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Radio Frequency Component Market Forecast Based on Major Drivers & Trends Up to 2022
Radio Frequency Component (RFC) Market – OverviewThe use of RF components is increasing substantially due to Market reports linked to the semiconductors and electronics industry have been made available by Market Research Future which creates reports on other industry verticals that summaries the current market scenarios. The market is anticipated to increase worth to USD 16 Billion while development at an estimated CAGR of 16% in the forecast period.The ability of radio frequency components to offer miniaturization, high switching rate, reliability, reciprocity, and weight reduction is increasing the market development pace. The rise in the level of communication devices globally is also an incentive factor driving the overall growth of the market. The capability of incorporation of these components in very small devices is expected to increase the market’s growth curve. The fast pace of technological advancements in wireless communication is anticipated to transform the radio frequency components market in the upcoming period.Segmental AnalysisThe radio frequency component market has been segmented on the basis of material, components, and end-users. The components segment of the market comprises of filters, antenna switches, amplifiers, duplexer, and modulators & demodulators. On the basis of materials, the radio frequency component market consists of gallium arsenide, nitride, silicon, indium phosphide, and others. The segmentation on the basis of end users consists of automotive, consumer electronics, military, and telecommunication among others.Competitive AnalysisThe framework for growth plans has enthused the market for potential new entrants. The modifications seen in terms of strategy execution and creation are modifying the development pace of the market. The plan-making process in the market has become considerably easier in which deviations are well accounted for, this approach increases the overall success of these plans in the market. The development patterns are revised in tandem to the customer likings to realize greatest growth, and in the long run, viability. The market contenders are making considerable adjustments to minimize the incidence of competitive disadvantage. The leadership inclinations in the market are emphasizing the level of growth that can be achieved in the present market scenario. The market is also well prepared to meet the challenges and keep up with the dynamic progress trends efficiently.The outstanding competitors in the market of radio frequency component market are Danaher Corp. (U.S.), Murata Manufacturing Co., Ltd. (Japan), Broadcom Limited (U.S.), Tsinghua Unigroup (China), Skyworks Solutions, Inc. (U.S.), Vectron International, Inc. (U.S.), Qorvo Inc. (U.S.), WIN Semiconductors Corp. (Taiwan) and Mitsubishi Electric Corporation (Japan) among others.Get Free Sample Report @ https://www.marketresearchfuture.com/sample_request/2041Industry Updates:Jun 2018 MIT researchers have created a novel transmitter that frequency hops each individual 1 or 0 bit of a data packet, every microsecond, which is fast enough to prevent even the quickest hackers through a random by using a unique radio frequency (RF) channel, so hackers can't pin down any specified packet. The transmitter controls frequency-agile devices called bulk acoustic wave (BAW) resonators and rapidly switches between a wide range of RF channels, sending information for a data bit with each hop. In addition, the researchers combined a channel generator that, each microsecond, chooses the random channel to send each bit.Detailed Regional AnalysisThe regional analysis of radio frequency component market encompasses regions such as North America, Asia Pacific, Europe and the rest of the world. The North American region is anticipated to influence the radio frequency component market due to a vast number of early technology adopters and the very established telecom sector in the North American region. The Asia Pacific region is anticipated to undergo growth due to the increase in consumer disposable income which is likely
to lead to a rise in the adoption of consumer electronic products with connectivity features. The European region is anticipated to witness an escalating demand rate in the radio frequency component market with the growing use of electronic devices for commercial, industrial, and residential purposes.Table of Content:2 RESEARCH METHODOLOGY2.1 RESEARCH NETWORK SOLUTION2.2 PRIMARY RESEARCH2.3 SECONDARY RESEARCH2.4 FORECAST MODEL2.4.1 MARKET DATA COLLECTION, ANALYSIS & FORECAST2.4.2 MARKET SIZE ESTIMATION3 MARKET DYNAMICS3.1 INTRODUCTION3.2 MARKET DRIVERS3.3 MARKET CHALLENGES3.4 MARKET OPPORTUNITIES3.5 MARKET RESTRAINTS4 EXECUTIVE SUMMARY5. MARKET FACTOR ANALYSIS5.1 PORTER’S FIVE FORCES ANALYSIS5.2 SUPPLY CHAIN ANALYSIS6 GLOBAL RADIO FREQUENCY COMPONENT MARKET, BY SEGMENTS6.1 INTRODUCTION6.2 MARKET STATISTICS6.2.1 BY COMPONENTS6.2.1.1 FILTERS6.2.1.2 AMPLIFIERS6.2.1.3 DUPLEXER6.2.1.4 ANTENNA SWITCHES6.2.1.5 MODULATORS & DEMODULATORS6.2.1.6 OTHERS6.2.2 BY MATERIALS6.2.2.1 SILICON6.2.2.2 GALLIUM ARESNIDE6.2.2.3 INDIUM PHOSPHIDE6.2.2.4 NITRIDE6.2.2.5 OTHERS6.2.3 BY END USERS6.2.3.1 CONSUMER ELECTRONICS6.2.3.2 AUTOMOTIVE6.2.3.3 TELECOMMUNICATION6.2.3.4 MILITARY6.2.3.5 OTHERS6.2.4 BY GEOGRAPHY6.2.4.1 NORTH AMERICA6.2.4.2 EUROPE6.2.4.3 ASIA-PACIFIC6.2.4.4 REST OF THE WORLD7 COMPETITIVE ANALYSIS7.1 MARKET SHARE ANALYSIS7.2 COMPANY PROFILES7.2.1 QORVO INC. (U.S.)7.2.2 MURATA MANUFACTURING CO., LTD. (JAPAN)7.2.3 TSINGHUA UNIGROUP (CHINA)7.2.4 SKYWORKS SOLUTIONS, INC. (U.S.)7.2.5 BROADCOM LIMITED (U.S.)7.2.6 VECTRON INTERNATIONAL, INC. (U.S.)7.2.7 DANAHER CORP. (U.S.)7.2.8 WIN SEMICONDUCTORS CORP. (TAIWAN)7.2.9 MITSUBISHI ELECTRIC CORPORATION (JAPAN)7.2.10 OTHERSGet Complete Report @ https://www.marketresearchfuture.com/reports/radio-frequency-component-market-2041About UsMarket Research Future (MRFR) is an esteemed company with a reputation of serving clients across domains of information technology (IT), healthcare, and chemicals. Our analysts undertake painstaking primary and secondary research to provide a seamless report with a 360 degree perspective. Data is compared against reputed organizations, trustworthy databases, and international surveys for producing impeccable reports backed with graphical and statistical information.We at MRFR provide syndicated and customized reports to clients as per their liking. Our consulting services are aimed at eliminating business risks and driving the bottomline margins of our clients. The hands-on experience of analysts and capability of performing astute research through interviews, surveys, and polls are a statement of our prowess. We constantly monitor the market for any fluctuations and update our reports on a regular basis.Media Contact:Market Research FutureOffice No. 528, Amanora ChambersMagarpatta Road, Hadapsar,Pune - 411028Maharashtra, India+1 646 845 9312Email: [email protected]
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Rf Transceiver Market Size And Scope, Product Estimate And Strategy Framework By Forecast 2027
Summary:
A new study title “RF Transceiver market size, status and forecast 2027” has been featured on market research future.
