#Silicon Controlled Rectifier (SCR) Market Trends
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Thyristor Manufacturers in India: Powering Efficient Solutions
Thyristors, also known as Silicon-Controlled Rectifiers (SCRs), are integral components in modern electronic and electrical systems. These semiconductor devices are widely used for controlling power flow and ensuring efficiency in various industrial applications. India has emerged as a hub for thyristor manufacturing, thanks to its skilled workforce, advanced manufacturing facilities, and growing demand in sectors like power electronics, industrial automation, and renewable energy.
What Are Thyristors?
Thyristors are semiconductor devices that act as switches, allowing electrical current to flow in one direction when triggered. Their unique capability to handle high voltage and current makes them indispensable in applications such as:
Power conversion and rectification
Voltage regulation in power systems
Motor control in industrial machinery
Light dimming and heating controls
Their robustness and efficiency make them crucial in both consumer electronics and heavy industrial equipment.
India's Thyristor Manufacturing Landscape
India has become a prominent destination for thyristor manufacturing due to its strong engineering expertise, cost-effective production capabilities, and supportive government policies. Thyristor manufacturers in India cater to both domestic and international markets, offering high-quality products that meet global standards.
Key factors driving the growth of thyristor manufacturing in India include:
Industrial Growth: The rapid expansion of sectors such as power generation, electric vehicles, and renewable energy has increased the demand for thyristors.
Technological Advancements: Indian manufacturers are investing in cutting-edge technologies to produce thyristors with higher efficiency and reliability.
Export Opportunities: Indian thyristor manufacturers are gaining recognition globally, exporting their products to Europe, the Middle East, and Asia.
Applications of Thyristors
The versatility of thyristors makes them suitable for diverse applications. Here are some key areas where thyristors are indispensable:
Power Electronics: Thyristors are widely used in AC/DC conversion, voltage control, and power distribution systems.
Renewable Energy: In solar and wind energy systems, thyristors play a critical role in regulating power flow and integrating energy into grids.
Industrial Automation: Thyristors enable precise control of motors and machinery, ensuring efficient and reliable operations.
Transportation: They are used in electric trains and vehicles for power regulation and motor control.
Consumer Electronics: Thyristors are used in devices like air conditioners, refrigerators, and washing machines for efficient energy management.
Leading Thyristor Manufacturers in India
Several companies in India specialize in the design and production of thyristors, offering products tailored to various industrial needs. These manufacturers focus on quality, innovation, and customer satisfaction. Some prominent players include:
Bharat Heavy Electricals Limited (BHEL): Known for producing high-capacity thyristors for industrial applications.
Littelfuse India: Offers a wide range of thyristors for automotive and industrial sectors.
Powersem Semiconductors: Specializes in high-power thyristors for renewable energy systems.
Semikron India: Focuses on power modules and thyristors for industrial and transportation applications.
The Future of Thyristor Manufacturing in India
With the global shift toward renewable energy and energy-efficient technologies, the demand for thyristors is expected to grow significantly. Indian manufacturers are well-positioned to capitalize on this trend by:
Expanding Production Capacities: Increasing manufacturing output to meet rising domestic and international demand.
Investing in R&D: Developing advanced thyristors with improved performance and reliability.
Collaborating with Global Partners: Strengthening partnerships to enhance technological expertise and market reach.
Conclusion
Thyristors are vital components driving efficiency and reliability in modern electrical and electronic systems. The growing demand for these devices across various industries underscores their significance. Thyristor manufacturers in India are at the forefront of this transformation, offering world-class products that cater to diverse applications.
As India continues to evolve as a global manufacturing hub, the thyristor industry is poised for sustained growth, contributing to the nation’s industrial progress and global competitiveness. Whether for powering renewable energy systems or optimizing industrial machinery, Indian thyristor manufacturers are empowering solutions for a sustainable future.
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The global Thyristor Market is projected to grow from USD 5,764 million in 2024 to USD 8,196.98 million by 2032, reflecting a compound annual growth rate (CAGR) of 4.5% over the forecast period.The thyristor, a key component in power electronics, has emerged as a cornerstone in applications requiring high voltage and current control. Its ability to handle significant power loads while ensuring efficiency has made it indispensable in industries such as automotive, energy, consumer electronics, and industrial manufacturing. The global thyristor market has seen robust growth over the past few years, driven by advancements in renewable energy systems, industrial automation, and the proliferation of electric vehicles (EVs).
Browse the full report https://www.credenceresearch.com/report/thyristor-market
Market Overview
Thyristors are semiconductor devices that act as electronic switches, controlling the flow of electricity in high-power applications. Key types of thyristors include:
SCR (Silicon Controlled Rectifier): Used in AC and DC systems.
GTO (Gate Turn-Off Thyristor): Widely employed in industrial and traction applications.
IGCT (Integrated Gate Commutated Thyristor): A high-performance option for power systems.
The global thyristor market was valued at approximately $4 billion in 2023 and is projected to grow at a compound annual growth rate (CAGR) of 5–7% during 2024–2030. This growth is fueled by the increasing demand for efficient power control systems, the adoption of renewable energy, and the rise of electric mobility.
Key Growth Drivers
Proliferation of Renewable Energy Renewable energy sources like wind and solar heavily rely on thyristors for power conversion and grid integration. These devices ensure efficient energy transmission by stabilizing voltage fluctuations, making them critical to expanding renewable energy infrastructure.
