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The global non-ionizing radiation/EMF detection, measurement, and safety market is expected to grow at a CAGR of 4.5% during the period 2024-2032.
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In the recent past, there has been a significant increase in the use of electronic and electrical gadgets in domestic as well as industrial sectors. Consequently, concerns regarding increasing exposure to non-ionizing radiation and its effects have also gained prominence; consumer awareness of possible health effects of exposure to radiation has increased. Also, employees working in organizations or sites where they may be exposed to such radiation are becoming increasingly aware and seek to monitor the levels of radiation to which they are likely to be exposed at work. With increasing use of electronic and electrical devices, the demand for non-ionizing radiation/EMF detection devices is also likely to grow. The different types of non-ionizing radiation/EMF detection devices available include personal monitoring devices, area monitoring devices, and handheld devices. Among these, the handheld devices segment is expected to drive the market. North America and Europe are expected to be key markets.
Non-ionizing radiation is a type of electromagnetic radiation that does not possess adequate energy to ionise atoms in biological tissue. Radio waves, microwaves, infrared light, and regular light are examples of this sort of radiation.
Radiation pervades the electromagnetic spectrum, ranging from very high-energy (high-frequency) to very low-energy (low-frequency) on the ends of the spectrum. X-rays, gamma rays and some higher-energy ultraviolet (UV) rays are examples of high energy radiation. Medical equipment such as X-ray imaging machines and CT scans produce low levels of such type of radiation. Such radiation is ionizing, and can affect atoms of cells by ionizing (removing an electron form an atom). Ionizing radiation has been associated with damage to DNA, genetic mutations and cancer.
Extremely low-frequency (ELF) radiation, on the other hand, signifies non-ionizing radiation. While such radiation can make atoms move or vibrate, it not considered to be harmful enough to damage DNA or cells. Between ELF high-energy radiation, other types of non-ionizing radiation exist, such as radiofrequency (RF), visible light and infrared. In most forms of radiation, electric and magnetic fields combine as a singular field, commonly called an electromagnetic field (EMF). Household devices including microwave ovens, cell-phones, hair dryers, Bluetooth devices, computers, as well as power lines, generate this type of radiation.
Applications of non-ionizing radiation/EMF detection devices include industry (monitoring workers’ exposure to electromagnetic fields in industrial areas, machinery and manufacturing processes), railway (monitoring people’s exposure to electromagnetic fields inside and outside trains, close to communication systems, and in stations), electromedicine (monitoring medical staff’s exposure to equipment), telecommunications (evaluating radiation produced by cell phone systems, broadcasting systems and other communication systems), Radio frequency identification (RFID) and electronic article surveillance (EAS), laboratories and R&d (monitoring radiofrequency equipment), defence (monitoring sources of electromagnetic radiation such as radar stations, satellite equipment, and communication equipment), and energy (evaluating electromagnetic fields associated with supply of electricity, including power stations, power lines, transformers, and electric motors). Thus, applications of non-ionizing radiation/EMF detection devices across sectors is expected to boost the market.
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By detector, the market is segmented according to:
By device, the market is classified according to:
By end-use, the market is divided into:
By region, the market is segmented into:
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The report presents a detailed analysis of the following key players in the market, looking into their capacity, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
The EMR report gives an in-depth insight into the industry by providing a SWOT analysis as well as an analysis of Porter’s Five Forces model.
REPORT FEATURES | DETAILS |
Base Year | 2023 |
Historical Period | 2018-2023 |
Forecast Period | 2024-2032 |
Scope of the Report |
Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment:
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Breakup by Detector |
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Breakup by Device |
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Breakup by End Use |
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Breakup by Region |
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Market Dynamics |
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Competitive Landscape |
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Companies Covered |
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Report Price and Purchase Option | Explore our purchase options that are best suited to your resources and industry needs. |
Delivery Format | Delivered as an attached PDF and Excel through email, with an option of receiving an editable PPT, according to the purchase option. |
*While we strive to always give you current and accurate information, the numbers depicted on the website are indicative and may differ from the actual numbers in the main report. At Expert Market Research, we aim to bring you the latest insights and trends in the market. Using our analyses and forecasts, stakeholders can understand the market dynamics, navigate challenges, and capitalize on opportunities to make data-driven strategic decisions.*
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The market is estimated to grow at a CAGR of 4.5% between 2024 and 2032.
The major drivers of the market include the rising application of non-ionizing radiation/EMF detection devices in various end use sectors, increasing awareness pertaining to the exposure to radiation, rapid urbanisation, and increasing military and defence and healthcare expenditure in the emerging economies.
The technological advancements in the military and defence industry, coupled with the growing R&D activities in the healthcare industry are expected to be the key trends guiding the growth of the industry.
The major regions in the industry are North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa.
High-frequency, and low-frequency, among others are the detectors based on which the market has been segmented.
Personal monitoring devices, handheld monitoring devices, and area monitoring devices are the major devices based on which the market has been divided.
Residential, healthcare, military and homeland security, manufacturing, laboratory and education, and telecommunications, among others are the different end uses included in the market report.
The major players in the industry are Wavecontrol Inc., Narda Safety Test Solutions GmbH, Mirion Technologies, Inc., Tecpel Co.,Ltd, and Sper Scientific Direct., among others.
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+1-415-325-5166
Vietnam
193/26/4 St.no.6, Ward Binh Hung Hoa, Binh Tan District, Ho Chi Minh City
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United States (Head Office)
30 North Gould Street, Sheridan, WY 82801
+1-415-325-5166
Australia
63 Fiona Drive, Tamworth, NSW
+61-448-061-727
India
C130 Sector 2 Noida, Uttar Pradesh 201301
+91-858-608-1494
Philippines
40th Floor, PBCom Tower, 6795 Ayala Avenue Cor V.A Rufino St. Makati City, 1226.
+63-287-899-028, +63-967-048-3306
United Kingdom
6 Gardner Place, Becketts Close, Feltham TW14 0BX, Greater London
+44-753-713-2163
Vietnam
193/26/4 St.no.6, Ward Binh Hung Hoa, Binh Tan District, Ho Chi Minh City
+84-865-399-124
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