Friday, March 31, 2023

Multilayer Ceramic Capacitor (MLCC) Market Top Key Players Profiles, Size, Statistics, Market Growth Rate and Forecasts Till 2030

 According to Market Research Future (MRFR), the global multilayer ceramic capacitor (MLCC) market had a valuation of USD 5,624.2 million in 2018 and is expected to reach USD 8,067.2 million with a CAGR of 6.38% from 2017 to 2023 (forecast period). The report explores and examines the effect of the COVID-19 outbreak on the global multilayer ceramic capacitor (MLCC) market, including possible opportunities and threats, drivers, and risks.

Multilayer ceramic capacitor (MLCC) is an essential component in electrical and electronic devices, including mobile devices, automobiles, and household appliances. Capacitors allow the temporary storage of electric charges in electronic circuits; they are often used for noise suppression to remove unwanted signals. 

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Key Players

The industry giants in the multilayer ceramic capacitor industry include Murata Manufacturing Co., Ltd. (Japan), AVX Corporation (US), Samsung Electro-Mechanics (South Korea), TDK Corporation (Japan), API Technologies Corp. (US), YAGEO Corporation (Taiwan), Würth Elektronik GmbH & Co. KG (Germany), Taiyo Yuden Co. Ltd. (Japan), Walsin Technology Corporation (Taiwan), KEMET (US), SAMWHA ELECTRIC (South Korea), Vishay Intertechnology (US), NIC Components Corp. (US), Darfon Electronics Corp. (Taiwan), and MARUWA CO., LTD. (Japan). These players contribute a large share in the growth of multilayer ceramic capacitor market.

Apart from the major key players, there are other players that contribute to the market growth. These include Fenghua Advanced Technology (China), Chaozhou Three-Circle (China), Kyocera (Japan), and Eyang Technology Development Co., Ltd (China).

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Market Segmentation

The global multilayer ceramic capacitor (MLCC) market has been segmented into type and application. 

By type, the multilayer ceramic capacitor market has been segmented into Class I and Class II. The Class I segment has been further divided into C0G/ NP0, U2J, and others. The Class II segment has been further divided into X7R, X5R, Y5V, Z5U, and others. C0G / NP0 amounted to the largest revenue share in the Class I segment in 2018; its dominance is anticipated to remain over the forecast period. In the Class II segment, the market was dominated by X7R in 2018.

Based on application, the multilayer ceramic capacitor market has been divided into consumer electronics, automotive, manufacturing, healthcare, and others. The consumer electronics segment led the market for multilayer ceramic capacitors in 2018; it is estimated to generate a substantial revenue share to the market during the forecast period due to the immense use of multilayer ceramic capacitors in consumer electronics. The healthcare sector is expected to expand at a significant CAGR during the forecast period.

Market Dynamics

Demand for MLCCs has risen significantly over the last two years due to the growing demand for automotive components, the advent of 5 G, and the rapid adoption of IoT. High capacitance MLCCs are in demand for IoT devices due to their high reliability and long service life. In addition, the need for high-performance electronics and electrical devices generates the need for capacitors in high-end products. MLCC has many advantages, including a wide capacitance and voltage range, highly reliable efficiency, compactness, and stable temperature dependence. Multilayer ceramic capacitors are of two types: Class I and Class II. Class I ceramic capacitors have excellent stability and linear characteristics. Class II capacitors work better than Class I ceramic capacitors but deliver low accuracy. However, there has been a lack of supply of MLCCs due to growing demand in automotive electronics and IoT devices.

Smartphone manufacturers are concentrating on optimizing the user experience by improving the battery's efficiency, creating a need for multilayer ceramic capacitors. In addition, the growth of electric vehicles due to growing government initiatives and the need for optimum power batteries is expected to increase the market for high-end multi-layer ceramic capacitors. Besides consumer and automotive electronics, MLCCs are in high demand in medical electronics and industrial equipment. In high-frequency applications, MLCCs are used in telecommunication networks, cellular base stations, GPS devices, and TV set-top boxes.

 

Regional Analysis

The geographical analysis of the global multilayer ceramic capacitor market has been done for North America, Europe, Asia Pacific, and the rest of the world (including the Middle East, Africa, and South America). 

Among the regions listed, Asia Pacific is expected to lead the market for multilayer ceramic capacitor. China, Japan, South Korea, and Taiwan are some of the world's leading electronics manufacturers, leading to increased demand for multilayer ceramic capacitors in the region. China, the largest manufacturer and exporter of consumer electronics is generating enormous opportunities for the multilayer ceramic capacitor industry's growth. North America is also expected to see a massive demand for multilayer ceramic capacitor technology. In contrast, Europe is expected to rise at a substantial CAGR during the forecast period due to the growing demand for automotive components.

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1 Executive Summary

2 Scope Of The Report

2.1 Market Definition

2.2 Scope Of The Study

2.3 Research Objectives

2.4 Markets Structure

3 Market Research Methodology

3.1 Research Process

3.2 Secondary Research

3.3 Primary Research

3.4 Forecast Model

4 Market Landscape

4.1 Porter’s Five Forces Analysis

4.1.1 Threat Of New Entrants

4.1.2 Bargaining Power Of Buyers

4.1.3 Threat Of Substitutes

4.1.4 Segment Rivalry

4.1.5 Bargaining Power Of Suppliers

4.2 Value Chain/Supply Chain Of MLCC 

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SiC Power Semiconductor Market 2020 by Current & Upcoming Trends

 Market Analysis  

The silicon carbide (SiC) power semiconductors market is projected to touch USD 1,359.2 million at a healthy 26.3% CAGR between 2018- 2023, states the recent Market Research Future (MRFR) analysis. Silicon carbide, simply put, is a semiconductor that is made by the combination of carbon and silicon. This has a certain level of hardness that is akin to a diamond that allows SiC semiconductors to function in extreme conditions.  

