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3D Silicon Capacitor Market to Double by 2031: Key Insights on Growth, Trends, and Applications | Valuates Reports

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3D Silicon Capacitor Market is Segmented by Type (MOS Capacitors, MIS Capacitors), by Application (Network and Communication, Automotive, Medical).

BANGALORE, India, May 14, 2025 /PRNewswire/ — The 3D Silicon Capacitor Market was valued at USD 202 Million in the year 2024 and is projected to reach a revised size of USD 407 Million by 2031, growing at a CAGR of 10.3% during the forecast period.

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Major Factors Driving the Growth of 3D Silicon Capacitor Market:

The 3D silicon capacitor market is witnessing robust growth, driven by the convergence of miniaturization trends, high-performance computing needs, and increased demand across diverse sectors. These capacitors offer exceptional electrical characteristics, high volumetric efficiency, and reliability, making them essential in modern electronic designs. Key applications span telecommunications, automotive, aerospace, medical, and consumer electronics. The market is also benefiting from advancements in semiconductor packaging and the rise of edge computing and AI applications. As industries continue to prioritize compact and efficient systems, 3D silicon capacitors are poised to become a fundamental component in the next generation of electronic devices, fostering innovation across multiple domains.

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TRENDS INFLUENCING THE GROWTH OF THE 3D SILICON CAPACITOR MARKET:

MIS (Metal-Insulator-Semiconductor) capacitors are a critical component in advanced electronic systems, and their enhanced integration into 3D silicon capacitors is significantly driving market growth. The compact design and high capacitance density of MIS capacitors make them ideal for applications requiring miniaturization without sacrificing performance. In 3D silicon capacitor architectures, MIS capacitors enable superior signal integrity, reduced parasitic losses, and stable electrical behavior across wide frequency ranges. These characteristics are increasingly vital in RF communication devices, advanced computing systems, and aerospace technologies. The trend toward heterogeneous integration in microelectronics is creating more opportunities for MIS-based 3D capacitors. As industries continue to prioritize performance and space-efficiency, the incorporation of MIS technology within 3D silicon capacitors is gaining traction, propelling demand in both commercial and defense-related electronics applications.

MOS (Metal-Oxide-Semiconductor) capacitors are playing a pivotal role in boosting the 3D silicon capacitor market due to their compatibility with semiconductor manufacturing processes and ability to store higher charges. The scalability and ease of fabrication of MOS capacitors make them attractive for integration into complex 3D capacitor structures, especially in high-frequency and high-density electronic environments. Their low leakage currents and thermal stability are beneficial for precision electronics, medical equipment, and IoT devices. Moreover, as the demand for energy-efficient and compact systems increases, MOS capacitors within 3D silicon frameworks offer a reliable alternative to traditional capacitor designs. The trend of integrating passive components directly onto silicon wafers in IC packaging is also accelerating the adoption of MOS-based 3D capacitors. These advancements are driving innovation and expanding market potential across various end-user sectors.

The medical industry’s increasing reliance on compact, reliable, and high-performance electronic components is significantly contributing to the growth of the 3D silicon capacitor market. Devices such as pacemakers, hearing aids, neurostimulators, and diagnostic imaging systems require components with high capacitance, low inductance, and long-term reliability. 3D silicon capacitors offer superior energy storage and discharge capabilities, ensuring consistent performance and patient safety. Their biocompatibility, thermal resistance, and ability to function under stringent operating conditions make them especially suitable for implantable and wearable medical devices. Additionally, the ongoing shift toward minimally invasive surgical equipment and portable monitoring tools is fueling demand for miniaturized electronics. This evolution in medical technology is creating a robust market opportunity for 3D silicon capacitors as essential components in modern healthcare solutions.

The push toward smaller, faster, and more efficient devices in consumer electronics, telecommunications, and computing is significantly driving the demand for 3D silicon capacitors. These capacitors offer high volumetric efficiency and exceptional electrical performance in compact packages. As smartphones, tablets, and wearable devices evolve, manufacturers are looking for components that can deliver higher power densities without increasing device size. 3D silicon capacitors meet these criteria by enabling greater energy storage per unit volume while maintaining structural integrity and reliability. The trend of integrating passive components into limited board spaces is expected to continue, making 3D silicon capacitors a preferred choice for designers looking to achieve performance without compromising on form factor.

