Global Personal Dosimeter Market Research 2026

Global Personal Dosimeter Market Research 2026 market report provides detailed analysis including market size, growth trends, key players, segmentation, regional outlook, and forecast through 2036.

Pages: 220

Format: PDF

Date: 01-2026

Global Personal Dosimeter Market Research Report (2025–2036)

Market Overview

The Global Personal Dosimeter Market was valued at approximately USD 2.45 Billion in 2025 and is projected to reach a valuation of USD 4.28 Billion by the year 2036, expanding at a compound annual growth rate (CAGR) of 5.2% during the forecast period.

Personal dosimeters are critical safety instruments designed to monitor individual exposure to ionizing radiation. The market is evolving from passive monitoring systems toward active, real-time electronic personal dosimeters (EPDs) integrated with cloud-based dose management software. This growth is primarily fueled by the expansion of nuclear medicine, the modernization of nuclear power infrastructure in emerging economies, and tightening occupational safety mandates across industrial radiography and defense sectors.


Impact of COVID-19 & Post-Pandemic Transformation

The COVID-19 pandemic significantly affected the market in 2020 through dual channels. While elective radiological procedures in hospitals initially declined, the demand for CT scans and mobile X-ray units for lung diagnostics surged. Post-pandemic, the market has undergone a digital transformation. There is an increasing preference for wireless and "touchless" data retrieval systems to minimize physical contact with readout equipment, accelerating the shift from traditional TLD (Thermoluminescent Dosimeter) badges to Bluetooth-enabled electronic monitors.


Enhanced Market Segmentation

By Product Type:

  • Active Dosimeters (Electronic Personal Dosimeters - EPD): Real-time monitoring with audible/visual alarms. This is the fastest-growing segment.

  • Passive Dosimeters:

    • TLD (Thermoluminescent Dosimeter): Cost-effective for long-term monitoring.

    • OSL (Optically Stimulated Luminescence): Highly sensitive and resistant to environmental factors.

  • Direct-Read Pocket Ion Chambers (Pen Dosimeters): Primarily used for immediate, short-term exposure checks.

  • Digital/Smart Dosimeters: Integrated with mobile apps and GPS for environmental mapping.

By Application:

  • Medical & Healthcare: Diagnostic imaging (X-ray, CT), Interventional Radiology, and Proton Therapy.

  • Nuclear Power Plants: Operational safety, maintenance, and decommissioning projects.

  • Industrial & Manufacturing: Non-Destructive Testing (NDT), food irradiation, and industrial radiography.

  • Defense & Homeland Security: First responders, border security, and CBRN (Chemical, Biological, Radiological, and Nuclear) defense.

  • Oil & Gas: Monitoring Naturally Occurring Radioactive Material (NORM) during drilling and extraction.

  • Research & Academia: Nuclear physics laboratories and particle accelerators.


Top Key Players

The competitive landscape is characterized by a mix of specialized radiological technology firms and diversified industrial conglomerates:

  1. Mirion Technologies, Inc. – US (Global Market Leader)

  2. Thermo Fisher Scientific – US

  3. Landauer (Fortive Corporation) – US (Leader in OSL technology)

  4. Fuji Electric Co., Ltd. – Japan

  5. Polimaster Ltd. – Belarus/US

  6. Radiation Detection Company (RDC) – US

  7. Ludlum Measurements, Inc. – US

  8. ATOMTEX – Belarus

  9. Tracerco (Johnson Matthey) – UK

  10. Unfors RaySafe (Fluke Biomedical) – Sweden/US

  11. Eckert & Ziegler – Germany

  12. Arrow-Tech, Inc. – US

  13. Panasonic Corporation – Japan

  14. Biodex Medical Systems – US

  15. CIRNIC (China Institute for Radiation Protection) – China


Regional Analysis

  • North America: Holds the largest market share (~38%). Growth is driven by advanced healthcare infrastructure, strict OSHA (Occupational Safety and Health Administration) regulations, and significant defense spending on radiation detection.

  • Europe: A mature market focused on the decommissioning of older nuclear plants and the expansion of high-end oncological treatments in Germany, France, and the UK.

  • Asia-Pacific: The highest CAGR region. Driven by China’s massive investment in nuclear energy (the world’s largest fleet expansion) and the rising demand for medical imaging in India and Southeast Asia.

  • LAMEA: Growth is centered in the mining and oil/gas sectors in Brazil, South Africa, and the Middle East, where radiation safety protocols for industrial materials are becoming more stringent.