Various factors are propelling the global SiC power semiconductor market share. According to the recent MRFR report, such factors include growing demand for power electronics across different industry verticals like defense, medical, and aerospace, rise in the number of modern applications that need SiC power devices, the growing need for power efficiency in industrial applications and automotive electronics, and increasing number of charging infrastructure, renewable power, and rail traction.  

On the contrary, high wafer cost needed to produce silicon carbide-based semiconductors, challenges related to designing, and the impact of the on-going COVID-19 pandemic are factors that may limit the global SiC power semiconductor market growth over the forecast period. 

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Regional Analysis  

By region, the global silicon carbide power semiconductors market covers the growth opportunities and recent trends across Europe, North America, the Asia Pacific (APAC), & the Rest of the World (RoW). Among these, the APAC region will spearhead the market over the forecast period. Expansion of LTE and 4G network, the proliferation of cellular base station and RF, increase in energy efficiency projects, favorable initiatives by the government to develop solar power, and massive investments from key players are adding to the SiC power semiconductor market growth in the region.  

The global SiC power semiconductor market in Europe is predicted to hold the second-largest share over the forecast period. Substantial demand from the automotive industry, booming automotive industry, and the presence of top players are adding to the global SiC power semiconductor market growth in the region. Germany holds the utmost share in the market.  

The global SiC power semiconductor market in North America is predicted to have healthy growth over the forecast period. High investments on research and development activities, coupled with the presence of top silicon carbide manufacturers, are adding to the global SiC power semiconductor market growth in the region.  

The global SiC power semiconductor market in the Rest of the World is predicted to have sound growth over the forecast period. 

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Market Segmentation 

The MRFR report highlights an inclusive segmental analysis of the global SiC power semiconductor market based on end user, application, wafer size, and device. 

By device, the global SiC power semiconductor market is segmented into SiC bare die devices and SiC discrete devices. The SiC discrete devices are again segmented into module, diode, and MOSFET. Of these, the module segment will lead the market over the forecast period.  

By wafer size, the global SiC power semiconductor market is segmented into 6-inch, 4-inch, and 2-inch. Of these, the 4-inch segment will dominate the market over the forecast period.  

By application, the global SiC power semiconductor market is segmented into railway traction, industrial motor drives, EV motors, power grids, power supply and inverter, RF devices and cellular base stations, and others. Of these, the power supply and inverter segment will have a major share in the market over the forecast period.  

By end user, the global SiC power semiconductor market is segmented into electronics, industrial, automotive, energy and power, telecommunication, and others. Of these, the automotive segment will command the largest share in the market over the forecast period.  

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Key Players  

Eminent contenders profiled in the global SiC power semiconductor market report include Infineon Technologies AG, ON Semiconductor, Cree Inc., STMicroelectronics NV, Mitsubishi Electric Corporation, and others.  

1 Executive Summary

1.1 Prologue 15

2 Market Introduction

2.1 Definition 18

2.2 Scope Of The Study 18

2.3 List Of Assumptions 19

2.4 Market Structure 19

3 Research Methodology

3.1 Research Process 21

3.2 Forecast Model 25

4 Market Dynamics

4.1 Introduction 27

4.2 Drivers 28

4.2.1 Increase In Demand For SiC Power Semiconductor Due To Advantages Such As High Thermal Conductivity 28

4.2.2 Increase In Demand Of Power Electronics Modules Across Various Industry Verticals 28

4.2.3 Rise In Installation Of Solar Photovoltaic Panels For Electricity Generation 28

4.2.4 Drivers Impact Analysis 29

4.3 Restraints 29

4.3.1 Design Complexity And High Cost Of SiC MOSFET 29

4.3.2 Availability Of GaN As A Substitute For SiC 29

4.3.3 Restraints Impact Analysis 30

4.4 Opportunities 30

4.4.1 Introduction Of Fifth-Generation (5G) Mobile Communication 30

4.4.2 Rising Adoption Of Electric Vehicles 31

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Stretchable Electronics Market Analysis by Service Type, by Vertical.

 Stretchable Electronics Market Overview

The global stretchable electronics market is expected to reach USD 2,981.2 million by 2026 at a CAGR of 25.29% during the forecast period. Market Research Future (MRFR), in its report, envelops segmentation and drivers to provide a better glimpse of the market in the coming years. The increasing adoption of portable electronics and wearable devices by individuals has created a huge demand for the miniaturization of electronic components. Device miniaturization is done considering all the input/output ports and various other components in the assembly that are vital to the end-product. Miniaturization has increased the demand for integrated power for application-specific processors and subsystems.

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Segmental Analysis

The global stretchable electronics market has been segmented based on component, Applications, and region.

