Friday, 26 March 2021

Broadcast Switchers Market Opportunity Analysis and Major Manufacturers

Transparency Market Research delivers key insights on the global broadcast switchers market. In terms of revenue, the global broadcast switchers market is estimated to expand at a CAGR of ~5% during the forecast period, owing to numerous factors, regarding which, TMR offers thorough insights and forecasts in its report on the global broadcast switchers market. As such, the global broadcast switchers market is projected to reach a value of ~US$ 2.5 Bn by the end of the forecast period.

A broadcast switcher is a hardware device used in video or movie production. It is used for selecting or switching different audio and video signals coming in from different sources. It plays an important role in the entire video transmission process and is an integral part of video broadcasting.

Switchers are of different types, such as production switchers, routing switchers, and master control switchers. They are used in control rooms, remote trucks, edit suites, etc. Switchers are a crucial part of the production of a complete broadcasting unit. By using broadcast switchers, broadcasters select the source of the video feed, route it, and make the workflow process of broadcasting more efficient.

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Global Broadcast Switchers Market: Dynamics

Increasing consumer adoption of HD and UHD technologies, rising number of digital channels, and growing focus on production automation are likely to fuel the global broadcast switchers market during the forecast period. Moreover, the production switchers segment is witnessing significant growth, owing to increased adoption of ultra HD technology. Production switchers have combined capabilities of processing SD, HD, and 4K signals.

They facilitate the bringing in of numerous feeds (presentation slides, audios, videos, etc.) and selecting which feed is to be sent live at any given moment. For instance, Blackmagic Design Pty Ltd. has developed ATEM Production Studio 4K, a new production switcher, to support high-quality ultra HD videos to cater to the demand for live production in sporting events, live concerts, conferences, etc. Integration across the value chain and minimizing production costs are crucial for the success of players in the broadcast switchers market.

Global Broadcast Switchers Market: Prominent Regions

North America is the dominant region of the global broadcast switchers market. This growth can be attributed to high investments in the broadcasting industry in the region and research & development activities by manufacturers and governments of countries in the region. The broadcast switchers market in Asia Pacific is estimated to witness significant growth during the forecast period, owing to growing digitization and economic growth in the region. Moreover, increase in sports broadcasting has led to a rise in the production of broadcast switchers in the region. These factors are likely to promote the growth of the broadcast switchers market in Asia Pacific at a rapid pace during the forecast period.

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Global Broadcast Switchers Market: Key Players

Key players operating in the global broadcast switchers market have been profiled in the market study. Some of the prominent players operating in the global broadcast switchers market include Blackmagic Design Pty. Ltd., Broadcast Pix, Inc., Evertz Microsystems Ltd., FOR-A Company Ltd., Grass Valley USA, LLC, Harris Broadcast, Ikegami Electronics U.S.A. Inc., NewTek, Inc., Panasonic Corporation, Ross Video Ltd., Sony Electronics, Inc., and Utah Scientific, Inc.

Computer Numerical Controls (CNC) Market Share, Geographic Segmentation & Competitive Landscape Report To 2027

The computer numerical controls (CNC) market is characterized by a highly competitive vendor landscape, mainly due the presence of numerous players in the market. Participating in mergers & acquisitions, focusing on achieving product differentiation, and facilitating product regulation also are prime strategies implemented by most players operating in this market.

The competition is expected to intensify with new players entering the computer numerical controls (CNC) market on a regular basis, thus giving rise to a fierce rivalry between individual players. DMG Mori Co. Ltd., Haas Automation, Fanuc Corporation, Siemens AG, Dr. Johannes Heidenhain GmbH, GSK CNC Equipments Co. Ltd., JTEKT Corporation, Takisawa Machine Tool Co. Ltd., OKUMA Corporation, and Yamazaki Mazak Corporation, are chief players operating in the global computer numerical controls (CNC) market.