Porter’s Five Forces Analysis

  1. Threat of New Entrants (Low): High barriers due to stringent regulatory certifications (NRC, CE, IEC), specialized R&D requirements, and the need for established calibration laboratories.

  2. Bargaining Power of Buyers (High): Large hospital networks and government nuclear agencies buy in bulk and can demand integrated software solutions and comprehensive service contracts.

  3. Bargaining Power of Suppliers (Moderate): Suppliers of specialized sensors (silicon diodes, GM tubes) and scintillator crystals are specialized, giving them some leverage.

  4. Threat of Substitutes (Low): No viable alternative exists for measuring individualized absorbed doses in hazardous environments.

  5. Intensity of Rivalry (High): Intense competition between Mirion, Thermo Fisher, and Landauer on the basis of device weight, battery life, and data integration capabilities.


SWOT Analysis

  • Strengths: Essential nature of the product for legal and health compliance; high replacement cycle for passive badges; technological shift toward real-time data.

  • Weaknesses: High initial cost of electronic dosimeters; requirement for regular professional calibration.

  • Opportunities: Expansion of "Dose-as-a-Service" (DaaS) models; integration with Wearable/IoT platforms; rising demand for proton beam therapy.

  • Threats: Nuclear energy phase-outs in certain European countries; supply chain volatility for specialized microelectronics.


Trend Analysis

  • Wireless Connectivity: Integration of Bluetooth Low Energy (BLE) and Wi-Fi to allow safety officers to monitor doses remotely in real-time.

  • Miniaturization: Development of "wear-and-forget" dosimeters that are as light as a standard ID badge but possess the capabilities of an electronic monitor.

  • Big Data Analytics: Using AI to predict "high-dose events" by analyzing historical exposure patterns in industrial settings.

  • Hybrid Monitoring: Combining passive badges with active alarms for a dual-layered safety approach.


Drivers & Challenges

  • Drivers:

    • Rising global cancer cases leading to an increase in radiotherapy and nuclear medicine.

    • Expansion of the nuclear energy sector in the Asia-Pacific region to meet carbon-neutral goals.

    • Stringent government mandates for occupational safety in radioactive environments.

  • Challenges:

    • The high cost of maintaining calibration and compliance records for large workforces.

    • Public opposition to nuclear power in some Western regions limiting industrial growth.


Value Chain Analysis

  1. R&D: Focusing on sensor sensitivity (energy response) and power efficiency.

  2. Component Sourcing: Procurement of sensors, lithium batteries, and radiation-resistant housings.

  3. Manufacturing & Assembly: High-precision assembly followed by rigorous testing against radioactive sources.

  4. Distribution & Service: Sales through medical and industrial channels, accompanied by Calibration and Monitoring Services (the highest recurring revenue stream).

  5. End-User: Data logging and reporting to regulatory bodies.


Quick Recommendations for Stakeholders

  • For Manufacturers: Invest in Cloud-Based Dose Management Platforms. Hardware is becoming a commodity; the real value lies in the software that aggregates data for compliance reporting.

  • For Investors: Prioritize companies with strong footprints in the Asia-Pacific nuclear energy sector, as this will be the primary volume driver for the next decade.

  • For Healthcare Providers: Transition toward Active Dosimeters for interventional staff. Real-time feedback significantly reduces annual dose accumulation compared to waiting for a monthly badge report.

  • For R&D Teams: Focus on Energy-Independent Sensors that can accurately measure a wide range of radiation types (Alpha, Beta, Gamma, and Neutron) in a single compact device.

