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Semiconductor Industry Landscape Market Size, Industry Analysis Report By component (Memory, Micro component, OSD, Analog , Logic), By application (Automotive, Communications, Industrial, Data processing, Consumer electronics) & Region - Forecasts By 2033

  • PUBLISHED ON
  • 2022-10-08
  • NO OF PAGES
  • 213
  • CATEGORY
  • Electronics & Communication

 

Market Overview

The Global Semiconductor Industry Landscape Market is presently worth USD 471,300 million and is poised to amplify at a CAGR of 7.6% over 2023-2033, thereby amassing a valuation of USD 911,100 million by end of the assessment timeline.

 

Report Scope

Report Attributes

Description

Market Forecast in 2022

USD 471,300 Million

Market Forecast in 2033

USD 911,100 Million

CAGR % 2023-2033

7.6%

Base Year

2022

Historic Data

2020-2021

Forecast Period

2023-2033

Report USP

Product type, end-user industry, company share, company heatmap, company Material Technology type capacity, growth factors and more

Segments Covered

component, application

Regional Scope

North America, Europe, APAC, South America and Middle East and Africa

Country Scope

U.S.; Canada; U.K.; Germany; France; Italy; Spain; Benelux; Nordic Countries; Russia; China; India; Japan; South Korea; Australia; Indonesia; Thailand; Mexico; Brazil; Argentina; Saudi Arabia; UAE; Egypt; South Africa; Nigeria

Key Companies

Samsung Electronics Co. Ltd., Qualcomm Incorporated, Intel Corporation, Infineon Technologies AG, Micron Technologies Inc., Broadcom Inc., SK Hynix Inc., Nvidia Corporation, MediaTek Inc., and Texas Instruments Inc.

 

Semiconductor Industry Landscape Market: Description

Numerous cutting-edge digital devices are powered by semiconductors, which are crucial technological enablers. Due to developments in emerging technologies such as autonomous driving, artificial intelligence (AI), 5G, and the Internet of Things (IoT), as well as consistent spending on R&D and competition among the major players, the semiconductor industry is expected to continue its robust growth well into the next decade.

As semiconductors become the fundamental building elements of all modern technology, the semiconductor business is expanding at a tremendous rate. All downstream technologies are directly impacted by the developments and discoveries in this field. The demand for semiconductor materials in future technologies, such as AI, the Internet of Things, autonomous driving, and 5G, as well as competition among major competitors and steady spending on R&D, are expected to drive the semiconductor industry's continued strong growth.

Electronic products including smartphones, LED TVs, flat-screen displays, civil aerospace systems, and military systems all make heavy use of semiconductors. The advancement of biometric technology is anticipated to be advantageous for the semiconductor sector as well. The market's expansion is also being impacted by the rising demand for smartphones and technologically advanced goods like wearable devices, etc.

The demand for data centers, especially edge services, surged significantly worldwide amidst the COVID-19 pandemic. Many data center service providers started expanding their facilities and server architectures to utilize this opportunity. In such regard, memory components are further witnessing increasing demand owing to various factors such as the growth in cloud computing, increasing need for AI and HPC, and growing adoption of advanced GPUs and CPUs, among others.

The demand for DRAM products is being driven by the expanding use of memory ICs in automotive electronics and memory storage chips in electronic gadgets. Additionally, the market under study is anticipated to be impacted by the growing deployment of 5G technology and wireless communication improvements. To enhance 5G technology, several suppliers are making investments in memory component development.

 

Semiconductor Industry Landscape Market- Segmental Analysis:

Component Insights

The memory segment dominates the market with the highest market share in the global semiconductor industry landscape market. Semiconductor memory refers to a range of electronic data storage components that are used as computer memory in PCs, laptops, consumer electronics (cameras, phones), business IT applications (telecom, datacentres), conventional industrial applications, and the nascent IoT application ecosystem.

 

Application Insights

Automotive segment registered the highest growth in the market, in 2022 and is anticipated to grow at a significant CAGR by 2033.

 

Regional Insights

The major regions constituting the geographical ambit of this business sphere are North America, Middle East & Africa, Europe, Asia Pacific, and South America. Among these, Asia-Pacific is projected to capture a substantial revenue share over 2022-2030, due to the being among the key markets for smartphones. Rising investments are being made in the automobile (particularly EVs) and renewable energy sectors.

