Press release
Magnetic Components for EV Charger Research: a CAGR of 15.18% during the forecast period
QY Research Inc. (Global Market Report Research Publisher) announces the release of 2025 latest report "Magnetic Components for EV Charger- Global Market Share and Ranking, Overall Sales and Demand Forecast 2026-2032". Based on current situation and impact historical analysis (2020-2024) and forecast calculations (2026-2032), this report provides a comprehensive analysis of the global Magnetic Components for EV Charger market, including market size, share, demand, industry development status, and forecasts for the next few years.The global market for Magnetic Components for EV Charger was estimated to be worth US$ 1226 million in 2025 and is projected to reach US$ 3279 million, growing at a CAGR of 15.2% from 2026 to 2032.
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Magnetic Components for EV Charger Product Definition
Magnetic Components for EV Charger refer to electromagnetic devices such as inductors, transformers, and chokes that are integrated within charging systems to perform essential functions including energy conversion, voltage transformation, current regulation, and electromagnetic interference suppression, enabling efficient and stable transfer of electrical power from the grid to electric vehicle batteries.
Magnetic Components for EV Charger Market Summary
Research Background:
As the global transportation sector accelerates its transition toward electrification, the construction scale of electric vehicle charging infrastructure continues to expand. As the core energy supply equipment for electric vehicles, charging piles have drawn industry attention to their power density, conversion efficiency, reliability and cost control. Magnetic components for EV chargers mainly include high-frequency transformers, power inductors, common-mode chokes, current transformers and driver transformers. These components serve as fundamental passive devices in the power module of charging piles, enabling energy conversion, voltage regulation, electromagnetic interference suppression and electrical isolation. Against the backdrop of widespread adoption of wide-bandgap semiconductor devices such as silicon carbide and gallium nitride, charging piles are evolving toward higher power, higher frequency and smaller volume, which imposes higher requirements on the material properties, structural design and thermal management capabilities of magnetic components, thereby driving continuous technological innovation and rapid market growth in the magnetic component sector.
Development Status:
Currently, the global market for magnetic components for EV chargers is in a phase of rapid expansion. The widespread adoption of DC fast chargers has driven a significant increase in demand for high-performance magnetic components such as high-power high-frequency transformers and flat-wire inductors, while AC slow chargers maintain stable demand for cost-sensitive magnetic components. From a technological perspective, magnetic component manufacturers are committed to improving the saturation flux density and high-frequency loss characteristics of core materials, while reducing production and manufacturing costs through structural integration and automated winding processes. In terms of regional distribution, China, Europe and the United States are the major demand markets for magnetic components for EV chargers. Among them, relying on its complete industrial chain of new energy vehicles and charging facilities, China has become the world's largest producer and consumer of magnetic components for EV chargers. The competitive landscape of the market is relatively fragmented, comprising both traditional magnetic component manufacturers and new entrants focused on the field of new energy vehicle charging. The industry as a whole presents characteristic of being equally driven by technological advancement and economies of scale.
Future Trends:
High-Frequency and High-Power-Density Magnetic Components Will Become Mainstream: As EV charging systems move toward higher power ratings and faster charging capability, magnetic components are increasingly required to operate at higher switching frequencies and elevated thermal conditions. The adoption of wide-bandgap semiconductors such as silicon carbide and gallium nitride allows converters to switch at significantly higher frequencies, which reduces the size of transformers, inductors, and filtering magnetics while improving efficiency. This trend is accelerating the shift toward compact, low-loss magnetic designs optimized for high-frequency power conversion architectures. Wide-bandgap devices enable smaller passive components and reduced magnetic volume within charger power stages.
