Global Heat Stress Monitor Market Size, Share, Trends, Industry Growth by Type (Fixed, Handheld, Portable), by Technology (Black Globe/Globe Thermometer, Natural Wet Bulb, Dry Bulb Thermometer, Relative Humidity & Air Flow), by End-Use Industry, by Region, and Forecast to 2030

Report ID: RCMA658 | Report Format: PDF + Excel | Starting Price: 2680/- USD |

The global heat stress monitor market size is anticipated to register a significant CAGR of over 5% during the forecast period from 2023 to 2030. The market is propelled by stringent workplace safety rules, heightened awareness of heat-related health risks, global warming effects, and technological advancements. Industries, sports, and healthcare sectors demand accurate monitoring to prevent health issues. Athletes, military personnel, and outdoor enthusiasts also drive adoption. Additionally, healthcare applications, research needs, and government initiatives contribute to market growth. These factors collectively promote the importance of monitoring heat stress for safety, health, and productivity across various sectors.

Market Snapshot:

Benchmark Year 2022
Market Size $ xxx.x Mn lock
Market Growth (CAGR) > 5 % (2023-2030)
Largest Market Share North America
Analysis Period 2020-2030
Market Players Honeywell International Inc., Dragerwerk AG & Co. KGaA, First Alert Inc., Dynasense, and 3M Company

Market Drivers:

Workplace Safety Regulations: Stringent regulations and standards related to occupational safety and health drive the demand for heat stress monitors, especially in industries like construction, manufacturing, agriculture, and mining. Employers are required to provide safe working conditions, which includes monitoring and managing heat stress risks.

Rising Awareness of Heat-Related Illnesses: Increasing awareness about the risks associated with heat-related illnesses, such as heat exhaustion and heatstroke, is driving the need for effective heat stress monitoring. Education and awareness campaigns highlight the importance of monitoring environmental conditions to prevent these health issues.

Global Warming and Climate Change: The ongoing rise in global temperatures due to climate change is intensifying heat stress conditions in various regions. This is prompting industries and individuals to invest in monitoring solutions to safeguard workers, athletes, and the general population from heat-related risks.

Occupational Health and Productivity: Employers recognize that heat stress can lead to reduced productivity, absenteeism, and higher healthcare costs. Monitoring heat stress levels can help prevent these negative impacts, leading to improved worker well-being and efficiency.

Technological Advancements: Continuous advancements in sensor technology, wireless communication, data analytics, and wearable devices are making heat stress monitors more sophisticated, accurate, and user-friendly. These advancements encourage adoption across industries.

Demand from Sports and Athletics: Athletes and sports professionals use heat stress monitors to optimize performance and prevent heat-related injuries during training and competitions. The growing sports industry contributes to the market’s expansion.

Military and Defense Applications: Military personnel often operate in challenging environments, including extreme heat. Heat stress monitors play a vital role in ensuring the health and readiness of military personnel during training and deployment.

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Market Insights:

Market Analysis by Product Type:

The global heat stress monitor market is bifurcated into product type, technology, end-use industry, and geography. On the basis of product type, the market is further segmented into fixed, handheld, and portable. The handheld heat stress monitor segment is the largest segment of the market, due to its increasing demand in outdoor and remote settings. Handheld heat stress monitors offer a balance between convenience and functionality, making them versatile tools for various applications. Industries like agriculture, construction, manufacturing, and emergency services often require spot-checking heat stress levels in different areas, where mobility is essential. Workers can easily carry handheld devices, quickly assess conditions, and take immediate actions to mitigate risks. These monitors are also commonly used by health and safety professionals during workplace inspections.

Additionally, the handheld segment is often favored by athletes, coaches, and outdoor enthusiasts who need to monitor heat stress during training, competitions, or recreational activities. The portability and ease of use of handheld monitors make them a preferred choice in scenarios where continuous monitoring isn’t necessary, but occasional checks are crucial.

