Winner of the 22nd Invention Award. Features an explosion-proof completely sealed structure, enabling viscosity measurement in liquids.
In the chemical products manufactured in the industrial sector today, petrochemical raw materials are often used, and there are various regulations in the production processes of these products. For example, when controlling the viscosity of organic solvent-based liquids, it is necessary to have an explosion-proof structure as a safety regulation. This device has received national certification for pressure-resistant explosion-proof structure issued by the Industrial Safety Technology Association, making it suitable for use in such production lines. ● It is possible to completely immerse the entire probe in the liquid with a fully sealed structure. ● Measurements can be taken even in flowing liquids. ● By adopting a balance-type oscillator, the oscillator is completely vibration-isolated, allowing measurements without being affected by external vibrations. ● The installation direction of the probe can be in any direction due to the advantages of the balance type. ● The device is compact and robust, maintenance-free, and enables real-time viscosity management. ● With control via a PLL circuit, measurement accuracy is guaranteed to be within 1% of the measured value.
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In the chemical products manufactured in the industrial sector today, petrochemical raw materials are often used, and there are various regulations in the production processes of these products. For example, when controlling the viscosity of organic solvent-based liquids, it is necessary to have an explosion-proof structure as a safety regulation. This device is certified as a product with pressure-resistant explosion-proof structure issued by the Industrial Safety and Technology Association, designed for use in such production lines. ● It is possible to fully immerse the entire probe in the liquid with a completely sealed structure. ● Measurements can be taken even in flowing liquids. ● By adopting a balance-type vibrator, the vibrator is completely vibration-isolated, allowing measurements without being affected by external vibrations. ● The installation direction of the probe can be in any direction due to the advantages of the balance type. ● The device is compact and robust, maintenance-free, and enables real-time viscosity management. ● With control via a PLL circuit, measurement accuracy is guaranteed to be within 1% of the measured value.
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Applications/Examples of results
This is a device with numerous delivery records, primarily in the chemical industry. Recently, it has been used particularly for endpoint management in polymerization and reaction processes, as well as for liquid management in precision coatings represented by AR coatings and color filters. We also have demo units available for rental, so please feel free to contact us.
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The inline viscometer was awarded the 22nd Invention Award (1997) for its excellent performance and innovative ideas. Additionally, the acceleration sensor detects and records vibrations that occur during the transportation of goods, contributing to the prevention of product damage through the review of work improvement. We have developed a new viscoelastic meter as a culmination of the technology of inline viscometers and densitometers, which were developed as instruments for measuring the physical properties of liquids. Like the viscometer, it uses piezoelectric sensors to measure the viscosity, temperature, elastic modulus, and phase angle of various liquids in real-time inline. Focusing on piezoelectric sensor technology, we will continue to advance our development and research, aiming to become a comprehensive scientific measurement instrument manufacturer. With a wide range of products, solid technology, and prompt responses, we will strive as a united company to be of even greater service to everyone in the future. We appreciate your continued support.