Global Semiconductor Market by Material Type (Silicon, Germanium, Gallium Arsenide, Silicon Carbide, Gallium Nitride, Gallium Phosphide and Others), By Components(Analog IC, Sensors, Memory Devices, Lighting Devices, Discrete Power Devices and Others), By Process (Water Production, Wafer Fabrication, Doping, Masking, Etching and Thermal Oxidation), By End-User Industry(Networking & Communication, Energy, Automotive, Computing, Consumer Electronic, Sports & Fitness, Mobile Accessories, Gaming, Healthcare and Others), and By Region (North America, Europe, Asia Pacific, South America, and Middle East & Africa)

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SPER Market Research


Global Semiconductor Market

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Global Semiconductor Market by Material Type (Silicon, Germanium, Gallium Arsenide, Silicon Carbide, Gallium Nitride, Gallium Phosphide and Others), By Components(Analog IC, Sensors, Memory Devices, Lighting Devices, Discrete Power Devices and Others), By Process (Water Production, Wafer Fabrication, Doping, Masking, Etching and Thermal Oxidation), By End-User Industry(Networking & Communication, Energy, Automotive, Computing, Consumer Electronic, Sports & Fitness, Mobile Accessories, Gaming, Healthcare and Others), and By Region (North America, Europe, Asia Pacific, South America, and Middle East & Africa)
Published: November-2020 Report Code: IACT2008 Available Format: Pages: 1-220
Category : Information & Communications Technology
“Global Semiconductor market estimated to drive by the growing demand for semiconductor in network & communication and automotive industry”



The global semiconductor market was valued at USD 487.3 Billion in 2018 and projected to reach USD 624.36 Billion in 2027, registering a CAGR of 3.49% from 2020-2027. It is owing to the surge in demand for electronic devices in countries such as China, India, Taiwan, and South Korea and the huge demand for electric vehicles and autonomous vehicles in developing countries. With increasing sales of smartphones and tablets as key factors expected to propel the growth of the global semiconductor market size in the forecast timeline. Additionally, major factors for the upsurge in demand for semiconductor content in cars, such as the growing use of electronic systems in conventional cars like improved safety systems and consumer electronics, particularly in the high-end segments, and the emergence of new technologies within the drivetrain, namely electric and hybrid cars. These vital factors anticipated boosting the global semiconductor in future periods. Moreover, the growth in the energy sector, such as the smart grid concept and smart metering, will augment the demand for semiconductors in the energy sector.


Furthermore, the commercialization of artificial intelligence, adoption of the Internet of Things, and 5G in developed countries like China and South Korea will boom the growth of the global semiconductor market share in the next few years.

Material Type Overview in the Global Semiconductor Market
Based on material type, the global semiconductor market classified into Silicon, Germanium, Gallium Arsenide, Silicon Carbide, Gallium Nitride, Gallium Phosphide, and Others. The Silicon segment witnessed a higher revenue share in 2019 and likely to lead the semiconductor market by 2027. It is owing to it used for the production of ICs and electronic components. Additionally, it possesses a moderate energy bandgap of 1.12eV at 0 K, and it can conduct electricity under some conditions and acts as an insulator.

Components Overview in the Global Semiconductor market
Based on components, the global semiconductor market segregated into Analog IC, Sensors, Memory Devices, Lighting Devices, Discrete Power Devices, and Others. The sensors segment will be the fastest-growing segment during the forecast periods attributable to the sensors is demand in the automotive and communication & network industry. It is used in ADAS, powertrain, safety, EV/HEV, instrument cluster, and infotainment.

Process Overview in the Global Semiconductor Market
Based on the process, the global semiconductor market classified into Water Production, Wafer Fabrication, Doping, Masking, Etching, and Thermal Oxidation. The Wafer Fabrication segment exhibited a significant share in 2019. It is projected to lead the semiconductor market as it is used for the production of IC, electronic circuits with components such as transistors, CPU, LEDs, etc.

End-User Industry Overview in the Global Semiconductor Market
Based on the end-user industry, the global semiconductor market categorized into networking & communication, energy, automotive, computing, consumer electronics, sports & fitness, mobile accessories, gaming, healthcare, and others. The automotive segment will be the fastest-growing segment in the forecast period. It is attributable to semiconductors used as devices in cars, such as MCUs, sensors, memory, etc. Additionally, technological advancements such as AI, electric vehicles (EVs), autonomous driving, energy storage, and cybersecurity are influencing the semiconductor industry in the future periods.

Regional Overview in the Global Semiconductor Market
By geography, the Global semiconductor Market segmented into North America, Europe, Asia Pacific, South America, and Middle East & Africa. The Asia Pacific will be the fastest-growing segment in the forecast period 2020-2027 owing to supportive government policy, rise in demand for semiconductors from every industry as a result of automation and error-free productivity. 