1. Market Overview of Personal Dosimeter
    1.1 Personal Dosimeter Market Overview
        1.1.1 Personal Dosimeter Product Scope
        1.1.2 Market Status and Outlook
    1.2 Personal Dosimeter Market Size by Regions:
    1.3 Personal Dosimeter Historic Market Size by Regions
    1.4 Personal Dosimeter Forecasted Market Size by Regions
    1.5 Covid-19 Impact on Key Regions, Keyword Market Size YoY Growth
        1.5.1 North America
        1.5.2 East Asia
        1.5.3 Europe
        1.5.4 South Asia
        1.5.5 Southeast Asia
        1.5.6 Middle East
        1.5.7 Africa
        1.5.8 Oceania
        1.5.9 South America
        1.5.10 Rest of the World
    1.6 Coronavirus Disease 2019 (Covid-19) Impact Will Have a Severe Impact on Global Growth
        1.6.1 Covid-19 Impact: Global GDP Growth, 2019, 2020 and 2021 Projections
        1.6.2 Covid-19 Impact: Commodity Prices Indices
        1.6.3 Covid-19 Impact: Global Major Government Policy
2. Covid-19 Impact Personal Dosimeter Sales Market by Type
    2.1 Global Personal Dosimeter Historic Market Size by Type
    2.2 Global Personal Dosimeter Forecasted Market Size by Type
    2.3 Pen Dosimeters
    2.4 Direct Read Electronic Dosimeters
3. Covid-19 Impact Personal Dosimeter Sales Market by Application
    3.1 Global Personal Dosimeter Historic Market Size by Application
    3.2 Global Personal Dosimeter Forecasted Market Size by Application
    3.3 Medical
    3.4 Nuclear Power Plant
    3.5 Industrial
4. Covid-19 Impact Market Competition by Manufacturers
    4.1 Global Personal Dosimeter Production Capacity Market Share by Manufacturers
    4.2 Global Personal Dosimeter Revenue Market Share by Manufacturers
    4.3 Global Personal Dosimeter Average Price by Manufacturers
5. Company Profiles and Key Figures in Personal Dosimeter Business
    5.1 Mirion Technologies
        5.1.1 Mirion Technologies Company Profile
        5.1.2 Mirion Technologies Personal Dosimeter Product Specification
        5.1.3 Mirion Technologies Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.2 Fuji Electric
        5.2.1 Fuji Electric Company Profile
        5.2.2 Fuji Electric Personal Dosimeter Product Specification
        5.2.3 Fuji Electric Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.3 Thermo Fisher Scientific
        5.3.1 Thermo Fisher Scientific Company Profile
        5.3.2 Thermo Fisher Scientific Personal Dosimeter Product Specification
        5.3.3 Thermo Fisher Scientific Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.4 Aloka
        5.4.1 Aloka Company Profile
        5.4.2 Aloka Personal Dosimeter Product Specification
        5.4.3 Aloka Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.5 Unfors RaySafe
        5.5.1 Unfors RaySafe Company Profile
        5.5.2 Unfors RaySafe Personal Dosimeter Product Specification
        5.5.3 Unfors RaySafe Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.6 RAE Systems
        5.6.1 RAE Systems Company Profile
        5.6.2 RAE Systems Personal Dosimeter Product Specification
        5.6.3 RAE Systems Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.7 ATOMTEX
        5.7.1 ATOMTEX Company Profile
        5.7.2 ATOMTEX Personal Dosimeter Product Specification
        5.7.3 ATOMTEX Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.8 Ludlum Measurements
        5.8.1 Ludlum Measurements Company Profile
        5.8.2 Ludlum Measurements Personal Dosimeter Product Specification
        5.8.3 Ludlum Measurements Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.9 Saphymo
        5.9.1 Saphymo Company Profile
        5.9.2 Saphymo Personal Dosimeter Product Specification
        5.9.3 Saphymo Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.10 CIRNIC
        5.10.1 CIRNIC Company Profile
        5.10.2 CIRNIC Personal Dosimeter Product Specification
        5.10.3 CIRNIC Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.11 Tracerco
        5.11.1 Tracerco Company Profile
        5.11.2 Tracerco Personal Dosimeter Product Specification
        5.11.3 Tracerco Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.12 Casella
        5.12.1 Casella Company Profile
        5.12.2 Casella Personal Dosimeter Product Specification
        5.12.3 Casella Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.13 Polimaster
        5.13.1 Polimaster Company Profile
        5.13.2 Polimaster Personal Dosimeter Product Specification
        5.13.3 Polimaster Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.14 Eckert & Ziegler
        5.14.1 Eckert & Ziegler Company Profile
        5.14.2 Eckert & Ziegler Personal Dosimeter Product Specification
        5.14.3 Eckert & Ziegler Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
    5.15 Biodex Medical Systems
        5.15.1 Biodex Medical Systems Company Profile
        5.15.2 Biodex Medical Systems Personal Dosimeter Product Specification
        5.15.3 Biodex Medical Systems Personal Dosimeter Production Capacity, Revenue, Price and Gross Margin
6. North America
    6.1 North America Personal Dosimeter Market Size
    6.2 North America Personal Dosimeter Key Players in North America
    6.3 North America Personal Dosimeter Market Size by Type
    6.4 North America Personal Dosimeter Market Size by Application
7. East Asia
    7.1 East Asia Personal Dosimeter Market Size
    7.2 East Asia Personal Dosimeter Key Players in North America
    7.3 East Asia Personal Dosimeter Market Size by Type
    7.4 East Asia Personal Dosimeter Market Size by Application
8. Europe
    8.1 Europe Personal Dosimeter Market Size
    8.2 Europe Personal Dosimeter Key Players in North America
    8.3 Europe Personal Dosimeter Market Size by Type
    8.4 Europe Personal Dosimeter Market Size by Application
9. South Asia
    9.1 South Asia Personal Dosimeter Market Size
    9.2 South Asia Personal Dosimeter Key Players in North America
    9.3 South Asia Personal Dosimeter Market Size by Type
    9.4 South Asia Personal Dosimeter Market Size by Application
10. Southeast Asia
    10.1 Southeast Asia Personal Dosimeter Market Size
    10.2 Southeast Asia Personal Dosimeter Key Players in North America
    10.3 Southeast Asia Personal Dosimeter Market Size by Type
    10.4 Southeast Asia Personal Dosimeter Market Size by Application
11. Middle East
    11.1 Middle East Personal Dosimeter Market Size
    11.2 Middle East Personal Dosimeter Key Players in North America
    11.3 Middle East Personal Dosimeter Market Size by Type
    11.4 Middle East Personal Dosimeter Market Size by Application
12. Africa
    12.1 Africa Personal Dosimeter Market Size
    12.2 Africa Personal Dosimeter Key Players in North America
    12.3 Africa Personal Dosimeter Market Size by Type
    12.4 Africa Personal Dosimeter Market Size by Application
13. Oceania
    13.1 Oceania Personal Dosimeter Market Size
    13.2 Oceania Personal Dosimeter Key Players in North America
    13.3 Oceania Personal Dosimeter Market Size by Type
    13.4 Oceania Personal Dosimeter Market Size by Application
14. South America
    14.1 South America Personal Dosimeter Market Size
    14.2 South America Personal Dosimeter Key Players in North America
    14.3 South America Personal Dosimeter Market Size by Type
    14.4 South America Personal Dosimeter Market Size by Application
15. Rest of the World
    15.1 Rest of the World Personal Dosimeter Market Size
    15.2 Rest of the World Personal Dosimeter Key Players in North America
    15.3 Rest of the World Personal Dosimeter Market Size by Type
    15.4 Rest of the World Personal Dosimeter Market Size by Application
16 Personal Dosimeter Market Dynamics
    16.1 Covid-19 Impact Market Top Trends
    16.2 Covid-19 Impact Market Drivers
    16.3 Covid-19 Impact Market Challenges
    16.4 Porter

