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Multi-mode solutions that are compatible with the advantages of different wireless charging technologies will become the mainstream in the future. As there is currently no unified standard for wireless charging technology, and each standard camp has its own technical advantages and disadvantages, the industry has emerged to adopt multi-mode solutions to solve the compatibility issues between different standards, and enable wireless charging products to provide both charging efficiency and Space freedom experience.
Wireless charging technology solutions include magnetic induction (MI) and magnetic resonance (MR) technologies. Regardless of the direction of the consumer market, wireless charging has become an inevitable trend. In the next few years, wireless charging will mainly be promoted by mobile phone manufacturers and begin to penetrate the mobile phone market; subsequently, the computer market with a sound ecosystem will follow suit and bring about the growth of wireless charging technology. From then on, wireless charging will develop A solution that supports mobile phones and computers. There are currently many reports and studies on wireless power adoption rates and potential total effective market (TAM), but it is not easy to provide accurate market information because in these forecasts, adoption rate and technology selection are key parameters. There are two main standards for magnetic induction technology: Wireless Power Consortium (WPC) and Power Utility Alliance (PMA). Both standards are quite mature, and there are many products in use in the consumer market.
The Alliance for Wireless Power (A4WP) is the first standard for magnetic resonance. It is worth noting that Intel’s magnetic resonance wireless charging technology is designed for its own ultra-thin laptops and ecosystems; others such as in industrial and special applications PowerbyProxi and WiTricity, which have established their position in the field, are also beginning to enter the consumer market.
To answer the question of the impact of standards and solutions on the future direction of wireless charging technology, you must first understand the differences between MI and MR technologies. After fully understanding and familiarizing yourself with the application/system requirements, you can choose solutions for specific applications.
Solve the battery capacity bottleneck and wireless charging applications rise
Mobile solutions pioneered the adoption of wireless charging technology in the consumer market. Because of Long Range Evolution (LTE) technology, communication speed and bandwidth will not encounter bottlenecks at least in the next few years. Convenience is one of the key factors driving mobile solutions in the consumer market. Different mobile solutions, such as mobile phones, tablet computers, multimedia players and mobile TVs, require different transformers and connector interfaces, so it is necessary to Charging requires carrying a lot of connectors and transformers. If there is a universal wireless transformer plus a complete infrastructure and ecosystem, this demand can be met. It can be used in cars, coffee shops, libraries, restaurants, trains, airplanes, offices, and conference halls. It can be charged wirelessly at any time and anywhere, bringing the much-anticipated convenience.
Every 2 years the appearance, performance and functionality of mobile solutions are upgraded, and these upgrades force changes in power requirements, connectors and interfaces, thus requiring new transformers. These changes and upgrades also create waste by retiring and discarding existing transformers. Eliminating various transformers and connectors and adopting standard wireless charging will help reduce electronic waste and improve the "green credentials" of mobile devices.
Another important factor is the technological upgrade of mobile solutions, such as the adoption of display technologies such as 1,080p and 3D. Mobile solutions will increasingly adopt high-resolution display technology supported by high-performance graphics controllers and multi-core central processing units (CPUs); in addition, the integration of an increasing variety of mobile solution technologies, including 3D global satellite Positioning system (GPS) solutions, high-performance audio and video technology, near field communication (NFC) technology, portable TVs and high-performance games will increase the demand for device battery power.
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