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Global EMI Shielding Market Size, Share & Industry Trends Analysis Report by Material, Methods, Industry (Consumer Electronics, Automotive, Telecom & IT, Healthcare, Aerospace), Regional Outlook and Forecast, 2022-2028

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    Report

  • 233 Pages
  • October 2022
  • Region: Global
  • Marqual IT Solutions Pvt. Ltd (KBV Research)
  • ID: 5694816
The Global EMI Shielding Market size is expected to reach $9.2 billion by 2028, rising at a market growth of 5.7% CAGR during the forecast period.

Electromagnetic interference (EMI) shielding is the process of protecting sensitive mechanical components from radio frequency interference (RFI). Airborne EMI is absorbed through screening via conductive coatings, metals, and laminates constructed from copper, aluminum, and stainless steel. It also decreases corrosion and oxidation and inhibits the electromagnetic field within a physical region by employing conductive or magnetic barriers. As a result, it has widespread uses in numerous industries, including the automotive, military, defense, aerospace, healthcare, telecommunications, and information technology sectors.



EMI Shielding is the process of constructing a barrier that prevents electromagnetic waves from penetrating and interfering with sensitive electronics and signals. They can be deployed to isolate the source of the electromagnetic field or to enclose the item that requires protection. Electromagnetic interference, also known as radio frequency interference (RFI), is an issue for the majority of electronic devices since it can reduce the circuit's performance or possibly cause it to fail.

Electronics utilize low currents and voltages that are easily disrupted by electromagnetic fields. Interference electromagnetic is the coupling of impulses and signals from one system to the other. An EMI consists of three components viz. the source, the route, and the receiver. These are the source as well as the reception systems.

The source is typically the external circuit or phenomenon causing the disturbance, which may be natural; such as cosmic microwave background, lightning, auroras, and solar flares, or artificial; cellular networks, power transmission lines, AM/FM radio waves, measurement and control systems. The sensitive signal or instrument whose output signal is corrupted by interference is the receiver or the victim. On the way, the signal coupling can occur via four distinct mechanisms.

COVID-19 Impact Analysis

COVID-19 has dramatically impacted every business throughout the world, interrupting supply chains and impeding a vast array of economic activities. During the early phases of the outbreak, government-implemented COVID-19 measures, such as social distancing and lockdown, led to the shutdown of manufacturing facilities. Additionally, the EMI shielding market was also significantly disrupted due to the abrupt emergence of the COVID-19 pandemic. A number of countries enforced import and export restrictions, making material mobility challenging for various manufacturers as well as customers throughout the world. In addition, a number of producers were experiencing financial difficulties, which significantly influenced the market. Such discoveries have an effect on the expansion of the EMI shielding sector.

Market Growth Factors

A significant surge in the adoption of electric vehicles in the recent years

Electric cars are the most eco-friendly vehicles that have been developed in recent years all over the world. They have lower requirements for maintenance in contrast to automobiles that use conventional fuel. Battery electric cars (also known as BEVs), hybrid electric vehicles (also known as HEVs), as well as plug-in hybrid electric vehicles are the three primary classifications of electric vehicles. Moreover, developed as well as developing countries are increasingly becoming major markets for electric vehicles as the sales of this type of automotive are rapidly rising throughout these countries.

An increase in the penetration of 5G technology throughout the world

The fifth-generation cellular network, more commonly referred to as 5G, is the next-generation technology that is most likely to be adopted in a wide range of countries at different times due to the increasing demand for high-speed wireless access. By automating a large number of network behaviors, it is anticipated that this technology will give rise to a wide variety of new uses, applications, and business cases. As a result, significant improvements in 5G are the primary reasons that are driving the market for EMI shielding. In addition, the increased demand for improved solutions and services across industries is a driving force behind the acceleration of digitalization brought about by 5G technology.

Market Restraining Factors

Complexities in shielding modern compact devices

The sizes of a variety of electronic devices and components have become smaller as a direct result of technological advancements in areas, such as integrated circuits and power systems. There are now concerns regarding the interference of signals as a result of the downsizing of electronic devices. This is due to the fact that downsizing enables the integration of many different components and devices (including sensors, transmitters, receivers, and others) into a single tiny enclosure. This causes larger gadgets to compress down to a more manageable size and converts them into a more compact form.

