Asia-Pacific VPX SBC Market by Form (Standard and Custom), by Rack Unit (3U and 6U), by Processor (Intel-Based Architecture, NXP Power Architecture, and ARM Architecture), by Processing Power (Low, Medium, and High), by Memory Storage (0-16 GB, 16-32 GB,
Description
The Asia-Pacific VPX SBC Market size was valued at USD 56.9 million in 2024, and is predicted to reach USD 147.1 million by 2030, at a CAGR of 16.0% from 2025 to 2030.
Rising investments in the defense sector to tackle regional security challenges heightened the need for VPX SBCs, by incorporating them into advanced systems such as radar, avionics, and unmanned platforms. These systems require high-performance computing for real-time data processing, enhanced situational awareness, and improved operational effectiveness. The deployment of VPX SBCs plays a crucial role in advancing defense technologies, driving market growth by addressing the evolving military need for secure, resilient, and scalable computing solutions.
However, the high costs of developing and integrating VPX SBCs into complex systems present a significant barrier, especially for less-developed countries in the Asia-Pacific region. This financial challenge limits the widespread adoption of these advanced technologies across various industries, restraining market expansion.
On the contrary, the introduction of 5G and AI-enabled SBCs presents substantial growth opportunities for the VPX SBC market. With 5G’s demand for high-speed, low-latency processing and AI’s ability to handle complex tasks such as real-time data analysis and decision-making, VPX SBCs are well-positioned to support these advanced applications. This demand is driving the need for reliable, scalable solutions in industries such as telecommunications, defense, and aerospace. The convergence of 5G and AI technologies offers a promising growth path for VPX SBCs as industries seek powerful, efficient platforms for next-generation technologies. For example, Particle’s launch of Tachyon, the first 5G AI-enabled SBC featuring a Qualcomm Snapdragon chipset, addresses the growing need for AI-driven edge solutions. This innovation is expected to boost interest in VPX SBCs, driving market growth and technological advancements.
China Holds the Dominant Market Share in Asia-Pacific Region
China’s growing adoption of Industrial IoT technologies across industries such as manufacturing, transportation, and energy is significantly boosting the demand for VPX SBCs. These advanced systems are essential for handling complex, real-time computing tasks in high-performance environments. According to Asian Insiders, China is shifting from a cost-driven manufacturing hub to a leader in advanced industrial technologies, fueled by rapid progress in automation that propels market growth.
Segment Overview
The Asia-Pacific VPX SBC market is segmented on the basis of form, rack unit, processor, processing power, memory storage, switch fabric, cooling mode, application, and end-user.
• By form, the market is classified standard and custom.
• By rack unit, the market is divided into 3U and 6U.
• By processor, the market is divided into Intel-Based Architecture, NXP Power Architecture, and ARM Architecture.
• By processing power, the market is divided into low, medium, and high.
• By memory storage, the market is divided into 0-16 GB, 16-32 GB, 32-48 GB, 48-64 GB.
• By switch fabric, the market is divided into ethernet, infiniband, PCI express (PCI), serial rapidlo (SRIO), and other switch fabrics.
• By cooling mode, the market is divided into air-cooled, conduction-cooled, and other cooling modes.
• By application, the market is divided into radar processing, electronic warfare, signal processing, mission computing, and intelligence, surveillance and reconnaissance (ISR)
• By end-user, the market is classified into military, aerospace, industrial, and other end user.
Key Benefits
• The Asia-Pacific VPX SBC market report provides a quantitative analysis of the current market and estimations from 2025 to 2030. This analysis assists in identifying the prevailing market opportunities.
• The study comprises a comprehensive analysis of the trends, including current and future trends for depicting prevalent investment pockets in the market.
• The information related to key drivers, restraints, and opportunities and their impact on the Asia-Pacific VPX SBC market is provided in the report.
• The competitive analysis of the market players along with their market share in the Asia-Pacific VPX SBC market is provided in the report.
• The SWOT analysis and Porter’s Five Forces model are elaborated in the study.
• The value chain analysis in the market study provides a clear picture of the role of stakeholders.
Rising investments in the defense sector to tackle regional security challenges heightened the need for VPX SBCs, by incorporating them into advanced systems such as radar, avionics, and unmanned platforms. These systems require high-performance computing for real-time data processing, enhanced situational awareness, and improved operational effectiveness. The deployment of VPX SBCs plays a crucial role in advancing defense technologies, driving market growth by addressing the evolving military need for secure, resilient, and scalable computing solutions.