Statistically speaking, the global computer numerical controls (CNC) market is expected to fetch a revenue of US$ 115.1 bn by 2027, which is a significant rise from an initial revenue worth US$ 64.0 bn registered in 2018. This growth is expected to occur at a rising CAGR of 6.7% during the forecast period from 2019 to 2027.

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Need for Automation Boosts Market’s Growth

Rising concerns about reducing operational costs are being witnessed in several industrial sectors, consequently demanding large-scale automation. Such demands for automating various industrial processes is primarily driving the global computer numerical controls (CNC) market. This mainly because of reduction in overall manufacturing time and decreasing chances or human error to occur by using the CNC machines, consequently making them highly preferred.

Rising environmental concerns regarding reduction of industrial carbon footprint has led towards computer numerical controllers being increasingly used in place of manually operating machines. Doing this has resulted into improved efficiency being achieved by businesses working in the industrial domain, thereby being beneficial to the global computer controls (CNC) market.

Costly Maintenance and Servicing Dampens Product Sales

However, high costs associated with set up of CNC machines is profoundly retraining the market’s growth. This is as a result of low costs making it difficult for small-scale business with low capital to invest in the equipment. Even after the CNC instruments are purchased, they are quite costly to maintain, as they need to be serviced on a regular basis. Therefore, this factor is acting as a chief hindrance affecting the global computer controls (CNC) market. However, a slow-paced change has been occurring in the fundamental working mechanisms of the CNC machines, which is expected to reduce the workload and improve efficiency. Such changes are truly expected to offset some of the restraints affecting the global computer controls (CNC) market.

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This market is mainly spread across North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa. Of these, North America lead the pack with maximum revenue earned owing to a strong industrial infrastructure and associated development.

The study presented here is based on a report by Transparency Market Research (TMR), titled, “Computer Numerical Controls (CNC) Market (Types – Lathe Machines, Milling Machines, Lasers, Grinding Units, Welding Machines, and Winding Machines; Application – Automotive, Industrial, Power & Energy, and Defense & Aerospace) – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2019 – 2027.”

Radiofrequency Identification (RFID) Market Future Scope 2021

The global market for radiofrequency identification market in the healthcare sector is currently fragmented in nature with several players operating in it, states a new research report by Transparency Market Research. However, with a significant rise in the number of mergers and collaborations, the market is expected to get consolidated throughout the forecast period. The acquisition of Motorola Solutions by Zebra Technology and the collaboration of Intermec by Honeywell are among the key takeovers, which have significantly changed the competitive scenario of the overall market. The leading players operating in the radiofrequency identification market in the healthcare sector across the globe are Motorola Solutions (now Zebra Technologies), Alien Technology, GAO RFID, Inc., STiD, Sato Holdings, Intermec, Invengo, Applied Wireless Identifications Group, Impinj, and CAEN RFID.

According to the research study by TMR, in 2013, the global market for radiofrequency identification in the healthcare sector was worth US$1.9 bn and is projected to reach a value of US$5.3 bn by the end of 2020. The market is further estimated to register a 13.90% CAGR between 2014 and 2020.

China to Lead Global Radiofrequency Identification Market in Near Future

The global market for radiofrequency identification market for the healthcare sector has been divided on the basis of geography into five segments. At present, North America led the global market and is estimated to witness high growth in the next few years. On the flip side, the emergence of low-cost radiofrequency identification components in China is projected to enhance the growth of the market in the next few years. Thus, North America and Europe are expected to face a stiff competition in the coming few years and Asia Pacific is likely to witness high growth in the coming few years.

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The global market for radiofrequency identification has been classified on the basis of application into equipment tracking, medical report, samples and blood transfer tracking, medicine tracking, supply chain, and people identification and tracking. Among these, the medical report and medicine tracking are projected to witness high growth in the next few years. The rise in the use of radiofrequency identification is projected to rise, thanks to the increasing consumer awareness is estimated to enhance the market growth throughout the forecast period.

