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ÀüÀÚÆÄ ÀûÇÕ¼º ½ÃÇè ½ÃÀå ¿¹Ãø(-2030³â) : À¯Çüº°, ½ÃÇè ¹æ¹ýº°, Á¦°øº°, ÃÖÁ¾»ç¿ëÀÚº°, Áö¿ªº° ¼¼°è ºÐ¼®Electromagnetic Compatibility Testing Market Forecasts to 2030 - Global Analysis By Type, Testing Method, Offering, End User and By Geography |
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According to Stratistics MRC, the Global Electromagnetic Compatibility (EMC) Testing Market is accounted for $3.04 billion in 2024 and is expected to reach $4.93 billion by 2030 growing at a CAGR of 8.4% during the forecast period. Electromagnetic compatibility (EMC) testing is a crucial process in ensuring electronic devices can operate without interference in their intended electromagnetic environment. It involves assessing the ability of a device to function correctly while not adversely affecting its surroundings or being affected by external electromagnetic interference. EMC testing evaluates emissions from the device, ensuring they fall within acceptable limits, and tests its immunity to external electromagnetic fields to prevent malfunctions or safety hazards. Testing typically involves various methods, such as radiated emissions testing, conducted emissions testing, and immunity testing, to certify compliance with regional regulations and industry standards.
According to Ericsson, 5G subscriptions are expected to skyrocket globally between 2019 and 2027, rising from over 12 million to over 4 billion. According to Ericsson, 5G subscriptions are expected to skyrocket globally between 2019 and 2027, rising from over 12 million to over 4 billion.
Rising electronic devices
The rising prevalence of electronic devices is a primary driver of the electromagnetic compatibility (EMC) testing market. As the number and complexity of electronic devices increase, so does the potential for electromagnetic interference (EMI) between them. EMC testing ensures that electronic devices can operate harmoniously without causing interference to each other or to other nearby electronic systems. With the proliferation of IoT devices, smart appliances, and wireless technologies, the demand for EMC testing services grows to guarantee compliance with regulatory standards and maintain product reliability.
Cost of compliance
The cost of compliance is a significant restraint in the electromagnetic compatibility (EMC) testing market. Ensuring products meet EMC standards necessitates rigorous testing to guarantee they don't interfere with other electronic devices or are immune to such interference. However, conducting these tests requires specialized equipment, skilled personnel, and dedicated facilities, all of which contribute to high operational costs. Moreover, as EMC regulations evolve and become more stringent, companies must invest continually in staying compliant, further adding to the financial burden. Consequently, smaller firms or startups may find it challenging to afford EMC testing, potentially limiting market entry and innovation.
Expansion of IoT and wireless technologies
The expansion of IoT and wireless technologies has significantly boosted the electromagnetic compatibility (EMC) testing market. With the proliferation of interconnected devices and wireless communication, ensuring EMC compliance has become paramount to prevent interference and maintain signal integrity. This surge in IoT and wireless devices has widened the scope of EMC testing, creating a growing demand for testing services and equipment. As new technologies emerge, the need for rigorous EMC testing standards becomes increasingly essential to guarantee seamless operation in crowded electromagnetic environments.
Increasing demand for wireless technologies
The increasing demand for wireless technologies poses a significant threat. As wireless technologies proliferate across industries like telecommunications, IoT, and automotive, the electromagnetic interference (EMI) generated also escalates. This surge in EMI necessitates rigorous EMC testing to ensure devices operate harmoniously without interfering with each other. Consequently, EMC testing laboratories face mounting pressure to accommodate the growing demand for testing services, leading to potential bottlenecks and delays. Moreover, as wireless technologies evolve rapidly, testing standards must keep pace, requiring continual investment in equipment and expertise.
