High-performance optical filters specifically designed, our precision-engineered filters enable astronomers to achieve clearer views of celestial objects.

Fiber-Lite DC-950

Our filters optimize industrial processes like machine vision and quality control, fostering efficiency and innovation across diverse sectors.

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State-of-the-art equipment ensures the quality of optical components by conducting in-house testing for imaging performance.

All transmission and blocking (OD) data are actual, measured spectra of representative production lots. Spectra varies slightly from lot to lot. Optical density values in excess of 6 may appear noisy because such evaluations push the resolution limit of low light level measurements.

Filters play a crucial role in enhancing clarity, color accuracy, and contrast in machine vision applications where details matter.

Optical Engineering for design and manufacturing needs, we’re building unique and innovative OEM manufacturing solutions today.

In the dynamic landscape of rapid product development, transforming ideas into prototypes swiftly is essential across diverse applications.

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Manufacturing capabilities for high-performance optical filters involve precision techniques like thin-film coating and optical design.

Expert guidance and comprehensive support from initial consultation to final implementation, including customized solutions.

Experienced in serving the scientific, biomedical, and photonics communities we know how to design and deliver optical filters.

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Expertise in optical filter technology, a deep understanding of applications in life sciences and clinical instrumentation.

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Satellite imaging, remote sensing, or aircraft instrumentation, our optical filters ensure precision and clarity, vital for navigation, reconnaissance, and scientific exploration.

Raman filters are ideal when you need higher transmission values, fast transitions, and superior blocking to keep out unwanted photons.

If you don’t see what you are looking for, please contact us. We have a large inventory of filters and a knowledgeable staff ready to help you design and build a filter to meet your specifications.

Tailored for life sciences applications, offering precision and reliability to enhance imaging solutions such as fluorescence microscopy and cellular imaging.

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We manufacture high-quality, narrow-band spectral line filters for detecting ionized sulfur, oxygen, and other elements.

Compared with the general halogen lamp optical fiber cold light source, has the advantages of high light efficiency, energy saving, low calorific value, especially the service life is much higher than the halogen lamp. LED optical fiber cold light source adopts high-power single chip package LED as the light source, and specially designed kohler lighting concentrator system composed of 5 optical lenses, which can effectively couple the strong light of high-power LED to the fiber bundle, which has many advantages such as high light efficiency, energy saving, low calorimeter, long service life, low noise (<42db) and so on

In the consumer electronics market, optical filters offer enhanced imaging capabilities for displays, cameras, and smartphones.

Optical filters play a crucial yet often overlooked role in semiconductor manufacturing, where nanoscale precision can make or break a product.

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Our Sputtered Dual Band Laser filter sets employ the same high-transmission, high-durability coatings as our other ET sets. These sets reflect two different laser wavelength ranges and consist of dual band transmission dichroics, dual band laser clean-up filters and dual band laser emission filters. In addition, all laser sets feature our Ultra-Flat laser dichroics. Chroma has developed a proprietary manufacturing method which minimizes surface curvature, and all of our laser dichroics with 1mm thick substrates are <2 lambda/inch peak-valley surface flatness. For more demanding applications such as TIRF, STED, structured illumination or PALM/STORM, we recommend our thicker dichroics mounted into Chroma’s custom metal cubes. Our manufacturing process, coupled with thicker substrates, provides the highest level of surface flatness in the industry for imaging dichroics used in microscope cubes.

An extensive range of solutions, from the ultraviolet to the infrared, for major microscope brands and custom-built systems.