Planar Magnetics and Integrated Magnetic Structures Will Gain Adoption: Future EV chargers are expected to favor planar transformers, integrated inductors, and compact magnetic assemblies to meet packaging constraints and thermal management requirements. Compared with traditional wound magnetic components, planar structures offer improved heat dissipation, reduced profile height, and better repeatability in automated manufacturing. As charging modules become increasingly modular and power-dense, integrated magnetic designs will help reduce component count, simplify assembly, and enhance converter reliability. Market activity around planar transformers indicates growing alignment between high-frequency EV charging architectures and low-profile magnetic technologies.
Advanced Magnetic Materials Will Become a Key Differentiator: The next phase of development in Magnetic Components for EV Charger applications will increasingly depend on magnetic material innovation. Nanocrystalline cores, high-performance ferrites, amorphous alloys, and low-core-loss soft magnetic materials are becoming critical for reducing energy loss and improving efficiency under high-frequency operation. As EV chargers transition toward higher voltage platforms and faster switching devices, magnetic materials must support lower hysteresis loss, improved thermal stability, and higher saturation performance. The compatibility between advanced magnetic materials and SiC/GaN power electronics is expected to become a major competitive factor for component suppliers. Wide-bandgap semiconductor adoption is pushing demand for magnetics capable of operating efficiently under higher voltage, temperature, and switching conditions.
Supply Chain Analysis:
l Upstream
The upstream segment primarily involves raw materials and components required for magnetic component manufacturing, including magnetic core material suppliers, enamelled wire and triple-insulated wire suppliers, bobbin and base structural component manufacturers, as well as producers of winding equipment and testing instruments. Among these, magnetic core materials are the core link determining the performance of magnetic components. Different material approaches such as ferrite, amorphous, nanocrystalline and metal powder cores correspond to different loss characteristics and cost structures. Technological progress in upstream materials directly constrains the performance ceiling of magnetic components.
l Downstream
The downstream segment directly connects to charging pile manufacturers and the in-house charging equipment departments of new energy vehicle OEMs, as well as including charging pile power module manufacturers and the spare parts procurement systems of charging operators. Downstream customers have stringent requirements for magnetic components in terms of power density, thermal stability, electromagnetic compatibility and reliability over lifetime, and often require collaborative customized development. Furthermore, as the charging pile operation and maintenance market gradually matures, the demand for magnetic components used in after-sales repair and replacement will also be gradually released, constituting an incremental component of the downstream market.
Introduction of Leading Companies in the Industry
TDK is a global electronics components manufacturer headquartered in Tokyo, Japan, with a history dating back to the commercialization of ferrite magnetic materials in the early twentieth century. The company specializes in magnetic technologies, passive components, sensors, power solutions, and energy-related products serving automotive, industrial, communications, consumer electronics, and renewable energy markets. TDK has strong capabilities in magnetic materials, inductors, EMI suppression components, high-frequency devices, and power electronics, making it a key supplier for electric vehicles, charging infrastructure, and advanced electronic systems. Through an extensive worldwide manufacturing and R&D network, TDK maintains a leading position in electronic functional materials and magnetic component technologies.
TDK Magnetic Components for EV Charger Product Introduction:
TDK provides a broad portfolio of magnetic components for EV Charger applications, including inductors, common-mode chokes, power magnetic devices, EMI suppression components, and ferrite-based magnetic solutions used in charging infrastructure and automotive power electronics. Leveraging its long-standing expertise in ferrite materials and magnetic design, TDK develops high-efficiency magnetic components that support power conversion, filtering, and energy storage functions in AC chargers, DC fast chargers, onboard chargers, and power supply systems. According to TDK's official product portfolio, the company offers power inductors, coupled inductors, choke coils, and filtering components designed for high-frequency and high-current operation.
Within EV charging systems, TDK magnetic components are used for input filtering, EMI suppression, current smoothing, DC-DC conversion, and energy storage in switching power architectures. The company supplies automotive-grade common-mode chokes and inductors engineered to withstand elevated temperatures, vibration, and demanding electrical conditions typical of EV charging environments. TDK's Automotive Solutions platform highlights high-saturation inductors, power chokes, and EMC components that contribute to stable operation and reduced electromagnetic interference in automotive and charging electronics.
