Market Report · July 29, 2026
Key data points: The growth forecast = 5.3% annually for the next 7 years. Scroll below to get more insights. This market report covers trends, opportunities and forecasts in CoolMOS IC market to 2031 by type (through-hole and surface-mount), application (automotive, industrial, consumer electronics, telecommunication, medical, and others), and region (North America, Europe, Asia Pacific, and the Rest of the World)
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• Lucintel forecasts that, within the type category, surface-mount is expected to witness higher growth over the forecast period.
• Within the application category, automotive is expected to witness the highest growth.
• In terms of region, APAC is expected to witness the highest growth over the forecast period. Gain valuable insights for your business decisions with our comprehensive 150+ page report. Sample figures with some insights are shown below.


• Growing demand for Higher Power Density: This refers to the ongoing demand to pack more power into compact form factors, necessitating power devices with the capability to absorb increasing power levels with low heat dissipation. For CoolMOS ICs, this translates to designs with reduced on-state resistance (RDS(on)) and enhanced switching behavior to reduce energy losses and enable more compact designs. The effect is smaller, lighter, and more attractive electronic devices, along with lower material costs and improved power abilities for applications like server power supplies, EV chargers, and adapters.
• Increasing Adoption of Electric Vehicle Charging Infrastructure: This trend is a testament to the importance of CoolMOS technology in the emerging EV space. With the global shift towards electric mobility, there exists tremendous demand for high-efficiency and reliable power conversion in both onboard chargers in EVs and fast-charging installations. CoolMOS ICs play a key role in the power factor correction (PFC) and DC-DC conversion phases of these systems because of their high efficiency and reliability. The effect is more efficient and accelerated EV charging, less energy lost, and the facilitation of smaller and lower-cost charging solutions, accelerating EV penetration.
• Renewable Energy System Integration: This is the use of CoolMOS ICs in solar inverters and battery energy storage systems, which are growing. These applications need high-efficiency power conversion to optimize energy harvesting from solar panels as well as reduce loss during energy storage and discharge. CoolMOS technology provides the performance required for these high-voltage applications. The effect includes enhanced overall efficiency of renewable power systems, less energy wastage, greater power grid reliability, and a very important contribution to global decarbonization and sustainable transition.
• Emphasis on Optimizing Robustness and Reliability: This trend focuses on the creation of CoolMOS ICs that are more resistant to severe operating conditions, such as elevated temperatures, voltage surges, and electromagnetic interference. This is especially crucial for industrial applications, automotive systems, and power supplies that have demanding environments. Manufacturers are embedding advanced packaging technologies and better intrinsic diode performance. The consequence is longer product life, less maintenance and replacement expense, greater system stability, and more confidence in the performance of power electronic systems in demanding applications.
• Competition and Coexistence with Wide Bandgap Materials: This trend emphasizes the changing times under which silicon-based CoolMOS ICs are increasingly competing with and complementing newer wide bandgap materials such as Silicon Carbide (SiC) and Gallium Nitride (GaN). Whereas WBG materials provide better high-frequency and high-temperature performance, CoolMOS remains cost-effective and highly efficient at specific voltage and power levels. The effect is a wider variety of power semiconductor solutions to pick the best technology given particular application requirements, cost targets, and performance requirements, resulting in more efficient system designs. These new trends are all combined into reshaping the CoolMOS IC market by propelling innovation towards stronger, more efficient, and more versatile power solutions. The emphasis is on satisfying growing requirements for power density, efficiency, and reliability in fast-growing markets such as EVs, renewable energy, and data centers, while managing the shifting material terrain of power semiconductors.

• New Generation Introductions with Enhanced Figures of Merit: One significant event is the ongoing introduction of new CoolMOS generations (e.g., CoolMOS 8) by leading companies such as Infineon. These new generations have substantially enhanced figures of merit, including lower on-state resistance per unit area (RDS(on)), lower gate charge (Qg), and lower output capacitance (EOSS). The effect is significantly increased power density, allowing for smaller and lighter power supplies and better efficiency over a greater load range, which results in lower energy consumption and enhanced thermal performance for many applications.