Fixed heat stress monitors are installed in a fixed location and are used to monitor the ambient heat stress conditions in a specific area. They are typically used in industrial settings, such as manufacturing plants and construction sites.

Handheld heat stress monitors are portable devices that can be used to measure the heat stress conditions of individuals. They are typically used in outdoor settings, such as athletics and sports events.

Portable heat stress monitors are a combination of fixed and handheld monitors. They can be installed in a fixed location, but they can also be moved to different locations as needed. They are typically used in military and law enforcement settings.

Market Analysis by End-Use Industry:

On the basis of end-use industry, the global market is further segmented into manufacturing, athletics & sports, mining, military, oil and gas, and others. The manufacturing segment dominated the market in the benchmark year 2022 and expected to grow at the same trend over the forecast period. This is attributed to the combination of factors that make heat stress monitoring particularly crucial in manufacturing environments. With a significant workforce often exposed to elevated temperatures due to machinery and production processes, ensuring employee safety becomes a top priority. Stringent workplace safety regulations mandate heat stress monitoring and management, making compliance a strong driving force. Manufacturing’s reliance on a steady and productive workforce amplifies the importance of preventing heat-related illnesses that could lead to absenteeism and reduced output. The diverse nature of manufacturing operations, spanning factories to production lines, underscores the need for tailored monitoring solutions.

Manufacturing: Manufacturing environments often involve high temperatures and physical exertion. Heat stress monitors are essential for ensuring worker safety, preventing heat-related illnesses, and maintaining productivity. Compliance with workplace safety regulations further fuels the adoption of monitoring solutions.

Athletics & Sports: In the athletics and sports sector, athletes and coaches rely on heat stress monitors to optimize performance and minimize the risk of heat-related injuries during training and competitions. Accurate monitoring helps adjust training regimes and hydration strategies based on real-time environmental conditions.

Mining: Mining operations are frequently conducted in challenging environments with elevated temperatures. Heat stress monitors play a critical role in safeguarding miners’ well-being and preventing heat-related health issues. These monitors contribute to compliance with safety regulations and minimize downtime due to health incidents.

Military: Military personnel often operate in extreme conditions, including high temperatures. Heat stress monitors are crucial for ensuring soldiers’ health and performance during training and deployments. Monitoring helps military organizations mitigate risks associated with heat-related injuries.

Oil and Gas: The oil and gas industry involves physically demanding tasks in various climates. Heat stress monitors help protect workers from heat-related illnesses, maintain safety standards, and optimize operational efficiency. Monitoring is essential for compliance and risk management.

Other Industries: Several other sectors, such as agriculture, construction, healthcare, and emergency services, also rely on heat stress monitors. Agriculture workers, for example, face heat stress in outdoor settings. Healthcare professionals monitor patients susceptible to heat-related illnesses. Emergency services personnel require monitoring during disaster response.

The heat stress monitor market research report presents the analysis of each segment from 2020 to 2030 considering 2022 as the base year for the research. The compounded annual growth rate (CAGR) for each respective segment is calculated for the forecast period from 2023 to 2030.

Historical & Forecast Period

  • 2020-21 – Historical Year
  • 2022 – Base Year
  • 2023-2030 – Forecast Period

Market Segmentation:

By Product Type:

  • Fixed
  • Handheld
  • Portable

By Technology:

  • Black Globe/Globe Thermometer
  • Natural Wet Bulb
  • Dry Bulb Thermometer
  • Relative Humidity & Air Flow

By End-Use Industry:

  • Manufacturing
  • Athletics & Sports
  • Mining
  • Military
  • Oil and Gas
  • Others

By Region:

  • North America
  • Europe
  • Asia Pacific
  • Latin America
  • Middle East & Africa

Regional Analysis:

Geographically, North America stands as the dominant region in the global heat stress monitor market, commanding the largest market share due to several compelling factors. The region boasts heightened awareness regarding heat-related health issues, stemming from its warm climate and a substantial outdoor workforce. This heightened awareness aligns with stringent government regulations mandating heat stress prevention measures, including the provision of heat stress monitors for employees in hot work environments. Notably, North America houses significant manufacturing and construction sectors, industries acutely susceptible to heat stress. The burgeoning demand for heat stress monitors from these sectors propels the market’s growth across the region.