Enhanced Market Segmentation

By Product Type:

  • Active Dosimeters (Electronic Personal Dosimeters - EPD): Real-time monitoring with audible/visual alarms. This is the fastest-growing segment.

  • Passive Dosimeters:

    • TLD (Thermoluminescent Dosimeter): Cost-effective for long-term monitoring.

    • OSL (Optically Stimulated Luminescence): Highly sensitive and resistant to environmental factors.

  • Direct-Read Pocket Ion Chambers (Pen Dosimeters): Primarily used for immediate, short-term exposure checks.

  • Digital/Smart Dosimeters: Integrated with mobile apps and GPS for environmental mapping.

By Application:

  • Medical & Healthcare: Diagnostic imaging (X-ray, CT), Interventional Radiology, and Proton Therapy.

  • Nuclear Power Plants: Operational safety, maintenance, and decommissioning projects.

  • Industrial & Manufacturing: Non-Destructive Testing (NDT), food irradiation, and industrial radiography.

  • Defense & Homeland Security: First responders, border security, and CBRN (Chemical, Biological, Radiological, and Nuclear) defense.

  • Oil & Gas: Monitoring Naturally Occurring Radioactive Material (NORM) during drilling and extraction.

  • Research & Academia: Nuclear physics laboratories and particle accelerators.


Top Key Players

The competitive landscape is characterized by a mix of specialized radiological technology firms and diversified industrial conglomerates:

  1. Mirion Technologies, Inc. – US (Global Market Leader)

  2. Thermo Fisher Scientific – US

  3. Landauer (Fortive Corporation) – US (Leader in OSL technology)

  4. Fuji Electric Co., Ltd. – Japan

  5. Polimaster Ltd. – Belarus/US

  6. Radiation Detection Company (RDC) – US

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