Based on applications, the global market has been segmented into Consumer Electronics, Automotive, Aerospace & Defense, Healthcare, and others. The healthcare segment accounted for the largest market share of 35.4% in 2019, with a market value of USD 224.8 million; it is expected to register a highest CAGR during the forecast period. Measuring the quality of human health and well-being is one of the key growth areas in society. Nowadays, these measurements are done using sensory devices. These devices are integrated with stretchable electronics, which are attached to the human body as a patch or integrated into garments. Consumer electronics devices are categorized into mobile devices, wearable devices, and others. Wearable devices have the most prominent product of stretchable electronics. Stretchable electronics have applications in wearable electronics such as clothing, RFID, heaters, electrodes, and sensors. In the automotive industry, for applications in electric vehicles for land, water, and air, manufacturers are focusing on three-dimensional stretchability. Three-dimensional stretchability is required for producing rigid products by stretching them to form during the plastic molding process. Stretchable electronics are used in sensors and wearables, batteries, military equipment, and much more in the aerospace & defense industry. Information and tracking in contested environments are foundational to decision making and force projection. The scope of the others segment of the report includes the textile, energy, packaging, and logistics. E-textiles are products that involve both electronic and textile components.

The global stretchable electronics market, by region, has been segmented into North America, Europe, Asia-Pacific, the Middle East & Africa, and Central & South America. North America accounted for the largest market share of 38.0% in 2019, with a market value of USD 241.7 million; the market is expected to register the highest CAGR of 27.47% during the forecast period. Europe was the second-largest market in 2018, valued at USD 177.5 million; the market is projected to exhibit a significant CAGR. North America dominates the Stretchable Electronics Market based on the region due to increasing demand for wearable devices in the healthcare sector. Stretchable electronics are being preferred by companies and research organizations in North America due to their various applications in robotic sensory skins, wearable communication devices, and bio-integrated devices. Europe is expected to witness substantial growth over the next few years, Several of the European Union’s Future and Emerging Technology (FET) Flagship projects are focused on developing stretchable or flexible electronics, which have applications in fast, flexible and strong consumer electronics such as electronic paper and bendable personal communications devices.  

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Competitive Analysis

In March 2020, Physical Optics Corporation and Ansys Streamline Avionics Development for U.S. Military Aircraft has done collaboration to develop avionics for U.S. military aircraft. Ansys SCADE Solutions for ARINC 661 Applications. This will enable POC to reduce development time and accelerate certification and integrating new functionality at a much lower cost and enabling a faster path to market.

In September 2019, Cambrios formed a strategic partnership with Winsky, a part of the CN Innovations conglomerate that is focused on touch display development and applications and owns core technologies that make it the industry leader. This partnership is to develop optimal solutions for electronic materials applications in new technology markets.

In September 2019, Cambrios partnered with Royole, a leader in flexible phones, creator of the world’s first mass-produced fully flexible display and foldable phone. Companies are aligned to fulfill the desire to perfect the technology and product experience for customers.

In October 2017, MC10 Inc. and University of Rochester collaborated and for the purpose of the study, researchers from the University of Rochester used BioStampRC system technology to assess motor systems in two nerve-related disorders Parkinson disease and Huntington disease. 

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Key Players

The key players of the global stretchable electronics market are PARC (U.S), Cambrios (U.S), PowerFilm (U.S), Koninklijke Philips N.V (Netherlands), Apple Inc, (U.S.), Adidas AG (Germany), 3M Company (U.S), Palo Alto Research Center Incorporated (US), DuPont (U.S), BodyMedia (U.S), Physical Optics Corporation (U.S) IDUN Technologies Ltd (Switzerland), and MC10 (U.S) among others.

1 EXECUTIVE SUMMARY

2 MARKET INTRODUCTION

2.1 OVERVIEW

2.2 SCOPE OF THE STUDY

2.3 RESEARCH OBJECTIVES

2.4 MARKET STRUCTURE

3 RESEARCH METHODOLOGY

4 MARKET DYNAMICS

4.1 OVERVIEW

4.2 DRIVERS

4.2.1 ADVANCEMENTS IN MATERIALS AND MATERIAL ASSEMBLY TECHNOLOGY

4.2.2 MINIATURIZATION OF ELECTRONICS COMPONENTS

4.3 RESTRAINT

4.3.1 TIME-CONSUMING AND LABORIOUS MANUFACTURING PROCESS OF STRETCHABLE ELECTRONICS

4.4 OPPORTUNITY

4.4.1 GROWING SMART SPORTSWEAR INDUSTRY

4.5 IMPACT ANALYSIS OF COVID-19

4.5.1 IMPACT ON SEMICONDUCTOR MANUFACTURERS

4.5.2 IMPACT ON COMPONENT MANUFACTURERS

4.5.3 IMPACT ON DEVICE MANUFACTURERS

4.5.4 IMPACT ON SUPPLY CHAIN DELAYS 

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Thursday, March 30, 2023

Semiconductor Production Equipment Market Future Insights, Market Revenue and Threat Forecast by 2030

 The semiconductor production equipment market is garnering substantial traction across the globe. The market growth is attributed to rapid industrialization and economic growth.  Besides, large technological advances in telemetry solutions and semiconductor products push the growth of the market.  Information and communication industries worldwide are creating a significant demand for semiconductor production equipment.  Moreover, rising usages of chips in smart meters, plug-in electric vehicles, solar panels, wind turbines, and others accelerate the market demand. In its recent analysis, Market Research Future (MRFR) asserts that the global semiconductor production equipment market valuation is poised to reach approx. USD 261.5 Billion by 2030, growing approximately at 9.30% CAGR during the assessment period (2022-2030). The rising trend of additive manufacturing (AM), 3D printing, and computer-controlled processes boosts market growth.

