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The Global Chip Antenna Market size is expected to reach $2.9 billion by 2028, rising at a market growth of 13.2% CAGR during the forecast period

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New York, Feb. 21, 2023 (GLOBE NEWSWIRE) — Reportlinker.com announces the release of the report “Global Chip Antenna Market Size, Share & Industry Trends Analysis Report By Type, By Application, By End User, By Regional Outlook and Forecast, 2022 – 2028” – https://www.reportlinker.com/p06422836/?utm_source=GNW
Chip antennas are smaller than a typical antenna but transmit and receive electromagnetic waves.

This indicates that they are frequently incorporated within compact electronic devices and are reasonably priced, given their high quality. The increasing use of smartphones and tablets, as well as the increasing penetration of the internet, are some of the key factors fueling the market’s expansion. Furthermore, the advent of next-generation wireless technologies and the increased demand for reliable connectivity are further aspects that help define the expanding market environment.

In addition, the market for chip antennas is expanding steadily due to rising energy consumption, particularly from the manufacturing industries. Using fractal geometry is one way to design an antenna that may be included on a PCB. A fractal is an intricate pattern created by repeatedly arranging simple shapes in such a way that the material’s length or perimeter radiating an electromagnetic signal is maximized.

These antennas must match the signal wavelength, and also the fractal pattern must be preserved in at least two distinct ratios. These antennas, which can be tailored to fit a range of footprints, are showing up more frequently in mobile gadgets. Overall, fractal antennas have remarkable gain and bandwidth. In addition, because fractal antenna designs don’t need any extra parts to function, they are more flexible.

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COVID-19 Impact Analysis

The COVID-19 outbreak had a significant negative influence on the chip antenna market. Because of the pandemic, many countries imposed and extended lockdowns, which caused industry and manufacturing facilities all around the world to shut down due to crisis and a lack of labor. As a result, it is determined that the market experienced a decline after considering the opinions of numerous industry experts from different segments of the value chain, including OEMs, integrators, end users, suppliers, and distributors. The financial results of different businesses in the chip antenna ecosystem were also observed to be negative. However, it is anticipated that the market will bounce back in the coming years and continue to rise throughout the projected period.

Market Growth Factors

Growing utilization of chip antennas in various IOT applications

IoT deployment is likely to increase across all end-user segments, which is anticipated to significantly boost the demand for chip antennae. As IoT equipment automatically analyzes development cycles and maintains warehouses and stocks, they are being used in manufacturing to improve the production flow of a plant. It is one of the main factors behind the recent explosion in IoT device investment. Additionally, the automation industry will incorporate more connectivity with devices by 2025. It will also propel the demand and expansion of the chip antenna market.

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Rising use of GPS/GNSS and other sensors in navigation systems

Navigational systems provide the ideal routes between two points. It is supported by external technologies like the Global Positioning System (GPS) and satellite-based radio navigation systems. GPS/GNSS has many advantages, including high precision, usability, reliability, and self-calibration. Combining data from many sources is a standard strategy in many fields to improve results. GIS and GPS have been combined to visualize and implement a specific area’s characteristics. Thereby fuelling the expansion of the market.

Market Restraining Factors

High cost of implementation and easy detuning issues

It is anticipated that the demand for chip antenna will decrease by a lack of experienced workers and expensive maintenance and construction costs for the infrastructure needed to enable flat panel antennas. The lack of operability as well as compatibility between supplier and ODM, along with the irregular performance efficiency and insufficient range of chip antenna, are also aiding the problem of using chip antennas. The inconsistency in numerous operating frequencies for various applications serves as the major limitation for the expansion of the chip antenna market during the forecast period. Therefore, all these factors significantly hamper chip antenna utilization and consequently limit the market’s growth.

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Type Outlook

Based on type, the chip antenna market is categorized into LTCC chip and dielectric chip. The LTCC chip segment garnered the highest revenue share in the chip antenna market in 2021. The updated and more affordable variant of HTCC, LTCC (low temperature co-fired ceramic), has firing temperatures between 700 and 960 degrees Celsius. Hybrid circuits, resistors, inductors, transformers, sensors, and microsystems are some of the main uses of LTCC. In a single multilayer package, LTCC provides capabilities like low dielectric loss, high/low permittivity, and multi-functional features through integration and linkages.

