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When UV curing materials are exposed to UV light, a chemical cross-linking reaction occurs, typically within seconds or a few minutes, depending on the chemical material, layer thickness, and UV light intensity. Comprehensively tracking this chemical reaction requires a very sensitive device such as an MCR rheometer. The MCR devices are equipped with a set of features that guarantee the most accurate results. First of all, the MCR’s unique TruStrain™ method comes into account, enabling fast data acquisition and thus the highest possible data rate during oscillatory tests. The sensitive normal force control guarantees compensation of sample shrinkage during the reaction and ensures a correctly filled gap. The MCR rheometers also feature an online compliance correction for accurate results even for the stiffest samples after curing. These functions avoid measuring errors and ensure accurate and reproducible results. Analysis methods for onset and curing points are available as standard.
Optical Engineering for design and manufacturing needs, we’re building unique and innovative OEM manufacturing solutions today.
Polarizing beam splitter
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Mach-Zehnder interferometer
Experienced in serving the scientific, biomedical, and photonics communities we know how to design and deliver optical filters.
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Manufacturing capabilities for high-performance optical filters involve precision techniques like thin-film coating and optical design.
Tailored for life sciences applications, offering precision and reliability to enhance imaging solutions such as fluorescence microscopy and cellular imaging.
PBS Cube
High-performance optical filters specifically designed, our precision-engineered filters enable astronomers to achieve clearer views of celestial objects.
In the dynamic landscape of rapid product development, transforming ideas into prototypes swiftly is essential across diverse applications.
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Besides switching between different accessories, you can also combine certain methods, like UV and Raman spectroscopy, UV and IR spectroscopy, and UV and humidity control. This gives you access to even more sophisticated methods for your product development and research tasks.
Raman filters are ideal when you need higher transmission values, fast transitions, and superior blocking to keep out unwanted photons.
Optical filters play a crucial yet often overlooked role in semiconductor manufacturing, where nanoscale precision can make or break a product.
The UV Light Curing System is a powerful tool for material characterization which helps you reduce costs when redesigning the photochemical polymerization process of your UV-sensitive material. You benefit from quick and accurate temperature control from -20 °C to 200 °C with the actively controlled Peltier hood. For measurements under higher temperature conditions, an electrical temperature control from ambient temperature to 300 °C and convection temperature devices from -40 °C to 200 °C are also available. All systems allow purging with inert gas to avoid undesired chemical reactions. Exchangeable lower glass plates and disposable plates of various diameters are available for samples which cannot easily be removed from the plates after the measurement.
Consider the chemistry of your sample, your overall process design, and required maintenance before choosing the type of UV light to use:
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Dichroic beam splitter
In the consumer electronics market, optical filters offer enhanced imaging capabilities for displays, cameras, and smartphones.
Mirbeamsplitter
Satellite imaging, remote sensing, or aircraft instrumentation, our optical filters ensure precision and clarity, vital for navigation, reconnaissance, and scientific exploration.
Rheology plays an important role when it comes to the development of UV-sensitive materials in order to develop application-specific formulations. UV-curing materials are an essential part of many industries, including medicine and life science, automotive, polymers, packaging, printing, electronics, and even cosmetics (for example artificial fingernails and gel nail polish). The UV Light Curing System supports you in developing and producing such materials and helps increase the speed of production and reduce costs while ensuring high product quality.
The UV Light Curing System is one part of the modular RheoOptics Toolbox for the MCR rheometer series. The modular concept of the MCR rheometer series allows you to quickly and easily switch to other accessories for combined optical and rheological investigations. The Peltier and electrical temperature devices available for the MCR series can be used with other rheo-optic tools, such as Raman spectroscopy, IR spectroscopy, (fluorescence) light microscopy, Small Angle Light Scattering (SALS), and polarized imaging. In this way you can efficiently use your MCR rheometer to apply different methods that complement each other and advance your materials research.
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An extensive range of solutions, from the ultraviolet to the infrared, for major microscope brands and custom-built systems.
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State-of-the-art equipment ensures the quality of optical components by conducting in-house testing for imaging performance.
Mercury light source: For homogenous sample illumination, a powerful high-pressure mercury UV source is connected by default to the temperature device by a flexible light guide and can be controlled remotely with the RheoCompass software during sample preparation and measurement. The light source is available with different filters for the emission of discrete wavelengths and with a radiometer for calibration purposes.
Expert guidance and comprehensive support from initial consultation to final implementation, including customized solutions.
Thorlabs beam splitter
The UV Light Curing System as part of the RheoOptics toolbox for the MCR rheometers allows the investigation of UV-light-initiated curing reactions. With this setup UV-sensitive inks, glues, or coatings are irradiated by a UV light source simultaneous to the rheological characterization of the material. You achieve fast and accurate results even for demanding applications with the unique TruStrain™ control which allows the highest data rates during oscillation, the sensitive normal force control for shrinkage compensation, and online compliance correction. The Peltier hood and inert gas atmosphere ensure accurate temperature control from -20 °C to 200 °C. Read more about rheological investigations of adhesives and sealants in the Anton Paar Wiki .
Filters play a crucial role in enhancing clarity, color accuracy, and contrast in machine vision applications where details matter.
We manufacture high-quality, narrow-band spectral line filters for detecting ionized sulfur, oxygen, and other elements.
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.
LED light source: For monochromatic single-peak wavelength radiation a UV LED light source, which uses arrays of light emitting diodes, can be integrated. The light guide holder can be adapted to various UV LED light sources available on the market to perfectly fit your sample and process requirements.
Our filters optimize industrial processes like machine vision and quality control, fostering efficiency and innovation across diverse sectors.
Expertise in optical filter technology, a deep understanding of applications in life sciences and clinical instrumentation.