Semiconductors have transformed the patterns of generation, distribution, and consumption of energy across the industries. Additive manufacturing has changed the supply chain from the production of parts to higher performance using subtractive methods. Hence, innovative designs enable agile supply chains to adopt Industry 4.0 principles. Additionally, increasing R&D investments to develop new metal alloys designs and technologies.

Increasing uptake of GaAs technology in Field Effect Transistors (FET) and integrated circuits (ICs) for high velocity and high electric field applications pushes the growth of the market. On the other hand, the high manufacturing cost of semiconductor production equipment is a significant factor projected to impede the market growth. Nevertheless, the growing usage of semiconductor equipment in power amplifiers for transmitting high-speed signals, ultra-high radio frequency, and fast electronic switching applications would support the market growth throughout the forecast period.

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Global Semiconductor Manufacturing Equipment Market – Segmentations

The report is segmented into four dynamics;

By Equipment Type         : Front-End, Backend, and other equipments.

By Products                       : Probing Machines, Dicing Machine, Sliced Wafer Demounting, Wafer Edge Grinding Machine, Cleaning Machine, Polish Grinders, and others.

By Dimension                    : 2D, 3D, 5D, and others.

By Regions                                          :  Americas, Europe, APAC, and the Rest-of-the-World.

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Semiconductor Production Equipment Market - Competitive Landscape

Highly competitive, the global semiconductor production equipment market appears fragmented due to the presence of many players. To gain a larger competitive advantage, players incorporate strategic initiatives such as mergers & acquisitions, expansion, collaboration, and product/ technology launch.

These players invest substantially to transform the consumer and business landscape. Also, industry players make substantial R&D investments in developing the product and technology. To widen their reach t customers, they offer discount offers, such as the end of season sale offerings.

Semiconductor Production Equipment Market – Geographical Analysis

North America leads the global semiconductor production equipment market. The significant market share attributes to the presence of notable industry players producing advanced chips and technological advances required in the semiconductor industry.

Besides, the proliferation of semiconductor technologies such as GaN and SiC drives regional market growth.

Moreover, rising usages of optoelectronic, photovoltaic, and wireless communication devices boost the market demand in the region. The semiconductor production equipment market in North America is projected to retain its dominance throughout the forecast period.

The semiconductor production equipment market in Europe is growing rapidly. The market is driven by the spurring growth in the automotive, solar cells, electronics, and aerospace & defense industries in the region. Additionally, the need for reliable and clean energy production in various European countries influences market growth, driving the renewables industry. The UK and Germany are well-established markets for semiconductor production equipments in the region. The Europe semiconductor production equipment market is expected to witness rapid growth in the review period.

The Asia Pacific semiconductor production equipment market demonstrates steady growth. Factors such as the increasing numbers of smartphone users and the rising demand for advances in computers, laptops, and smartphones foster regional market growth. Besides, the burgeoning electronics sector in the region creates substantial market demand. Moreover, growing government support and funding by industry players propel market growth.

Japan, China, South Korea, and India are key markets for semiconductor production equipment in the region, growing continually with an impressive CAGR. The APAC semiconductor production equipment market is predicted to demonstrate moderate growth during the forecast period.

Major Players:

Players leading the semiconductor production equipment market include Micron Technology Inc. (US), Qualcomm Technologies, Inc. (US), Intel Corporation (US), AlsilMaterial (US), Applied Materials Inc. (US), Atecom Technology Co., Ltd (Taiwan), LAM RESEARCH Corporation (US), Tokyo Electron Limited (Japan), KLA-Tencor Corporation (US), Teradyne Inc. (US), Screen Holdings Co., Ltd (Japan), Samsung Group (South Korea), and ASML Holdings NV (Netherlands), among others.

Industry/ Innovation/Related News

December 02, 2020 ---- Five industry associations and four industry-related nonprofit organizations in Taiwan announced signing a memorandum of understanding (MoU) to drive the localization of semiconductor equipment production. In the wake of COVID-19 and the US-China trade dispute, international businesses would change where and how they make their products. It is time to step up the output of semiconductor manufacturing equipment. 

Taiwan's semiconductor industry is overwhelmingly dependent on imported production equipment, but 90 percent of our semiconductor manufacturing equipment is imported. Hence it was important to promote the localization of semiconductor equipment production.

The trade associations in the MoU were Semiconductor Equipment & Materials International (SEMI), the Taiwan Electronic Equipment Industry Association, and the Photonics Industry & Technology Development Association. Other nonprofit organizations were The Taiwan Automation Intelligence & Robotics Association, the Metal Industries Research & Development Center, and the Precision Machinery Research & Development Center.

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1 MARKET INTRODUCTION

1.1 INTRODUCTION

1.2 SCOPE OF STUDY

1.2.1 RESEARCH OBJECTIVE

1.2.2 ASSUMPTIONS

1.2.3 LIMITATIONS

1.3 MARKET STRUCTURE:

1.3.1 GLOBAL SEMICONDUCTOR PRODUCTION EQUIPMENT MARKET: BY TYPE

1.3.2 GLOBAL SEMICONDUCTOR PRODUCTION EQUIPMENT MARKET: BY PRODUCTS

1.3.3 GLOBAL SEMICONDUCTOR PRODUCTION EQUIPMENT MARKET: BY DIMENSION

1.3.4 GLOBAL SEMICONDUCTOR PRODUCTION EQUIPMENT MARKET: BY REGION

2 RESEARCH METHODOLOGY

2.1 RESEARCH

2.2 PRIMARY RESEARCH

2.3 SECONDARY RESEARCH

2.4 FORECAST MODEL

3 MARKET DYNAMICS

3.1 INTRODUCTION

3.2 MARKET DRIVERS

3.3 MARKET CHALLENGES

3.4 MARKET OPPORTUNITIES

4 EXECUTIVE SUMMARY

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Power Semiconductors Market Developments, Company Overview, Competitive Landscape, Demand and Trends by Forecast to 2030