However, the high costs of developing and integrating VPX SBCs into complex systems present a significant barrier, especially for less-developed countries in the Asia-Pacific region. This financial challenge limits the widespread adoption of these advanced technologies across various industries, restraining market expansion.
On the contrary, the introduction of 5G and AI-enabled SBCs presents substantial growth opportunities for the VPX SBC market. With 5G’s demand for high-speed, low-latency processing and AI’s ability to handle complex tasks such as real-time data analysis and decision-making, VPX SBCs are well-positioned to support these advanced applications. This demand is driving the need for reliable, scalable solutions in industries such as telecommunications, defense, and aerospace. The convergence of 5G and AI technologies offers a promising growth path for VPX SBCs as industries seek powerful, efficient platforms for next-generation technologies. For example, Particle’s launch of Tachyon, the first 5G AI-enabled SBC featuring a Qualcomm Snapdragon chipset, addresses the growing need for AI-driven edge solutions. This innovation is expected to boost interest in VPX SBCs, driving market growth and technological advancements.
China Holds the Dominant Market Share in Asia-Pacific Region
China’s growing adoption of Industrial IoT technologies across industries such as manufacturing, transportation, and energy is significantly boosting the demand for VPX SBCs. These advanced systems are essential for handling complex, real-time computing tasks in high-performance environments. According to Asian Insiders, China is shifting from a cost-driven manufacturing hub to a leader in advanced industrial technologies, fueled by rapid progress in automation that propels market growth.
Segment Overview
The Asia-Pacific VPX SBC market is segmented on the basis of form, rack unit, processor, processing power, memory storage, switch fabric, cooling mode, application, and end-user.
• By form, the market is classified standard and custom.
• By rack unit, the market is divided into 3U and 6U.
• By processor, the market is divided into Intel-Based Architecture, NXP Power Architecture, and ARM Architecture.
• By processing power, the market is divided into low, medium, and high.
• By memory storage, the market is divided into 0-16 GB, 16-32 GB, 32-48 GB, 48-64 GB.
• By switch fabric, the market is divided into ethernet, infiniband, PCI express (PCI), serial rapidlo (SRIO), and other switch fabrics.
• By cooling mode, the market is divided into air-cooled, conduction-cooled, and other cooling modes.
• By application, the market is divided into radar processing, electronic warfare, signal processing, mission computing, and intelligence, surveillance and reconnaissance (ISR)
• By end-user, the market is classified into military, aerospace, industrial, and other end user.
Key Benefits
• The Asia-Pacific VPX SBC market report provides a quantitative analysis of the current market and estimations from 2025 to 2030. This analysis assists in identifying the prevailing market opportunities.
• The study comprises a comprehensive analysis of the trends, including current and future trends for depicting prevalent investment pockets in the market.
• The information related to key drivers, restraints, and opportunities and their impact on the Asia-Pacific VPX SBC market is provided in the report.
• The competitive analysis of the market players along with their market share in the Asia-Pacific VPX SBC market is provided in the report.