Application Outlook

On the basis of application, the chip antenna market is divided into WLAN/WiFi, Bluetooth, dual band/multi band, and GPS/GNSS. The GPS/GNSS segment recorded a significant revenue share in the chip antenna market in 2021. The use of chip antenna technology in a range of tracking equipment, fleet management systems, and wearable applications has been shown to provide the optimum GNSS (Global Navigation Satellite System) performance. Different new devices need adaptable GNSS/GPS (Global Positioning System) connections, and chip antennas are the ideal option when size, weight, portability, and cost are concerns.

End User Outlook

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Based on end user, the chip antenna market is segmented into consumer electronics, automotive, healthcare, telecommunication, and others. The automotive segment garnered a remarkable growth rate in the chip antenna market in 2021. Integrating sensors and security features like ADAS (advanced driver assistance systems) in automotive is the primary factor advancing the segment’s expansion. Many onboard sensors, including radars, LiDAR, and cameras, act as the vehicle’s eyes to provide perception. ADAS-provided perception works with artificial intelligence to give the vehicle awareness of its surroundings and impediments, both static and moving, anticipated and unanticipated.

Regional Outlook

On the basis of region, the chip antenna market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The Asia Pacific region procured the highest revenue share in the chip antenna market in 2021. IoT spending is primarily concentrated in the Asia Pacific region, with Singapore and South Korea predicted to be among the prominent markets for chip antenna adoption in IoT. Data from the Organization for Economic Co-operation and Development (OECD) shows that South Korea is the nation with the most Internet-connected devices per habitat.

The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Linx Technologies, Inc. (TE Connectivity Ltd.), Vishay Intertechnology, Inc., Yageo Corporation, Mitsubishi Materials Corporation, Taoglas, Antenova Ltd., Johanson Technology, Inc., Ignion, SL, and Shenzhen Sunlord Electronics Co., Ltd.

Scope of the Study

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Market Segments covered in the Report:

By Type

• LTCC Chip

• Dielectric Chip

By Application

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• Bluetooth

• WLAN / WiFi

• GPS / GNSS

• Dual Band / Multi Band

By End User

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• Telecommunication

• Consumer Electronics

• Automotive

• Healthcare

• Others

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By Geography

• North America

o US

o Canada

o Mexico

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o Rest of North America

• Europe

o Germany

o UK

o France

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o Russia

o Spain

o Italy

o Rest of Europe

• Asia Pacific

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o China

o Japan

o India

o South Korea

o Singapore

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o Malaysia

o Rest of Asia Pacific

• LAMEA

o Brazil

o Argentina

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o UAE

o Saudi Arabia

o South Africa

o Nigeria

o Rest of LAMEA

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Companies Profiled

• Linx Technologies, Inc. (TE Connectivity Ltd.)

• Vishay Intertechnology, Inc.

• Yageo Corporation

• Mitsubishi Materials Corporation

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• Taoglas

• Antenova Ltd.

• Johanson Technology, Inc.

• Ignion, SL

• Shenzhen Sunlord Electronics Co., Ltd.

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Unique Offerings

• Exhaustive coverage

• Highest number of market tables and figures

• Subscription based model available

• Guaranteed best price

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• Assured post sales research support with 10% customization free
Read the full report: https://www.reportlinker.com/p06422836/?utm_source=GNW

About Reportlinker
ReportLinker is an award-winning market research solution. Reportlinker finds and organizes the latest industry data so you get all the market research you need – instantly, in one place.

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GlobeNewswire is one of the world's largest newswire distribution networks, specializing in the delivery of corporate press releases financial disclosures and multimedia content to the media, investment community, individual investors and the general public.

Artificial Intelligence

World Top-Performing Incubator Conference 2024 Held in Lingang Shanghai, China

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SHANGHAI, Oct. 1 2024 /PRNewswire/ — The World Top-Performing Incubator Conference 2024 (WTIF 2024), one of the series activities of Pujiang Innovation Forum, themed “Boundless Innovation, Collaborative Synergy”, was held in Lin-gang Special Area, Shanghai from September 26th to 28th, 2024.

