Electromagnetic Compatibility (EMC) is a critical pillar of contemporary technology, serving as the linchpin for the harmonious coexistence of devices and systems within their electromagnetic environments. Defined by the International Electrotechnical Vocabulary (IEV) 161-01-07, EMC is the capability of a device or system to operate effectively without emitting disruptive electromagnetic disturbances or succumbing to such interferences. This article delves into the nuanced realm of EMC shielding and test equipment, unveiling the driving forces behind their widespread adoption. Key catalysts include the escalating intricacies in consumer electronics design and the imperative for efficient test equipment to bolster manufacturing throughput. The escalating complexities in consumer electronics design are propelling the adoption of EMC shielding and test equipment.
As manufacturers ambitiously integrate advanced features and functionalities into electronic devices, the resulting complexity poses challenges related to electromagnetic interference (EMI). In response, robust EMC solutions play a pivotal role in ensuring that electronic devices not only meet rigorous performance criteria but also comply with regulatory standards, seamlessly functioning within their electromagnetic domains. Efficiency is paramount in the fast-paced manufacturing landscape, driving the need for high-efficiency test equipment. In the face of soaring demand for consumer electronics, manufacturers seek testing solutions that not only meet stringent standards but also accelerate production throughput. EMC test equipment emerges as a solution to this imperative, offering a reliable means to validate the compliance and performance of electronic devices, streamlining testing processes, and enhancing overall operational efficiency.
The automotive industry, currently undergoing a technological renaissance with the integration of electronic components and advanced connectivity features, presents another driver for the adoption of EMC shielding and test equipment. As automotive systems become more sophisticated, the potential for electromagnetic interference grows. In this context, EMC solutions become indispensable, ensuring that electronic components within vehicles operate seamlessly without causing or succumbing to electromagnetic disturbances. The evolution of cellular infrastructure, particularly with the advent of technologies like 5G, introduces new challenges and opportunities for EMC solutions and reliable test equipment. The growing demand for faster and more efficient communication networks escalates the need for EMC solutions. Manufacturers must ensure the compatibility of devices with the latest cellular infrastructure, making EMC considerations a critical aspect of their production processes.
A comprehensive study of the global EMC shielding and test equipment market provides invaluable insights into industry trends, dynamics, competitive landscapes, and growth opportunities. The market segmentation into EMC shielding equipment and EMC test equipment, further categorized by type, application, and region/country, enables stakeholders to gain a nuanced understanding of the multifaceted EMC market. This segmentation empowers informed decision-making among industry participants. In conclusion, the world of electromagnetic compatibility is a linchpin in shaping the landscape of modern technology. EMC shielding and test equipment assume the role of guardians, ensuring that devices not only meet performance standards but also coexist harmoniously within the electromagnetic spectrum.
The widespread adoption of these technologies is fueled by the escalating complexities in consumer electronics design, the imperative for high-efficiency test equipment, the growth of the automotive industry, and continuous advancements in cellular infrastructure. As the global demand for electronic devices continues its upward trajectory, the significance of EMC shielding and test equipment becomes increasingly pivotal, underscoring their indispensable role in the seamless functioning of our interconnected and electrified world.
Report Attribute/Metric | Details |
---|---|
Market Size Value In 2022 | USD 2.5 Billion |
Market Size Value In 2023 | USD 2.6 Billion |
Growth Rate | 6.65% (2023-2032) |
EMC Shielding and Test Equipment Market Size was valued at USD 2.6 Billion in 2023. The EMC Shielding and Test Equipment market industry is projected to grow from USD 2.7729 Billion in 2024 to USD 4.42 Billion by 2032, exhibiting a compound annual growth rate (CAGR) of 6.00% during the forecast period (2024 - 2032). the rising electromagnetic pollution and the rising consumer electronics demand are the key market drivers enhancing the market growth.