Rise of Electric Vehicles (EVs) With the global shift towards sustainability, the demand for EVs is skyrocketing. Thyristors are integral in managing power within EV charging stations and motor control systems, contributing to their increased adoption in the automotive sector.
Industrial Automation The growing trend of automation in manufacturing and industrial processes necessitates precise control over high-power systems, a role thyristors are well-suited for. This demand is particularly evident in sectors like steel manufacturing, railways, and heavy machinery.
Infrastructure Development in Emerging Markets The rapid urbanization and industrialization of emerging economies like India and China are driving investments in power distribution and infrastructure projects. Thyristors are essential in these large-scale energy management systems.
Challenges
Despite its growth prospects, the thyristor market faces several challenges:
Competition from Alternative Technologies Advances in Insulated Gate Bipolar Transistors (IGBTs) and MOSFETs pose competition to thyristors in certain applications, particularly in lower power ranges.
High Initial Costs Implementing thyristor-based systems can involve significant upfront investment, which may deter adoption, especially in cost-sensitive markets.
Complex Manufacturing Processes Thyristors require precise fabrication techniques, leading to higher production costs and limiting market entry for new players.
Future Prospects
The future of the thyristor market is intertwined with the global push for sustainability. Key trends include:
Integration with Smart Grids: Thyristors will play a vital role in creating intelligent energy systems capable of balancing supply and demand efficiently.
Adoption of Advanced Materials: Innovations in silicon carbide (SiC) and gallium nitride (GaN) materials are expected to enhance thyristor performance, opening new possibilities for applications in harsh environments.
AI and IoT Integration: The integration of AI and IoT technologies in power systems will require high-performance thyristors for seamless operation.
Key Player Analysis:
STMicroelectronics
Vishay Intertechnology
Schneider Electric
TSMC
Sensata Technologies
ABB Ltd
Infineon Technologies AG
ON Semiconductor
Siemens AG
Honeywell International Inc.
Segmentations:
By Power Rating
500 MW
500 MW-1000 MW
1000 MW
By End Use
Consumer Electronics
Telecommunication & Networking
Industrial
Automotive
Aerospace & Defence
Others
By Geography
North America
U.S.
Canada
Mexico
Europe
Germany
France
U.K.
Italy
Spain
Rest of Europe
Asia Pacific
China
Japan
India
South Korea
South-east Asia
Rest of Asia Pacific
Latin America
Brazil
Argentina
Rest of Latin America
Middle East & Africa
GCC Countries
South Africa
Rest of the Middle East and Africa
Browse the full report https://www.credenceresearch.com/report/thyristor-market
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Credence Research
Please contact us at +91 6232 49 3207
Email: [email protected]
Website: www.credenceresearch.com
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SCR (Silicon Controlled Rectifier) Power Controllers are electronic devices used to regulate electrical power in industrial applications. Employed in heating elements and electric furnaces, SCR Power Controllers provide precise control over the power supplied to resistive loads.
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Insights Into The Power Electronics Market Size 2022-2028 Forecast Period
The analysis covers market drivers, constraints, challenges, strategic expansions, market size and share, development prospects, and threats. A complete definition of the industry and its important segments, as well as an analysis of the business vertical, are included in the most recent study on the Power Electronics Market. The industry is growing, according to the report, as a result of technical advancements.
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The report also includes segmentation data, such as type, industry, and channel sectors, as well as market size data in terms of both volume and value, for each segment. Manufacturers must grasp the lucrative segments of the Power Electronics market where these major firms are investing their efforts, therefore information on notable industry participants is also provided.
MARKET SEGMENTATION:
BY WAFER TYPE
Gallium Nitride
Silicon Carbide
Silicon
Others
BY COMPONENT
Thyristor
Gate Turn-Off Transistor (GTO)
Silicon Controlled rectifier (SCR)
Static Switches
MCT (MOS-Controlled Thyristor)
AC/DC Converter
MOSFET
Others
BY WAFER SIZE
450mm
200mm
300mm
150mm
BY APPLICATION
Defense and Aerospace
Utilities and Energy
Transportation
Consumer Electronics
Telecommunications and IT
Automotive
Industrial
Others
BY DEVICE
Discrete
IC
Module
COVID-19 Impact Analysis
The report also considers market growth influences, such as the current COVID-19 outbreak. The COVID-19 pandemic, according to the study, had a significant impact on the Power Electronics industry's supply chain, demand, trends, and general dynamics. It also forecasts market expansion following COVID-19.
Key Influencers for Power Electronics Market
The study goes into great detail regarding the market's characteristics and factors that contribute to its success. The industry's growth is fueled by the ongoing efforts of significant corporations to produce new goods and technologies. In addition, the industry is seeing a flurry of strategic collaborations and efforts that are expanding the market's scope.
Regional Dynamics
To provide a thorough view of the market, the regional research sections also provide a country-by-country study. The regional split of the market is indicated by the Power Electronics market analysis in places where the market has already established itself as a leader. It also looks at import/export studies, supply and demand dynamics, regional trends and demands, and the presence of major actors in each region's production and consumption ratios.
Competitive Scenario
The research includes a complete evaluation to give the reader a better understanding of the market's competitive environment. The study also includes information on each player's revenue, gross profit margin, financial status, market position, product portfolio, and other pertinent parameters. The report also includes a complete SWOT analysis and a Porter's Five Forces analysis. This section focuses on the major market players' initiatives and advancements in order to establish a strong presence.