Market Overview:
An RF transceiver is the combination of both transmitter and receiver on a single chip. These are helpful in communication devices like cell phones, cordless telephones, mobile two-way radios and many others. The major application of transceiver is to make information in the form of data or voice which is to be transmitted over the wireless medium. These are deployed in radio transmission, LTE networks, radio communication and many more.
The RF transceivers are used in various industries such as consumer electronics, telecommunications, military & defense, healthcare, and others. In the area of healthcare, vital sign monitoring devices and blood analysis instruments are currently deployed in hospitals for wireless usage. Analog devices which are used in homes possess various features like MEMS sensors for motion detection and measurement, ISM band radio system on a chip (SoC) and transceivers for reliable wireless transfer of data and many more. To address applications utilizing ISM bands, major players are offering standalone transceivers, as well as a fully integrated system on a chip (SoC) solution.
The area of telecommunications has gained the advantage with the technical advancements in RF transceivers. The low power consumption and capability of long-range communication provide an added advantage in the area of telecommunications. The development of 5G technologies is a cornerstone for realizing breakthroughs in the transformation of RF transceiver infrastructure. The current generation of continues to transform the way users communicate and access information. RF channels provide natural support for radial broadcast operations. In RF systems, data is transmitted through the air by digital radio signals at a given frequency, typically in the 3 kHz to the 300GHz range. Such communication can be used to maintain bi-directional, online radio connection between a mobile telephone and an antenna host. On the other hand, the development of technologies based on RF communications is hindered by regulations of radio spectrum bands by the FCC and National Telecommunications and Information Administration (NTIA). Since the real-time accuracy of RF is high which is considered a general advantage and deployed in most or long-range communication network devices.
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Key Players:
Some of the key innovators in the global RF transceivers market are Skyworks (U.S.), Infineon Technologies AG (Germany), NXP Semiconductors N.V. (the Netherlands), Integrated Device Technology, Inc. (U.S.), Maxim Integrated (U.S.), Toshiba Electronic Devices & Storage Corporation (Japan) and others.
Segments:
The global RF transceiver market is segmented into design, type, application, industry, and region. On the basis of design the segment is further classified into single chip transceiver and standalone transceiver. On the basis of type, the segment is further classified into the 5G transceiver, 4G transceiver, 3G transceiver and 2G transceiver. On the basis of application, the segment is further classified into mobile phones, tablets, add-on cards, routers, embedded modules and others. The RF transceivers are used in various industries such as consumer electronics, telecommunications, military & defense, healthcare, and others.
Regional Analysis:
The global RF transceiver market is observed for North America, Europe, Asia Pacific and Rest of the world. Asia Pacific holds the major market share for the global RF transceiver market and is expected to continue through the forecast period. The presence of major players in the region, deployment of transceivers in consumer electronics and automotive solutions are supporting the market growth. North America holds a significant market share through the forecast period. The U.S. and Canada are the major sources for the global RF transceiver market. The increase in usage of mobile devices and growing demand for better wireless communication devices are promoting the market growth in this region. Europe shows decent growth through the forecast period. The Germany and U.K were the main contributors to the market. Deployment of RF transceivers in automotive applications is fuelling the market growth.
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Market Research Future (MRFR) is an esteemed company with a reputation of serving clients across domains of information technology (IT), healthcare, and chemicals. Our analysts undertake painstaking primary and secondary research to provide a seamless report with a 360 degree perspective. Data is compared against reputed organizations, trustworthy databases, and international surveys for producing impeccable reports backed with graphical and statistical information.
We at MRFR provide syndicated and customized reports to clients as per their liking. Our consulting services are aimed at eliminating business risks and driving the bottomline margins of our clients. The hands-on experience of analysts and capability of performing astute research through interviews, surveys, and polls are a statement of our prowess. We constantly monitor the market for any fluctuations and update our reports on a regular basis.
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Millimeter Wave Technology Market 2021 Research Depth Study with Opportunity Assessment for the Period of 2020-2027
Market Overview
The Millimeter Wave Technology Market is expected to reach USD 4364.9 million by 2024 at a CAGR of 35.64% during the forecast period. Market Research Future (MRFR) in its report envelops segmentations and drivers to provide a better glimpse of the market in the coming years. Over the last decade, there have been rapid developments in the millimeter wave technology. Millimeter wave is an extremely high-frequency band spectrum that lies between 30 gigahertz (GHz) and 300 GHz with a short wavelength that ranges from 10 millimeters to 1 millimeter. Owing to its several benefits, such as high frequency, higher resolution, and low interference it is widely used for applications such as the transmission of large volumes of computer data, cellular communications, and radar transmissions.