During the opening ceremony, Zhao Chaofan, Director General, the Department of Science and Technology, Ministry of Industry and Information Technology (MIIT), Wang Dehua, Director of Incubation System Construction Division of Torch High Technology Industry Development Center Ministry of Science and Technology, Zhai Jinguo, Deputy Director of the Science and Technology Commission of Shanghai Municipality, and Peng Shiquan, Deputy Director of Lin-gang Special Area Management Committee attended and delivered welcome speeches. Li Youping, Deputy Director of the Torch Technology Industry Development Center, MIIT, Chen Xin, Vice President of Shanghai Association for Science and Technology, Sun Meng, Vice President of Shanghai Lingang Economic Development, and Huang Lihong, Director of Shanghai Technology Innovation Center, collectively launched WTIF 2024.
DMZ, The Drivery GmbH, London & Partners, UtrechtInc Startup Incubator, ITU Çekirdek Incubation Center,Startups House, 22 On Sloane, Caohejing Humanoid Robots Innovation Incubator, G60 Satellite Internet Incubator, Lingang Pujiang Entrepreneurship and Innovation Park, Lingang Medical Device Innovation Center and HCH Ventures officially joined “International Innovation Synergy and Incubation Alliance”.
Joint incubation contracts have been signed by several top-tier incubators: Startups House and Step Innovation, Peking University International S&T Innovation Center at Lingang and Lingang Science and Technology Investment, ITU Çekirdek Incubation Center and Shanghai Lingang United Development, 22 on Sloane and Lingang Pujiang Entrepreneurship and Innovation Park, USP Innovation Agency and Shanghai Pudong Software Park Incubator. Several letters of intent for project implementation have been signed, covering Nine Dimension Turing Technology and Caohejing Hi-Tech Park, Beijing Haibaichuan Technology and Shanghai Lingang United Development, and Paragraf Ltd and Shanghai Lingang Economic Development Group Technology Investment.
During the keynote speech, Dr. Frederico Lourenco, Vice President of Portfolio Strategy and Operations, Flagship Pioneering, and Prof. Kwang-Geun (James) Lee, Chairman of Asian Association of Business Incubation (AABI) delivered thematic sharing. Mi Lei, Founding Partner of CASSTAR, had in-depth dialogue with Tian Mochen, Founder and CEO of Kiwimoore. Profound dialogues were also created between Dr Tony Raven, Former Chief Executive, Cambridge Enterprise, and Dr Simon Thomas FREng, Fellow of the Royal Academy of Engineering,CEO and Co-Founder, Paragraf Ltd.
In the roundtable discussion on Innovation Models and Cooperation Opportunities for Global Incubation, UBI Global, DMZ, Startups House, Lingang SYNLINX Life Science Professional Incubator, The Drivery GmbH and Xnode discussed on innovation models for global technology incubation.
The Conference was guided by the Torch High Technology Industry Development Center Ministry of Science and Technology, Science and Technology Commission of Shanghai Municipality and Technology Committee, Lin-gang Special Area Administration of China (Shanghai) Pilot Free Trade Zone, and Shanghai Association for Science and Technology, organized by Shanghai Lingang Economic Development and Shanghai Technology Innovation Center, and co-organized by Shanghai Lingang Economic Development Group Technology Investment, Shanghai Technology Business Incubator Association and Step Innovation.
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MiTAC Computing Technology Achieves Brand Consolidation, Expands Server Business

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TAOYUAN, Oct. 1, 2024 /PRNewswire/ — MiTAC Computing Technology Corporation, a subsidiary of MiTAC Holdings Corporation (hereinafter referred to as MiTAC; stock symbol: 3706), has announced that the server brand TYAN® will be integrated with the MiTAC brand. Starting from October 1, 2024, all products will be branded under MiTAC, with the release of a new logo and updated official website. MiTAC Computing Technology Corporation website: http://www.mitaccomputing.com/