The global rollout of 5G infrastructure and adoption of high-frequency communication systems are accelerating the demand for advanced capacitor technologies that can support faster data transmission and reduced signal noise. 3D silicon capacitors are designed to operate effectively at high frequencies, offering low equivalent series resistance (ESR) and inductance, which are essential for high-speed circuits. Base stations, antenna modules, and mobile devices deployed in 5G networks benefit significantly from the performance attributes of 3D capacitors. Their ability to maintain signal integrity in dense integration environments makes them a vital component in next-generation wireless technologies. As 5G networks expand globally, the corresponding surge in demand for high-performance components is driving the 3D silicon capacitor market.

The aerospace and defense sectors demand components that exhibit high reliability, resistance to extreme environmental conditions, and long operational lifespans. 3D silicon capacitors fulfill these requirements, offering excellent performance in ruggedized electronics used in satellites, avionics, and radar systems. Their resilience to vibration, radiation, and temperature fluctuations makes them highly suited for mission-critical applications. With increasing investments in advanced defense systems and space exploration programs, the demand for compact, high-frequency, and thermally stable capacitors is growing. 3D silicon capacitors are becoming the preferred choice for defense contractors and aerospace manufacturers seeking to enhance system performance without adding weight or volume.

The shift toward electrification and intelligent systems in the automotive sector is creating significant demand for advanced capacitors. 3D silicon capacitors offer the reliability and performance necessary for applications such as ADAS (Advanced Driver-Assistance Systems), infotainment systems, and electric vehicle (EV) powertrains. These capacitors support the miniaturization of electronics, withstand automotive-grade thermal cycles, and ensure fast energy delivery during peak load events. As EV adoption continues to grow, along with autonomous driving technologies, the need for high-performance components like 3D silicon capacitors becomes more pronounced. Automotive OEMs are investing in these technologies to meet the evolving electronic architecture of next-gen vehicles.

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3D SILICON CAPACITOR MARKET SHARE

North America holds a significant share due to its well-established electronics, defense, and medical device industries.

Europe follows closely, supported by its focus on automotive electronics and aerospace technologies.

The Asia-Pacific region is witnessing rapid growth, led by countries like China, South Korea, Taiwan, and Japan, which are global hubs for semiconductor production and electronics exports. The availability of advanced packaging facilities and high R&D investment further boost regional adoption.

Key Companies:

Murata ManufacturingROHM SemiconductorKyocera AVXVishay IntertechnologyMACOMMicrochip TechnologySkyworksEmpower SemiconductorELSPES

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DISCOVER MORE INSIGHTS: EXPLORE SIMILAR REPORTS!

Capacitors Market was valued at USD 20090 Million in the year 2024 and is projected to reach a revised size of USD 24300 Million by 2031, growing at a CAGR of 2.8% during the forecast period.

3D High Density Silicon Capacitor Market

Chip Capacitors Market

–  Silicon Based Capacitors Market was valued at USD 1042 Million in the year 2024 and is projected to reach a revised size of USD 1680 Million by 2031, growing at a CAGR of 7.2% during the forecast period.

Semiconductor MIS Silicon Chip Capacitors Market was valued at USD 850 Million in the year 2024 and is projected to reach a revised size of USD 1177 Million by 2031, growing at a CAGR of 4.9% during the forecast period.

–  Solid Capacitor Dispersion Market was valued at USD 59 Million in the year 2024 and is projected to reach a revised size of USD 92 Million by 2031, growing at a CAGR of 6.6% during the forecast period.

–  Flexible Super Capacitor Market was estimated to be worth USD 311 Million in 2023 and is forecast to a readjusted size of USD 421.6 Million by 2030 with a CAGR of 3.5% during the forecast period 2024-2030.

Solder Chip Capacitors Market was valued at USD 1715 Million in the year 2024 and is projected to reach a revised size of USD 2051 Million by 2031, growing at a CAGR of 3.0% during the forecast period.

Capacitors for Medical Electronics Market

Single Phase Power Capacitors Market was valued at USD 1244 Million in the year 2024 and is projected to reach a revised size of USD 1745 Million by 2031, growing at a CAGR of 5.0% during the forecast period.

