“Global EV Wireless Power Transfer Market reached US$ 16.3 million in 2022 and is expected to reach US$ 3,718.7 million by 2030, growing with a CAGR of 97.1% during the forecast period 2023-2030.” As per DataM intelligence research report
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United States: Recent Industry Developments
✅ In September 2025, WiTricity launched next-generation wireless EV charging systems for urban fleets in California. The initiative emphasizes convenience and reduced charging infrastructure complexity. Early adoption shows improved fleet utilization and faster turnaround times.
✅ In August 2025, Qualcomm expanded its EV wireless power transfer pilot programs with embedded dynamic charging lanes. The platform targets in-motion charging and reduced downtime for electric vehicles. Initial deployments highlight higher efficiency and extended EV range.
✅ In July 2025, Plugless Power introduced portable wireless EV chargers compatible with commercial and residential vehicles. The initiative focuses on flexibility and user convenience. Early trials report higher adoption and reduced dependency on fixed charging stations.
✅ In June 2025, General Motors partnered with WiTricity to integrate wireless charging pads in EV fleets and public parking zones. The program emphasizes seamless energy transfer and operational efficiency. Pilot programs demonstrate faster charging cycles and enhanced fleet readiness.
Japan: Recent Industry Developments
✅ In September 2025, Toyota launched wireless EV charging infrastructure for public and private fleets in urban areas. The initiative emphasizes efficiency, convenience, and reduced grid congestion. Early adoption shows improved vehicle uptime and charging accessibility.
✅ In August 2025, Nissan expanded its EV wireless power transfer technology for in-motion and stationary charging solutions. The platform targets extended range and reduced charging wait times. Initial deployments highlight better fleet utilization and operational flexibility.
✅ In July 2025, Honda introduced portable wireless EV chargers compatible with urban and residential EVs. The initiative focuses on convenience and enhanced adoption of electric mobility. Early trials report higher user engagement and easier infrastructure deployment.
✅ In June 2025, Panasonic developed wireless EV charging pads for commercial and public use, integrating smart grid management. The program emphasizes energy efficiency and seamless charging. Pilot programs demonstrate improved charging performance and operational efficiency.
EV Wireless Power Transfer Market: Drivers
The EV wireless power transfer (WPT) market is witnessing rapid growth due to increasing adoption of electric vehicles and the need for convenient, efficient, and contactless charging solutions. WPT technology enables seamless energy transfer without physical connectors, reducing charging time and improving user experience for passenger cars, commercial vehicles, and public transport fleets. Technological advancements in magnetic resonance, inductive charging, power electronics, and smart grid integration are enhancing energy efficiency, safety, and scalability. Growing government support for electric mobility, renewable energy integration, and emission reduction initiatives is further driving market adoption. Expansion of EV infrastructure, including highways, parking facilities, and urban charging networks, is supporting the deployment of wireless charging solutions.
Integration of EV wireless power transfer with smart energy management systems, mobile applications, and connected vehicle platforms is enabling real-time monitoring, predictive maintenance, and optimized energy use. Collaborations between automotive manufacturers, technology providers, and charging infrastructure developers are fostering innovation in high-power, dynamic, and bidirectional charging systems. Increasing investments in research, pilot projects, and standardization efforts are facilitating broader adoption and interoperability. Rising consumer preference for convenience, reduced downtime, and sustainable mobility is creating additional growth opportunities. Overall, technological innovation, EV adoption trends, and supportive regulatory frameworks are propelling sustained growth in the EV wireless power transfer market.
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EV Wireless Power Transfer Market: Major Players
WiTricity Corporation, Qualcomm Halo, Plugless (Evatran Group), Momentum Dynamics Corporation, Bombardier Primove, Hella Aglaia Mobile Vision GmbH, HEVO Inc., Electreon Wireless, Groupe Renault and BMW GROUP.
Segment Covered in the EV Wireless Power Transfer Market:
➥ By Technology: Inductive Power Transfer (IPT), Resonant Inductive Power Transfer (RIPT), Capacitive Power Transfer (CPT)
➥ By Power Transfer Range: 3-11 kW, 11-50 kW, Above 50 kW
➥ By End-User: Residential, Commercial
➥ By Application: Commercial Vehicles, Passenger Vehicles
Research Process:
Both primary and secondary data sources have been used in the EV Wireless Power Transfer Market research report. During the research process, a wide range of industry-affecting factors are examined, including governmental regulations, market conditions, competitive levels, historical data, market situation, technological advancements, upcoming developments, in related businesses, as well as market volatility, prospects, potential barriers, and challenges.
Most Frequently Asked Questions in the EV Wireless Power Transfer Market Research Industry:
➠ Who leads the EV Wireless Power Transfer industry and what’s their competitive positioning regarding capacity, performance, and profitability?
➠ What growth opportunities and market challenges do EV Wireless Power Transfer market vendors face?
➠ Which segments show the highest growth potential and market share distribution?
➠ What factors are driving or limiting EV Wireless Power Transfer market growth?
➠ What are the dominant sales and distribution strategies in the EV Wireless Power Transfer industry?
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Regional Analysis:
⇥ North America (U.S., Canada, Mexico)
⇥ Europe (U.K., Italy, Germany, Russia, France, Spain, The Netherlands and Rest of Europe)
⇥ Asia-Pacific (India, Japan, China, South Korea, Australia, Indonesia Rest of Asia Pacific)
⇥ South America (Colombia, Brazil, Argentina, Rest of South America)
⇥ Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of Middle East & Africa)
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✅ Competitive Landscape
✅ Technology Roadmap Analysis
✅ Sustainability Impact Analysis
✅ KOL / Stakeholder Insights
✅ Consumer Behavior & Demand Analysis
✅ Import-Export Data Monitoring
✅ Live Market & Pricing Trends
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