Global Semiconductor Market: Competitive Landscape
Key players companies in the Global Semiconductor Market
  • Qualcomm
  • Samsung Electronics
  • Toshiba Corporation
  • Micron Technology
  • Intel Corporation
  • Texas Instruments
  • SK Hynix Inc.
  • NXP
  • MediaTek
  • Western Digital
  • STMicroelectronics
  • Infineon
  • Sony
  • Analog Devices
  • Other Prominent Players
1. Research Strategic Development
1.1. Market Modelling
1.2. Product Analysis
1.3. Market Trend and Economic Factors Analysis
1.4. Market Segmental Analysis
1.5. Geographical Mapping
1.6. Country Wise Segregation

2. Research Methodology
2.1. Identification of Target Market
2.2. Data Acquisition 
2.3. Refining of Data/ Data Transformations
2.4. Data Validation through Primary Techniques
2.5. Exploratory Data Analysis
2.6. Graphical Techniques/Analysis
2.7. Quantitative Techniques/Analysis
2.8. Visual Result/Presentation 

3. Executive Summary

4. Market Insights
4.1. Supply Chain Analysis
4.2. Economic Factor Analysis 
4.2.1. Drivers
4.2.2. Trends
4.2.3. Opportunities
4.2.4. Challenges
4.3. Technological Landscape
4.4. Competitors & Product Analysis
4.5. Export-Import Analysis
4.6. Regulatory Framework
4.7. Company market share analysis, 2019
4.8. Porter’s Five forces analysis
4.9. New Investment Analysis
4.10. PESTEL Analysis

5. Global Semiconductor Market Overview
5.1. Market Size & Forecast, 2016-2027
5.1.1. Demand
5.1.1.1. By Value (USD Million)
5.2. Market Share & Forecast, 2016-2027
5.2.1. By Material Type
5.2.1.1. Silicon
5.2.1.2. Germanium
5.2.1.3. Gallium Arsenide
5.2.1.4. Silicon Carbide
5.2.1.5. Gallium Nitride
5.2.1.6. Gallium Phosphide
5.2.1.7. Others
5.2.2. By Components
5.2.2.1. Analog IC
5.2.2.2. Sensors
5.2.2.3. Memory Devices
5.2.2.4. Lighting Device
5.2.2.5. Discrete Power Devices
5.2.2.6. Others
5.2.3. By Process
5.2.3.1. Water Production
5.2.3.2. Wafer Fabrication
5.2.3.3. Doping, Masking
5.2.3.4. Etching
5.2.3.5. Thermal Oxidation
5.2.4. By End-User Industry
5.2.4.1. Networking & Communication
5.2.4.2. Energy
5.2.4.3. Automotive
5.2.4.4. Computing
5.2.4.5. Consumer Electronic
5.2.4.6. Sports & Fitness
5.2.4.7. Mobile Accessories
5.2.4.8. Gaming
5.2.4.9. Healthcare
5.2.4.10. Others 
5.2.5. By Region
5.2.5.1. North America
5.2.5.2. Europe
5.2.5.3. Asia Pacific
5.2.5.4. South America 
5.2.5.5. Middle East & Africa 

6. North America Semiconductor Market Overview
6.1. North America Semiconductor Market Size & Forecast, 2016-2027
6.1.1. Demand
6.1.1.1. By Value (USD Million)
6.2. North America Semiconductor Market Share & Forecast, 2016-2027
6.2.1. By Material Type
6.2.1.1. Silicon
6.2.1.2. Germanium
6.2.1.3. Gallium Arsenide
6.2.1.4. Silicon Carbide
6.2.1.5. Gallium Nitride
6.2.1.6. Gallium Phosphide
6.2.1.7. Others
6.2.2. By Components
6.2.2.1. Analog IC
6.2.2.2. Sensors
6.2.2.3. Memory Devices
6.2.2.4. Lighting Device
6.2.2.5. Discrete Power Devices
6.2.2.6. Others
6.2.3. By Process
6.2.3.1. Water Production
6.2.3.2. Wafer Fabrication
6.2.3.3. Doping, Masking
6.2.3.4. Etching
6.2.3.5. Thermal Oxidation
6.2.4. By End-User Industry
6.2.4.1. Networking & Communication
6.2.4.2. Energy
6.2.4.3. Automotive
6.2.4.4. Computing
6.2.4.5. Consumer Electronic
6.2.4.6. Sports & Fitness
6.2.4.7. Mobile Accessories
6.2.4.8. Gaming
6.2.4.9. Healthcare
6.2.4.10. Others 
6.2.5. By Country
6.2.5.1. US
6.2.5.2. Canada
6.2.5.3. Mexico
6.2.6. Manufacturer & Distributor List (Top 5)
6.2.7. Company Market Share (Top 3-5)
6.2.8. Economic Impact Study on North America Semiconductor Market 