• The SWOT analysis and Porter’s Five Forces model are elaborated in the study.
• The value chain analysis in the market study provides a clear picture of the role of stakeholders.
Table of Contents
- 1. Introduction
- 1.1 Report Description
- 1.2 Research Methodology
- 1.2.1 Secondary Research
- 1.2.2 Data Analysis Framework
- 1.2.3 Market Size Estimation
- 1.2.4 Forecasting
- 1.2.5 Primary Research And Data Validation
- 2. Asia-pacific Vpx Sbc Market By Form
- 2.1 Overview
- 2.2 Standard Market
- 2.3 Custom Market
- 3. Asia-pacific Vpx Sbc Market By Rack Unit
- 3.1 Overview
- 3.2 3u Market
- 3.3 6u Market
- 4. Asia-pacific Vpx Sbc Market By Processor
- 4.1 Overview
- 4.2 Intel-based Architecture Market
- 4.3 Nxp Power Architecture Market
- 4.4 Arm Architecture Market
- 5. Asia-pacific Vpx Sbc Market By Processing Power
- 5.1 Overview
- 5.2 Low Market
- 5.3 Medium Market
- 5.4 High Market
- 6. Asia-pacific Vpx Sbc Market By Memory Storage
- 6.1 Overview
- 6.2 0-16 Gb Market
- 6.3 16-32 Gb Market
- 6.4 16-32 Gb Market
- 6.5 48-64 Gb Market
- 7. Asia-pacific Vpx Sbc Market By Switch Fabric
- 7.1 Overview
- 7.2 Ethernet Market
- 7.3 Infiniband Market
- 7.4 Pci Express (Pcie) Market
- 7.5 Serial Rapidlo (Srio) Market
- 7.6 Other Switch Fabrics Market
- 8. Asia-pacific Vpx Sbc Market By Cooling Mode
- 8.1 Overview
- 8.2 Air-cooled Market
- 8.3 Conduction-cooled Market
- 8.4 Other Cooling Modes Market
- 9. Asia-pacific Vpx Sbc Market By Application
- 9.1 Overview
- 9.2 Radar Processing Market
- 9.3 Electronic Warfare Market
- 9.4 Signal Processing Market
- 9.5 Mission Computing Market
- 9.6 Intelligence, Surveillance And Reconnaissance (Isr) Market
- 10. Asia-pacific Vpx Sbc Market By End-user
- 10.1 Overview
- 10.2 Military Market
- 10.2.1 Land Military
- 10.2.2 Naval Military
- 10.2.3 Airforce Military
- 10.3 Aerospace Market
- 10.4 Industrial Market
- 10.4.1 Transportation Industrial
- 10.4.2 Telecommunications Industrial
- 10.4.3 Healthcare Industrial
- 10.4.4 Energy Industrial
- 10.5 Other End User Market
- 11. Asia-pacific Vpx Sbc Market, By Country
- 11.1 Overview
- 11.2 Australia
- 11.2.1 Australia Vpx Sbc Market, By Form
- 11.2.2 Australia Vpx Sbc Market, By Rack Unit
- 11.2.3 Australia Vpx Sbc Market, By Processor
- 11.2.4 Australia Vpx Sbc Market, By Processing Power
- 11.2.5 Australia Vpx Sbc Market, By Memory Storage
- 11.2.6 Australia Vpx Sbc Market, By Switch Fabric
- 11.2.7 Australia Vpx Sbc Market, By Cooling Mode
- 11.2.8 Australia Vpx Sbc Market, By Application
- 11.2.9 Australia Vpx Sbc Market, By End-user
- 11.3 China
- 11.3.1 China Vpx Sbc Market, By Form
- 11.3.2 China Vpx Sbc Market, By Rack Unit
- 11.3.3 China Vpx Sbc Market, By Processor
- 11.3.4 China Vpx Sbc Market, By Processing Power
- 11.3.5 China Vpx Sbc Market, By Memory Storage
- 11.3.6 China Vpx Sbc Market, By Switch Fabric
- 11.3.7 China Vpx Sbc Market, By Cooling Mode
- 11.3.8 China Vpx Sbc Market, By Application
- 11.3.9 China Vpx Sbc Market, By End-user
- 11.4 India
- 11.4.1 India Vpx Sbc Market, By Form
- 11.4.2 India Vpx Sbc Market, By Rack Unit
- 11.4.3 India Vpx Sbc Market, By Processor
- 11.4.4 India Vpx Sbc Market, By Processing Power
- 11.4.5 India Vpx Sbc Market, By Memory Storage
- 11.4.6 India Vpx Sbc Market, By Switch Fabric
- 11.4.7 India Vpx Sbc Market, By Cooling Mode
- 11.4.8 India Vpx Sbc Market, By Application
- 11.4.9 India Vpx Sbc Market, By End-user
- 11.5 Japan
- 11.5.1 Japan Vpx Sbc Market, By Form
- 11.5.2 Japan Vpx Sbc Market, By Rack Unit
- 11.5.3 Japan Vpx Sbc Market, By Processor
- 11.5.4 Japan Vpx Sbc Market, By Processing Power
- 11.5.5 Japan Vpx Sbc Market, By Memory Storage