 

Competitive Analysis

The prominent companies defining the competitive terrain of this marketplace are Samsung Electronics Co. Ltd., Qualcomm Incorporated, Intel Corporation, Infineon Technologies AG, Micron Technologies Inc., Broadcom Inc., SK Hynix Inc., Nvidia Corporation, MediaTek Inc., and Texas Instruments Inc. Samsung Electronics Co. Ltd. introduced the Exynos 2200, a new high-end mobile processor, in January 2022. The Exynos 2200 is a newly developed mobile processor featuring a potent Samsung Xclipse graphics processing unit built on the AMD RDNA 2 architecture (GPU).

 

Global Semiconductor Industry Landscape Market- Segmental Analysis

By component

·         Memory

·         Micro component

·         OSD

·         Analog

·         Logic

·         Others

 

By application

·         Automotive

·         Communications

·         Industrial

·         Data processing

·         Consumer electronics

·         Others

 

1.       Global Semiconductor Industry Landscape Market Introduction and Market Overview

1.1.    Objectives of the Study

1.2.    Global Semiconductor Industry Landscape Market Scope and Market Estimation

1.2.1.Global Semiconductor Industry Landscape Overall Market Size, Revenue (US$ Mn) and Volume (Units), Market CAGR (%), Market forecast (2023 - 2033)

1.2.2.Global Semiconductor Industry Landscape Market Revenue Share (%) and Growth Rate (Y-o-Y) from 2019 - 2033

1.3.    Market Segmentation

1.3.1.Component of Global Semiconductor Industry Landscape Market

1.3.2.Application of Global Semiconductor Industry Landscape Market

1.3.3.Region of Global Semiconductor Industry Landscape Market

2.       Executive Summary

3.       Market Factor Analysis

3.1.   Global Semiconductor Industry Landscape Market Application Trends under COVID-19 Outbreak

3.1.1.Global COVID-19 Status Overview

3.1.2.Influence of COVID-19 Outbreak on Global Semiconductor Industry Landscape Market Application Development

3.2.   Market Dynamics

3.2.1.Drivers

3.2.2.Limitations

3.2.3.Opportunities

3.2.4.Impact Analysis of Drivers and Restraints

3.3.   Value Chain/ Ecosystem Analysis

3.3.1.Manufacturers / Vendors

3.3.2.Distributors

3.3.3.Buyers / End-users

3.3.4.Forward Integration & Backward Integration of Key Stakeholders

3.4.   Global Semiconductor Industry Landscape Market - Pricing Trends Analysis & Average Selling Prices (ASPs)

3.5.   Porter’s Five Forces Analysis

3.5.1.Bargaining Power of Suppliers

3.5.2.Bargaining Power of Buyers

3.5.3.Threat of Substitutes

3.5.4.Threat of New Entrants

3.5.5.Competitive Rivalry

3.6.   PEST Analysis

3.6.1.Political Factors

3.6.2.Economic Factors

3.6.3.Social Factors

3.6.4.Technological Factors

3.7.   Impact of Russia Ukraine War on Semiconductor Industry Landscape Market

3.8.   Impact of Economic Downturn on Semiconductor Industry Landscape Market

3.9.   Semiconductor Industry Landscape Production Capacity, by Major Countries

3.10.  Market Investment Opportunity Analysis (Top Investment Pockets), By Segments & By Regions

4.       Global Semiconductor Industry Landscape Market Estimates & Forecast Trend Analysis, by Component

4.1.    Global Semiconductor Industry Landscape Market Revenue (US$ Mn) and Volume (Units) Estimates and Forecasts, by Component, 2019 to 2033

4.1.1.Memory

4.1.2.Micro component

4.1.3.OSD

4.1.4.Analog

4.1.5.Logic

4.1.6.Others      

5.       Global Semiconductor Industry Landscape Market Estimates & Forecast Trend Analysis, by Application

5.1.    Global Semiconductor Industry Landscape Market Revenue (US$ Mn) and Volume (Units) Estimates and Forecasts, by Application, 2019 to 2033

5.1.1.Automotive

5.1.2.Communications

5.1.3.Industrial

5.1.4. Data processing

5.1.5.Consumer electronics

5.1.6.Others

6.       Global Semiconductor Industry Landscape Market Estimates & Forecast Trend Analysis, by Region

6.1.    Global Semiconductor Industry Landscape Market Revenue (US$ Mn) and Volume (Units) Estimates and Forecasts, by Region, 2019 to 2033