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Key Players
The key players of global millimeter wave technology market are Millivision Technologies (US), Vubiq Networks, Inc. (US), Smiths Group PLC (UK), Fastback Networks (US), NEC Corporation. (Japan), Mistral Solutions Pvt. Ltd (India), E-Band Communications, LLC (US), Farran Technology Ltd (Ireland), L3 Technologies, Inc. (US), Millimeter Wave Products, Inc. (US), BridgeWave Communications, Inc. (US), SAGE Millimeter, Inc. (US), and Keysight Technologies, Inc. (US).
Millimeter Wave Technology Market - Segmentation
The global Millimeter Wave Technology Market has been segmented based on product, component, license type, frequency band, end user, and region.
On the basis of component, the market has been classified as antennas and waveguide components, radio and rf components, sensors and controls, frequency meters, networking and communication components, imaging components, and transceivers. The radio and RF segment was the largest sub-segment valued at USD 144.2 in 2018; it is expected to register the highest CAGR during the forecast period. Antennas operate by capturing radio waves and converting them into electrical signals and vice versa. Millimeter wave antennas are used for various applications such as short-range communication, mm-wave mobile communication, 5G cellular networks, and sensor and imaging systems. Radio Frequency (RF) components include amplifiers, controllers, diodes, transistor, filters, and transceivers. The sensor can detect physical parameters, such as heat, light, and pressure, and convert them into electrical signals.
Based on license type, the market has been segmented into light licensed frequency, unlicensed frequency, and fully licensed frequency. The unlicensed frequency segment accounted for the largest market share in 2018; it is expected to register highest CAGR during the forecast period. The light licensed frequency segment was the second-largest market in 2018. Light licensing is a process that allows less time consuming and seamless spectrum management. This process combines two opposite approaches, general authorization and individual licensing. Unlicensed frequency cannot provide exclusive access to spectrum use. Unlike a licensed spectrum which limits the usage of frequencies, unlicensed frequencies can be used by anyone. Licensed frequency spectrum devices are developed with the help of radio spectrum regulated by the government authorities, which is reserved for the companies that have been granted the licenses.
Based on frequency band, the market has been segmented into band between 30 GHz and 57 GHz, band between 57 GHz and 96 GHz, band between 96 GHz and 300 GHz. The 57 GHz and 96 GHz segment accounted for the larger market share in 2018, registering the highest CAGR during the forecast period. The 30 GHz and 57 GHz segment was the second-largest market in 2018. The bands 37GHz, 39GHz, and 47GHz offer the largest amount of spectrum available for flexible wireless services in the millimeter wave bands. This type of millimeter wave band comprises 57–66GHz, 71–76GHz, 81–86GHz, and 92–95GHz. The 57–66GHz wave band is also referred to as the 60GHz band. The beyond 96 GHz millimeter wave band is developed for a high precision Imaging technology and radar applications.
Based on end user, the market has been segmented into IT & telecommunication, automotive & aerospace, healthcare, consumer & commercial, government & defense. The IT & telecommunication segment accounted for the larger market share in 2018, is expected to register the highest CAGR during the forecast period. The automotive & aerospace segment was the second-largest market in 2018. Advancements in wireless communication technologies have enabled the widespread use of millimeter wave to address the challenges of lower frequency and high-speed communications. The millimeter wave technology has a significant role in autonomous driving and aerospace applications and is expected to revolutionize the automotive industry. The millimeter wave technology enables medical practitioners to perform advanced medical procedures with a reliable wireless network connected to another side of the globe.
Millimeter Wave Technology Market - Regional Analysis
The global millimeter wave technology market, by region, has been segmented into Asia-Pacific, North America, Europe, the Middle East & Africa, and South America. North America is expected to dominate the millimeter wave technology market during the forecast period due an increase in mobile data traffic with bandwidth-intensive applications, adoption of this technology in small-cell backhaul network, and development of innovative millimeter wave-based radar and security products.
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Market Research Future (MRFR) is an esteemed company with a reputation of serving clients across domains of information technology (IT), healthcare, and chemicals. Our analysts undertake painstaking primary and secondary research to provide a seamless report with a 360 degree perspective. Data is compared against reputed organizations, trustworthy databases, and international surveys for producing impeccable reports backed with graphical and statistical information.
We at MRFR provide syndicated and customized reports to clients as per their liking. Our consulting services are aimed at eliminating business risks and driving the bottomline margins of our clients. The hands-on experience of analysts and capability of performing astute research through interviews, surveys, and polls are a statement of our prowess. We constantly monitor the market for any fluctuations and update our reports on a regular basis.
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Millimeter Wave Technology Market 2021 Industry Key Players, Trend, Analysis and Forecast to 2027
Summary
A New Market Study, titled “Millimeter Wave Technology Market Upcoming Trends, Growth Drivers and Challenges” has been featured on Market Research Future.
Market Analysis
Market Research Future (MRFR) predicts the global millimeter wave technology market to register USD 4364.9 million with a CAGR of 35.64% from 2019 to 2024 (forecast period).
Millimeter wave is a type of electromagnetic technology used in various products like phones, cars, medical devices, and others to ensure higher-speed wireless broadband communication. It is exceptionally high frequency (EHF) as it presents a signal spectrum ranging from 30 GHz to 300 GHz with a wavelength between 1 and 10 mm. In addition, millimeter wave technology provides security for communication transmission.
The millimeter wave technology market is experiencing a high adoption in various industrial and commercial sectors, like providing wireless communication in smart wearables, smartphones, and smartwatches. Technological advances in digital networks connect a range of devices and sensors to ensure advancement in healthcare, education, telecommunication, transport, automotive, and other industries. Hospitals also use autonomous millimeter wave technology for medical imaging. In addition, military and aerospace use millimeter wave technology in segments such as radar and satellite communications, mainly used by the military in combat scenarios.
COVID-19 Impact on the Millimeter Wave Technology Market
COVID-19 has a major effect on both the consumer and the economy. Electronics manufacturing units have been temporarily shut down in order to curb the spread of COVID-19 among individuals. This has had a major impact on the supply chain of the semiconductor industry by generating shortages of materials, components, and finished goods. Lack of business continuity has resulted in substantial negative impacts on revenues, shareholder returns, and revenues, which are expected to create financial uncertainty in the millimeter-wave technology industry.
