![]() |
市場調查報告書
商品編碼
1980645
短波紅外線成像市場規模、佔有率、成長率和全球產業分析:按類型、應用和地區分類,洞察和預測至 2026-2034 年。Short Wave Infrared Imaging Market Size, Share, Growth and Global Industry Analysis By Type & Application, Regional Insights and Forecast to 2026-2034 |
||||||
2025年全球短波紅外線(SWIR)影像市場規模為13.9億美元,預計將從2026年的14.8億美元成長至2034年的22.8億美元,預測期內(2026-2034年)複合年成長率(CAGR)為6.00%。北美地區在2025年佔據市場主導地位,市佔率達37.60%,主要得益於其強勁的國防投資和先進成像技術的應用。
短波紅外線(SWIR)成像技術能夠捕捉波長範圍在0.9至1.7微米之間的光,該波長範圍的光肉眼不可見。這使得即使在低光源、霧天、煙霧瀰漫或塵土飛揚的環境中,也能獲得高解析度影像。 SWIR技術廣泛應用於國防監視、工業檢測、半導體製造、農業監測、醫療診斷和太空探勘等領域。
美國國家航空暨太空總署(NASA)、歐洲太空總署(ESA)和國防高級研究計畫局(DARPA)等政府機構正在積極資助利用短波紅外線(SWIR)技術的任務。泰萊福瑞爾(Teledyne FLIR)、林瑞德(Lynred)和濱松光子學等領先的私人公司正在開發先進的感測器和相機。
市場規模及預測(截至報告年度)
市場動態
市場促進因素
國防和監控領域的需求不斷成長
短波紅外線成像對於軍事監視、邊境監控、偵察和目標偵測至關重要。它能夠穿透薄霧、煙霧和濃霧,即使在惡劣環境下也能提供卓越的能見度。
2023年2月,美國空軍授予普林斯頓紅外線技術公司第二階段小型企業創新研究(SBIR)契約,用於開發基於無人機的高光譜影像所需的擴展波長短波紅外線(SWIR)感測器。此外,InGaAs和HgCdTe等材料的進步正在提高系統效率並實現小型化。
短波紅外線系統正擴大整合到無人機、直升機、裝甲車和士兵穿戴的系統中。
市場限制因素
高昂的初始成本仍然是一個主要障礙。短波紅外線相機使用諸如砷化銦鎵(InGaAs)和碲鎘汞(MCT)等特殊材料,與傳統成像系統相比,這顯著增加了製造成本。
由於初始投資成本高且整合複雜,許多中小企業 (SME) 對採用 SWIR 技術猶豫不決。
市場機遇
精密農業的發展
短波紅外線(SWIR)技術能夠及早檢測作物壓力、水分含量、土壤鹽鹼化和污染情況,從而支持永續農業發展並提高作物產量。
2024 年,印度太空研究組織 (ISRO) 與法國國家太空研究中心 (CNES) 合作進行了 TRISHNA 任務,該任務提供高解析度熱成像和短波紅外線 (SWIR) 數據,用於監測全球自然資源。
市場挑戰
與現有系統整合涉及技術複雜性。許多產業依賴可見光和熱熱成像系統,而整合短波紅外線感測器需要客製化校準和介面。這會導致部署延遲和營運成本增加。
市場趨勢
短波紅外線相機的微型化
關鍵趨勢之一是短波紅外線(SWIR)相機的微型化,從而實現更輕、更節能、更緊湊的設計。這些小型化系統可以整合到無人機、手持設備和汽車平臺中,增強戰術性機動性。
2025 年 7 月,Allied Vision 發布了「Goldeye Pro SWIR」系列產品,該系列產品採用SONY的 SenSWIR 感測器和熱電冷卻技術。
細分分析
透過技術
波段
透過使用
2024 年 3 月,Tomla Foods 將 SWIR 感測器整合到其先進的食品分類系統中。
按組件
2023 年 9 月,Lynred 開發出新一代 SWIR 感測器,具有更高的靈敏度和更小的像素間距。
按行業
2024 年 4 月,普林斯頓紅外線技術公司獲得了 NASA 的第一階段 SBIR(短波紅外線)成像儀契約,用於開發先進的 SWIR成像器。
2023 年 6 月,Coherent 公司與 TriEye 合作開發用於汽車應用的 SWIR 系統。
按地區
北美洲
2024 年 2 月,Leonardo DRS 為美國陸軍的 JETS II 專案採用了 Quantum Imaging 的 SWIR 相機。
歐洲
工業自動化和品質檢測正在推動經濟成長。德國在製造業和半導體檢測領域引領這些技術的應用。
亞太地區
日本、中國和韓國等國家正大力投資半導體測試和電子產品製造。
2024 年 7 月, SONY半導體解決方案公司擴展了其面向工業應用的基於 CMOS 的 SWIR 感測器產品線。
世界其他地區
在拉丁美洲,短波紅外線成像儀正被引入農業和採礦領域。在中東和非洲,其應用重點在於提升國防能力以及石油和天然氣檢測。
2025 年 3 月,阿拉伯聯合大公國 EDGE 集團測試了配備 SWIR 的無人機監視系統。
儘管北美在2025年仍將保持領先地位,但亞太和歐洲的工業及製造業領域也正在快速普及應用。儘管實施成本高且整合面臨諸多挑戰,但感測器小型化、CMOS技術和高光譜影像的進步有望加速其應用。
預測年份:2026年
透過技術
波段
透過使用
按組件
按行業
按地區
The global short-wave infrared (SWIR) imaging market was valued at USD 1.39 billion in 2025 and is projected to grow from USD 1.48 billion in 2026 to USD 2.28 billion by 2034, exhibiting a CAGR of 6.00% during the forecast period (2026-2034). North America dominated the market with a 37.60% share in 2025, supported by strong defense investments and advanced imaging adoption.