The Power Electronics market analysis also includes information on mergers and acquisitions, joint ventures, collaborations, partnerships, and agreements to provide you a better picture of the industry. This section is ideal source of input for market players to revisit their strategic positions.
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Table Of Contents
1. Introduction
1.1 Market Definition
1.2 Scope
1.3 Research Assumptions
2. Research Methodology
3. Market Dynamics
3.1 Drivers
3.2 Restraints
3.3 Opportunities
3.4 Challenges
4. Impact Analysis
4.1 COVID 19 Impact Analysis
4.2 Impact Of Ukraine-Russia War
5. Value Chain Analysis
6. Porter’s 5 Forces Model
7. PEST Analysis
8. Global Power Electronics Market Segmentation, By Wafer Type
8.1 Gallium Nitride
8.2 Silicon Carbide
8.3 Silicon
8.4 Others
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Power Electronics Market to Observe Exponential Growth By 2026
Market Highlights
Global Power Electronics Market spans across North America, Europe, Asia-Pacific, the rest of the world.
The growing trend of renewable energy resources and portable energy systems is largely impacting the growth of the global power electronics market during the forecast period. However, complexities in designing and integrating technically advanced devices are expected to impact market growth. Power electronics devices are also used in electric and hybrid vehicles to optimize overall system cost, maximize power savings, extend mileage, minimize power losses, increase power density, and improve battery efficiency. This has created opportunities for manufacturers of power electronic components.
The geographic analysis of the power electronics market has been done for North America, Europe, Asia-Pacific, the rest of the world. Asia-Pacific has dominated the power electronics market in 2019 and is expected to reach USD 24.22 billion in 2026, with the highest CAGR of 7.78%. The regions of North America and Europe are also expected to witness significant growth over the forecast period.
In North America, the US accounted for the largest market share in 2018. Advancements in technology and the increasing demand for consumer electronics such as mobile phones, computers, and others are some of the major factors, which are driving the growth of the power electronics market in the region. Europe is expected to register steady growth in the power electronics market during the forecast period owing to the rising adoption of smartphones, increasing availability of smart devices, and other IoT-based systems. The region, by country, has been segmented into the UK, Germany, France, and the rest of Europe. Asia-Pacific dominates the power electronics market based on the region due to growing markets of consumer electronics and wearable products in China, India, Japan, South Korea, Singapore, Taiwan, and other countries in the region. Additionally, growing investments by key market players operating in this region significantly contribute towards the market growth. Furthermore, the increasing ownership of smartphones, personal electronics, and smart wearables in the region stimulates market growth. The rest of the world held the fourth position in terms of market share in 2019. The market growth in this region is currently stagnant due to the presence of emerging economies and relatively low infrastructure support. However, the market is expected to experience a growing trend in the future due to the increasing investment to boost the telecom infrastructure and IoT connectivity. The region has been segmented into the Middle East & Africa and South America.
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Key Players
The Key Players of the global power electronics market are Alpha & Omega Semiconductor (AOS) Europe, AMS AG, Analog Devices Inc, Dialog Semiconductor, Diodes Incorporated, Semiconductor Component Industries LLC, Infineon Technologies AG, Renesas Electronics Corporation, Maxim Integrated, Microchip Technology Inc., STMicroelectronics, Texas Instruments, Toshiba Electronic Devices & Storage Corporation, Vishay Intertechnology Inc., and Allegro Semiconductors, among others.
Global Power Electronics Market: Segmentation
The global power electronics market has been segmented based on component, wafer type, wafer material, wafer size, application, and region. Based on component, the global market has been segmented into diodes, thyristor, MOSFET, AC/DC converter, static switches, and others. By wafer type, the market has been segmented into Silicon, GaN, SiC, and others. Based on wafer material, the market has been bifurcated into N-type and P-type. By wafer size, the market has been segmented into 150mm, 200mm, 300mm, and 450mm and above. Based on application, the global power electronics market has been segmented into consumer electronics, IT & telecommunications, automotive, aerospace & defense, industrial, energy & utilities, transportation, and others.
Table of Content:
3 RESEARCH METHODOLOGY
4 MARKET DYNAMICS
4.1 OVERVIEW
4.2 DRIVERS
4.2.1 INCREASING FOCUS ON DEVELOPING POWER INFRASTRUCTURE AND THE USE OF RENEWABLE POWER SOURCES
4.2.2 RISING USE OF POWER ELECTRONICS IN PORTABLE ENERGY SYSTEMS
4.3 RESTRAINT
4.3.1 COMPLEX DESIGN AND INTEGRATION PROCESS OF ADVANCED TECHNOLOGICAL DEVICES
4.4 OPPORTUNITIES
4.4.1 GROWING DEMAND FOR HEVS AND EVS
4.4.2 DEMAND FOR GAN AND SIC POWER SEMICONDUCTORS
4.5 CHALLENGE
4.5.1 UNSOLVABLE STRATEGIC ISSUES OF THE SEMICONDUCTOR INDUSTRY
4.6 IMPACT ANALYSIS OF COVID-19
4.6.1 IMPACT ON SEMICONDUCTOR MANUFACTURERS
4.6.2 IMPACT ON COMPONENT MANUFACTURERS
4.6.3 IMPACT ON DEVICE MANUFACTURERS
4.6.4 IMPACT ON SUPPLY CHAIN DELAYS
5 MARKET FACTOR ANALYSIS
5.1 SUPPLY CHAIN ANALYSIS
5.1.1 RESEARCH & DEVELOPMENT CENTER
5.1.2 MATERIAL SUPPLIERS AND FOUNDRIES
5.1.3 COMPONENT MANUFACTURERS
5.1.4 SUBSYSTEM INTEGRATORS
5.1.5 END USERS
5.2 PORTER'S FIVE FORCES MODEL
5.2.1 THREAT OF NEW ENTRANTS
5.2.2 BARGAINING POWER OF SUPPLIERS
5.2.3 THREAT OF SUBSTITUTES
5.2.4 BARGAINING POWER OF BUYERS
5.2.5 INTENSITY OF RIVALRY
6 GLOBAL POWER ELECTRONICS MARKET, BY COMPONENT
6.1 OVERVIEW
6.2 DIODES
6.3 THYRISTOR
6.3.1 SILICON CONTROLLED RECTIFIER (SCR)
6.3.2 GATE TURN-OFF TRANSISTOR (GTO)
6.3.3 MCT (MOS-CONTROLLED THYRISTOR)
6.4 MOSFET
6.5 AC/DC CONVERTER
6.6 STATIC SWITCHES
6.7 OTHERS
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About Us
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.