Despite economic slowdowns, demand for 5G in the number of industries has increased. Online and essential retail, healthcare (including mental, physical, and elderly care), and manufacturing are expected to use 5G technologies. With the enhanced capabilities of 5G, particularly the private 5G networks for manufacturing and healthcare networks, demand for 5G infrastructure is estimated to rise.
However, various supply chain forces will have an impact on the telecommunications ecosystem. For example, despite the advent of open radio access networks, most 5G network operators depend on Huawei, Nokia and Ericsson equipment. The 5G New Radio supply chain has been adversely affected, mainly due to the fact that the majority of 5G radios and active antennas are manufactured in China.
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Market Segmentation
The global millimeter wave technology industry has been segmented into product, component, license type, frequency band, and end-user.
By product, the global millimeter wave technology industry has been segmented into radar communication systems, satellite communication systems, and telecommunication equipment.
Based on component, the global millimeter wave technology industry has been segmented into antennas and waveguide components, sensors and controls, frequency meters, radio and RF components, networking and communication components, imaging components, and transceivers.
Based on license type, the global millimeter wave technology industry has been segmented into unlicensed frequency, light licensed frequency, and fully licensed frequency.
Based on frequency band, the global millimeter wave technology industry has been segregated into Band between 30 GHz and 57 GHz, Band between 57 GHz and 96 GHz, Band between 96 GHz and 300 GHz
Based on end-user, the global millimeter wave technology industry has been segmented into IT & telecommunication, automotive & aerospace, healthcare, consumer & commercial, and government & defense.
Regional Analysis
Region-wise, the global millimeter wave technology industry has been segmented into Europe, North America, Asia Pacific, and the rest of the world.
North America to lead the global market
North America is set to lead the global millimeter wave technology market during the forecast period due to an increase in mobile data traffic with bandwidth-intensive applications, the introduction of this technology in a small-cell backhaul network, and the growth of innovative millimeter wave-based radar and security products.
Competitive Landscape
The global millimeter wave technology industry is competitive. With the spread of 5G, the industry is expected to grow and attract more key players. Various collaborations between telecommunications service providers and companies producing mmWave products are expected to take place in the near future in the current landscape.
Industry giants in the global millimeter wave technology market are Millivision Technologies (US), Smiths Group PLC (UK), E-Band Communications, LLC (US), Vubiq Networks, Inc. (US), Fastback Networks (US), NEC Corporation. (Japan), Farran Technology Ltd (Ireland), Mistral Solutions Pvt. Ltd (India), Millimeter Wave Products, Inc. (US), BridgeWave Communications, Inc. (US), L3 Technologies, Inc. (US), SAGE Millimeter, Inc. (US), Keysight Technologies, Inc. (US).
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RF Transceiver Market overview, dynamics, Trends, Strategies and Forecast 2027
Market Overview:
An RF transceiver is the combination of both transmitter and receiver on a single chip. These are helpful in communication devices like cell phones, cordless telephones, mobile two-way radios and many others. The major application of transceiver is to make information in the form of data or voice which is to be transmitted over the wireless medium. These are deployed in radio transmission, LTE networks, radio communication and many more.
The RF transceivers are used in various industries such as consumer electronics, telecommunications, military & defense, healthcare, and others. In the area of healthcare, vital sign monitoring devices and blood analysis instruments are currently deployed in hospitals for wireless usage. Analog devices which are used in homes possess various features like MEMS sensors for motion detection and measurement, ISM band radio system on a chip (SoC) and transceivers for reliable wireless transfer of data and many more. To address applications utilizing ISM bands, major players are offering standalone transceivers, as well as a fully integrated system on a chip (SoC) solution.
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https://www.marketresearchfuture.com/sample_request/5760
The area of telecommunications has gained the advantage with the technical advancements in RF transceivers. The low power consumption and capability of long-range communication provide an added advantage in the area of telecommunications. The development of 5G technologies is a cornerstone for realizing breakthroughs in the transformation of RF transceiver infrastructure. The current generation of continues to transform the way users communicate and access information. RF channels provide natural support for radial broadcast operations. In RF systems, data is transmitted through the air by digital radio signals at a given frequency, typically in the 3 kHz to the 300GHz range. Such communication can be used to maintain bi-directional, online radio connection between a mobile telephone and an antenna host. On the other hand, the development of technologies based on RF communications is hindered by regulations of radio spectrum bands by the FCC and National Telecommunications and Information Administration (NTIA). Since the real-time accuracy of RF is high which is considered a general advantage and deployed in most or long-range communication network devices.
Some of the key players in the global RF transceivers market are Intel Corporation (U.S.), RF Micro Devices Inc. (U.S.), Qualcomm Inc. (U.S.), Broadcom Corp. (U.S.), Renesas Electronics Corp. (Japan), TriQuint Semiconductor Inc. (U.S.), ST-Microelectronics Inc. (Switzerland), Texas Instruments Inc. (U.S.) and others. The key players are constantly innovating and involving in research and development activities to generate a cost-effective product portfolio.
Some of the key innovators in the global RF transceivers market are Skyworks (U.S.), Infineon Technologies AG (Germany), NXP Semiconductors N.V. (the Netherlands), Integrated Device Technology, Inc. (U.S.), Maxim Integrated (U.S.), Toshiba Electronic Devices & Storage Corporation (Japan) and others.
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Millimeter Wave Technology Market Research Report- Upcoming Trends, Growth Drivers and Challenges-Forecast 2023
A new market study, titled “Millimeter Wave Technology Market Research Report- Forecast 2023”has been featured on Market Research Future.
Market Snapshot:
The Global Millimeter Wave Technology Market is expected to register a 35.64% CAGR, witnessing substantial growth during the forecast period. The market was valued at USD 712.5 billion in 2018; it is expected to reach USD 4364.9 million by 2024.North America accounted for the largest market value in 2018; the market is expected to register a CAGR of 34.22% during the forecast period.
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Key Developments
In April 2019, NEC and Ceragon, a company that delivers innovative wireless backhaul solutions, collaborated to enhance the technologies and solutions for 5G wireless backhaul in microwave and millimeter wave spectrum. This collaboration helps NEC to access the solutions which are different from their own solutions and technologies.
