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Automotive Shielding Market By Vehicle Type (Passenger Cars, Commercial Vehicles, Electric Vehicles); By Shielding Type (EMI Shielding, Heat Shielding); By Heat Application Type (Engine Compartment, Turbocharger, Exhaust System); By EMI Application (Adaptive Cruise Control (ACC), Intelligent Park Assist (IPA), Engine Control Module (ECM), Electric Motor, Infotainment, Others); By Material Type (Metallic Shield, Non-Metallic Shield); By Region (North America, Europe, Asia Pacific, Latin America, Middle East & Africa) - Global Market Analysis, Trends, Opportunity and Forecast, 2023-2032

Automotive Shielding Market Highlights

The Global Automotive Shielding Market is expected to grow from USD 21.8 billion in 2022 to USD 34.6 billion by 2032, at a CAGR of 4.30% during the forecast period 2022-2032.


Automotive Shielding Market Overview 

Automotive shielding refers to the use of shielding products in the automotive industry to protect sensitive components and systems from electromagnetic interference (EMI) and electromagnetic compatibility (EMC) issues. EMI and EMC issues can cause electronic systems in vehicles to malfunction, leading to decreased safety and reliability. Automotive shielding products are used to prevent these issues by creating a barrier that absorbs or redirects electromagnetic energy, thereby preventing it from interfering with other electronic systems.

Global Automotive Shielding market for a span of 10 years i.e. between 2022 and 2032. This report presents an overview on Automotive Shielding market and technologies used in it such as Passenger Cars, Commercial Vehicles, Electric Vehicles used for various Shielding Type segments such as EMI Shielding, Heat Shielding. Automotive Shielding analyzed in this report include Heat Application Type such as Engine Compartment, Turbocharger, Exhaust System.

Automotive Shielding research provides a detailed analysis of its global market and provides useful insights to understand the reason behind the popularity of this emerging technology along with its advantages and challenges. The report covers detailed analysis of key industry drivers, challenges, market trends as well as market structure. The report has been segregated on the basis of Vehicle Type, Shielding Type, Heat Application Type, EMI Application and global regions. This research also provides an assessment of key industry giants and their strategies that helps them to succeed in business.


Automotive Shielding Market Growth Drivers

Growing trend towards electrification of vehicles: The growing trend towards electrification of vehicles is driving the demand for automotive shielding products. Electric vehicles have a higher number of electronic systems compared to traditional vehicles, leading to a higher risk of EMI and EMC issues. Automotive shielding products are used to protect these systems and ensure their proper functioning.

Increasing use of electronic systems in vehicles: The increasing use of electronic systems in vehicles, such as infotainment systems, advanced driver assistance systems (ADAS), and powertrain systems, is driving the demand for automotive shielding products. These systems are vulnerable to EMI and EMC issues, and the use of shielding products is necessary to prevent these issues and ensure the proper functioning of these systems.

Stringent emission and fuel efficiency standards: Stringent emission and fuel efficiency standards are driving the demand for automotive shielding products. The use of shielding products helps reduce the electromagnetic interference in vehicles, leading to improved fuel efficiency and reduced emissions.

Growing demand for safer and more reliable vehicles: The growing demand for safer and more reliable vehicles is driving the demand for automotive shielding products. Automotive shielding products help ensure the proper functioning of electronic systems, leading to improved safety and reliability of vehicles.

Technological advancements: Technological advancements in the automotive industry, such as the development of advanced shielding products, are driving the growth of the automotive shielding market. Companies are investing in research and development to develop advanced shielding products that provide improved performance and reliability.


Automotive Shielding Market Challenges

The automotive shielding market faces several challenges, including:

Cost: Automotive shielding solutions are relatively expensive compared to other automotive components. This can pose a challenge for car manufacturers trying to keep costs down.

Complexity: Automotive shielding solutions are complex products that require extensive development and testing. This complexity can lead to longer development cycles and higher costs.

Integration: Automotive shielding solutions must be integrated seamlessly into the vehicle design and meet strict automotive standards. This can be a challenging process and may require significant investment in research and development.

Material availability: The materials used for automotive shielding solutions are sometimes in short supply. This can lead to supply chain disruptions and affect the ability of manufacturers to meet demand.

Market fragmentation: The automotive shielding market is fragmented, with many small players and a few large players. This can make it difficult for manufacturers to compete effectively and achieve economies of scale.

Technological advancements: Technological advancements in the automotive industry are continuously taking place. This requires manufacturers to constantly innovate and adapt their products to stay competitive.

Environmental regulations: The automotive industry is subject to strict environmental regulations, which can make it difficult for manufacturers to develop and produce shielding solutions that meet these regulations.