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New Packages and Materials for Power Devices 2020 Global Market Outlook, Research, Trends and Forecast to 2023
Market Research Future (MRFR) projects that the global new packages and materials for power devices market will reach a valuation in excess of USD 2,500 by the year 2023, reflecting an impressive growth rate. Power devices such as power transistors, metal-oxide-semiconductor field-effect transistor (MOSFET), medium-chain triglyceride (MCT), Diode alternating current (DIAC), silicon-controlled rectifiers (SCR), power diodes, triode for alternating current (TRIAC) and insulated-gate bipolar transistor (IGBT) are sought-after power electronic components. They are widely used in the electronics manufacturing sector due to their high-performance capacity.
SIC (silicon carbide) and GaN (gallium nitride) have emerged as the preferred material for making packages for high-intensity semiconductors and power devices. Such materials can support high temperature power circuits and withstand high voltage. On the back of growing need for high-voltage power supply, power devices witness a strong demand worldwide. Manufacturers are actively focusing on usage of advanced packages and materials for power devices in order to improve their efficiency. In addition, power device packages such as hermetic packaging, wire bonding packaging, and chip-scale packaging are also witnessing widespread popularity. Demand for power devices in wireless systems, building systems and automotive systems is on the rise.
The emphasis places on development of semiconductor technology that can facilitate energy saving is likely to reflect favorably on the market. Policy makers all over the world are introducing policies that promote installation of energy-efficient systems. In recent years, there has been an upward trend in adoption of solar power systems and energy management systems.
Global New Packages and Materials for Power Devices Market: Segmental Analysis
MRFR’s report includes a detailed segmental analysis of the market based on end use and package type & material. By end use, the market has been segmented into telecommunications and computing (datacenters, computing and telecommunication, cryptocurrency, and gaming systems), industrial, electronics, automotive and others (EV charging stations, aerospace & defense, and energy generation and storage. The automotive segment commands more than one-third share of the market in terms of value. During the assessment period, the segment is expected to post 52.45% CAGR. By package type and material, the market has been segmented into wire bonding packaging, Gallium Nitrid (GaN), chip-scale packaging, Gallium Arsenide (GaAs), silicon carbide (SiC) and other (Cu clip packaging and Hermetic packaging) Browse Complete Report Details @ https://www.marketresearchfuture.com/reports/new-packages-materials-power-devices-market-7494
Global New Packages and Materials for Power Devices Market: Regional Outlook
Regions covered in the report include North America, Europe, Asia Pacific (APAC), Latin America and the Middle East & Africa (MEA). Asia Pacific accounts for the lion’s share of the global market in terms of value. The market in the region is currently valued at over USD 150 Mn and is projected to witness a CAGR of 49.58% between 2018 and 2023. The region has continued to witness tremendous industrialization and urbanization. Growth of the semiconductor industry in APAC is driving the demand for packages and material for semiconductors. North America is the second largest market for packages and materials for power devices. The market in the region surpassed a valuation of USD 70 Mn in 2017. The U.S. is an important investment destination for market players and like to present lucrative growth opportunities in the coming years. During the review period, the market in North America is set surge at a CAGR of 37.67%. Rapid adoption of net-gen electronics gadgets and systems across various industry verticals is boosting the market potential in North America.
Global New Packages and Materials for Power Devices Market: Competitive Landscape
MRFR in its reports mentions some of top-notch market players, which include Littelfuse, Remtec, Inc., MITSUBISHI ELECTRIC CORPORATION, Amkor Technology, Orient Semiconductor Electronics Ltd., Infineon Technologies AG, SEMIKRON, ROHM SEMICONDUCTOR, STMicroelectronics, NXP Semiconductor, Exagan, ON Semiconductor, and Efficient Power Conversion Corporation.
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Global Silicon Controlled Rectifier (SCR) Market 2019|(Infineon Technologies & More)
Global Silicon Controlled Rectifier (SCR) Market 2019|(Infineon Technologies & More)
The main aim of the Global Silicon Controlled Rectifier (SCR) Market report is to provide an up-to-date information on the market and also pinpoint all the opportunities for Silicon Controlled Rectifier (SCR) market growth. The report begins with a market outlook and offers market basic introduction and definition of the worldwide Silicon Controlled Rectifier (SCR) industry. The overview part of…
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Silicon Controlled Rectifier (SCR) Market Growth, Trends, And Forecast (2019 – 2026)
The recent report, Silicon Controlled Rectifier (SCR) market fundamentally discovers insights that enable stakeholders, business owners and field marketing executives to make effective investment decisions driven by facts – rather than guesswork. The study aims at listening, analyzing and delivering actionable data on the competitive landscape to meet the unique requirements of the companies and individuals operating in the Silicon Controlled Rectifier (SCR) market for the forecast period, 2019 to 2026.