In April 2019, Mistral’s Sensor Fusion Kit launched an integrated platform using camera vision and a RADAR module featuring Texas Instruments (TI) mmWave sensors and Jacinto TDA3x processors, for automotive advanced driver assistance systems (ADAS). This will provide the accuracy required for autonomous driving applications.
In March 2019, The Smiths Detection business division added two scanners with ECAC standard 3.1 for its CTX 9800 DSi to hold baggage explosives detection systems. It will provide additional flexibility and productivity while maintaining the highest level of security.
In January 2019, Vubiq developed a hardware/software millimeter wave hyper imaging system. This system is able to code and decode chipless radio frequency identification (RFID) tags with a higher order of magnitude as compared to the existing solutions.
In May 2016, Farran Technology Ltd collaborated with Copper Mountain Technologies, a developer of innovative RF test and measurement solutions to launch CobaltFx—an advanced technology which provides millimeter-wave frequency extension solution built on a 9 GHz Vector Network Analyser (VNA).
Segmentation:
By `Product: Radar Communication System, Satellite Communication System, Telecommunication Equipment
By Component: Antennas and Waveguide Components, Radio and RF Components, Sensors and Controls, Frequency Meters, Networking and Communication Components, Imaging Components, Transceivers
By License Type: Light Licensed Frequency, Unlicensed Frequency, Fully Licensed Frequency
By Frequency Band: Band between 30 GHz and 57 GHz, Band between 57 GHz and 96 GHz, Band between 96 GHz and 300 GHz
By End User: IT & Telecommunication, Automotive & Aerospace, Healthcare, Consumer & Commercial, Government & Defense
By Region: North America, Europe, Asia-Pacific, Middle East & Africa, and South America
Regional Analysis:
The global millimeter wave technology market, by region, has been segmented into Asia-Pacific, North America, Europe, the Middle East & Africa, and South America. North America is expected to dominate the millimeter wave technology market during the forecast period due an increase in mobile data traffic with bandwidth-intensive applications, adoption of this technology in small-cell backhaul network, and development of innovative millimeter wave-based radar and security products.
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Vector Network Analyzer Market Size, Key Players Analysis And Forecast To 2027 | Value Market Research
The Vector Network Analyzer Market research report provides the latest industry data, growth, key segments and future trends on the basis of the detailed study. This market report also allows you to identify the future opportunity and growth rate of the leading segment based on regions and countries.
The research report also covers the comprehensive profiles of the key players in the market and an in-depth view of the competitive landscape worldwide. The major players in the vector network analyzer market include Keysight Technologies Inc., Rohde & Schwarz GmbH & Co. KG, National Instrument Corporation, Transcom Instruments Co., Ltd., Anritsu Corporation, Copper Mountain Technologies, GS Instrument Co. Ltd., OMICRON Lab, HUBER+SUHNER, Chengdu Tianda instrument Equipment Co., Ltd., and AWT Global LLC.S. This section includes a holistic view of the competitive landscape that includes various strategic developments such as key mergers & acquisitions, future capacities, partnerships, financial overviews, collaborations, new product developments, new product launches, and other developments.
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Market Dynamics
The rising demand for vector network analyzer for wireless and broadcasting technologies due to its important role in analyzing, testing, measurement, and evaluating the RF signals is the primary factor driving the Vector Network Analyzer market. Growing usage for measuring RF signals transmitted and received from antenna, amplifiers, and attenuator, contributes to the Vector Network Analyzer market's growth. The increasing adoption of wireless devices such as mobile phones and laptops incorporated with Bluetooth, Wi-Fi, GPS, and GSM-LTE module is positively impacting the Vector Network Analyzer market's growth. Moreover, the rising adoption of network analyzers over its alternative scalar network analyzer is likely to generate profitable growth opportunities for the Vector Network Analyzer market's key players in the coming years.
The report covers Porter’s Five Forces Model, Market Attractiveness Analysis and Value Chain analysis. These tools help to get a clear picture of the industry’s structure and evaluate the competition attractiveness at a global level.
Additionally, these tools also give inclusive assessment of each segment in the global market of vector network analyzer.
Browse Global Vector Network Analyzer Market Research Report with detailed TOC at https://www.valuemarketresearch.com/report/vector-network-analyzer-market
Market Segmentation
This section of the vector network analyzer market report provides detailed data on the segments by analyzing them geographically, thereby assisting the strategist in identifying the target demographics for the respective product or service.
By Frequency Range
Less Than 5 GHz
5 GHz to 15 GHz
Above 15 G
By End-Use Industry
Electronics
IT & Telecommunications
Automotive
Aerospace & Defense
Others
Regional Analysis
This section covers regional segmentation which accentuates on current and future demand for Vector Network Analyzer market across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Further, the report focuses on demand for individual application segment across all the prominent regions.
