Achieve low costs! There is no need to engage experienced engineers in simple tasks!
The "Chemical Analysis Robot System" is a robot system that drops the chemical to be tested onto a wafer and conducts component analysis. By simply pressing the start button, the system performs the designated pretreatment unattended, conducts the analysis, and automatically handles post-processing such as result storage. 【Introduction to Implementation】 ■ Key Points and Lessons for Successful Implementation - Contributes not only to labor reduction and cost reduction but also to quality improvement. - Allows for flexible changes and additions to tasks that are difficult with dedicated machines. ■ Background of Implementation - In the field of chemical manufacturing, analysis work relied on manual labor. - Analysis work requires skilled workers due to its reliance on expertise, but it involves repetitive simple tasks that need to be performed around the clock, leading to high costs. ■ Effects of Implementation - Eliminates the need to engage experienced technicians in simple tasks, achieving cost reduction. - Increases uniformity of work, achieving homogenization of analysis data and safety, contributing to quality improvement. - Capable of operating 24/7 without breaks, thus improving productivity. *For more details, please refer to the PDF document or feel free to contact us.
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【Functions and Specifications】 ■ Conducts physical property tests such as saponification degree, pH, viscosity, and surface tension. ■ Composed of two 6-axis vertical multi-joint robots, five robot hands, and various devices for stirring, suction, drying, cleaning, and analysis. ■ Operated solely by internal sensors of the robots, driven by teaching playback. ■ The process from bottle input to output of analysis data takes approximately 40 minutes. *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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Since its founding, Toyo Riki Kogyo has been engaged in the development, design, and manufacturing of production-related equipment across various industrial sectors. In 1982, it began the development of manipulators and hands for industrial robots. Since then, its main business has been to develop and implement useful robotic application systems by system integration and customization of industrial robots to meet the needs of various fields. To date, it has achieved over 200 systems primarily focused on robotic handling systems, earning significant trust from its users. In 2005, it started developing next-generation robots centered on communication, receiving support from the city of Osaka, and has completed a robot platform while advancing contract development of easy-order robots. As the next step, it plans to start activities that contribute to Japan's manufacturing, which is facing a decline in the workforce, by robotizing traditional skills.