市場調查報告書
商品編碼
1471339
紅外線成像市場:按組件、技術、類型和應用分類 - 2024-2030 年全球預測Infrared Imaging Market by Component (IR Detectors, IR Lens Systems, IR Sensors), Technology (Cooled, Uncooled), Type, Application - Global Forecast 2024-2030 |
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預計2023年熱成像市場規模為75.2億美元,預計2024年將達81.3億美元,2030年將達到130.3億美元,複合年成長率為8.15%。
紅外線成像是一種非接觸式技術,可以對物體和生物體發出的輻射熱進行可視化和測量。為了應對恐怖主義和跨國衝突的威脅,對增強安全系統的需求不斷成長,政府對防禦能力的投資不斷增加,這產生了對先進熱成像系統的需求。此外,微測輻射熱計技術的進步降低了非製冷紅外線檢測器的成本,這是推動其在各個工業領域採用的主要因素。然而,與需要大量基礎設施投資的冷卻檢測器相關的高初始成本可能會阻礙紅外線成像市場的成長。然而,隨著奈米技術的快速開拓,微型感測器滿足特定工業需求(例如醫療診斷和穿戴式裝置)的潛力是巨大的,預計將為紅外線成像市場提供利潤豐厚的機會。
主要市場統計 | |
---|---|
基準年[2023] | 75.2億美元 |
預測年份 [2024] | 81.3億美元 |
預測年份 [2030] | 130.3億美元 |
複合年成長率(%) | 8.15% |
紅外線感測器由於組件成本低和多功能性而受到歡迎
紅外線檢測器負責將傳入的紅外線輻射轉換為電訊號,該電訊號由影像處理系統處理以產生場景的視覺表示。紅外線透鏡系統將傳入的紅外線輻射聚焦到檢測器陣列上,同時在各種溫度範圍和操作條件下保持最佳影像品質。常見的透鏡材料包括鍺 (Ge)、硒化鋅 (ZnSe)、硫族化物玻璃和矽 (Si)。紅外線感測器負責處理檢測器產生的電訊號並將其轉換為可以顯示和分析的數位影像。微測輻射熱計等 IE 感測器因其低成本和多功能性而廣泛用於非冷卻應用。相較之下,InGaAs 感測器在短波長紅外線(SWIR) 波長下具有卓越的性能,並且需要冷卻系統。
技術:由於高靈敏度和高影像質量,更多地採用冷紅外線成像
冷卻紅外線成像技術使用冷卻至 -196°C 至 -210°C 之間低溫的偵測器。這種冷卻過程可降低熱噪聲,從而比未冷卻的紅外線影像具有更高的靈敏度和更高的影像品質。冷卻熱成像非常適合需要卓越性能的應用,例如飛彈導引系統、軍事監視和高速工業流程。非冷卻紅外線成像使用微測輻射熱計或熱電堆陣列,並在室溫下運行,無需冷卻機制。非製冷紅外線攝影機往往不如製冷紅外線成像敏感,因此成本更低、功耗更低、重量更輕且使用壽命更長。
類型:固定紅外線成像連續監測和即時資料分析的普及
固定式紅外線成像系統是永久安裝的設備,可連續監控環境和流程,無需手動調整。此類設備通常會出於安全原因而部署,例如檢測潛在的火災危險或監控工業環境中的設備溫度。可攜式紅外線成像設備是手持式或移動式設備,可檢查特定區域或根據要求進行有針對性的分析。這些系統使用戶能夠快速識別問題並有效解決問題,非常適合各種行業(包括電氣、機械和建築診斷)的現場檢查和維護任務。可攜式紅外線成像設備的彈性使操作員能夠使用比固定設備更少的資源對特定設備或可疑問題進行現場檢查。
應用紅外線成像在醫療領域的新應用
紅外線成像廣泛應用於航太和國防領域,用於目標捕獲、追蹤和導引系統、夜視鏡和飛彈預警系統等任務。汽車產業將紅外線成像用於 ADAS(高級駕駛員輔助系統)、行人偵測和防撞系統。在消費性電子產業,紅外線成像用於智慧型手機和遊戲機的臉部認證系統。消防員使用紅外線熱像儀檢測低能見度環境中的熱源、識別熱點並追蹤火勢蔓延。在醫療領域,紅外線成像用於診斷目的,例如檢測發炎、監測血流和評估創傷治療進展。監控系統使用紅外線成像來提高照明條件不佳或完全黑暗的情況下的可見度,適用於邊境管制、關鍵基礎設施保護和野生動物觀察等應用。
區域洞察
由於有許多致力於紅外線成像技術創新的主要參與者,美國佔有很大的佔有率。此外,美國政府在國防開支和國防安全保障方面的大量投資正在支持熱成像的市場滲透。由於快速工業化,亞太地區預計將成為紅外線成像成長最快的市場之一。此外,亞太地區國家汽車製造活動的穩定成長正在推動對使用紅外線攝影機的 ADAS 技術的需求。由於工業自動化、汽車、安全和監控等各個領域的採用不斷增加,歐洲、中東和非洲地區的紅外線成像市場正在顯著成長,特別是在歐洲國家。歐洲正在重點引入工業 4.0,對利用紅外線技術的先進檢測解決方案和機器視覺系統的需求正在加速成長。此外,嚴格的能源效率和安全標準法規也有助於市場擴張。
FPNV定位矩陣
FPNV定位矩陣對於評估熱成像市場至關重要。我們檢視與業務策略和產品滿意度相關的關鍵指標,以對供應商進行全面評估。這種深入的分析使用戶能夠根據自己的要求做出明智的決策。根據評估,供應商被分為四個成功程度不同的像限:前沿(F)、探路者(P)、利基(N)和重要(V)。
市場佔有率分析
市場佔有率分析是一種綜合工具,可以對熱成像市場供應商的現狀進行深入而詳細的研究。全面比較和分析供應商在整體收益、基本客群和其他關鍵指標方面的貢獻,以便更好地了解公司的績效及其在爭奪市場佔有率時面臨的挑戰。此外,該分析還提供了對該行業競爭特徵的寶貴見解,包括在研究基準年觀察到的累積、分散主導地位和合併特徵等因素。詳細程度的提高使供應商能夠做出更明智的決策並制定有效的策略,以獲得市場競爭優勢。
1. 市場滲透率:提供有關主要企業所服務的市場的全面資訊。
2. 市場開拓:我們深入研究利潤豐厚的新興市場,並分析其在成熟細分市場的滲透率。
3. 市場多元化:提供有關新產品發布、開拓地區、最新發展和投資的詳細資訊。
