5G Infrastructure Material Market

By Material Type (Organic Material, [Liquid Crystal Material (LCP), Polyimide (PI), Polytetrafluoroethylene (PTFE), Others] Ceramics, Glass),
By Application (Base Stations, Smart Phone),
By End Use (Antenna & Antenna Radome, Microwave Circuits, Circuit Boards & Substrates, Power Amplifiers, Cables, Others),
By Region (North America, Europe, Asia-Pacific, Latin America, Middle East & Africa):

Global Analysis and Forecast 2022-2032.

Domain:
Materials and Chemicals
Report Code:
MC21958
Published Date:
December 2022

The global 5G infrastructure material market is to be worth more than USD 1,432.4 million by 2032.

Numerous applications, including IoT, autonomous vehicles, and 5G cellphones, have benefited from 5G technology. Active antenna systems are the primary hardware need of these 5G end-user applications. Integrating these active antenna systems supports a remote radio head. It addresses the 5G issues of increased capacities with localized beams and space diversity using massive multiple-input multiple-output (MIMO) technology. Both 5G base stations and smartphones use these MIMOs. Several businesses are working to undertake research and create substrate materials for antenna circuit boards that are 5G-capable. DuPont de Nemours, Inc., Hitachi Chemical Company, Ltd., Rogers Corporation, and Toray Industries, Inc. are a few of the major market participants. To take the lead in the 5G race, governments from several nations are intensifying their efforts to produce 5G infrastructure materials. Organizations are developing and researching new materials to advance the 5G sector. Material-developing enterprises are working with telecom corporations and organizations to successfully launch their 5G solutions and assess their efficiency characteristics. For instance, in 2018, AGC Inc. and NTT Docomo worked together to create a glass antenna for 5G applications.

The companies operating within the drone camera industry are undergoing mergers, collaboration, acquisition, long-term contracts, and service agreements to increase their global footprint. For instance, in June 2022, Ericsson, ConcealFab, and Valmont Industries entered a leadership partnership to devise a method to simplify deployment and ensure faster deliveries of 5G technology to ensure these companies meet the increasing demand of the region.

According to the CXOs and primary research conducted, the introduction of metamaterials will play a major role in defining the business opportunities within the 5G infrastructure material market. Metamaterials are created by combining several components of composite materials, including metals or plastics, and are designed to have qualities that don't exist in nature. Electromagnetic and acoustic waves can interact with and can be controlled by metamaterials. Devices can operate at substantially higher performance and efficiency levels than conventional materials because of the use of these materials. The ability to manufacture small-scale devices thanks to metamaterials is another important benefit. Metamaterials will enable technical and design advancement in the 5G industry, making them a compelling alternative to traditional materials for 5G infrastructure in the near future. 5G antennas, mm-wave radars, lidars, wireless chargers, and vibration dampers used in autonomous vehicles are among the devices that use metamaterials.


The 5G infrastructure material market is analyzed across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. In line with the analyzed region, the Asia-Pacific region will witness the highest market share, followed by Europe, Asia-Pacific, Latin America, and Middle East & Africa. Quick adoption of new technologies, support by the regional government towards integration of 5G technologies, and the presence of major industry players within the region are primary factors supporting market potential within the North American region. The major companies operating within the market are AGC Inc., Daikin Industries, Ltd., DuPont de Nemours, Inc, Hitachi Chemical Company, Ltd., ITEQ Corporation, Kaneka Corporation, Kuraray Co., Ltd., Panasonic Corporation, PolyOne Corporation, Rogers Corporation.

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