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Scope of the Report: The research methodologies used for evaluating the Silicon Controlled Rectifier (SCR) market are inventive and also provides enough evidence on the demand and supply status, production capability, import and export, supply chain management and investment feasibility. The investigative approach applied for the extensive analysis of the sale, gross margin and profit generated by the industry are presented through resources including tables, charts, and graphic images. Importantly, these resources can be easily integrated or used for preparing business or corporate presentations.
Market Segment on the basis of manufacturers, the report covers:
· Infineon Technologies
· Microsemiconductor
· STMicroelectronics
· IXYS
· Vishay
· Semikron
· Crydom
Market split by Type, can be divided into:
· Unidirectional SCR Modules
· Bidirectional SCR Modules
Market split by Application, can be divided into:
· Electronics
· Power Industry
· Communcations
· Other
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Estimating the potential size of the Silicon Controlled Rectifier (SCR) industry: Industry experts conducting the study further estimate the potential of the Silicon Controlled Rectifier (SCR) industry. Such information is important for firms looking to launch an innovative service or product on the market. Industry experts have measured the total volume of the given market. Researchers have calculated the industry in terms of sales by the competitors and end-user – customers. Data on the entire size of the Silicon Controlled Rectifier (SCR) market for a particular product or a service for the forecast period, 2019 to 2026 covered in the report makes it valuable. This information reveals the upper limit of the Silicon Controlled Rectifier (SCR) industry for a specific product or service.
Market share: The report discovers market’s total sale that is generated by a particular firms over a time period. Industry experts calculate share by taking into account the product sales over a period and then dividing it by the overall sales of the Silicon Controlled Rectifier (SCR) industry over a defined period. Subject matter experts further use this metric to offer a general idea of the share and size of a firm and its immediate rivals. By providing an in-depth knowledge of the position a company as well as an entrepreneur holds in the Silicon Controlled Rectifier (SCR) market
The research provides answers to the following key questions:
· What is the estimated growth rate of the Silicon Controlled Rectifier (SCR) market for the forecast period 2019 - 2026? What will be the market share and size of the industry during the estimated period?
· What are prime factors expected to drive the Silicon Controlled Rectifier (SCR) industry for the estimated period?
· What are the major market leaders and what has been their winning strategy for success so far?
· What are the significant trends shaping the growth prospects of the Silicon Controlled Rectifier (SCR) market?
· What are the key challenges expected to restrict the progress of the industry for the forecast period, 2019 - 2026?
· What the opportunities product owners can bank on to generate high profits?
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Global Silicon Controlled Rectifier (SCR) Market Research Key Players, Industry Overview, Supply Chain and Analysis to 2017 – 2022
Global Silicon Controlled Rectifier (SCR) Market Research Key Players, Industry Overview, Supply Chain and Analysis to 2017 – 2022
For overview analysis, the report introduces Global Silicon Controlled Rectifier (SCR) Market basic information including definition, classification, application, industry chain structure, industry overview, policy analysis, and news analysis, etc. In this report, the global Silicon Controlled Rectifier (SCR) market is valued at USD XX million in 2016 and is expected to reach USD XX million by…
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Silicon-Controlled Rectifier (SCR) Market Technology,Trends and Industry Analysis & Forecast to 2016-2024
A Solid-state current controlling device divided into four layers is called a Silicon-controlled rectifier (SCR) or semiconductor controlled rectifier. Silicon-controlled rectifier is a unidirectional power switch used in switching between alternative current (AC) and direct current (DC). It is mainly used for rectifying DC signals in controlled AC output and vice versa.
Silicon-controlled rectifiers have multitude of applications including motor controls, pressure control regulators, light dimmers, liquid level regulators and electronic automotive ignition. From end use perspective, applications of SCR are found in industries such as semiconductor and consumer electronics, power transmission, clean energy, aerospace and defense, automotive, medical and oil and gas among others. Rise in applications of SCR in these industries is driving the growth of the market across different countries in the world.
Increasing penetration of smart grids in developing countries, along with the substitution of aging power infrastructure in developed regions have conjointly created growth opportunity for SCR market. An increase in urbanization accompanied with rising governmental spending on modern power generation, distribution and transmission network in developing countries is estimated to positively impact the growth of SCR market during the forecast period. SCR offers benefits such as relatively faster switching times as compared to mechanical switches, lower power losses in switching, and reduction in transmission losses. Due to such benefits, applications of SCR in motor controls, liquid level regulators and pressure control regulators have grown significantly in recent years. Apart from mentioned benefits, application of SCR offers advantages such as minimal thermal stress and extension of product lifecycle of the power electronic devices due to low switching loss. Such additional benefits boosted the penetration of application of SCR in industrial sector.
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At present, a dominant share of the global electricity is consumed by power electronic devices, whose production is expected to increase during the forecast period to meet the growing demand for applications backed by power electronics components. In order to decrease electricity consumption and increase durability of power devices, applications of SCR are estimated to increase during the forecast period. Miniaturization, cost-benefits, and reliability are some of the factors that is driving the applications of SCR in power electronics devices. Considering the above mentioned factors, it is estimated that global SCR market will grow significantly in coming years.