Meanwhile, in the Asia Pacific, a dynamic landscape is projected for the heat stress monitor market during the forecast period. This region is anticipated to experience the swiftest expansion due to several catalysts. A mounting consciousness about heat-induced ailments stems from a rising number of individuals engaged in hot working conditions. Furthermore, industries operating in heat-intensive environments, such as manufacturing, construction, and agriculture, are showing a heightened demand for heat stress monitors. Compounding this growth is the increasing disposable income in the Asia Pacific, making these monitoring devices more accessible to a broader populace within the region. As such, the Asia Pacific is poised to be a key driver of the global heat stress monitor market’s growth in the coming years.

Competitive Analysis:

Some of the major market players operating in the global heat stress monitor market are Honeywell International Inc., Dragerwerk AG & Co. KGaA, First Alert Inc., Dynasense, and 3M Company. Companies are exploring markets by expansion, new investment, the introduction of new services, and collaboration as their preferred strategies. Players are exploring new geography through expansion and acquisition to gain a competitive advantage through joint synergy.

Recent Developments:

  • Honeywell International Inc. launched a new heat stress monitor called the Honeywell BW™ Radiant in 2022. The BW™ Radiant is a portable heat stress monitor that can be used to measure the heat stress conditions of individuals. It is designed to be used in a variety of settings, including athletics, manufacturing, and construction.
  • Dragerwerk AG & Co. KGaA launched a new heat stress monitoring system called the Drager Safetyguard WBGT in 2022. The Drager Safetyguard WBGT is a fixed-mount heat stress monitoring system that can be used to measure the heat stress conditions of a work area. It is designed to be used in a variety of industries, including manufacturing, construction, and mining.
  • First Alert Inc. launched a new heat stress monitor called the First Alert Heat Stroke Tracker in 2021. The First Alert Heat Stroke Tracker is a wearable heat stress monitor that can be used to measure the heat stress conditions of individuals. It is designed to be used in a variety of settings, including athletics, outdoor work, and military training.
  • Dynasense launched a new heat stress monitor called the Dynasense Heat Stress Monitor in 2020. The Dynasense Heat Stress Monitor is a portable heat stress monitor that can be used to measure the heat stress conditions of individuals. It is designed to be used in a variety of settings, including athletics, manufacturing, and construction.
  • 3M Company launched a new heat stress monitor called the 3M™ Personal Heat Stress Monitor in 2019. The 3M™ Personal Heat Stress Monitor is a wearable heat stress monitor that can be used to measure the heat stress conditions of individuals. It is designed to be used in a variety of settings, including athletics, outdoor work, and military training.

Key Companies:

  • Honeywell International Inc.
  • Dragerwerk AG & Co. KGaA
  • First Alert Inc.
  • Dynasense
  • 3M Company
  • TSI Incorporated
  • Wearable Technologies
  • FLIR Systems Inc.
  • Coretex
  • TempTron
  • Trotec GmbH
  • Bruel & Kjaer Vibro

Key Questions Answered by Heat Stress Monitor Market Report

  • Global heat stress monitor market forecasts from 2023-2030
  • Regional market forecasts from 2023-2030 covering Asia-Pacific, North America, Europe, Middle East & Africa, and Latin America
  • Country-level forecasts from 2023-2030 covering 15 major countries from the regions as mentioned above
  • Heat stress monitor submarket forecasts from 2023-2030 covering the market by product type, technology, end-use industry, and geography
  • Various industry models such as SWOT analysis, Value Chain Analysis about the market
  • Analysis of the key factors driving and restraining the growth of the global, regional, and country-level heat stress monitor markets from 2023-2030
  • Competitive Landscape and market positioning of top 10 players operating in the market
Heat Stress Monitor Market
Table of Contents:

1. Preface


1.1. Report Description
1.1.1. Purpose of the Report
1.1.2. Target Audience
1.1.3. USP and Key Offerings
1.2. Research Scope
1.3. Research Methodology
1.3.1. Phase I – Secondary Research
1.3.2. Phase II – Primary Research
1.3.3. Phase III – Expert Panel Review
1.4. Assumptions

 

2. Executive Summary


2.1. Global Heat Stress Monitor Market Portraiture
2.2. Global Heat Stress Monitor Market, by Product Type, 2022 (USD Mn)
2.3. Global Heat Stress Monitor Market, by Technology, 2022 (USD Mn)
2.4. Global Heat Stress Monitor Market, by End-Use Industry, 2022 (USD Mn)
2.5. Global Heat Stress Monitor Market, by Geography, 2022 (USD Mn)

 

3. Global Heat Stress Monitor Market Analysis


3.1. Heat Stress Monitor Market Overview
3.2. Market Inclination Insights
3.3. Market Dynamics
3.3.1. Drivers
3.3.2. Challenges
3.3.3. Opportunities
3.4. Attractive Investment Proposition
3.5. Competitive Analysis
3.6. Porter’s Five Force Analysis
3.6.1. Bargaining Power of Suppliers
3.6.2. Bargaining Power of Buyers
3.6.3. Threat of New Entrants
3.6.4. Threat of Substitutes
3.6.5. Degree of Competition
3.7. PESTLE Analysis
3.8. COVID-19 Impact Analysis

 

4. Global Heat Stress Monitor Market By Product Type, 2020 – 2030 (USD Mn)


4.1. Overview
4.2. Fixed
4.3. Handheld
4.4. Portable

 

5. Global Heat Stress Monitor Market By Technology, 2020 – 2030 (USD Mn)


5.1. Overview
5.2. Black Globe/Globe Thermometer
5.3. Natural Wet Bulb
5.4. Dry Bulb Thermometer
5.5. Relative Humidity & Air Flow

 

6. Global Heat Stress Monitor Market By End-Use Industry, 2020 – 2030 (USD Mn)


6.1. Overview
6.2. Manufacturing
6.3. Athletics & Sports
6.4. Mining
6.5. Military
6.6. Oil and Gas
6.7. Others

 

7. North America Heat Stress Monitor Market Analysis and Forecast, 2020 – 2030 (USD Mn)


7.1. Overview
7.2. North America Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
7.3. North America Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
7.4. North America Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
7.5. North America Heat Stress Monitor Market by Country, (2020-2030 USD Mn)
7.5.1. U.S.
7.5.1.1. U.S. Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
7.5.1.2. U.S. Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
7.5.1.3. U.S. Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
7.5.2. Canada
7.5.2.1. Canada Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
7.5.2.2. Canada Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
7.5.2.3. Canada Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
7.5.3. Mexico
7.5.3.1. Mexico Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
7.5.3.2. Mexico Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
7.5.3.3. Mexico Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)

 

8. Europe Heat Stress Monitor Market Analysis and Forecast, 2020 - 2030 (USD Mn)


8.1. Overview
8.2. Europe Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.3. Europe Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.4. Europe Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5. Europe Heat Stress Monitor Market by Country, (2020-2030 USD Mn)
8.5.1. Germany
8.5.1.1. Germany Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.1.2. Germany Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.1.3. Germany Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5.2. U.K.
8.5.2.1. U.K. Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.2.2. U.K. Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.2.3. U.K. Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5.3. France
8.5.3.1. France Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.3.2. France Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.3.3. France Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5.4. Spain
8.5.4.1. Spain Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.4.2. Spain Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.4.3. Spain Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5.5. Italy
8.5.5.1. Italy Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.5.2. Italy Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.5.3. Italy Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
8.5.6. Rest of Europe
8.5.6.1. Rest of Europe Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
8.5.6.2. Rest of Europe Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
8.5.6.3. Rest of Europe Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)

