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市場調查報告書
商品編碼
1645232
紅外線溫度計的全球市場:成長,未來展望,競爭分析 (2025年~2033年)Infrared Thermometer Market - Growth, Future Prospects and Competitive Analysis, 2025 - 2033 |
由於技術進步以及各個領域對快速安全溫度測量的需求不斷增加,紅外線溫度計市場正在經歷顯著增長。紅外線溫度計,也稱為非接觸式溫度計,使用紅外線技術從遠處檢測溫度,而無需接觸物體或人。它們準確、高效且能立即給出結果,使其成為從醫療到工業到家庭用途的眾多應用的首選。預計 2025 年至 2033 年期間紅外線溫度計市場複合年增長率為 8.1%。
推動因素:新冠疫情促使需求激增紅外線溫度計需求激增的關鍵推動因素是 COVID-19 疫情的爆發。世界各國政府和衛生組織建議持續監測體溫,作為發現和防止病毒傳播的預防措施。因此,機場、火車站、購物中心和辦公室等公共場所已將體溫檢查作為標準規程的一部分。證據就是,紅外線體溫計的銷售在疫情期間激增,導致大量訂單積壓。各大線上零售商報告稱,需求空前旺盛,缺貨現象頻繁發生。此外,處於疫情應對最前線的醫院廣泛使用該設備對患者、工作人員和訪客進行篩檢,大大促進了市場發展。
機會:尖端科技的融合
人工智慧(AI)和物聯網(IoT)等先進技術越來越多地融入紅外線溫度計,提供了巨大的成長機會。現代人工智慧紅外線溫度計可以儲存溫度讀數,讓使用者可以追蹤隨時間的變化。如果記錄的溫度超過預先定義的限制,一些先進的溫度計還可以向智慧型手機或其他設備發送警報。為了證明這一點,一些科技公司和新創公司正在將 "智慧" 紅外線溫度計推向市場。這些設備不僅提供溫度讀取功能,還可以與其他智慧型設備無縫集成,以增強用戶體驗並提供增值服務。
阻礙因素:準確性問題
雖然紅外線溫度計具有非接觸式的優勢,但與傳統接觸式溫度計相比,人們對其準確性存在擔憂,尤其是在環境條件改變時。例如,測量結果可能受到環境溫度、濕度以及與測量對象的距離等因素的影響。幾項比較紅外線溫度計和傳統溫度計準確度的研究強調了這一點。一些醫院和醫療專業人員也擔心誤讀的可能性,這可能導致誤診或無法識別發燒,尤其是在關鍵時刻。
課題:市場飽和與品質問題
與任何需求突然增加的產品一樣,紅外線溫度計市場充斥著眾多品牌和型號。這些湧入的製造商包括信譽良好的製造商,也包括那些生產低品質設備的製造商,他們希望利用日益增長的需求。這項課題以消費者投訴和評論的形式表現出來。許多用戶報告稱,使用非品牌或知名度較低的紅外線溫度計讀數不一致。此外,一些監管機構也發布了諮詢意見,警告消費者使用劣質設備的潛在風險,並強調校準和品質保證的必要性。
產品分類
深入研究產品,主要有兩大類:接觸式溫度計和非接觸式溫度計。 2024 年,非接觸式溫度計佔據了最高的收入佔有率,受到 COVID-19 疫情造成的需求的顯著影響。世界各地的醫療機構都依賴這些溫度計進行快速、衛生、有效率的讀數,這大大推動了銷售。然而,從 2025 年到 2033 年,接觸式溫度計預計將實現更高的複合年增長率 (CAGR)。接觸式溫度計的需求可能來自需要精確測量溫度的領域,例如實驗室和某些醫療場所。
最終用途分類
根據最終用途分析市場,紅外線溫度計可應用於農業、食品、電子和醫療等各行業。由於全球健康危機以及醫療環境中快速測溫的需求,醫療保健產業成為 2024 年的主要收入來源。醫院、診所甚至家庭中紅外線溫度計的使用率已經大幅增加。然而,從 2025 年到 2033 年,電子產業預計將實現最高的複合年增長率。由於小型化趨勢和即時監控組件溫度的不斷增長的需求,電子行業對紅外線溫度計的依賴越來越大。
區域見解
從地理角度來看,北美,尤其是美國,在 2024 年的收入方面佔據市場主導地位。這是由於醫療基礎設施先進、公眾意識不斷增強以及技術進步的快速採用。然而,從 2025 年到 2033 年,亞太地區預計將呈現最高的複合年增長率,以中國和印度等國家為首。這種激增歸因於快速發展的醫療基礎設施、不斷增長的電子製造基地以及對先進溫度監測工具認識的提高。
競爭趨勢與主要公司
2025年是紅外線測溫儀市場競爭激烈的一年。新市場如賽默飛世爾科技公司、PCE Deutschland GmbH、HORIBA, Ltd.、Omega Engineering Inc.、Weiss Instruments LLC、Mediaid, Inc.、Fluke Corporation 和 Optris GmbH 正在加強研發並擴大銷售網絡,以鞏固其市場地位。這些公司致力於推出先進、用戶友好且具成本效益的產品,以滿足各個細分市場的多樣化需求。許多公司也透過併購和合作來擴大其全球影響力和產品組合。隨著 2025 年至 2033 年市場日趨飽和,預計公司將增加對創新、品質保證和校準技術的投資,以確保其製造的溫度計不僅先進,而且準確可靠。
The infrared thermometer market has witnessed a remarkable upswing, predominantly influenced by technological advancements and the increasing need for rapid and safe temperature measurements in various sectors. Infrared thermometers, often known as non-contact thermometers, employ infrared technology to detect temperature from a distance, ensuring that the object or person isn't touched. The precise, efficient, and instantaneous results provided by these tools have made them a preferred choice in numerous applications, from medical to industrial and domestic uses. Infrared thermometer market is estimated to grow at a CAGR of 8.1% from 2025 to 2033.