Rising Investment in Healthcare Sector to Drive Global Market

In the last few years, the healthcare sector has been making use of radiofrequency identification, thus accelerating the market growth in the next few years. The increasing use of radiofrequency identification for access and security control and the rising government initiatives are anticipated to enhance the market growth in the near future. In addition to this, the emergence of Internet of Things based radiofrequency identification labeling is projected to support the market growth in the near future.

On the flip side, the issues related to the device interoperability and the high cost of radiofrequency identification are expected to act as key challenges, thus restricting the growth of the overall market in the coming few years. Nonetheless, the increasing investments for the enhancement of the healthcare sector and the rising government support are projected to offer opportunities for the market players throughout the forecast period.

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This information is based on the findings of a research report published by Transparency Market Research (TMR), titled “Radiofrequency Identification (RFID) Market in Healthcare (RFID Components – Tags, Readers, Middleware, Printers and Cabinets; Applications – Equipment Tracking, People Identification and Tracking, Medical Report, Samples and Blood Transfer Tracking, Medicine Tracking, and Supply Chain) – Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2014 – 2020.”

GaN Industrial Devices Market Growth and Development By 2021

Transparency Market Research, in its latest report, indicates that the GaN industrial devices market is fueled by the introduction of advanced technology, large-scale production, increasing application areas, and the rising demand for improved battlefield performance. The report, titled “GaN Industrial Devices Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2015 – 2021”, states that rising at a 15.10% CAGR from 2015 to 2021, the value of the global GaN industrial devices market is anticipated to grow from US$481.8 mn in 2014 to US$1,315 mn by 2021.

Blossoming economy in developing countries and the development of next-gen hybrid electric vehicles and electric vehicles hold immense opportunities for the development of the GaN industrial devices market. However, high cost of pure gallium nitride is anticipated to restrict its growth in the coming years.

Based on type, the GaN industrial devices market is bifurcated into opto electronics and power devices. Opto electronics comprises laser diodes and light-emitting diodes and this segment held a 78.0% share in the overall market in 2014. Power devices are further broken down into metal oxide semiconductor field effect transistor (MOSFETs), Schottky diode, high electron mobility transistors (HEMTs), and others.

The key applications of GaN HEMTs are wireless phone infrastructure: base stations, V-SAT, defense, WiMAX/LTE, CATV, satellite, and others. Fueled by the increasing number of base transceiver station installations, base stations held the largest share of 26.0% in the overall market in 2014.

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Based on application, the GaN industrial devices market is segmented into radiofrequency (RF), power device, and light-emitting diodes (LED). Driven by large-scale usage of GaN industrial devices in traffic signal lamps, vehicle lamps, and liquid crystal lamps, LED emerged as the leader in terms of both value and volume. The LED segment accounted for 68.0% of the market in terms of value and 82.50% in terms of volume in 2014.

Based on geography, the global GaN industrial devices market is divided into five key regions: Europe, Asia Pacific, North America, Latin America, and the Middle East and Africa. Accounting for a share of 31.10% in the overall GaN industrial devices market in 2014, North America emerged as the leader driven by high penetration of GaN-based transistors in military and defense applications and the growing demand for LEDs in computers, tablets, laptops, gaming devices, and televisions. Europe was a close second with a market share of 28.90% in 2014.

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The most prominent players operating in the global GaN industrial devices market include RF Micro Devices Inc., Renesas Electronics Corporation, Fujitsu Limited, Texas Instruments Inc., NXP Semiconductors N.V., International Rectifier, Freescale Semiconductor Inc., International Quantum Epitaxy plc., GaN Systems Inc., Nichia Corporation, Toshiba Corporation, Efficient Power Conversion Corporation, and Cree Inc. These players have been profiled in the GaN industrial devices market based on company and financial overview, business strategies, and recent developments.

