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In March 2021, our company began mass production and sales of the "Liquid Terahertz Spectroscopy Device" as a key input device for the digitization of liquids. This device is a cutting-edge analytical instrument that enables the quantification of liquid information. It successfully digitizes the intermolecular states of liquids by datafying the intermolecular states of various liquids and extracting features of liquid information using AI (complex systems science). As a result, it is now possible to provide new options for solving challenges in research and development, manufacturing, and quality control involving liquids, leading to direct outcomes such as reduced development costs and increased yield. 【Various intermolecular states of liquids that can only be seen with "THz×AI"】 ■ Dispersion and separation states of surfactants and colloidal solutions ■ Concentration inhomogeneity ■ Changes in aggregation states ■ Differences between lots other than component ratios and impurity concentrations ■ Manufacturer differences in raw materials, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registrationIn beverages, there were challenges such as measures against food terrorism, lack of information on aggregation and mixing during stirring, and instability in detecting the optimal aging state of alcoholic beverages. With the measurements of "MiMoi" that we handle, it has become possible to make judgments and take measures in a very short time (1 minute). Additionally, it allows for direct measurement of intermolecular interactions, enabling the assessment of the "state" of liquids, such as aggregation, aging, and taste. [Case Study] ■Challenges - Measures against food terrorism - Lack of information on aggregation and mixing during stirring - Instability in detecting the optimal aging state of alcoholic beverages - Inability to quantify subtle tastes that cannot be detected by taste sensors - Lack of understanding of the state of emulsifier micelles and vesicles *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationWe would like to introduce a case study in which we visualized changes in the quality control of industrial liquids, inks, paints, resist solutions, and high-concentration polymer solutions. In the semiconductor industry, there were challenges such as the difficulty of quality control for core solutions used in the processes. With our solution, it is possible to measure "conditions" such as trace contaminants and changes in mixing states that could not be measured conventionally, by using different spitzes and cells based on concentration. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationIn industrial liquids and solutions, there are no specifications other than component specifications for product quality (at shipment and acceptance), and there is a challenge in detecting changes in the liquid due to disturbances after manufacturing and shipping. With our product "MiMoi," it is possible to measure the "state" other than "component specifications," which could add a completely new and beneficial specification to quality control through measurement and analysis. Additionally, by implementing it before and after shipping, it becomes possible to compare the data at the time of acceptance with the data at the time of shipment, enabling a new acceptance inspection. *For more details, please refer to the PDF document or feel free to contact us.*
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Free membership registrationIn the medical field, there were challenges in the manufacturing of suitable drugs for diseases and the development and manufacturing processes of artificial blood. Therefore, our solution enabled the identification of the critical micelle concentration. With drug delivery systems (DDS) such as liposomes, it has become possible to quantify the state in liquid, and the speed of this process is approximately 2 minutes. By focusing on the macro rather than the micro, we successfully developed an innovative measurement system that derives the liquid state from information about the strength and quantity of specific intermolecular forces. Additionally, while liposomes and polymer micelles/vesicles were previously subjected to time-consuming separation and analysis of their constantly changing states, our proposed new system allows for the measurement of temporal changes over a short span, enabling the monitoring of states that change continuously. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "MiMoi SYSTEM" is focused on building a database of intermolecular force data for liquids, providing various services centered around the liquid state measurement device "MiMoi." Previous testing devices were unable to quantify the state of "molecular clusters" (aggregates of molecules) that are emphasized in the beverage industry. Our company manufactures devices utilizing the "Watanabe Method" to spectrally measure liquid molecular clusters, enabling the quantification of beverage aggregation and aging. 【System Contents】 ■ Liquid state measurement device "MiMoi" ■ Cloud analysis service "MiMoi Cloud" ■ Non-separating analysis algorithm "Hydro Crest" ■ Display of analysis results "Hydro Crest GRAPH" *For more details, please download the PDF or feel free to contact us.
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Free membership registration"DDS Monitoring" is a measurement system that can quantify the liquid state in just about 2 minutes. It is also effective as a method to measure temporal changes and confirm the expression of ribosome DDS and polymer micelle DDS. Additionally, since it can quantify the changes in the liquid state of drug release due to external factors on a macro scale, it becomes easier to grasp the timing of controlled release. [Features] ■ Can quantify the liquid state in about 2 minutes ■ Monitoring of temporal changes in liposomes and polymer micelles ■ Real-time grasp of the timing of expression *For more details, please download the PDF or feel free to contact us.
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