Source: Secondary Research, Primary Research, MRFR Database and Analyst Review
Market CAGR for emc shielding and test equipment is being driven by the rising consumer electronics industry. The most common electronic devices people use for communication, leisure, and legal work include computers, cell phones, tablets, and laptops. The adoption of voice-assisted infotainment systems, the rise of smartphones, the influence of smart gadgets, and the impending rollout of 5G mobile networks all significantly contribute to the growth of the worldwide consumer electronics market. Consumer electronics produce EMI.EMC shielding has become a serious issue as electronic equipment like computers, mobile phones, and roaming systems become more advanced globally. Due to power supply variations, rising clock frequencies, quick kill rates, rising packing capacities, and rising demand for smaller, lighter, cheaper, and more affordable components like power devices, high petrol emissions further enhance the need for EMC shielding. This has caused a variety of instructions and laws to be created by their providers in support of EMC shielding and test equipment. Reliable EMI shielding contributes considerably to the machine's dependability, offering a helpful selling point for system and equipment manufacturers. Battery-powered vehicles (BEV), hybrid electric vehicles (HEV), and plug-in hybrid electric vehicles (PHEV) are the three primary categories of electric vehicles. Some of the biggest markets for electric vehicles are Asia, Europe, and the US, which have seen rapid sales development. The use of two-wheeled, three-wheeled electric bikes and buses is on the rise these days, despite the lack of a political climate that fully supports them and the mounting environmental issues they are causing.
A standard operating system's key components, such as power converters, electric motors, safe and uninterrupted cables, wireless chargers, and batteries, are vulnerable to EMI and electromagnetic radiation. Electric vehicle wireless charging has recently gained a lot of popularity. Unlike motors based on a combustion engine, some electric vehicles release more electric waves while charging than when driving. The power needed for an electric drive system is substantially greater than that needed for a traditional vehicle's full electrical system. Special EMI shielding features are needed for electric vehicles due to additional factors, including weight, dimensions, and emissions. Therefore, the electric vehicle market expansion would pave the way for the expansion of EMC market testing and shielding equipment. Thus, driving the EMC Shielding and Test Equipment market revenue.
Based on type, the EMC Shielding and Test Equipment Market segmentation includes conductive coating, EMC shielding tape, EMC filters, metal shielding, and others. The EMC shielding tape dominated the market, accounting for 35% of market revenue. Many products in various industries, including healthcare, consumer electronics, and automotive, are protected using EMC shielding techniques such as conductive coatings, filters, paints, tapes & laminates, and metal shielding. There are several potentials for adopting EMC shielding solutions in various application sectors due to the increased demand for consumer electronics and the most recent developments in electric vehicles. Due to the fast-rising demand for EMC shielding, it is anticipated that during the forecast period, EMC shielding will retain the top spot in the market for EMC shielding and test equipment.
The EMC Shielding and Test Equipment Market segmentation, based on Application, includes consumer electronics, IT and telecommunication, aerospace and defense, and others. Consumer electronics generated the most income. The expansion of the consumer electronics market for EMC shielding and test equipment is predicted to be primarily driven by the development of consumer electronics devices, the availability of high-tech goods like wearable technology, and the need to adhere to EMC shielding laws.
Figure 1: EMC Shielding and Test Equipment Market, by Application, 2022 & 2032 (USD Billion)
Source: Secondary Research, Primary Research, MRFR Database and Analyst Review
By region, the study provides market insights into North America, Europe, Asia-Pacific and the Rest of the World. The North American EMC Shielding and Test Equipment market will dominate; the expansion of the IT and telecommunications industries' use of EMC Shielding and test equipment is anticipated to boost the market in North America.
Further, the major countries studied in the market report are The US, Canada, German, France, the UK, Italy, China, Spain, Japan, India, Australia, South Korea, and Brazil.
Figure 2: EMC Shielding and Test Equipment Market SHARE BY REGION 2022 (USD Billion)
Source: Secondary Research, Primary Research, MRFR Database and Analyst Review
Europe EMC Shielding and Test Equipment market account for the second-largest market share; government rules and regulations are strict about maintaining the product's quality, driving the market growth. The government enacted several rules to enhance infrastructure life cycles, product safety, and environmental health. The UK EMC Shielding and Test Equipment market was expanding fastest in the European region, while the German EMC Shielding and Test Equipment market had the greatest market share.
The Asia-Pacific EMC Shielding and Test Equipment Market is expected to grow fastest from 2023 to 2032. This results from the region's manufacturing sectors' growing need for EMC shielding and test equipment. This region is anticipated to see exponential growth and take a leading position in the global market. In addition, the Indian EMC Shielding and Test Equipment market had the quickest growth rate in the Asia-Pacific region. In contrast, China's EMC Shielding and Test Equipment market had the greatest market share.
Leading market companies are extensively spending R&D on increasing their product lines, which will help the EMC Shielding and Test Equipment market grow even more. Important market developments include new product releases, contractual agreements, acquisitions and mergers, greater investments, and collaboration with other organizations. The EMC Shielding and Test Equipment industry must produce cost-effective merchandise to flourish and thrive in a more competitive and increasing market climate.
