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市場調査レポート
商品コード
1624556
短波赤外線(SWIR)の世界市場規模:地域別、範囲および予測Global Shortwave Infrared (SWIR) Market Size By Technology (Cooled SWIR Camera, Uncooled SWIR Camera), By End-User (Commercial, Healthcare and Research, Automotive, Defense and Military, Industrial), & Geographic Scope And Forecast |
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短波赤外線(SWIR)の世界市場規模:地域別、範囲および予測 |
出版日: 2024年09月02日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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短波赤外線(SWIR)市場規模は、2023年に25億米ドルと評価され、2024年から2031年にかけてCAGR 7.63%で成長し、2031年には47億米ドルに達すると予測されています。短波赤外線(SWIR)は、可視光と熱赤外波長の間に位置する電磁スペクトルの一部を指し、一般的に約900ナノメートル(nm)から2500nmの範囲です。SWIRイメージング技術は、可視スペクトルを超え、中波長赤外線(MWIR)や長波長赤外線(LWIR)よりも短い光を捉えます。
電子基板検査、太陽電池検査、農産物検査、識別・選別、監視、偽造防止、工程品質管理など、さまざまな用途でSWIR技術が活用されています。
高感度、高解像度、昼夜を問わないイメージング、秘密照明、秘密レーザーやビーコンの検出能力、極低温冷却不要、標準的で手頃な可視スペクトルレンズ、小型、低電力はSWIRの利点の一部です。
主な市場促進要因
マシンビジョンと監視アプリケーションの需要増
SWIR市場の成長は、SWIFカメラを利用するマシンビジョン、監視、セキュリティアプリケーションの需要増によるところが大きいです。SWIRカメラは、霧、煙、霧の中での視認性の向上など、優れた画像処理能力を備えており、監視に最適です。
工業検査と品質管理への高い需要:
SWIR画像技術は、工業検査や品質管理にますます使用されるようになっています。製造業、自動車、電子機器などさまざまな産業で応用されています。SWIRカメラは欠陥の検出、温度測定、材料組成の分析が可能なため、工業検査目的での需要が高まっています。
SWIRカメラ技術の進歩:
センサーの性能、小型化、コストの改善を含むSWIRカメラ技術の継続的な開発。このような技術進歩により、SWIRカメラは様々な用途に利用しやすくなり、価格も手頃になっています。
農業と食品検査での使用の増加:
SWIR画像は、貴重な情報を提供する能力があるため、農業や食品検査の用途が増えています。植物の健康状態、水分、食品の品質などです。農業や食品業界がより効率的で非破壊的な検査方法を求める中、SWIR技術の需要は増加する見込みです。
研究開発におけるSWIRアプリケーションの拡大:
SWIRイメージングは、世界中で研究開発での利用が拡大しています。医療、バイオテクノロジー、材料科学など様々な分野で。可視域を超える詳細な画像を撮影できるSWIRカメラの能力により、研究者は新たな用途を開拓し、新たな知見を発見できるようになり、市場の成長を刺激しています。
主な課題
高コスト:
SWIRイメージングシステムは高コストであることが多く、費用対効果が重視される特定の産業や用途での採用が制限されます。
限られた認識と理解:
潜在的なユーザーは、SWIRの機能やメリットに対する認識や理解がまだ不十分です。そのため、他のイメージング技術に比べて普及が遅れています。
他の技術との競合:
SWIRはサーマルイメージングや可視光イメージングなどの代替イメージング技術と競合しています。アプリケーションの低コスト化
統合の複雑さ
SWIRイメージングシステムを既存のインフラやアプリケーションに統合するのは複雑で、専門的な知識を必要とする場合があります。
規制とコンプライアンスの問題:
特にヘルスケアや航空宇宙などの規制の厳しい業界では、規制基準や要件の遵守が難しく、SWIR技術の採用の妨げになる可能性があります。
環境要因:
SWIR画像は、温度、湿度、大気条件などの環境要因の影響を受ける可能性があり、特定の作業環境ではその有効性が制限される場合があります。
主な機会
新規アプリケーション
航空宇宙、防衛、自動車、ヘルスケア、農業などの分野でSWIR技術の応用範囲が拡大しており、大きな成長機会となります。
技術の進歩:
感度、解像度、スペクトルの改善など、SWIRセンサー技術の絶え間ない進歩が、SWIRベースのイメージングソリューションの展開につながっています。
NDT(非破壊検査)試験の需要拡大
SWIR画像は非破壊検査アプリケーションに適しています。材料を透過し、肉眼や他のイメージング方法では見えないような欠陥や異常を検出できます。製造、建設、インフラ開発などの産業における非破壊検査需要の開発が、SWIR技術の採用を後押ししています。
セキュリティとモニタリング需要の増加。
世界的にセキュリティへの関心が高まるにつれ、高度な監視・モニタリングへのニーズが高まると予測されます。さまざまな環境や照明条件で脅威を検知できるセキュリティ・システムが求められています。
産業オートメーションの拡大:
自動化の動向とインダストリー4.0への取り組みにより、産業環境における高度な画像技術の需要が高まっています。SWIRカメラは、製造、エレクトロニクス、製薬、その他の産業において、品質管理、プロセス監視、欠陥検出のための自動検査システムへの統合が進んでいます。
Shortwave Infrared (SWIR) Market size is valued at USD 2.5 Billion in 2023 and is anticipated to reach USD 4.7 Billion by 2031, growing at a CAGR of 7.63% from 2024 to 2031. Shortwave Infrared (SWIR) refers to a portion of the electromagnetic spectrum that lies between the visible and thermal infrared wavelengths, typically ranging from approximately 900 nanometers (nm) to 2500 nm. SWIR imaging technology captures light beyond the visible spectrum but shorter than mid-wavelength infrared (MWIR) and long-wavelength infrared (LWIR) radiation.
A variety of applications, such as electronic board inspection, solar cell inspection, produce inspection, identification and sorting, surveillance, anti-counterfeiting, and process quality control, make use of SWIR technology.