7. Europe Semiconductor Market Overview
7.1. Europe Semiconductor Market Size & Forecast, 2016-2027
7.1.1. Demand
7.1.1.1. By Value (USD Million)
7.2. Europe Semiconductor Market Share & Forecast, 2016-2027
7.2.1. By Material Type
7.2.1.1. Silicon
7.2.1.2. Germanium
7.2.1.3. Gallium Arsenide
7.2.1.4. Silicon Carbide
7.2.1.5. Gallium Nitride
7.2.1.6. Gallium Phosphide
7.2.1.7. Others
7.2.2. By Components
7.2.2.1. Analog IC
7.2.2.2. Sensors
7.2.2.3. Memory Devices
7.2.2.4. Lighting Device
7.2.2.5. Discrete Power Devices
7.2.2.6. Others
7.2.3. By Process
7.2.3.1. Water Production
7.2.3.2. Wafer Fabrication
7.2.3.3. Doping, Masking
7.2.3.4. Etching
7.2.3.5. Thermal Oxidation
7.2.4. By End-User Industry
7.2.4.1. Networking & Communication
7.2.4.2. Energy
7.2.4.3. Automotive
7.2.4.4. Computing
7.2.4.5. Consumer Electronic
7.2.4.6. Sports & Fitness
7.2.4.7. Mobile Accessories
7.2.4.8. Gaming
7.2.4.9. Healthcare
7.2.4.10. Others 
7.2.5. By Country
7.2.5.1. Germany
7.2.5.2. UK
7.2.5.3. France
7.2.5.4. Italy
7.2.5.5. Rest of Europe
7.2.6. Manufacturer & Distributor List (Top 5)
7.2.7. Company Market Share (Top 3-5)
7.2.8. Economic Impact Study on Europe Semiconductor Market 

8. Asia Pacific Semiconductor Market Overview
8.1. Asia Pacific Semiconductor Market Size & Forecast, 2016-2027
8.1.1. Demand
8.1.1.1. By Value (USD Million)
8.1.2. Consumption
8.1.2.1. By Volume (Thousands Unit)
8.1.3. Supply/Production
8.1.3.1. By Volume (Thousands Unit)
8.2. Asia Pacific Semiconductor Market Share & Forecast, 2016-2027
8.2.1. By Material Type
8.2.1.1. Silicon
8.2.1.2. Germanium
8.2.1.3. Gallium Arsenide
8.2.1.4. Silicon Carbide
8.2.1.5. Gallium Nitride
8.2.1.6. Gallium Phosphide
8.2.1.7. Others
8.2.2. By Components
8.2.2.1. Analog IC
8.2.2.2. Sensors
8.2.2.3. Memory Devices
8.2.2.4. Lighting Device
8.2.2.5. Discrete Power Devices
8.2.2.6. Others
8.2.3. By Process
8.2.3.1. Water Production
8.2.3.2. Wafer Fabrication
8.2.3.3. Doping, Masking
8.2.3.4. Etching
8.2.3.5. Thermal Oxidation
8.2.4. By End-User Industry
8.2.4.1. Networking & Communication
8.2.4.2. Energy
8.2.4.3. Automotive
8.2.4.4. Computing
8.2.4.5. Consumer Electronic
8.2.4.6. Sports & Fitness
8.2.4.7. Mobile Accessories
8.2.4.8. Gaming
8.2.4.9. Healthcare
8.2.4.10. Others 
8.2.5. By Country
8.2.5.1. China
8.2.5.2. India
8.2.5.3. Japan
8.2.5.4. Australia
8.2.5.5. Rest of Asia Pacific
8.2.6. Manufacturer & Distributor List (Top 5)
8.2.7. Company Market Share (Top 3-5)
8.2.8. Economic Impact Study on Asia Pacific Semiconductor Market 