Material Outlook

Based on Material, the EMI Shielding Market is segregated into Conductive Coatings & Paints, Conductive Polymers, Metal Shielding, EMI/EMC Filters, and EMI Shielding Tapes & Laminates. In 2021, the metal shielding segment recorded a substantial revenue share of the EMI shielding market. Copper, brass, silver, nickel, steel, and tin are frequently used as shielding materials. The physical qualities of the metal influence the shielding effectiveness, or how well a shield rebounds or absorbs/suppresses electromagnetic radiation.



Methods Outlook

On the basis of Methods, the EMI Shielding Market is bifurcated into Radiation and Conduction. In 2021, the conduction segment garnered a significant revenue share of the EMI shielding market. Interference delivered directly from a source to a receiver is known as conducted EMI. This approach necessitates a physical conduction path to transmit electromagnetic emissions to the linked device.

Industry Outlook

By Industry, the EMI Shielding Market is categorized into Consumer Electronics, Automotive, Telecommunications & Information Technology, Healthcare, Aerospace, and Others. In 2021, the healthcare segment acquired a promising revenue share of the EMI shielding market. The rapid rise in the growth of this segment of the market is attributed to the higher integration of this technology among healthcare facilities to prevent medical devices from spoilage.

Regional Outlook

Region-Wise, the EMI Shielding Market is analyzed across North America, Europe, Asia-pacific, and LAMEA. In 2021, Asia-Pacific accounted for the largest revenue share of the EMI shielding market. Rapid industrialization and infrastructure growth are fueling the expansion of China's consumer electronics and automotive industries, which is anticipated to enhance the region's demand for EMI shielding solutions. Asia-Pacific is dominated by the consumer electronics and automotive industries, and the markets for telecommunications and information technology are anticipated to expand at a significant rate in the coming years.

The market research report covers the analysis of key stakeholders of the market. Key companies profiled in the report include 3M Company, PPG Industries, Inc., Parker Hannifin Corporation, Laird Technologies, Inc. (Dupont De Nemours, Inc.), Henkel AG & Company, KGaA, Schaffner Holding AG, Leader Tech, Inc. (HEICO Corporation), Nolato AB, RTP Company, Inc. and MG Chemicals

Strategies Deployed in EMI Shielding Market

  • Sep-2022: Henkel expanded its geographical footprint with the launch of its South China Application Engineering Center in Dongguan. Through this geographical expansion, the company aimed to improve customer support and experience for customers within the Chinese consumer electronics market.
  • May-2022: Parker Chomerics rolled out the Choform 5575, a moisture-cured, silver-plated, and aluminum-filled silicone material. With this launch, the company aimed to offer more protection to drones from overheating and electromagnetic interference. Furthermore, this solution would leverage automated methods in order to minimize assembly costs.
  • May-2022: PPG signed an MoU with Meta Materials, a developer of high-performance functional materials. Through this agreement, the companies aimed to bring a novel ophthalmic smart device, especially for extended reality applications.
  • Feb-2022: Parker Hannifin entered into a partnership with Cummins, a leader in motion and control technologies. Under this partnership, the companies aimed to integrate the Mobile IoT platform of Parker into Cummins's connected engine solutions to allow customers to view diagnostic messages while also receiving real-time alerts for Parker components as well as Cummins engines.
  • Nov-2020: PPG introduced customization options for PPG TESLIN, an EMI/RF shielding material of the company. Through this product expansion, the company aimed to allow customers to customize PPG Teslin EMI/RF shielding material with PPG proprietary conductive inks along with complex shield patterns as well as higher-performing inks.
  • Nov-2019: Schaffner released the FN 9262 and FN 9266, a range of RFI filters with IEC C14 PEM. Through this launch, the company aimed to meet the rising demand for high attenuation performance demanding applications, including the medical market. Furthermore, this product would facilitate end-users to deploy their design.
  • Sep-2019: Laird unveiled the IceKap P30000, a high performance, and silicone-free thermal interface material. With this launch, the company aimed to fulfill the requirements of demanding thermal applications in order to divert uncertain thermal loads away from GPU, MPU, and MCU devices.
  • Jun-2019: PPG launched PPG TESLIN, an EMI/RF shielding material. This product aimed to serve the demands of electronic applications with the requirement for efficient shielding, RF transponders protection, and a durable grounding path.
  • May-2019: Parker Hannifin completed its acquisition of LORD, a leading vendor of advanced adhesives and coatings. This partnership aimed to strengthen the high growth and lucrative margins business offerings of Parker. Moreover, this partnership would also expand the materials science capabilities of Parker through complementary products.
  • Mar-2019: Laird introduced its advanced electronics protection applications for five key markets. With this expansion, the company aimed to demonstrate its products covering thermal as well as wireless management technology, automotive interconnection solutions, and technology, high-performance materials. In addition, this expansion would also enable customers to continue developing high-performance products.

