Electric Vehicle Wireless Charging (EVWC) is a system that allows electric vehicles to be charged without the need for a physical connection between the vehicle and the charging station. The EVWC system uses inductive charging, which uses an electromagnetic field to transfer energy between two coils. One coil is located on the ground, and the other is located on the underside of the vehicle.
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The key trends in electric vehicle wireless charging technology are the development of new charging standards, the increasing adoption of inductive charging, and the increasing deployment of public charging infrastructure.
The Society of Automotive Engineers (SAE) has developed a new standard for wireless charging of electric vehicles, called the SAE J2954. This standard defines the technical requirements for inductive charging of electric vehicles and is the first step toward creating a global standard for wireless charging of electric vehicles.
The adoption of inductive charging is increasing, as it offers a number of advantages over traditional wired charging, including convenience, safety, and efficiency. Inductive charging is also well-suited for public charging infrastructure, as it does not require the installation of new wiring or electrical outlets.
The deployment of public charging infrastructure is increasing, as governments and private companies invest in the development of electric vehicle charging infrastructure. In the United States, the Department of Energy has invested over $4 billion in the development of electric vehicle charging infrastructure, and there are now over 16,000 public charging stations across the country.
The increasing adoption of electric vehicles, the development of new charging standards, the increasing deployment of public charging infrastructure, and the increasing adoption of inductive charging are all key trends in electric vehicle wireless charging technology.
The key drivers of the electric vehicle wireless charging market are the increasing adoption of electric vehicles, the need for efficient and quick charging of electric vehicles, and the lack of a physical connection between the vehicle and the charging station.
The increasing adoption of electric vehicles is one of the key drivers of the electric vehicle wireless charging market. The growth of the electric vehicle market is being driven by the increasing awareness of the environmental benefits of electric vehicles, the declining cost of electric vehicles, and the increasing availability of charging infrastructure.
The need for efficient and quick charging of electric vehicles is another key driver of the electric vehicle wireless charging market. Electric vehicles have a limited range, and need to be charged frequently. Wireless charging is a more efficient way to charge electric vehicles, as it eliminates the need for a physical connection between the vehicle and the charging station.
The lack of a physical connection between the vehicle and the charging station is another key driver of the electric vehicle wireless charging market. Wireless charging stations can be installed in a variety of locations, such as parking lots, garages, and driveways. This eliminates the need for electric vehicle owners to find a charging station with an available charging port, and makes it more convenient to charge an electric vehicle.
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The Electric Vehicle Transmission Market is segmented by charging method, distribution channel, vehicle type, and region. On the basis of charging method, the market is segmented into capacitive wireless power transfer (CWPT), magnetic gear wireless power transfer (MGWPT), resonant inductive power transfer (RIPT), and inductive power transfer (IPT). Depending on the distribution channel, the market is bifurcated into OEMs and aftermarket. By vehicle type, the market is further divided into battery electric vehicles (BEV), plug-in hybrid electric vehicle (PHEV), and commercial electric vehicles. Region-wise, the market is analyzed across North America, Europe, Asia-Pacific, and
The key players in the Electric Vehicle Transmission Market are IPT Technology Inc., Continental AG, Evatran Group (plugless), Nidec Mobility Corporation, Renesas Electronics, Powermat Technologies, Qualcomm Technologies, Robert Bosch GmbH, Texas Instruments, Toyota Motor Corporation, and Witricity.
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