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Global PC-Based Automation Market to reach USD 45.76 Billion by 2027.

Global PC-Based Automation Market Size study, By Offering (Hardware, Software), By Component (IPCs, HMIs, PLCs, SCADA), By Sales Channel (Direct Sales, Indirect Sales), By Industry (Process {Oil & Gas, Chemicals, Pharmaceuticals, Mining & Metals, Food & Beverages, Energy & Power, Others}, Discrete {Automotive, Semiconductor & Electronics, Aerospace & Defense, Medical Devices, Machine Manufacturing, Others}), and Regional Forecasts 2021-2027

Product Code: ICTEITS-40433154
Publish Date: 17-10-2021
Page: 200

Global PC-Based Automation Market is valued approximately USD 32.74 Billion in 2020 and is anticipated to grow with a healthy growth rate of more than 4.9% over the forecast period 2021-2027.

The PC-based automation entails the usage of the software to direct the real-time (RTOS) application, written in the C#, C++, and .NET, which can perform several functions like machine vision and motion control across the diverse industrial environment. The rising need for precise, analytical, and growing productivity is boosting the need for PC-based automation. Additionally, the evolution of the IIoT and rising demand for smart automation solutions, growing need for competent monitoring in manufacturing plants are stimulating the market demand. Moreover, the launch of sensor gateways also facilitates the introduction of the Internet of Things (IoT) in manufacturing setups, which further fuels market development. For instance, in February 2020, SICK unveils the launch of its SIG200 ProfiNet Sensor Integration Gateway, which is designed to incorporate sensor data transparently into higher-level systems. However, high investment costs pertaining to the implementation of pc-based automation solutions impede the growth of the market over the forecast period of 2021-2027. Also, the incorporation of the PC-based automation systems and PLCs is anticipated to act as a catalyzing factor for the market demand during the forecast period.

The key regions considered for the global PC-Based Automation market study includes Asia Pacific, North America, Europe, Latin America and the Rest of the World. North America is the leading region across the world in terms of market share owing to the execution of favorable government policies, and penetration of novel technologies across various verticals. Whereas, Asia-Pacific is anticipated to exhibit the highest CAGR over the forecast period 2021-2027. Factors such as rapid industrialization majorly among the emerging nations such as India and China, as well as growing investments for the development of the manufacturing segment would create lucrative growth prospects for the PC-Based Automation market across the Asia-Pacific region.

Major market player included in this report are:
Beckhoff Automation
Mitsubishi Electric
Honeywell
Kontron S&T
OMRON
Rockwell Automation
Yokogawa Electric
Advantech
Schneider Electric
Emerson Electric

The objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming eight years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study. Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, the report shall also incorporate available opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and product offerings of key players. The detailed segments and sub-segment of the market are explained below:
By Offering
Hardware
Software
By Component
Intrusion Prevention System (IPCs)
Human-machine interfaces (HMIs)
Programmable Logic Controller (PLCs)
Supervisory control and data acquisition (SCADA)By Sales Channel
Direct Sales
Indirect Sales
By Industry
Process Industries
Oil & Gas
Chemicals
Pharmaceuticals
Mining & Metals
Food & Beverages
Energy & Power
Others
Discrete Industries
Automotive
Semiconductor & Electronics
Aerospace & Defense
Medical Devices
Machine Manufacturing
Others

By Region:
North America
U.S.
Canada
Europe
UK
Germany
France
Spain
Italy
ROE

Asia Pacific
China
India
Japan
Australia
South Korea
RoAPAC
Latin America
Brazil
Mexico
Rest of the World

Furthermore, years considered for the study are as follows:

Historical year – 2018, 2019
Base year – 2020
Forecast period – 2021 to 2027

Target Audience of the Global PC-Based Automation Market in Market Study:

Key Consulting Companies & Advisors
Large, medium-sized, and small enterprises
Venture capitalists
Value-Added Resellers (VARs)
Third-party knowledge providers
Investment bankers
Investors