6.1.1.North America

6.1.2.Europe

6.1.3.Asia Pacific

6.1.4.Middle East & Africa

6.1.5.South America

7.       North America Semiconductor Industry Landscape Market: Estimates & Forecast Trend Analysis

7.1.    North America Semiconductor Industry Landscape Market Assessments & Key Findings

7.1.1.Semiconductor Industry Landscape Market Introduction

7.1.2.Semiconductor Industry Landscape Market Size Estimates and Forecast (US$ Million & Units) (2019 – 2033)

7.1.2.1.   By Component

7.1.2.2.   By Application

7.1.2.3.   By Country

7.1.2.3.1.     The U.S.

7.1.2.3.2.     Canada

7.1.2.3.3.     Mexico

8.       Europe Semiconductor Industry Landscape Market: Estimates & Forecast Trend Analysis

8.1.    Europe Semiconductor Industry Landscape Market Assessments & Key Findings

8.1.1.Semiconductor Industry Landscape Market Introduction

8.1.2.Semiconductor Industry Landscape Market Size Estimates and Forecast (US$ Million & Units) (2019 – 2033)

8.1.2.1.   By Component

8.1.2.2.   By Application

8.1.2.3.        By Country

8.1.2.3.1.     Italy

8.1.2.3.2.     Germany

8.1.2.3.3.     U.K.

8.1.2.3.4.     France

8.1.2.3.5.     Spain

8.1.2.3.6.     Rest of Europe

9.       Asia Pacific Semiconductor Industry Landscape Market: Estimates & Forecast Trend Analysis

9.1.    Asia Pacific Market Assessments & Key Findings

9.1.1.Semiconductor Industry Landscape Market Introduction

9.1.2.Semiconductor Industry Landscape Market Size and Volume Estimates and Forecast (US$ Million & Units) (2019 – 2033)

9.1.2.1.   By Component

9.1.2.2.   By Application

9.1.2.3.        By Country

9.1.2.3.1.     China

9.1.2.3.2.     Japan

9.1.2.3.3.     India

9.1.2.3.4.     Australia

9.1.2.3.5.     South Korea

9.1.2.3.6.     ASEAN

9.1.2.3.7.     Rest of Asia Pacific

10.   Middle East & Africa Semiconductor Industry Landscape Market: Estimates & Forecast Trend Analysis

10.1.  Middle East & Africa Market Assessments & Key Findings

10.1.1.   Semiconductor Industry Landscape Market Introduction

10.1.2.   Semiconductor Industry Landscape Market Size and Volume Estimates and Forecast (US$ Million & Units) (2019 – 2033)

10.1.2.1.    By Component

10.1.2.2.    By Application

10.1.2.3.    By Country

10.1.2.3.1. U.A.E.

10.1.2.3.2. Saudi Arabia

10.1.2.3.3. Egypt

10.1.2.3.4. South Africa

10.1.2.3.5. Rest of Middle East & Africa

11.   South America Semiconductor Industry Landscape Market: Estimates & Forecast Trend Analysis

11.1.  South America Market Assessments & Key Findings

11.1.1.   Semiconductor Industry Landscape Market Introduction

11.1.2.   Semiconductor Industry Landscape Market Size and Volume Estimates and Forecast (US$ Million & Units) (2019 – 2033)

11.1.2.1.    By Component

11.1.2.2.    By Application

11.1.2.3.    By Country

11.1.2.3.1. Brazil

11.1.2.3.2. Argentina

11.1.2.3.3. Colombia

11.1.2.3.4. Rest of South America

12.   Competition Landscape

12.1.  Semiconductor Industry Landscape Market Competition Matrix & Benchmarking, by Leading Players / Innovators / Emerging Players / New Entrants

12.2.  Semiconductor Industry Landscape Market Competition White Space Analysis, By End-user

12.3.  Semiconductor Industry Landscape Market Competition Regional Intensity Map Analysis, By Geographies Served

12.4.  Semiconductor Industry Landscape Market Concentration & Company Market Shares (%) Analysis, 2022

13.   Company Profiles

13.1.Samsung Electronics Co. Ltd

13.1.1.    Company Overview & Key Stats

13.1.2.    Financial Performance & KPIs

13.1.3.    Product Portfolio

13.1.4.    Business Strategy & Recent Developments

* Similar details would be provided for all the players mentioned below 

13.2.Qualcomm Incorporated,

13.3.Intel Corporation,

13.4. Infineon Technologies AG,

13.5.Micron Technologies Inc.,

13.6.Broadcom Inc.,

13.7.SK Hynix Inc.,

13.8.Nvidia Corporation,

13.9.MediaTek Inc.,

13.10.   Texas Instruments Inc

13.11.   Others**

14.   Research Methodology

14.1.      External Power Outputs / Databases

14.2.      Internal Proprietary Database

14.3.      Primary Research

14.4.      Secondary Research

14.5.      Assumptions

14.6.      Limitations

14.7.      Report FAQs

15.   Research Findings & Conclusion

 