Capacitor Arrays Market

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Hyundai Motor Group Executive Chair Euisun Chung Announces Physical AI Vision at San Francisco AI Summit

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Hyundai Motor Group shares roadmap for realizing its Physical AI vision and collaboration strategy with global tech leaders at the San Francisco AI SummitExecutive Chair Euisun Chung presented, “Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing to become a Physical AI solution company,” adding, “The ultimate Physical AI vision we pursue is the realization of integrated intelligence at the city level”The Group to leverage manufacturing competitiveness and leading robotics capabilities centered on Boston Dynamics, while establishing a data flywheel system connecting real-world operational data with continuous AI model advancementThe Group to leverage strategic partnerships with global technology leaders, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMindThe Group to collaborate with NVIDIA to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities

… The initiative to support Korea’s Physical AI industry through an open ecosystem

The Group to cultivate strategic domestic hubs through investments in Saemangeum AI Valley and future advanced industries in Korea’s Yeongnam region

SAN FRANCISCO, July 25, 2026 /PRNewswire/ — Hyundai Motor Group (the Group) Executive Chair Euisun Chung today outlined the Group’s vision and strategy for Physical AI at the San Francisco AI Summit held in San Francisco, California.

The event brought together approximately 150 attendees, including Executive Chair Chung, business leaders from major Korean companies, executives from leading U.S. technology firms, startup representatives and students.

At the summit, Executive Chair Chung presented the Group’s roadmap for advancing Physical AI and outlined strategic collaboration plans with global technology leaders.

“Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing by expanding into autonomous driving, robotics and AI Defined Factories, accelerating our transformation into a Physical AI solution company.” — Hyundai Motor Group Executive Chair Euisun Chung

Accelerating the Transition to a Physical AI Solution Company

Hyundai Motor Group’s Physical AI vision extends beyond intelligent devices such as vehicles and robots to intelligent spaces, including AI factories where AI seamlessly connects and optimizes entire operations. Ultimately, the Group envisions integrated intelligence at the city level, where urban infrastructure is organically connected and operated through AI.

A key differentiator for the Group is its ability to create a data flywheel that continuously connects real-world operations with AI advancement. Drawing on extensive experience in large-scale manufacturing, mobility, robotics and service operations, the Group is positioned to deploy, refine and scale Physical AI technologies in real industrial environments.

Executive Chair Chung also outlined strategic partnerships with leading technology companies, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind, to further advance Physical AI capabilities.

By combining Hyundai Motor Group’s manufacturing competitiveness, mobility and robotics technologies and extensive operational data with the AI infrastructure and algorithm capabilities of global technology leaders, the Group aims to help foster a new innovation ecosystem for the Physical AI era.

Executive Chair Chung also introduced initiatives designed to support the growth of Korea’s robotics and AI ecosystem, including the development of a Robot Reference Platform with NVIDIA that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities, as well as investments in initiatives such as the Saemangeum AI Valley.

Physical AI Vision: From Intelligent Devices to Integrated Intelligence at the City Level

During the summit, Executive Chair Chung presented Hyundai Motor Group’s Physical AI vision.

“The ultimate Physical AI vision Hyundai Motor Group pursues begins with intelligent devices such as vehicles and robots, expands to intelligent spaces such as AI factories, and ultimately realizes integrated intelligence at the city level, where urban infrastructure is seamlessly connected and operated.” — Hyundai Motor Group Executive Chair Chung

The Group’s vision begins with intelligent devices, where AI capabilities enhance vehicles and robots. It then expands to intelligent spaces, including AI factories where AI autonomously integrates logistics, production and quality management across entire operations.

Ultimately, Hyundai Motor Group envisions city-level intelligence, where critical infrastructure and assets — including energy, mobility and robotics systems — are connected and optimized in real time.

Executive Chair Chung also highlighted the Group’s key strengths in realizing its Physical AI vision:

World-class manufacturing competitiveness: Hyundai Motor Group has built extensive expertise through decades of operating global manufacturing facilities, managing quality systems and optimizing supply chains. This foundation enables the Group to apply AI technologies to products, processes and services while rapidly validating and scaling innovations in real-world environments.Leading robotics capabilities: Hyundai Motor Group has established robotics as a key pillar of its future business portfolio. Boston Dynamics’ quadruped robot Spot®, logistics robot Stretch®, and Hyundai Motor Group Robotics LAB’s next-generation mobile robot platform MobED are recognized for combining technological competitiveness with real-world applicability.

In particular, the humanoid robot Atlas® is emerging as a representative example of Physical AI, supporting and collaborating with people across manufacturing, logistics and mobility environments.