The COVID-19 pandemic has significantly impacted the electromagnetic compatibility (EMC) testing market. With restrictions on movement and gatherings, many EMC testing facilities faced operational challenges, leading to delays in testing schedules and project completions. The shift towards remote work also affected the demand for EMC testing, as some industries slowed down their product development cycles. However, the growing reliance on digital technologies and the increased need for reliable electronic equipment in the healthcare and communication sectors spurred a demand for EMC testing services.
The Conducted Emissions and Immunity Testing segment is expected to be the largest during the forecast period
The conducted emissions and immunity testing segment has witnessed significant growth due to several factors. With the proliferation of electronic devices and technologies, there's a heightened concern about ensuring these systems can coexist without interference. As a result, stringent regulations and standards mandate thorough testing for emissions and immunity. This demand is further fueled by the increasing complexity of electronic systems and the need for reliable performance in diverse environments. Additionally, emerging sectors like automotive electronics, aerospace, and telecommunications are driving the need for more comprehensive EMC testing, particularly in this domain.
The automotive segment is expected to have the highest CAGR during the forecast period
The automotive segment's growth can be attributed to several factors. With the increasing complexity of automotive electronics and the integration of advanced technologies like electric vehicles (EVs), autonomous driving systems, and connected car features, the demand for EMC testing has surged. Stricter regulations and standards regarding electromagnetic interference (EMI) and electromagnetic susceptibility (EMS) in vehicles also drive this growth. Moreover, as automotive manufacturers strive to enhance vehicle safety, reliability, and performance, they prioritize rigorous EMC testing to ensure compliance with industry standards and regulations. This heightened focus on the automotive sector is expected to fuel further market expansion, with opportunities emerging for specialized testing equipment and services tailored to automotive applications.
North America has witnessed significant growth in the electromagnetic compatibility (EMC) testing market due to several factors. First, the region's robust industrial sector, including automotive, aerospace, and electronics, has driven the demand for EMC testing to ensure compliance with regulatory standards. Second, increasing technological advancements and the proliferation of electronic devices have heightened the need for thorough testing to mitigate interference issues. Third, stringent regulations and standards imposed by regulatory bodies like the Federal Communications Commission (FCC) and Industry Canada have propelled the adoption of EMC testing services across various industries.
The Asia-Pacific region has experienced significant growth in the electromagnetic compatibility (EMC) testing market due to several factors. Rapid industrialization and technological advancements across countries like China, Japan, South Korea, and India have led to increased demand for EMC testing services to ensure product compliance and reliability. Additionally, the expansion of industries such as automotive, electronics, telecommunications, and healthcare has created a robust demand for EMC testing services. The region's burgeoning manufacturing sector and the rise of IoT and connected devices have amplified the need for EMC testing to maintain product quality and safety standards.
Key players in the market
Some of the key players in Electromagnetic Compatibility (EMC) Testing market include Agilent Technologies, Inc., Bureau Veritas, CETECOM, Clark Testing, Dekra, DNB Engineering, Inc, Eurofins, FORCE Technology, Fortive, Frankonia Group, Intertek Group plc, Labtest Certifications Inc, QAI Laboratories, Rohde & Schwarz, SGS, TUV SUD, Washington Laboratories, Ltd. and ZEISS International.
In May 2024, DEKRA announced that it has successfully audited VicOne, a subsidiary of the cybersecurity giant Trend Micro, for receiving an ISO/SAE 21434 certificate in automotive cybersecurity. Following the successfully passed ASPICE CL2 level certification from DEKRA last year this certification signifies VicOne's commitment to providing automotive cybersecurity software tools and solutions that comply with international automotive cybersecurity standards.
In May 2024, Rohde & Schwarz and Viavi Solutions announced an expansion of their partnership for joint wireless lab test solutions. The two companies continue to address critical requirements based on new 3GPP and O-RAN specifications. Since the launch of this partnership, Rohde & Schwarz and VIAVI have established a reputation for compact, flexible solutions drawing from the strengths of both companies while delivering a seamless user experience.