Quality Assurance Process

  1. We Market Research’s Quality Assurance program strives to deliver superior value to our clients.

We Market Research senior executive is assigned to each consulting engagement and works closely with the project team to deliver as per the clients expectations.

Market Research Process




We Market Research monitors 3 important attributes during the QA process- Cost, Schedule & Quality. We believe them as a critical benchmark in achieving a project’s success.

To mitigate risks that can impact project success, we deploy the follow project delivery best practices:
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  • Assign a senior SR executive as QA Executive
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Case Study- Automotive Sector

One of the key manufacturers of automotive had plans to invest in electric utility vehicles. The electric cars and associated markets being a of evolving nature, the automotive client approached We Market Research for a detailed insight on the market forecasts. The client specifically asked for competitive analysis, regulatory framework, regional prospects studied under the influence of drivers, challenges, opportunities, and pricing in terms of revenue and sales (million units).

Solution

The overall study was executed in three stages, intending to help the client meet its objective of precisely understanding the entire market before deciding on an investment. At first, secondary research was conducted considering political, economic, social, and technological parameters to get a gist of the various aspects of the market. This stage of the study concluded with the derivation of drivers, opportunities, and challenges. It also laid substantial emphasis on understanding and collecting data not only on a global scale but also on the regional and country levels. Data Extraction through Primary Research

The second stage involved primary research in which several market players and automotive parts suppliers were contacted to study their viewpoint concerning the development of their market and production capacity, clientele, and product line. This stage concluded in a brief understanding of the competitive ecosystem and also glanced through the strategies and pricing of the companies profiled.

Market Estimates and Forecast

In the final stage of the study, market forecasts for the electric utility were derived using multiple market engineering approaches. This data helped the client to get an overview of the market and accelerate the process of investment.

Case Study- ICT Sector

Business process outsourcing, being one of the lucrative markets from both supply- and demand- side, has appealed to various companies. One of the prominent corporations based out of Japan approached us with their requirements regarding the scope of the procurement outsourcing market for around 50 countries. Additionally, the client also sought key players operating in the market and their revenue breakdown in terms of region and application.


Business Solution

An exhaustive market study was conducted based on primary and secondary research that involved factors such as labor costs in various countries, skilled and technical labors, manufacturing scenario, and their respective contributions in the global GDP. A comparative study of the market was conducted from both supply- and demand side, with the supply-side comprising of notable companies, such as GEP, Accenture, and others, that provide these services. On the other hand, large manufacturing companies from them demand-side were considered that opt for these services.


Conclusion

The report aided the client in understanding the market trends, including country-level business scenarios, consumer behavior, and trends in 50 countries. The report also provided financial insights of crucial players and detailed market estimations and forecasts till 2033.


Frequently Asked Questions

What is the market size and growth projections?

The Global Semiconductor Industry Landscape Market is presently worth USD 471,300 million and is poised to amplify at a CAGR of 7.6% over 2023-2033, thereby amassing a valuation of USD 911,100 million by end of the assessment timeline.

What are the drivers shaping various markets?

The demand for semiconductor materials in future technologies, such as AI, the Internet of Things, autonomous driving, and 5G, as well as competition among major competitors and steady spending on R&D, are expected to drive the semiconductor industry's continued strong growth.

Who are the key competitors of market Players?

Some of the major players operating within the market are Samsung Electronics Co. Ltd., Qualcomm Incorporated, Intel Corporation, Infineon Technologies AG, Micron Technologies Inc., Broadcom Inc., SK Hynix Inc., Nvidia Corporation, MediaTek Inc., and Texas Instruments Inc.

What are the top performing segments, and countries / regions of each of the markets?

The major regions constituting the geographical ambit of this business sphere are North America, Middle East & Africa, Europe, Asia Pacific, and South America. Among these, Asia-Pacific is projected to capture a substantial revenue share over 2022-2030, due to the being among the key markets for smartphones.

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