Adopting a special raw sugar manufacturing method! Produced under strict process management that thoroughly eliminates radiation contamination.
The "Ultra High Purity NaI(Tl) Scintillator" is a radiation detector manufactured under strict process management that thoroughly eliminates radiation contamination, including high-purity raw material preparation, crystal production in a contamination-free crystal manufacturing furnace, processing under radon-free conditions, and the selection of materials free from radiation contamination. By performing machining and assembly of the produced crystals under low dew point gas and inert gas conditions, it becomes possible to detect dark matter and other phenomena. 【Features】 ■ Adoption of a special raw material sugar manufacturing method using recrystallization and resin column methods ■ For crystal production, a special contamination-free environment is used, and crystal growth is carried out under inert gas conditions. *For more details, please refer to the PDF document or feel free to contact us.
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【Specifications】 ■Model: 12B12DMTC ■Crystal Material: Thallium-doped ultra-pure sodium iodide (NaI(Tl)) ■Crystal Dimensions: Diameter 75mm x Height 75mm ■Light Readout Structure: Double-sided readout method / Window: Synthetic quartz ■Reflective Material: ESR ■Case Material: Oxygen-free copper *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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I.S.C.Lab. Co., Ltd. is a venture company that develops and manufactures sodium iodide crystals and cesium iodide crystals, which are key components of radiation detectors. The large cesium iodide crystals currently under development are being applied in radiation measurement devices for use in food and other areas. Additionally, the technology for ultra-purification and scaling up of sodium iodide crystals that our company is developing is expected to be applied in the detection of cosmic dark matter, which has previously been considered impossible to detect.