 Power Semiconductors Market Overview

The power semiconductor market is witnessing major growth during the ongoing forecast period of 2022-2030. The power semiconductor market is expected to grow USD 97.2 billion at a CAGR rate of 6.30% during the period owing to the growing incorporation of the advanced and wide adoption of technology especially in various consumer electronic products like smartphones and smartwatches, alongside others like IoT devices. As per the power semiconductors market research report, the global market for power semiconductors is anticipated to grow rapidly. As per analysts, the growth in the renewable energy sector along with increasing urbanization will drive the market growth throughout the forecast period. The power semiconductors market research report provides an in-depth analysis of the global power semiconductors market and its application, materials, region, and components segments. The fluctuations in the prices of raw material as well as environment related concerns are the factors which could affect the power semiconductors market growth during the forecast period 2017 to 2023. The power semiconductors market research report by expert analysts is intended to help companies in the power semiconductors market.

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Regional Overview

North America, Europe, Asia Pacific and the rest of the world regional market for power semiconductors are primarily covered in the global power semiconductors market research report. The report also covers country-level markets spread across North America – the United States, Canada, and Mexico. In South America – Brazil and other country-level power semiconductors markets are covered in the report. In Asia-Pacific (APAC) region, the country-level power semiconductors markets covered are China, India, Japan, and others. The power semiconductors market research report also covers the regional market for power semiconductors spread across European countries including the United Kingdom, France, Italy, Spain, and Germany, etc. The power semiconductors market research report further explores other regional markets from the rest of the world including power semiconductors markets of the Middle East and Africa. As per the global power semiconductors market research report.

Market Segmentation

The global power semiconductors market has been segmented based on application, materials, region, and components. On the basis of material, the market for power semiconductors is segmented based on silicon carbide, GaN, silicon. Additionally, the market on the basis of application, is segmented into aerospace, automotive, consumer electronics, military, and industrial. The global market for power semiconductors is also covered based on the components segment which is further split into diode, inverter, power MOSFET, thyristor, and rectifier.

Key influences such as unorganized distribution channels could obstruct the power semiconductors market growth. However, as per the power semiconductors market research report, increasing demand across wind and solar power generation sectors as well as growing consumer electronics market will drive growth during the forecast period 2017 to 2023. These key growth factors will help support the power semiconductors market growth at a high CAGR. The segmental analysis of application, materials, region, and components segments as well as regional market analysis has been presented in the global power semiconductors market research report. Analysts studying the power semiconductors market have presented projections in the power semiconductors market research report assisting power semiconductors market-based companies in numerous ways. The power semiconductors market research report offers crucial details about the power semiconductors market based on the data and forecasts till 2023.

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Industry News

As part of its efforts to achieve a low-carbon society, Denso Corporation started mass production of its new booster power module with high-quality semiconduction silicon carbide (SiC) power semiconductors. This product is being used in the latest Mirai model from Toyota, the second generation that entered the market on 9 December 2020. For the application of SiC power semiconductors (diodes and transistors) to vehicle applications, Denso says it has developed its RE VOSIC technology. SiC is a half conductor material that is superior to traditional silicone in high-temperature, high frequency and high-voltage settings (Si).

Competitive Landscape

The rise in domestic income in emerging markets and the rise in the availability of wide band gap semiconductor products are expected to accelerate the power semiconductors market growth worldwide. The global power semiconductors market is set to witness challenges including limited growth, however, companies in the power semiconductors market will sustain the growth rate. The power semiconductors market research report also offers company profiles of key players operating in the power semiconductors market around the world. Additionally, the global power semiconductors market report provides detailed analysis of the market based on primary and secondary research data collected from the power semiconductors market’s key decision makers as well as stakeholders. The power semiconductors market research report covers all such factors assisting companies in the power semiconductors market to improve their plans and portfolio.

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Major Players:

Players leading the power semiconductors include Texas instruments Inc. (US), Infineon Technologies AG (Germany), ST Microelectronics (Switzerland), NXP Semiconductor (Netherlands), Qualcomm Inc.(US), Fairchild Semiconductor (US), Broadcom Limited (US), Renesas electronic corporation (Japan), Mitsubishi Electric Corporation (Japan), and Toshiba Corporation (Japan), among others.

TABLE OF CONTENTS

1 Executive Summary

2 Scope Of The Report

2.1 Market Definition

2.2 Scope Of The Study

2.2.1 Research Objectives

2.2.2 Assumptions & Limitations

2.3 Markets Structure

3 Market Research Methodology

3.1 Research Process

3.2 Secondary Research

3.3 Primary Research

3.4 Forecast Model

4 Market Landscape

4.1 Five Forces Analysis

4.1.1 Threat Of New Entrants

4.1.2 Bargaining Power Of Buyers

4.1.3 Threat Of Substitutes

4.1.4 Segment Rivalry

4.2 Value Chain/Supply Chain Of Global Power Semiconductors Market

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GaN Semiconductor Devices Market Competitive Analysis, Research Methodology, Rapid Growth and Fast Forward Research till 2030

 GaN Semiconductor Devices Market Analysis 

The global RF GaN semiconductor device market size will touch USD 29.6 billion at a 5.8% CAGR in the forecast period (2022-2030), states the latest Market Research Future report.