4. 競爭評估和情報:對主要企業的市場佔有率、策略、產品、認證、監管狀況、專利狀況和製造能力進行全面評估。
5. 產品開發與創新:提供對未來技術、研發活動和突破性產品開發的見解。
1. 紅外線成像市場的市場規模和預測是多少?
2.在紅外線成像市場的預測期內,有哪些產品、細分市場、應用和領域需要考慮投資?
3. 紅外線成像市場的技術趨勢和法規結構是什麼?
4.紅外線成像市場主要廠商的市場佔有率為何?
5.進入熱成像市場合適的型態和策略手段是什麼?
[180 Pages Report] The Infrared Imaging Market size was estimated at USD 7.52 billion in 2023 and expected to reach USD 8.13 billion in 2024, at a CAGR 8.15% to reach USD 13.03 billion by 2030.
Infrared imaging is a non-contact technology that allows the visualization and measurement of radiated heat emitted by objects or living beings. The increasing demand for enhanced security systems and the rising government investment in defense capabilities to counter threats posed by terrorism and cross-border conflicts require sophisticated infrared imaging systems. Additionally, advancements in microbolometer technology have allowed for lower-cost uncooled infrared detectors, which involves a significant factor driving adoption across various industries. However, high initial costs associated with cooled detectors requiring extensive infrastructure investments may hinder the infrared imaging market growth. Nevertheless, rapid developments in nanotechnology provide immense potential for miniaturized sensors that cater to specific industry needs within healthcare diagnostics or wearable gadgets, which is expected to create lucrative opportunities for the infrared imaging market.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 7.52 billion |
Estimated Year [2024] | USD 8.13 billion |
Forecast Year [2030] | USD 13.03 billion |
CAGR (%) | 8.15% |
Components: Increasing preference for IR sensors due to their lower cost and versatility
IR detectors are responsible for converting incoming infrared radiation into electrical signals and processed by the imaging system to generate a visual representation of the scene. IR lens systems focus the incoming infrared radiation onto the detector array while maintaining optimal image quality across various temperature ranges and operating conditions. Common lens materials include Germanium (Ge), Zinc Selenide (ZnSe), Chalcogenide glass, and Silicon (Si). IR sensors are responsible for processing the electrical signals the detectors generate and converting them into digital images that can be displayed or analyzed. The IE sensors, such as microbolometers, are widely used in uncooled applications due to their lower cost and versatility. In contrast, InGaAs sensors offer superior performance in short-wave infrared (SWIR) wavelengths and require cooling systems.