Manufacturing locally to reduce operating costs is an effective business strategy manufacturers use in the worldwide EMC Shielding and Test Equipment industry to serve clients and expand the market sector. The EMC Shielding and Test Equipment industry has provided some of the most important benefits recently. Major players in the EMC Shielding and Test Equipment market, including PPG and others, are attempting to increase market demand by investing in research and development operations.
A Fortune 500 American business that provides specialty materials, paints, and coatings worldwide is PPG Industries, Inc. PPG, which has its global headquarters in Pittsburgh, Pennsylvania, and operates in more than 70 nations. It is the largest coatings company in the world, followed by AkzoNobel in revenue. Its headquarters are in Pittsburgh's PPG Place, an office and retail complex distinguished by Philip Johnson's postmodern glass front. In March 2020, PPG acquired Alpha Coating Technologies (US), a powder coatings producer focused on heat-sensitive substrates and light industrial applications. PPG will benefit greatly from Alpha's service, technology, and quick turnaround color matching capabilities.
An American business called Keysight Technologies, also known as Keysight makes software and hardware for testing and measuring electronic components. The name combines the words "key" and "insight." The business was established as a spin-off from Agilent Technologies, which had acquired and renamed the test and measurement product lines that Hewlett-Packard's Test & Measurement division had developed and manufactured between the late 1960s and the turn of the millennium. In June 2019, The N9038B MXE EMI Receiver from Keysight Technologies was improved from 26.5 GHz to 44 GHz. It offers assistance in recognizing the client's present and future requirements for compliance testing with its many standard bodies, including FCC Part 15 and MIL-STD-461G.
Laird PLC
Leader Tech. Inc
Chomerics Inc
KGS Kitagawa Industries Co. Ltd
Rohde & Schwarz GmbH & C
ETS-Lindgren Inc
3M Company
HV Technologies, Inc
Kemtron Ltd
Keysight Technologies Inc
June 2023: The debut of a new series of input/output ("I/O") interface modules created especially for the RF enclosure and RF/EMC test industries was announced by QuanticTM Corry, a division of Quantic. The capacity to test goods and network services to the highest standard is now crucial as wireless network operators and hardware manufacturers concentrate on the future of wireless communications. Quantic Corry's new series of interface modules offers unequaled 100dB of isolation from 100KHz to 40GHz and has been optimized for optimal performance and LTE band rejection.
In addition to switching capabilities within the current range, CDN 3063A-C100.1 is the first three-phase Teseq coupling network that was launched by AMETEK, Inc. in November 2023. EMC testing configurations have been improved through this innovation, thereby allowing customers to meet a broad spectrum of test requirements like never before. The switchable current range is one such major advancement that addresses changes in EMC testing needs.
In September 2023, PPG Industries announced the completion of a USD 2.7 million investment for expansion work on its Sumaré powder coatings plant located in Brazil. This expanded the plant’s production capacity by up to forty percent.
Laird PLC introduced "EMC ShieldPro Plus," which has better conductivity and flexibility. It is an advanced EMC shielding material meant specifically for hard environments where electromagnetic interference (EMI) may occur against electronic devices.
Panasonic Industry Co., Ltd. (“Panasonic Industry”), in an August 2022 announcement, said that it has started a joint research project on ultra-lightweight EMC shielding materials technology with Japan Aerospace Exploration Agency (JAXA), National Research and Development Agency (“JAXA”). It is considered one of JAXA’s space exploration solution-creating research projects and is being conducted in cooperation with Panasonic Industry, Yamagata University (herein referred to as “Yamagata University”), National University Corporation Akita University (herein referred to as “Akita University”) and Nagoya University (herein referred to as “Nagoya University”), a part of Tokai National Higher Education and Research System.
In November 2021, Rohde & Schwarz GmbH & Co. KG launched the “R&S ESW-B Series”, its new line of EMC test receivers meant for optimizing performance with regards to sensitivity and measurement speed when conducting EMC compliance tests on wireless communication devices and systems.
A new launch by SGS toward locations around the United States took place in July 2021, wherein it involved the introduction of new mobile equipment targeting in-situ Electromagnetic Compatibility (EMC) as well as Electromagnetic Interference (EMI) testing services.
Conductive coating
EMC Shielding tape
EMC filters
Metal Shielding
Others
Consumer Electronics
IT and telecommunication
Aerospace and Defense
Others
North America
US
Canada
Europe
Germany
France
UK
Italy
Spain
Rest of Europe
Asia-Pacific
China
Japan
India
Australia
South Korea
Australia
Rest of Asia-Pacific
Rest of the World
Middle East
Africa
Latin America
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