Scope of the Study

By Material

  • Conductive Coatings & Paints
  • Conductive Polymers
  • Metal Shielding
  • EMI/EMC Filters
  • EMI Shielding Tapes & Laminates

By Methods

  • Radiation
  • Conduction

By Industry

  • Consumer Electronics
  • Automotive
  • Telecom & IT
  • Healthcare
  • Aerospace
  • Others

By Geography

  • North America
    • US
    • Canada
    • Mexico
    • Rest of North America
  • Europe
    • Germany
    • UK
    • France
    • Russia
    • Spain
    • Italy
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • Singapore
    • Malaysia
    • Rest of Asia Pacific
  • LAMEA
    • Brazil
    • Argentina
    • UAE
    • Saudi Arabia
    • South Africa
    • Nigeria
    • Rest of LAMEA

Key Market Players

List of Companies Profiled in the Report:

  • 3M Company
  • PPG Industries, Inc.
  • Parker Hannifin Corporation
  • Laird Technologies, Inc. (Dupont De Nemours, Inc.)
  • Henkel AG & Company, KGaA
  • Schaffner Holding AG
  • Leader Tech, Inc. (HEICO Corporation)
  • Nolato AB
  • RTP Company, Inc.
  • MG Chemicals

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Table of Contents

Chapter 1. Market Scope & Methodology
1.1 Market Definition
1.2 Objectives
1.3 Market Scope
1.4 Segmentation
1.4.1 Global EMI Shielding Market, by Material
1.4.2 Global EMI Shielding Market, by Methods
1.4.3 Global EMI Shielding Market, by Industry
1.4.4 Global EMI Shielding Market, by Geography
1.5 Research Methodology
Chapter 2. Market Overview
2.1 Introduction
2.1.1 Overview
2.1.1.1 Market Composition and Scenario
2.2 Key Factors Impacting the Market
2.2.1 Market Drivers
2.2.2 Market Restraints
Chapter 3. Strategies Deployed in EMI Shielding Market
Chapter 4. Global EMI Shielding Market by Material
4.1 Global Conductive Coatings & Paints Market by Region
4.2 Global Conductive Polymers Market by Region
4.3 Global Metal Shielding Market by Region
4.4 Global EMI/EMC Filters Market by Region
4.5 Global EMI Shielding Tapes & Laminates Market by Region
Chapter 5. Global EMI Shielding Market by Methods
5.1 Global Radiation Market by Region
5.2 Global Conduction Market by Region
Chapter 6. Global EMI Shielding Market by Industry
6.1 Global Consumer Electronics Market by Region
6.2 Global Automotive Market by Region
6.3 Global Telecom & IT Market by Region
6.4 Global Healthcare Market by Region
6.5 Global Aerospace Market by Region
6.6 Global Others Market by Region
Chapter 7. Global EMI Shielding Market by Region
7.1 North America EMI Shielding Market
7.1.1 North America EMI Shielding Market by Material
7.1.1.1 North America Conductive Coatings & Paints Market by Country
7.1.1.2 North America Conductive Polymers Market by Country
7.1.1.3 North America Metal Shielding Market by Country
7.1.1.4 North America EMI/EMC Filters Market by Country
7.1.1.5 North America EMI Shielding Tapes & Laminates Market by Country
7.1.2 North America EMI Shielding Market by Methods
7.1.2.1 North America Radiation Market by Country
7.1.2.2 North America Conduction Market by Country
7.1.3 North America EMI Shielding Market by Industry
7.1.3.1 North America Consumer Electronics Market by Country
7.1.3.2 North America Automotive Market by Country
7.1.3.3 North America Telecom & IT Market by Country
7.1.3.4 North America Healthcare Market by Country