 

9. Asia Pacific Heat Stress Monitor Market Analysis and Forecast, 2020 - 2030 (USD Mn)


9.1. Overview
9.2. Asia Pacific Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.3. Asia Pacific Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.4. Asia Pacific Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
9.5. Asia Pacific Heat Stress Monitor Market by Country, (2020-2030 USD Mn)
9.5.1. China
9.5.1.1. China Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.5.1.2. China Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.5.1.3. China Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
9.5.2. Japan
9.5.2.1. Japan Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.5.2.2. Japan Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.5.2.3. Japan Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
9.5.3. India
9.5.3.1. India Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.5.3.2. India Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.5.3.3. India Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
9.5.4. South Korea
9.5.4.1. South Korea Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.5.4.2. South Korea Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.5.4.3. South Korea Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
9.5.5. Rest of Asia Pacific
9.5.5.1. Rest of Asia Pacific Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
9.5.5.2. Rest of Asia Pacific Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
9.5.5.3. Rest of Asia Pacific Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)

 

10. Latin America (LATAM) Heat Stress Monitor Market Analysis and Forecast, 2020 - 2030 (USD Mn)


10.1. Overview
10.2. Latin America Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
10.3. Latin America Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
10.4. Latin America Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
10.5. Latin America Heat Stress Monitor Market by Country, (2020-2030 USD Mn)
10.5.1. Brazil
10.5.1.1. Brazil Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
10.5.1.2. Brazil Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
10.5.1.3. Brazil Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
10.5.2. Argentina
10.5.2.1. Argentina Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
10.5.2.2. Argentina Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
10.5.2.3. Argentina Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
10.5.3. Rest of Latin America
10.5.3.1. Rest of Latin America Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
10.5.3.2. Rest of Latin America Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
10.5.3.3. Rest of Latin America Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)

 

11. Middle East and Africa Heat Stress Monitor Market Analysis and Forecast, 2020 - 2030 (USD Mn)


11.1. Overview
11.2. MEA Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
11.3. MEA Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
11.4. MEA Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
11.5. Middle East and Africa Heat Stress Monitor Market, by Country, (2020-2030 USD Mn)
11.5.1. GCC
11.5.1.1. GCC Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
11.5.1.2. GCC Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
11.5.1.3. GCC Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
11.5.2. South Africa
11.5.2.1. South Africa Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
11.5.2.2. South Africa Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
11.5.2.3. South Africa Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)
11.5.3. Rest of MEA
11.5.3.1. Rest of MEA Heat Stress Monitor Market by Product Type, (2020-2030 USD Mn)
11.5.3.2. Rest of MEA Heat Stress Monitor Market by Technology, (2020-2030 USD Mn)
11.5.3.3. Rest of MEA Heat Stress Monitor Market by End-Use Industry, (2020-2030 USD Mn)

 

12. Competitive Landscape


12.1. Company Market Share Analysis, 2022
12.2. Competitive Dashboard
12.3. Competitive Benchmarking
12.4. Geographic Presence Heatmap Analysis
12.5. Company Evolution Matrix
12.5.1. Star
12.5.2. Pervasive
12.5.3. Emerging Leader
12.5.4. Participant
12.6. Strategic Analysis Heatmap Analysis
12.7. Key Developments and Growth Strategies
12.7.1. Mergers and Acquisitions
12.7.2. New Product Launch
12.7.3. Joint Ventures
12.7.4. Others

 

13. Company Profiles


13.1. Honeywell International Inc.
13.1.1. Business Description
13.1.2. Financial Health and Budget Allocation
13.1.3. Product Positions/Portfolio
13.1.4. Recent Development
13.1.5. SWOT Analysis
13.2. Dragerwerk AG & Co. KGaA
13.3. First Alert Inc.
13.4. Dynasense
13.5. 3M Company
13.6. TSI Incorporated
13.7. Wearable Technologies
13.8. FLIR Systems Inc.
13.9. Coretex
13.10. TempTron
13.11. Trotec GmbH
13.12. Bruel & Kjaer Vibro
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