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915MHz 18dBi Fiberglass Antenna
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Global RF phase shifter market
Global RF phase shifter market size was US$ XX Bn in 2019 and is expected to reach US$ XX Bn by 2027, at a considerable CAGR during the forecast period. The report study has analyzed revenue impact of COVID -19 pandemic on the sales revenue of market leaders, market followers, and market disrupters in the report, and the same is reflected in our analysis. Market Definition Radio frequency (RF) phase shifter is a passive microwave network module or device which is used to change the phase angle of microwave, millimetre or RF wave signals without varying its amplitude. RF phase shifters have designs and have low insertion loss and reliable amplitude across all phase states which makes them the most ideal choice for various RF applications in the market. Market Dynamics A surge in the adoption of phase shifters in applications such as in phased array antennas, phase modulators, testing instruments, frequency up-converters and many others is major driving factor behind the growth of the market. An increasing significance of RF phase shifters in applications such as in RF distortion or RF PA linearization and amplitude and phase modulation, rising demand for RF phase shifters in surface mount applications, growing market for telecommunication industry across the globe and continuous technological advancements in the RF antenna technology are expected to improve growth of the market during the forecast period. However, limited output power and degraded noise figure are the major restraining factors that could hamper the growth of the market. Global RF Phase Shifter Market: Segmentation Analysis By type, digital phase shifter segment dominated the market in 2019 and is projected to witness fast growth at a CAGR of XX% during the forecast period. Digital RF phase shifters are programmable devices and are mostly digitally controlled by using a computer interface. A growing adoption of digital RF phase shifters in various industries such as in healthcare, communication, automotive and aerospace industry is accredited to the growth of the market. Rising significance of digital phase shifters in active and phased array antenna, RF communication systems and in phase discriminators, growing development in existing telecommunication infrastructure and growing advancements in 5G network infrastructures are further expected to improve growth of the market during the forecast period. By application, surface mount segment is projected to witness fast growth at a CAGR of XX% during the forecast period. An increasing adoption of RF phase shifters in surface mount applications such as in cellular, test and measurement and radar applications are attributed to the growth of the market. RF phase shifters in surface mount application provides low insertion loss, precise control for the 360° or 180° phase angle and operations in several GHz frequencies are ultimately expanding the growth of the market. Global RF Phase Shifter Market: Regional Analysis Region-wise, North America held the largest market share in 2019 and is expected to continue its dominance at a CAGR of XX% during the forecast period. The US and Canada are dominating the market. The growth is attributed to the surge in the adoption of RF phase shifters in the development of ground-breaking smart weapons and advanced phased array antennas. Growing investments and advancements in semiconductor and telecommunication industry, rising demand of RF phase shifters for applications such as weather forecast, satellite and Internet, mobile and mobile broadband, increasing investments in research and development activities in the field of 5G radio technology and growing importance of RF phase shifters in RADAR applications are driving the growth of the market in NA region. The objective of the report is to present a comprehensive analysis of the Global RF Phase Shifter Market including all the stakeholders of the industry. The past and current status of the industry with forecasted market size and trends are presented in the report with the analysis of complicated data in simple language. The report covers all the aspects of the industry with a dedicated study of key players that includes market leaders, followers and new entrants. PORTER, SVOR, PESTEL analysis with the potential impact of micro-economic factors of the market have been presented in the report. External as well as internal factors that are supposed to affect the business positively or negatively have been analyzed, which will give a clear futuristic view of the industry to the decision-makers. The report also helps in understanding Global RF Phase Shifter Market dynamics, structure by analyzing the market segments and projects the Global RF Phase Shifter Market. Clear representation of competitive analysis of key players by Application, price, financial position, Product portfolio, growth strategies, and regional presence in the Global RF Phase Shifter Market make the report investor’s guide.
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Scope of Global RF Phase Shifter Market
Global RF Phase Shifter Market, By Type
• Analog Phase Shifters • Digital Phase Shifters • Mechanical Phase Shifters
Global RF Phase Shifter Market, By Application
• Satellite Communication • Beamforming Modules • Modules with Connectors • Surface Mount • Rack Mount • Others
Global RF Phase Shifter Market, By Region
• North America US Canada • Europe UK France Germany Italy Spain Norway Russia • Asia Pacific China India Japan South Korea Australia Malaysia Indonesia • South America Brazil Mexico Argentina • Middle East and Africa
Global RF Phase Shifter Market, Key Players
• Analog Devices, Inc. • Infinite Electronics International, Inc. • Telemakus LLC • AMCOM Communications • Clear Microwave, Inc. • Crane Electronics • Holzworth Instrumentation, Inc. • Mercury Systems, Inc. • Microwave Solutions Inc. • Kratos Defense & Security Solutions, Inc. • G.T. Microwave, Inc. • Pulsar Microwave Corporation • AELIUS SEMICONDUCTORS PTE. LTD. • SuperApex Corporation • XX • XX
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Radio Frequency Component Market Latest Technology and Market Trends & Forecast – 2022
Radio Frequency Component (RFC) Market – OverviewThe use of RF components is increasing substantially due to Market reports linked to the semiconductors and electronics industry have been made available by Market Research Future which creates reports on other industry verticals that summaries the current market scenarios. The market is anticipated to increase worth to USD 16 Billion while development at an estimated CAGR of 16% in the forecast period.The ability of radio frequency components to offer miniaturization, high switching rate, reliability, reciprocity, and weight reduction is increasing the market development pace. The rise in the level of communication devices globally is also an incentive factor driving the overall growth of the market. The capability of incorporation of these components in very small devices is expected to increase the market’s growth curve. The fast pace of technological advancements in wireless communication is anticipated to transform the radio frequency components market in the upcoming period.Segmental AnalysisThe radio frequency component market has been segmented on the basis of material, components, and end-users. The components segment of the market comprises of filters, antenna switches, amplifiers, duplexer, and modulators & demodulators. On the basis of materials, the radio frequency component market consists of gallium arsenide, nitride, silicon, indium phosphide, and others. The segmentation on the basis of end users consists of automotive, consumer electronics, military, and telecommunication among others.Detailed Regional AnalysisThe regional analysis of radio frequency component market encompasses regions such as North America, Asia