Establishing a data flywheel system: Hyundai Motor Group is establishing a data flywheel system that leverages data generated across manufacturing operations, vehicles, logistics systems and robotics demonstrations to continuously advance AI models. Enhanced algorithms are then reapplied to real-world operations, creating a virtuous cycle that improves performance and strengthens Physical AI capabilities.

Accelerating the Future of Physical AI Through Partnerships with Global Tech Leaders

Executive Chair Chung also outlined concrete initiatives to position Hyundai Motor Group as a leader in human-centered Physical AI through strategic collaborations with NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind.

“By combining Hyundai Motor Group’s strengths in manufacturing, robotics and data with the capabilities of global technology leaders, we can help create a new innovation ecosystem for the Physical AI era.” — Hyundai Motor Group Executive Chair Euisun Chung

NVIDIA – Advancing Physical AI infrastructure and talent development

Hyundai Motor Group is expanding collaboration with NVIDIA to strengthen Physical AI infrastructure and cultivate AI talent. Building on a supply agreement for 50,000 NVIDIA Blackwell GPUs and a memorandum of understanding signed last year to advance Korea’s Physical AI capabilities, the Group is pursuing a range of initiatives, including the establishment of Hyundai Motor Group Robot Application Center, as well as various collaborations aimed at strengthening Korea’s Physical AI infrastructure and AI talent ecosystem, including the NVIDIA’s AI Technology Center.

In manufacturing, the Group is leveraging NVIDIA’s platform to create more sophisticated digital twins of production facilities, enhancing process design, operational optimization and validation efficiency. The collaboration also includes the integration of NVIDIA’s autonomous driving solutions, including automotive semiconductors, sensors and architecture, with Hyundai Motor Group vehicle platforms.

Waymo – Strengthening autonomous driving collaboration

Hyundai Motor Group continues to strengthen its strategic partnership with Waymo in the autonomous driving sector to support the development of a safe and innovative autonomous driving ecosystem. Autonomous driving vehicles require a wide range of specialized capabilities, including redundant systems for steering, braking, power and communications, dedicated features such as power-operated doors, as well as enhanced functional safety and cybersecurity technologies.

Hyundai Motor Group plans to produce IONIQ 5 vehicles with specific autonomous-ready modifications at Hyundai Motor Group Metaplant America (HMGMA) in Georgia.

Google DeepMind – Accelerating next-generation humanoid robotics

Boston Dynamics has established a strategic partnership with Google DeepMind to accelerate the development of next-generation humanoid robots. Advanced AI models and training systems are essential for robots to perform complex tasks in real-world environments and collaborate effectively with people. Through this partnership, Boston Dynamics robots are expected to achieve greater autonomy and adapt more effectively to complex operating environments.

Hyundai Motor Group plans to establish a robot production facility in the U.S. with an annual capacity of up to 30,000 units by 2028. The Atlas humanoid robot will first be deployed at production facilities including HMGMA before broader deployment is expanded through phased validation.

Building an Open Ecosystem Through the Robot Reference Platform and Continued Investment in Korea’s Physical AI Future

Executive Chair Chung also outlined initiatives aimed at supporting the growth of Korea’s Physical AI ecosystem through open collaboration and continued investment.

“The outcomes of collaboration with global technology leaders should contribute to the growth of Korea’s Physical AI industry. To that end, Hyundai Motor Group plans to foster an open ecosystem that supports innovation in robotics and AI technologies.” — Hyundai Motor Group Executive Chair Euisun Chung

Key initiatives to build an open ecosystem for robotics and AI innovation include:

Robot Reference Platform: Hyundai Motor Group and NVIDIA are collaborating to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities.

The platform will provide research robot models to universities, research institutes and startups, helping foster an open ecosystem that supports technological innovation and the development of Physical AI talent while contributing to the broader growth of Korea’s robotics and AI industries. 

Supporting universities, research institutes and startups: The Robot Reference Platform is expected to provide universities, research institutes and startups with a standardized hardware and software environment, enabling them to more easily develop and validate Physical AI technologies. The initiative aims to help address challenges faced by organizations with innovative ideas but limited access to commercialization opportunities and validation infrastructure.

Hyundai Motor Group is also continuing large-scale investments aimed at driving the next leap forward in Korea’s industrial and technology ecosystem. Continued investments in Korea’s industrial and technology ecosystem include:

Saemangeum AI Valley: In the Saemangeum region of Jeonbuk State, the Group is developing Saemangeum AI Valley, which includes an approximate KRW 9 trillion investment in AI data centers, robotics manufacturing clusters, electrolyzer plants and AI hydrogen city infrastructure. 