Automotive Shielding Market: Report Scope

Base Year Market Size

         2022

Forecast Year Market Size

        2023-2032

CAGR Value

        4.30%

Segmentation

  • By Material Type
  • By Shielding Type
  • By Vehicle Type
  • By Geography

Challenges

  • Cost
  • Complexity
  • Integration
  • Material availability
  • Market fragmentation
  • Technological advancements
  • Environmental regulations

Growth Drivers

  • Growing trend towards electrification of vehicles
  • Increasing use of electronic systems in vehicles
  • Stringent emission and fuel efficiency standards
  • Growing demand for safer and more reliable vehicles
  • Technological advancements

Automotive Shielding Market Segmentation

By Vehicle Type

- Passenger Cars
- Commercial Vehicles
- Electric Vehicles

By Shielding Type

- EMI Shielding
- Heat Shielding

By Heat Application Type

- Engine Compartment
- Turbocharger
- Exhaust System

By EMI Application

- Adaptive Cruise Control (ACC)
- Intelligent Park Assist (IPA)
- Engine Control Module (ECM)
- Electric Motor
- Infotainment
- Others

By Material Type

- Metallic Shield
- Non-Metallic Shield

Automotive Shielding market has been segmented by Vehicle Type, Shielding Type, Heat Application Type, EMI Application and by region. On the basis of Vehicle Type market has been divided as Passenger Cars, Commercial Vehicles, Electric Vehicles. By Shielding Type, it is further divided as EMI Shielding, Heat Shielding. On the basis of Heat Application Type market has been divided as Engine Compartment, Turbocharger, Exhaust System. On the basis of EMI Application market has been divided as Adaptive Cruise Control (ACC), Intelligent Park Assist (IPA), Engine Control Module (ECM), Electric Motor, Infotainment, Others.

Coming to next segment, report provides an analysis of Automotive Shielding market for global countries in the region. It covers a market overview for 2022-2027 and gives probable forecast with the context of Automotive Shielding. This also covers new technological development and their role in the market. The research covers the pivotal trends within countries contributing to growth of the market, as well as analyses the factor due to which drivers impact the market in each region. Key regions and countries included in this report includes North America (U.S& Canada), Europe (Germany, U.K, France, Italy) Asia Pacific (China, India, Japan, South Korea, Indonesia, Taiwan and Rest of Asia), Middle East &Africa (GCC, North America, North America, South America).

The report also reflects the current scenario and the target of the Automotive Shielding market. For this evaluation, 2018 considered as base year, 2021 as an estimated year, 2022-2027 as forecasted year. As already mentioned, the global Automotive Shielding market is divided into a number of segments. All segments in terms of Vehicle Type, Shielding Type, Heat Application Type, EMI Application and different regions are examined in terms of base points to understand the relative contributions of each segments to market growth. This detailed level of facts & information is essential for the identification of various key factors in the global Automotive Shielding market.

In the final section of the report, we have included a competitive landscape to provide clients a dashboard view based on categories of providers in the value chain, their presence in the Automotive Shielding market, and key differentiators. This section is mainly designed to provide clients an objective and detailed comparative assessment of key providers specific to a market segment in the current scenario and the main competitors for the same. Report audiences can gain segment-specific vendor insights to identify and evaluate key competitors based on the in-depth assessment of capabilities and success in the marketplace. Detailed profiles of providers are also included in the scope of the report to evaluate their long-term and short-term strategies, key offerings, and recent developments in the Automotive Shielding market. Some of the key competitors covered in the report are Laird PLC, Morgan Advanced Materials, Henkel, 3M, Tech-Etch, Chomerics, Kitagawa, Marian Inc., Federal-Mogul, Dana Incorporated etc., Others Major & Niche Key Players.


Automotive Shielding Market Regional Synopsis

The automotive shielding market is growing globally, and the market size and demand vary by region. Some of the key regions for the automotive shielding market include:

North America: North America is a mature market for automotive shielding, with a high demand for shielding solutions from the automotive and technology industries. The region is home to several major automotive manufacturers, including General Motors and Ford, and has a strong presence of technology companies that provide shielding solutions.

Europe: Europe is a growing market for automotive shielding, driven by the increasing demand for electric vehicles and connected cars. The region is home to several leading automotive manufacturers, including Volkswagen and BMW, and has a strong presence of technology companies that provide shielding solutions.

Asia Pacific: Asia Pacific is a rapidly growing market for automotive shielding, driven by the increasing demand for vehicles in countries such as China and India. The region is home to several major automotive manufacturers, including Toyota and Honda, and has a strong presence of technology companies that provide shielding solutions.

Rest of the World: The automotive shielding market is also growing in other regions, including South America, the Middle East, and Africa. These regions are experiencing growth in the automotive industry and an increasing demand for shielding solutions, driven by factors such as the growing demand for electric vehicles and connected cars.