As charging systems move toward higher power density and faster charging performance, TDK continues to expand its lineup of high-current and high-temperature magnetic components. The company emphasizes compact design, low magnetic losses, and automotive qualification standards to support next-generation charging modules and onboard charging systems. With a strong portfolio spanning ferrite materials, inductors, and electromagnetic filtering technologies, TDK remains an important supplier of magnetic components for EV charger power conversion and energy management applications.
The report provides a detailed analysis of the market size, growth potential, and key trends for each segment. Through detailed analysis, industry players can identify profit opportunities, develop strategies for specific customer segments, and allocate resources effectively.
The Magnetic Components for EV Charger market is segmented as below:
By Company
TDK
Eaton
Delta Electronics
Murata Manufacturing
Würth Elektronik
Proterial
Sumida
VACUUMSCHMELZE
Pulse Electronics
Tamura
Sunlord
Click
Microgate Technology
JingQuanHua
Mentech
Eaglerise
Spitzer
Gloria
Segment by Type
Inductors
Transformers
EMI Components
Others
Segment by Application
Public Charging
Residential Charging
Each chapter of the report provides detailed information for readers to further understand the Magnetic Components for EV Charger market:
Chapter 1: Introduces the report scope of the Magnetic Components for EV Charger report, global total market size (valve, volume and price). This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry. (2021-2032)
Chapter 2: Detailed analysis of Magnetic Components for EV Charger manufacturers competitive landscape, price, sales and revenue market share, latest development plan, merger, and acquisition information, etc. (2021-2026)
Chapter 3: Provides the analysis of various Magnetic Components for EV Charger market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments. (2021-2032)
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.(2021-2032)
Chapter 5: Sales, revenue of Magnetic Components for EV Charger in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world..(2021-2032)
Chapter 6: Sales, revenue of Magnetic Components for EV Charger in country level. It provides sigmate data by Type, and by Application for each country/region.(2021-2032)
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product sales, revenue, price, gross margin, product introduction, recent development, etc. (2021-2026)
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.
Benefits of purchasing QYResearch report:
Competitive Analysis: QYResearch provides in-depth Magnetic Components for EV Charger competitive analysis, including information on key company profiles, new entrants, acquisitions, mergers, large market shear, opportunities, and challenges. These analyses provide clients with a comprehensive understanding of market conditions and competitive dynamics, enabling them to develop effective market strategies and maintain their competitive edge.
Industry Analysis: QYResearch provides Magnetic Components for EV Charger comprehensive industry data and trend analysis, including raw material analysis, market application analysis, product type analysis, market demand analysis, market supply analysis, downstream market analysis, and supply chain analysis.
and trend analysis. These analyses help clients understand the direction of industry development and make informed business decisions.
Market Size: QYResearch provides Magnetic Components for EV Charger market size analysis, including capacity, production, sales, production value, price, cost, and profit analysis. This data helps clients understand market size and development potential, and is an important reference for business development.
Other relevant reports of QYResearch:
Global Magnetic Components for EV Charger Market Outlook, In‐Depth Analysis & Forecast to 2032
Global Magnetic Components for EV Charger Sales Market Report, Competitive Analysis and Regional Opportunities 2026-2032
Global Magnetic Components for EV Charger Market Research Report 2026
About Us:
QYResearch founded in California, USA in 2007, which is a leading global market research and consulting company. Our primary business include market research reports, custom reports, commissioned research, IPO consultancy, business plans, etc. With over 19 years of experience and a dedicated research team, we are well placed to provide useful information and data for your business, and we have established offices in 7 countries (include United States, Germany, Switzerland, Japan, Korea, China and India) and business partners in over 30 countries. We have provided industrial information services to more than 60,000 companies in over the world.
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QY Research Inc.
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