Technology: Rising adoption of higher cooled infrared imaging due to their higher sensitivity and better image quality
Cooled infrared imaging technology involves using detectors cooled to cryogenic temperatures between -196°C and -210°C. This cooling process reduces thermal noise, enabling these detectors to achieve higher sensitivity and better image quality than their uncooled infrared imagining. Cooled infrared imaging is ideal for applications that demand superior performance, such as missile guidance systems, military surveillance, and high-speed industrial processes. Uncooled infrared imaging utilizes microbolometers or thermopile arrays that operate at room temperature without cooling mechanisms. The uncooled IR cameras tend to be less sensitive than the cooled infrared imaging, offering lower cost, reduced power consumption, lighter weight, and longer service life.
Type: Proliferating use of fixed infrared imaging for continuous surveillance and real-time data analysis
Fixed infrared imaging systems are permanently installed devices that continuously monitor an environment or process without requiring manual adjustments. These devices are usually implemented for safety reasons, such as detecting potential fire hazards and monitoring equipment temperatures in industrial settings. Portable infrared imaging devices are handheld or mobile units that inspect specific areas or conduct targeted analyses on demand. These systems allow users to pinpoint problems rapidly and address them efficiently, making them ideal for field inspections and maintenance tasks across various industries, such as electrical, mechanical, and building diagnostics. The flexibility of portable infrared imaging devices allows operators to conduct spot checks on specific equipment or areas with suspected issues while utilizing fewer resources than fixed installations.
Application: Emerging applications of infrared imaging in the medical sector
Infrared imaging is heavily utilized in aerospace & defense for tasks such as target acquisition, tracking and guidance systems, night vision goggles, and missile warning systems. The automotive industry employs infrared imaging for advanced driver assistance systems (ADAS), pedestrian detection, and collision avoidance systems. Infrared imaging has found applications within consumer electronics for facial recognition authentication systems used in smartphones and gaming consoles. Firefighters use infrared imaging cameras to detect and locate heat sources in low-visibility environments, identifying hot spots and tracking the spread of fires. Infrared imaging is used in the medical field for diagnostic purposes such as detecting inflammation, monitoring blood flow, and assessing wound healing progress. Surveillance systems employ infrared imaging to enhance visibility under poor lighting conditions or total darkness for border control, critical infrastructure protection, and wildlife observation applications.
Regional Insights
America holds a substantial share due to the presence of numerous key players engaged in new innovations in infrared imaging technology. In addition, extensive investments made by the U.S. government in defense spending and homeland security support the market penetration of infrared imaging. APAC is expected to emerge as one of the rapidly growing markets for infrared imaging due to rapid industrialization. In addition, steady growth in automotive manufacturing activities across APAC countries has fueled demand for ADAS technologies that use infrared cameras. The EMEA region, especially European countries, has witnessed considerable growth in the infrared imaging market due to increasing adoption in various sectors such as industrial automation, automotive, and security & surveillance. Europe's focus on implementing Industry 4.0 has accelerated the demand for advanced inspection solutions and machine vision systems that utilize IR technology. Moreover, stringent regulations governing energy efficiency and safety standards have also contributed to the expansion of the market.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Infrared Imaging Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Infrared Imaging Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Infrared Imaging Market, highlighting leading vendors and their innovative profiles. These include Allied Vision Technologies GmbH, Axis Communications AB, Episensors, Fluke Corporation, G5 Infrared, LLC, General Dynamics Mission Systems, Inc., GMS Instruments BV, InfraTec infrared LLC, IRay Technology Co., Ltd., L3Harris Technologies, Inc., Leonardo DRS, Inc., Lynred, Nippon Avionics Co.,Ltd., Opgal Optronics Industries Ltd., Ophir Optronics Solutions Ltd., Sensors Unlimited, Inc., Spectron IR, Teledyne FLIR LLC, Trinity Electronics Systems Ltd., Viper Imaging LLC, and Zhejiang Dali Technology Co., Ltd..
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Infrared Imaging Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Infrared Imaging Market?
3. What are the technology trends and regulatory frameworks in the Infrared Imaging Market?
4. What is the market share of the leading vendors in the Infrared Imaging Market?
5. Which modes and strategic moves are suitable for entering the Infrared Imaging Market?