New Research Report on Passive Optical LAN (POL) Market by Forecast to 2024

The market for passive optical LAN (POL) is led by Huawei Technologies Co., Ltd., ZTE Corporation, and Alcatel-Lucent S.A. These three companies accounted for a combined share of over 75% in the overall POL market in 2015, indicating the high degree of consolidation. Transparency Market Research finds that most of these companies are focusing on business expansion to increase their consumer base and new product development and technological enhancement to deliver value enhancements to customers.

An increasing number of companies in the passive optical LAN market are also focusing on innovative and technological advancements and R&D efforts in passive optical networks (PON). Acquisitions are another way of expanding customer base and reducing competition.

Some of the other key companies in the POL market are Ericsson Inc., Adtran Inc, Freescale Semiconductor Inc., Motorola Solutions Inc., Mitsubishi Electric Corporation, and Verizon Communications Inc. Staying on the crest of the technology wave is becoming a success imperative, as can be seen with developments such as the rolling out of Huawei’s 4G ultra broadband networks. The company endeavors to gain an advantage in markets such as Rio de Janeiro (Brazil), Bangalore (India), and Stockholm (Sweden) with the move.

passive-optical-lan-market

Accelerating Bandwidth Requirements Driving Need for Passive Optical LAN

“The growing need for higher bandwidth is a major opportunity for players in the passive optical LAN market,” states the lead analyst. IT professionals have declared that the demand for higher bandwidth is presently large and is likely to grow in the near future owing to the increasing number of subscribers using a greater number of connected devices and data-dense services. “Africa and Asia are likely to witness a sudden surge in the demand for bandwidth, rising at a CAGR of more than 38%,” the analyst predicts.

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Moreover, POL solutions are greener than conventional copper-based Ethernet local area networks. This is expected to further bolster the passive optical LAN market over the forecast period. TMR predicts that the impact of this factor will remain high over the coming years.

Geographically, the market is dominated by Asia Pacific and is expected to continue doing the same in the coming years on account of the rising demand for passive optical network in the emerging nations such as China. The increasing demand for more bandwidth and the fact that passive optical LAN systems are energy efficient and long lasting, have further propelled its demand in the developing nations of Asia Pacific such as India, and others. The development of systems administration advances in the Asia Pacific and markets in the other parts of the world, expanding fiber organizations, and rising interests in innovative headways and exploration framework across both the locales are additionally pushing the passive optical LAN market.

On the other side, North America stands in close competition to Asia Pacific and generate notable revenues on account of the rising demand for advanced security and for energy preservation. There is also an increased demand for simplified network operations will also add fuel to the growth of the passive optical LAN market in the coming years.

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POL arrangements are environment-friendly than regular copper-based Ethernet neighborhood. This is relied upon to additional support the passive optical LAN market over the figure time frame. The rising adoption of energy-efficient products is likely to create lucrative growth opportunities for the market in the coming years.

Nanopatterning Market Growth Overview and Forecast by 2030

 

  • Nanopatterning is the method used for fabricating different structures. It has various biomedical applications. Nanopatterning techniques are broadly classified into surface, chemical, topographical, combinatorial, and 3D patterning.
  • This technology is used in imprinting nanoscale patterns on substrates without using the light and radiation- based technology. It is essential when patterns with different densities are required for nanoscale devices.
  • Nanopatterning is achieved by using materials such as carbon nanotubes with specific properties such as conductivity and antibacterial activity to the final system. For instance, for improved antibacterial property in nanopatterning, surface nanotopography of biomaterials which is based on pectin biopolymers was modified with germanium dioxide.
  • Nanopatterning technology is growing with nanoimprint lithography which is a process to fabricate nanometer scales. This technology is being adopted due to its high demand for surface customization at micro and nano scale.

3D nanopatterning driving the growth of nanopatterning technology

  • A nanoscale tip is used by nanoscale technology in atomic microscopy for the development of 2D and 3D patterns at 15 nanometers. 3D nanopatterning is helping in the growth of biological applications due to its growing demand.
  • Apart from this, cost advantages offered by nanopatterning while producing photonics is also helping the market to grow. However, manufacturers face challenges for development of 3D structure as it requires management of horizontal and vertical coordinates.

