Chip Antenna Market | Competitive Landscape Analysis, Forecast to (2020-2030).
Chip Antenna Market
Overview:
The global market report on chip antenna is showing signs of attaining substantial valuation by the end of 2023. The market has an opportunity to move forward with a 15% CAGR during the forecast period of 2018 to 2023. Market Research Future (MRFR) studied the global market and discussed various factors that can bolster various market moves. Growing demand for smart grid, automation, internet of things, the inclusion of it in the healthcare sector, rising intake of consumer electronics, the involvement of the sector in bolstering the transportation industry, hike in investment for research projects, and others are expected to take the global chip antenna market forward.
Segmentation:
The global chip antenna market has been studied by MRFR analysts on the basis of type, applications, and end-users. This understanding is expected to provide insights that can be used to discuss factor-wise challenges and various dynamics.
By type, the chip antenna market has been segmented on the basis of ceramic multilayer chip antennas and a dielectric chip antenna.
By application, the study of the chip antenna market includes reviews of Bluetooth, ZigBee, WLAN, ISM, and others.
By end user, the report on the chip antenna market includes a proper understanding of segments like transportation, BFSI, industrial, government, manufacturing, healthcare, IT & telecommunication, and others. The healthcare sector is promoting substantial growth opportunities by creating scopes for market expansion.
Read more@ https://www.marketresearchfuture.com/reports/chip-antenna-market-1582
Regional Analysis:
Asia Pacific has the chance to retain their dominant position in the market as the burgeoning end user industries are boosting the demand for chip antenna. Easy adoption of advanced technologies to promote the North American market.
Competitive Landscape:
Mitsubishi Materials (Japan), Partron Co., Ltd. (South Korea), Johanson Technology, Inc. (US), Antenova M2M (UK), Yageo Corporation (Taiwan), Fractus, S.A. (Spain), Pulse Electronics (US), Fractus Antennas (Spain), Taoglas (Ireland), Vishay Intertechnology, Inc. (US)., and others are major companies to inspire changes in the global chip antenna market. MRFR’s understanding of their latest tactical developments would help in forming strategic decisions for the coming years.
Industry News:
In August 2020, AVX Corporation, a company known for its superlative service as a manufacturer and supplier of advanced control, electronic sensor, components and interconnect, and antenna solutions, announced the launch of high-CV resin-molded, surface-mount tantalum chip capacitors that comes with a miniature and low-profile facedown design. This new chip is expected to gain significant traction from automotive electronics applications. The new F98-AJ6 Series capacitors are in the market in miniature 0603 and 0805 chip sizes with heights of 1.0mm and 0.80±0.10mm, respectively. These feature facedown under-tab terminations that have been implemented to achieve high volumetric efficiency, high capacitance, and high PCB assembly densities and make sure they help conserve board space and curb costs.
FRACTUS ANTENNAS DUO mXTEND antenna booster has been developed on the basis of the firm’s Virtual Antenna technology, which ensures the replacement of conventional and custom antenna solutions and integration of a new class of antenna boosters that encompasses miniature and off-the-shelf chip antenna components among others. These multiband, multipurpose chip antennas are perfect for a variety of wireless platforms to inspire faster, simpler, and less expensive designs against various custom solutions. This technology involving features like miniaturizing of the product makes it suitable for small and portable tracking devices and ensures the curtailing of custom antenna development.
The global market for chip antenna may find traction from industries like consumer electronics and healthcare as end users are trying to adapt to changes initiated by the COVID-19 pandemic.
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