Global SCR market is segmented on the basis of technology, application and geography. By technology, the market can be categorized as DC Gate Triggered SCR and AC Gate Triggered SCR. By application, the global SCR market is sub-segmented as light power control, motor control, light dimmer, liquid level regulator, pressure control system, and others. On the basis of geography, the market is sub-divided as North America, Asia-Pacific, Europe, and Rest of the World (RoW).
On the basis of geography, North America holds the leading position in terms of revenue share of the global SCR market. Besides the development and establishment of the smart power grid, the high penetration of flexible AC transmission system is driving the growth of SCR market in North America. On the other hand, growth of SCR market in European countries is mainly driven by the replacement of the old power distribution infrastructure. Growth of applications in different industrial sectors is expected to significantly impact SCR market in Asia Pacific region. Rising investments in power grid expansion projects across different Asian countries such as India, Indonesia, China and Vietnam among others is alternatively fueling the growth of SCR market.
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The key-players in the global silicon-controlled rectifier market are Infineon Technologies (Germany), ON semiconductor (U.S.), Fuji Electric (Japan), SEMIKRON International (Germany), STMicroelectronics (Switzerland), ABB Ltd (Switzerland), IXYS (United States), Renesas Electronics (Japan) and Littlefuse (United States).
The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.
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Global Silicon Controlled Rectifier (SCR) Market - Growing Trends, restraints and Growth Opportunities 2028
Global Silicon Controlled Rectifier (SCR) Market – Growing Trends, restraints and Growth Opportunities 2028
January 21, 2019: The global Silicon Controlled Rectifier (SCR) market was valued at $XX million in 2017, and Radiant Insights Research analysts predict the global market size will reach $XX million by the end of 2028, growing at a CAGR of XX% between 2017 and 2028.
This report provides detailed historical analysis of global market for Silicon Controlled Rectifier (SCR) from 2013-2018, and…
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Active Electronic Components Market 2018 Segmentation, Application, Technology and Analysis Report Forecast to 2022
Market Highlights:
The global market for active electronic components is set to expand at a striking growth rate during the forecast period (2016-2022), forecasts Market Research Future (MRFR). In simple words, active electronic components control the flow of electricity, with printed circuit boards having at least one of them. Some examples of AEC are transistors, vacuum tubes, silicon-controlled rectifiers (SCRs). In the past few years, technological advancements in electronics and semiconductor industry have increased the number of applications for active electronic components. The demand for electronic components is steadily increasing due to global demand in information and communication technology (ICT) market for smart phones and other wearable devices.
Active electronic components although tiny, are one of the important components used in the electronics. Due to their efficacy in producing energy in the form of voltage, these components have acquired a place in every electronic device further experiencing much of a demand.
Owing to the extensive demand from the burgeoning market of ICT, the demand for electronic components is augmenting rapidly further escalating the market to the exponential heights on the global platform. Increasing market penetration of smartphones and other wearable devices fuelled by the wide adoption across worldwide define the market landscape for these components.
Major Key Players:
Hitachi AIC Inc. (Japan),
Infineon Technologies AG (Germany),
Texas Instruments, Inc. (U.S),
Analog Devices, Inc. (U.S.),
NXP Semiconductors N.V. (Netherlands),
Panasonic Corporation (Japan),
Toshiba Corporation (Japan),
STMicroelectronics (Switzerland),
Renesas Electric Corporation (Japan)
Maxim Integrated (U.S.)
According to MRFR, the Active Electronic Component Market is growing at 8% of CAGR and is expected to reach at USD ~387 billion by the end of forecast period.
Key Findings
By product type, Integrated circuits is dominating the market with revenue USD 76.96 Billion in 2016 and is expected to grow with 11.42% CAGR.
By end-users, consumer electronics is dominating the market and has generated USD 73.5 Billion in 2016 and is expected to grow at 11.95% CAGR.
Geographically, North America region has been projected to hold the largest market share in global active electronic components market followed by Europe region, while Asia Pacific is expected to drive the market in coming years.
Regional Analysis:
The North American market for active electronic components is dominating the global market attributing to the huge demand of security system and business intelligence. The region is followed by Europe region.
The Asia Pacific region is emerging as the fastest growing market attributed to the augmented market penetration of smartphones and the demand for energy-efficient devices. China, India, and Japan are driving the regional market growth owing to the growing penetration of high-tech devices, increased requirement of miniaturization, developments of auto electronics, economic development, growing digitization, rapid industrialization among other factors.
Segmentation:
MRFR has segmented its analysis into three key dynamics for the convenience of understanding.
By Product Types: Comprises optoelectronic devices, semiconductor devices, display technologies, vaccum tube, and others.
By End Users: Consumer Electronics, Healthcare, Automotive, Aerospace & Defence, Information Technology and others.
By Regions: North America, Europe, APAC and Rest-of-the-World (RoW).
In 2016, the segment - Integrated circuit dominated the market reaching USD 76.96 BN and is further expected to grow with 11.42% CAGR during the assessment period.
While the segment Consumer Electronics by end-users had generated worth approx. USD 73.5 BN and is expected to grow at 11.95% CAGR during 2016-2022.
