The global 2 -5μm Infrared Filters market size reached US$ 38.30 million in 2023, and is expected to reach US$ 63.68 million in 2030, with a compound annual growth rate (CAGR) of 7.47%.
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Infrared (IR) filters with a wavelength range of 2 to 5 micrometers are commonly used in various applications, including environmental monitoring, security, Forward Looking Infrared (FLIR) systems, and spectroscopy. These filters are typically designed to selectively transmit or block specific wavelengths within the infrared region of the electromagnetic spectrum.
This report provides a detailed overview of the global 2-5μm Infrared Filters market, offering both quantitative and qualitative analyses to enable readers to devise business growth strategies, evaluate market competition, assess their position within the market, and make well-informed business decisions. The comprehensive data within the report includes market size estimations, forecasts, and segmentations, covering the period from 2019 to 2030.
Key Features
Target Audience
This report caters to a range of stakeholders within the 2-5μm Infrared Filters market, including manufacturers, new entrants, and industry chain-related companies seeking valuable insights to support strategic decision-making and drive growth.
Market Segmentation
By Company
- Umicore N.V.
- Andover Corporation
- Vortex Optical Coatings Ltd
- Wavelength Opto-Electronic (S) Pte Ltd
- Thorlabs, Inc.
Segment by Type
- 2-3μm Infrared Filters
- 3-5μm Infrared Filters
Segment by Application
- Gas Detection and Environmental Monitoring
- Industrial Process Control
- Security and Monitoring
- Others
Production by Region
- North America
- Europe
- Asia
- Others
Consumption by Region
- North America
- U.S.
- Canada
- Asia-Pacific
- China
- Japan
- South Korea
- Southeast Asia
- India
- Europe
- Germany
- France
- U.K.
- Italy
- Russia
- Rest of Europe
- Latin America
- Mexico
- Brazil
- Rest of Latin America
Key Trends:
Advances in materials: Researchers are exploring new materials, such as Type-II Superlattice structures, to create filters with adjustable wavelength ranges and improved performance. These materials can offer better control over the spectral response and increase the versatility of IR filters.
Uncooled IR sensors: The development of uncooled IR sensors has grown significantly due to improvements in sensor performance, producibility, and cost reduction. Uncooled sensors using 2-5 μm IR filters can simplify the system design and reduce power consumption, making them attractive for various applications.
Plasmonic metal nanostructures: The use of plasmonic metal nanostructures, such as metal nanodisc arrays, is gaining attention as a method for designing mid-IR filters with tunable spectral responses. These structures can provide enhanced light-matter interactions and enable the realization of compact and efficient filter designs.
Tunable mid-IR light sources: The development of tunable mid-IR light sources, including diode lasers and advanced nonlinear optical devices, enables the realization of filters with adjustable wavelength ranges. These light sources can be used in various sensing and spectroscopy applications, such as detecting specific chemical compounds and analyzing complex mixtures.
Cryogenic cooling alternatives: Efforts are being made to overcome the need for cryogenic cooling in high-performance IR photon detectors. This is achieved by optimizing detector materials and designs, making them more suitable for 2-5 μm filters and allowing for more widespread adoption of IR technology.
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