7.1.3.5 North America Aerospace Market by Country
7.1.3.6 North America Others Market by Country
7.1.4 North America EMI Shielding Market by Country
7.1.4.1 US EMI Shielding Market
7.1.4.1.1 US EMI Shielding Market by Material
7.1.4.1.2 US EMI Shielding Market by Methods
7.1.4.1.3 US EMI Shielding Market by Industry
7.1.4.2 Canada EMI Shielding Market
7.1.4.2.1 Canada EMI Shielding Market by Material
7.1.4.2.2 Canada EMI Shielding Market by Methods
7.1.4.2.3 Canada EMI Shielding Market by Industry
7.1.4.3 Mexico EMI Shielding Market
7.1.4.3.1 Mexico EMI Shielding Market by Material
7.1.4.3.2 Mexico EMI Shielding Market by Methods
7.1.4.3.3 Mexico EMI Shielding Market by Industry
7.1.4.4 Rest of North America EMI Shielding Market
7.1.4.4.1 Rest of North America EMI Shielding Market by Material
7.1.4.4.2 Rest of North America EMI Shielding Market by Methods
7.1.4.4.3 Rest of North America EMI Shielding Market by Industry
7.2 Europe EMI Shielding Market
7.2.1 Europe EMI Shielding Market by Material
7.2.1.1 Europe Conductive Coatings & Paints Market by Country
7.2.1.2 Europe Conductive Polymers Market by Country
7.2.1.3 Europe Metal Shielding Market by Country
7.2.1.4 Europe EMI/EMC Filters Market by Country
7.2.1.5 Europe EMI Shielding Tapes & Laminates Market by Country
7.2.2 Europe EMI Shielding Market by Methods
7.2.2.1 Europe Radiation Market by Country
7.2.2.2 Europe Conduction Market by Country
7.2.3 Europe EMI Shielding Market by Industry
7.2.3.1 Europe Consumer Electronics Market by Country
7.2.3.2 Europe Automotive Market by Country
7.2.3.3 Europe Telecom & IT Market by Country
7.2.3.4 Europe Healthcare Market by Country
7.2.3.5 Europe Aerospace Market by Country
7.2.3.6 Europe Others Market by Country
7.2.4 Europe EMI Shielding Market by Country
7.2.4.1 Germany EMI Shielding Market
7.2.4.1.1 Germany EMI Shielding Market by Material
7.2.4.1.2 Germany EMI Shielding Market by Methods
7.2.4.1.3 Germany EMI Shielding Market by Industry
7.2.4.2 UK EMI Shielding Market
7.2.4.2.1 UK EMI Shielding Market by Material
7.2.4.2.2 UK EMI Shielding Market by Methods
7.2.4.2.3 UK EMI Shielding Market by Industry
7.2.4.3 France EMI Shielding Market
7.2.4.3.1 France EMI Shielding Market by Material
7.2.4.3.2 France EMI Shielding Market by Methods
7.2.4.3.3 France EMI Shielding Market by Industry
7.2.4.4 Russia EMI Shielding Market
7.2.4.4.1 Russia EMI Shielding Market by Material
7.2.4.4.2 Russia EMI Shielding Market by Methods
7.2.4.4.3 Russia EMI Shielding Market by Industry
7.2.4.5 Spain EMI Shielding Market
7.2.4.5.1 Spain EMI Shielding Market by Material
7.2.4.5.2 Spain EMI Shielding Market by Methods
7.2.4.5.3 Spain EMI Shielding Market by Industry
7.2.4.6 Italy EMI Shielding Market
7.2.4.6.1 Italy EMI Shielding Market by Material
7.2.4.6.2 Italy EMI Shielding Market by Methods
7.2.4.6.3 Italy EMI Shielding Market by Industry
7.2.4.7 Rest of Europe EMI Shielding Market
7.2.4.7.1 Rest of Europe EMI Shielding Market by Material
7.2.4.7.2 Rest of Europe EMI Shielding Market by Methods
7.2.4.7.3 Rest of Europe EMI Shielding Market by Industry
7.3 Asia Pacific EMI Shielding Market
7.3.1 Asia Pacific EMI Shielding Market by Material
7.3.1.1 Asia Pacific Conductive Coatings & Paints Market by Country
7.3.1.2 Asia Pacific Conductive Polymers Market by Country
