According to a research report "Spatial Computing Market by Technology Type (AR Technology, VR Technology, MR Technology), Component (Hardware, Software, Services), Vertical (Media & Entertainment, Manufacturing, Retail & eCommerce) and Region - Global Forecast to 2028" published by MarketsandMarkets, the Spatial computing market size is expected to grow from USD 97.9 billion in 2023 to USD 280.5 billion by 2028 at a Compound Annual Growth Rate (CAGR) of 23.4% during the forecast period. The availability of affordable hardware and advancements in real-time rendering engines will likely boost the adoption of spatial computing globally.
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Based on services, managed services will record the highest CAGR in the spatial computing market during the forecast period.
Managed services specifically deal with client experiences. Enterprises cannot bargain on this variable, as it helps them maintain their market position. Sometimes, it becomes troublesome for companies to concentrate on their core business procedures and simultaneously handle these services. This leads to companies relying on third parties to offer managed services. Every technological domain requires well-delivered managed services. Technical expertise, service consistency, and flexibility must be provided by vendors, regardless of the geographical location of the client. Managed services offer all the required skillsets to maintain and upgrade the solutions, which is of utmost importance in the spatial computing environment.
By Technology Type, the AR Technology segment holds the largest market share during the forecast period.
The adoption of Augmented Reality (AR) technology in the spatial computing market has been marked by significant strides in recent years. AR, which overlays digital content into the real world, has found various applications across industries. In retail, AR enhances shopping experiences with virtual try-ons and product visualizations. In healthcare, it aids in surgery planning and medical training. The gaming sector is embracing AR for immersive experiences, and in education, AR is making learning more engaging and interactive. Furthermore, AR is employed in industrial settings for maintenance and repair and in architecture and design for 3D modeling and visualization. The growth of AR in spatial computing is driven by advancements in hardware, such as smart glasses and smartphones, and improved software capabilities, which are expanding the horizons of this technology and its potential for transforming how we perceive and interact with the world around us.
By region, the Asia Pacific region recorded the highest CAGR during the forecast period.
The adoption of spatial computing in Asia has steadily risen in recent years, reflecting the global trend toward immersive technologies. As the region’s economies grow and technological infrastructure improves, businesses and consumers have shown increasing interest in spatial computing applications. Major players in the technology industry, including companies from Japan, South Korea, China, and India, have been actively developing augmented and virtual reality solutions, focusing on diverse sectors like gaming, healthcare, education, and manufacturing. Government initiatives, educational institutions, and research centers across the Asia Pacific region have supported the development and integration spatial computing technologies, further fostering adoption. With a vast and dynamic market, the Asia Pacific region is poised to become a significant hub for spatial computing innovation and applications, contributing to the global evolution of these transformative technologies.
Major vendors in this market are based in North America, Asia Pacific, and Europe. Some of the key players operating in the Spatial Computing market are – Meta (US), Microsoft (US), Apple (US), Sony (Japan), Qualcomm (US), Google (US), Epson (Japan), Samsung (South Korea), Magic Leap (US), and PTC (US).
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