In particular, the robotics manufacturing cluster will serve not only as a production base for the Group’s own robotics products, but also as a robotics foundry that provides manufacturing services for small and medium-sized enterprises that lack manufacturing expertise.

Advanced industrial hubs in the Yeongnam region: Hyundai Motor Group plans to invest a total of KRW 42 trillion over the next decade to foster advanced industrial hubs focused on AI-driven manufacturing, future aerospace industries and sustainable energy infrastructure.

Through these initiatives, Hyundai Motor Group aims to strengthen key foundations for the Physical AI era, including data and energy infrastructure, robotics production capabilities and real-world validation capabilities. The Group also expects these investments to contribute to enhanced industrial competitiveness, balanced regional development, job creation and broader economic vitality in Korea.

About Hyundai Motor Group

Hyundai Motor Group is a global enterprise that has created a value chain based on mobility, steel, and construction, as well as logistics, finance, IT, and service. With about 250,000 employees worldwide, the Group’s mobility brands include Hyundai, Kia, and Genesis. Armed with creative thinking, cooperative communication, and the will to take on any challenges, we strive to create a better future for all.

More information about Hyundai Motor Group can be found at: http://www.hyundaimotorgroup.com or Newsroom: Media Hub by Hyundai, Kia Global Newsroom, Genesis Newsroom

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Tencent Brings Together AI and Games to Help Preserve and Share Cultural Heritage of New UNESCO Site in Jingdezhen

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Tencent applies AI and games to protect, reconstruct, and promote one of the world’s oldest porcelain traditions at newly inscribed UNESCO siteDigital initiatives create a new model for technology-driven heritage preservation globally using a multimodal AI dataset, AI-assisted artifact restoration, and interactive virtual experiences

SHENZHEN, China, July 25, 2026 /PRNewswire/ — Tencent (00700.HK) today announced the launch of Digital Jingdezhen: Porcelain Craft Adventure, an AI-powered cultural heritage game that enables users to explore Jingdezhen’s porcelain-making traditions and experience traditional craft techniques through interactive play. The launch coincides with the inscription of the Jingdezhen Handicraft Porcelain Industry Sites on the United Nations Educational, Scientific and Cultural Organization (UNESCO) World Heritage List.

Digital Jingdezhen is part of a broader cultural innovation initiative that applies Tencent’s AI and game technologies. Guided by Tencent’s vision of “Tech for Good”, the initiative leverages digital preservation to keep Jingdezhen’s thousand-year-old porcelain culture alive and relevant today, creating a living heritage with sustainable value and broad public engagement, and building a model that could be carried to heritage sites around the world.

Digital Preservation: Restoring and Unlocking Heritage with AI

Jingdezhen has a thousand years of living heritage; centuries of tradition are still active in its kilns today. To preserve this legacy, a cornerstone of the project was the Jingdezhen Porcelain Cultural Heritage Multimodal AI Dataset.

Over decades, historical records, heritage information, and craft specifications have accumulated into a massive volume of data. Tencent applied Optical Character Recognition (OCR), Natural Language Processing (NLP), and knowledge graph technologies to transform these dispersed materials into structured digital resources that can be analyzed, extracted, verified, and traced back to their original sources.

The dataset contains more than 30,000 documentary records, over 5,000 ceramic gene specimens, and data on nearly 1,000 representative ceramic artifacts in collections worldwide. It provides a digital foundation for cultural research, exhibition development, public interpretation and AI-powered heritage applications.

Building on this foundation, Tencent has developed a range of industry- and public-facing applications, including the Jingdezhen Ancient Ceramics Gene Database, the World Ceramics Interactive Map, and the Digital Jingdezhen AI Companion, providing researchers, heritage professionals, and the public with innovative AI-powered tools to explore and understand porcelain heritage.

Digital Activation: Bringing Jingdezhen’s Porcelain Heritage to Life Through AI and Games

To bring the public closer to Jingdezhen and its porcelain-making traditions, Digital Jingdezhen: Porcelain Craft Adventure utilizes AI-assisted Procedural Content Generation (PCG) to create the first large-scale digital recreation of the city’s five major porcelain heritage sites and historical production scenes. By rapidly mapping out town layouts and automatically generating architectural structures, decorative elements, and pedestrians, the technology brings Jingdezhen’s historic townscape back to life in the digital world.

