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Thermal Imaging Market Size and Forecast 2021 - 2031, Global and Regional Share, Trend, and Growth Opportunity Analysis Report Coverage: By Product Type, Application, Type, Technology, End-Use Industry, and Geography
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The thermal imaging market size is expected to reach US$ 7.66 billion by 2031 from 4.54 billion in 2024, at an estimated CAGR of 7.7% from 2025 to 2031.

By Geography the Thermal Imaging market is segmented into North America, Europe, Asia Pacific, Middle East & Africa and South and Central America. In 2024, the North America regions held a significant market share. The thermal imaging market in North America contributes notably to the global market owing to the growing focus on surveillance and security, the established automotive market, rising investments in medical devices, and surging adoption in the military and defense sectors. The region has established major manufacturers and suppliers of thermal imaging solutions, which are focused on catering to the rising demand. Owing to the rising demand for private security services in North America, personal safety, property protection, and asset security are becoming increasingly important. Customers and companies seek proactive security measures due to rising crime rates. With its customized services, cutting-edge technology, and dedication to customer satisfaction, the private security sector is well-positioned to handle these escalating challenges and guarantee effective security solutions. In July 2024, Teledyne FLIR, part of Teledyne Technologies Incorporated, announced the next-generation embedded software for the ITAR-free Boson+ thermal camera module, delivering high-performing uncooled thermal imaging technology for defense, firefighting, automotive, security, and surveillance applications. Thermal cameras are being increasingly used in automotive applications. Governments of various countries in North America are providing financial support for the creation, testing, and study of autonomous vehicles. These programs aim to retain regional competitiveness in the autonomous car market, enhance transportation safety, and accelerate technological developments.

The Thermal Imaging market analysis has been carried out by considering the following segments: Product Type, Application, Type, Technology, End Use Industry.

Based on technology, the market is divided into cooled and uncooled. Cooled imagers are bulkier and more expensive than uncooled imagers, but they offer very high image quality and are compatible with longer-range lenses. A modern cooled thermal imaging camera incorporates an imaging sensor with a cryocooler, which reduces the sensor temperature to cryogenic levels. This reduction in sensor temperature is required to significantly lower thermally-induced noise levels compared to noise generated by the signal from the scene being imaged. Features of cooled thermal imaging cameras, such as high sensitivity, longer detection range, faster response, and stable performance, make them suitable for various applications such as aerospace and ships.

Moreover, factor such as rise in military expenditure and robust use of thermal imaging in healthcare propel the thermal imaging market growth. Also, integration of artificial intelligence in thermal and acoustic imaging systems is expected to bring new thermal imaging market trends in the coming years.

By application, the market is segmented into SWIR, MWIR, and LWIR. Short-wave infrared (SWIR) is typically defined as the wavelength range of 0.9-1.7 μm. SWIR cameras are valuable for high-temperature thermal imaging applications with object temperatures above 150°C. SWIR cameras provide fewer benefits than their counterparts (MWIR/LWIR). These cameras can capture fine detail through smog, clouds, and haze. SWIR cameras implement wavelength technology capable of penetrating cloud cover and capturing clear images. SWIR imagers are used in many applications, including laser beam profiling, silicon inspection, hyperspectral imaging, chemical and plastics sensing, agricultural sensing, machine vision imaging, surveillance systems, and medical imaging. In addition, a few applications of SWIR are monitoring industrial furnaces, inspecting hot-end glass bottles, and detecting slag impurities in molten metals.

Teledyne FLIR LLC; Testo SE & Co. KGaA; Fluke Corporation; UNI-TREND TECHNOLOGY (CHINA) CO., LTD.; Hangzhou Microimage Software Co., Ltd.; Megger Group Limited; and SDT International SA/NV are among the key players profiled in the thermal imaging market report.

The Thermal Imaging market forecast is estimated on the basis of various secondary and primary research findings such as key company publications, association data, and databases. Exhaustive secondary research has been conducted using internal and external sources to obtain qualitative and quantitative information related to the Thermal Imaging market growth. The process also helps obtain an overview and forecast of the market with respect to all the market segments. Also, multiple primary interviews have been conducted with industry participants to validate the data and gain analytical insights. This process includes industry experts such as VPs, business development managers, market intelligence managers, and national sales managers, along with external consultants such as valuation experts, research analysts, and key opinion leaders, specializing in the Thermal Imaging market.

Table Of Contents

1. Introduction

2. Executive Summary

3. Research Methodology

4. Thermal Imaging Market Landscape

5. Thermal Imaging Market - Key Market Dynamics

6. Thermal Imaging Market - Global Market Analysis

7. Thermal Imaging Market Analysis - by Product Type

8. Thermal Imaging Market Analysis - by Application

9. Thermal Imaging Market Analysis - by Type

10. Thermal Imaging Market Analysis - by Technology

11. Thermal Imaging Market Analysis - by End Use Industry

12. Thermal Imaging Market - Geographical Analysis

13. Competitive Landscape

14. Industry Landscape

15. Company Profiles

16. Appendix

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