Pacific, Europe and the rest of the world. The North American region is anticipated to influence the radio frequency component market due to a vast number of early technology adopters and the very established telecom sector in the North American region. The Asia Pacific region is anticipated to undergo growth due to the increase in consumer disposable income which is likely to lead to a rise in the adoption of consumer electronic products with connectivity features. The European region is anticipated to witness an escalating demand rate in the radio frequency component market with the growing use of electronic devices for commercial, industrial, and residential purposes.Get Free Sample Report @ https://www.marketresearchfuture.com/sample_request/2041Competitive AnalysisThe framework for growth plans has enthused the market for potential new entrants. The modifications seen in terms of strategy execution and creation are modifying the development pace of the market. The plan-making process in the market has become considerably easier in which deviations are well accounted for, this approach increases the overall success of these plans in the market. The development patterns are revised in tandem to the customer likings to realize greatest growth, and in the long run, viability. The market contenders are making considerable adjustments to minimize the incidence of competitive disadvantage. The leadership inclinations in the market are emphasizing the level of growth that can be achieved in the present market scenario. The market is also well prepared to meet the challenges and keep up with the dynamic progress trends efficiently.The outstanding competitors in the market of radio frequency component market are Danaher Corp. (U.S.), Murata Manufacturing Co., Ltd. (Japan), Broadcom Limited (U.S.), Tsinghua Unigroup (China), Skyworks Solutions, Inc. (U.S.), Vectron International, Inc. (U.S.), Qorvo Inc. (U.S.), WIN Semiconductors Corp. (Taiwan) and Mitsubishi Electric Corporation (Japan) among others.Industry Updates:Jun 2018 MIT researchers have created a novel transmitter that frequency hops each individual 1 or 0 bit of a data packet, every microsecond, which is fast enough to prevent even the quickest hackers through a random by using a unique radio frequency (RF) channel, so hackers can't pin down any specified packet. The transmitter controls
frequency-agile devices called bulk acoustic wave (BAW) resonators and rapidly switches between a wide range of RF channels, sending information for a data bit with each hop. In addition, the researchers combined a channel generator that, each microsecond, chooses the random channel to send each bit.Table of Content:2 RESEARCH METHODOLOGY2.1 RESEARCH NETWORK SOLUTION2.2 PRIMARY RESEARCH2.3 SECONDARY RESEARCH2.4 FORECAST MODEL2.4.1 MARKET DATA COLLECTION, ANALYSIS & FORECAST2.4.2 MARKET SIZE ESTIMATION3 MARKET DYNAMICS3.1 INTRODUCTION3.2 MARKET DRIVERS3.3 MARKET CHALLENGES3.4 MARKET OPPORTUNITIES3.5 MARKET RESTRAINTS4 EXECUTIVE SUMMARY5. MARKET FACTOR ANALYSIS5.1 PORTER’S FIVE FORCES ANALYSIS5.2 SUPPLY CHAIN ANALYSISGet Complete Report @ https://www.marketresearchfuture.com/reports/radio-frequency-component-market-2041About UsMarket Research Future (MRFR) is an esteemed company with a reputation of serving clients across domains of information technology (IT), healthcare, and chemicals. Our analysts undertake painstaking primary and secondary research to provide a seamless report with a 360 degree perspective. Data is compared against reputed organizations, trustworthy databases, and international surveys for producing impeccable reports backed with graphical and statistical information.We at MRFR provide syndicated and customized reports to clients as per their liking. Our consulting services are aimed at eliminating business risks and driving the bottomline margins of our clients. The hands-on experience of analysts and capability of performing astute research through interviews, surveys, and polls are a statement of our prowess. We constantly monitor the market for any fluctuations and update our reports on a regular basis.Media Contact:Market Research FutureOffice No. 528, Amanora ChambersMagarpatta Road, Hadapsar,Pune - 411028Maharashtra, India+1 646 845 9312Email: [email protected]
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Global Distributed Antenna System (DAS) Market – Industry Trends and Forecast to 2026
Global Distributed Antenna System (DAS) Market, By Offering (Components, Services), Coverage (Indoor, Outdoor), Ownership (Carrier, Neutral-Host, Enterprise), Technology (Wi-Fi, Small Cells), User Facility (>500K FT2, 200K–500K FT2, <200K FT2), Vertical (Commercial, Public Safety), Geography (North America, Europe, Asia-Pacific, Europe, South America, Middle East and Africa)- Industry Trends and Forecast to 2026
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The Distribution Antenna System (DAS) is a series of radio heads which is surrounded by the target locations which exists with a cellular coverage, network connections (radio units, donor antenna, bi-directional amplifiers, and antennas nodes) and services (pre and post services) based applications. It is connected wirelessly with carrier, enterprises and neutral-host technology.
Market Segmentation: Global Distributed Antenna System (DAS) Market
On the basis of offering, the market is segmented into two notable segments; components and services. Components are further segmented into donor antenna, antenna nodes, head-end units, radio units, bidirectional amplifiers, and others. Based on services, the segmented is further classified into pre-sales services, installation, and post-installation services. In 2018, components segment growing at the highest CAGR and expected to reach USD in the forecast period 2019 to 2026..
Competitive Analysis: Global Distributed Antenna System (DAS) Market
Some of the major players operating in the Global distributed antenna system market are COMMSCOPE, Corning Incorporated , Cobham Wireless, Comba Telecom Systems Holdings Ltd., SOLiD, ATC IP LLC, AT&T, Boingo Wireless, Inc. , Dali Wireless, Zinwave, Bird Technologies, HUBER+SUHNER, JMA Wireless, Westell Technologies, Inc. , GALTRONICS, BTI wireless, Advanced RF technologies, Betacom Incorporated, CONNECTIVITY WIRELSS SOLUTION and among others.
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Millimeter Wave Technology Market 2021: Emerging Technologies and Comprehensive Research Study Till 2024
Market Research Future published a research report on “Millimeter Wave Technology Market Research Report- Forecast to 2024” – Market Analysis, Scope, Stake, Progress, Trends and Forecast to 2024.
Market Overview
The Global Millimeter Wave Technology Market is expected to reach USD 4364.9 million by 2024 at a CAGR of 35.64% during the forecast period. Market Research Future (MRFR) in its report envelops segmentations and drivers to provide a better glimpse of the market in the coming years. Over the last decade, there have been rapid developments in the millimeter wave technology. Millimeter wave is an extremely high-frequency band spectrum that lies between 30 gigahertz (GHz) and 300 GHz with a short wavelength that ranges from 10 millimeters to 1 millimeter. Owing to its several benefits, such as high frequency, higher resolution, and low interference it is widely used for applications such as the transmission of large volumes of computer data, cellular communications, and radar transmissions.
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Key Players
The key players of global millimeter wave technology market are Millivision Technologies (US), Vubiq Networks, Inc. (US), Smiths Group PLC (UK), Fastback Networks (US), NEC Corporation. (Japan), Mistral Solutions Pvt. Ltd (India), E-Band Communications, LLC (US), Farran Technology Ltd (Ireland), L3 Technologies, Inc. (US), Millimeter Wave Products, Inc. (US), BridgeWave Communications, Inc. (US), SAGE Millimeter, Inc. (US), and Keysight Technologies, Inc. (US).