RF GaN Semiconductor Market Drivers/ RF GaN Semiconductor Market Trends 

Rising Use of RF GaN Semiconductor Device in Defense Sector to Boost Market Growth 

The rising use of such devices in the defense sector will boost market growth over the forecast period for the growing need for increased bandwidth as well as performance reality in electronic warfare, radars, radio communications, and others. SiC is the right choice for manufacturing bullet-proof jackets owing to its strength and hardness. ICs that are GaN-based are used in radars for effective navigation along with real-time air traffic control. Further, GaN can provide higher operating frequencies for terrestrial radios, military jammers, and radar communication. The growing adoption of wideband GaN power transistors from different defense forces is fuelling market growth.

GaN Semiconductor Devices Market Key Players

Eminent players profiled in the global RF GaN semiconductor device market report include Mitsubishi Electric Corporation (Japan), Sumitomo Electric Industries, Ltd (Japan), Raytheon Company (US), Robert Bosch GmbH (Germany), STMicroelectronics (France), Hitachi, Ltd (Japan), Toshiba Corporation (Japan), Infineon Technologies AG (Germany), Panasonic Corporation (Japan), Microchip Technology (US), Renesas Electronics Corporation (Japan), Aethercomm Inc.(US), Cree, Inc. (US), Analog Devices Inc.(US), NXP Semiconductor (Netherlands), ROHM Semiconductors (Japan), Qorvo Inc. (US), among others.

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Opportunities 

Potential Usage of 5G Infrastructure to Provide Robust Opportunities 

The usage of gallium nitride in 5G infrastructure will offer the market with robust opportunities in the forecast period. 5G replaced 4G in terms of traffic capacity, data rates, and energy efficiency. Commercially the 5G technology will be launched in 2021. It will offer different perks such as effective communication network with minimum cost. Technology giants such as AT&T and Nokia are participating in the research and development initiative to build the 5G technology across the United States.

GaN Semiconductor Devices Market Challenges 

Designing Complexities to act as Market Challenge

Various complexities related to designing the GaN devices’ electrical layout may act as a market challenge in the forecast period. Besides, the COVID-19 impact may also impede market growth. 

GaN Semiconductor Devices Market Key Restraints 

High Cost of Material to act as Market Restraint 

The high cost of fabrication and material may act as a market restraint in the forecast period.

GaN Semiconductor Devices Market Regional Analysis 

North America to Sway RF GaN Semiconductor Device Market 

North America will sway the market over the forecast period. Rising investments by organizations concerning 5G technology, the presence of various largest multinational corporations that offer devices for end users such as military and defense, electronics, IT and telecom, and others, increasing investments by the aerospace and defense sector in R&D, the government in the region promoting the adoption of energy efficient devices and offering contacts to different companies, increasing use of GaN in consumer electronic devices including personal computers, televisions, laptops, tablet, PCs, and mobile phones for its efficiency, and different manufacturers emphasizing on innovating new products which are low cost and power efficient are adding to the RF GaN semiconductor devices market value in the region. 

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GaN Semiconductor Devices Market Segmentation 

The global RF GaN semiconductor device market is segmented based on end user, applications, and material. 

 

  • By material, the RF GaN semiconductor device market is segmented into GaN-On-Silicon, GaN-On-Diamond, and GaN-On-Sic. 
  • By application, the RF GaN semiconductor device market is segmented into satellite communication, wireless infrastructure, PV inverter, power storage, and others. 
  • By end user, the RF GaN semiconductor device market is segmented into IT and telecom, automotive, aerospace and defense, consumer electronics, and others. 

 

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Solid State Drive (SSD) Market Competitor Landscape, Key Players Analysis, Trends and Forecast by 2030

  

The solid state drive (SSD) market is growing rapidly, mainly due to augmenting demand for highly scalable memory devices. Besides, the increasing adoption of SSD to reduce storage costs per gigabyte while enhancing storage performance boosts the market size. Increasing needs for advanced data tiering and distributed storage solutions impact the market growth positively. 

With the rising uses of connected & wearable devices, the market value is projected to accelerate during the next few years. According to Market Research Future (MRFR), the global solid state drive market valuation is estimated to grow at a significant CAGR throughout the review period (2022-2030). Technological advances in storage technologies accelerate the growth of the market.  

Many organizations now prefer to use flash-based storage systems as secondary storage due to their storage stability and the enhanced backup and data recovery performance. Moreover, rising usages of the internet and smart connected devices foster the solid state drive industry, generating the data. The increasing demand for solid state drive positively impacts the market growth.

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Solid State Drive Market- Segments

The report is segmented into interfaces, form factors, storage, technologies, end-users, and regions. The interface segment is sub-segmented into SATA, SAS, PCIe, and others. The form factor segment is sub-segmented into 8”/2.5”, 5”, 2”, 2 (SFF 8639), FHHL, and HHHL. 

The technology segment is sub-segmented into SLC, MLC planar, MLC 3D, TLC planar, TLC 3D, and others. The storage segment is sub-segmented into under 500 GB, 500 GB–1 TB, 1 TB – 2 TB, above 2 TB. The end-user segment is sub-segmented into enterprises, client, industrial, automotive, and others. 