7.3.1.3 Asia Pacific Metal Shielding Market by Country
7.3.1.4 Asia Pacific EMI/EMC Filters Market by Country
7.3.1.5 Asia Pacific EMI Shielding Tapes & Laminates Market by Country
7.3.2 Asia Pacific EMI Shielding Market by Methods
7.3.2.1 Asia Pacific Radiation Market by Country
7.3.2.2 Asia Pacific Conduction Market by Country
7.3.3 Asia Pacific EMI Shielding Market by Industry
7.3.3.1 Asia Pacific Consumer Electronics Market by Country
7.3.3.2 Asia Pacific Automotive Market by Country
7.3.3.3 Asia Pacific Telecom & IT Market by Country
7.3.3.4 Asia Pacific Healthcare Market by Country
7.3.3.5 Asia Pacific Aerospace Market by Country
7.3.3.6 Asia Pacific Others Market by Country
7.3.4 Asia Pacific EMI Shielding Market by Country
7.3.4.1 China EMI Shielding Market
7.3.4.1.1 China EMI Shielding Market by Material
7.3.4.1.2 China EMI Shielding Market by Methods
7.3.4.1.3 China EMI Shielding Market by Industry
7.3.4.2 Japan EMI Shielding Market
7.3.4.2.1 Japan EMI Shielding Market by Material
7.3.4.2.2 Japan EMI Shielding Market by Methods
7.3.4.2.3 Japan EMI Shielding Market by Industry
7.3.4.3 India EMI Shielding Market
7.3.4.3.1 India EMI Shielding Market by Material
7.3.4.3.2 India EMI Shielding Market by Methods
7.3.4.3.3 India EMI Shielding Market by Industry
7.3.4.4 South Korea EMI Shielding Market
7.3.4.4.1 South Korea EMI Shielding Market by Material
7.3.4.4.2 South Korea EMI Shielding Market by Methods
7.3.4.4.3 South Korea EMI Shielding Market by Industry
7.3.4.5 Singapore EMI Shielding Market
7.3.4.5.1 Singapore EMI Shielding Market by Material
7.3.4.5.2 Singapore EMI Shielding Market by Methods
7.3.4.5.3 Singapore EMI Shielding Market by Industry
7.3.4.6 Malaysia EMI Shielding Market
7.3.4.6.1 Malaysia EMI Shielding Market by Material
7.3.4.6.2 Malaysia EMI Shielding Market by Methods
7.3.4.6.3 Malaysia EMI Shielding Market by Industry
7.3.4.7 Rest of Asia Pacific EMI Shielding Market
7.3.4.7.1 Rest of Asia Pacific EMI Shielding Market by Material
7.3.4.7.2 Rest of Asia Pacific EMI Shielding Market by Methods
7.3.4.7.3 Rest of Asia Pacific EMI Shielding Market by Industry
7.4 LAMEA EMI Shielding Market
7.4.1 LAMEA EMI Shielding Market by Material
7.4.1.1 LAMEA Conductive Coatings & Paints Market by Country
7.4.1.2 LAMEA Conductive Polymers Market by Country
7.4.1.3 LAMEA Metal Shielding Market by Country
7.4.1.4 LAMEA EMI/EMC Filters Market by Country
7.4.1.5 LAMEA EMI Shielding Tapes & Laminates Market by Country
7.4.2 LAMEA EMI Shielding Market by Methods
7.4.2.1 LAMEA Radiation Market by Country
7.4.2.2 LAMEA Conduction Market by Country
7.4.3 LAMEA EMI Shielding Market by Industry
7.4.3.1 LAMEA Consumer Electronics Market by Country
7.4.3.2 LAMEA Automotive Market by Country
7.4.3.3 LAMEA Telecom & IT Market by Country
7.4.3.4 LAMEA Healthcare Market by Country
7.4.3.5 LAMEA Aerospace Market by Country
7.4.3.6 LAMEA Others Market by Country
7.4.4 LAMEA EMI Shielding Market by Country
7.4.4.1 Brazil EMI Shielding Market
7.4.4.1.1 Brazil EMI Shielding Market by Material
7.4.4.1.2 Brazil EMI Shielding Market by Methods
7.4.4.1.3 Brazil EMI Shielding Market by Industry
7.4.4.2 Argentina EMI Shielding Market
7.4.4.2.1 Argentina EMI Shielding Market by Material
7.4.4.2.2 Argentina EMI Shielding Market by Methods
7.4.4.2.3 Argentina EMI Shielding Market by Industry