Millimeter Wave Technology Market - Segmentation
The global Millimeter Wave Technology Market has been segmented based on product, component, license type, frequency band, end user, and region.
On the basis of component, the market has been classified as antennas and waveguide components, radio and rf components, sensors and controls, frequency meters, networking and communication components, imaging components, and transceivers. The radio and RF segment was the largest sub-segment valued at USD 144.2 in 2018; it is expected to register the highest CAGR during the forecast period. Antennas operate by capturing radio waves and converting them into electrical signals and vice versa. Millimeter wave antennas are used for various applications such as short-range communication, mm-wave mobile communication, 5G cellular networks, and sensor and imaging systems. Radio Frequency (RF) components include amplifiers, controllers, diodes, transistor, filters, and transceivers. The sensor can detect physical parameters, such as heat, light, and pressure, and convert them into electrical signals.
Based on license type, the market has been segmented into light licensed frequency, unlicensed frequency, and fully licensed frequency. The unlicensed frequency segment accounted for the largest market share in 2018; it is expected to register highest CAGR during the forecast period. The light licensed frequency segment was the second-largest market in 2018. Light licensing is a process that allows less time consuming and seamless spectrum management. This process combines two opposite approaches, general authorization and individual licensing. Unlicensed frequency cannot provide exclusive access to spectrum use. Unlike a licensed spectrum which limits the usage of frequencies, unlicensed frequencies can be used by anyone. Licensed frequency spectrum devices are developed with the help of radio spectrum regulated by the government authorities, which is reserved for the companies that have been granted the licenses.
Based on frequency band, the market has been segmented into band between 30 GHz and 57 GHz, band between 57 GHz and 96 GHz, band between 96 GHz and 300 GHz. The 57 GHz and 96 GHz segment accounted for the larger market share in 2018, registering the highest CAGR during the forecast period. The 30 GHz and 57 GHz segment was the second-largest market in 2018. The bands 37GHz, 39GHz, and 47GHz offer the largest amount of spectrum available for flexible wireless services in the millimeter wave bands. This type of millimeter wave band comprises 57–66GHz, 71–76GHz, 81–86GHz, and 92–95GHz. The 57–66GHz wave band is also referred to as the 60GHz band. The beyond 96 GHz millimeter wave band is developed for a high precision Imaging technology and radar applications.
Based on end user, the market has been segmented into IT & telecommunication, automotive & aerospace, healthcare, consumer & commercial, government & defense. The IT & telecommunication segment accounted for the larger market share in 2018, is expected to register the highest CAGR during the forecast period. The automotive & aerospace segment was the second-largest market in 2018. Advancements in wireless communication technologies have enabled the widespread use of millimeter wave to address the challenges of lower frequency and high-speed communications. The millimeter wave technology has a significant role in autonomous driving and aerospace applications and is expected to revolutionize the automotive industry. The millimeter wave technology enables medical practitioners to perform advanced medical procedures with a reliable wireless network connected to another side of the globe.
Millimeter Wave Technology Market - Regional Analysis
The global millimeter wave technology market, by region, has been segmented into Asia-Pacific, North America, Europe, the Middle East & Africa, and South America. North America is expected to dominate the millimeter wave technology market during the forecast period due an increase in mobile data traffic with bandwidth-intensive applications, adoption of this technology in small-cell backhaul network, and development of innovative millimeter wave-based radar and security products.
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Distributed Antenna System (DAS) Market Size, Growth, Research, Applications, Shares & Insights
19 February 2019: Distributed Antenna System (DAS) Market was million US$ in 2018 and is expected to million US$ by the end of 2024, growing at a CAGR of between 2019 and 2024.This report studies the Distributed Antenna System (DAS) market size (value and volume) by players, regions, product types and end industries, history data 2014-2018 and forecast data 2019-2024; This report also studies the global Distributed Antenna System (DAS) market competition landscape, market drivers and trends, opportunities and challenges, risks and entry barriers, sales channels, distributors and Porter's Five Forces Analysis.
The Global Distributed Antenna System (DAS) Market is estimated to develop at a substantial CAGR of 14.29% for the duration of the prediction. The Distributed Antenna System [DAS] is a grid of diverse antenna nodes linked to a common center over and done with coaxial or fiber-optic cables. It offers wireless coverage in the interior of an area or a construction. The distributed antenna system nodes, overall, are precisely minor and compacted. These employed to upsurge the range and capability of cellular grids in regions having precise small or not at all coverage.
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The market takes massive prospective through numerous commercial vertical categories for example industrialized, enterprises, unrestricted area, and healthcare. The most important reasons motivating the distributed antenna system market are increasing necessity of the effectiveness of band, increasing demand of the end user for protracted coverage of grid & continuous connectivity, increase of associated devices owing to the Internet of Things [IoT] and growing circulation of mobile data.
The market on the source of Type of Vertical could span Public Safety, Commercial. The market on the source of Type of Ownership could span Enterprise, Carrier, and Neutral-Host. The market on the source of Type of Coverage could span Outdoor and Indoor.
The statement revises Trades in terms of intake of Distributed Antenna System (DAS) in the market; particularly in North America, Europe, Asia Pacific, Latin America Middle East & Africa and Rest of the World. It concentrates on the topmost companies operating in these regions. Some of the important companies operating in the field are Betacom, Galtronics, West ell Technologies, BTI Wireless, Bird Technologies, Zinwave, Boingo Wireless, American Tower, Comba Telecom Systems, and Corning. Similarly, additional companies operating in the field are Connectivity Wireless, Advanced RF Technologies, JMA Wireless, HUBER+SUHNER, Whoop Wireless, Dali Wireless, AT&T, SOLiD, Cob ham Wireless, and CommScope.
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Distributed Antenna System (DAS) Market by Geographical Regions:-
• North America
• Europe
• Asia Pacific
• Middle East and Africa
• South America
Key Vendors
• CommScope
• Comba Telecom
• SOLiD, inc.
• Bird Technologies
• Corning
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