9. South America Semiconductor Market Overview
9.1. South America Semiconductor Market Size & Forecast, 2016-2027
9.1.1. Demand
9.1.1.1. By Value (USD Million)
9.2. South America Semiconductor Market Share & Forecast, 2016-2027
9.2.1. By Material Type
9.2.1.1. Silicon
9.2.1.2. Germanium
9.2.1.3. Gallium Arsenide
9.2.1.4. Silicon Carbide
9.2.1.5. Gallium Nitride
9.2.1.6. Gallium Phosphide
9.2.1.7. Others
9.2.2. By Components
9.2.2.1. Analog IC
9.2.2.2. Sensors
9.2.2.3. Memory Devices
9.2.2.4. Lighting Device
9.2.2.5. Discrete Power Devices
9.2.2.6. Others
9.2.3. By Process
9.2.3.1. Water Production
9.2.3.2. Wafer Fabrication
9.2.3.3. Doping, Masking
9.2.3.4. Etching
9.2.3.5. Thermal Oxidation
9.2.4. By End-User Industry
9.2.4.1. Networking & Communication
9.2.4.2. Energy
9.2.4.3. Automotive
9.2.4.4. Computing
9.2.4.5. Consumer Electronic
9.2.4.6. Sports & Fitness
9.2.4.7. Mobile Accessories
9.2.4.8. Gaming
9.2.4.9. Healthcare
9.2.4.10. Others 
9.2.5. By Country
9.2.5.1. Brazil
9.2.5.2. Argentina
9.2.5.3. Rest of South America
9.2.6. Manufacturer & Distributor List (Top 5)
9.2.7. Company Market Share (Top 3-5)
9.2.8. Economic Impact Study on South America Semiconductor Market

10. Middle East & Africa Semiconductor Market Overview
10.1. Middle East & Africa Semiconductor Market Size & Forecast, 2016-2027
10.1.1. Demand
10.1.1.1. By Value (USD Million)
10.1.2. Consumption
10.1.2.1. By Volume (Thousands Unit)
10.1.3. Supply/Production
10.1.3.1. By Volume (Thousands Unit)
10.2. Middle East & Africa Semiconductor Market Share & Forecast, 2016-2027
10.2.1. By Material Type
10.2.1.1. Silicon
10.2.1.2. Germanium
10.2.1.3. Gallium Arsenide
10.2.1.4. Silicon Carbide
10.2.1.5. Gallium Nitride
10.2.1.6. Gallium Phosphide
10.2.1.7. Others
10.2.2. By Components
10.2.2.1. Analog IC
10.2.2.2. Sensors
10.2.2.3. Memory Devices
10.2.2.4. Lighting Device
10.2.2.5. Discrete Power Devices
10.2.2.6. Others
10.2.3. By Process
10.2.3.1. Water Production
10.2.3.2. Wafer Fabrication
10.2.3.3. Doping, Masking
10.2.3.4. Etching
10.2.3.5. Thermal Oxidation
10.2.4. By End-User Industry
10.2.4.1. Networking & Communication
10.2.4.2. Energy
10.2.4.3. Automotive
10.2.4.4. Computing
10.2.4.5. Consumer Electronic
10.2.4.6. Sports & Fitness
10.2.4.7. Mobile Accessories
10.2.4.8. Gaming
10.2.4.9. Healthcare
10.2.4.10. Others 
10.2.5. By Country
10.2.5.1. Saudi Arabia
10.2.5.2. UAE
10.2.5.3. South Africa
10.2.5.4. Rest of Middle East & Africa
10.2.6. Manufacturer & Distributor List (Top 5)
10.2.7. Company Market Share (Top 3-5)
10.2.8. Economic Impact Study on Middle East & Africa Semiconductor Market

11. Competitor Analysis
11.1. Company Description
11.2. Financial Analysis
11.3. Key Products
11.4. Key Management Personnel 
11.5. Contact Address
11.6. SWOT Analysis
11.7. Company Profile
11.7.1. Qualcomm
11.7.2. Samsung Electronics
11.7.3. Toshiba Corporation
11.7.4. Micron Technology
11.7.5. Intel Corporation
11.7.6. Texas Instruments
11.7.7. SK Hynix Inc.
11.7.8. Texas Instruments
11.7.9. Toshiba
11.7.10. NXP
11.7.11. MediaTek
11.7.12. Western Digital
11.7.13. STMicroelectronics
11.7.14. Infineo
11.7.15. Sony
11.7.16. Analog Devices.
11.7.17. Other Prominent Players

SPER Market Research’s methodology uses great emphasis on primary research to ensure that the market intelligence insights are up to date, reliable and accurate. Primary interviews are done with players involved in each phase of a supply chain to analyze the market forecasting. The secondary research method is used to help you fully understand how the future markets and the spending patterns look likes.

The report is based on in-depth qualitative and quantitative analysis of the Global Product Market. The quantitative analysis involves the application of various projection and sampling techniques. The qualitative analysis involves primary interviews, surveys, and vendor briefings.  The data gathered as a result of these processes are validated through experts opinion. Our research methodology entails an ideal mixture of primary and secondary initiatives.



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