High sensitivity, large resolution, day-to-night imaging, covert illumination, the ability to detect covert lasers and beacons, no cryogenic cooling needed, standard, affordable visible spectrum lenses, small size, and low power are some of the benefits of SWIR.
The key market dynamics that are shaping the global Shortwave Infrared (SWIR) Market include:
Key Market Drivers:
Increased Demand for Machine Vision and Surveillance Applications:
The SWIR market's growth is largely due to the growing demand for machine vision, surveillance, and security applications that utilize SWIF cameras. SWIR cameras offer excellent imaging capabilities, including improved visibility in fog, smoke, and fog, making them ideal for surveillance.
High Demand for Industrial Inspection and Quality Control:
SWIR imaging technology is increasingly used for industrial inspection and quality control. Applications in various industries, such as manufacturing, automotive, and electronics. The ability of SWIR cameras to detect defects, measure temperature, and analyze material composition increases their demand for industrial inspection purposes.
Advances in SWIR Camera Technology:
Continued developments in SWIR camera technology, including improvements in sensor performance, miniaturization and cost. Market growth these technological advances have made SWIR cameras more accessible and affordable for a variety of applications, increasing their adoption.
Increasing Use in Agriculture and Food Inspection:
SWIR imaging has increased in agricultural and food inspection applications due to its ability to provide valuable information. On plant health, moisture and food quality. As the agriculture and food industries seek more efficient and non-destructive inspection methods, the demand for SWIR technology is expected to increase.
Expanding SWIR Applications in R&D:
SWIR imaging is increasingly being used in R&D around the world. In various fields such as medicine, biotechnology, and materials science. The ability of SWIR cameras to capture detailed images beyond the visible spectrum enables researchers to explore new applications and discover new insights, stimulating market growth.
Key Challenges
High Cost:
SWIR imaging systems often have a high cost, which limits their adoption in certain industries or applications where cost-effectiveness is critical.
Limited Awareness and Understanding:
Potential users still lack awareness and understanding of SWIR functions and benefits. Technology, resulting in a slower rate of adoption compared to other imaging techniques.
Competition with Other Techniques:
SWIR competes with alternative imaging techniques, such as thermal imaging and visible light imaging, which may provide similar functionality in certain situations. Applications at lower costs.
Integration Complexity
: Integrating SWIR imaging systems into existing infrastructure or applications can be complex and require specialized expertise, which can be a challenge for some users or industries.
Regulatory and Compliance Issues:
Compliance with regulatory standards and requirements, especially in highly regulated industries such as healthcare and aerospace, can be difficult and hinder the adoption of SWIR technology.