Automotive Shielding Market Recent Developments

There have been several recent developments in the automotive shielding market, including:

Increased demand for electric vehicles (EVs): The growing demand for EVs is driving the demand for automotive shielding solutions, as EVs require shielding to protect sensitive electronic components from electromagnetic interference (EMI).

Development of lightweight shielding materials: Automotive manufacturers are looking to reduce the weight of vehicles to improve fuel efficiency and reduce emissions. This has led to the development of lightweight shielding materials, such as aluminum and plastic, that can provide effective shielding while reducing weight.

Increased use of advanced shielding technologies: Automotive shielding manufacturers are increasingly using advanced technologies, such as 3D printing, to improve the design and production of shielding components. This is helping to improve the performance and reduce the cost of automotive shielding solutions.

Growing focus on safety and comfort: Automotive manufacturers are focusing on providing their customers with safe and comfortable vehicles. This has led to an increased demand for automotive shielding solutions that can help improve the safety and comfort of vehicles by reducing EMI and other types of electromagnetic radiation.

Increased demand for connectivity and infotainment systems: The growing demand for connected and infotainment systems is driving the demand for automotive shielding solutions, as these systems require shielding to protect sensitive electronic components from EMI.

Automotive Shielding Market Key Players

- Laird PLC
- Morgan Advanced
- Materials
- Henkel
- 3M
- Tech-Etch
- Chomerics
- Kitagawa
- Marian Inc.
- Federal-Mogul
- Dana Incorporated etc.
- Others Major & Niche Key Players


Research Methodology

Market Definition and List of Abbreviations

1. Executive Summary
2. Growth Drivers & Issues in Global Automotive Shielding Market
3. Global Automotive Shielding Market Trends
4. Opportunities in Global Automotive Shielding Market
5. Recent Industry Activities, 2019
6. Porter's Five Forces Analysis
7. Market Value Chain and Supply Chain Analysis
8. Global Automotive Shielding Market Size (USD Million), Growth Analysis and Forecast, (2019-2025)

9. Global Automotive Shielding Market Segmentation Analysis, By Vehicle Type
9.1. Introduction
9.2. Market Attractiveness, By Vehicle Type
9.3. BPS Analysis, By Vehicle Type
9.4. Passenger Cars
9.5. Commercial Vehicles
9.6. Electric Vehicles

10. Global Automotive Shielding Market Segmentation Analysis, By Shielding Type
10.1. Introduction
10.2. Market Attractiveness, By Shielding Type
10.3. BPS Analysis, By Shielding Type
10.4. EMI Shielding
10.5. Heat Shielding

11. Global Automotive Shielding Market Segmentation Analysis, By Heat Application Type
11.1. Introduction
11.2. Market Attractiveness, By Heat Application Type
11.3. BPS Analysis, By Heat Application Type
11.4. Engine Compartment
11.5. Turbocharger
11.6. Exhaust System

12. Global Automotive Shielding Market Segmentation Analysis, By EMI Application
12.1. Introduction
12.2. Market Attractiveness, By EMI Application
12.3. BPS Analysis, By EMI Application
12.4. Adaptive Cruise Control (ACC)
12.5. Intelligent Park Assist (IPA)
12.6. Engine Control Module (ECM)
12.7. Electric Motor
12.8. Infotainment
12.9. Others

13. Global Automotive Shielding Market Segmentation Analysis, By Material Type
13.1. Introduction
13.2. Market Attractiveness, By Material Type
13.3. BPS Analysis, By Material Type
13.4. Metallic Shield
13.5. Non-Metallic Shield

14. Geographical Analysis
14.1. Introduction
14.2. North America Automotive Shielding Market Size (USD Million), 2019-2025
14.2.1. By Vehicle Type
14.2.2. By Shielding Type
14.2.3. By Heat Application Type
14.2.4. By EMI Application
14.2.5. By Material Type
14.2.6. By Country
14.2.6.1. Market Attractiveness, By End-user
14.2.6.2. BPS Analysis, By End-User
14.2.6.3. U.S. Market Size (USD Million), 2019-2025
14.2.6.4. Canada Market Size (USD Million), 2019-2025

14.3. Europe Automotive Shielding Market Size (USD Million), 2019-2025
14.3.1. By Vehicle Type
14.3.2. By Shielding Type
14.3.3. By Heat Application Type
14.3.4. By EMI Application
14.3.5. By Material Type
14.3.6. By Country
14.3.6.1. Market Attractiveness, By Country
14.3.6.2. BPS Analysis, By Country
14.3.6.3. Germany Market Size (USD Million), 2019-2025
14.3.6.4. United Kingdom Market Size (USD Million), 2019-2025
14.3.6.5. France Market Size (USD Million), 2019-2025
14.3.6.6. Italy Market Size (USD Million), 2019-2025
14.3.6.7. Spain Market Size (USD Million), 2019-2025
14.3.6.8. Russia Market Size (USD Million), 2019-2025
14.3.6.9. Rest of Europe Market Size (USD Million), 2019-2025