The game also features high-quality AI digital humans built on large language models and the Jingdezhen Porcelain Cultural Heritage Multimodal AI Dataset. Through AI voice-driven facial expressions and Tencent Games’ proprietary animation technology, it creates warm, human-centered interactive experiences that make historical knowledge tangible and relatable. At the same time, AI-powered 3D generation allows users to quickly transform an uploaded image into a 3D porcelain form, lowering the barrier to participation and enabling anyone to turn creative inspiration into tangible ceramic forms in the digital space.

Continuing Heritage: Mobilizing the Community

Ensuring the longevity of Jingdezhen’s legacy requires active public participation. Tencent developed the Digital Heritage Guardian (Jingdezhen), a volunteer program built within the Weixin ecosystem. The program enables the public to support the upkeep and stewardship of physical heritage sites, creating a practical channel for community involvement in heritage protection.

“Our work in Jingdezhen is a testament to how ‘AI for Good’ can breathe new life into ancient traditions,” said Zhan Shu, Head of Digital Culture Lab, Tencent. “Working alongside dedicated heritage experts, we have contributed our capabilities in AI and digital technologies to unlock decades of dormant archives for this incredible new UNESCO site. We are proud to help bridge the gap between the thousand-year porcelain heritage and the digital era, creating new ways for the global public to connect with Jingdezhen’s living history, and a model for heritage sites worldwide.”

For media queries, please contact: gc@tencent.com

About Tencent

Tencent is a global technology and entertainment company focused on creating connections and experiences that matter. Founded in 1998, Tencent is driven by its mission to create “Value for Users” and apply “Tech for Good.”

Tencent’s communication and social services connect more than one billion people around the world, helping them to keep in touch with friends and family, access transportation, pay for daily necessities, and even be entertained. Tencent also develops and publishes some of the world’s most popular video games and other high-quality digital content, delivering rich and immersive interactive entertainment experiences. Tencent also offers a range of services such as cloud computing and other enterprise services to support our clients’ digital transformation and business growth. Headquartered in Shenzhen, Tencent has been listed on the Main Board of the Stock Exchange of Hong Kong since June 2004.

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SOURCE Tencent

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Hyundai Motor Group Executive Chair Euisun Chung Announces Physical AI Vision at San Francisco AI Summit

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Hyundai Motor Group shares roadmap for realizing its Physical AI vision and collaboration strategy with global tech leaders at the San Francisco AI SummitExecutive Chair Euisun Chung presented, “Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing to become a Physical AI solution company,” adding, “The ultimate Physical AI vision we pursue is the realization of integrated intelligence at the city level”The Group to leverage manufacturing competitiveness and leading robotics capabilities centered on Boston Dynamics, while establishing a data flywheel system connecting real-world operational data with continuous AI model advancementThe Group to leverage strategic partnerships with global technology leaders, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMindThe Group to collaborate with NVIDIA to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities

… The initiative to support Korea’s Physical AI industry through an open ecosystem

The Group to cultivate strategic domestic hubs through investments in Saemangeum AI Valley and future advanced industries in Korea’s Yeongnam region

SAN FRANCISCO, July 25, 2026 /PRNewswire/ — Hyundai Motor Group (the Group) Executive Chair Euisun Chung today outlined the Group’s vision and strategy for Physical AI at the San Francisco AI Summit held in San Francisco, California.

The event brought together approximately 150 attendees, including Executive Chair Chung, business leaders from major Korean companies, executives from leading U.S. technology firms, startup representatives and students.

At the summit, Executive Chair Chung presented the Group’s roadmap for advancing Physical AI and outlined strategic collaboration plans with global technology leaders.

“Hyundai Motor Group is evolving beyond the traditional boundaries of automotive manufacturing by expanding into autonomous driving, robotics and AI Defined Factories, accelerating our transformation into a Physical AI solution company.” — Hyundai Motor Group Executive Chair Euisun Chung

Accelerating the Transition to a Physical AI Solution Company

Hyundai Motor Group’s Physical AI vision extends beyond intelligent devices such as vehicles and robots to intelligent spaces, including AI factories where AI seamlessly connects and optimizes entire operations. Ultimately, the Group envisions integrated intelligence at the city level, where urban infrastructure is organically connected and operated through AI.

