The Global Wireless Charging Receiver Chips Market size is worth $XX billion in 2018 and expected to reach XX billion by 2028, at a CAGR of XX% during the forecast period. The major factor driving the growth of this market is the growing demand for wireless charging technology owing to the increasing adoption of smartphones with wireless charging features which in turn boosts up the requirement for receiver chip components such as wireless power management ICs, antenna coils, filters, and other related components.
Wireless Charging Receiver Chip is a chip used to convert power from electromagnetic induction in order to charge other devices wirelessly. Wireless charging receiver chips are inserted into the device that needs wireless charging and then placed on an inductive charger so as to be charged without needing cables or connectors.
Wireless Charging Receiver Chips are also used in the charging of electric vehicles. In order to charge an electric vehicle, a wireless receiver chip is required and it can be embedded into either the floor or on the side of roadways so that as cars pass by wireless charge. These chips send power inductively towards car coils which then use that energy to generate current for powering up batteries inside each vehicle passing over them.
On the basis of Type, the global wireless charging receiver chips market is segmented into five watts, fifteen watts, and others.
On the basis of Application, the global wireless charging receiver chips market is segmented into Mobile Phone, Tablet, Other.
Wireless charging receiver chips are used in mobile phones to receive power inductively from a transmitter embedded into the floor or on the side of roadways so that as cars pass by they can be charged wirelessly. these chips send energy towards car coils which then use this energy to generate current for powering up batteries inside each vehicle passing over them. wireless charging has become popular due to its convenience and simplicity, since it does not require cables like wired chargers do and also because drivers keep their phone with them while driving, making it more accessible for when users need their device's battery charge refilled during long trips.
Wireless charging receiver chips are used in tablets to allow wireless power transmission between a tablet and a charger. For example, without this chip, the user would need to plug their USB-C cable into a specific adapter that is compatible with the charging pad they want to use. The issue with this setup is that it can be inconvenient because you have to carry around your cables all day or keep track of where they are at home. Wireless charging eliminates these hassles by making everything more portable for users so long as there’s an available wireless charging pad nearby.
The typical wireless charging receiver chip is the QFMT-20 and this particular type of chip was designed specifically for tablets. This means that it can handle higher power inputs at 20 watts to charge a tablet as quickly as possible without being too hot or overheating, which could cause irreversible damage to your device. Similar chips are also used in smartphones (QFMU-30), but they cannot be charged with such high amounts of power because their batteries operate on lower voltages than those found in tablets or laptops. The efficiency rating of these devices ranges from 75% all the way up to 95%, depending on what you’re using them for.
On the basis of Region, the global wireless charging receiver chips market is segmented into North America, Latin America, Europe, Asia Pacific, and Middle East & Africa. Of these regions in 2016, North American held the largest share with 46% of total revenue followed by Latin America at 24%, respectively. Asia Pacific dominated the market with 59%of all volume sales worldwide in 2016 mainly due to its high GDP per capita that has given rise to a large number of middle-class buyers who can afford products such as mobile phones devices which are equipped with this technology for enhanced usage.
-Smartphone and tablet production has increased significantly during the forecast period. In addition, there are more than one billion connected devices in this market by 2020. This is driving demand for wireless charging technology across regions globally with a large adoption of smartphones and tablets.
-The evolution of low power Wi-Fi chipset technologies to enable multi functionalities to be integrated into single chipsets will drive competition among chipmakers going forward as these developments allow OEMs to integrate wireless technologies such as Bluetooth®, GPS-, FM Radio, RFID, etc., on a single platform which eliminates interoperability problems due to various different interfaces required previously and also reduces the cost associated with multiple IC designs.-Increasing uptake of wirelessly powered cars will boost the application base further up to 2028.
Up Market Research published a new report titled “Wireless Charging Charger Receiver Chip Market research report which is segmented by Types (5W, 15W, Others), By Applications (Mobile Phone, Tablet, Others), By Players/Companies IDT, Broadcom, Qualcomm, STMicroelectronics, E-Charging, ROHM Semiconductor”. As per the study the market is expected to grow at a CAGR of XX% in the forecast period.
Report Attributes | Report Details |
Report Title | Wireless Charging Charger Receiver Chip Market Research Report |
By Type | 5W, 15W, Others |
By Application | Mobile Phone, Tablet, Others |
By Companies | IDT, Broadcom, Qualcomm, STMicroelectronics, E-Charging, ROHM Semiconductor |
Regions Covered | North America, Europe, APAC, Latin America, MEA |
Base Year | 2020 |
Historical Year | 2018 to 2019 (Data from 2010 can be provided as per availability) |
Forecast Year | 2028 |
Number of Pages | 234 |
Number of Tables & Figures | 164 |
Customization Available | Yes, the report can be customized as per your need. |
The report covers comprehensive data on emerging trends, market drivers, growth opportunities, and restraints that can change the market dynamics of the industry. It provides an in-depth analysis of the market segments which include products, applications, and competitor analysis.
The market is segmented by Type 5W, 15W, Others and By Application Mobile Phone, Tablet, Others.
Some of the companies that are profiled in this report are:
Wireless Charging Charger Receiver Chip Market research report delivers a close watch on leading competitors with strategic analysis, micro and macro market trend and scenarios, pricing analysis and a holistic overview of the market situations in the forecast period. It is a professional and a detailed report focusing on primary and secondary drivers, market share, leading segments and geographical analysis. Further, key players, major collaborations, merger & acquisitions along with trending innovation and business policies are reviewed in the report.
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Based on region, the market is segmented into North America, Europe, Asia Pacific, Latin America and Middle East & Africa (MEA). North America region is further bifurcated into countries such as U.S., and Canada. The Europe region is further categorized into U.K., France, Germany, Italy, Spain, Russia, and Rest of Europe. Asia Pacific is further segmented into China, Japan, South Korea, India, Australia, South East Asia, and Rest of Asia Pacific. Latin America region is further segmented into Brazil, Mexico, and Rest of Latin America, and the MEA region is further divided into GCC, Turkey, South Africa, and Rest of MEA.
We have studied the Wireless Charging Charger Receiver Chip Market in 360 degrees via. both primary & secondary research methodologies. This helped us in building an understanding of the current market dynamics, supply-demand gap, pricing trends, product preferences, consumer patterns & so on. The findings were further validated through primary research with industry experts & opinion leaders across countries. The data is further compiled & validated through various market estimation & data validation methodologies. Further, we also have our in-house data forecasting model to predict market growth up to 2028.
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