7.4.4.3 UAE EMI Shielding Market
7.4.4.3.1 UAE EMI Shielding Market by Material
7.4.4.3.2 UAE EMI Shielding Market by Methods
7.4.4.3.3 UAE EMI Shielding Market by Industry
7.4.4.4 Saudi Arabia EMI Shielding Market
7.4.4.4.1 Saudi Arabia EMI Shielding Market by Material
7.4.4.4.2 Saudi Arabia EMI Shielding Market by Methods
7.4.4.4.3 Saudi Arabia EMI Shielding Market by Industry
7.4.4.5 South Africa EMI Shielding Market
7.4.4.5.1 South Africa EMI Shielding Market by Material
7.4.4.5.2 South Africa EMI Shielding Market by Methods
7.4.4.5.3 South Africa EMI Shielding Market by Industry
7.4.4.6 Nigeria EMI Shielding Market
7.4.4.6.1 Nigeria EMI Shielding Market by Material
7.4.4.6.2 Nigeria EMI Shielding Market by Methods
7.4.4.6.3 Nigeria EMI Shielding Market by Industry
7.4.4.7 Rest of LAMEA EMI Shielding Market
7.4.4.7.1 Rest of LAMEA EMI Shielding Market by Material
7.4.4.7.2 Rest of LAMEA EMI Shielding Market by Methods
7.4.4.7.3 Rest of LAMEA EMI Shielding Market by Industry
Chapter 8. Company Profiles
8.1 3M Company
8.1.1 Company Overview
8.1.2 Financial Analysis
8.1.3 Segmental and Regional Analysis
8.1.4 Research & Development Expense
8.1.5 SWOT Analysis
8.2 PPG Industries, Inc.
8.2.1 Company Overview
8.2.2 Financial Analysis
8.2.3 Segmental and Regional Analysis
8.2.4 Research & Development Expense
8.2.5 Recent Strategies and Developments
8.2.5.1 Partnerships, Collaborations, and Agreements
8.2.5.2 Product Launches and Product Expansions
8.3 Parker Hannifin Corporation
8.3.1 Company Overview
8.3.2 Financial Analysis
8.3.3 Segmental and Regional Analysis
8.3.4 Research & Development Expenses
8.3.5 Recent Strategies and Developments
8.3.5.1 Partnerships, Collaborations, and Agreements
8.3.5.2 Product Launches and Product Expansions
8.3.5.3 Acquisition and Mergers
8.4 Laird Technologies, Inc. (Dupont De Nemours, Inc.)
8.4.1 Company Overview
8.4.2 Financial Analysis
8.4.3 Segmental and Regional Analysis
8.4.4 Research & Development Expense
8.4.5 Recent Strategies and Developments
8.4.5.1 Product Launches and Product Expansions
8.4.5.2 Geographical Expansions
8.5 Henkel AG & Company, KGaA
8.5.1 Company Overview
8.5.2 Financial Analysis
8.5.3 Segmental and Regional Analysis
8.5.4 Research & Development Expense
8.5.5 Recent Strategies and Developments
8.5.5.1 Geographical Expansions
8.6 Schaffner Holding AG
8.6.1 Company Overview
8.6.2 Financial Analysis
8.6.3 Segmental and Regional Analysis
8.6.4 Research & Development Expenses
8.6.5 Recent Strategies and Developments
8.6.5.1 Product Launches and Product Expansions
8.7 Leader Tech, Inc. (HEICO Corporation)
8.7.1 Company Overview
8.7.2 Financial Analysis
8.7.3 Segmental and Regional Analysis
8.7.4 Research & Development Expenses
8.8 Nolato AB
8.8.1 Company Overview
8.8.2 Financial Analysis
8.8.3 Segmental and Regional Analysis
8.8.4 Research & Development Expenses
8.9 RTP Company, Inc.
8.9.1 Company Overview
8.10. M.G. Chemicals
8.10.1 Company Overview

Companies Mentioned

  • 3M Company
  • PPG Industries, Inc.
  • Parker Hannifin Corporation
  • Laird Technologies, Inc. (Dupont De Nemours, Inc.)
  • Henkel AG & Company, KGaA
  • Schaffner Holding AG
  • Leader Tech, Inc. (HEICO Corporation)
  • Nolato AB
  • RTP Company, Inc.
  • MG Chemicals

Methodology

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