• Product Portfolio Extension into Various Applications: Yet another major advancement is product portfolio extension by CoolMOS to cater to a wide variety of applications. These comprise series tailored to particular requirements, for example, resonant topologies' fast-body-diode variants, electric-vehicle-qualified devices for automotive use, and particular families for low-consumption consumer devices or industrial power supplies. The effect is increased design freedom for engineers to choose the best CoolMOS device for their specific application, resulting in optimized system performance, cost-effectiveness, and reduced time-to-market.
• Advances in Packaging Technologies: Significant progress in packaging technologies for CoolMOS ICs has been made, such as the development of new surface-mount device (SMD) packages such as Thin TOLL and SMD-QDPAK, and top-side cooled packages. These new packages minimize parasitic inductances and resistances, enhance thermal dissipation, and support automated assembly. The effect is an additional increase in power density and efficiency, higher reliability, simpler manufacturing processes for end-users, and the capacity to design less space-consuming and thermally efficient power conversion solutions.
• Improved Robustness and Reliability Features: Latest advances involve a significant emphasis on enhancing the robustness and reliability of CoolMOS ICs, particularly for high-power applications such as automotive and industrial power supplies. This entails the design of devices with improved avalanche ruggedness, enhanced cosmic radiation hardness, and improved intrinsic body diode behavior. The result is longer product life, fewer field failures, and more confidence in the long-term reliability of systems operating in severe environments, which is absolutely essential for safety-critical and mission-critical uses.
• Synergistic Development with Gate Drivers and Wide Bandgap Technologies: An important development is the synergistic course pursued by major manufacturers, where the development of CoolMOS ICs tends to be accompanied by the development of optimized gate driver ICs and parallel development of Wide Bandgap (Sic, Gan) technologies. This allows for realizing the full potential of CoolMOS and enables optimized hybrid power solutions. The effect is holistic system optimization, providing designers with a complete set of power solutions that can be integrated to provide best-in-class performance and efficiency across various voltage and power domains. These advancements are deeply transforming the CoolMOS IC Market by promoting a thorough transition towards more efficient, compact, and trustworthy power solutions. The market is shifting to provide higher performance, more versatility, and greater durability, addressing the complex and multifaceted power conversion requirements of contemporary industries across the globe.
• Data Centers and Server Power Supplies: The unabated expansion of data centers and server power supplies is being fueled by the ever-growing cloud computing, AI, and big data processing demands. Strategic expansion is in offering state-of-the-art CoolMOS ICs that support increased power density and higher efficiency (e.g., Titanium Plus efficiency levels) for these power supply units. Opportunities for CoolMOS are optimizing for PFC and LLC resonant converter stages, energy saving, and reducing the total cost of ownership for data center operators.
• Electric Vehicle (EV) Onboard Chargers and Charging Infrastructure: The swift global proliferation of EVs is a huge growth opportunity. CoolMOS ICs play key roles in EV onboard chargers (OBCs), high-voltage to low-voltage DC-DC converters, and off-board fast charging stations. Strategic expansion is to create automotive-qualified CoolMOS solutions with high efficiency, reliability, and power density to facilitate faster, smaller, and lower-cost charging, contributing directly to the expansion of the EV ecosystem.
• Renewable Energy Systems (Solar Inverters and Energy Storage): The world movement towards renewable energy resources such as solar power and wind energy, and growing use of battery energy storage systems, drives high demand for power conversion efficiency. Strategic expansion is about supplying CoolMOS ICs to solar inverters (string and central) and power converters in battery storage units. Opportunities lie in maximizing energy harvesting and minimizing conversion losses, contributing to the overall efficiency and grid integration of renewable energy.
• Consumer Electronics (Adapters, Chargers, TVs, LED Lighting): While the power levels are lower, the sheer number of consumer electronics represents a huge opportunity for CoolMOS ICs for power adapters, chargers, LED lighting, and TVs. Strategic expansion is through cost-efficient and highly efficient CoolMOS solutions that allow for compact designs and comply with energy efficiency standards (e.g., standby power consumption). Opportunities lie in ongoing innovation for increased power density and lower bill of materials in high-volume, price-competitive applications.