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Intended Audience:
Electronic component manufacturers
Research organizations
Original equipment manufacturers
System Integrators
network equipment vendors
chipset vendors
software/application providers
user equipment manufacturers
network infrastructure integrators
Government Organizations
Research/Consultancy firms
List of Tables
TABLE 1 GLOBAL ACTIVE ELECTRONIC COMPONENTS MARKET, BY PRODUCT TYPE, 2016-2022,
TABLE 2 GLOBAL ACTIVE ELECTRONIC COMPONENTS MARKET, BY END-USER, 2016-2022,
TABLE 3 GLOBAL ACTIVE ELECTRONIC COMPONENTS MARKET, BY REGION, 2016-2022,
TABLE 4 NORTH AMERICA ACTIVE ELECTRONIC COMPONENTS MARKET, BY COUNTRY, 2016-2022,
TABLE 5 NORTH AMERICA ACTIVE ELECTRONIC COMPONENTS MARKET, BY PRODUCT TYPE
TABLE 6 NORTH AMERICA ACTIVE ELECTRONIC COMPONENTS MARKET, BY END-USER
TABLE 7 U.S. ACTIVE ELECTRONIC COMPONENTS MARKET, BY PRODUCT TYPE
Continued……
For More Information Visit @ http://www.wboc.com/story/39654146/active-electronic-components-market-size-and-leading-growth-drivers-2018-global-trends-key-vendors-industry-growth-import-export-revenue-by-forecast
https://www.marketwatch.com/press-release/active-electronic-components-market-size-competitors-strategy-regional-growth-key-countries-analysis-by-leading-players-with-forecast-to-2022-2019-01-03
https://www.rfdtv.com/story/39269040/active-electronic-components-aec-market-2018-global-industry-share-size-key-players-trends-future-business-strategies-competitive-analysis-and
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Silicon-Controlled Rectifier (SCR) Market: Technological Advancements, Evolving Industry Trends and Insights
Silicon-Controlled Rectifier (SCR) Market: Technological Advancements, Evolving Industry Trends and Insights
A Solid-state current controlling device divided into four layers is called a Silicon-controlled rectifier (SCR) or semiconductor controlled rectifier. Silicon-controlled rectifier is a unidirectional power switch used in switching between alternative current (AC) and direct current (DC). It is mainly used for rectifying DC signals in controlled AC output and vice versa.
Silicon-controlled…
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Silicon-Controlled Rectifier Market Key Trends, Share, Growth Factors and Industry Analysis 2016 – 2024
A Solid-state current controlling device divided into four layers is called a Silicon-controlled rectifier (SCR) or semiconductor controlled rectifier. Silicon-controlled rectifier is a unidirectional power switch used in switching between alternative current (AC) and direct current (DC). It is mainly used for rectifying DC signals in controlled AC output and vice versa.
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Silicon-controlled rectifiers have multitude of applications including motor controls, pressure control regulators, light dimmers, liquid level regulators and electronic automotive ignition. From end use perspective, applications of SCR are found in industries such as semiconductor and consumer electronics, power transmission, clean energy, aerospace and defense, automotive, medical and oil and gas among others. Rise in applications of SCR in these industries is driving the growth of the market across different countries in the world.
Increasing penetration of smart grids in developing countries, along with the substitution of aging power infrastructure in developed regions have conjointly created growth opportunity for SCR market. An increase in urbanization accompanied with rising governmental spending on modern power generation, distribution and transmission network in developing countries is estimated to positively impact the growth of SCR market during the forecast period. SCR offers benefits such as relatively faster switching times as compared to mechanical switches, lower power losses in switching, and reduction in transmission losses. Due to such benefits, applications of SCR in motor controls, liquid level regulators and pressure control regulators have grown significantly in recent years. Apart from mentioned benefits, application of SCR offers advantages such as minimal thermal stress and extension of product lifecycle of the power electronic devices due to low switching loss. Such additional benefits boosted the penetration of application of SCR in industrial sector.
At present, a dominant share of the global electricity is consumed by power electronic devices, whose production is expected to increase during the forecast period to meet the growing demand for applications backed by power electronics components. In order to decrease electricity consumption and increase durability of power devices, applications of SCR are estimated to increase during the forecast period. Miniaturization, cost-benefits, and reliability are some of the factors that is driving the applications of SCR in power electronics devices. Considering the above mentioned factors, it is estimated that global SCR market will grow significantly in coming years.
Global SCR market is segmented on the basis of technology, application and geography. By technology, the market can be categorized as DC Gate Triggered SCR and AC Gate Triggered SCR. By application, the global SCR market is sub-segmented as light power control, motor control, light dimmer, liquid level regulator, pressure control system, and others. On the basis of geography, the market is sub-divided as North America, Asia-Pacific, Europe, and Rest of the World (RoW).
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On the basis of geography, North America holds the leading position in terms of revenue share of the global SCR market. Besides the development and establishment of the smart power grid, the high penetration of flexible AC transmission system is driving the growth of SCR market in North America. On the other hand, growth of SCR market in European countries is mainly driven by the replacement of the old power distribution infrastructure. Growth of applications in different industrial sectors is expected to significantly impact SCR market in Asia Pacific region. Rising investments in power grid expansion projects across different Asian countries such as India, Indonesia, China and Vietnam among others is alternatively fueling the growth of SCR market.
The key-players in the global silicon-controlled rectifier market are Infineon Technologies (Germany), ON semiconductor (U.S.), Fuji Electric (Japan), SEMIKRON International (Germany), STMicroelectronics (Switzerland), ABB Ltd (Switzerland), IXYS (United States), Renesas Electronics (Japan) and Littlefuse (United States).