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Regional Analysis:

The essential world Solid State Drive market is projected to grow at an essential rate during the assessed period from 2018 to 2023. The North American locale is projected to lead the SSD market because of rising interest for present-day and proficient figuring frameworks, essential reception of distributed computing, and heightening enormous information examination. Asia-Pacific is the major and greatest market attributable to the more popularity from nations like China, Taiwan, India, and Japan. The essential market in this area is shown by the expanding utilization of distributed computing in associations and the improvement of server farms.

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TABLE OF CONTENTS

1 Executive Summary

2 Scope Of The Report

2.1 Market Definition

2.2 Scope Of The Study

2.2.1 Research Objectives

2.2.2 Assumptions & Limitations

2.3 Markets Structure

3 Market Research Methodology

3.1 Research Process

3.2 Secondary Research

3.3 Primary Research

3.4 Forecast Model

4 Market Landscape

4.1 Porter’s Five Forces Analysis

4.1.1 Threat Of New Entrants

4.1.2 Bargaining Power Of Buyers

4.1.3 Threat Of Substitutes

4.1.4 Segment Rivalry

4.2 Value Chain/Supply Chain Of Global Solid-State Drive Market

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Tunnel Sensor Market Business Strategy, Research Analysis on Competitive landscape and Key Vendors 2030

 Tunnel Sensor Market Synopsis

Market Research Future (MRFR), in its latest report on the Global Tunnel Sensor Market 2020, details factors that can boost and restrain the market rise. In addition, a complete analysis on the COVID 19 impact on the tunnel sensor market is provided with the report. MRFR study shows that the tunnel sensor market can rise at 6.5% CAGR across the review period. In 2018, the tunnel sensor market value was recorded at USD 3,986.7 Mn. On the conclusion of the review period, the tunnel sensor market is expected to touch USD 6,074.8 Mn.

The Tunnel Sensor Market refers to the market for sensors that are specifically designed and used for monitoring and controlling various parameters within tunnels, such as air quality, temperature, humidity, and visibility. These sensors are used in various types of tunnels, including road tunnels, railway tunnels, and metro tunnels, among others.

The demand for tunnel sensors has been growing rapidly in recent years, driven by several factors, including increasing government investments in infrastructure projects, growing concerns over air pollution and traffic congestion, and the need for efficient and safe operation of tunnels. In addition, advancements in sensor technology, such as the development of wireless and remote sensors, have also contributed to the growth of the tunnel sensor market.

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The rise in construction activities and increase in tunnel projects are chief factors that are expected to boost the expansion of the tunnel sensor market through the review period. The need for high precision in measuring the concentration of different gases and maintain the air quality and proper ventilation inside the tunnel is creating the demand for tunnel sensors, which can support the expansion of the market across the review period. The availability of modern technologies that support activities of tunnel sensors can impel the tunnel sensor market rise through the review period.

Tunnel Sensor Market Key Players

Geonica (Spain), CODEL International Ltd (UK), SICK AG (Germany), Ecotech (Australia), Altech Corporation (US), DURAG GROUP (Germany), PCB Piezotronics, Inc. (US), Advance Technologies Asia (ATA) (Malaysia), Tunnel Sensors Ltd (UK), SAGE Automation (Australia), and Bristol Industrial & Research Associates Ltd (UK) are some notable companies operating in the tunnel sensor market, listed by MRFR. The shift in the focus of these players in new launches and diversification of existing product portfolio can favor the market.

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Tunnel Sensor Market Segmentation

The segment analysis of the global tunnel sensor market is done by services, solution, application, and connectivity.

The solution based segments of the global tunnel sensor market are air flow monitoring, visibility monitoring, filter monitoring, air quality monitoring, and fire monitoring, and others.

The services based tunnel sensor market segments are maintenance services, installation services, and consulting services.

The connectivity based segments of the global tunnel sensor market are wireless and wired.

The application based, the global tunnel sensor market segments are rail tunnels, road tunnels, and others. The rise in the utility of rail tunnels can support the market expansion.

Regional Analysis

The global market for tunnel sensor is estimated to grow at a staggering rate during the forecast period from 2019 to 2025. The geographic analysis of the tunnel sensor market has been conducted for North America, Europe, Asia-Pacific, the Middle East & Africa, and Central & South America.

In APAC, the rise in development of tunnel facilities to boost connectivity of railways and roads is likely to support the expansion of the tunnel sensor market through the analysis period. The growing concern to prevent health and occupational hazards while constructing of using tunnels through mountains or underground, to check poor ventilation, can support the expansion of the market through the review period. Similarly, in North America and Europe, the rise in the need for safety measure to prevent the accumulation of toxic the tunnels can push the expansion of tunnel sensor market in these regions. Robust technical infrastructure in EU and America can support the expansion of the market across the study period. The surge in the demand for visibility maintenance across tunnels can fuel the growth of the tunnel sensor market in the US. In European region, the high rate of adoption tunnel sensors to track monitor vehicle temperatures for the prevention of road accidents can support the expansion of the market in the analysis period.

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Ultrasonic Sensor Market Key Vendors Analysis, Import & Export, Revenue by Forecast to 2030

 The global ultrasonic sensor market is growing at a rapid pace, witnessing increasing industrial applications. Ultrasonic sensors find extensive applications in the automotive sectors globally. Increasing demand for efficient advanced driver assistance systems (ADAS), allowing drivers to move safely and conveniently, superbly substantiates the global ultrasonic sensor market share.