Environmental Factors:
SWIR imaging can be affected by environmental factors such as temperature, humidity, and atmospheric conditions that may limit its effectiveness.in certain work environments.
Key Opportunities
New Applications
: The expanding range of applications for SWIR technology in areas such as aerospace, defense, automotive, healthcare, and agriculture offer significant growth opportunities.
Technological Advancements:
Continuous advancements in SWIR sensor technology, including improvements in sensitivity, resolution, and spectrum lead to the deployment of SWIR-based imaging solutions.
Growing Demand for NDT (NDT) Testing
: SWIR imaging is well suited for non-destructive testing applications. It offers the ability to penetrate materials and detect defects or anomalies that may not be visible to the naked eye or other imaging methods. Growing demand for non-destructive testing in industries such as manufacturing, construction, and infrastructure development is driving the adoption of SWIR technology.
Increasing Demand for Security and Monitoring.
As security concerns grow worldwide, the need for advanced surveillance and monitoring is projected to rise. Security systems that can detect threats in different environments and lighting conditions.
Expansion of Industrial Automation:
The trend towards automation and Industry 4.0 initiatives are increasing the demand for advanced imaging technologies in industrial environments. SWIR cameras are increasingly being integrated into automatic inspection systems for quality control, process monitoring, and defect detection in manufacturing, electronics, pharmaceuticals, and other industries.
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Here is a more detailed regional analysis of the Global Shortwave Infrared (SWIR) Market
Asia Pacific
The rapid industrialization of countries such as China, India, Japan, and South Korea is increasing the demand for advanced imaging techniques such as SWIR for various industrial applications. Industries such as manufacturing, electronics, automotive, and semiconductor manufacturing have adopted SWIR cameras for quality control, process monitoring, and defect detection.
In the Asia Pacific region, increasing defense spending and the aerospace industry have fueled the demand for SWIR. Sensors and imaging systems for surveillance, reconnaissance, target tracking, and other defense applications.
Population growth, higher healthcare expenses, and advancements in medical technology are the primary reasons for the rapid expansion of healthcare and life sciences in the Asia-Pacific region.
The region exhibits significant growth potential in the SWIR market, fueled by rapid industrialization, technological advancements, and increasing investments in sectors such as electronics, automotive, and healthcare.
North America
North America is a leading center of technological innovation and research in SWIR imaging technology, enabling the region hold a major share in the market. The region is home to many major companies and research institutes developing advanced SWIR sensors, cameras, and imaging systems.
The region has a strong industrial presence in sectors such as aerospace, defense, semiconductor manufacturing, healthcare, and automotive. SWIR imaging technology is widely used in industrial applications such as quality control, process control, inspection, and defect detection.
North America has a strong focus on defense and security applications, driving the adoption of SWIR technology in surveillance, target detection, intelligence, and border security.
The Shortwave Infrared (SWIR) Market is segmented on the basis of Technology, End-User, and Geography.
Based on Technology, the market is segmented into Cooled and Uncooled. For the forecast period, the Uncooled category is anticipated to experience the greatest CAGR. Uncooled SWIR technology features a number of moving parts that, under comparable operating conditions, result in substantially higher service lives than cooling systems. Due to the lack of cryocoolers, which cause maintenance issues and are expensive to replace, uncooled SWIR technology is hassle-free. Uncooled cameras typically cost less than cooled cameras, however, cooled SWIR cameras typically have more sensitive detectors than uncooled SWIR cameras.
Based on End-User, the market is segmented into Defense & Military, Healthcare & Research, Commercial, Automotive, Industrial, and Others. The military and defense segment is projected to dominate the shortwave infrared market. Growing demand for night vision capabilities and superior target identification in low-light conditions in the military and defense is surging demand for SWIR cameras. Also, government funding for technological advancements in the SWIR camera is proving fruitful for the military and defense sector.
Based on geography, the global short wave infrared (SWIR) market is segmented into North America, Europe, Asia Pacific, Latin- America and Central America. East and Africa. Due to the various production capacities of the area, the Asia Pacific is anticipated to experience the greatest development rate over the projection period. In order to reduce product manufacturing costs and improve daily manufacturing processes, SWIR technology is becoming more and more important. SWIR detectors are mostly used in the production of electronics, food and drink, glass, and security and surveillance systems.
Our market analysis also entails a section solely dedicated for such major players wherein our analysts provide an insight to the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share and market ranking analysis of the above-mentioned players globally.