Driver: Surge in Demand Due to the COVID-19 Pandemic
A pivotal force behind the amplified demand for infrared thermometers has been the outbreak of the COVID-19 pandemic. Governments and health organizations worldwide have recommended the consistent monitoring of body temperatures as a precautionary measure to detect and prevent the spread of the virus. Consequently, public places like airports, railway stations, malls, and offices have integrated temperature checks as part of their standard protocol. Evidence for this comes in the form of soaring sales numbers and backorders for infrared thermometers during the pandemic. Major online retailers reported unprecedented demand, with stocks running out frequently. Further, hospitals, which were at the forefront of the pandemic battle, extensively used these devices to screen not only patients but also their staff and visitors, providing a substantial boost to the market.
Opportunity: Integration of Advanced Technologies
The ongoing integration of advanced technologies, such as Artificial Intelligence (AI) and the Internet of Things (IoT), into infrared thermometers presents a tremendous growth opportunity. Modern infrared thermometers equipped with AI can store temperature readings, enabling users to track changes over a period. Some advanced thermometers can also send alerts to smartphones or other devices if the recorded temperature surpasses a predefined limit. Evidence of this can be observed with several tech companies and start-ups introducing 'smart' infrared thermometers to the market. These devices not only offer temperature reading features but also integrate seamlessly with other smart devices, thus enhancing user experience and providing value-added services.
Restraint: Accuracy Concerns
While infrared thermometers offer the advantage of non-contact measurements, there have been concerns regarding their accuracy compared to traditional contact thermometers, especially in varying environmental conditions. For instance, the readings can be affected by factors like ambient temperature, humidity, and the distance from the subject. This has been highlighted by several studies comparing the accuracy of infrared thermometers with traditional ones. Some hospitals and healthcare professionals have also raised concerns over potential misreadings, which can result in misdiagnosis or failure to identify a fever, especially in crucial settings.
