA® Jetson AGX Orin™ system-on-module (SoM), EIZO Rugged Solutions’ new Condor AGX-ORIN64-HPC SOSA-aligned 3U VPX single-board computer (SBC) is built for C5ISR applications requiring AI-processing

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New Rugged Gigabit Ethernet Card for VPX & VME Systems

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