Chapter 1. Executive Summary
1.1. Market Snapshot
1.2. Global & Segmental Market Estimates & Forecasts, 2019-2027 (USD Billion)
1.2.1. PC-Based Automation Market, by Region, 2019-2027 (USD Billion)
1.2.2. PC-Based Automation Market, by Offering, 2019-2027 (USD Billion)
1.2.3. PC-Based Automation Market, by Component, 2019-2027 (USD Billion)
1.2.4. PC-Based Automation Market, by Sales Channel, 2019-2027 (USD Billion)
1.2.5. PC-Based Automation Market, by Industry, 2019-2027 (USD Billion)
1.3. Key Trends
1.4. Estimation Methodology
1.5. Research Assumption
Chapter 2. Global PC-Based Automation Market Definition and Scope
2.1. Objective of the Study
2.2. Market Definition & Scope
2.2.1. Scope of the Study
2.2.2. Industry Evolution
2.3. Years Considered for the Study
2.4. Currency Conversion Rates
Chapter 3. Global PC-Based Automation Market Dynamics
3.1. PC-Based Automation Market Impact Analysis (2019-2027)
3.1.1. Market Drivers
3.1.1.1. Evolution of IIoT and growing demand for smart automation solutions
3.1.1.2. Rising need for efficient monitoring in manufacturing plants
3.1.2. Market Challenges
3.1.2.1. High investment costs pertaining to the implementation of pc-based automation solutions
3.1.3. Market Opportunities
3.1.3.1. Integration of PC-Based Automation Systems and PLCs
Chapter 4. Global PC-Based Automation Market Industry Analysis
4.1. Porter’s 5 Force Model
4.1.1. Bargaining Power of Suppliers
4.1.2. Bargaining Power of Buyers
4.1.3. Threat of New Entrants
4.1.4. Threat of Substitutes
4.1.5. Competitive Rivalry
4.1.6. Futuristic Approach to Porter’s 5 Force Model (2018-2027)
4.2. PEST Analysis
4.2.1. Political
4.2.2. Economical
4.2.3. Social
4.2.4. Technological
4.3. Investment Adoption Model
4.4. Analyst Recommendation & Conclusion
4.5. Top investment opportunity
4.6. Top winning strategies
Chapter 5. Risk Assessment: COVID-19 Impact
5.1.1. Assessment of the overall impact of COVID-19 on the industry
5.1.2. Pre COVID-19 and post COVID-19 market scenario
Chapter 6. Global PC-Based Automation Market, by Offering
6.1. Market Snapshot
6.2. Global PC-Based Automation Market by Offering, Performance – Potential Analysis
6.3. Global PC-Based Automation Market Estimates & Forecasts by Offering 2018-2027 (USD Billion)
6.4. PC-Based Automation Market, Sub Segment Analysis
6.4.1. Hardware
6.4.2. Software
Chapter 7. Global PC-Based Automation Market, by Component
7.1. Market Snapshot
7.2. Global PC-Based Automation Market by Component, Performance – Potential Analysis
7.3. Global PC-Based Automation Market Estimates & Forecasts by Component 2018-2027 (USD Billion)
7.4. PC-Based Automation Market, Sub Segment Analysis
7.4.1. Intrusion Prevention System (IPCs)
7.4.2. Human-machine interfaces (HMIs)
7.4.3. Programmable Logic Controller (PLCs)
Chapter 8. Supervisory control and data acquisition (SCADA)Global PC-Based Automation Market, by Sales Channel
8.1. Market Snapshot
8.2. Global PC-Based Automation Market by Sales Channel, Performance – Potential Analysis
8.3. Global PC-Based Automation Market Estimates & Forecasts by Sales Channel 2018-2027 (USD Billion)
8.4. PC-Based Automation Market, Sub Segment Analysis
8.4.1. Direct Sales
8.4.2. Indirect Sales
Chapter 9. Global PC-Based Automation Market, by Industry
9.1. Market Snapshot
9.2. Global PC-Based Automation Market by Industry, Performance – Potential Analysis
9.3. Global PC-Based Automation Market Estimates & Forecasts by Industry 2018-2027 (USD Billion)
9.4. PC-Based Automation Market, Sub Segment Analysis
9.4.1. Process Industries
9.4.1.1. Oil & Gas
9.4.1.2. Chemicals
9.4.1.3. Pharmaceuticals
9.4.1.4. Mining & Metals
9.4.1.5. Food & Beverages
9.4.1.6. Energy & Power
9.4.1.7. Others
9.4.2. Discrete Industries
9.4.2.1. Automotive
9.4.2.2. Semiconductor & Electronics
9.4.2.3. Aerospace & Defense
9.4.2.4. Medical Devices
9.4.2.5. Machine Manufacturing
9.4.2.6. Others
Chapter 10. Global PC-Based Automation Market, Regional Analysis
10.1. PC-Based Automation Market, Regional Market Snapshot
10.2. North America PC-Based Automation Market
10.2.1. U.S. PC-Based Automation Market
10.2.1.1. Offering estimates & forecasts, 2018-2027
10.2.1.2. Component breakdown estimates & forecasts, 2018-2027
10.2.1.3. Sales Channel breakdown estimates & forecasts, 2018-2027
10.2.1.4. Industry estimates & forecasts, 2018-2027
10.2.2. Canada PC-Based Automation Market
10.3. Europe PC-Based Automation Market Snapshot
10.3.1. U.K. PC-Based Automation Market
10.3.2. Germany PC-Based Automation Market
10.3.3. France PC-Based Automation Market
10.3.4. Spain PC-Based Automation Market
10.3.5. Italy PC-Based Automation Market
10.3.6. Rest of Europe PC-Based Automation Market
10.4. Asia-Pacific PC-Based Automation Market Snapshot
10.4.1. China PC-Based Automation Market
10.4.2. India PC-Based Automation Market
10.4.3. Japan PC-Based Automation Market
10.4.4. Australia PC-Based Automation Market
10.4.5. South Korea PC-Based Automation Market
10.4.6. Rest of Asia Pacific PC-Based Automation Market
10.5. Latin America PC-Based Automation Market Snapshot
10.5.1. Brazil PC-Based Automation Market
10.5.2. Mexico PC-Based Automation Market
10.6. Rest of The World PC-Based Automation Market