• Industrial Power Supplies and Automation: Industrial uses, such as industrial power supplies, motor drives, welding, and factory automation, require highly reliable and rugged power semiconductors. Strategic expansion is delivering CoolMOS ICs withstood to harsh industrial conditions that offer high efficiency and power density for these mission-critical systems. Opportunities include making more efficient, compact, and reliable industrial equipment, consistent with Industry 4.0 trends, and improving overall operational efficiency. These growth opportunities through strategic growth are greatly influencing the CoolMOS IC Market by fueling innovation in the form of highly specialized, application-specific, and integrated power solutions. The market is expanding to address the specific energy efficiency and power density requirements of industry sectors, ensuring sustained growth and consolidation of the position of advanced CoolMOS technology in the future of power electronics.
• STMicroelectronics
• Renesas Electronics
• ROHM Semiconductor
• Texas Instruments
• NXP Semiconductors
• Mitsubishi Electric Corporation
• Texas Instruments
• ON Semiconductor Corporation
• Infineon Technologies
• ROHM Semiconductor
• Through-hole
• Surface-mount
• Automotive
• Industrial
• Consumer Electronics
• Telecommunication
• Medical
• Others
• North America
• Europe
• Asia Pacific
• The Rest of the World
• United States: In the US, the CoolMOS IC market is dominated by the demand for data center, cloud infrastructure, and new AI server applications' high-efficiency power solutions. The recent trends involve the integration of sophisticated CoolMOS 8 Super junction MOSFETs for server power supplies with the aim of optimizing power density and efficiency to minimize carbon emissions and operating expenses. There is also a great focus on solutions that enable the expansion of the EV charging infrastructure and renewable energy systems, which are in line with national sustainability objectives.
• China: China's CoolMOS IC market is notable for enormous expansion in its e-commerce, telecommunications, and electrical vehicle industries, as well as huge investments in industrial automation. New applications involve the massive adoption of CoolMOS technology in smartphone, laptop, and LED lighting power supplies due to the sheer scale of consumer electronics manufacturing. High-power CoolMOS solutions are also being boosted for EV charging stations and industrial power conversion applications as China embarks on rapid industrialization and electric mobility drives.
• Germany: Germany's CoolMOS IC industry is strongly driven by its strong industry sector, which includes automotive production, industrial automation, and renewable energy. The latest trends include the launch of new CoolMOS technology generations that provide improved efficiency and reliability for automotive drivetrains, EV charging applications, and solar energy systems. The focus is highly on high-performance and rugged solutions aligned with the country's high quality standards and push towards Industry 4.0 applications and sustainable energy solutions.
• India: India's CoolMOS IC market is witnessing tremendous growth, led by growing domestic manufacturing, renewable energy projects, and the growing consumer electronics base. Latest trends include the increasing usage of CoolMOS technology in chargers, adapters, and LED lighting applications to cater to the needs of a fast-growing consumer base. Growing demand for high-voltage CoolMOS products also exists in solar and energy storage solutions, driven by India's ambitious renewable energy ambitions and infrastructure development.
• Japan: Japan's CoolMOS IC market is typified by technological innovation, emphasis on energy-saving and high-quality industrial and automotive end uses. New developments include the adoption of CoolMOS technology in compact and highly efficient power supplies for a wide range of electronic devices and industrial equipment. There is also a focus on enabling the nation's efforts in next-generation logic semiconductors and 5G deployment, with CoolMOS serving to optimize power conversion for these cutting-edge technologies to deliver high reliability and performance.
• STMicroelectronics
• Renesas Electronics
• ROHM Semiconductor
• Texas Instruments
• NXP Semiconductors
• Mitsubishi Electric Corporation
• Texas Instruments
• ON Semiconductor Corporation
• Infineon Technologies
• ROHM Semiconductor Q5. Which CoolMOS IC market segment will be the largest in future? Answer: Lucintel forecasts that, within the type category, surface-mount is expected to witness higher growth over the forecast period. Q6. In CoolMOS IC market, which region is expected to be the largest in next 5 years? Answer: In terms of region, APAC is expected to witness the highest growth over the forecast period. Q7. Do we receive customization in this report? Answer: Yes, Lucintel provides 10% customization without any additional cost.
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