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Global Silicon Controlled Rectifier (SCR) Modules Market 2017 - Infineon Technologies, Microsemiconductor
Global Silicon Controlled Rectifier (SCR) Modules Market 2017 – Infineon Technologies, Microsemiconductor
Global Silicon Controlled Rectifier (SCR) Modules Market 2017Research Report analyses a Market Regions, Product Categories, with Sales, Market Revenue, Product cost, Silicon Controlled Rectifier (SCR) Modules market Share and Growth trends, focusing on leading Silicon Controlled Rectifier (SCR) Modules industry players, market size, demand and supply analysis, consumption volume, Forecast 2017 to…
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#Silicon Controlled Rectifier (SCR) Modules#Silicon Controlled Rectifier (SCR) Modules Industry#Silicon Controlled Rectifier (SCR) Modules Market#Silicon Controlled Rectifier (SCR) Modules Market Share
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Active Electronic Components (AEC) Market – Size, Trends, Growth, Outlook and Forecast to 2023
Market Highlights:
The global market for active electronic components is set to expand at a striking growth rate during the forecast period (2016-2022), forecasts Market Research Future (MRFR). In simple words, active electronic components control the flow of electricity, with printed circuit boards having at least one of them. Some examples of AEC are transistors, vacuum tubes, silicon-controlled rectifiers (SCRs). In the past few years, technological advancements in electronics and semiconductor industry have increased the number of applications for active electronic components. The demand for electronic components is steadily increasing due to global demand in information and communication technology (ICT) market for smart phones and other wearable devices. Moreover, growing global concerns for energy efficiency have propelled the need for energy efficient active electronic components. Further, medical and military applications are fuelling the demand for display devices among active electronic components. Several display devices in the active electronic components market include microwave tubes, cathode-ray tubes, x-ray tubes, photoelectric tubes and triodes.
However, these driving factors go hand in hand with few restraints, namely fluctuating prices of raw materials that make it hard for manufacturers to cope with the instability. On the other hand, many firms across the globe are seeking new ways to mitigate the risks posed by the instability of the raw materials. On top of that, managing the cost of raw materials is top priority for the market players and the market is ripe with ambitious vendors who are striving to maintain their positions. These factors work wonders for the market and will continue to do so in the coming years. Another factor forcing its way into the market is adoption of Micro-electro-mechanical systems (MEMS). Mobile phones make use of these systems, along with braking systems, emissions control and navigation. Other applications of MEMS include biomedical sensors and drug delivery systems. This trend is quickly catching up speed in the constantly expanding market.
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Key Findings
By product type, Integrated circuits is dominating the market with revenue USD 76.96 Billion in 2016 and is expected to grow with 11.42% CAGR.
By end-users, consumer electronics is dominating the market and has generated USD 73.5 Billion in 2016 and is expected to grow at 11.95% CAGR.
Geographically, North America region has been projected to hold the largest market share in global active electronic components market followed by Europe region, while Asia Pacific is expected to drive the market in coming years.
Major Key Players:
Some of the key players in the Active Electronic Components Market are Hitachi AIC Inc. (Japan), Infineon Technologies AG (Germany), Texas Instruments, Inc. (U.S), Analog Devices, Inc. (U.S.), NXP Semiconductors N.V. (Netherlands), Panasonic Corporation (Japan), Toshiba Corporation (Japan), STMicroelectronics (Switzerland), Renesas Electric Corporation (Japan) and Maxim Integrated (U.S.)
Analog Devices Inc (USA), manufacturer of mixed-signal ICs for cable access has expanded its global headquarters in Wilmington by expanding its facility. The expanded facility will feature laboratories; design and manufacturing along with cross-functional group collaboration space. The facility up-gradation will help provide more modern, latest technological and work design advances, resulting in further improved products. Analog devices are a type of active electronic components, used to convert and process light, sound, temperature, motion, and pressure into electrical signals.
According to MRFR, the Active Electronic Component Market is growing at 8% of CAGR and is expected to reach at USD ~387 billion by the end of forecast period.
Segmentation:
The global are segmented on the basis of product type and end-users. On the basis of product type the segment is further classified into semiconductor devices, optoelectronic devices, display technologies, vaccum tube and others. On the basis of end-users the segment is further classified into consumer electronics, healthcare, automotive, aerospace & defense, information technology and others.
Regional Analysis:
The regional analysis of active electronic components market is being studied for region such as Asia pacific, North America, Europe and Rest of the World. North America is one of the leading region across the world in terms of market share in active electronic components market due to the huge demand of security system and business intelligence which is propelling the market growth of active electronic components. However, Asia Pacific is expected to surpass the market and in the coming years attributed by rising need and demand for energy-efficient devices and growth in adoption of smartphones. Asia Pacific countries like China, India and Japan are ahead in the in Active Electronic Components market due to increasing penetration of high-tech devices, increased requirement of miniaturization, developments of auto electronics, economic development, growing digitization, rapid industrialization and many more.
Browse Complete Report @ https://www.marketresearchfuture.com/reports/active-electronic-components-market-2284
Intended Audience:
Electronic component manufacturers
Research organizations
Original equipment manufacturers
System Integrators
network equipment vendors
chipset vendors
software/application providers
user equipment manufacturers
network infrastructure integrators
Government Organizations
Research/Consultancy firms
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