Chapter 11. Competitive Intelligence
11.1. Top Market Strategies
11.2. Company Profiles
11.2.1. Beckhoff Automation
11.2.1.1. Key Information
11.2.1.2. Overview
11.2.1.3. Financial (Subject to Data Availability)
11.2.1.4. Product Summary
11.2.1.5. Recent Developments
11.2.2. Mitsubishi Electric
11.2.3. Honeywell
11.2.4. Kontron S&T
11.2.5. OMRON
11.2.6. Rockwell Automation
11.2.7. Yokogawa Electric
11.2.8. Advantech
11.2.9. Schneider Electric
11.2.10. Emerson Electric
Chapter 12. Research Process
12.1. Research Process
12.1.1. Data Mining
12.1.2. Analysis
12.1.3. Market Estimation
12.1.4. Validation
12.1.5. Publishing
12.2. Research Attributes
12.3. Research Assumption

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Data Collection:
To determine the appropriate methods of data collection based on the research objectives, we consider both primary and secondary sources. Primary data collection involves gathering information directly from various industry experts in core and related fields, original equipment manufacturers (OEMs), vendors, suppliers, technology developers, alliances, and organizations. These sources encompass all segments of the value chain within the specific industry. Through in-depth interviews, we engage with key industry participants, subject-matter experts, C-level executives of major market players, industry consultants, and other relevant experts. This allows us to obtain and validate critical qualitative and quantitative information while evaluating market prospects. AI and Big Data are instrumental in our primary research, providing us with powerful tools to collect, analyze, and derive insights from data efficiently. These technologies contribute to the advancement of research methodologies, enabling us to make data-driven decisions and uncover valuable findings.
In addition to primary sources, we extensively utilize secondary sources to enhance our research. These include directories, databases, journals focusing on related industries, company newsletters, and information portals such as Bloomberg, D&B Hoovers, and Factiva. These secondary sources enable us to identify and gather valuable information for our comprehensive, technical, market-oriented, and commercial study of the market. Additionally, we utilize AI algorithms to automate the collection of vast amounts of data from various sources such as surveys, social media platforms, online transactions, and web scraping. And employ Big Data technologies for storage and processing of large datasets, ensuring that no valuable information is missed during the data collection process.
Data Analysis:
Our team of experts carefully examine the gathered data using suitable statistical techniques and qualitative analysis methods. For quantitative analysis, we employ descriptive statistics, regression analysis, and other advanced statistical methods, depending on the characteristics of the data. This analysis may also incorporate the utilization of AI tools and big data analysis techniques to extract meaningful insights.
To ensure the accuracy and reliability of our findings, we extensively leverage data science techniques, which help us minimize discrepancies and uncertainties in our analysis. We employ Data Science to clean and preprocess the data, ensuring its quality and reliability. This involves handling missing data, removing outliers, standardizing variables, and transforming data into suitable formats for analysis. The application of data science techniques enhances our accuracy, efficiency, and depth of analysis, enabling us to stay competitive in dynamic market environments.
Market Size Estimation:
Our proprietary data tools play a crucial role in deriving our market estimates and forecasts. Each study involves the creation of a unique and customized model. The model incorporates the gathered information on market dynamics, technology landscape, application development, and pricing trends. AI techniques, such as machine learning and deep learning, aid us to analyze patterns within the data to identify correlations, trends, and relationships. By recognizing patterns in consumer behavior, purchasing habits, or market dynamics, our AI algorithms aid us in more precise estimations of market size. These factors are simultaneously analyzed within the model, allowing for a comprehensive assessment. To quantify their impact over the forecast period, correlation, regression, and time series analysis are employed.
To estimate and validate the market size, we employ both top-down and bottom-up approaches. The preference is given to a bottom-up approach, where key regional markets are analyzed as separate entities. This data is then integrated to obtain global estimates. This approach is crucial as it provides a deep understanding of the industry and helps minimize errors.
In our forecasting process, we consider various parameters such as economic tools, technological analysis, industry experience, and domain expertise. By taking all these factors into account, we strive to produce accurate and reliable market forecasts. When forecasting, we take into consideration several parameters, which include:
Market driving trends and favorable economic conditions
Restraints and challenges that are expected to be encountered during the forecast period.
Anticipated opportunities for growth and development
Technological advancements and projected developments in the market
Consumer spending trends and dynamics
Shifts in consumer preferences and behaviors.
The current state of raw materials and trends in supply versus pricing
Regulatory landscape and expected changes or developments.
The existing capacity in the market and any expected additions or expansions up to the end of the forecast period.
To assess the market impact of these parameters, we assign weights to each one and utilize weighted average analysis. This process allows us to quantify their influence on the market and derive an expected growth rate for the forecasted period. By considering these various factors and applying a weighted analysis approach, we strive to provide accurate and reliable market forecasts.
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