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This is an X-ray intensity measurement detector manufactured by Rigaku Innovative Technologies Europe (RITE). The company provides products that leverage its high technical expertise as a group of specialists in X-ray optical technology. The xPIN is based on a PIN photodiode and can measure down to the picoampere (pA) level. It offers flexibility and excellent operability, allowing users to select options based on the energy (wavelength) of the X-rays they wish to measure and their specific applications. It enables easy and accurate measurements in various situations.
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Free membership registrationLUXEL has developed a sample support for transmission electron microscopy with the support of the U.S. NIH (National Institutes of Health). <Features> - No grid - High durability film - Chemically inert - Constant moisture - Low-temperature cryo resistance - Improved electron transmission rate For more details, please check 'Download'.
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Free membership registrationRADAK is a product offered by LUXEL Corporation for over 30 years. Based on unique design and technology, this product is versatile, easy to operate, and can be used for the deposition of a wide range of materials. By appropriately selecting and combining the materials for the crucible, liners, thermocouples, and other options, it can accommodate various applications such as organic thin-film devices (OLEDs), thin-film batteries, and solar cells. It is particularly recommended for those conducting experiments involving deposition and film formation.
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Free membership registrationThe Xsight Micron, manufactured by Rigaku Innovative Technologies Europe (RITE), offers extremely high resolution, enabling observations at the sub-micron level. It is optimized for various applications in X-ray optics and features a 2D CCD camera that allows for high-quality profile data analysis. You can choose between lens coupling (LC) and fiber optics coupling (FC) options, both of which do not require external electrical systems or cooling devices. It is a one-package camera that can be used immediately by simply connecting it to a PC via USB 2.0.
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Free membership registrationLUXEL's thin-film filters are high-quality filters made from carefully selected materials and sophisticated manufacturing techniques. They provide trust and quality backed by a proven track record in many observation satellites and contributions to extreme ultraviolet X-ray projects.
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Free membership registrationCROPTICS, based in Barcelona, has developed a biaxial crystal CRE that is optimal for reproducing conical refraction. Conical refraction is known to have been predicted by Hamilton in 1832, but suitable crystals for reproducing it have been scarce, making it an optical phenomenon that has long been overlooked. The CRE allows for the actual observation of conical refraction and serves as a useful tool for studying its principles and characteristics. *Conical refraction is a phenomenon where a beam incident on a biaxial crystal refracts into a conical shape within the crystal, generating a ring-shaped beam. It is being recognized as a new method for generating Bessel beams, and applications in new uses are anticipated. For more details, please check the "Download" section.
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Free membership registrationLUXEL, a manufacturer of high-quality thin film filters, offers a resistance heating type evaporation source (evaporator) suitable for vacuum deposition. It is designed for low-temperature deposition, making it ideal for the development of organic thin film devices such as OLEDs. Additionally, its compact size and ease of handling make it perfect for experimental use. ★ Product Lineup ★ ● Small size (1cc) OLED1 ● Medium size (10cc) OLED2 ★ Features ★ - Unique design suitable for low-temperature deposition of volatile organic compounds - Thermal control available from 50°C to 600°C - High performance: capable of film formation at a constant speed of over 2 Å/second
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Free membership registrationOPTO DIODE (formerly IRD) has developed a Si photodiode with an internal quantum efficiency of nearly 100% in the soft X-ray to UV range in collaboration with research institutions such as NIST and LLNL. This compact and easy-to-handle Si photodiode is expected to be useful not only in high-energy light research but also in the fields of electrons and ions.
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