14.4. Asia Pacific Automotive Shielding Market Size (USD Million), 2019-2025
14.4.1. By Vehicle Type
14.4.2. By Shielding Type
14.4.3. By Heat Application Type
14.4.4. By EMI Application
14.4.5. By Material Type
14.4.6. By Country
14.4.6.1. Market Attractiveness, By Country
14.4.6.2. BPS Analysis, By Country
14.4.6.3. China Market Size (USD Million), 2019-2025
14.4.6.4. India Market Size (USD Million), 2019-2025
14.4.6.5. Japan Market Size (USD Million), 2019-2025
14.4.6.6. South Korea Market Size (USD Million), 2019-2025
14.4.6.7. Indonesia Market Size (USD Million), 2019-2025
14.4.6.8. Taiwan Market Size (USD Million), 2019-2025
14.4.6.9. Australia Market Size (USD Million), 2019-2025
14.4.6.10. New Zealand Market Size (USD Million), 2019-2025
14.4.6.11. Rest of Asia Pacific Market Size (USD Million), 2019-2025

14.5. Latin America Automotive Shielding Market Size (USD Million), 2019-2025
14.5.1. By Vehicle Type
14.5.2. By Shielding Type
14.5.3. By Heat Application Type
14.5.4. By EMI Application
14.5.5. By Material Type
14.5.6. By Country
14.5.6.1. Market Attractiveness, By Country
14.5.6.2. BPS Analysis, By Country
14.5.6.3. Brazil Market Size (USD Million), 2019-2025
14.5.6.4. Mexico Market Size (USD Million), 2019-2025
14.5.6.5. Rest of Latin America Market Size (USD Million), 2019-2025

14.6. Middle East & Africa Automotive Shielding Market Size (USD Million), 2019-2025
14.6.1. By Vehicle Type
14.6.2. By Shielding Type
14.6.3. By Heat Application Type
14.6.4. By EMI Application
14.6.5. By Material Type
14.6.6. By Geography
14.6.6.1. Market Attractiveness, By Geography
14.6.6.2. BPS Analysis, By Geography
14.6.6.3. GCC Market Size (USD Million), 2019-2025
14.6.6.4. North Africa Market Size (USD Million), 2019-2025
14.6.6.5. South Africa Market Size (USD Million), 2019-2025
14.6.6.6. Rest of Middle East & Africa Market Size (USD Million), 2019-2025

15. Competitive Landscape
15.1. Market Share of Key Players
15.2. Market Positioning of Major Players in Global Automotive Shielding Market
15.3. Company Profiles
15.3.1. Laird PLC
15.3.1.1. Company Overview
15.3.1.2. Product Offered
15.3.1.3. Business Strategy
15.3.1.4. Financials
15.3.1.5. SWOT Analysis
15.3.1.6. Market Share Analysis
15.3.1.7. Key Achievements & Developments
15.3.2. Morgan Advanced Materials
15.3.3. Henkel
15.3.4. 3M
15.3.5. Tech-Etch
15.3.6. Chomerics
15.3.7. Kitagawa
15.3.8. Marian Inc.
15.3.9. Federal-Mogul
15.3.10. Dana Incorporated etc
15.3.11. Other Major & Niche Players


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Booklet
  • Publication date: 8th February 2024
  • Base year: 2022
  • Forecast year: 2023-2033
  • Format: PDF, PPT,Word,Excel

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Frequently Asked Questions(FAQ)

Automotive shielding refers to the use of various materials and coatings to reduce the amount of electromagnetic interference (EMI) and electromagnetic radiation (EMR) that reaches the vehicle's electronic systems. This helps to prevent signal interference, improves signal quality, and enhances overall system performance.

The purpose of automotive shielding is to protect the vehicle's electronic systems from the harmful effects of electromagnetic interference and electromagnetic radiation. These effects can cause signal interference, which can lead to a range of problems such as decreased system performance, communication errors, and even complete system failure.

Materials commonly used for automotive shielding include metals such as aluminum, steel, and copper, as well as conductive coatings and materials such as nickel, silver, and conductive plastics.

According to research, the global automotive shielding market size was valued at USD 21.8 billion in 2021 and is expected to reach USD 34.6 billion by 2032, growing at a CAGR of 4.30% during the forecast period.

Some of the major players in the automotive shielding market include 3M, Laird, Atec, PPG Industries, and Sika AG.

The growth of the automotive shielding market is driven by several factors, including the increasing demand for electric vehicles, the growing use of advanced driver assistance systems (ADAS), and the growing demand for high-speed communication systems in vehicles.

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