A key differentiator for the Group is its ability to create a data flywheel that continuously connects real-world operations with AI advancement. Drawing on extensive experience in large-scale manufacturing, mobility, robotics and service operations, the Group is positioned to deploy, refine and scale Physical AI technologies in real industrial environments.

Executive Chair Chung also outlined strategic partnerships with leading technology companies, including NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind, to further advance Physical AI capabilities.

By combining Hyundai Motor Group’s manufacturing competitiveness, mobility and robotics technologies and extensive operational data with the AI infrastructure and algorithm capabilities of global technology leaders, the Group aims to help foster a new innovation ecosystem for the Physical AI era.

Executive Chair Chung also introduced initiatives designed to support the growth of Korea’s robotics and AI ecosystem, including the development of a Robot Reference Platform with NVIDIA that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities, as well as investments in initiatives such as the Saemangeum AI Valley.

Physical AI Vision: From Intelligent Devices to Integrated Intelligence at the City Level

During the summit, Executive Chair Chung presented Hyundai Motor Group’s Physical AI vision.

“The ultimate Physical AI vision Hyundai Motor Group pursues begins with intelligent devices such as vehicles and robots, expands to intelligent spaces such as AI factories, and ultimately realizes integrated intelligence at the city level, where urban infrastructure is seamlessly connected and operated.” — Hyundai Motor Group Executive Chair Chung

The Group’s vision begins with intelligent devices, where AI capabilities enhance vehicles and robots. It then expands to intelligent spaces, including AI factories where AI autonomously integrates logistics, production and quality management across entire operations.

Ultimately, Hyundai Motor Group envisions city-level intelligence, where critical infrastructure and assets — including energy, mobility and robotics systems — are connected and optimized in real time.

Executive Chair Chung also highlighted the Group’s key strengths in realizing its Physical AI vision:

World-class manufacturing competitiveness: Hyundai Motor Group has built extensive expertise through decades of operating global manufacturing facilities, managing quality systems and optimizing supply chains. This foundation enables the Group to apply AI technologies to products, processes and services while rapidly validating and scaling innovations in real-world environments.Leading robotics capabilities: Hyundai Motor Group has established robotics as a key pillar of its future business portfolio. Boston Dynamics’ quadruped robot Spot®, logistics robot Stretch®, and Hyundai Motor Group Robotics LAB’s next-generation mobile robot platform MobED are recognized for combining technological competitiveness with real-world applicability.

In particular, the humanoid robot Atlas® is emerging as a representative example of Physical AI, supporting and collaborating with people across manufacturing, logistics and mobility environments.

Establishing a data flywheel system: Hyundai Motor Group is establishing a data flywheel system that leverages data generated across manufacturing operations, vehicles, logistics systems and robotics demonstrations to continuously advance AI models. Enhanced algorithms are then reapplied to real-world operations, creating a virtuous cycle that improves performance and strengthens Physical AI capabilities.

Accelerating the Future of Physical AI Through Partnerships with Global Tech Leaders

Executive Chair Chung also outlined concrete initiatives to position Hyundai Motor Group as a leader in human-centered Physical AI through strategic collaborations with NVIDIA and Waymo, as well as Boston Dynamics’ strategic partnership with Google DeepMind.

“By combining Hyundai Motor Group’s strengths in manufacturing, robotics and data with the capabilities of global technology leaders, we can help create a new innovation ecosystem for the Physical AI era.” — Hyundai Motor Group Executive Chair Euisun Chung

NVIDIA – Advancing Physical AI infrastructure and talent development

Hyundai Motor Group is expanding collaboration with NVIDIA to strengthen Physical AI infrastructure and cultivate AI talent. Building on a supply agreement for 50,000 NVIDIA Blackwell GPUs and a memorandum of understanding signed last year to advance Korea’s Physical AI capabilities, the Group is pursuing a range of initiatives, including the establishment of Hyundai Motor Group Robot Application Center, as well as various collaborations aimed at strengthening Korea’s Physical AI infrastructure and AI talent ecosystem, including the NVIDIA’s AI Technology Center.

In manufacturing, the Group is leveraging NVIDIA’s platform to create more sophisticated digital twins of production facilities, enhancing process design, operational optimization and validation efficiency. The collaboration also includes the integration of NVIDIA’s autonomous driving solutions, including automotive semiconductors, sensors and architecture, with Hyundai Motor Group vehicle platforms.