MiTAC entered the server ODM industry in 1999 as one of Taiwan’s pioneers in the server market. In 2007, it expanded its presence by acquiring Tyan Computer, building a reputation for designing high-performance motherboards and barebone systems targeting the high-end server market. Following the spinoff of MiTAC’s cloud computing business in 2014, MiTAC Computing Technology was established as a subsidiary of Mitac Holdings under the MiTAC-Synnex Group.
With over two decades of experience in server research, development, manufacturing, and sales, MiTAC Computing Technology has consistently pushed the boundaries of innovation by leveraging top talent and operational efficiency. Committed to earning customer trust and fostering mutual success, MiTAC designs and manufactures high-quality server products for OEMs and Cloud Service Providers (CSPs). Through its leading server brand of TYAN, MiTAC has garnered significant industry appreciations for its extensive expertise and success. Additionally, since July 2023, MiTAC Computing Technology has taken on Intel’s Datacenter Solutions Group (DSG) server business, further expanding its influence in the server market under the MiTAC brand.
Rick Hwang, President of MiTAC Computing Technology, explained that although MiTAC and TYAN serve distinct market segments, their integration under a single brand will streamline distribution strategies, create brand management synergies, and strengthen MiTAC’s overall market presence.
The brand integration process is fully completed by October 1, 2024, consolidating all products under the MiTAC brand. As the demand for generative AI continues to grow, MiTAC Computing Technology is committed to advancing its AI server product line by leveraging its R&D strengths. “Our commitment to delivering superior solutions and service to our customers remains unwavering,” said Rick Hwang. “By unifying our brand, we aim to enhance the value of MiTAC’s offerings, providing a seamless and consistent customer experience across all customers.”
About MiTAC Computing Technology Corporation
MiTAC Computing Technology Corporation, a subsidiary of MiTAC Holdings Corp. (TSE:3706), specializes in cloud, AI/HPC and edge computing solutions and has over 30 years of design and manufacturing expertise. With a strong focus on large-scale data centers, MiTAC offers flexible and customized solutions for various systems and applications. Our product lineup includes TYAN servers, ORAN servers, high-performance AI servers, and other data center products.
Originally, MiTAC operated the server channel business under the TYAN brand and began selling Intel DSG server products under the MiTAC brand in July 2023. As of October 2024, we have integrated the TYAN and MiTAC brands to streamline our operations and enhance brand management. MiTAC now serves as the sole brand name for all our products.
MiTAC Computing Technology Corporation website:http://www.mitaccomputing.com/
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Aero Design Labs receives U.S. and EASA approval for updated Boeing 737-800 drag reduction kit

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FORT WORTH, Texas, Sept. 30, 2024 /PRNewswire/ — Aero Design Labs (ADL) today announced it has received a Supplementary Type Certificate (STC) from the Federal Aviation Administration (FAA) and European Union Aviation Safety Agency (EASA) approval for its enhanced Boeing 737-800 drag reduction kit 2.0.

“We are delighted to introduce our next generation of the drag reduction kit, which we are referring to as ‘ADL Kit 2.0′,” said Jeff Martin, ADL President and CEO. “The ADL team has once again demonstrated its expertise and commitment to aviation carbon reduction through its continued improvement process. ADL’s next generation Kit 2.0 is an evolution from our original designs, meeting the stringent requirements based on valuable feedback from our launch partners. With our new EASA approval, we can now offer our carbon reduction kits to new EU airline customers.”
The ADL Kit 2.0 captures new benefits, and significantly reduces the installation time, delivering reduced out-of-service time for the conversion while generating meaningful fuel savings and reduced carbon emissions across the popular Boeing 737-800 variant. Based on feedback from airline partners, it is anticipated that a kit can be installed overnight, minimizing critical out-of-service time for the airlines.
“Having served as an airline operational executive, I understand the need for airlines to reduce their carbon footprint, save fuel and minimize aircraft out-of-service time for the modification,” said David Campbell, ADL Chief Operating Officer. “ADL Kit 2.0 offers better economics and a shorter payback period, assisting airlines with fuel savings and carbon reduction including their IATA CORSIA carbon reduction pledges.”
“On behalf of the team at ADL, we thank ALOFT AeroArchitects, NORDAM, AAR Corp, and the many airline partners who have assisted us on this journey”, concluded Jeff Martin. “Their feedback and contributions to our engineering efforts and joint commitments to reducing aviation carbon emissions are invaluable.”
About Aero Design Labs L.L.C.
Founded in 2015, Aero Design Labs (ADL) leads the way in the research, development and installation of drag reduction systems for airline fleets globally. ADL modifications to airlines’ existing fleets can result in fuel savings, extend fleet longevity and the potential for billions of pounds of CO2 to be prevented from entering the atmosphere. 
Media inquiries: Richard Bartrem [email protected]
Sales inquiries: David Campbell [email protected]
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