Challenge: Market Saturation and Quality Concerns
As with any product experiencing a sudden surge in demand, the market has become inundated with numerous brands and models of infrared thermometers, leading to market saturation. This influx includes not just reputable manufacturers but also those producing low-quality devices looking to capitalize on the heightened demand. Evidence of this challenge is visible in the form of consumer complaints and reviews. Many users have reported discrepancies in readings when using non-branded or lesser-known infrared thermometers. Furthermore, certain regulatory bodies have issued advisories, warning consumers about the potential risks of using low-quality devices, emphasizing the need for calibration and quality assurance.
Product Segmentation
Diving deep into product segmentation, there are chiefly two categories: Contact thermometers and Non-contact thermometers. In 2024, non-contact thermometers held the highest revenue share, influenced heavily by the COVID-19 pandemic's demands. Institutions worldwide relied on these thermometers for their quick, sanitary, and efficient reading capabilities, boosting their sales significantly. However, looking ahead, from 2025 to 2033, contact thermometers are expected to witness a higher Compound Annual Growth Rate (CAGR). The resurgence in demand for contact thermometers will likely stem from sectors that demand precise temperature readings, such as research labs and certain medical settings.
End Use Segmentation
Analyzing the market based on end use, infrared thermometers find application in various industries including Agriculture, Food, Electronics, Healthcare, among others. The Healthcare industry in 2024 was the leading revenue contributor, driven by global health crises and the need for rapid temperature assessments in medical settings. Hospitals, clinics, and even households significantly increased their uptake of infrared thermometers. However, the forecast for 2025 to 2033 suggests that the Electronic Industry is expected to boast the highest CAGR. With miniaturization trends and the increasing need to monitor component temperatures in real-time, the electronics industry's dependency on these thermometers is only anticipated to grow.
Regional Insights
From a geographic standpoint, in 2024, North America, particularly the US, dominated the market in terms of revenue, due to its advanced healthcare infrastructure, heightened awareness among the population, and quick adoption of technological advancements. However, from 2025 to 2033, the Asia-Pacific region, led by countries like China and India, is expected to manifest the highest CAGR. This surge can be attributed to rapidly developing healthcare infrastructure, growing electronic manufacturing hubs, and increasing awareness of advanced temperature monitoring tools.
Competitive Trends and Key Players
2025 was a year of stiff competition in the infrared thermometer market. Leading players such as Thermo Fisher Scientific Inc., PCE Deutschland GmbH, HORIBA, Ltd., Omega Engineering Inc., Weiss Instruments LLC, Mediaid, Inc., Fluke Corporation, Optris GmbH have intensified their research & development efforts and expanded their distribution networks to consolidate their market positions. They focused on launching advanced, user-friendly, and cost-effective products to cater to the varied demands across sectors. Many of them also engaged in mergers, acquisitions, and partnerships to expand their global reach and product portfolio. Moving forward, from 2025 to 2033, as the market becomes more saturated, companies are expected to invest more in innovation, quality assurance, and calibration technologies, ensuring the thermometers they produce are not only advanced but also precise and reliable.
Historical & Forecast Period
This study report represents an analysis of each segment from 2023 to 2033 considering 2024 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2025 to 2033.
The current report comprises quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends & technological analysis, case studies, strategic conclusions and recommendations and other key market insights.
Research Methodology
The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. The key data points that enable the estimation of Infrared Thermometer market are as follows:
Research and development budgets of manufacturers and government spending
Revenues of key companies in the market segment
Number of end users & consumption volume, price, and value.
Geographical revenues generated by countries considered in the report
Micro and macro environment factors that are currently influencing the Infrared Thermometer market and their expected impact during the forecast period.
Market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top-down and bottom-up approach for validation of market estimation assures logical, methodical, and mathematical consistency of the quantitative data.