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Growing demand for miniaturized semiconductor devices

  • Major companies such as Apple and Samsung are focusing on miniaturized semiconductor components which consume lesser power. These components range from IC, chips, to LED displays. Hence, manufacturers are focusing on reducing the size of components without affecting the performance.
  • Miniaturization has various advantages such as high speed, low cost, and greater density. Smaller electronic devices are faster as the signal does not have to travel far. Also, smaller sized devices reduce the cost of electronics. These features are driving the demand for miniaturized semiconductor devices, which in turn is increasing the usage of nanopatterning.

Maximum Growth to be observed in the Asia Pacific Market

  • In terms of region, the global nanopatterning market can be divided into North America, Europe, Asia Pacific, South America, and Middle East & Africa
  • The nanopatterning market in Asia Pacific is anticipated to expand at the maximum CAGR during the forecast period.
  • This growth is attributed to a wide range of applications, cost efficiencies and benefits of the technology, and increasing trend of miniaturization for nanopatterning products.
  • The nanopatterning market in North America and Europe is expected to show stagnant growth rate, while the market in Middle East & Africa is likely to see slow growth due to high costs associated with the deployment.

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Key Players in the Global Market

The global nanopatterning market was highly fragmented. Prominent players operating in the global market are focusing on product launch and technological developments to meet the growing demand.

Key players operating in the global nanopatterning market include:

  • AMO GmbH
  • IMS Chips
  • EV Group
  • Nanonex Corp.
  • Nano-Terra
  • NTT Advanced Technology Corporation

Atom Thin Transistors Market Opportunities, Assessment, Demand and Forecast 2031

 

  • Atom thin transistors are molybdenum di-sulfide based transistors that consume half the voltage compared to conventional semiconductors, have greater current density than similar transistors under development, and have an inherent capability to keep electrons cold if graphene is used in their structure
  • A single-layered semiconductor (molybdenum disulfide (MoS2)) is seeded into channels lithographically etched within a sheet of conducting graphene. Two such sheets meet to form a nanometer-scale junction, thereby forming an atomically thin transistor.
  • Atom thin transistors usually are 1nm in length and have a thickness of one atom. These transistors are expected to significantly revolutionize future electronics and may eventually give birth to paper-thin gadgets due to such compact structure.

Increasing demand for lean gadgets expected to drive market growth

  • Electronic devices have witnessed significant reduction in size over the last few decades with advent of ICs and technologies such as VLSI and ULSI. This trend is expected to continue further as consumer demand for slim gadgets keeps rising, thus paving the way for the growth of the atom thin transistors market.

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  • The requirement for low voltage significantly increases the operating frequency, thereby speeding up the device. Thus, devices using atom thin transistors are expected to operate at a higher speed compared to devices using silicon based transistors. Consumer demand for faster devices is expected to grow over the forecasted period, which in turn drives the growth of the atom thin transistors market.
  • On a broader level, the growth of consumer electronics demand is also expected to bolster the growth of the atom thin transistors market

North America expected to lead the market share during the forecast period

  • In terms of region, the atom thin transistors market can be divided into the following- North America, Asia Pacific (APAC), Europe, South America, and Middle East & Africa
  • Backed by a robust research and development culture, and a sprawling electronics component manufacturing industry in the United States, North America is expected to be the leader in the atom thin transistors market during the forecast period
  • APAC is expected to follow North America in terms of manufacturing atom thin transistors due to the presence of a large number of fabrication plants in countries such as China, Japan, Taiwan, and South Korea.

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Key Players operating in the Atom Thin Transistors market

The technology is novel and is currently in the research and development phase. Our report covers some of the major institutions that are conducting deep research and development on the single atom technology. These institutions are:

  • National Institute of Standards and Technology (NIST)
  • University of Maryland
  • University of Buffalo, New York
  • University of New South Wales
  • Purdue University
  • University of Melbourne
  • University of Sydney

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