Waymo – Strengthening autonomous driving collaboration

Hyundai Motor Group continues to strengthen its strategic partnership with Waymo in the autonomous driving sector to support the development of a safe and innovative autonomous driving ecosystem. Autonomous driving vehicles require a wide range of specialized capabilities, including redundant systems for steering, braking, power and communications, dedicated features such as power-operated doors, as well as enhanced functional safety and cybersecurity technologies.

Hyundai Motor Group plans to produce IONIQ 5 vehicles with specific autonomous-ready modifications at Hyundai Motor Group Metaplant America (HMGMA) in Georgia.

Google DeepMind – Accelerating next-generation humanoid robotics

Boston Dynamics has established a strategic partnership with Google DeepMind to accelerate the development of next-generation humanoid robots. Advanced AI models and training systems are essential for robots to perform complex tasks in real-world environments and collaborate effectively with people. Through this partnership, Boston Dynamics robots are expected to achieve greater autonomy and adapt more effectively to complex operating environments.

Hyundai Motor Group plans to establish a robot production facility in the U.S. with an annual capacity of up to 30,000 units by 2028. The Atlas humanoid robot will first be deployed at production facilities including HMGMA before broader deployment is expanded through phased validation.

Building an Open Ecosystem Through the Robot Reference Platform and Continued Investment in Korea’s Physical AI Future

Executive Chair Chung also outlined initiatives aimed at supporting the growth of Korea’s Physical AI ecosystem through open collaboration and continued investment.

“The outcomes of collaboration with global technology leaders should contribute to the growth of Korea’s Physical AI industry. To that end, Hyundai Motor Group plans to foster an open ecosystem that supports innovation in robotics and AI technologies.” — Hyundai Motor Group Executive Chair Euisun Chung

Key initiatives to build an open ecosystem for robotics and AI innovation include:

Robot Reference Platform: Hyundai Motor Group and NVIDIA are collaborating to develop a Robot Reference Platform that combines Hyundai Motor Group’s and NVIDIA’s Physical AI capabilities.

The platform will provide research robot models to universities, research institutes and startups, helping foster an open ecosystem that supports technological innovation and the development of Physical AI talent while contributing to the broader growth of Korea’s robotics and AI industries. 

Supporting universities, research institutes and startups: The Robot Reference Platform is expected to provide universities, research institutes and startups with a standardized hardware and software environment, enabling them to more easily develop and validate Physical AI technologies. The initiative aims to help address challenges faced by organizations with innovative ideas but limited access to commercialization opportunities and validation infrastructure.

Hyundai Motor Group is also continuing large-scale investments aimed at driving the next leap forward in Korea’s industrial and technology ecosystem. Continued investments in Korea’s industrial and technology ecosystem include:

Saemangeum AI Valley: In the Saemangeum region of Jeonbuk State, the Group is developing Saemangeum AI Valley, which includes an approximate KRW 9 trillion investment in AI data centers, robotics manufacturing clusters, electrolyzer plants and AI hydrogen city infrastructure. 

In particular, the robotics manufacturing cluster will serve not only as a production base for the Group’s own robotics products, but also as a robotics foundry that provides manufacturing services for small and medium-sized enterprises that lack manufacturing expertise.

Advanced industrial hubs in the Yeongnam region: Hyundai Motor Group plans to invest a total of KRW 42 trillion over the next decade to foster advanced industrial hubs focused on AI-driven manufacturing, future aerospace industries and sustainable energy infrastructure.

Through these initiatives, Hyundai Motor Group aims to strengthen key foundations for the Physical AI era, including data and energy infrastructure, robotics production capabilities and real-world validation capabilities. The Group also expects these investments to contribute to enhanced industrial competitiveness, balanced regional development, job creation and broader economic vitality in Korea.

About Hyundai Motor Group

Hyundai Motor Group is a global enterprise that has created a value chain based on mobility, steel, and construction, as well as logistics, finance, IT, and service. With about 250,000 employees worldwide, the Group’s mobility brands include Hyundai, Kia, and Genesis. Armed with creative thinking, cooperative communication, and the will to take on any challenges, we strive to create a better future for all.

More information about Hyundai Motor Group can be found at: http://www.hyundaimotorgroup.com or Newsroom: Media Hub by Hyundai, Kia Global Newsroom, Genesis Newsroom

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SOURCE Hyundai Motor Company

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