For research and development processes! Absorbance/turbidity sensor used by inserting it into reaction vessels, etc.
Optek's probe-type absorbance/turbidity sensor measures turbidity from the absorbance of near-infrared light and can measure solutions in the medium to high turbidity range. It features a seal-less sapphire window at the probe tip. There is no need for sampling, and a wide measurement range and optical path length can be selected. 【Features】 ■ Real-time measurement in piping and tanks ■ Uses near-infrared light that is not affected by the color of the liquid ■ Employs maintenance-free LED lamps ■ Easy installation on existing equipment ■ Autoclavable For more details, please refer to the catalog or feel free to contact us.
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【Usage】 ■ For research and development and processes *For more details, please refer to the catalog or feel free to contact us.
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Our company was established as the Japanese subsidiary of a foreign-affiliated manufacturer with a global network spanning over 40 countries. We are steadily expanding our business primarily through the sale of SQUID magnetic property measurement devices and physical property measurement devices, which boast a world-class share in the field of new material research and development. Additionally, we also operate as a trading company for high-tech scientific instruments, importing and selling cutting-edge research equipment from around the world in various fields such as material science, biotechnology, and nanotechnology. The wave of technological innovation is significantly transforming not only industrial sectors but also our daily lives. Among these, the fields of material science, biotechnology, and nanotechnology, which are the pillars of our business, can be described as "core technologies" that provide humanity with infinite possibilities for the future as they lead the way in cutting-edge technology (high-tech). The discovery of high-temperature superconducting materials, applications of laser microfabrication and optical communication, and surface analysis at the nanoscale are already playing important roles in various fields such as new materials, semiconductors, information and communication, medical care, clinical diagnostics, and drug discovery, while also enabling further advancements in technology.