Non-Contact Temperature Measurement System Market Size, Growth Strategies, Competitive Landscape, Factor Analysis, 2022–

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The global Non-Contact Temperature Measurement System market is forecasted to grow at a rate of 6.1% from USD 860.5 million in 2019 to USD 1350.2 million in 2027.

The global Non-Contact Temperature Measurement Systems market is projected to experience a growth rate of 6.1%, increasing from USD 860.5 million in 2019 to USD 1350.2 million in 2027. The advancement of technology and the wide range of applications have facilitated temperature monitoring in various production processes. As a result, non-contact temperature measurement systems have become essential electronic devices utilized across multiple industries such as automotive, healthcare, electronics, metals mining, and others. The anticipated high demand in the future is expected to drive the market forward. For example, temperature monitoring is crucial in manufacturing industries where numerous processes and environments require careful temperature management. Consequently, non-contact infrared temperature measurement using infrared high-temperature sensors has become a preferred method due to its long-term and maintenance-free operation in industrial settings. Additionally, amidst the pandemic, temperature sensors have gained even more significance for temperature monitoring. In the healthcare sector, measuring the body temperature of the general public during the common coronavirus (COVID-19) outbreak is of paramount medical importance. In June 2020, Arvi, a health-tech startup, introduced contactless thermal scanning kiosks. These instruments feature a simple, robust, and cost-effective design, making them ideal for industrial measurement tasks. The presence of these features is expected to drive demand throughout the forecast period.

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Companies considered and profiled in this market study

Testo SE Co. KGaA, Micro Epsilon, CHINO Corporation, Fluke Corporation, OMEGA Engineering Inc., AMETEK Land, DIAS Infratech GmbH, PCE Instruments, Dwyer Instruments, TE Connectivity. has been profiled in the report. They are significant market players.

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Driving Factors of the Non-Contact Temperature Measurement System Market:

  1. Increasing Demand for Industrial Automation: The growing trend of industrial automation across various sectors has led to a higher demand for non-contact temperature measurement systems. These systems play a critical role in monitoring and controlling temperature in automated production processes.
  2. Advancements in Technology: Technological advancements, such as the development of advanced infrared sensors and thermal imaging cameras, have significantly improved the accuracy and efficiency of non-contact temperature measurement systems. This has increased their adoption across industries.
  3. Wide Range of Applications: Non-contact temperature measurement systems find applications in diverse industries such as automotive, healthcare, electronics, metals mining, and others. The ability of these systems to measure temperature without physical contact makes them suitable for various environments and processes.
  4. Increasing Focus on Workplace Safety: There is a growing emphasis on ensuring workplace safety, particularly in high-temperature environments. Non-contact temperature measurement systems enable remote temperature monitoring, reducing the risk of accidents and ensuring the safety of workers.
  5. Impact of the COVID-19 Pandemic: The COVID-19 pandemic has heightened the need for temperature monitoring, especially in public places and healthcare settings. Non-contact temperature measurement systems have been widely used for screening individuals and identifying potential cases of infection.

Restraints of the Non-Contact Temperature Measurement System Market:

  1. High Initial Cost: The initial cost of implementing non-contact temperature measurement systems can be relatively high. This cost includes the purchase of specialized equipment and the installation and integration of the system, which can be a barrier for small and medium-sized enterprises.
  2. Technical Limitations: While non-contact temperature measurement systems have seen significant advancements, there are still certain limitations. Factors such as distance, environmental conditions, and surface properties can affect the accuracy and reliability of temperature measurements.
  3. Limited Accuracy in Certain Applications: In some applications where extremely precise temperature measurements are required, non-contact temperature measurement systems may not offer the desired level of accuracy. In such cases, alternative methods or contact-based temperature measurement systems may be preferred.
  4. Lack of Awareness and Standardization: Despite the increasing adoption of non-contact temperature measurement systems, there may be a lack of awareness about their benefits and proper usage in certain industries. Additionally, the absence of standardized guidelines and protocols for temperature measurement can pose challenges in implementation.

 

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