The increasing miniaturization of the system on module has resulted in optimum space and functionality, which is key requirements in portable and wireless devices.
According to TechSci Research report, “Global System on Module (SoM) Market – Industry Size, Share, Trends, Competition Forecast & Opportunities, 2028”. The Global System on Module (SoM) is anticipated to project robust growth in the forecast period with a CAGR of 9.25 % through 2028. Edge computing is a trend that has gained significant momentum in the SoM market. With the growing volume of IoT devices and the increasing need for real-time data processing and analysis, edge computing is becoming indispensable. SoMs, with their compact yet powerful processing capabilities, are well-suited for edge computing applications.
Edge computing involves processing data closer to the source, reducing latency and bandwidth usage, which is critical for applications like autonomous vehicles, industrial automation, and remote monitoring. SoM manufacturers are responding to this trend by developing modules equipped with powerful processors, hardware accelerators, and support for edge computing frameworks. These modules are designed to meet the demands of AI-based analytics, machine learning, and real-time decision-making at the edge. The implications of the proliferation of edge computing in the SoM market include the development of innovative applications and services that require low-latency processing. This trend is reshaping various industries, such as healthcare, manufacturing, and smart cities, by enabling intelligent and autonomous systems.
Connectivity is at the heart of IoT applications, and SoMs are adapting to this trend by providing a wide range of connectivity options. As the demand for diverse wireless and wired communication interfaces continues to grow, SoM manufacturers are incorporating support for various protocols, including 5G, Wi-Fi 6, Bluetooth, LoRa, and more.
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The integration of 5G modems in SoMs is particularly noteworthy. 5G networks offer high-speed, low-latency connectivity, which is essential for emerging applications like augmented reality (AR), virtual reality (VR), and telemedicine. SoMs equipped with 5G capabilities enable developers to create cutting-edge solutions that leverage the advantages of high-bandwidth, low-latency communication. Increased connectivity options in SoMs have significant implications for industries that rely on real-time data exchange and remote control, such as autonomous vehicles, smart factories, and telehealth services. These modules empower developers to design IoT devices that offer seamless and robust connectivity.
Security is a paramount concern in the IoT landscape, and SoM manufacturers are addressing this trend by incorporating advanced security features into their modules. As the number of IoT devices and the complexity of cyber threats increase, there is a growing need for SoMs that can protect sensitive data and ensure the integrity of connected systems. Key security features include hardware-based encryption, secure boot mechanisms, and support for trusted execution environments (TEEs). These features enable secure data transmission, protect against unauthorized access, and ensure the confidentiality and integrity of stored data. SoM vendors are also working to ensure compliance with industry standards and regulations related to cybersecurity. This trend is essential for industries like healthcare, finance, and critical infrastructure, where data security and privacy are non-negotiable.
Key market players in the Global System on Module (SoM) Market are following:-
- AAEON Technology
- Advantech Co Ltd
- Avnet Inc
- Avalue Technology
- Axiomtek Co Ltd
- ConnectTech Inc
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“Energy efficiency remains a significant trend in the SoM market, reflecting the need to extend the battery life of IoT devices and reduce power consumption in embedded systems. Low-power SoMs are increasingly popular, especially for applications like wearables, remote sensors, and battery-operated devices. SoM manufacturers are developing modules based on energy-efficient processors, such as ARM Cortex-M and RISC-V architectures, which offer a balance between performance and power efficiency. Advanced power management features, like dynamic voltage and frequency scaling (DVFS), are integrated into these modules to optimize power consumption based on workload. Energy efficiency is not limited to hardware alone. SoM vendors are optimizing software and firmware to minimize power consumption during idle and low-load periods. This trend aligns with the broader industry focus on sustainability and reducing the environmental impact of IoT deployments. The SoM market is moving toward more diverse form factors and increased customization options. While standard form factors like COM Express and SMARC remain popular, customers are seeking more tailored solutions to address their specific hardware requirements and space constraints.
Manufacturers are responding to this trend by offering a variety of form factors and the ability to customize SoMs with preferred combinations of processors, memory, and I/O interfaces. This flexibility is vital for applications where off-the-shelf solutions may not meet unique hardware requirements. Customization also extends to the software side. SoM vendors are providing software development kits (SDKs) and support for various operating systems, allowing developers to fine-tune the software stack to their specific needs. This approach is particularly beneficial for industries with specialized requirements, such as aerospace, medical, and defense.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based global management consulting firm.
System on Module (SoM) Market – Global Industry Size, Share, Trends, Opportunity, and Forecast Segmented By Type (ARM Architecture, X86 Architecture, Power Architecture), By Standard (COM Express, SMARC, Qseven, ETX/XTX, COM-HPC, and Others), By Applications (Industrial Automation, Medical, Entertainment, Transportation, Test & Measurement, and Others), By Region, Competition 2018-2028. has evaluated the future growth potential of Global System on Module (SoM) Market and provides statistics and information on market structure, size, share, and future growth. The report is intended to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities present in the Global System on Module (SoM) Market.
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