Short-wave infrared (SWIR) imaging captures light in the 0.9-1.7 micron wavelength range, which is invisible to the human eye. It enables high-resolution imaging in low-light, foggy, smoky, or dusty environments. SWIR technology is widely used in defense surveillance, industrial inspection, semiconductor manufacturing, agriculture monitoring, medical diagnostics, and space exploration.
Government agencies such as NASA, European Space Agency, and DARPA actively fund SWIR-based missions. Leading private players including Teledyne FLIR, Lynred, and Hamamatsu Photonics are developing advanced sensors and cameras.
MARKET SIZE & FORECAST (AS PER REPORT YEAR)
MARKET DYNAMICS
Market Drivers
Rising Demand in Defense & Surveillance
SWIR imaging is critical for military surveillance, border monitoring, reconnaissance, and target detection. Its ability to penetrate haze, smoke, and fog provides superior visibility in harsh conditions.
In February 2023, the U.S. Air Force awarded Princeton Infrared Technologies a Phase II SBIR contract to develop extended-wavelength SWIR sensors for UAV-based hyperspectral imaging. Additionally, advancements in materials such as InGaAs and HgCdTe are improving system efficiency and compactness.
SWIR systems are increasingly integrated into drones, helicopters, armored vehicles, and soldier-mounted systems.
Market Restraints
High implementation costs remain a major barrier. SWIR cameras use specialized materials such as Indium Gallium Arsenide (InGaAs) and Mercury Cadmium Telluride (MCT), significantly increasing production costs compared to conventional imaging systems.
Many small and medium enterprises hesitate to adopt SWIR technology due to high upfront investment and integration complexity.
Market Opportunities
Growth in Precision Agriculture
SWIR technology enables early detection of crop stress, moisture levels, soil salinity, and contamination. It supports sustainable farming and improved crop yields.
In 2024, Indian Space Research Organisation collaborated with CNES on the TRISHNA mission to deliver high-resolution thermal and SWIR data for global natural resource monitoring.
Market Challenges
Integration with legacy systems presents technical complexity. Many industries rely on visible and thermal imaging systems, requiring customized calibration and interfaces to incorporate SWIR sensors. This slows deployment and increases operational costs.
MARKET TRENDS
Miniaturization of SWIR Cameras
A key trend is the miniaturization of SWIR cameras, making them lighter, energy-efficient, and compact. These smaller systems can be integrated into UAVs, handheld devices, and vehicle platforms, enhancing tactical mobility.
In July 2025, Allied Vision introduced the Goldeye Pro SWIR series featuring Sony SenSWIR sensors with thermo-electric cooling.
SEGMENTATION ANALYSIS
By Technology
By Wavelength Range
By Application
In March 2024, Tomra Food integrated SWIR sensors into advanced food sorting systems.
By Component
In September 2023, Lynred developed next-generation SWIR sensors with improved sensitivity and reduced pixel pitch.
By Vertical
In April 2024, Princeton Infrared Technologies received a Phase I SBIR contract from NASA for advanced SWIR imager development.
In June 2023, Coherent Corp. partnered with TriEye for automotive SWIR systems.
REGIONAL OUTLOOK
North America
In February 2024, Leonardo DRS selected Quantum Imaging's SWIR camera for the U.S. Army's JETS II program.
Europe
Growth driven by industrial automation and quality inspection. Germany leads adoption in manufacturing and semiconductor inspection.
Asia Pacific
Countries such as Japan, China, and South Korea are investing heavily in semiconductor inspection and electronics manufacturing.
In July 2024, Sony Semiconductor Solutions expanded CMOS-based SWIR sensors for industrial applications.
Rest of the World
Latin America is adopting SWIR for agriculture and mining. The Middle East & Africa is focusing on defense modernization and oil & gas inspection.
In March 2025, UAE's EDGE Group tested SWIR-enabled UAV surveillance systems.
COMPETITIVE LANDSCAPE
Major companies operating in the market include:
These players are focusing on R&D investments, CMOS-based alternatives, AI-enabled processing, and strategic collaborations.
CONCLUSION
The global SWIR imaging market is projected to grow from USD 1.39 billion in 2025 to USD 2.28 billion by 2034, at a CAGR of 6.00%. Strong demand from defense surveillance, aerospace, semiconductor inspection, and precision agriculture is driving expansion.
North America remains the dominant region in 2025, while Asia Pacific and Europe are witnessing rapid adoption across industrial and manufacturing sectors. Despite high implementation costs and integration challenges, advancements in sensor miniaturization, CMOS technology, and hyperspectral imaging are expected to accelerate adoption.
Forcast Year 2026
By Technology
By Wavelength Range
By Application
By Component
By Vertical
By Geography