Lately, ultrasonic sensors have started gaining huge market prominence accounting for governmental approaches towards automobile, driver, and passenger safety. Besides, rapid advances in sensing technologies, alongside the increasing adoption of ultrasonic sensing for devices monitoring social distancing, influence the growth of the market. Ultrasonic sensors allow accessibility and availability of a variety of automatic devices.

The ultrasonic sensor market refers to the industry that produces and sells ultrasonic sensors, which are devices that use sound waves to detect the presence and proximity of objects. Ultrasonic sensors emit high-frequency sound waves that bounce off objects and return to the sensor, allowing the sensor to measure the distance and location of the object.

The market for ultrasonic sensors has been growing in recent years, driven by increasing demand from various industries such as automotive, healthcare, industrial automation, and consumer electronics. Ultrasonic sensors are used in a wide range of applications, including obstacle detection, level measurement, flow rate measurement, and distance measurement.

Ultrasonic devices typically replace infrared (IR) sensing for precise range measurement, accurate positioning, presence detection, and collision avoidance. Therefore, ultrasonics is increasingly used to enhance precision in devices measuring the resolution and accuracy of the location. Additionally, growing uses of ultrasonics in distancing technologies, ultrasonic range-finding and tracking methods foster the market growth.

Resultantly, the ultrasonic sensor market is expected to garner exponential accruals and demand in the years to come. According to Market Research Future (MRFR), the global ultrasonic sensor market is poised to reach a valuation of USD 689.1 million by 2023, registering a 12.3% CAGR throughout the forecast period (2018-2023). Rising R&D investments by key market players accelerate the ultrasonic sensor market share.

Additionally, the rising adoption of robotics in various sectors, including healthcare, logistics, manufacturing, and others, positively impacts market growth. The demand for ultrasonic sensors from medical sectors is increasing as these sensors help medical devices and instruments offer risk-free operations, substituting radiography solutions and piezoelectric sensors.

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Major Market Players

Players leading the ultrasonic sensor market include Pepperl+Fuchs GmbH (Germany), Siemens AG (Germany), Honeywell International, Inc (US)., Rockwell Automation, Inc (US), Murata Manufacturing Co. Ltd (Japan), Robert Bosch GmbH (Germany), Endress+Hauser (Switzerland), Schneider Electric SE (France), Baumer Ltd (Italy), MaxBotix Inc (US), and Omron Corporation (Japan), among others. 

Global Ultrasonic Sensor Market- Segments

The ultrasonic sensor market report is segmented into product, application, and region.  The product segment is sub-segmented into ultrasonic through-beam sensor, ultrasonic proximity sensor, ultrasonic retro-reflective sensor, and others. The application segment is sub-segmented into anti-collision detection, distance measurement, liquid level measurement, object detection, and others. By regions, the market is sub-segmented into Asia Pacific, Americas, Europe, and rest-of-the-world.

Global Ultrasonic Sensor Market-Regional Analysis

Europe and APAC dominate the global ultrasonic sensor market, accounting for sizable market shares globally. Rising adoption of automation for efficient manufacturing and improved communication further increases the region’s market size, improving the flexibility in manufacturing processes.

Moreover, increasing smart city projects in a number of APAC and European countries boost the size of the market. China and Germany account for sizable market shares due to the high presence of ultrasonic sensor manufacturing companies. These countries also export ultrasonic sensors for different applications across the globe.

North America also holds a substantial share in the ultrasonic sensor market. The region is expected to witness rapid growth in the recent future, attributing to increasing investments for the production of sensors and expansion by key ultrasonic sensor manufacturers. Additionally, the increasing application of ultrasonic sensors in advanced driver assistance systems (ADAS) and industrial measurement devices contributes to ultrasonic sensor market growth.

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Global Ultrasonic Sensor Market- Competitive Analysis

Fiercely competitive, the ultrasonic sensor market appears fragmented, with several large and small forming a competitive landscape. These players adopt strategic approaches such as mergers & acquisitions, collaboration, expansion, and new product/technology launches to gain a substantial market share. 

The competitive nature of this market is expected to intensify further as more products enter the mass market. New product launches and improvements are inevitable in the wake of government regulations and increasing consumer demand for vehicle safety and advanced comfort features. 

Industry/Innovation/ Related News: 

Jan 12, 2021 – Qualcomm (the US), a leading multinational semiconductor company, launched the 3D Sonic Sensor Gen 2 ultrasonic fingerprint reader. The latest version of Qualcomm’s ultrasonic in-display fingerprint sensor dubs 3D sonic sensor gen 2.

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1 Executive Summary

2 Scope Of The Report

2.1 Market Definition

2.2 Scope Of The Study

2.3 Research Objectives

2.4 Markets Structure

3 Research Methodology

4 Market Landscape

4.1 Porter’s Five Forces Analysis

4.1.1 Threat Of New Entrants

4.1.2 Bargaining Power Of Buyers

4.1.3 Threat Of Substitutes

4.1.4 Segment Rivalry

4.1.5 Bargaining Power Of Suppliers

4.2 Value Chain/Supply Chain Of Ultrasonic Sensors

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Human Machine Interface Market Analysis, Segmentation, Business Revenue Forecast and Future Plans

Globally, the size of Human Machine Interface Market is set to grow at a CAGR of 4.80% from a value of USD 3.71 Billion in 2020 to hit USD ...