- 11.5.6 Japan Vpx Sbc Market, By Switch Fabric
- 11.5.7 Japan Vpx Sbc Market, By Cooling Mode
- 11.5.8 Japan Vpx Sbc Market, By Application
- 11.5.9 Japan Vpx Sbc Market, By End-user
- 11.6 South Korea
- 11.6.1 South Korea Vpx Sbc Market, By Form
- 11.6.2 South Korea Vpx Sbc Market, By Rack Unit
- 11.6.3 South Korea Vpx Sbc Market, By Processor
- 11.6.4 South Korea Vpx Sbc Market, By Processing Power
- 11.6.5 South Korea Vpx Sbc Market, By Memory Storage
- 11.6.6 South Korea Vpx Sbc Market, By Switch Fabric
- 11.6.7 South Korea Vpx Sbc Market, By Cooling Mode
- 11.6.8 South Korea Vpx Sbc Market, By Application
- 11.6.9 South Korea Vpx Sbc Market, By End-user
- 11.7 Indonesia
- 11.7.1 Indonesia Vpx Sbc Market, By Form
- 11.7.2 Indonesia Vpx Sbc Market, By Rack Unit
- 11.7.3 Indonesia Vpx Sbc Market, By Processor
- 11.7.4 Indonesia Vpx Sbc Market, By Processing Power
- 11.7.5 Indonesia Vpx Sbc Market, By Memory Storage
- 11.7.6 Indonesia Vpx Sbc Market, By Switch Fabric
- 11.7.7 Indonesia Vpx Sbc Market, By Cooling Mode
- 11.7.8 Indonesia Vpx Sbc Market, By Application
- 11.7.9 Indonesia Vpx Sbc Market, By End-user
- 11.8 Malaysia
- 11.8.1 Malaysia Vpx Sbc Market, By Form
- 11.8.2 Malaysia Vpx Sbc Market, By Rack Unit
- 11.8.3 Malaysia Vpx Sbc Market, By Processor
- 11.8.4 Malaysia Vpx Sbc Market, By Processing Power
- 11.8.5 Malaysia Vpx Sbc Market, By Memory Storage
- 11.8.6 Malaysia Vpx Sbc Market, By Switch Fabric
- 11.8.7 Malaysia Vpx Sbc Market, By Cooling Mode
- 11.8.8 Malaysia Vpx Sbc Market, By Application
- 11.8.9 Malaysia Vpx Sbc Market, By End-user
- 11.9 Taiwan
- 11.9.1 Taiwan Vpx Sbc Market, By Form
- 11.9.2 Taiwan Vpx Sbc Market, By Rack Unit
- 11.9.3 Taiwan Vpx Sbc Market, By Processor
- 11.9.4 Taiwan Vpx Sbc Market, By Processing Power
- 11.9.5 Taiwan Vpx Sbc Market, By Memory Storage
- 11.9.6 Taiwan Vpx Sbc Market, By Switch Fabric
- 11.9.7 Taiwan Vpx Sbc Market, By Cooling Mode
- 11.9.8 Taiwan Vpx Sbc Market, By Application
- 11.9.9 Taiwan Vpx Sbc Market, By End-user
- 11.10 Philippines
- 11.10.1 Philippines Vpx Sbc Market, By Form
- 11.10.2 Philippines Vpx Sbc Market, By Rack Unit
- 11.10.3 Philippines Vpx Sbc Market, By Processor
- 11.10.4 Philippines Vpx Sbc Market, By Processing Power
- 11.10.5 Philippines Vpx Sbc Market, By Memory Storage
- 11.10.6 Philippines Vpx Sbc Market, By Switch Fabric
- 11.10.7 Philippines Vpx Sbc Market, By Cooling Mode
- 11.10.8 Philippines Vpx Sbc Market, By Application
- 11.10.9 Philippines Vpx Sbc Market, By End-user
- 11.11 Vietnam
- 11.11.1 Vietnam Vpx Sbc Market, By Form
- 11.11.2 Vietnam Vpx Sbc Market, By Rack Unit
- 11.11.3 Vietnam Vpx Sbc Market, By Processor
- 11.11.4 Vietnam Vpx Sbc Market, By Processing Power
- 11.11.5 Vietnam Vpx Sbc Market, By Memory Storage
- 11.11.6 Vietnam Vpx Sbc Market, By Switch Fabric
- 11.11.7 Vietnam Vpx Sbc Market, By Cooling Mode
- 11.11.8 Vietnam Vpx Sbc Market, By Application
- 11.11.9 Vietnam Vpx Sbc Market, By End-user
- 11.12 Rest Of Asia-pacific
- 11.12.1 Rest Of Asia-pacific Vpx Sbc Market, By Form
- 11.12.2 Rest Of Asia-pacific Vpx Sbc Market, By Rack Unit
- 11.12.3 Rest Of Asia-pacific Vpx Sbc Market, By Processor
- 11.12.4 Rest Of Asia-pacific Vpx Sbc Market, By Processing Power
- 11.12.5 Rest Of Asia-pacific Vpx Sbc Market, By Memory Storage
- 11.12.6 Rest Of Asia-pacific Vpx Sbc Market, By Switch Fabric
- 11.12.7 Rest Of Asia-pacific Vpx Sbc Market, By Cooling Mode
- 11.12.8 Rest Of Asia-pacific Vpx Sbc Market, By Application
- 11.12.9 Rest Of Asia-pacific Vpx Sbc Market, By End-user
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